# NuPRO-E320

Full-Sized PICMG 1.3 SHB

Intel® Q45/ICH10 Chipset

User's Manual

![Close-up of a green printed circuit board with various electronic components and connectors (no visible text or symbols)](.nupro-e320-50-13063-1010-202/6a0586eb31a892c5d0c7865354ee9b71a8f4ee6e762e34a8ed2bb0b89e7e5f05.jpg)

Manual Rev.: 2.02

Revision Date: August 28, 2009

Part No: 50-13063-1010

![Circular black-and-white recycling symbol with three white arrows forming a triangle (no text or symbols)](.nupro-e320-50-13063-1010-202/5cb887907ee669198fb2e59fe58ddb1256772df98ec678924c31ef4a432cbb39.jpg)

Recycled Paper

# Revision History

<table><tr><td>Revision</td><td>Release Date</td><td>Description of Change(s)</td></tr><tr><td>2.00</td><td>2009/05/07</td><td>Initial Release</td></tr><tr><td>2.01</td><td>2009/07/09</td><td>Correct COM1 Mode jumper settings</td></tr><tr><td>2.02</td><td>2009/08/28</td><td>Correct memory specification (max. 4GB);LPT connector drawing; LAN, Floppy,HDD LED pull-up, IDE, FAN1/2 pin definitions</td></tr></table>

# Preface

# Copyright 2009 ADLINK Technology Inc.

This document contains proprietary information protected by copyright. All rights are reserved. No part of this manual may be reproduced by any mechanical, electronic, or other means in any form without prior written permission of the manufacturer.

# Disclaimer

The information in this document is subject to change without prior notice in order to improve reliability, design, and function and does not represent a commitment on the part of the manufacturer.

In no event will the manufacturer be liable for direct, indirect, special, incidental, or consequential damages arising out of the use or inability to use the product or documentation, even if advised of the possibility of such damages.

# Environmental Responsibility

ADLINK is committed to fulfill its social responsibility to global environmental preservation through compliance with the European Union's Restriction of Hazardous Substances (RoHS) directive and Waste Electrical and Electronic Equipment (WEEE) directive. Environmental protection is a top priority for ADLINK. We have enforced measures to ensure that our products, manufacturing processes, components, and raw materials have as little impact on the environment as possible. When products are at their end of life, our customers are encouraged to dispose of them in accordance with the product disposal and/or recovery programs prescribed by their nation or company.

# Trademarks

Product names mentioned herein are used for identification purposes only and may be trademarks and/or registered trademarks of their respective companies.

# Using this Manual

# Audience and Scope

The NuPRO-E320 User's Manual is intended for hardware technicians and systems operators with knowledge of installing, configuring and operating industrial grade single board computers.

# Manual Organization

This manual is organized as follows:

Preface: Presents important copyright notifications, disclaimers, trademarks, and associated information on the proper understanding and usage of this document and its associated product(s).

Chapter 1, Introduction: Introduces the NuPRO-E320, its features, applications, and specifications, including functional descriptions and board layout.

Chapter 2, Hardware Information: Provides technical information on connectors and jumpers for configuring the NuPRO-E320.

Chapter 3, Getting Started: Illustrates how to install components on the NuPRO-E320 such as CPU, heatsink, and memory modules.

Chapter 4, Driver Installation: Provides information on how to install the NuPRO-E320 device drivers.

Chapter 5, BIOS Setup: Describes basic navigation for the AMIBIOS®8 BIOS setup utility.

Appendix A, Watchdog Timer: Presents information on implementing the watchdog timer.

Appendix B, System Resources: Presents information on I/O mapping, IRQ routing, and resource allocation.

Important Safety Instructions: Presents safety instructions all users must follow for the proper setup, installation and usage of equipment and/or software.

Getting Service: Contact information for ADLINK's worldwide offices.

# Conventions

Take note of the following conventions used throughout this manual to make sure that users perform certain tasks and instructions properly.

![The image displays a white document icon with horizontal lines and a folded top-right corner. A large red checkmark is superimposed over the center of the paper.](.nupro-e320-50-13063-1010-202/bc0da8a1392f3c45f41ba6b3963ed0cdf74327c184a5c52c8a313a03288c4ce1.jpg)
NOTE:

Additional information, aids, and tips that help users perform tasks.

![A yellow triangular warning sign with a black border containing a large black exclamation mark in the center.](.nupro-e320-50-13063-1010-202/f0aeccc56b8f620a99956f38df02399d441c57c6496abc014d0098fbeee75d4b.jpg)
CAUTION:

Information to prevent minor physical injury, component damage, data loss, and/or program corruption when trying to complete a task.

![The image displays a standard warning symbol. It features a dark red, upward-pointing triangle with a white border. Centered inside the triangle is a white exclamation point.](.nupro-e320-50-13063-1010-202/cc1e6641364e781fa83f89e8c78871d58c118265cec669ead3c4266379880255.jpg)
WARNING:

Information to prevent serious physical injury, component damage, data loss, and/or program corruption when trying to complete a specific task.

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# Table of Contents

# Revision History...... ii

# Preface...... iii

# List of Figures ...... xi

# List of Tables...... xiii

# 1 Introduction ...... 1

1.1 Overview.... 1
1.2 Features.... 1
1.3 Specifications.... 2
1.4 Power Consumption 4
1.5 Block Diagram 7
1.6 Functional Description 8
1.7 Mechanical Drawing 11
1.8 I/O Connectivity 12
1.9 Package Contents 13

# 2 Hardware Information 15

2.1 Rear Panel I/O Ports.... 15
2.2 Board Layout 18
2.3 Onboard Connectors 19
2.4 Jumpers 26

# 3 Getting Started 27

3.1 Installing the CPU 27
3.2 Installing the CPU Fan and Heatsink.... 31
3.3 Installing Memory Modules 33

# 4 Driver Installation.... 35

4.1 Intel® Q45 Express Chipset Driver 35
4.2 Display Driver.... 36
4.3 LAN Driver 36
4.4 TPM Driver 36
4.5 Audio Driver 37

# 5 BIOS Setup 39

5.1 Starting the BIOS.... 39
5.2 Main Setup.... 43
5.3 Advanced BIOS Setup 44
5.3.1 CPU Configuration....45
5.3.2 IDE Configuration 47
5.3.3 Super IO Configuration 48
5.3.4 Hardware Health Configuration 49
5.3.5 Remote Access Configuration 52
5.3.6 USB Configuration 54
5.3.7 Trusted Computing 56

5.4 PCI/PnP Settings 57

5.4.1 IRQ/DMA 57

5.5 Boot Settings 58

5.5.1 Boot Settings Configuration 58
5.5.2 Boot Device Priority 60
5.5.3 Boot Device Groups....60

5.6 Security Setup.... 61

5.7 Chipset Setup 64

5.7.1 North Bridge Configuration 65
5.7.2 South Bridge Configuration....67
5.7.3 Advanced Chipset Settings....68

5.8 Exit Menu 69

# A Appendix: Watchdog Timer....71

A.1 Sample Code 71

# B Appendix: System Resources....75

B.1 System Memory Map 75

B.2 Direct Memory Access Channels.... 76

B.3 IO Map 77

B.4 Interrupt Request (IRQ) Lines.... 79

# Important Safety Instructions 87

# Getting Service.... 89

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# List of Figures

Figure 1-1: NuPRO-E320 Block Diagram ....7
Figure 1-2: NuPRO-E320 Board Dimensions .... 11
Figure 2-1: Rear Panel I/O Ports....15
Figure 2-2: Connectors and Jumpers....18

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# List of Tables

Table 1-1: NuPRO-E320 General Specifications....3
Table B-1: System Memory Map....75
Table B-2: Direct Memory Access Channels....76
Table B-3: IO Map....78
Table B-4: IRQ Lines PIC Mode....79
Table B-5: IRQ Lines APIC Mode 81
Table B-6: PCI Configuration Space Map 83
Table B-7: PCI Interrupt Routing Map 85

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# 1 Introduction

# 1.1 Overview

The ADLINK NuPRO-E320 is a PICMG 1.3 System Host Board (SHB) supporting the next-generation Intel® Core™2 Quad/Duo and Intel® Celeron® processors in the LGA775 package to deliver a high performance platform for a wide array of industrial automation applications. The NuPRO-E320 supports 45nm process CPUs at up to 3.00GHz and 1333 MHz Front Side Bus (FSB). Dual channel DDR3 800/1066 MHz memory is supported up to a maximum of 4GB in two DIMM slots.

These advanced features, coupled with PCI Express® x16 expansion capability, dual PCI Express®-based Gigabit Ethernet and diverse I/O and storage make the NuPRO-E320 ideal for instrumentation and automation control applications.

# 1.2 Features

▶ Supports Intel® Core™2 Quad/Duo and Celeron® processors in LGA775 package
PCI Express® x16 expansion capability via backplane
▶ Dual 10/100/1000Mbps Ethernet (NuPRO-E320LV supports single GbE)
▶ 9x USB 2.0 ports (1x on bracket, 4x onboard, 4x on backplane)
▶ 4x SATA 3 Gb/s ports (2x onboard, 2x on backplane)
▶ Watchdog Timer, Hardware Monitor
▶ Optional HD audio kit (DB-Audio2 daughter board)
▶ TPM hardware security chip (NuPRO-E320DV only)
▶ RoHS compliant

![The image displays a digital icon representing a document or checklist. It features a white piece of paper with a folded top-left corner (a 'dog-ear'). Several horizontal black lines run across the lower portion of the paper, suggesting text. A large, bold red checkmark is superimposed diagonally across the center of the document. The entire graphic is enclosed within a thin black border.](.nupro-e320-50-13063-1010-202/df8a1a26ffb3833eb97df014b5f5fa94572fae67961c8cad118c9098db1c8ef6.jpg)
NOTE:

To purchase the optional DB-Audio2 daughter board, please contact your ADLINK sales representative.

# 1.3 Specifications

<table><tr><td colspan="2">System</td></tr><tr><td>CPU/Cache</td><td>Intel® CoreTM2 Quad, CoreTM2 Duo, Celeron® in LGA775 Socket</td></tr><tr><td>FSB</td><td>800/1066/1333 MHz</td></tr><tr><td>Chipset</td><td>Intel® 82Q45 Graphics Memory Controller HubIntel® ICH10 I/O Controller Hub</td></tr><tr><td>Memory</td><td>Two 240-pin DIMM sockets support 800/1066MHz DDR3 (up to 4GB)</td></tr><tr><td>BIOS</td><td>AMI BIOS in 16-Mbit SPI Flash</td></tr><tr><td>Audio</td><td>Intel® High Definition Audio support via DB-Audio2 daughter board</td></tr><tr><td>Watch Dog Timer</td><td>1-255 second or 1-255 minute programmable and can generate system reset.</td></tr><tr><td>Hardware Monitor</td><td>CPU/System temperature, fan speed and onboard DC voltage</td></tr><tr><td>TPM</td><td>Infineon SLB 9635 TT 1.2 (NuPRO-E320DV only)</td></tr><tr><td>Operating Systems</td><td>Windows XP/Vista, Fedora 9</td></tr><tr><td colspan="2">I/O Interfaces</td></tr><tr><td>IDE</td><td>One-channel UDMA 33, ATA-66/100 supportOne 40-pin IDE connector (1 device only)</td></tr><tr><td>Serial ATA</td><td>Two SATA ports, data rate up to 3 Gb/s</td></tr><tr><td>I/O Ports</td><td>1 USB 2.0 port on rear panel, 4x via onboard header, 4x via backplane2 Serial ports (one RS-232, one RS232/422/485/485+ via onboard pin-header)2 Gigabit Ethernet RJ45 ports (2nd port optional)1 VGA port (Dsub-15)PS/2 Keyboard/Mouse (Mini-DIN 6-pin)1 Parallel port1 Floppy port</td></tr><tr><td>PCIe/PCI</td><td>PCIe-x16, PCIe-x4 and PCI 32bit/33MHz via golden fingers</td></tr></table>

<table><tr><td colspan="2">Display</td></tr><tr><td>Processor</td><td>GMA 4500 integrated in Q45 GMCH</td></tr><tr><td>Graphics</td><td>VGA by Dsub-15 connector on rear panel, resolution up to 2048 x 1536 @ 75 HzDual SDVO support via PEG x16</td></tr><tr><td colspan="2">Ethernet</td></tr><tr><td>Controller</td><td>Dual Intel® 82574L (LV supports 1x LAN only)supports Preboot Execution Environment (PXE), Wake-On-LAN (LAN1 only)</td></tr><tr><td>Ports</td><td>Two RJ-45 Ethernet ports(NuPRO-E320LV supports 1x LAN only)</td></tr><tr><td colspan="2">Mechanical and Environment</td></tr><tr><td>Form Factor</td><td>Standard full-size PICMG 1.3 SHB</td></tr><tr><td>Dimensions</td><td>338 x 122 mm (L x W)</td></tr><tr><td>Operating Temp.</td><td>0°C to 60°C</td></tr><tr><td>Storage Temp.</td><td>-20°C to 80°C</td></tr><tr><td>Relative Humidity</td><td>5% to 90% non-condensing both operating and non-operating</td></tr><tr><td>Safety</td><td>CE, FCC Class A</td></tr></table>

Table 1-1: NuPRO-E320 General Specifications

# 1.4 Power Consumption

# Intel® Core™2 Quad Processor Q9400

<table><tr><td colspan="2">Test Configuration</td></tr><tr><td>CPU</td><td>Intel® CoreTM2 Quad Processor Q9400 2.66 GHz</td></tr><tr><td>Memory</td><td>Kingston KVR1066D3N7/1G DDR3 1GB 2x</td></tr><tr><td>Graphics</td><td>Intel ® 82Q45 Graphics Memory controller</td></tr><tr><td>SATA Channel 1</td><td>Seagate ST3160815AS Barracuda 7200.10 160GB</td></tr><tr><td>Power Supply</td><td>MSI AL-B450E 450W</td></tr></table>

<table><tr><td colspan="6">DOS (idle)</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>1.012</td><td>0.546</td><td>1.888</td><td>1.880</td><td>—</td></tr><tr><td>Watts (W)</td><td>5.060</td><td>6.546</td><td>22.656</td><td>6.204</td><td>40.466</td></tr><tr><td colspan="6">Windows XP, Idle</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.890</td><td>0.530</td><td>0.9455</td><td>1.852</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.45</td><td>6.358</td><td>11.346</td><td>6.112</td><td>28.265</td></tr><tr><td colspan="6">Windows XP, KPower</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.950</td><td>0.558</td><td>5.934</td><td>1.905</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.75</td><td>6.697</td><td>71.208</td><td>6.286</td><td>88.944</td></tr><tr><td colspan="6">Windows XP, BurnIn Test 5.3</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>1.141</td><td>0.775</td><td>4.131</td><td>1.917</td><td>—</td></tr><tr><td>Watts (W)</td><td>5.705</td><td>9.300</td><td>49.572</td><td>6.326</td><td>70.903</td></tr></table>

Intel® Core™2 Duo Processor E8400

<table><tr><td colspan="2">Test Configuration</td></tr><tr><td>CPU</td><td>Intel® CoreTM2 Duo Processor E8400 3.00 GHz</td></tr><tr><td>Memory</td><td>Kingston KVR1066D3N7/1G DDR3 1GB 2x</td></tr><tr><td>Graphics</td><td>Intel ® 82Q45 Graphics Memory controller</td></tr><tr><td>SATA Channel 1</td><td>Seagate ST3160815AS Barracuda 7200.10 160GB</td></tr><tr><td>Power Supply</td><td>MSI AL-B450E 450W</td></tr></table>

<table><tr><td colspan="6">DOS (idle)</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.999</td><td>0.557</td><td>2.794</td><td>1.894</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.995</td><td>6.6804</td><td>33.528</td><td>6.250</td><td>51.453</td></tr><tr><td colspan="6">Windows XP, Idle</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.881</td><td>0.526</td><td>1.012</td><td>1.867</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.405</td><td>6.3072</td><td>12.144</td><td>6.161</td><td>29.017</td></tr><tr><td colspan="6">Windows XP, KPower</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.906</td><td>0.573</td><td>4.880</td><td>1.870</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.529</td><td>6.877</td><td>58.560</td><td>6.171</td><td>76.137</td></tr><tr><td colspan="6">Windows XP, BurnIn Test 5.3</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>1.120</td><td>0.745</td><td>3.820</td><td>1.881</td><td>—</td></tr><tr><td>Watts (W)</td><td>5.600</td><td>8.939</td><td>45.840</td><td>6.2073</td><td>66.586</td></tr></table>

Intel® Celeron® Processor 400 Sequence 440

<table><tr><td colspan="2">Test Configuration</td></tr><tr><td>CPU</td><td>Intel® Celeron® Processor 400 Sequence 440 2GHz</td></tr><tr><td>Memory</td><td>Kingston KVR1066D3N7/1G DDR3 1GB 2x</td></tr><tr><td>Graphics</td><td>Intel ® 82Q45 Graphics Memory controller</td></tr><tr><td>SATA Channel 1</td><td>Seagate ST3160815AS Barracuda 7200.10 160GB</td></tr><tr><td>Power Supply</td><td>MSI AL-B450E 450W</td></tr></table>

<table><tr><td colspan="6">DOS (idle)</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.914</td><td>0.485</td><td>1.608</td><td>1.893</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.567</td><td>5.826</td><td>19.296</td><td>6.247</td><td>35.936</td></tr><tr><td colspan="6">Windows XP, Idle</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.807</td><td>0.472</td><td>0.769</td><td>1.855</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.036</td><td>5.660</td><td>9.227</td><td>6.121</td><td>25.045</td></tr><tr><td colspan="6">Windows XP, KPower</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.849</td><td>0.482</td><td>1.960</td><td>1.870</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.244</td><td>5.783</td><td>23.520</td><td>6.171</td><td>39.718</td></tr><tr><td colspan="6">Windows XP, BurnIn Test 5.3</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>CPU +12V</td><td>+3.3V</td><td>Total</td></tr><tr><td>Current (A)</td><td>0.935</td><td>0.603</td><td>1.653</td><td>1.886</td><td>—</td></tr><tr><td>Watts (W)</td><td>4.675</td><td>7.240</td><td>19.836</td><td>6.224</td><td>37.974</td></tr></table>

# 1.5 Block Diagram

![This flowchart illustrates the architecture of a motherboard chipset.\n\n**Top Level:**\n*   **CPU** (Core™2 Quad/Duo, Celeron®, LGA775 package, 800/1066/1333 MHz FSB) connects via a double arrow labeled **800/1066/1333 MHz FSB** to the **Northbridge**.\n\n**Northbridge Level:**\n*   **Northbridge** (Intel® Q45 GMCH) connects to:\n    *   **CRT** (DB-15) via a single line.\n    *   **PCI Express x16** via a double arrow.\n    *   **DIMM x2** (DDR3 800/1066 MHz) via two double arrows labeled **DDR Channel A** and **DDR Channel B**.\n    *   **Southbridge** via a double arrow labeled **DMI Interface 2 GB/s**.\n\n**Southbridge Level:**\n*   **Southbridge** (Intel® ICH10) connects to:\n    *   **JMicron JM20330 SATA to IDE Controller** via a double arrow.\n    *   **SATA ports x4** (Onboard x2, Backplane x2) via a double arrow.\n    *   **USB 2.0** (Bracket x1, Onboard x4, Backplane x4) via a double arrow.\n    *   **PCI Express x4** via a double arrow.\n    *   **PCIe x1** leading to **Intel 82574L RJ-45** via a double arrow.\n    *   **PCIe x1** leading to **Intel 82573L RJ-45 (DV only)** via a double arrow.\n    *   **PCI Bus** leading to **PCI 32-bit/33MHz** via a double arrow.\n    *   **ITE IT8718 LPC Super I/O** via a double arrow labeled **LPC**.\n\n**Peripheral/Controller Level:**\n*   **ITE IT8718 LPC Super I/O** connects to:\n    *   **TPM** (DV only) via a double arrow.\n    *   **KB/Mouse** via a single line.\n    *   **LPT/FDD** via a single line.\n    *   **RS-232** via a single line.\n    *   **RS-232/422/485/485+** via a single line.\n    *   **Hardware Monitor** via a single line.\n\n**Other Connections:**\n*   **HD Codec** (internal to Southbridge) connects to **Header for DB-Audio2**.\n*   **SPI** (internal to Southbridge) connects to **SPI BIOS**.](.nupro-e320-50-13063-1010-202/7c5f0d072dc8e471f2ea726d1582ce0c3f0fdaa8206bf3d28a7ba358b87b7ec7.jpg)

Figure 1-1: NuPRO-E320 Block Diagram

# 1.6 Functional Description

# Processor Support

The NuPRO-E320 is a single processor design for the latest Intel Yorkfield/Wolfdale/Conroe Processor family, starting from 1.8 GHz core frequency up to 3.0 GHz. With one LGA775 socket, the CPU connects with the Intel® Q45 MCH through the 800/1066/1333 MHz Front Side Bus (FSB).

# Intel® Q45 + ICH10 Express chipset

The Intel® Q45 Express chipset provides the vital interfaces for the SHB. The Intel® Q45 comes with purpose-built capabilities designed specifically to address the key needs of the industrial computing environment and delivers improved system performance and comes with the integrated Intel® Graphics Media Accelerator 4500 engine for cost-effective system building. The chipset also supports high-bandwidth interfaces including PCI Express, Serial ATA, and USB 2.0, as well as dual-channel DDR3 system memory.

# Intel® Graphics Media Accelerator 4500

The Intel® Graphics Media Accelerator (GMA) 4500 revolutionizes integrated graphics with new capabilities that provide significant increase in graphics performance. With support for DirectX 10 hardware acceleration, Shader Model 4.0 and OpenGL 2.0, the Intel GMA 4500 delivers excellent video and 3D graphics for a cost-effective and high-performance graphics solution.

# Dual-channel DDR3 memory

To meet the requirements of memory-intensive applications, the NuPRO-E320 has a dual-channel memory architecture supporting DDR3 800/1066 MHz DIMMs. The key advantages of DDR3 are the higher bandwidth and the increase in performance at lower power than DDR2. DDR3 memory technology meets the requirements of the latest 3D graphics, multimedia, and network application, and boosts system performance by eliminating bottlenecks.

# Gigabit Ethernet

The NuPRO-E320 uses two Intel® 82574L Gigabit Ethernet controllers (NuPRO-E320LV supports 1x LAN only) connected to the PCI-E x1 bus of the ICH10. Operation at data rates of 10/100/1000 Mbps, wake on LAN and PXE are supported.

# Serial ATA II technology

Storage is efficient and secure with the Serial ATA interface. Utilizing the Intel® ICH10, the NUPRO-E320 supports up to four Serial ATA devices capable of reading/writing data at up to 3 Gbps. The SATA specification improves chassis airflow via thinner and more flexible cables with lower pin count.

# Universal Serial Bus (USB) 2.0

The NUPRO-E320 incorporates the Universal Serial Bus (USB) 2.0 specification that increases peripheral connection speed from 12 Mbps (USB 1.1) to 480 Mbps. USB 2.0 is backward compatible with USB 1.1.

# Hardware monitoring

A built-in, proactive hardware monitoring system in the ASIC monitors the CPU temperature, system fan rotations, and voltage levels to prevent overheating and/or component damage, effect timely failure detection, and ensure stable supply of current for critical components.

# Watchdog Timer

The watchdog timer (WDT) monitors system operations based on user-defined configurations. The WDT can be programmed for different time-out periods, such as from 1 to 255 seconds or from 1 to 255 minutes. The WDT generates a reset signal, then a reset request, after failure to strobe it within the programmed time period. A register bit may be enabled to indicate if the watchdog timer caused the reset event. The WDT register is cleared during the power-on sequence to enable the operating system to take appropriate action when the watchdog generates a reboot.

# Trusted Platform Module

The NuPRO-E320 optionally supports TPM ver. 1.2 (Trusted Platform Module) for secure storage of keys, passwords and digital certificates. Systems supporting TPM offer improved hardware-based security in numerous applications, such as file and folder encryption, local password management, S-MIME e-mail, VPN and PKI authentication and wireless authentication for 802.1x and LEAP.

# 1.7 Mechanical Drawing

![126,39\n111\n33,94\n6\n6,5\n116,7\n338,1\n216,90\n4,92\n20,59\n123,09\n20,32\nDimensions in mm](.nupro-e320-50-13063-1010-202/4f165f1e4416437ad66103bb03a26cba894a0bce150aa1def87a05c470bf6dd6.jpg)

Figure 1-2: NuPRO-E320 Board Dimensions

# 1.8 I/O Connectivity

<table><tr><td>I/O</td><td>Bracket</td><td>Onboard</td><td>Golden Finger</td><td>Remarks</td></tr><tr><td>USB Rear Panel</td><td>1</td><td>—</td><td>—</td><td></td></tr><tr><td>VGA</td><td>Y</td><td>—</td><td>—</td><td>DB-15</td></tr><tr><td>GbE1 (RJ-45)</td><td>Y</td><td>—</td><td>—</td><td>Act/Link/Speed LEDs</td></tr><tr><td>GbE2 (RJ-45)</td><td>Y(DV only)</td><td>—</td><td>—</td><td>Act/Link/Speed LEDs</td></tr><tr><td>PS/2 KB/MS</td><td>Y</td><td>—</td><td>—</td><td>—</td></tr><tr><td>KB header</td><td>—</td><td>Y</td><td>—</td><td>—</td></tr><tr><td>USB headers</td><td>—</td><td>4</td><td>—</td><td>2.54 pitch</td></tr><tr><td>USB backplane</td><td>—</td><td>—</td><td>4</td><td>—</td></tr><tr><td>COM1/2</td><td>—</td><td>Y</td><td>—</td><td>2.54 pitch</td></tr><tr><td>Parallel port</td><td>—</td><td>Y</td><td>—</td><td>—</td></tr><tr><td>IDE</td><td>—</td><td>Y</td><td>—</td><td>—</td></tr><tr><td>Floppy port</td><td>—</td><td>Y</td><td>—</td><td>—</td></tr><tr><td>SATA</td><td>—</td><td>2</td><td>2</td><td>—</td></tr><tr><td>PCIe x4</td><td>—</td><td>—</td><td>Y</td><td>—</td></tr><tr><td>PCIe x16</td><td>—</td><td>—</td><td>Y</td><td>—</td></tr><tr><td>PCI 32bit/33MHz</td><td>—</td><td>—</td><td>Y</td><td>—</td></tr></table>

# 1.9 Package Contents

Before unpacking, check the shipping carton for any damage. If the shipping carton and/or contents are damaged, inform your dealer immediately. Retain the shipping carton and packing materials for inspection. Obtain authorization from the dealer before returning any product to ADLINK.

▶ NuPRO-E320
▶ PS/2 Y cable x1
▶ SATA cable x2
▶ SATA Power cable x1
▶ IDE cable x1
▶ Floppy cable x1
▶ 2-port USB cable with bracket x1
▶ COM+Print cable with bracket x1
▶ COM cable with bracket x1
▶ ADLINK All-in-One Driver DVD
▶ User's manual

![The image shows a warning sign featuring a maroon triangle pointing upward with a large white exclamation point in the center. Below the triangle, the text 'WARNING:' is written in black, uppercase letters.](.nupro-e320-50-13063-1010-202/a48939ff636a42b4e0b1bbfdf1d8db8d9bbcad60d3b014785748668093b01101.jpg)

The NuPRO-E320 must be protected from static discharge and physical shock. Never remove any of the socketed parts except at a static-free workstation. Use the anti-static bag shipped with the product to handle the board. Wear a grounded wrist strap when installing and/or servicing.

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# 2 Hardware Information

This chapter provides information on the NuPRO-E320 board layout, connector pin assignments, and jumper settings.

# 2.1 Rear Panel I/O Ports

![Diagram of an Ethernet cable connector with labeled ports and connectors](.nupro-e320-50-13063-1010-202/e066589a777ed69c141b121d2aee71e824c314fdaa64a82e7b874c261215cd37.jpg)

Figure 2-1: Rear Panel I/O Ports

<table><tr><td></td><td>Connector</td><td>Description</td></tr><tr><td>1</td><td>PS/2 KB/MS port</td><td>Connects PS/2 mouse and keyboard via Y cable</td></tr><tr><td>2</td><td>Gigabit LAN1 port (RJ-45)</td><td>Gigabit Ethernet connection</td></tr><tr><td>3</td><td>Gigabit LAN2 port (RJ-45)</td><td>Gigabit Ethernet connection (not supported on NuPRO-E320LV)</td></tr><tr><td>4</td><td>VGA port</td><td>DB-15 connector for CRT or LCD monitor</td></tr><tr><td>5</td><td>USB 2.0 port</td><td>High-speed USB 2.0 port</td></tr></table>

# PS/2 Keyboard/Mouse Port

![5\n4\n3\n2 1](.nupro-e320-50-13063-1010-202/c275640c359f48e6bd40842e5a14d9c3cf6c434ae1d8def0f28495df9eade6f7.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Function</td></tr><tr><td>1</td><td>KBDAT</td><td>Keyboard Data</td></tr><tr><td>2</td><td>MSDAT</td><td>Mouse Data</td></tr><tr><td>3</td><td>GND</td><td>Ground</td></tr><tr><td>4</td><td>KBMS5V</td><td>Power</td></tr><tr><td>5</td><td>KBCLK</td><td>Keyboard Clock</td></tr><tr><td>6</td><td>MSCLK</td><td>Mouse Clock</td></tr></table>

# LAN (RJ-45) Ports

LED1 LED2
![8\n1](.nupro-e320-50-13063-1010-202/41b7806a5df9d053c9f9d835c0eb57d1cfa579836ac3e3825afb169f29765c90.jpg)

<table><tr><td>Pin #</td><td>10BASE-T/100BASE-TX</td><td>1000BASE-T</td></tr><tr><td>1</td><td>TX+</td><td>BI_DA+</td></tr><tr><td>2</td><td>TX-</td><td>BI_DA-</td></tr><tr><td>3</td><td>RX+</td><td>BI_DB+</td></tr><tr><td>4</td><td>--</td><td>BI_DC+</td></tr><tr><td>5</td><td>--</td><td>BI_DC-</td></tr><tr><td>6</td><td>RX-</td><td>BI_DB-</td></tr><tr><td>7</td><td>--</td><td>BI_DD+</td></tr><tr><td>8</td><td>--</td><td>BI_DD-</td></tr></table>

Refer to the table below for the LAN port LED definitions.

<table><tr><td colspan="2">LED1</td><td colspan="2">LED2</td></tr><tr><td>Status</td><td>Description</td><td>Status</td><td>Description</td></tr><tr><td>Off</td><td>No Link</td><td>Off</td><td>10 Mb connection</td></tr><tr><td>On</td><td>Linked</td><td>Green</td><td>100 Mb connection</td></tr><tr><td>Blinking</td><td>Data Activity</td><td>Amber</td><td>1 Gb connection</td></tr></table>

# USB Connector

![1\n2\n3\n4](.nupro-e320-50-13063-1010-202/1e487aadfe9bf356cf264ae2e6f5dbebc5f8dd65649b768f84b5fcc3b5d60b7c.jpg)

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>Vcc</td></tr><tr><td>2</td><td>Data-</td></tr><tr><td>3</td><td>Data+</td></tr><tr><td>4</td><td>GND</td></tr></table>

# VGA Port

![10\n5\n15\n11\n6\n1](.nupro-e320-50-13063-1010-202/b6c48255027973f2ed65904fe537cd683a29f6ccda5447760fa9f814df529bc9.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Red</td></tr><tr><td>2</td><td>Green</td></tr><tr><td>3</td><td>Blue</td></tr><tr><td>4</td><td>NC</td></tr><tr><td>5</td><td>Ground</td></tr><tr><td>6</td><td>Ground</td></tr><tr><td>7</td><td>Ground</td></tr><tr><td>8</td><td>Ground</td></tr><tr><td>9</td><td>+5 V</td></tr><tr><td>10</td><td>Ground</td></tr><tr><td>11</td><td>NC</td></tr><tr><td>12</td><td>DDC DAT</td></tr><tr><td>13</td><td>HSYNC</td></tr><tr><td>14</td><td>VSYNC</td></tr><tr><td>15</td><td>DDC CLK</td></tr></table>

# 2.2 Board Layout

The illustrations below show the locations of connectors, slots, and jumpers on the NuPRO-E320.

![1 2 3\n4\n5 6 7 8 9 10\n16\n17\n13\n14\n15\n11\n19 18 12](.nupro-e320-50-13063-1010-202/d071fb15c21e20c1e1d0c2375bdf6ebb8bae1eb02afadd1e9c58c21bbd40470b.jpg)

Figure 2-2: Connectors and Jumpers

<table><tr><td></td><td>Connector</td><td>Description</td></tr><tr><td>1</td><td>FAN1</td><td>CPU Fan connector</td></tr><tr><td>2</td><td>CN4</td><td>ATX 12V Power connector</td></tr><tr><td>3</td><td>CN1</td><td>System Panel pin header</td></tr><tr><td>4</td><td>DIMM1/2</td><td>DDR3 DIMM slots</td></tr><tr><td>5</td><td>FAN2</td><td>System Fan connector</td></tr><tr><td>6</td><td>CN2</td><td>Parallel Port connector</td></tr><tr><td>7</td><td>CN5</td><td>IDE connector</td></tr><tr><td>8</td><td>CN3</td><td>Floppy connector</td></tr><tr><td>9</td><td>CN6</td><td>COM2 connector</td></tr><tr><td>10</td><td>CN7</td><td>COM1 connector</td></tr><tr><td>11</td><td>JP1-4</td><td>COM1 mode jumpers</td></tr><tr><td>12</td><td>CN18</td><td>Keyboard connector</td></tr><tr><td>13</td><td>CN11</td><td>Audio connector</td></tr><tr><td>14</td><td>CN14</td><td>USB 6, 7</td></tr><tr><td>15</td><td>CN15</td><td>USB 8, 9</td></tr><tr><td>16</td><td>CN8</td><td>SATA1</td></tr><tr><td>17</td><td>CN10</td><td>SATA2</td></tr><tr><td>18</td><td>JP6</td><td>Chassis Intrusion</td></tr><tr><td>19</td><td>JBAT1</td><td>Clear CMOS</td></tr></table>

# 2.3 Onboard Connectors

# System Panel Connector (CN1)

Connects to chassis-mounted buttons, speakers, and LEDs.

![1\n□ □\n□ □\n□ □\n□ □\n□ □\n□ □\n□ □\n□ □\n□ □\n□ □\n10\n20\n11](.nupro-e320-50-13063-1010-202/556a55f9d0d87f98091d2daf5354da53f6d87eb272b42394367f699d107ed826.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Function</td><td>Pin Group</td></tr><tr><td>1</td><td>WDSPK</td><td>Speaker signal</td><td rowspan="4">Chassis Speaker</td></tr><tr><td>2</td><td>NC</td><td></td></tr><tr><td>3</td><td>NC</td><td></td></tr><tr><td>4</td><td>+5V</td><td>Power</td></tr><tr><td>5</td><td>NC</td><td></td><td></td></tr><tr><td>6</td><td>GND</td><td>Ground</td><td rowspan="2">Key Lock</td></tr><tr><td>7</td><td>KEYLOCK</td><td>Keyboard lock</td></tr><tr><td>8</td><td>PLED</td><td>Power LED signal</td><td rowspan="3">Power LED</td></tr><tr><td>9</td><td>NC</td><td></td></tr><tr><td>10</td><td>+5V</td><td>Power LED pull-up</td></tr><tr><td>11</td><td>GND</td><td>Ground</td><td rowspan="2">Reset Button</td></tr><tr><td>12</td><td>RESETBT</td><td>RESET signal</td></tr><tr><td>13</td><td>NC</td><td></td><td></td></tr><tr><td>14</td><td>GND</td><td>Ground</td><td rowspan="2">Power Button</td></tr><tr><td>15</td><td>POWERBT</td><td>Power-on signal</td></tr><tr><td>16</td><td>NC</td><td></td><td></td></tr><tr><td>17</td><td>NC</td><td></td><td></td></tr><tr><td>18</td><td>HDDLED</td><td>Hard Disk LED signal</td><td rowspan="2">HDD LED</td></tr><tr><td>19</td><td>+3.3V</td><td>Hard Disk LED pull-up</td></tr><tr><td>20</td><td>NC</td><td></td><td></td></tr></table>

# Parallel Port Connector (CN2)

![1\n2](.nupro-e320-50-13063-1010-202/9a1791a4ed54341f6b30e5c6adc55d43e529e884acd94e318bd477c608350db3.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Line Printer Strobe</td><td>2</td><td>Auto-Feed</td></tr><tr><td>3</td><td>Parallel Data 0</td><td>4</td><td>Error</td></tr><tr><td>5</td><td>Parallel Data 1</td><td>6</td><td>Initialize</td></tr><tr><td>7</td><td>Parallel Data 2</td><td>8</td><td>Select</td></tr><tr><td>9</td><td>Parallel Data 3</td><td>10</td><td>Ground</td></tr><tr><td>11</td><td>Parallel Data 4</td><td>12</td><td>Ground</td></tr><tr><td>13</td><td>Parallel Data 5</td><td>14</td><td>Ground</td></tr><tr><td>15</td><td>Parallel Data 6</td><td>16</td><td>Ground</td></tr><tr><td>17</td><td>Parallel Data 7</td><td>18</td><td>Ground</td></tr><tr><td>19</td><td>Acknowledge</td><td>20</td><td>Ground</td></tr><tr><td>21</td><td>Busy</td><td>22</td><td>Ground</td></tr><tr><td>23</td><td>Paper Empty</td><td>24</td><td>Ground</td></tr><tr><td>25</td><td>Select</td><td>26</td><td>NC</td></tr></table>

# Floppy disk drive connector (CN3)

![1\n2\n33\n34](.nupro-e320-50-13063-1010-202/2601217b287e55c6398358c8e0a3e5251600893e86cdb1592b5811f018cd6ef0.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>GND</td><td>2</td><td>Extended Density</td></tr><tr><td>3</td><td>GND</td><td>4</td><td>No Connect</td></tr><tr><td>5</td><td>NC</td><td>6</td><td>NC</td></tr><tr><td>7</td><td>GND</td><td>8</td><td>Index</td></tr><tr><td>9</td><td>GND</td><td>10</td><td>Motor A Select</td></tr><tr><td>11</td><td>GND</td><td>12</td><td>NC</td></tr><tr><td>13</td><td>GND</td><td>14</td><td>Drive A Select</td></tr><tr><td>15</td><td>GND</td><td>16</td><td>NC</td></tr><tr><td>17</td><td>GND</td><td>18</td><td>Step Direction</td></tr><tr><td>19</td><td>GND</td><td>20</td><td>Step Pulse</td></tr><tr><td>21</td><td>GND</td><td>22</td><td>Write Data</td></tr><tr><td>23</td><td>GND</td><td>24</td><td>Write Gate</td></tr><tr><td>25</td><td>GND</td><td>26</td><td>Track 0</td></tr><tr><td>27</td><td>GND</td><td>28</td><td>Write Protect</td></tr><tr><td>29</td><td>NC</td><td>30</td><td>Read Data</td></tr><tr><td>31</td><td>GND</td><td>32</td><td>FDD Head Select</td></tr><tr><td>33</td><td>NC</td><td>34</td><td>Disk Change</td></tr></table>

# ATX 12V Power Connector (CN4)

![2\n1\n4\n3](.nupro-e320-50-13063-1010-202/fffa4a556151b9cbdabfb44add6b9bf236f4925f1ecb3e19aa7cc3b31f3afead.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>GND</td></tr><tr><td>2</td><td>GND</td></tr><tr><td>3</td><td>+12V DC</td></tr><tr><td>4</td><td>+12V DC</td></tr></table>

# IDE Connector (CN5)

![1\n2\n39\n40](.nupro-e320-50-13063-1010-202/cbcba73c4496a109129fc6301574d409feb1581e8195f371d2d2f3f2abde65e6.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Reset IDE</td><td>2</td><td>Ground</td></tr><tr><td>3</td><td>Host data 7</td><td>4</td><td>Host data 8</td></tr><tr><td>5</td><td>Host data 6</td><td>6</td><td>Host data 9</td></tr><tr><td>7</td><td>Host data 5</td><td>8</td><td>Host data 10</td></tr><tr><td>9</td><td>Host data 4</td><td>10</td><td>Host data 11</td></tr><tr><td>11</td><td>Host data 3</td><td>12</td><td>Host data 12</td></tr><tr><td>13</td><td>Host data 2</td><td>14</td><td>Host data 13</td></tr><tr><td>15</td><td>Host data 1</td><td>16</td><td>Host data 14</td></tr><tr><td>17</td><td>Host data 0</td><td>18</td><td>Host data 15</td></tr><tr><td>19</td><td>Ground</td><td>20</td><td>NC</td></tr><tr><td>21</td><td>DRQ0 / DRQ1</td><td>22</td><td>IDE Detect</td></tr><tr><td>23</td><td>Host IOW</td><td>24</td><td>Ground</td></tr><tr><td>25</td><td>Host IOR</td><td>26</td><td>Ground</td></tr><tr><td>27</td><td>IOCHRDY</td><td>28</td><td>Ground</td></tr><tr><td>29</td><td>DDACK-L</td><td>30</td><td>Ground</td></tr><tr><td>31</td><td>IRQ</td><td>32</td><td>NC</td></tr><tr><td>33</td><td>Address 1</td><td>34</td><td>NC</td></tr><tr><td>35</td><td>Address 0</td><td>36</td><td>Address 2</td></tr><tr><td>37</td><td>Chip select 0</td><td>38</td><td>Chip select 1</td></tr><tr><td>39</td><td>Activity</td><td>40</td><td>Ground</td></tr></table>

# COM2/COM1 Connector (RS-232) (CN6/7)

![2\n10\n□ □ □ □\n□ □ □ □\n1\n9](.nupro-e320-50-13063-1010-202/0ea10fb2ea5133b4210158bfcdba400274ab9aa53b3e0775d7a48a94c06fe8ea.jpg)

<table><tr><td>Pin #</td><td>RS-232 Signal</td></tr><tr><td>1</td><td>DCD</td></tr><tr><td>2</td><td>DSR</td></tr><tr><td>3</td><td>RXD</td></tr><tr><td>4</td><td>RTS</td></tr><tr><td>5</td><td>TXD</td></tr><tr><td>6</td><td>CTS</td></tr><tr><td>7</td><td>DTR</td></tr><tr><td>8</td><td>RI</td></tr><tr><td>9</td><td>GND</td></tr><tr><td>10</td><td>NC</td></tr></table>

# COM1 Connector (RS-422/485/485+) (CN7)

![2\n10\n1\n9](.nupro-e320-50-13063-1010-202/4cca3cd909f93586662a5ccfa971a670dc741f7aea06aa6d127729ab36e6aeb2.jpg)

<table><tr><td>Pin #</td><td>RS-422/485+</td><td>RS-485</td></tr><tr><td>1</td><td>TXD-</td><td>Data-</td></tr><tr><td>2</td><td>NC</td><td>NC</td></tr><tr><td>3</td><td>TXD+</td><td>Data+</td></tr><tr><td>4</td><td>NC</td><td>NC</td></tr><tr><td>5</td><td>RXD+</td><td>NC</td></tr><tr><td>6</td><td>NC</td><td>NC</td></tr><tr><td>7</td><td>RXD-</td><td>NC</td></tr><tr><td>8</td><td>NC</td><td>NC</td></tr><tr><td>9</td><td>GND</td><td>GND</td></tr><tr><td>10</td><td>NC</td><td>NC</td></tr></table>

Note: See “COM1 Mode Jumper Settings (JP1-4)” on page 26.

# Serial ATA Connectors (CN8/10)

![1\n7](.nupro-e320-50-13063-1010-202/e31c0f60004ae383600c478e9486ebddf40ee888fc1e3285c602ef0df5e93973.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>GND</td></tr><tr><td>2</td><td>TXP</td></tr><tr><td>3</td><td>TXN</td></tr><tr><td>4</td><td>GND</td></tr><tr><td>5</td><td>RXN</td></tr><tr><td>6</td><td>RXP</td></tr><tr><td>7</td><td>GND</td></tr></table>

# HD Audio Daughter Board Connector (CN11)

![2\n10\n1\n9](.nupro-e320-50-13063-1010-202/e90d0de2363dd28920179bbc7fef0b049614819e086a988f5f4f319b2bbb1533.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Function</td></tr><tr><td>1</td><td>GND</td><td>Ground</td></tr><tr><td>2</td><td>AUD_BCLK</td><td>Audio Clock</td></tr><tr><td>3</td><td>GND</td><td>Ground</td></tr><tr><td>4</td><td>ICH_AUD_SDIN1</td><td>Audio Data Input</td></tr><tr><td>5</td><td>P5V</td><td>+ 5V</td></tr><tr><td>6</td><td>ICH_AUD_SDOUT</td><td>Audio Data Output</td></tr><tr><td>7</td><td>P5V_AUD</td><td>+ 5V</td></tr><tr><td>8</td><td>P3V3_DVDD</td><td>3.3V</td></tr><tr><td>9</td><td>AUD_SYNC</td><td>Audio Synchronous</td></tr><tr><td>10</td><td>AUD_RST-L</td><td>Audio Reset</td></tr></table>

![The image displays a white document icon featuring horizontal lines and a folded top-right corner. A large red checkmark is superimposed diagonally across the center of the document.](.nupro-e320-50-13063-1010-202/dc87f57d1025412c67377986323478e75dce5903265817c176c127dea4274800.jpg)
NOTE:

This connector is designed for use with the ADLINK DB-Audio2 daughter board.

# USB 2.0 Connectors (CN14/15)

![2\n10\n1](.nupro-e320-50-13063-1010-202/193624d0a5c6ff385942bd6a71d52dfb029d102c6ae7e308d6225edb72083458.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>+5V</td><td>2</td><td>+5V</td></tr><tr><td>3</td><td>USB0-</td><td>4</td><td>USB1-</td></tr><tr><td>5</td><td>USB0+</td><td>6</td><td>USB1+</td></tr><tr><td>7</td><td>GND</td><td>8</td><td>GND</td></tr><tr><td>9</td><td>Key</td><td>10</td><td>NC</td></tr></table>

# External Keyboard Connector (CN18)

![The image shows a simple line drawing. In the upper left corner, the number '1' is visible. Below the number is a rectangular diagram. On the upper right edge of the rectangle is a small rectangular shape. Inside the main rectangle, a horizontal line divides the space. Below this line, five small squares are arranged horizontally in a row.](.nupro-e320-50-13063-1010-202/7f2236dc3f580a08e5c803f44b10063b695f9f7696267ee7b11b5c542dcce487.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Function</td></tr><tr><td>1</td><td>KBCLK</td><td>Keyboard clock</td></tr><tr><td>2</td><td>KBDATA</td><td>Keyboard data</td></tr><tr><td>3</td><td>NC</td><td>—</td></tr><tr><td>4</td><td>GND</td><td>Power</td></tr><tr><td>5</td><td>+5 V</td><td>Power</td></tr></table>

# CPU Fan Connector (FAN1)

![The image displays a black-and-white line drawing, likely a schematic or diagram from a manual. In the center is a large rectangle with rounded corners. Inside this rectangle, there are four small, empty squares arranged in a horizontal row on the left side. Above these squares, in the upper right section of the box, is a larger, empty rectangular shape. Flanking the central diagram are the numbers '4' on the far left and '1' on the far right.](.nupro-e320-50-13063-1010-202/70b5e1eba2eb828ca37d1b95c5e9af28dcde71425e22d0e7452027714d39d60a.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>GND</td></tr><tr><td>2</td><td>Fan power (+12V)</td></tr><tr><td>3</td><td>Fan Tachometer</td></tr><tr><td>4</td><td>Fan Speed Control</td></tr></table>

# System Fan Connector (FAN2)

![The image displays the number '1' on the left and the number '3' on the right. Between these numbers is a black line drawing of a rectangular shape. Inside the rectangle, a horizontal line divides the top section, and below it are three small squares arranged horizontally in a row.](.nupro-e320-50-13063-1010-202/c74d2a883d86c64129d6485b1d8cf9231abc78ea0a709b10c67246dceaeb1555.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Fan Sense</td></tr><tr><td>2</td><td>Fan power (+12V)</td></tr><tr><td>3</td><td>GND</td></tr></table>

# Chassis Intrusion Connector (JP6)

This header is connected to the chassis intrusion sensor to detect if the case is opened.

![The image displays a black rectangular outline containing two geometric shapes side-by-side on a white background. On the left is a square bisected by a diagonal line running from the top-left corner to the bottom-right corner. On the right is a circle.](.nupro-e320-50-13063-1010-202/3b88a371d4a6141b6fe54d9d1984ef5db63871f2e8b25b5585abd8329286c585.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>CASEOPEN#</td></tr><tr><td>2</td><td>GND</td></tr></table>

# 2.4 Jumpers

# Clear CMOS (JBAT1)

The CMOS RAM data contains the date / time and BIOS setting information. CMOS is powered by the onboard button cell battery. To erase the CMOS RAM data:

1. Power down and disconnect power from the system.
2. Short pins 2-3 on JP1.
3. Reconnect power and power up the system.
4. After power up, remove the jumper cap from pins 2-3 and reinstall it to pins 1-2.

<table><tr><td>RTC status</td><td>Connection</td><td>JBAT1</td></tr><tr><td>Normal</td><td>1 – 2</td><td>&lt;img src="images/0cf1a8376fb7c91cecff00c10c7cf05328d761740ae8f1178280fefb70a01a60.jpg"/&gt;</td></tr><tr><td>Clear CMOS</td><td>2 – 3</td><td>&lt;img src="images/f07387b3c9cd726f55a9a432320782e404c9df73db8f3adbf90d7ade5cbdf415.jpg"/&gt;</td></tr></table>

# COM1 Mode Jumper Settings (JP1-4)

Short the jumper pins according to the following settings to set COM1 to RS-232/422/485/485+ mode:

![The image features three black shapes resembling the number '8' arranged horizontally in the center. In the corners, the number '5' is in the top left, '1' is in the top right, '6' is in the bottom left, and '2' is in the bottom right.](.nupro-e320-50-13063-1010-202/398a358612bf807afbfdf4341a3328ad99f10bfb012890673982cdf575afca4d.jpg)

<table><tr><td></td><td>RS-232</td><td>RS-422</td><td>RS-485</td><td>RS-485+</td></tr><tr><td>JP1</td><td>-</td><td>1-3, 2-4</td><td>1-3, 2-4</td><td>3-5, 4-6</td></tr><tr><td>JP2</td><td>1-2</td><td>3-4</td><td>5-6</td><td>5-6</td></tr><tr><td>JP3</td><td>1-3, 2-4</td><td>3-5, 4-6</td><td>3-5, 4-6</td><td>3-5, 4-6</td></tr><tr><td>JP4</td><td>1-3, 2-4</td><td>3-5, 4-6</td><td>3-5, 4-6</td><td>3-5, 4-6</td></tr></table>

# 3 Getting Started

This chapter provides information on how to install components on the NuPRO-E320 SHB.

# 3.1 Installing the CPU

The NuPRO-E320 supports a single Intel® Core™2 Quad/Duo, Pentium® D, or Celeron® M processor via the surface mount LGA775 socket (Socket T).

![The image displays a maroon triangle containing a white exclamation mark in the center. Directly below the triangle, the word 'WARNING' is printed in black capital letters.](.nupro-e320-50-13063-1010-202/ca14f421b59b1b0ba1b1686185af2c5254fb89339533f32974031bc40bf87a47.jpg)

Disconnect all power supply to the board before installing a CPU to prevent damaging the board and CPU.

Do not touch socket contacts. Damaging the contacts voids the product warranty. Follow the installation instructions carefully to avoid damaging to motherboard components.

![Close-up of a CPU socket with a red prohibition symbol overlay (no text or symbols on the socket itself)](.nupro-e320-50-13063-1010-202/607f42f34a51e3f0e6282a556d92fc6f1375e51524d31441bcb1186f3e9c410d.jpg)

# To install the CPU:

1. Press the load lever (A), then disengage it from the retention tab (B).

![A\nB](.nupro-e320-50-13063-1010-202/5cdc70fb3a9d9d1642b17b47752c5ac7c2d4ce9d9a6f2620cd663a46819a16c0.jpg)

2. Lift and rotate the load lever to a $135^{\circ}$ angle

![Close-up of a mechanical component with red curved arrows indicating motion or force, no visible text or symbols](.nupro-e320-50-13063-1010-202/74d782ea18897dafc6d8b81db966608fd1680aa58e56bdf8460ced40058e734d.jpg)

3. Lift the load plate to a $100^{\circ}$ angle using your thumb and forefinger

![Close-up of a hand holding an open computer processor with a red curved arrow indicating the component (no text or symbols visible)](.nupro-e320-50-13063-1010-202/088f7184ada7bb137d83e67ea83c69b251d259dcdddaefbd455ba445e57b3e14.jpg)

4. Use your thumb to push and remove the protective socket cover (plastic) from the load plate

![Close-up of a hand holding an open CPU socket with a red arrow pointing to its interior (no text or symbols visible)](.nupro-e320-50-13063-1010-202/b256faf8b106646b460201c89e33f2a039410d224b37fbedec4246eaedbc2edc.jpg)

5. Position the CPU over the socket, then match the notches on the CPU side with the alignment keys on the socket. The golden triangle on the CPU must be positioned on the bottom-left corner of the socket.

![Notch\nGolden triangle\nAlignment key](.nupro-e320-50-13063-1010-202/4e37c900775ba194cbb38ad6ad6053b38a749b3c99c714bcefcc826e75dd09b5.jpg)

![The image displays a standard warning symbol featuring a red triangle with a white border containing a black exclamation point in the center. Directly beneath the triangle is a white rectangular box containing the word 'WARNING' in black, uppercase letters.](.nupro-e320-50-13063-1010-202/aa13edc0bf3ca9a397f3234cf3dc64d55c0f030b925bf5289212fe97a99f31d4.jpg)

The CPU fits the socket in only one orientation. DO NOT force it into the socket to avoid damaging it.

6. Carefully place the CPU on the socket in a vertical motion. The socket has tabs that accommodate your fingers during installation.

![Socket tab](.nupro-e320-50-13063-1010-202/627b4ff937ab03d78ee3314b9dcc40cb20a3baeb2789a7b7293d9b632691c0d9.jpg)

7. Close the load plate (A), then fasten the load lever on the retention tab (B).

![Close-up of a computer processor with red arrows indicating internal components (no text or symbols)](.nupro-e320-50-13063-1010-202/290778f9a4c26ca2c29703957f6e59e25147df18413ee28a6a7d4c87f6471e00.jpg)

# 3.2 Installing the CPU Fan and Heatsink

![A yellow triangular warning sign with a black border containing a large black exclamation point in the center, with the word 'CAUTION:' printed in black capital letters directly below it.](.nupro-e320-50-13063-1010-202/6a27e62997dc4fe74fa93e1277d14300c9c56c148c30db0b41a021272f81c8ac.jpg)

The CPU requires a chassis with an airflow inlet and maximum internal ambient temperature of $60^{\circ}$ C. A especially-designed CPU fan and heatsink must be installed before using the SHB. Failure to install a CPU fan and heatsink may damage the system host board and/or the CPU.

The following CPU fan and heatsink assemblies are recommended for use with the NuPRO-E320:

![Close-up of a computer cooling fan with heatsink and copper base (no visible text or symbols)](.nupro-e320-50-13063-1010-202/511d2cd0d1deb7b96a3c0df6ebc12a66c3d30b304317f402694bcee9ff1fcb2f.jpg)

# 1U LGA 775 CPU Cooler

Dimensions:

• Heatsink: 92 x 87.6 x 28 mm
• Fan: 75 x 75 x 15 mm

Heatsink: Copper base + copper skived fin

Fan speed: 5500 RPM

Fan airflow: 10.48 CFM

Noise level: 51 dBA

Part number: 32-20065-0000

![Close-up of a black CPU fan with heatsink and cooling fins (no visible text or symbols)](.nupro-e320-50-13063-1010-202/a2ff58e2d01545b06e6a71e10e244cdb29858f68b17856994e670e169c618b6d.jpg)

# 3U LGA 775 CPU Cooler

Dimensions:

• Heatsink: 100 x 100 x 70 mm
• Fan: 90 x 90 x 25 mm

Heatsink: Aluminum extrusion

Fan speed: 4500 RPM

Fan airflow: 57.7 CFM

Noise level: 47.5 dBA

Part number: 32-20058-0000 + 34-30381-0000

![Close-up of a black CPU fan with heatsink and cooling fins (no visible text or symbols)](.nupro-e320-50-13063-1010-202/fe431c9573b4671fdc5a11e0501b5376530512f4b1302b028083ee2b12a2a56b.jpg)

# Copper-Core Cooler

Dimensions: 115 x 115 x 61.4 mm

Heatsink: Aluminum extrusion+copper core

Fan speed: 4500 RPM

Fan airflow: 76.9 CFM

Noise level: 49 dBA

Part number: 32-20086-0000

When the CPU fan installation procedures presented here are inconsistent with the installation procedures you obtained from the CPU fan and heatsink package, follow the latter.

To install the CPU fan:

1. Apply thermal grease evenly on top of the installed CPU.
2. Lower the CPU fan to the CPU, then secure it using the provided attachments or screws.
3. Connect the CPU fan cable to the CPU fan connector on the SHB labeled FAN1 (see "Board Layout" on page 18).

# 3.3 Installing Memory Modules

The NuPRO-E320 supports up to 4 GB of DDR3 800/1066 MHz memory modules via four DDR3 DIMM sockets. A DDR3 module has a 240-pin footprint compared to the legacy 184-pin DDR DIMM. DDR3 modules are notched to facilitate correct installation on the DIMM sockets.

![The image displays a standard safety warning symbol consisting of a maroon triangle with a white exclamation point in the center. Below the triangle, the text 'WARNING:' is printed in black capital letters.](.nupro-e320-50-13063-1010-202/6309d710ab1edad595dbb395414a020e39c5ac620517f1829f0ebbff187bcac7.jpg)

Disconnect all power supply to the board before installing a memory module to prevent damaging the board and memory module.

# Memory Configuration Options

The NuPRO-E320 allows you to install 512 MB, 1GB and 2GB unbuffered non-ECC DDR3 DIMMs into the DIMM sockets following these configuration options:

▶ Channel A: DIMM1
Channel B: DIMM2
For dual-channel configuration, the total size of memory module installed per channel must be the same (DIMM1 = DIMM2).
It is recommended that you install DIMMs with the same CAS latency. For maximum compatibility, install memory modules with the same brand, model, and/or rating.

To install a memory module:

1. Locate the DIMM sockets on the motherboard.
2. Press the socket's retaining clips outward to unlock.

![Mechanical component with black end caps and white connectors, no visible text or symbols](.nupro-e320-50-13063-1010-202/2c1482e637ab007060e4df528544d251028d732e35ec0618f8bf5d63df0b8f94.jpg)

3. Align the memory module on the socket making sure that the notch matches the break on the socket.

![Notch\n512 Mb\nBreak](.nupro-e320-50-13063-1010-202/8f8339f30455630ec0317e99891d637de03bef9044bcd8673c306b2df02efdd1.jpg)

4. Insert the module firmly into the slot until the retaining clips snap back inwards and the module is securely seated.

![Green RAM module with black memory chips and red directional arrows indicating rotation (no text or symbols on the chip itself)](.nupro-e320-50-13063-1010-202/9749faf3a1ba9802f368519a02e812c19ce50b288b519af98a5d6b7c3ac0fcc6.jpg)

# 4 Driver Installation

This chapter provides information on how to install the NuPRO-E320 device drivers under Windows XP. The device drivers are located in the following ADLINK All-in-One DVD directories:

<table><tr><td>Chipset Driver</td><td>\NuPRO\NuPRO-E320\Chipset\</td></tr><tr><td>Display Driver</td><td>\NuPRO\NuPRO-E320\VGA\</td></tr><tr><td>LAN Driver</td><td>\NuPRO\NuPRO-E320\Ethernet\</td></tr><tr><td>TPM Driver</td><td>\NuPRO\NuPRO-E320\TPM\</td></tr><tr><td>Audio Driver</td><td>\Audio Daughter Board\DB-Audio2\</td></tr></table>

# 4.1 Intel® Q45 Express Chipset Driver

This section describes the installation of the Intel® Q45 Express chipset driver.

1. Locate the directory
X:\NuPRO\nuPRO-E320\Chipset\ from the ADLINK All-in-One DVD, select the operating system, then start the installation by double-clicking infinst\_autol.exe.
2. When the initial installation window appears, click Next to display the license agreement. When prompted, click Yes to continue.
3. Click Next on the Readme information screen to begin installing the driver.
4. When installation is complete, click Finish. Restart the system when prompted.
5. After restart, follow screen instructions to complete installation. Windows displays a found new hardware window and automatically installs the required drivers. If the New Hardware Found dialog box appears and prompts you to locate the location of the drivers, browse to the relevant directory.
6. Restart the system when prompted.

# 4.2 Display Driver

This section describes the installation of the Intel® Graphics Media Accelerator (GMA) 3000 driver.

To install the display driver:

1. Locate the display driver from the directory X:\NuPRO\nuPRO-E320\VGA\, unzip the appropriate file for your operating system, and run Setup.exe to start installation.
2. Follow the screen instructions to complete installation, then restart the system if prompted.

# 4.3 LAN Driver

Follow these instructions to install the LAN driver.

1. Locate the LAN driver from the directory X:\NuPRO\nuPRO-E320\Ethernet\, unzip the appropriate file for your operating system, and run the \*.exe file to start installation.
2. Follow the screen instructions to complete installation, then restart the system if prompted.

# 4.4 TPM Driver

Follow these instructions to install the TPM driver.

1. Locate the TPM driver from the directory X:\NuPRO\nuPRO-E320\TPM\ and run Setup.exe to start installation.
2. Follow the screen instructions to complete installation, then restart the system if prompted.

# 4.5 Audio Driver

Follow these instructions to install the audio driver for the optional DB-Audio2 daughter board.

![The image displays a standard document icon featuring a white sheet of paper with a folded top-left corner and faint horizontal lines. A large red checkmark is superimposed over the center of the document.](.nupro-e320-50-13063-1010-202/40cb5c82c14782a0973caa55b212154d88f8161ad483d0025796f256c932b586.jpg)
NOTE:

Before installing the audio driver, check the BIOS settings to make sure that audio is enabled: Chipset > South Bridge Configurations > HDA Controller (see “South Bridge Configuration” on page 67).

1. Place the ADLINK All-in-One DVD to the optical drive.
2. Locate the audio driver from the directory X:\Audio Daughter Board\DB-Audio2\, then double-click on the setup.exe file to start installation.
3. Follow the screen instructions to complete installation, then restart the system if prompted.

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# 5 BIOS Setup

The following chapter describes basic navigation for the AMIBIOS®8 BIOS setup utility.

# 5.1 Starting the BIOS

To enter the setup screen, follow these steps:

1. Power on the motherboard
2. Press the &lt; Delete &gt; key on your keyboard when you see the following text prompt:
&lt; Press DEL to run Setup &gt;
3. After you press the &lt;Delete&gt; key, the main BIOS setup menu displays. You can access the other setup screens from the main BIOS setup menu, such as Chipset and Power menus.

![American\nMegatrends\nwww.ami.com\nAMIBIOS (C) 2002 American Megatrends, Inc.\nBIOS Date: 10/08/07 12:39:39 Ver: 08.00.04\nIntel(R) Celeron(R) M Processor\nPress DEL to run Setup\nChecking NURAM..\nUSB Device(s): 2 Keyboards, 2 Mice, 1 Hub, 1 Storage Device\n1024MB OK\nAuto-Detecting Pri Master..IDE Hard Disk\nAuto-Detecting Pri Slave...ATAPI CDROM\nPri Master: 3.20 ST3B410A 007A](.nupro-e320-50-13063-1010-202/d3738192f81a51283e1815c45a34df9e9be0cd4d70c79349359e7ab9392cfc8f.jpg)

Note: In most cases, the &lt;Delete&gt; key is used to invoke the setup screen. There are several cases that use other keys, such as &lt;F1&gt;, &lt;F2&gt;, and so on.

# Setup Menu

The main BIOS setup menu is the first screen that you can navigate. Each main BIOS setup menu option is described in this user's guide.

The Main BIOS setup menu screen has two main frames. The left frame displays all the options that can be configured. "Grayed" options cannot be configured, "Blue" options can be.

The right frame displays the key legend. Above the key legend is an area reserved for a text message. When an option is selected in the left frame, it is highlighted in white. Often a text message will accompany it.

<table><tr><td colspan="7">BIOS SETUP UTILITY</td></tr><tr><td>Main</td><td>Advanced</td><td>PCIPnP</td><td>Boot</td><td>Security</td><td>Chipset</td><td>Exit</td></tr><tr><td colspan="6">System Overview</td><td rowspan="5">Use [ENTER], [TAB]or [SHIFT-TAB] toselect a field.Use [+] or [-] toconfigure system Time.</td></tr><tr><td colspan="6">AMIBIOS</td></tr><tr><td colspan="6">Version :08.00.15Build Date:04/17/09ID :NE320T09</td></tr><tr><td colspan="6">Processor</td></tr><tr><td colspan="6">Speed :255MHzCount :255</td></tr><tr><td colspan="6">System MemorySize :987MB</td><td rowspan="2">← Select Screen↑↓ Select Item+- Change FieldTab Select FieldF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="6">System Time [23:35:01]System Date [Mon 01/28/2002]</td></tr></table>

v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.

# Navigation

The BIOS setup/utility uses a key-based navigation system called hot keys. Most of the BIOS setup utility hot keys can be used at any time during the setup navigation process.

These keys include &lt;F1&gt;, &lt;F10&gt;, &lt;Enter&gt;, &lt;ESC&gt;, &lt;Arrow&gt; keys, and so on.

![Based on the provided image, here is the accurate and concise description of the flowchart:\n\n**Top Section**\n*   **Block:** 'BIOS Setup Utility'\n*   **Connection:** Arrow pointing down to text 'Screens'.\n\n**Middle Section (Screen Navigation)**\n*   **Text:** 'Screens'\n*   **Connection:** Arrow pointing down to a horizontal row of boxes.\n*   **Blocks:** 'Screen 1', 'Screen 2', 'Screen 3', 'Screen 4', 'Screen 5'.\n*   **Connections:** Double-headed arrows connect the screens horizontally (e.g., Screen 1 (-) Screen 2).\n*   **Annotation:** A box labeled 'Left and Right Keys to Select a Setup Screen' connects via a dotted arrow to this screen row.\n\n**Lower Section (Items and Fields)**\n*   **Connection:** Arrow pointing down from the screen row to text 'Items'.\n*   **Grid:** Below 'Items' is a matrix of square boxes containing the symbol '±'.\n    *   **Top Row:** Three boxes connected by double-headed arrows: (±) (-) (±) (-) (±).\n    *   **Bottom Row:** Three boxes connected by double-headed arrows: (±) (-) (±) (-) (±).\n    *   **Vertical Connection:** A downward arrow and an upward arrow connect the top and bottom rows.\n*   **Left Annotation:** Text 'Fields' is connected via a bracket to the left side of the grid.\n*   **Right Annotation:** Text 'Up and Down Keys to Select a Setup Item' connects via a dotted arrow to the vertical arrows.\n\n**Additional Annotations**\n*   **Left:** Text 'Tab Key to Select Fields' connects via a dotted arrow to the top row of '±' boxes.\n*   **Right:** Text '± To Change Field Values' connects via a dotted arrow to the top row of '±' boxes.](.nupro-e320-50-13063-1010-202/4f927c18670b3092c40a03a808d72a3cc9eaa4e26a872ee03436c0e72868be31.jpg)

Note: There is a hot key legend located in the right frame on most setup screens.

The &lt; F8 &gt; key on your keyboard is the Fail-Safe key. It is not displayed on the key legend by default. To set the Fail-Safe settings of the BIOS, press the &lt; F8 &gt; key on your keyboard. It is located on the upper row of a standard 101 keyboard. The Fail-Safe settings allow the motherboard to boot up with the least amount of options set. This can lessen the probability of conflicting settings.

# Hotkey Descriptions

F1 The &lt; F1 &gt; key allows you to display the General Help screen.

Press the &lt; F1 &gt; key to open the General Help screen.

<table><tr><td colspan="4">General Help</td></tr><tr><td>←→</td><td>Select Screen</td><td>↓↑</td><td>Select Item</td></tr><tr><td>+-</td><td>Change Screen</td><td>Enter</td><td>Go to Sub Screen</td></tr><tr><td>PGDN</td><td>Next Page</td><td>PGUP</td><td>Previous Page</td></tr><tr><td>Home</td><td>Go to Top of the Screen</td><td>End</td><td>Go to Bottom of Screen</td></tr><tr><td>F2/F3</td><td>Change Colors</td><td>F7</td><td>Discard Changes</td></tr><tr><td>F8</td><td>Load Failsafe Defaults</td><td>F9</td><td>Load Optimal Defaults</td></tr><tr><td>F10</td><td>Save and Exit</td><td>ESC</td><td>Exit</td></tr><tr><td colspan="4">[Ok]</td></tr></table>

F10 The &lt; F10 &gt; key allows you to save any changes you have made and exit Setup. Press the &lt; F10 &gt; key to save your changes. The following screen will appear:

<table><tr><td colspan="2">Save configuration changes and exit now?</td></tr><tr><td>[Ok]</td><td>[Cancel]</td></tr></table>

Press the &lt;Enter&gt; key to save the configuration and exit. You can also use the &lt;Arrow&gt; key to select Cancel and then press the &lt;Enter&gt; key to abort this function and return to the previous screen.

ESC The &lt; Esc &gt; key allows you to discard any changes you have made and exit the Setup. Press the &lt; Esc &gt; key to exit the setup without saving your changes. The following screen will appear:

<table><tr><td colspan="2">Discard changes and exit setup now?</td></tr><tr><td>[Ok]</td><td>[Cancel]</td></tr></table>

Press the &lt;Enter&gt; key to discard changes and exit. You can also use the &lt;Arrow&gt; key to select Cancel and then press the &lt;Enter&gt; key to abort this function and return to the previous screen.

Enter The &lt; Enter &gt; key allows you to display or change the setup option listed for a particular setup item. The &lt; Enter &gt; key can also allow you to display the setup sub-screens.

# 5.2 Main Setup

When you first enter the Setup Utility, you will enter the Main setup screen. You can always return to the Main setup screen by selecting the Main tab. There are two Main Setup options. They are described in this section. The Main BIOS Setup screen is shown below.

<table><tr><td colspan="7">BIOS SETUP UTILITY</td></tr><tr><td>Main</td><td>Advanced</td><td>PCIPnP</td><td>Boot</td><td>Security</td><td>Chipset</td><td>Exit</td></tr><tr><td colspan="6">System Overview</td><td rowspan="3">Use [ENTER], [TAB]or [SHIFT-TAB] toselect a field.</td></tr><tr><td colspan="6">AMIBIOS</td></tr><tr><td colspan="6">Version :08.00.15</td></tr><tr><td colspan="6">Build Date:04/17/09</td><td rowspan="5">Use [+] or [-] toconfigure system Time.</td></tr><tr><td colspan="6">ID :NE320T09</td></tr><tr><td colspan="6">Processor</td></tr><tr><td colspan="6">Speed :255MHz</td></tr><tr><td colspan="6">Count :255</td></tr><tr><td colspan="6">System Memory</td><td>← Select Screen</td></tr><tr><td rowspan="2" colspan="6">Size :987MB</td><td>↑↓ Select Item</td></tr><tr><td>+- Change Field</td></tr><tr><td colspan="6">System Time [23:35:01]</td><td>Tab Select Field</td></tr><tr><td rowspan="3" colspan="6">System Date [Mon 01/28/2002]</td><td>F1 General Help</td></tr><tr><td>F10 Save and Exit</td></tr><tr><td>ESC Exit</td></tr></table>

# System Time/System Date

Use this option to change the system time and date. Highlight System Time or System Date using the &lt;Arrow&gt; keys. Enter new values using the keyboard. Press the &lt;Tab&gt; key or the &lt;Arrow&gt; keys to move between fields. The date must be entered in MM/DD/YY format. The time is entered in HH:MM:SS format.

Note: The time is in 24-hour format. For example, 5:30 A.M. appears as 05:30:00, and 5:30 P.M. as 17:30:00.

# 5.3 Advanced BIOS Setup

Select the Advanced tab from the setup screen to enter the Advanced BIOS Setup screen. You can select any of the items in the left frame of the screen, such as SuperIO Configuration, to go to the sub menu for that item. You can display an Advanced BIOS Setup option by highlighting it using the &lt;Arrow&gt; keys. The Advanced BIOS Setup screen is shown below.

The sub menus are described on the following pages.

<table><tr><td colspan="2">Main Advanced PCIPnP Boot Security Chipset Exit</td></tr><tr><td>CPU ConfigurationIDE ConfigurationSuperIO ConfigurationHardware Health ConfigurationRemote Access ConfigurationUSB ConfigurationTrusted Computing</td><td>Configure CPU.← Select Screen↑↓ Select ItemEnter Go to Sub ScreenF1 General HelpF10 Save and ExitESC Exit</td></tr></table>

# 5.3.1 CPU Configuration

You can use this screen to select options for the CPU Configuration Settings. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;+&gt; and &lt;-&gt; keys to change the value of the selected option. A description of the selected item appears on the right side of the screen. The settings are described on the following pages. An example of the CPU Configuration screen is shown below.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Advanced</td></tr><tr><td>Configure advanced CPU settings
Module Version:3F.15</td><td>Disabled for WindowsXP</td></tr><tr><td>Manufacturer:Intel</td><td></td></tr><tr><td>Frequency :255MHz
FSB Speed :1066MHz
Cache L1 :0 KB
Cache L2 :0 KB
Ratio Actual Value:10.5</td><td></td></tr><tr><td>Max CPUID Value Limit [Disabled]
Core Multi-Processing [Enabled]</td><td>← Select Screen
↑↓ Select Item
+- Change Option
F1 General Help
F10 Save and Exit
ESC Exit</td></tr><tr><td colspan="2">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# Max CPUID Value Limit

When the computer is booted up, the operating system executes the CPUID instruction to identify the processor and its capabilities. Before it can do so, it must first query the processor to find out the highest input value CPUID recognized. This determines the kind of basic information CPUID can provide the operating system. This option allows you to circumvent problems with older operating systems.

When Enabled, the processor will limit the maximum CPUID input value to 03h when queried, even if the processor supports a higher CPUID input value. When Disabled, the processor will return the actual maximum CPUID input value of the processor when queried.

# Core Multi-Processing

This item enables/disables multi-core processing functionality for multi-core processors.

# 5.3.2 IDE Configuration

You can use this screen to select options for the IDE Configuration Settings. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;+&gt; and &lt;-&gt; keys to change the value of the selected option. A description of the selected item appears on the right side of the screen. The settings are described on the following pages. An example of the IDE Configuration screen is shown below.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Advanced</td></tr><tr><td>IDE ConfigurationPrimary IDE Master : [Not Detected]Primary IDE Slave : [Not Detected]Secondary IDE Master : [Not Detected]Secondary IDE Slave : [Not Detected]Third IDE Master : [Not Detected]Fourth IDE Master : [Not Detected]</td><td>While entering setup, BIOS auto detects the presence of IDE devices. This displays the status of auto detection of IDE devices.Select Screen↑↓ Select Item Enter Go to Sub ScreenF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="2">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# IDE Master/Slave

Select one of the hard disk drives to configure it. Press &lt;Enter&gt; to access its sub menu.

# 5.3.3 Super IO Configuration

You can use this screen to select options for the Super IO settings. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;+&gt; and &lt;-&gt; keys to change the value of the selected option. The settings are described on the following pages. The screen is shown below.

<table><tr><td colspan="3">Advanced</td></tr><tr><td>Serial Port1 Address Serial Port2 Address</td><td>[3F8/IRQ4] [2F8/IRQ3]</td><td>Allows BIOS to Select Serial Port1 Base Addresses.← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="3">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# Serial Port1 Address

Select an address and a corresponding interrupt for Serial Port1. Options: 3F8/IRQ4, 3E8/IRQ4, 2F8/IRQ3, 2E8/IRQ3.

# Serial Port2 Address

This option specifies the base I/O port address and Interrupt Request address of Serial Port2. The settings of Serial Port2 are the same as Serial Port1. However, the setting used by Serial Port1 will not be available for Serial Port2. For example, if Serial Port1 uses 3F8/IRQ4, the option, the 3F8/IRQ4 will not appear in the options of Serial Port2.

# 5.3.4 Hardware Health Configuration

This option displays the current status of all of the monitored hardware devices/components such as voltages and temperatures. The options are Enabled and Disabled.

Three modes are provided for the CPU Fan (Fan1): Full On mode, Automatic mode, and PWM Manually mode. Full On mode runs the fan at full speed. Automatic mode is Smart Fan mode. PWM Manually mode runs the fan at the set speed.

Full On mode

<table><tr><td colspan="3">BIOS SETUP UTILITY</td></tr><tr><td colspan="3">Advanced</td></tr><tr><td colspan="2">Hardware Health Configuration</td><td rowspan="5">Fan configuration mode setting</td></tr><tr><td>H/W Health FunctionFAN 1 Mode Setting</td><td>[Enabled][Full On model]</td></tr><tr><td>System TemperatureCPU Temperature</td><td>:29°C/84°F:25°C/77°F</td></tr><tr><td>Fan1 Speed</td><td>:1231 RPM</td></tr><tr><td rowspan="2">CPU Core+3.30V+5.00V+12.0VUBAT</td><td rowspan="2">:1.152 V:3.392 U:5.107 U:12.032 U:3.792 U</td></tr><tr><td>← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr></table>

# Automatic mode

<table><tr><td colspan="3">BIOS SETUP UTILITY</td></tr><tr><td colspan="3">Advanced</td></tr><tr><td colspan="2">Hardware Health Configuration</td><td rowspan="9">Enables HardwareHealth MonitoringDevice.</td></tr><tr><td>H/W Health Function</td><td>[Enabled]</td></tr><tr><td>FAN 1 Mode Setting</td><td>[Automatic model]</td></tr><tr><td>Temperature 1 Limit of OFF</td><td>[000]</td></tr><tr><td>Temperature 1 Limit of Start</td><td>[020]</td></tr><tr><td>Fan 1 Start PWM</td><td>[070]</td></tr><tr><td>Slope PWM 1</td><td>[0.5 PWM]</td></tr><tr><td>System Temperature</td><td>:43°C/109°F</td></tr><tr><td>CPU Temperature</td><td>:37°C/98°F</td></tr><tr><td>Fan1 Speed</td><td>:1300 RPM</td><td rowspan="6">← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td>CPU Core</td><td>:1.056 V</td></tr><tr><td>+3.30V</td><td>:3.376 V</td></tr><tr><td>+5.00V</td><td>:5.107 V</td></tr><tr><td>+12.0V</td><td>:12.096 V</td></tr><tr><td>UBAT</td><td>:3.376 V</td></tr></table>

# Temperature 1 Limit of OFF

When the temperature (°C) is higher than the set value, Fan1 will run at Start PWM speed. When the temperature is lower than the set value, Fan1 will stop.

# Temperature 1 Limit of Start

When the temperature ( $^{\circ}$ C) is higher than the set value, Fan1 will increase its speed by Slope PWM 1 value.

# Fan 1 Start PWM

Sets a value to control the fan speed between Limit of OFF and Limit of Start. Minimum is 0 and Maximum is 127.

# Slope PWM 1

The Slope PWM Value sets the rate of increase the fan speed when the temperature is above Limit of Start.

PWM Manually mode

<table><tr><td colspan="3">BIOS SETUP UTILITY</td></tr><tr><td colspan="3">Advanced</td></tr><tr><td colspan="2">Hardware Health Configuration</td><td rowspan="7">Fan configuration mode setting</td></tr><tr><td>H/W Health Function</td><td>[Enabled]</td></tr><tr><td>FAN 1 Mode Setting</td><td>[PWM Manually mode]</td></tr><tr><td>Fan 1 PWM Control</td><td>[100]</td></tr><tr><td>System Temperature</td><td>:30°C/86°F</td></tr><tr><td>CPU Temperature</td><td>:25°C/77°F</td></tr><tr><td>Fan1 Speed</td><td>:1220 RPM</td></tr><tr><td>CPU Core</td><td>:1.152 V</td><td rowspan="5">← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td>+3.30V</td><td>:3.392 V</td></tr><tr><td>+5.00V</td><td>:5.107 V</td></tr><tr><td>+12.0V</td><td>:12.032 V</td></tr><tr><td>UBAT</td><td>:3.792 V</td></tr></table>

# Fan 1 PWM Control

Sets a value to control the fan speed. Minimum is 0 and Maximum is 127.

# 5.3.5 Remote Access Configuration

Remote access configuration provides the settings to allow remote access by another computer to get POST messages and send commands through serial port access.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Advanced</td></tr><tr><td colspan="2">Configure Remote Access type and parameters</td></tr><tr><td>Remote Access</td><td>[Enabled]</td></tr><tr><td>Serial port number</td><td>[COM1]</td></tr><tr><td>Base Address, IRQ</td><td>[3F8h, 4]</td></tr><tr><td>Serial Port Mode</td><td>[115200 8,n,1]</td></tr><tr><td>Flow Control</td><td>[None]</td></tr><tr><td>Redirection After BIOS POST</td><td>[Always]</td></tr><tr><td>Terminal Type</td><td>[ANSI]</td></tr><tr><td>UT-UTF8 Combo Key Support</td><td>[Enabled]</td></tr><tr><td>Sredir Memory Display Delay</td><td>[No Delay]</td></tr><tr><td></td><td></td></tr></table>

# Remote Access

Select this option to Enable or Disable the BIOS remote access feature.

Note: Enabling Remote Access requires a dedicated serial port connection. Once both serial ports are configured to disabled, you should set this value to Disabled or it may cause abnormal boot.

# Serial Port Number

Select the serial port you want to use for the remote access interface. You can set the value for this option to COM1 or COM2.

Note: If you have changed the resource assignment of the serial ports in Advanced> SuperIO Configuration, you must Save Changes and Exit, reboot the system, and enter the setup menu again in order to see those changes reflected in the available Remote Access options.

# Serial Port Mode

Select the baud rate you want the serial port to use for console redirection. The options are 115200 8,n,1; 57600 8,n,1; 19200 8,n,1; and 09600 8,n,1.

# Flow Control

Set this option to select Flow Control for console redirection. The settings for this value are None, Hardware, or Software.

# Redirection After BIOS POST

This option allows you to set Redirection configuration after BIOS POST. The settings for this value are Disabled, Boot Loader, or Always.

▶ Disabled: Set this value to turn off the redirection after POST
▶ Boot Loader: Set this value to allow the redirection to be active during POST and Boot Loader.
▶ Always: Set this value to allow the redirection to be always active.

# Terminal Type

This option is used to select either VT100/VT-UTF8 or ANSI terminal type. The settings for this value are ANSI, VT100, or VT-UTF8.

# VT-UTF8 Combo Key Support

This option enables VT-UTF8 Combination Key Support for ANSI/VT100 terminals. The settings for this value are Enabled or Disabled.

# Sredir Memory Display Delay

This option gives the delay in seconds to display memory information. The options for this value are No Delay, Delay 1 Sec, Delay 2 Sec, or Delay 4 Sec.

# 5.3.6 USB Configuration

You can use this screen to select options for the USB Configuration. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;+&gt; and &lt;-&gt; keys to change the value of the selected option. The settings are described on the following pages. The screen is shown below.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Advanced</td></tr><tr><td>USB ConfigurationModule Version - 2.24.3-13.4USB Devices Enabled :1 DriveLegacy USB Support [Enabled]USB Functions [8 USB Ports]USB 2.0 Controller [Enabled]USB 2.0 Controller Mode [HiSpeed]► USB Mass Storage Device Configuration</td><td>Enables support for legacy USB. AUTO option disables legacy support if no USB devices are connected.&lt; Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr></table>

# Legacy USB Support

Legacy USB Support refers to USB mouse and keyboard support. Normally if this option is not enabled, any attached USB mouse or USB keyboard will not become available until a USB compatible operating system is fully booted with all USB drivers loaded. When this option is enabled, any attached USB mouse or USB keyboard can control the system even when there are no USB drivers loaded on the system. Set this value to enable or disable the Legacy USB Support.

▶ Disabled: Set this value to prevent the use of any USB device in DOS or during system boot.

▶ Enabled: Set this value to allow the use of USB devices during boot and while using DOS.
▶ Auto: This option auto detects USB Keyboards or Mice and if found, allows them to be utilized during boot and while using DOS.

# USB Functions

Set this value to allow the system to Disable or select the number of onboard USB ports.

# USB 2.0 Controller

Enables/disables USB 2.0 functionality to all USB ports. If USB Function is set to Disabled, this option has no effect.

# USB 2.0 Controller Mode

The USB 2.0 Controller Mode configures the data rate of the USB port. The options are FullSpeed (12 Mbps) and HiSpeed (480 Mbps).

# USB Mass Storage Device Configuration

This is a submenu for configuring the USB Mass Storage Class Devices when BIOS finds they are in use on USB ports. Emulation Type can be set according to the type of attached USB mass storage device(s). If set to Auto, USB devices less than 530MB will be emulated as Floppy and those greater than 530MB will remain as hard drive. The Forced FDD option can be used to force a hard disk type drive (such as a Zip drive) to boot as FDD.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Advanced</td></tr><tr><td>USB Mass Storage Device Configuration</td><td rowspan="4">If Auto, USB devices less than 530MB will be emulated as Floppy and remaining as hard drive. Forced FDD option can be used to force a HDD formatted drive to boot as FDD (Ex. ZIP drive).</td></tr><tr><td>USB Mass Storage Reset Delay [20 Sec]</td></tr><tr><td>Device #1 Generic STORAGE DEVICE</td></tr><tr><td>Emulation Type [Auto]</td></tr></table>

# 5.3.7 Trusted Computing

Trusted computing is an industry standard to make personal computers more secure through a dedicated hardware chip, called a Trusted Platform Module (TPM). This option enables or disables the TPM support.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Advanced</td></tr><tr><td>Trusted ComputingTCG/TPM SUPPORT [No]</td><td>Enable/Disable TPMTCG (TPM 1.1/1.2) supp in BIOS← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr></table>

# 5.4 PCI/PnP Settings

Select the PCI/PnP tab from the setup screen to enter the Plug and Play BIOS Setup screen. You can display a Plug and Play BIOS Setup option by highlighting it using the &lt;Arrow&gt; keys. The Plug and Play BIOS Setup screen is shown below.

<table><tr><td colspan="6">Main Advanced PCIPnP Boot Security Chipset Exit</td></tr><tr><td>IRQ3</td><td></td><td>[Reserved]</td><td></td><td rowspan="3">Available: SpecifiedIRQ is available to beused by PCI/PnPdevices.</td><td></td></tr><tr><td>IRQ4</td><td></td><td>[Reserved]</td><td></td><td></td></tr><tr><td>IRQ5</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>IRQ7</td><td></td><td>[Available]</td><td></td><td rowspan="7">Reserved: SpecifiedIRQ is reserved foruse by Legacy ISAdevices.</td><td></td></tr><tr><td>IRQ9</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>IRQ10</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>IRQ11</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>IRQ14</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>IRQ15</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>DMA Channel 0</td><td></td><td>[Available]</td><td></td><td></td></tr><tr><td>DMA Channel 1</td><td></td><td>[Available]</td><td rowspan="5" colspan="3">← Select Screen↑↓ Select Item+ - Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td>DMA Channel 3</td><td></td><td>[Available]</td></tr><tr><td>DMA Channel 5</td><td></td><td>[Available]</td></tr><tr><td>DMA Channel 6</td><td></td><td>[Available]</td></tr><tr><td>DMA Channel 7</td><td></td><td>[Available]</td></tr></table>

v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.

# 5.4.1 IRQ/DMA

Set this value to allow the IRQ settings to be modified. Available – This setting allows the specified IRQ/DMA to be used by a PCI/PnP device. Reserved – This setting allows the specified IRQ/DMA to be used by a legacy ISA device.

# 5.5 Boot Settings

Select the Boot tab from the setup screen to enter the Boot BIOS Setup screen. You can select any of the items in the left frame of the screen, such as Boot Device Priority, to go to the sub menu for that item. You can display a Boot BIOS Setup option by highlighting it using the &lt;Arrow&gt; keys. The Boot Settings screen is shown below:

<table><tr><td colspan="7">BIOS SETUP UTILITY</td></tr><tr><td>Main</td><td>Advanced</td><td>PCIPnP</td><td>Boot</td><td>Security</td><td>Chipset</td><td>Exit</td></tr><tr><td colspan="5">Boot Settings</td><td rowspan="4" colspan="2">Configure Settings during System Boot.</td></tr><tr><td colspan="5">▶ Boot Settings Configuration</td></tr><tr><td colspan="5">▶ Boot Device Priority</td></tr><tr><td colspan="5">▶ Hard Disk Drives</td></tr><tr><td colspan="5"></td><td colspan="2">← Select Screen↑↓ Select ItemEnter Go to Sub ScreenF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="7">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# 5.5.1 Boot Settings Configuration

Use this screen to select options for the Boot Settings Configuration. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;Plus&gt; and &lt;Minus&gt; keys to change the value of the selected option. The settings are described on the following pages. The screen is shown below.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td colspan="2">Boot</td></tr><tr><td colspan="2">Boot Settings Configuration</td></tr><tr><td>Quick Boot</td><td>[Disabled]</td></tr><tr><td>Quiet Boot</td><td>[Enabled]</td></tr><tr><td>Bootup Num-Lock</td><td>[On]</td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td></td></tr><tr><td></td><td>Allows BIOS to skip certain tests while booting. This will decrease the time needed to boot the system.</td></tr><tr><td></td><td>← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="2">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# Quick Boot

Enabling this setting will cause the BIOS power-on self test routine to skip some of its tests during bootup for faster system boot.

# Quiet Boot

When this feature is enabled, the BIOS will display the full-screen logo during the boot-up sequence, hiding normal POST messages.

When it is disabled, the BIOS will display the normal POST messages, instead of the full-screen logo.

# Bootup Num-Lock

This setting is to set the Num Lock status when the system is powered on. Setting to [On] will turn on the Num Lock key when the system is powered on. Setting to [Off] will allow users to use the arrow keys on the numeric keypad.

# 5.5.2 Boot Device Priority

The items allow you to set the sequence of boot devices where BIOS attempts to load the disk operating system. First press &lt;Enter&gt; to enter the sub-menu. Then you may use the arrow keys to select the desired device, then press &lt;+&gt;, &lt;-&gt; or &lt;PageUp&gt;, &lt;PageDown&gt; key to move it up/down in the priority list.

# 5.5.3 Boot Device Groups

The Boot devices are listed in groups by device type. First press &lt;Enter&gt; to enter the sub-menu. Then you may use the arrow keys to select the desired device, then press &lt;+&gt;, &lt;-&gt; or &lt;PageUp&gt;, &lt;PageDown&gt; key to move it up/down in the priority list. Only the first device in each device group will be available for selection in the Boot Device Priority option.

# 5.6 Security Setup

<table><tr><td colspan="7">BIOS SETUP UTILITY</td></tr><tr><td>Main</td><td>Advanced</td><td>PCIPnP</td><td>Boot</td><td>Security</td><td>Chipset</td><td>Exit</td></tr><tr><td colspan="5">Security Settings</td><td rowspan="2" colspan="2">Install or Change the password.</td></tr><tr><td rowspan="2" colspan="5">Supervisor Password :Not InstalledUser Password :Not InstalledChange Supervisor PasswordChange User PasswordClear User PasswordBoot Sector Virus Protection [Disabled]</td></tr><tr><td colspan="2">← Select Screen↑↓ Select ItemEnter ChangeF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="7">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# Password Support

# Two Levels of Password Protection

Provides both a Supervisor and a User password. If you use both passwords, the Supervisor password must be set first.

The system can be configured so that all users must enter a password every time the system boots or when Setup is executed, using either or either the Supervisor password or User password.

The Supervisor and User passwords activate two different levels of password security. If you select password support, you are prompted for a one to six character password. Type the password on the keyboard. The password does not appear on the screen when typed. Make sure you write it down. If you forget it, you must drain NVRAM and re-configure.

# Remember the Password

Keep a record of the new password when the password is changed. If you forget the password, you must erase the system configuration information in NVRAM.

To access the sub menu for the following items, select the item and press &lt; Enter&gt;:

▶ Change Supervisor Password
▶ Change User Password
▶ Clear User Password

# Supervisor Password

Indicates whether a supervisor password has been set.

# User Password

Indicates whether a user password has been set.

# Change Supervisor Password

Select this option and press &lt; Enter &gt; to access the sub menu. You can use the sub menu to change the supervisor password.

# Change User Password

Select this option and press &lt; Enter &gt; to access the sub menu. You can use the sub menu to change the user password.

# Clear User Password

Select this option and press &lt; Enter &gt; to access the sub menu. You can use the sub menu to clear the user password.

# Change Supervisor Password

Select Change Supervisor Password from the Security Setup menu and press &lt; Enter &gt;.

Enter New Password:

Type the password and press &lt; Enter &gt;. The screen does not display the characters entered. Retype the password as prompted and press &lt; Enter &gt;. If the password confirmation is incorrect, an error message appears. The password is stored in NVRAM after completes.

# Change User Password

Select Change User Password from the Security Setup menu and press &lt; Enter &gt;.

Enter New Password:

Type the password and press &lt; Enter &gt;. The screen does not display the characters entered. Retype the password as prompted and press &lt; Enter &gt;. If the password confirmation is incorrect, an error message appears. The password is stored in NVRAM after completes.

# 5.7 Chipset Setup

Select the Chipset tab from the setup screen to enter the Chipset BIOS Setup screen. You can select any of the items in the left frame of the screen to go to the sub menu for that item. The Chipset BIOS Setup screen is shown below.

<table><tr><td colspan="6">BIOS SETUP UTILITY</td></tr><tr><td>Main</td><td>Advanced</td><td>PCIPnP</td><td>Boot</td><td>Security</td><td>Chipset Exit</td></tr><tr><td colspan="5">Advanced Chipset Settings</td><td rowspan="3">Configure North Bridge features.</td></tr><tr><td colspan="5">WARNING: Setting wrong values in below sections may cause system to malfunction.</td></tr><tr><td colspan="5">▶ North Bridge Configuration▶ South Bridge ConfigurationOnboard LAN ROM Init [Disabled]Resume On PME# [Disabled]Power Button Mode [On/Off]</td></tr><tr><td colspan="5"></td><td>← Select Screen↑↓ Select ItemEnter Go to Sub ScreenF1 General HelpF10 Save and ExitESC Exit</td></tr></table>

# 5.7.1 North Bridge Configuration

You can use this screen to select options for the North Bridge Configuration. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;Plus&gt; and &lt;Minus&gt; keys to change the value of the selected option.

<table><tr><td colspan="2">BIOS SETUP UTILITY</td></tr><tr><td></td><td>Chipset</td></tr><tr><td>North Bridge Chipset ConfigurationInitate Graphic Adapter [PEG/PCI]DUMT Mode Select [DUMT Mode]DUMT/FIXED Memory [256MB]PEG Port ConfigurationPEG Port [Auto]</td><td>Select which graphics controller to use as the primary boot device.← Select Screen↑↓ Select Item+- Change OptionF1 General HelpF10 Save and ExitESC Exit</td></tr></table>

# Initiate Graphic Adapter

Select which graphics controller to use as the primary boot device.

IGD: Chipset built-in graphics only.

PCI/IGD: detect PCI graphics first, then chipset built-in graphics. (PCI includes PCI slot and PCI Express x1/x4 slot, PCI will be first)

PCI/PEG: detect PCI graphics first, then PCI Express x16 graphics.

PEG/IGD: detect PCI Express x16 graphics first, then chipset built-in graphics.

PEG/PCI: detect PCI Express x16 graphics first, then PCI graphics, then chipset built-in graphics.

# DVMT Mode Select

Dynamic Video Memory Technology (DVMT) allows dynamic allocation of system memory resource for the integrated VGA controller depending on system demand at the time.

Fixed: When set to fixed, the graphics driver will reserve a fixed portion of the system memory as graphics memory.

DVMT: When set to DVMT, the graphics chip will dynamically allocate system as graphics memory as graphics memory.

Both: When set to Both, a minimum amount of memory is allocated and the system is allowed to dynamically allocated more memory resources when necessary.

# DVMT/FIXED Memory

Only two choices 128MB or 256MB memory can be assigned as either absolute assignment (FIXED mode) or maximum assignment in DVMT mode.

# PEG Port Configuration

This field is found in motherboards that have a build-in graphics processor as well as a PCI Express port. It allows you to select whether to use the onboard graphics processor or the PCI Express card.

Disabled: The motherboard boots up using the onboard graphics processor.

Auto: The BIOS checks to see if a PCI Express graphics card is installed. If it detects that a PCI Express graphics card is present, the motherboard boots up using that card. Otherwise, it defaults to the onboard graphics processor.

# 5.7.2 South Bridge Configuration

You can use this screen to select options for the South Bridge Configuration. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;Plus&gt; and &lt;Minus&gt; keys to change the value of the selected option.

<table><tr><td colspan="2">Chipset</td></tr><tr><td>HDA Controller [Enabled]
Restore on AC Power Loss by IO [Last State]</td><td>Options
Enabled
Disabled
← Select Screen
↑↓ Select Item
+- Change Option
F1 General Help
F10 Save and Exit
ESC Exit</td></tr></table>

# HDA Controller

Set this value to Enable/Disable the HDA Controller.

# Restore on AC Power Loss

Determines which state the computer enters when AC power is restored after a power loss. The options for this value are Last State, Power On and Power Off.

▶ Power Off: Set this value to always power off the system while AC power is restored.
▶ Power On: Set this value to always power on the system while AC power is restored.
▶ Last State: Set this value to power off/on the system depending on the last system power state while AC power is restored.

# 5.7.3 Advanced Chipset Settings

You can use this screen to select options for Chipset Configuration. Use the up and down &lt;Arrow&gt; keys to select an item. Use the &lt;Plus&gt; and &lt;Minus&gt; keys to change the value of the selected option.

# Onboard LAN BIOS Init

Enable the onboard LAN's PXE ROM to enable boot from LAN. The options are Enabled and Disabled.

# Resume On PME#

This option specifies if the PME#. event will generate a system wake event. The sub-options are Enabled and Disabled.

# Power Button Mode

This option specifies the effect when the power button pressed (On, Off, or Suspend).

▶ On/Off: System goes into power down mode when power button pressed.
▶ Suspend: System goes into suspend mode when power button pressed.

# 5.8 Exit Menu

Select the Exit tab from the setup screen to enter the Exit BIOS Setup screen. You can display an Exit BIOS Setup option by highlighting it using the &lt;Arrow&gt; keys. The Exit BIOS Setup screen is shown below.

<table><tr><td colspan="6">BIOS SETUP UTILITY</td></tr><tr><td colspan="6">Main Advanced PCIPnP Boot Security Chipset Exit</td></tr><tr><td colspan="4">Exit OptionsSave Changes and ExitDiscard Changes and ExitDiscard ChangesLoad Optimal DefaultsLoad Failsafe Defaults</td><td colspan="2">Exit system setup after saving the changes.F10 key can be used for this operation.← Select Screen↑↓ Select ItemEnter Go to Sub ScreenF1 General HelpF10 Save and ExitESC Exit</td></tr><tr><td colspan="6">v02.61 (C) Copyright 1985-2006, American Megatrends, Inc.</td></tr></table>

# Save Changes and Exit

When you have completed the system configuration changes, select this option to leave Setup and reboot the computer so the new system configuration parameters can take effect.

Save Configuration Changes and Exit Now?

[Ok] [Cancel]

appears in the window. Select Ok to save changes and exit.

# Discard Changes and Exit

Select this option to quit Setup without making any permanent changes to the system configuration.

Discard Changes and Exit Setup Now?

[Ok] [Cancel]

appears in the window. Select Ok to discard changes and exit.

# Discard Changes

Select Discard Changes from the Exit menu and press &lt; Enter &gt;.

Select Ok to discard changes.

# Load Optimal Defaults

Automatically sets all Setup options to a complete set of default settings when you select this option. The Optimal settings are designed for maximum system performance, but may not work best for all computer applications. In particular, do not use the Optimal Setup options if your computer is experiencing system configuration problems.

Select Load Optimal Defaults from the Exit menu and press &lt;Enter&gt;.

Select Ok to load optimal defaults.

# Load Failsafe Defaults

Automatically sets all Setup options to a complete set of default settings when you select this option. The Failsafe settings are designed for maximum system stability, but not maximum performance. Select the FailSafe Setup options if your computer is experiencing system configuration problems.

Select Load Fail-Safe Defaults from the Exit menu and press &lt;Enter&gt;.

Load FailSafe Defaults?

[Ok] [Cancel]

appears in the window. Select Ok to load FailSafe defaults.

# Appendix A - Watchdog Timer

A sample program for configuring the NuPRO-E320's watchdog timer is included on the ADLINK All-in-One DVD in the following directory: \NuPRO\NuPRO-E320\WDT.

A.1 Sample Code
```c
#include&lt;stdlib.h&gt;
#include&lt;stdio.h&gt;
#include&lt;string.h&gt;
#include&lt;dos.h&gt;

void WDTRUN(int config_port, int count_value);
void Enter_IT8718_Config(int config_port);
void Exit_IT8718_Config(int config_port);

void main(int argc, char *argv[])
{
    int number, DevID1, DevID2, chipflag = 0;
    int iport = 0x2E; // Default config_port = 0x2E

    if ((argc == 1) || ((argc == 3) && (*argv[2] != '4') && (*argv[3] != 'E')) || (argc > 3))
    {
    printf("ADLINK Watchdog Timer Utility of NuPRO-935A \n\n");
    printf(" Usage: ITE8718 value [4E]\n");
    printf(" value: 1 to 15300 second.\n");
    printf(" Write 0 will disable watchdog timer.\n\n");
    printf(" 4E - change IO port to 0x4E. Default is 0x2E.\n");
    exit(1);
    }
    else
    {
    // User selected io port.
    if (argc == 3) { iport = 0x4E;
    printf("IOPORT Usage: 0x4E \n");
    }

    // Detect ITE8718F.
    Enter_IT8718_Config(iport);
```

```c
//Get Chip ID Byte 1 = 0x87, Gip ID Byte 2 = 0x18
    outportb(ioport, 0x20);
    DevID1 = inportb(ioport+1);
    outportb(ioport, 0x21);
    DevID2 = inportb(ioport+1);

    if((DevID1 == 0x87) && (DevID2 == 0x18))
    chipflag = 1;

    if(chipflag == 0)
    {
    printf("ADLINK Watchdog Timer Utility of NuPRO-935A, FOR ADLINK INTERNAL USE.\n\n");
    printf("Can't find any ITE IT8718F on system!\n");
    Exit_IT8718_Config(ioport);
    exit(1);
    }
    else
    {
    printf("ADLINK Watchdog Timer Utility of NuPRO-935A, FOR ADLINK INTERNAL USE.\n\n");
    number=atoi(argv[1]);

    WDTRUN(ioport,number);
    Exit_IT8718_Config(ioport);
    }
    }
}

void Enter_IT8718_Config(int config_port)
{
    switch(config_port)
    {
    case 0x2E:
    //Address port = 0x2E, enter keys = 0x87, 0x01, 0x55, 0x55
    outportb(0x2E, 0x87);
    outportb(0x2E, 0x01);
    outportb(0x2E, 0x55);
    outportb(0x2E, 0x55);
```

```lisp
break;
case 0x4E:
    //Address port = 0x4E, enter keys = 0x87,
    0x01, 0x55, 0xAA
    outportb(0x2E, 0x87);
    outportb(0x2E, 0x01);
    outportb(0x2E, 0x55);
    outportb(0x2E, 0xAA);
    break;
default:
    break;
}
void Exit_IT8718_Config(int config_port)
{
    outportb(config_port, 0x02);
    outportb(config_port+1, 0x02);
}
void WDTRUN(int config_port, int count_value)
{
    int temp;
    int counter;

    //Select WDT device
    outportb(config_port, 0x07);
    outportb(config_port+1, 0x07); //device 7

    //Set second/minute mode
    outportb(config_port, 0x72);
    temp = inportb(config_port+1);

    if(count_value == 0)
    {
    counter = count_value;
    printf("WDT is Disabled.");
    outportb(config_port+1, temp); //WDT output
    through PWROK2 default is Disabled.
    } // end of (count_value == 0)
    else if(count_value &lt;= 60){
    temp = temp | 0x80; //chip's default is minute.
    counter = count_value;
    printf("WDT timeout in %d seconds.", counter);
}
```

```c
// temp = temp | 0x40; // enable WDT output through KBRST
    temp = temp | 0x10; // enable WDT output through PWROK2 (pulse)
    outportb(config_port+1, temp);
    } // end of (count_value&lt;=60)
    else if(((count_value&gt;60) && (count_value&lt;=15300))
    || (count_value &gt; 15300))
    {
    // Count the timeout value
    if(count_value > 15300)
    count_value = 15300;
    counter = count_value/60;
    if((count_value%60)>30)
    counter=counter+1;
    printf("WDT timeout in %d minutes.",counter);
    // temp = temp | 0x40; // enable WDT output through KBRST
    temp = temp | 0x10; // enable WDT output through PWROK2 (pulse)
    outportb(config_port+1, temp);
    } // end of (count_value>60)

    // reset WDT by KB, MS interrupt
    // outportb(config_port, 0x71);
    // temp = inportb(config_port + 1);
    // temp = temp | 0x60; // Bit 6 = KB interrupt, Bit 5 = MS interrupt
    // outportb(config_port+1, temp);
    // Write count value
    outportb(config_port, 0x73);
    outportb(config_port+1, counter);

    } // end of WDTRUN
```

# Appendix B System Resources

B.1 System Memory Map

<table><tr><td>Address Range (decimal)</td><td>Address Range (hex)</td><td>Size</td><td>Description</td></tr><tr><td>(4GB-2MB)</td><td>FFE00000 - FFFFFFFF</td><td>2 MB</td><td>High BIOS Area</td></tr><tr><td>(4GB-18MB) - (4GB-17MB-1)</td><td>FEE00000 - FEEFFFFFF</td><td>1 MB</td><td>FSB Interrupt Memory Space</td></tr><tr><td>(4GB-20MB) - (4GB-19MB-1)</td><td>FEC00000 - FECFFFFFF</td><td>1 MB</td><td>APIC Configuration Space</td></tr><tr><td>15MB - 16MB</td><td>F00000 - FFFFFFF</td><td>1 MB</td><td>ISA Hole</td></tr><tr><td>960 K - 1024 K</td><td>F0000 - FFFFF</td><td>64 KB</td><td>System BIOS Area</td></tr><tr><td>896 K - 960 K</td><td>E0000 - EFFFF</td><td>64 KB</td><td>Extended System BIOS Area</td></tr><tr><td>768 K - 896 K</td><td>C0000 - DFFFF</td><td>128 KB</td><td>PCI expansion ROM areaC0000 - C7FFF: Onboard VGA BIOS CB800 - CC7FFF: Intel 82566DMPXE option ROM when onboard LAN boot ROM is enabled.CC800 - CD7FFF: Marvell 88E805 option ROM when onboard LAN boot ROM is enabled.</td></tr><tr><td>640 K - 768 K</td><td>A0000 - BFFFF</td><td>128 KB</td><td>Video Buffer &amp; SMM space</td></tr><tr><td>0 K - 640 K</td><td>00000 - 9FFFF</td><td>640 KB</td><td>DOS Area</td></tr></table>

Table B-1: System Memory Map
Note: The entire D0000H segment except PXE occupied area can be forwarded to ISA bus.

# B.2 Direct Memory Access Channels

<table><tr><td>Channel Number</td><td>Data Width</td><td>System Resource</td></tr><tr><td>0</td><td>8-bits</td><td>Parallel port(1)</td></tr><tr><td>1</td><td>8-bits</td><td>Parallel port(1)</td></tr><tr><td>2</td><td>8-bits</td><td>Diskette drive(1)</td></tr><tr><td>3</td><td>8-bits</td><td>Parallel port(1)</td></tr><tr><td>4</td><td></td><td>Reserved - cascade channel</td></tr><tr><td>5</td><td>16-bits</td><td>Open</td></tr><tr><td>6</td><td>16-bits</td><td>Open</td></tr><tr><td>7</td><td>16-bits</td><td>Open</td></tr></table>

Table B-2: Direct Memory Access Channels
Note (1): DMA channel 0/1/3 is selected when using parallel port. Floppy and parallel port cannot be used at the same time.

B.3 IO Map

<table><tr><td>Hex Range</td><td>Device</td></tr><tr><td>000-01F</td><td>DMA controller 1, 8237A-5 equivalent</td></tr><tr><td>020-02D and 030-03F</td><td>Interrupt controller 1, 8259 equivalent</td></tr><tr><td>02E-02F</td><td>LPC SIO (ITE8718) configuration index/data registers</td></tr><tr><td>040-05F</td><td>Timer, 8254-2 equivalent</td></tr><tr><td>060, 062, 064, 066, 068-06F</td><td>8742 equivalent (keyboard)</td></tr><tr><td>061, 063, 065, 067</td><td>NMI control and status</td></tr><tr><td>070-07F</td><td>Real Time Clock Controller( bit 7 -NMI mask)</td></tr><tr><td>080-091</td><td>DMA page register</td></tr><tr><td>092</td><td>Reset (Bit 0)/ Fast Gate A20 (Bit 1)</td></tr><tr><td>93-9F</td><td>DMA page registers continued</td></tr><tr><td>0A0-0B1 and 0B4-0BF</td><td>Interrupt controller 2, 8259 equivalent</td></tr><tr><td>0B2 and 0B3</td><td>APM control and status port respectively</td></tr><tr><td>0C0-0DF</td><td>DMA controller 2, 8237A-5 equivalent</td></tr><tr><td>0E0-0EF</td><td>Available</td></tr><tr><td>0F0</td><td>Co-processor error register</td></tr><tr><td>0F1</td><td>N/A</td></tr><tr><td>0F2-0F3</td><td>N/A</td></tr><tr><td>0F4</td><td>IDE ID port</td></tr><tr><td>0F5-0F7</td><td>N/A</td></tr><tr><td>0F8</td><td>IDE Index port</td></tr><tr><td>0F9-0FB</td><td>N/A</td></tr><tr><td>0FC</td><td>IDE Data port</td></tr><tr><td>0FD-0FF</td><td>N/A</td></tr><tr><td>100-179</td><td>Available</td></tr><tr><td>180-181</td><td>Default AIM4 SRAM control register (May be remapped)</td></tr><tr><td>182-1EF</td><td>Available</td></tr><tr><td>1F0-1F7</td><td>Primary IDE Controller (AT Drive)</td></tr><tr><td>1FB-22F</td><td>Available</td></tr><tr><td>230 -277</td><td>Available</td></tr><tr><td>278-27F</td><td>Parallel Port 2</td></tr></table>

<table><tr><td>Hex Range</td><td>Device</td></tr><tr><td>280-2F7</td><td>Available</td></tr><tr><td>2F8-2FF</td><td>Serial Port 2</td></tr><tr><td>300-36F</td><td>Available</td></tr><tr><td>370-377</td><td>Alt. Floppy Disk Controller</td></tr><tr><td>378-37F</td><td>Parallel Port 1</td></tr><tr><td>380-3AF</td><td>Available</td></tr><tr><td>3B0-3BB and 3BF</td><td>Mono/VGA mode video</td></tr><tr><td>3BC-3BE</td><td>Reserved for parallel port</td></tr><tr><td>3C0-3DF</td><td>VGA registers</td></tr><tr><td>3E0-3EF</td><td>Available</td></tr><tr><td>3F0-3F7</td><td>Primary Floppy disk controller</td></tr><tr><td>3F8-3FF</td><td>Serial port 1</td></tr><tr><td>4D0</td><td>Master PIC Edge/Level Trigger register</td></tr><tr><td>4D1</td><td>Slave PIC Edge/Level Trigger register</td></tr><tr><td>CF8-CFB</td><td>PCI configuration address register (32 bit I/O only)</td></tr><tr><td>CF9</td><td>Reset Control register (8 bit I/O)</td></tr><tr><td>CFC-CFF</td><td>PCI configuration data register</td></tr><tr><td>400</td><td>Smbus base address for SB.</td></tr><tr><td>480</td><td>GPIO Base Address for SB</td></tr><tr><td>800</td><td>PM (ACPI) Base Address for SB</td></tr><tr><td>860</td><td>Alias for ICH TCO base address.</td></tr><tr><td>0A00~0AFF</td><td>Reserved for SIO functions base address (eg. PME, GPIO, etc)</td></tr><tr><td>200-23Fh</td><td>Reserved for ISA.</td></tr><tr><td>240-25Fh</td><td>Reserved for ISA.</td></tr><tr><td>280-28Fh</td><td>Reserved for ISA.</td></tr><tr><td>2A0-2DFh</td><td>Reserved for ISA.</td></tr><tr><td>300-33Fh</td><td>Reserved for ISA.</td></tr><tr><td>380-39Fh</td><td>Reserved for ISA.</td></tr></table>

Table B-3: IO Map

# B.4 Interrupt Request (IRQ) Lines

IRQ Lines PIC Mode

<table><tr><td>IRQ#</td><td>Typical Interrupt Resource</td><td>Connected to Pin</td><td>Available</td></tr><tr><td>0</td><td>Counter 0</td><td>N/A</td><td>No</td></tr><tr><td>1</td><td>Keyboard controller</td><td>N/A</td><td>No</td></tr><tr><td>2</td><td>Cascade interrupt from slave PIC</td><td>N/A</td><td>No</td></tr><tr><td>3</td><td>Serial Port 2 (COM2) / PCI / ISA</td><td>IRQ3 via SERIRQ, IRQ3 at ISA bus</td><td>Note (1)</td></tr><tr><td>4</td><td>Serial Port 1 (COM1) / PCI / ISA</td><td>IRQ4 via SERIRQ, IRQ4 at ISA bus</td><td>Note (1)</td></tr><tr><td>5</td><td>Parallel Port 2 (LPT2) / PCI / ISA</td><td>IRQ5 via SERIRQ, IRQ5 at ISA bus</td><td>Note (1)</td></tr><tr><td>6</td><td>Floppy Drive Controller</td><td>IRQ6 via SERIRQ</td><td>No</td></tr><tr><td>7</td><td>Parallel Port 1 (LPT1) / PCI / ISA</td><td>IRQ7 via SERIRQ, IRQ7 at ISA bus</td><td>Note (1)</td></tr><tr><td>8</td><td>Real-time clock</td><td>N/A</td><td>No</td></tr><tr><td>9</td><td>Microsoft ACPI-compliant system</td><td>N/A</td><td>Note (1)</td></tr><tr><td>10</td><td>PCI / ISA</td><td>IRQ10 via SERIRQ, IRQ10 at ISA bus</td><td>Note (1)</td></tr><tr><td>11</td><td>PCI / ISA</td><td>IRQ11 via SERIRQ, IRQ11 at ISA bus</td><td>Note (1)</td></tr><tr><td>12</td><td>PS/2 Mouse / PCI / ISA</td><td>IRQ12 via SERIRQ, IRQ12 at ISA bus</td><td>Note (1)</td></tr><tr><td>13</td><td>Math Processor</td><td>N/A</td><td>No</td></tr><tr><td>14</td><td>Primary IDE controller / PCI / ISA</td><td>IRQ14 via SERIRQ, IRQ14 at ISA bus</td><td>Note (1)</td></tr><tr><td>15</td><td>Secondary IDE controller / PCI / ISA</td><td>IRQ15 via SERIRQ, IRQ15 at ISA bus</td><td>Note (1)</td></tr></table>

Table B-4: IRQ Lines PIC Mode

Note (1): These IRQs can be used for PCI devices when onboard device is disabled. If IRQ is from ISA, user must reserve IRQ for ISA in BIOS setup menu.

IRQ Lines APIC Mode

<table><tr><td>IRQ#</td><td>Typical Interrupt Resource</td><td>Connected to Pin</td><td>Available</td></tr><tr><td>0</td><td>Counter 0</td><td>N/A</td><td>No</td></tr><tr><td>1</td><td>Keyboard controller</td><td>N/A</td><td>No</td></tr><tr><td>2</td><td>Cascade interrupt from slave PIC</td><td>N/A</td><td>No</td></tr><tr><td>3</td><td>Serial Port 2 (COM2) / PCI / ISA</td><td>IRQ3 via SERIRQ, IRQ3 at ISA bus</td><td>Note (1)</td></tr><tr><td>4</td><td>Serial Port 1 (COM1) / PCI / ISA</td><td>IRQ4 via SERIRQ, IRQ4 at ISA bus</td><td>Note (1)</td></tr><tr><td>5</td><td>Parallel Port 2 (LPT2) / PCI / ISA</td><td>IRQ5 via SERIRQ, IRQ5 at ISA bus</td><td>Note (1)</td></tr><tr><td>6</td><td>Floppy Drive Controller</td><td>IRQ6 via SERIRQ</td><td>No</td></tr><tr><td>7</td><td>Parallel Port 1 (LPT1) / PCI / ISA</td><td>IRQ7 via SERIRQ, IRQ7 at ISA bus</td><td>Note (1)</td></tr><tr><td>8</td><td>Real-time clock</td><td>N/A</td><td>No</td></tr><tr><td>9</td><td>SCI / PCI</td><td>IRQ9 via SERIRQ, IRQ9 at ISA bus</td><td>Note (1), (2)</td></tr><tr><td>10</td><td>PCI / ISA</td><td>IRQ10 via SERIRQ, IRQ10 at ISA bus</td><td>Note (1)</td></tr><tr><td>11</td><td>PCI / ISA</td><td>IRQ11 via SERIRQ, IRQ11 at ISA bus</td><td>Note (1)</td></tr><tr><td>12</td><td>PS/2 Mouse / PCI / ISA</td><td>IRQ12 via SERIRQ, IRQ12 at ISA bus</td><td>Note (1)</td></tr><tr><td>13</td><td>Math Processor</td><td>N/A</td><td>No</td></tr><tr><td>14</td><td>Primary IDE controller / PCI / ISA</td><td>IRQ14 via SERIRQ, IRQ14 at ISA bus</td><td>Note (1)</td></tr><tr><td>15</td><td>Secondary IDE controller / PCI / ISA</td><td>IRQ15 via SERIRQ, IRQ15 at ISA bus</td><td>Note (1)</td></tr><tr><td>16</td><td>N/A</td><td>PCI Slot 1/2/3/4, PCIE Port 0/1/2/3/4/5, UHCI Controller 4/6, P.E.G Root Port, I.G.D</td><td>Yes</td></tr><tr><td>17</td><td>N/A</td><td>PCI Slot 1/2/3/4, PCIE Port 0/1/2/3/4/5, P.E.G Root Port</td><td>Yes</td></tr></table>

<table><tr><td>IRQ#</td><td>Typical Interrupt Resource</td><td>Connected to Pin</td><td>Available</td></tr><tr><td>18</td><td>N/A</td><td>PCI Slot 1/2/3/4, PCIE Port 0/1/2/3/4/5, UHCI Controller 3, P.E.G Root Port, SATA Host controller, SMBus Controller, Thermal Controller, EHCI Controller #2</td><td>Yes</td></tr><tr><td>19</td><td>N/A</td><td>PCI Slot 1/2/3/4, PCIE Port 0/1/2/3/4/5, UHCI Controller 2/7, P.E.G Root Port, SATA Host controller, SATA Host controller#1,</td><td>Yes</td></tr><tr><td>20</td><td>N/A</td><td>ICH9 internal GBE controller</td><td>No</td></tr><tr><td>21</td><td>N/A</td><td>UHCI Controller 5</td><td>No</td></tr><tr><td>22</td><td>N/A</td><td>ICH9 HDA</td><td>No</td></tr><tr><td>23</td><td>N/A</td><td>UHCI Controller 1, EHCI Controller 1</td><td>No</td></tr></table>

Table B-5: IRQ Lines APIC Mode

Note (1): These IRQs can be used for PCI devices when onboard device is disabled. If IRQ is from ISA, user must reserve IRQ for ISA in BIOS setup menu.

Note (2): BIOS does not open IRQ 9 setting for ISA bus.

PCI Configuration Space Map

<table><tr><td>Bus #</td><td>Device #</td><td>Function #</td><td>Routing</td><td>Description</td></tr><tr><td>00h</td><td>00h</td><td>00h</td><td>N/A</td><td>Intel Q45 GMCH Host-Hub Interface Bridge</td></tr><tr><td>00h</td><td>01h</td><td>00h</td><td>Internal</td><td>P.E.G. Root Port</td></tr><tr><td>02h</td><td>00h</td><td>0FFh</td><td>N/A</td><td>P.E.G. Port</td></tr><tr><td>00h</td><td>06h</td><td>00h</td><td>Internal</td><td>P.E.G.#1 Root Port</td></tr><tr><td>03h</td><td>00h</td><td>0FFh</td><td>N/A</td><td>P.E.G.#1 Port</td></tr><tr><td>00h</td><td>02h</td><td>00h</td><td>Internal</td><td>Intel Integrated Graphics Device</td></tr><tr><td>00h</td><td>02h</td><td>01h</td><td>Internal</td><td>Intel Integrated Graphics Device (Function 1)</td></tr><tr><td>00h</td><td>03h</td><td>00h</td><td>Internal</td><td>HECI Host #1</td></tr><tr><td>00h</td><td>03h</td><td>01h</td><td>Internal</td><td>HECI Host #2</td></tr><tr><td>00h</td><td>03h</td><td>02h</td><td>Internal</td><td>IDER Controller</td></tr><tr><td>00h</td><td>03h</td><td>03h</td><td>Internal</td><td>KT Controller</td></tr><tr><td>00h</td><td>16h</td><td>00h</td><td>Internal</td><td>VE AHCI Controller</td></tr><tr><td>00h</td><td>19h</td><td>00h</td><td>Internal</td><td>GbE Controller</td></tr><tr><td>00h</td><td>1Ah</td><td>00h</td><td>Internal</td><td>Intel USB UHCI Controller 4</td></tr><tr><td>00h</td><td>1Ah</td><td>01h</td><td>Internal</td><td>Intel USB UHCI Controller 5</td></tr><tr><td>00h</td><td>1Ah</td><td>02h</td><td>Internal</td><td>Intel USB UHCI Controller 7</td></tr><tr><td>00h</td><td>1Ah</td><td>07h</td><td>Internal</td><td>Intel USB EHCI Controller 2</td></tr><tr><td>00h</td><td>1Bh</td><td>00h</td><td>Internal</td><td>High Definition Audio controller</td></tr><tr><td>00h</td><td>1Ch</td><td>00h</td><td>Internal</td><td>Intel ICH Express Root port 0</td></tr><tr><td>00h</td><td>1Ch</td><td>01h</td><td>Internal</td><td>Intel ICH Express Root port 1</td></tr><tr><td>00h</td><td>1Ch</td><td>02h</td><td>Internal</td><td>Intel ICH Express Root port 2</td></tr><tr><td>00h</td><td>1Ch</td><td>03h</td><td>Internal</td><td>Intel ICH Express Root port 3</td></tr><tr><td>00h</td><td>1Ch</td><td>04h</td><td>Internal</td><td>Intel ICH Express Root port 4</td></tr><tr><td>00h</td><td>1Ch</td><td>05h</td><td>Internal</td><td>Intel ICH Express Root port 5</td></tr><tr><td>00h</td><td>1Dh</td><td>00h</td><td>Internal</td><td>Intel USB UHCI Controller 1</td></tr><tr><td>00h</td><td>1Dh</td><td>01h</td><td>Internal</td><td>Intel USB UHCI Controller 2</td></tr><tr><td>00h</td><td>1Dh</td><td>02h</td><td>Internal</td><td>Intel USB UHCI Controller 3</td></tr><tr><td>00h</td><td>1Dh</td><td>03h</td><td>Internal</td><td>Intel USB UHCI Controller 6</td></tr><tr><td>00h</td><td>1Dh</td><td>07h</td><td>Internal</td><td>Intel USB EHCI Controller 1</td></tr><tr><td>00h</td><td>1Eh</td><td>00h</td><td>N/A</td><td>Intel Hub Interface to PCI Bridge</td></tr></table>

<table><tr><td>Bus #</td><td>Device #</td><td>Function #</td><td>Routing</td><td>Description</td></tr><tr><td>00h</td><td>1Fh</td><td>00h</td><td>N/A</td><td>Intel LPC Interface Bridge</td></tr><tr><td>00h</td><td>1Fh</td><td>02h</td><td>Internal</td><td>SATA Host Controller</td></tr><tr><td>00h</td><td>1Fh</td><td>03h</td><td>Internal</td><td>Intel SMBus Controller</td></tr><tr><td>00h</td><td>1Fh</td><td>05h</td><td>Internal</td><td>Intel Host SATA controller1</td></tr><tr><td>00h</td><td>1Fh</td><td>06h</td><td>Internal</td><td>Thermal Controller</td></tr><tr><td>01h</td><td>09h</td><td>0FFh</td><td>external</td><td>PCI slot 7</td></tr><tr><td>01h</td><td>0Ah</td><td>0FFh</td><td>external</td><td>PCI slot 6</td></tr><tr><td>01h</td><td>0Bh</td><td>0FFh</td><td>external</td><td>PCI slot 5</td></tr><tr><td>01h</td><td>0Ch</td><td>0FFh</td><td>external</td><td>PCI slot 4</td></tr><tr><td>01h</td><td>0Dh</td><td>0FFh</td><td>external</td><td>PCI slot 3</td></tr><tr><td>01h</td><td>0Eh</td><td>0FFh</td><td>external</td><td>PCI slot 2</td></tr><tr><td>01h</td><td>0Fh</td><td>0FFh</td><td>external</td><td>PCI slot 1</td></tr><tr><td>04h</td><td>00h</td><td>0FFh</td><td>Internal</td><td>PCIE Port #0</td></tr><tr><td>05h</td><td>00h</td><td>0FFh</td><td>Internal</td><td>PCIE Port #1</td></tr><tr><td>06h</td><td>00h</td><td>0FFh</td><td>Internal</td><td>PCIE Port #2</td></tr><tr><td>07h</td><td>00h</td><td>0FFh</td><td>Internal</td><td>PCIE Port #3</td></tr><tr><td>08h</td><td>00h</td><td>0FFh</td><td>Internal</td><td>PCIE Port #4, 82574L</td></tr><tr><td>09h</td><td>00h</td><td>0FFh</td><td>Internal</td><td>PCIE Port #5, 82574L</td></tr></table>

Table B-6: PCI Configuration Space Map

PCI Interrupt Routing Map

<table><tr><td>INT Line</td><td>Int0</td><td>Int1</td><td>Int2</td><td>Int3</td></tr><tr><td>P.E.G Root Port</td><td>INTA:16</td><td>INTB:17</td><td>INTC:18</td><td>INTD:19</td></tr><tr><td>P.E.G.#1 Root Port</td><td>INTA:16</td><td>INTB:17</td><td>INTC:18</td><td>INTD:19</td></tr><tr><td>VGA</td><td>INTE20</td><td></td><td></td><td></td></tr><tr><td>HECI Host #1</td><td>INTA:16</td><td></td><td></td><td></td></tr><tr><td>HECI Host #2</td><td>INTA:16</td><td></td><td></td><td></td></tr><tr><td>IDER Controller</td><td></td><td></td><td>INTC:18</td><td></td></tr><tr><td>KT Controller</td><td></td><td>INTB:17</td><td></td><td></td></tr><tr><td>SATA Host Controller</td><td>INTC:18</td><td>INTD:19</td><td></td><td></td></tr><tr><td>SMBUS controller</td><td></td><td></td><td>INTC:18</td><td></td></tr><tr><td>SATA Host Controller1</td><td></td><td>INTD:19</td><td></td><td></td></tr><tr><td>Thermal Controller</td><td></td><td></td><td>INTC:18</td><td></td></tr><tr><td>UHCI Controller #1</td><td>INTH:23</td><td></td><td></td><td></td></tr><tr><td>UHCI Controller #2</td><td></td><td>INTD:19</td><td></td><td></td></tr><tr><td>UHCI Controller #3</td><td></td><td></td><td>INTC:18</td><td></td></tr><tr><td>UHCI Controller #6</td><td></td><td></td><td></td><td>INTA:16</td></tr><tr><td>UHCI Controller #4</td><td>INTA:16</td><td></td><td></td><td></td></tr><tr><td>UHCI Controller #5</td><td></td><td>INTF:21</td><td></td><td></td></tr><tr><td>UHCI Controller #7</td><td></td><td></td><td></td><td>INTD:19</td></tr><tr><td>EHCI Controller #1</td><td>INTH:23</td><td></td><td></td><td></td></tr><tr><td>EHCI Controller #2</td><td></td><td></td><td>INTC:18</td><td></td></tr><tr><td>HDA Controller</td><td>INTG:22</td><td></td><td></td><td></td></tr><tr><td>GbE Controller</td><td>INTE:20</td><td></td><td></td><td></td></tr><tr><td>PCIE port 0</td><td>INTA:16</td><td>INTB:17</td><td>INTC:18</td><td>INTD:19</td></tr><tr><td>PCIE port 1</td><td>INTB:17</td><td>INTC:18</td><td>INTD:19</td><td>INTA:16</td></tr><tr><td>PCIE port 2</td><td>INTC:18</td><td>INTD:19</td><td>INTA:16</td><td>INTB:17</td></tr><tr><td>PCIE port 3</td><td>INTD:19</td><td>INTA:16</td><td>INTB:17</td><td>INTC:18</td></tr><tr><td>PCIE port 4</td><td>INTA:16</td><td>INTB:17</td><td>INTC:18</td><td>INTD:19</td></tr><tr><td>PCIE port 5</td><td>INTB:17</td><td>INTC:18</td><td>INTD:19</td><td>INTA:16</td></tr><tr><td>VE AHCI Controller</td><td>INTC:18</td><td>INTD:19</td><td></td><td></td></tr><tr><td>Slot 1</td><td>INTF:21</td><td>INTG:22</td><td>INTH:23</td><td>INTE:20</td></tr><tr><td>Slot 2</td><td>INTG:22</td><td>INTH:23</td><td>INTE:20</td><td>INTF:21</td></tr></table>

<table><tr><td>INT Line</td><td>Int0</td><td>Int1</td><td>Int2</td><td>Int3</td></tr><tr><td>Slot 3</td><td>INTH:23</td><td>INTE:20</td><td>INTF:21</td><td>INTG:22</td></tr><tr><td>Slot 4</td><td>INTE:20</td><td>INTF:21</td><td>INTG:22</td><td>INTH:23</td></tr><tr><td>Slot 5</td><td>INTF:21</td><td>INTG:22</td><td>INTH:23</td><td>INTE:20</td></tr><tr><td>Slot 6</td><td>INTG:22</td><td>INTH:23</td><td>INTE:20</td><td>INTF:21</td></tr><tr><td>Slot 7</td><td>INTH:23</td><td>INTE:20</td><td>INTF:21</td><td>INTG:22</td></tr></table>

Table B-7: PCI Interrupt Routing Map

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# Important Safety Instructions

For user safety, please read and follow all instructions, WARNINGS, CAUTIONS, and NOTES marked in this manual and on the associated equipment before handling/operating the equipment.

▶ Read these safety instructions carefully.
- Keep this user’s manual for future reference.
▶ Read the specifications section of this manual for detailed information on the operating environment of this equipment.
▶ When installing/mounting or uninstalling/removing equipment:

▷ Turn off power and unplug any power cords/cables.

▶ To avoid electrical shock and/or damage to equipment:

▷ Keep equipment away from water or liquid sources;
▷ Keep equipment away from high heat or high humidity;
▷ Keep equipment properly ventilated (do not block or cover ventilation openings);

▶ Make sure to use recommended voltage and power source settings;

▶ Always install and operate equipment near an easily accessible electrical socket-outlet;

▷ Secure the power cord (do not place any object on/over the power cord);

▶ Only install/attach and operate equipment on stable surfaces and/or recommended mountings; and,

▷ If the equipment will not be used for long periods of time, turn off and unplug the equipment from its power source.

▶ Never attempt to fix the equipment. Equipment should only be serviced by qualified personnel.

A Lithium-type battery may be provided for uninterrupted, backup or emergency power.

![The image displays a standard warning sign. It features a red equilateral triangle with a white exclamation point in the center. Below the triangle is a white rectangular area containing the word 'WARNING!' in black, uppercase letters.](.nupro-e320-50-13063-1010-202/44d0b05447a33de5ca2aa8edafb0e88a2c1aa8593a345833acacb77e96573925.jpg)

Risk of explosion if battery is replaced with one of an incorrect type. Dispose of used batteries appropriately.

▶ Equipment must be serviced by authorized technicians when:

▷ The power cord or plug is damaged;
▷ Liquid has penetrated the equipment;
▷ It has been exposed to high humidity/moisture;
$\triangleright$ It is not functioning or does not function according to the user's manual;
▷ It has been dropped and/or damaged; and/or,
▷ It has an obvious sign of breakage.

# Getting Service

Contact us should you require any service or assistance.

# ADLINK Technology Inc.

Address: 9F, No.166 Jian Yi Road, Chungho City, Taipei County 235, Taiwan
台北縣中和市建一路 166 號 9 樓

Tel: +886-2-8226-5877

Fax: +886-2-8226-5717

Email: service@adlinktech.com

# Ampro ADLINK Technology Inc.

Address: 5215 Hellyer Avenue, #110, San Jose, CA 95138, USA

Tel: +1-408-360-0200

Toll Free: +1-800-966-5200 (USA only)

Fax: +1-408-360-0222

Email: info@adlinktech.com

# ADLINK Technology Beijing

Address: 北京市海淀区上地东路 1 号盈创动力大厦 E 座 801 室 (100085)
Rm. 801, Power Creative E, No. 1, B/D
Shang Di East Rd., Beijing 100085, China

Tel: +86-10-5885-8666

Fax: +86-10-5885-8625

Email: market@adlinktech.com

# ADLINK Technology Shanghai

Address: 上海市漕河泾高科技开发区钦江路 333 号 39 幢 4 层 (200233)

Tel: +86-21-6495-5210

Fax: +86-21-5450-0414

Email: market@adlinktech.com

# ADLINK Technology Shenzhen

Address: 深圳市南山区科技园南区高新南七道 数字技术园 A1 栋 2 楼 C 区 (518057)

2F, C Block, Bld. A1, Cyber-Tech Zone,

Gao Xin Ave. Sec 7, High-Tech Industrial Park S., Shenzhen, 518054 China

Tel: +86-755-2643-4858

Fax: +86-755-2664-6353

Email: market@adlinktech.com

# ADLINK Technology Inc. (German Liaison Office)

Address: Nord Carree 3, 40477 Duesseldorf, Germany

Tel: +49-211-495-5552

Fax: +49-211-495-5557

Email: emea@adlinktech.com

# ADLINK (French Liaison Office)

Address: 15 rue Emile Baudot, 91300 MASSY Cedex, France

Tel: +33 (0) 1 60 12 35 66

Fax: +33 (0) 1 60 12 35 66

Email: france@adlinktech.com

# ADLINK Technology Japan Corporation

Address: 151-0072 東京都渋谷区幡ヶ谷

1-1-2 朝日生命幡ヶ谷ビル 8F

Asahiseimei Hatagaya Bldg. 8F

1-1-2 Hatagaya, Shibuya-ku, Tokyo 151-0072, Japan

Tel: +81-3-4455-3722

Fax: +81-3-5333-6040

Email: japan@adlinktech.com

# ADLINK Technology Inc. (Korean Liaison Office)

Address: 서울시 서초구 서초동 1506-25 한도 B/D 2 층

2F, Hando B/D, 1506-25, Seocho-Dong,

Seocho-Gu, Seoul, 137-070, Korea

Tel: +82-2-2057-0565

Fax: +82-2-2057-0563

Email: korea@adlinktech.com

# ADLINK Technology Singapore Pte Ltd.

Address: 84 Genting Lane #07-02A, Cityneon Design Centre, Singapore 349584

Tel: +65-6844-2261

Fax: +65-6844-2263

Email: singapore@adlinktech.com

# ADLINK Technology Singapore Pte Ltd. (Indian Liaison Office)

Address: No. 1357, "Anupama", Sri Aurobindo Marg, 9th Cross, JP Nagar Phase I, Bangalore - 560078, India

Tel: +91-80-65605817

Fax: +91-80-22443548

Email: india@adlinktech.com
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