# NuPRO-861

# Full-Size SBC

# User's Manual

© Copyright 2004 ADLINK Technology Inc.

All Rights Reserved.

Manual Rev. 1.00: July 14, 2004

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.

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.

# Trademarks

NuDAQ $^{®}$ , NuIPC $^{®}$ , NuDAM $^{®}$ , NuPRO $^{®}$ are registered trademarks of ADLINK Technology Inc. Other product names mentioned herein are used for identification purposes only and may be trademarks and/or registered trademarks of their respective companies.

# Getting Service from ADLINK

Customer Satisfaction is top priority for ADLINK Technology Inc. If you need any help or service, please contact us.

<table><tr><td colspan="4">ADLINK TECHNOLOGY INC.</td></tr><tr><td>Web Site</td><td colspan="3">http://www.adlinktech.com</td></tr><tr><td>Sales &amp; Service</td><td colspan="3">Service@adlinktech.com</td></tr><tr><td>TEL</td><td>+886-2-82265877</td><td>FAX</td><td>+886-2-82265717</td></tr><tr><td>Address</td><td colspan="3">9F, No. 166, Jian Yi Road, Chungho City, Taipei, 235 Taiwan</td></tr></table>

Please email or FAX your detailed information for prompt, satisfactory, and consistent service.

<table><tr><td colspan="4">Detailed Company Information</td></tr><tr><td>Company/Organization</td><td colspan="3"></td></tr><tr><td>Contact Person</td><td colspan="3"></td></tr><tr><td>E-mail Address</td><td colspan="3"></td></tr><tr><td>Address</td><td colspan="3"></td></tr><tr><td>Country</td><td colspan="3"></td></tr><tr><td>TEL</td><td></td><td>FAX</td><td></td></tr><tr><td>Web Site</td><td colspan="3"></td></tr><tr><td colspan="4">Questions</td></tr><tr><td>Product Model</td><td colspan="3"></td></tr><tr><td>Environment</td><td colspan="3">OS:Computer Brand:M/B: CPU:Chipset: BIOS:Video Card:NIC:Other:</td></tr><tr><td>Detail Description</td><td colspan="3"></td></tr><tr><td>Suggestions for ADLINK</td><td colspan="3"></td></tr></table>

# Table of Contents

# Chapter 1 Introduction....1

1.1 Unpacking Checklist....2
1.2 Features....4
1.3 Functional Block....6
1.4 Specifications....7

# Chapter 2 Installation....9

2.1 System Installation 9
2.2 Board Layout....13
2.3 Jumper setting....14
2.4 Connectors Description.... 16
2.5 Optional IP-ALCS20 Audio Card 30

# Chapter 3 Award BIOS Setup....33

3.1 BIOS Instructions 33
3.2 Main Menu 33
3.3 Standard CMOS Features.... 35
3.4 IDE Adaptors.... 37
3.5 Advanced BIOS Features.... 38
3.6 Advanced Chipset Features 42
3.7 Integrated Peripherals 45
3.8 Power Management Setup 50
3.9 Plug and Play / PCI Configurations 54
3.10 PC Health Status 55
3.11 Frequency/Voltage Control 56
3.12 Load Fail-Safe Defaults 57
3.13 Load Optimized Defaults 57
3.14 Supervisor/User Password Setting 57
3.15 Exit Selecting 58

# Warranty Policy 61

# 1

# Introduction

The NuPRO-861 series combines the high performance and exceptional value of the Intel $^{®}$ 855GME chipset with a full-featured, new generation, industrial SBC. The Intel $^{®}$ advanced 855GME chipset support socket 478-pins Intel $^{®}$ Pentium $^{®}$ M processor of 1.30GHz and up to 1.80GHz, that memory base on the FSB 400/533MHz operation supports DDR SDRAM interface. In the meantime, the 855GME chipset integrated the LVDS, DVI & VGA function. The NuPRO-861 system memory size can be up to 2GB DDR memory, onboard Intel $^{®}$ 82541 Gigabit Ethernet controller (supporting 10/100/1000 Base-TX Ethernet), optional Audio card and with 2 COM ports, besides the NuPRO-861 with 4 internal USB2.0 ports and a VGA, CompactFlash $^{™}$ type II connector. They are for ATM, CTI and high-end applications.

The 82801DB I/O Controller Hub (ICH4) employs the Intel $^{®}$ Accelerated Hub Architecture to make a direct connection from the graphics and memory to the integrated Ethernet controller, the IDE controllers (ATA/33 or ATA/66 or ATA/100), four USB ports that are supported USB 1.1/2.0 standard meets the performance, stability and reliability requirements.

The industrial SBC - NuPRO-861 is suitable and valuable for all the industry applications, which also well support with the Windows $^{®}$ 98 / 2000 / XP / NT and Linux $^{®}$ operation system.

# 1.1 Unpacking Checklist

1. Take out the NuPRO-861 series unit from the carton box, check if the unit is properly secure in the plastic bag.
2. Check the contents of the carton box:

◆ Industrial board

![Pure technical diagram of an electronic circuit board layout without any text, numbers, or symbols](.nupro-861-manual-3/e4411249a6e4bc11994275a35548cafed4e7495487954104f535e28da92abe6e.jpg)

◆ Installation guide

![MUSTRO-001\nFull-New Single Board Computer\nUser's Guide\n09.6.12](.nupro-861-manual-3/ccafe0cac567d430f4e04254c0de19a3ea5dbcf399ddf05195d386e22fb1482d.jpg)

◆ ATA-66/100 HDD ribbon cable

◆ Floppy ribbon cable

![This is a black and white line drawing of a roll of paper towels. The image depicts a cylindrical roll on the left side connected to a flat sheet extending to the right. On the far right edge, there is a vertical column of small squares, representing the perforated tear-off edge of the paper. There is no text in the image.](.nupro-861-manual-3/e1dd2636c8626c1cc64a1c08859855ab68e202ba0dc486d5ae90ca4ccca65f5f.jpg)

![A black and white line drawing of a rectangular sheet of paper. The top and bottom edges are wavy, while the left and right edges are straight vertical lines. A vertical line runs down the center, dividing the sheet into two halves. Along the left and right inner edges, there are vertical columns of small, evenly spaced squares. Inside the main area of the sheet, horizontal wavy lines run across both halves, resembling lines of text.](.nupro-861-manual-3/2392731d9578a014323199f30dd1ea10a14b34fcf3ea48e77dcac1b81e304778.jpg)

◆ Print & COM1 ribbon cable

◆ USB cable (1 Set) (for USB2.0)

![Pure schematic diagram of two parallel cable or connector components with no text, numbers, or symbols](.nupro-861-manual-3/286939676fd79e89befb72b83843862a0d5bb87293ee0ebe048ade961210e8a1.jpg)

![Pure electrical circuit lines without any symbols](.nupro-861-manual-3/8d69cdf3b4f6847b0e43acdfbb48af01fa365f21f0533046a5df99b52c0fb81a.jpg)

◆ COM2 ribbon cable

◆ KB & MS Y type cable

![Pure technical line drawing of a mechanical assembly without any text, numbers, or symbols](.nupro-861-manual-3/9bc03df52736da8b4367d8bb5a22e328885307cd13205bb17ca55380d8507988.jpg)

![The image displays a black-and-white schematic line drawing of a cable assembly. On the left side, two connectors are plugged into a small, rectangular breakout box or panel. Two parallel lines extend from these connectors towards the right. On the far right, the lines terminate at a larger, rectangular connector housing which features two ports side-by-side. Small squares are visible on the connectors, likely representing pin positions or labels, but any text or numbers within these squares are too blurry to be read verbatim.](.nupro-861-manual-3/547fc1b3f0ae2604854aa02a255d6ba384dad136779fb9f94ee0658a1528d018.jpg)

◆ VGA round cable

![Pure diagram of a cable or connector assembly without any text, numbers, or symbols](.nupro-861-manual-3/70f73e8bcc61b6d56d34c6273a5640ed718149419c3580aef002f513132a9f44.jpg)

◆ ATX control round cable (4-pins to 4-pins)

![The image is a simple black-and-white line drawing depicting a schematic connection. On the far left, there is a vertical column composed of three stacked rectangular sections. Adjacent to this column on its right side is a smaller, separate rectangular block. A long, wavy horizontal line extends from this smaller block across the center of the image to the right. On the far right side, the line connects to a similar smaller rectangular block, which is positioned to the left of another vertical column of three stacked rectangular sections.](.nupro-861-manual-3/f9fcce1f354c18e9ae38c0389ebeb075a3b8173f8f5826ffd827ee0fcb8470da.jpg)

◆ KB extend to BP round cable (5-pins to 6-pins)

![The image is a simple line drawing depicting a cable connecting two rectangular plugs. On the far left and far right, there are vertical connector blocks featuring multiple slots or pins. A single, thin horizontal line runs through the center, connecting the two plugs. There is no text in the image.](.nupro-861-manual-3/dcfb43faa36fa1f7d0ef338389c60ed0b04e8bbc777c6f1e550f2168a9e0f98e.jpg)

Driver CD

![Simple line drawing of a CD or DVD disc with no text or symbols](.nupro-861-manual-3/f11fa34fdfb78d8c9774f7c4985ba0344ebdac538dccd0342edf4f3e12f481e2.jpg)

◆ Low profile heat sink with fan

![Isometric line drawing of a computer cooling fan with heatsink (no text or symbols)](.nupro-861-manual-3/7430d89e73389065c20fc55a64b56ef75ab50e0b5152fdc34ed414b8072e5950.jpg)

# Note:

The package of the NuPRO-861 OEM version non-standard configuration may vary in function or contents according to different configuration requests

# CAUTION:

![A yellow triangle with a black border containing a red exclamation mark in the center.](.nupro-861-manual-3/e0feb099aefe0bdd941aa86a684200289d3356a735d412444477e29ccbd1c179.jpg)

This board 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 wrist strap grounded through one of the system's ESD Ground jacks while servicing system components.

# 1.2 Features

# Graphic and Ethernet

The NuPRO-861 is base on the Intel $^{®}$ 855GME chipset, offers users integrated LVDS, graphic, and gigabit Ethernet.

• Enhanced integrated LVDS & graphics:

■ 400 / 533 MHz FSB support
■ LVDS resolution up to 1600 x 1200 UXGA
- Onboard LVDS, DVI interface & CRT VGA connector

• Built-in Gigabit Ethernet:

- Onboard Intel® Gigabit Ethernet controller
■ Support 10 / 100 / 1000 Base-TX Ethernet

\- Memory:

■ DDR-SDRAM 266 / 333
■ 2 x 184-pins DIMM socket, with support ECC
■ Up to 2.0GB memory (max.)

• I/O Connectivity - ICH4:

■ Four Hi-Speed USB2.0 ports
- Onboard AC97 Audio pin header (IP-ALCS20 Audio card by option)

# Ultra ATA/66/100

The ICH4 provides two channel Ultra ATA/66/100 Bus Master IDE controller, that support Ultra ATA/66/100 protocols - perfect for demanding applications such as real-time video, multimedia, and high performance operating system. A new IDE cable is required for Ultra ATA/66/100. This cable is an 80-conductor cable; however the connectors are backwards compatible with ATA/33.

# Hardware Monitoring

Hardware monitoring allows the user to monitor various aspects of their systems operations and status. The features include CPU temperature, voltage and RPM of fan. Moreover, the NuPRO-861 with jumper can adjust the fan speed.

# I/O Shield Connector

The SBC is equipped with an I/O bracket. Please use the appropriate I/O shield.

![Diagram of a cylindrical electronic device with four labeled ports (no text or symbols)](.nupro-861-manual-3/56dd7035389be8f99813dbc77219f6e993e3c1015231713494faf660deb24625.jpg)

Figure 1: I/O back panel layout

# NuPRO-861 Series Overview

<table><tr><td>Function</td><td>NuPRO-861</td></tr><tr><td>◆ Chipset</td><td>Intel® 855GME</td></tr><tr><td>◆ LVDS function</td><td>◎</td></tr><tr><td>◆ DVI function</td><td>◎</td></tr><tr><td>◆ VGA function</td><td>◎</td></tr><tr><td>◆ Gigabit Ethernet function</td><td>◎</td></tr><tr><td>◆ 40-pins EIDE interface</td><td>2</td></tr><tr><td>◆ Type II CF socket</td><td>1</td></tr><tr><td>◆ Parallel port</td><td>1</td></tr><tr><td>◆ Serial ports</td><td>2</td></tr><tr><td>◆ USB 2.0 ports (by USB cable)</td><td>4</td></tr><tr><td>◆ Fan connector</td><td>2</td></tr></table>

# 1.3 Functional Block

The following topics provide an overview of the NuPRO-861 main features as shown in the functional block diagram below and also the main board.

Functional Block Diagram
![**Blocks:**\n*   VRM\n*   Socket 478-pins for Intel Pentium M\n*   Clock\n*   GMCH (855GME) 732 Micro FCBGA\n*   DVI / CRT Device\n*   DDR266/333 X2\n*   IDE Primary\n*   IDE Secondary\n*   CF Socket\n*   USB Port 1/2\n*   USB Port 3/4\n*   ICH4 421 BGA\n*   Intel 82541 10/100/1000 Base-TX\n*   PCI BUS\n*   ISA Bridge IT8888\n*   PICMG SLOT\n*   Super I/O W83627HF\n*   FWH\n*   Keyboard\n*   Mouse\n*   COM Port\n*   LPT Port\n*   Floppy\n\n**Connections:**\n*   **VRM** connects to **Socket 478-pins for Intel Pentium M**.\n*   **Clock** connects to **Socket 478-pins for Intel Pentium M**.\n*   **Socket 478-pins for Intel Pentium M** connects to **GMCH (855GME) 732 Micro FCBGA** (Labels: ADDR, CTRL, DATA, 400/533 MHz FSB).\n*   **GMCH (855GME) 732 Micro FCBGA** connects to **DVI / CRT Device** (Label: LVDS or VGA).\n*   **GMCH (855GME) 732 Micro FCBGA** connects to **DDR266/333 X2**.\n*   **GMCH (855GME) 732 Micro FCBGA** connects to **ICH4 421 BGA**.\n*   **ICH4 421 BGA** connects to **IDE Primary**, **IDE Secondary**, and **CF Socket** (Label: ATA100).\n*   **ICH4 421 BGA** connects to **USB Port 1/2** and **USB Port 3/4** (Label: USB2.0).\n*   **ICH4 421 BGA** connects to **Super I/O W83627HF**.\n*   **ICH4 421 BGA** connects to **PCI BUS**.\n*   **PCI BUS** connects to **Intel 82541 10/100/1000 Base-TX**.\n*   **PCI BUS** connects to **ISA Bridge IT8888**.\n*   **ISA Bridge IT8888** connects to **PICMG SLOT** (Label: ISA BUS).\n*   **Super I/O W83627HF** connects to **FWH**.\n*   **Super I/O W83627HF** connects to **Keyboard**, **Mouse**, **COM Port**, **LPT Port**, and **Floppy**.](.nupro-861-manual-3/de56e4600cdbbcad4d0b8752f05d698c88ca8cca13ebd192c811767874edc296.jpg)

Figure 2: Functional Block Diagram

# 1.4 Specifications

- Processor:
- Intel® Pentium® M processor with socket 478-pins package
- Processor operating at 1.3GHz and up to 1.8GHz

■ System bus frequency at 400/533MHz FSB

\- Chipset:

Intel® 855GME + ICH4 AGPset

- DRAM Module:
- 2 x 184-pins DIMM socket
• For DDR 266 / 333 memory

■ Support DDR SDRAM up to 2GB (max.)

• LVDS / DVI & VGA:

- Intel® 855GME Chipset integrated LVDS & Graphic controller
- Onboard one DVI & 16-pins CRT VGA connectors
- Gigabit Ethernet:
- Intel® 82541 Ethernet controller

■ For 10 / 100 / 1000 Base-TX Ethernet
- Onboard one RJ-45 Ethernet connector

• External Connector:

- 1 x type II CompactFlash™ connector
- (If user uses the CF card, it will occupy the IDE2 master.)
- 1 x 5-pins extend to Backplane for external KB connector

\- Onboard I/O:

- On-Chip I/O integrated with Keyboard, Mouse, Parallel and Serial,
■ Fast IR and Power-ON controller

\- Onboard PCI / IDE:

Intel $^{®}$ ICH4 south bridge controller
■ PCI rev2.2 Compliant
■ ACPI Compliant Power Management
- PCI Bus IDE Port with PIO / Ultra DMA-100 x 2 (Up to four Devices)

\- Rear I/O Connectors:

• RJ-45 Ethernet connector
• D-Sub DVI connector
• PS/2 Mouse and PS/2 style Keyboard
- Internal I/O Connectors (pin-header):

• 1 x 16-pins CRT VGA port
• 2 x Serial ports for RS-232
- 4 x USB2.0 connectors (USB cable with bracket)

\- BIOS:
  - Award Plug and Play BIOS

\- Form Factor:
  - 13.3" x 4.8" (338 x 122mm)

• Weight:
■ 0.84lb (380g)

# 2

# Installation

# 2.1 System Installation

# CPU Installation

Carefully follow the steps below to install the CPU:

1. Check and confirm that the jumpers are correctly set for the CPU being installed (figure 3).
2. Lift the releasing lever of the Socket 478.
3. Align the pins of the CPU with the pinholes of the Socket 478. Be sure to pay attention to the orientation of the CPU.

![Lever..\nNotch..](.nupro-861-manual-3/c822fc2112319b73d1d6ce6b304b65ccb98e834cbd6466d098f8bfe23e7159e7.jpg)

Figure 3: CPU Socket

4. Push down the CPU into the Socket 478.
5. Push down the release lever and lock it against the key hook.
6. Hook the hole in ZIF clip for the CPU cooling fan onto the notch on the socket 478.
7. Place the CPU cooling fan on top of the CPU surface.

8. Push down the opposite side of the ZIF clip and hook it.
9. Slide the head of the clip to left and lock it.
10. Connect the cooling fan cable to the socket as shown below. Be careful not to place the cable on the CPU cooling fan.

# Removing a CPU:

1. Before removing the CPU, turn off the NuPRO-861 Series power; then wait for about 20 minutes until the heat radiation plate of the cooling fan and the CPU cools down.
2. To remove the CPU, lift the releasing lever of the Socket 478.

CAUTION: The CPU and the heat radiation plate are hot. They may cause burns.

To remove the CPU, reverse the installation steps.

# Heat Sink & Retention Module Installation

Make sure there is good contact between the processors and the heat sinks & fan. Insufficient contact, incorrect types of heat sinks, fans, thermal compound used, or improper amount of thermal compound applied on the CPU die can cause the processors to overheat, which may cause the system to crash.

![Technical line drawings of mechanical components including a fan, bracket, and housing (no text or symbols)](.nupro-861-manual-3/e800da556ad10bba089f1ff41df720df8e5ff78d01a899b995f87113d1815708.jpg)

Figure 4: Heat Sink & Retention Module Installation

# Memory Module Installation

Figure 5 illustrates the notch marks and what they should look like on the DIMM memory module.

DIMMs have 184-pins and two notches matching the onboard DIMM socket. DIMM modules are installed by placing the chip firmly into the socket at a 90-degree angle and pressing straight down (figure 6) until it fits tightly into the DIMM socket.

![Diagram of a dual-chamber integrated circuit package with slots and connectors (no text or labels)](.nupro-861-manual-3/ee8a3c2fde2ae71a7ce53d159ed406b78b822b48d3356f88da7e16fb57060f8f.jpg)

Figure 5: DIMM Memory and 184-pins Socket

![Pull it+\nPull it+](.nupro-861-manual-3/c88050e647a1ca9e66a95037b4e4b3c8a09550c33dba6748fd17bb9af86a398a.jpg)

Figure 6: Memory Installation

Carefully follow the steps below to install the DIMMs:

1. To avoid generating static electricity and damaging the DIMM, ground yourself by touching a grounded metal surface or using a ground scrap before touching the DIMM.
2. Do not touch the connector of the DIMM. Dirt residues may cause malfunctions.
3. Hold the DIMM with its notch to the front side of the NuPRO-861 Series and insert it completely into the socket. A DIMM should be inserted into the inner socket first. Guide the hole on each end of the DIMM over the retaining post at each end of the DIMM socket.
4. If installing two DIMMs, install the second DIMM using the same procedure as above.
5. Do not forcefully insert the DIMM if it does not go in smoothly. Remove the DIMM completely and try again.

6. Make sure the DIMM is properly installed and locked by the tabs on both sides of the socket.

# Removing a DIMM:

To remove the DIMM, use fingers or a small screwdriver to carefully push away the plastic tabs that secure the DIMM at each end. Lift it out of the socket.

Make sure the DIMM is stored in an anti-static bag which must be of the same size and manufacture of memory modules.

# Setting Jumpers and DIP Switches

There are jumpers and DIP-switches on the Embedded Board of the NuPRO-861 Series. You can set the jumpers to make the necessary operations.

![Abstract 3D geometric shapes arranged in a grid, no text or symbols present](.nupro-861-manual-3/6b918a0b64237a3821c01c175aa49755bac13a48898a8681e7ed19cf3ca16c3b.jpg)

Figure 7: Jumper Connector

For three-pin jumpers (Figure 7), the jumper setting is 1-2 when the jumper connects pins 1 and 2. The setting is 2-3 when pins 2 and 3 are connected and so on. The pins are numbered "1" and "3" on the circuit board for identification purposes. Also, pin 1 has a thick line surrounding the jumper.

To move a jumper from one position to another, use needle-nose pliers or tweezers to pull the pin cap off the pins and move to the required position.

# 2.2 Board Layout

![CN2\nCN6\nCN7 CN11\nCN15\nCN17\nCN18\nCN20\nCN19\nCN9\nUSB2/3\nJP1\nJP3\nCN8\nUSB0/1\nCN1 CN5\nCF\nLVDS\nCN14\nJP2\nCN3\nCN4 CN10\nCN13\nCN12](.nupro-861-manual-3/480f08924d33122d3b89f35c6bdfed9830e808c17887e92088bdbbcab5df9545.jpg)

Figure 8: Jumper and Connector Locations

# 2.3 Jumper setting

# Jumper Location Description:

Use the information in the following table to change the jumpers and the DIP switches.

<table><tr><td>Jumpers</td><td>Functions</td></tr><tr><td>JP1</td><td>Clear CMOS Setting Select</td></tr><tr><td>JP2</td><td>CPU Type Setting Select</td></tr><tr><td>JP3</td><td>Watchdog Timer Setting Select</td></tr></table>

A description on setting the jumpers to enable/disable or change functions To set up the correct configuration is . All jumpers' location please refer to jumper location diagram.

# 1. Clear CMOS Setting Select: JP1

<table><tr><td>Function</td><td>JP1</td></tr><tr><td>Normal (Default)</td><td>1-2</td></tr><tr><td>Clear CMOS</td><td>2-3</td></tr></table>

# Location

![Top-down schematic of an electronic circuit board with multiple components and a highlighted circular component (no text or labels)](.nupro-861-manual-3/253d78c2d6f51d79246120d3bf3b808f395be4f1eb5d645f4f4eb000999ba498.jpg)

# 2. CPU Type Setting Select: JP2

<table><tr><td>Function</td><td>JP2</td></tr><tr><td>CPU FSB 400 MHz (Default)</td><td>1-2 On</td></tr><tr><td>CPU FSB 533 MHz</td><td>1-2 Off</td></tr></table>

# Location

![Top-down schematic of an electronic circuit board with multiple components and a highlighted circular component (no text or labels)](.nupro-861-manual-3/22fe13907feaf2bfa22a617694b1f847e88671bd2ab78a9ee8e8eed95f6f05f4.jpg)

# 3. Watchdog Timer Setting Select: JP3

<table><tr><td>Function</td><td>JP3</td></tr><tr><td>NMI</td><td>1-2</td></tr><tr><td>Reset System (Default)</td><td>2-3</td></tr></table>

# Location:

![Interior view of a computer motherboard showing CPU socket, drive bays, and memory card (no text or labels visible)](.nupro-861-manual-3/d9a806c5099848dba1bc9a5326800653e2b5f423ec1ba14d291a56d658e5486d.jpg)

# 2.4 Connectors Description

![CN2\nCN6\nCN7 CN11\nCN15\nCN17\nCN18\nCN20\nCN19\nCN9\nUSB2/3\nJP1\nJP3\nCN8\nUSB0/1\nCN1 CN5\nCF\nLVDS\nCN14\nJP2\nCN3\nCN4 CN10\nCN13\nCN12](.nupro-861-manual-3/33d7566f1537770d92235f9f75cc67632d505508627eb836166dc9dd19c541ee.jpg)

Figure 9: Connector Location

# Table for Connector's Location Description:

Use the information in the following table to change the connector.

<table><tr><td>Connectors</td><td>Functions</td></tr><tr><td>CN1</td><td>Secondary IDE Connector</td></tr><tr><td>CN2</td><td>Parallel Port Connector</td></tr><tr><td>CN3</td><td>System Panel Indicate Connector</td></tr><tr><td>CN4</td><td>IrDA Connector</td></tr><tr><td>CN5</td><td>Primary IDE Connector</td></tr><tr><td>CN6</td><td>Floppy Disk Connector</td></tr><tr><td>CN7</td><td>COM1 RS-232 Serial Port Connector</td></tr><tr><td>CN8</td><td>USB 0/1 (Pin-Header) Connector</td></tr><tr><td>CN9</td><td>USB 2/3 (Pin-Header) Connector</td></tr><tr><td>CN10</td><td>ATX Control Power Connector</td></tr><tr><td>CN11</td><td>COM2 RS-232 Serial Port Connector</td></tr><tr><td>CN12</td><td>System Fan Power Connector</td></tr><tr><td>CN13</td><td>CPU Fan Power Connector</td></tr><tr><td>CN14</td><td>18/24 Bits LVDS Panel Interface</td></tr><tr><td>CN15</td><td>Gigabit Ethernet RJ-45 Connector</td></tr><tr><td>CN16</td><td>Audio Port Connector</td></tr><tr><td>CN17</td><td>CRT VGA Port Connector</td></tr><tr><td>CN18</td><td>DVI Port Connector</td></tr><tr><td>CN19</td><td>External Keyboard Connector</td></tr><tr><td>CN20</td><td>PS/2 Keyboard &amp; Mouse Connector</td></tr><tr><td>CF</td><td>Type II CompactFlash Connector</td></tr></table>

# Secondary IDE Connector (40-pins 2.54mm Pitch Pin-Header with Housing): CN1

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</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>DRQ 1</td><td>22</td><td>Ground</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>Host ALE</td></tr><tr><td>29</td><td>DACK 1</td><td>30</td><td>Ground</td></tr><tr><td>31</td><td>IRQ 15</td><td>32</td><td>No Connect</td></tr><tr><td>33</td><td>Address 1</td><td>34</td><td>Ground</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>

![Back view of a computer motherboard showing CPU socket layout and drive bays (no text or labels visible)](.nupro-861-manual-3/94fcbb1493e6c28fd21065620b60c4d5c2073b330c378020aec9f1e2784fc92e.jpg)

![39\n1\n40\n2](.nupro-861-manual-3/61847a5686b3f73d53a9205f9c19a5887a96dc0991bcbd1d99a41788a97a080b.jpg)

Figure 10: Secondary IDE Connector

Parallel Port Connector (26-pins 2.54mm Pitch Pin-Header with Housing): CN2

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Line Printer Strobe</td><td>2</td><td>Auto Feed</td></tr><tr><td>3</td><td>PD 0, Parallel Data 0</td><td>4</td><td>Error</td></tr><tr><td>5</td><td>PD 1, Parallel Data 1</td><td>6</td><td>Initialize</td></tr><tr><td>7</td><td>PD 2, Parallel Data 2</td><td>8</td><td>Select</td></tr><tr><td>9</td><td>PD 3, Parallel Data 3</td><td>10</td><td>Ground</td></tr><tr><td>11</td><td>PD 4, Parallel Data 4</td><td>12</td><td>Ground</td></tr><tr><td>13</td><td>PD 5, Parallel Data 5</td><td>14</td><td>Ground</td></tr><tr><td>15</td><td>PD 6, Parallel Data 6</td><td>16</td><td>Ground</td></tr><tr><td>17</td><td>PD 7, Parallel Data 7</td><td>18</td><td>Ground</td></tr><tr><td>19</td><td>ACK, 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>

![Top-down schematic of a computer motherboard showing CPU socket layout and drive connections (no text or labels)](.nupro-861-manual-3/b33edf69bfa916c6afe844e4770956ab088fb4b36a19e9136412256c428fd79b.jpg)

![25\n1\n26\n2](.nupro-861-manual-3/6ecd5cbaea3ef8adf65de1da17dc7f73fabfb9a5dde7d3e0e7b8c09684d35e78.jpg)

Figure 11: Parallel Port Connector

System Panel Indicate Connector: CN3

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td colspan="2">PWR LED</td><td colspan="2">SPEAKER</td></tr><tr><td>1</td><td>+5V</td><td>2</td><td>SPKR</td></tr><tr><td>3</td><td>NC</td><td>4</td><td>BUZZ</td></tr><tr><td>5</td><td>PWRLED (Ground)</td><td>6</td><td>NC</td></tr><tr><td colspan="2">KEYLOCK</td><td>8</td><td>+5V</td></tr><tr><td>7</td><td>KEYLOCK</td><td colspan="2">RESET</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>RESET</td></tr><tr><td colspan="2">ATX Control</td><td>12</td><td>Ground</td></tr><tr><td>11</td><td>Ground</td><td colspan="2">HDD LED</td></tr><tr><td>13</td><td>NC</td><td>14</td><td>HDDLED</td></tr><tr><td>15</td><td>ATX PWRON</td><td>16</td><td>+5V</td></tr><tr><td>17</td><td>5VSB</td><td colspan="2">PWR ON</td></tr><tr><td>19</td><td>---</td><td>18</td><td>PWRBT+ (Dual 5V)</td></tr><tr><td colspan="2"></td><td>20</td><td>PWRBT- (Ground)</td></tr></table>

![Top-down schematic of a computer motherboard showing CPU socket, RAM slots, and drive bays (no text or labels)](.nupro-861-manual-3/2bfbd16ad873a488d099ee0eb3d0e0a83763fbd27c05cb7dfec7ae1431aa4fac.jpg)

![1\n2\n19\n20](.nupro-861-manual-3/17a189acef3b2497cdde1e9e882534820f52c8f4fa3677e8446208fb2e233099.jpg)

Figure 12: System Panel Indicate Connector

# IrDA Connector (5-pins Pin-Header): CN4

<table><tr><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>+5V</td></tr><tr><td>2</td><td>FIRTX</td></tr><tr><td>3</td><td>IRRX</td></tr><tr><td>4</td><td>Ground</td></tr><tr><td>5</td><td>IRTX</td></tr></table>

![Exploded view diagram of a computer motherboard showing CPU socket, RAM slots, and memory card (no text or labels)](.nupro-861-manual-3/1551d712cee9aa78281acaf84f997638cd91a9b8446c65a217f86f897d570cf7.jpg)

![A vertical column of five circles appears on the left side. The top circle is black, while the four circles below it are white. To the right, the number 1 is positioned near the top, and the number 5 is positioned near the bottom.](.nupro-861-manual-3/9adb5a8d5a3192f80d83e7018ad540a6c67d569a8cdd75cb6afd412e06b1ff9c.jpg)
Figure 13: IrDA Connector

Primary IDE Connector (40-pins 2.54mm Pitch Pin-Header with Housing): CN5

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</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>DRQ 0</td><td>22</td><td>Ground</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>Host ALE</td></tr><tr><td>29</td><td>DACK 0</td><td>30</td><td>Ground</td></tr><tr><td>31</td><td>IRQ 14</td><td>32</td><td>No Connect</td></tr><tr><td>33</td><td>Address 1</td><td>34</td><td>Ground</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>

![Back view of a computer motherboard showing CPU socket and drive slots (no text or labels visible)](.nupro-861-manual-3/af72a34575009a72b58c83ca7d55c43dc8a9dccdbf12b2b69bfbbb86f5c3f39d.jpg)

![39\n1\n40\n2](.nupro-861-manual-3/503926dd4dbcbc6b235164627679eeb481cd5816f85de4a826d03ecb1e912343.jpg)

Figure 14: Primary IDE Connector

Floppy Disk Connector (34-pins 2.54mm Pitch Pin-Header with Housing): CN6

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Ground</td><td>2</td><td>Drive Density Selection</td></tr><tr><td>3</td><td>Ground</td><td>4</td><td>NC</td></tr><tr><td>5</td><td>Ground</td><td>6</td><td>NC</td></tr><tr><td>7</td><td>Ground</td><td>8</td><td>Index</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>Motor Enable 0</td></tr><tr><td>11</td><td>Ground</td><td>12</td><td>Drive Select 1</td></tr><tr><td>13</td><td>Ground</td><td>14</td><td>Drive Select 0</td></tr><tr><td>15</td><td>Ground</td><td>16</td><td>Motor Enable 1</td></tr><tr><td>17</td><td>Ground</td><td>18</td><td>Direction</td></tr><tr><td>19</td><td>Ground</td><td>20</td><td>Step</td></tr><tr><td>21</td><td>Ground</td><td>22</td><td>Write Data</td></tr><tr><td>23</td><td>Ground</td><td>24</td><td>Write Gate</td></tr><tr><td>25</td><td>Ground</td><td>26</td><td>Track 00</td></tr><tr><td>27</td><td>Ground</td><td>28</td><td>Write Protect</td></tr><tr><td>29</td><td>Ground</td><td>30</td><td>Read Data</td></tr><tr><td>31</td><td>Ground</td><td>32</td><td>Head Select</td></tr><tr><td>33</td><td>Ground</td><td>34</td><td>Diskette Change</td></tr></table>

![Top-down schematic of an electronic circuit board layout with multiple components and a highlighted circular annotation (no readable text or symbols)](.nupro-861-manual-3/cb7991e3f1874309c5f0deace5185328b2d5afd6bc9b72caa0c5f41853a13aa0.jpg)

![33\n1\n34\n2](.nupro-861-manual-3/f65994d2eabbc9fde9a2bb8b2fb4db14e089e4d9196f00d16791d2e5f6a8b5f1.jpg)

Figure 15: Floppy Disk Connector

COM1 RS-232 Serial Port Connector (10-pins Pin-Header): CN7

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>DCD</td><td>2</td><td>DSR</td></tr><tr><td>3</td><td>RXD</td><td>4</td><td>RTS</td></tr><tr><td>5</td><td>TXD</td><td>6</td><td>CTS</td></tr><tr><td>7</td><td>DTR</td><td>8</td><td>RI</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>Ground</td></tr></table>

Figure 16: COM1 RS-232 Serial Port Connector
USB 0/1 Connector (9-pins Pin-Header): CN8

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>VCC</td><td>2</td><td>VCC</td></tr><tr><td>3</td><td>USB0N</td><td>4</td><td>USB1N</td></tr><tr><td>5</td><td>USB0P</td><td>6</td><td>USB1P</td></tr><tr><td>7</td><td>Ground</td><td>8</td><td>Ground</td></tr><tr><td>9</td><td>---</td><td>10</td><td>NC</td></tr></table>

![Top-down schematic of an electronic circuit board with multiple components and a highlighted circular region (no text or symbols)](.nupro-861-manual-3/4c12f216068f3d1ba4a5bfe81623257386dccfb142a7930dd0a3b57798ecefcc.jpg)

![The image shows a math ten-frame exercise. At the top left is the number '2' and at the top right is the number '10'. Below these numbers is a rectangular grid divided into two rows. The top row contains five white circles. The bottom row contains one black square on the far left, followed by four white circles. Below the grid, the number '1' is centered under the black square, and the number '9' is centered under the white circles.](.nupro-861-manual-3/a7f6d37ced32e2b2e4df18e8727a1f6fe0e2ef5e0f93849adf332eb40004172f.jpg)
Figure 17: USB 0/1 Connector

USB 2/3 Connector (9-pins Pin-Header): CN9

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>VCC</td><td>2</td><td>VCC</td></tr><tr><td>3</td><td>USB2N</td><td>4</td><td>USB3N</td></tr><tr><td>5</td><td>USB2P</td><td>6</td><td>USB3P</td></tr><tr><td>7</td><td>Ground</td><td>8</td><td>Ground</td></tr><tr><td>9</td><td>---</td><td>10</td><td>NC</td></tr></table>

![Back view of a computer motherboard with multiple CPU socket modules and a highlighted circular component (no text or symbols visible)](.nupro-861-manual-3/2dfa2f2e9a1577ec459b022040f2f40add3f8a7f0b96479343c7a8a30bf67772.jpg)

![The image displays a math problem. At the top, the numbers '2' and '10' appear. In the center is a ten-frame grid: the top row has five white circles, and the bottom row contains a black square followed by four white circles. Below the grid are the numbers '1' and '9'.](.nupro-861-manual-3/cf02286fe76d99cd82ec231027663ec14c0f2511a93d6a3fbf8b3955c6a825b5.jpg)
Figure 18: USB 2/3 Connector

# ATX Control Power Connector: CN10

<table><tr><td>Pin #</td><td>Assignment</td></tr><tr><td>1</td><td>NC</td></tr><tr><td>2</td><td>5VSB</td></tr><tr><td>3</td><td>ATX_PWRON</td></tr><tr><td>4</td><td>Ground</td></tr></table>

![Pure electrical circuit lines without any symbols](.nupro-861-manual-3/ea6be790acdeba4f0cfa37ec320a74dbdbe4b10bb2215c2523cc5e653965e022.jpg)

![This image displays a schematic diagram of a connector pinout. At the top is a rectangular outline containing a solid black square on the far left and three hollow circles to its right; above the rectangle are three small rectangular notches. Below the rectangle is a small triangle pointing upward. At the very bottom are the numbers '1' and '4' separated by a horizontal line connecting them.](.nupro-861-manual-3/460a419c36d4dd4ec940c2d5994c333e66ca368e0efe673d0007d91a60ae45bf.jpg)
Figure 19: ATX Control Power Connector

# COM2 RS-232 Serial Port Connector (10-pins Pin-Header): CN11

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>DCD</td><td>2</td><td>DSR</td></tr><tr><td>3</td><td>RXD</td><td>4</td><td>RTS</td></tr><tr><td>5</td><td>TXD</td><td>6</td><td>CTS</td></tr><tr><td>7</td><td>DTR</td><td>8</td><td>RI</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>Ground</td></tr></table>

![Top-down schematic of an electronic device layout with CPU, RAM slots, and a highlighted component (no text or labels)](.nupro-861-manual-3/2333ec2ac9c193bda3123aa075dd5f8119f45fcad227221f53993e1ac0e689b6.jpg)

![The image displays a schematic diagram of a connector pinout. It features a rectangle containing two rows of circular terminals. The top row consists of four white circles and one black square located at the far right. The bottom row consists of five white circles. Surrounding the rectangle are numbers indicating pin positions: the number '9' is at the top left, '1' is at the top right, '10' is at the bottom left, and '2' is at the bottom right.](.nupro-861-manual-3/21e5957c259ccc2baf4c92564f5de7ea52235e057ccf97574d10d7690813168c.jpg)
Figure 20: COM2 RS-232 Serial Port Connector

# System fan power connector: CN12

<table><tr><td>Pin #</td><td>Assignment</td></tr><tr><td>1</td><td>Ground</td></tr><tr><td>2</td><td>VCC</td></tr><tr><td>3</td><td>Fan Status Signal</td></tr></table>

![Top-down schematic of a computer motherboard showing CPU socket, RAM slots, and drive bays (no text or labels)](.nupro-861-manual-3/c4aec35b5576a2161b7fb3a96151e19de43f2f5d5abec1104eb3de88ad953339.jpg)

![The image displays a vertical graphic featuring a traffic light icon and two numbers. On the left, a vertical rectangular outline contains three stacked indicators: a white circle at the top, a white circle in the middle, and a solid black square at the bottom. To the right of the top circle is the number '3', and below that, aligned with the bottom square, is the number '1'.](.nupro-861-manual-3/c8427e40f71c0dcf7c9787507138d0fc33c8bc9dfd32918a7e208de841cfec23.jpg)
Figure 21: System Fan Power Connector

CPU fan power connector: CN13

<table><tr><td>Pin #</td><td>Assignment</td></tr><tr><td>1</td><td>Ground</td></tr><tr><td>2</td><td>VCC</td></tr><tr><td>3</td><td>Fan Status Signal</td></tr></table>

![Pure electrical circuit lines without any symbols](.nupro-861-manual-3/9817d4f55843dded1a96c3db5480f3fb5ef02c54f1853357d189d60d5cd2bb71.jpg)

![A vertical black rectangle on the left contains two white circles stacked vertically above a black square. To its right, the number '3' is aligned near the top and the number '1' is aligned near the bottom.](.nupro-861-manual-3/883b04edfbd16ee12afb270a285cc590a1ee2c8a758fd3cbe0006f2177b34164.jpg)
Figure 22: CPU fan power connector

18/24 Bits LVDS Panel Interface (40-pins Male): CN14

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>NC</td><td>2</td><td>NC</td></tr><tr><td>3</td><td>Ground</td><td>4</td><td>Ground</td></tr><tr><td>5</td><td>YAM0</td><td>6</td><td>YAM1</td></tr><tr><td>7</td><td>YAP0</td><td>8</td><td>YAP1</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>Ground</td></tr><tr><td>11</td><td>YAM2</td><td>12</td><td>CLKAM</td></tr><tr><td>13</td><td>YAP2</td><td>14</td><td>CLKAP</td></tr><tr><td>15</td><td>Ground</td><td>16</td><td>Ground</td></tr><tr><td>17</td><td>YAM3</td><td>18</td><td>YBM0</td></tr><tr><td>19</td><td>YAP3</td><td>20</td><td>YBP0</td></tr><tr><td>21</td><td>Ground</td><td>22</td><td>Ground</td></tr><tr><td>23</td><td>YBM1</td><td>24</td><td>YBM2</td></tr><tr><td>25</td><td>YBP1</td><td>26</td><td>YBP2</td></tr><tr><td>27</td><td>Ground</td><td>28</td><td>Ground</td></tr><tr><td>29</td><td>CLKBM</td><td>30</td><td>YBM3</td></tr><tr><td>31</td><td>CLKBP</td><td>32</td><td>YBP3</td></tr><tr><td>33</td><td>NC</td><td>34</td><td>+12V</td></tr><tr><td>35</td><td>NC</td><td>36</td><td>+12V</td></tr><tr><td>37</td><td>NC</td><td>38</td><td>PVCC</td></tr><tr><td>39</td><td>BKL</td><td>40</td><td>PVCC</td></tr></table>

![Back view of an electronic circuit board with multiple microcontroller units and a highlighted connection point (no text or symbols visible)](.nupro-861-manual-3/2d84f325ef50f3ae89367ea9b31ba455a1340f6e49e23ce83e0b8496d5c239d3.jpg)

![1\n39\n2\n40](.nupro-861-manual-3/6ac2e060a8b8fb11d42eef137f062e1f8065b0941ffddebb6f3e9153e1271e1e.jpg)

Figure 23: 18/24 Bits LVDS Panel Interface

Gigabit Ethernet RJ-45 Connector (RJ-45 Phone–Jack): CN15

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>0P</td><td>10</td><td>3N</td></tr><tr><td>2</td><td>0N</td><td>11</td><td>LINK1000#</td></tr><tr><td>3</td><td>1P</td><td>12</td><td>LINK100#</td></tr><tr><td>4</td><td>1N</td><td>13</td><td>LINK#</td></tr><tr><td>5</td><td>Ground</td><td>14</td><td>ACT#</td></tr><tr><td>6</td><td>Ground</td><td>15</td><td>CH1</td></tr><tr><td>7</td><td>2P</td><td>16</td><td>CH2</td></tr><tr><td>8</td><td>2N</td><td>17</td><td>NPTH1</td></tr><tr><td>9</td><td>3P</td><td>18</td><td>NPTH2</td></tr></table>

![Top-down schematic of an electronic circuit board layout with multiple components and a highlighted circular component (no text or labels)](.nupro-861-manual-3/47fec33df69509fc76355fc6958a3613ef443c7b9e6603cd0c88c0284d15aa8b.jpg)

![This is a black-and-white line drawing of an RJ45 Ethernet jack. The rectangular connector features two small rectangular notches at the top left and right corners. Inside, a large central cutout reveals a row of eight vertical slots at the bottom, representing the metal contacts. Two small rectangular tabs extend from the bottom edge.](.nupro-861-manual-3/df4fe6eb11786fe72ed6e26c523f496be5c8e177e20e65f3c55bc1e2cf60a29f.jpg)
Figure 24: Gigabit Ethernet RJ-45 Connector

# Audio Port Connector (9-pins Pin-Header): CN16

<table><tr><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>+12V</td></tr><tr><td>2</td><td>3.3V</td></tr><tr><td>3</td><td>AC_SYNC</td></tr><tr><td>4</td><td>AC_SDOUT</td></tr><tr><td>5</td><td>Ground</td></tr><tr><td>6</td><td>AC_BCLK</td></tr><tr><td>7</td><td>Ground</td></tr><tr><td>8</td><td>AC_RST#</td></tr><tr><td>9</td><td>AC_SDIN0</td></tr></table>

![1\n9](.nupro-861-manual-3/324b13de40d05dc8ed0576811efa73748eafb978c48cd7d66de2f3645234026f.jpg)

Figure 25: Audio Port Connector

# CRT VGA Port Connector (16-pins Pin-Header): CN17

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Red</td><td>2</td><td>VCC</td></tr><tr><td>3</td><td>Green</td><td>4</td><td>Ground</td></tr><tr><td>5</td><td>Blue</td><td>6</td><td>NC</td></tr><tr><td>7</td><td>---</td><td>8</td><td>Data</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>HSync</td></tr><tr><td>11</td><td>Ground</td><td>12</td><td>VSync</td></tr><tr><td>13</td><td>Ground</td><td>14</td><td>Clock</td></tr><tr><td>15</td><td>Ground</td><td>16</td><td>NC</td></tr></table>

![Pure electrical circuit lines without any symbols](.nupro-861-manual-3/d002d5d2329b8d35d7c31c0c412ffb2e52c92dcae0fa2290280fee4427ddcf39.jpg)

![1\n2\n15\n16](.nupro-861-manual-3/aeee6f11d569bb650755682b9dbd337998197cc4cd5c5d1d891bf56c3283bbf6.jpg)

Figure 26: CRT VGA Port Connector

DVI Port Connector (30-pins Pin-Header): CN18

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>TX2-</td><td>16</td><td>HPDET</td></tr><tr><td>2</td><td>TX2+</td><td>17</td><td>TX0-</td></tr><tr><td>3</td><td>Ground</td><td>18</td><td>TX0+</td></tr><tr><td>4</td><td>NC</td><td>19</td><td>Ground</td></tr><tr><td>5</td><td>NC</td><td>20</td><td>NC</td></tr><tr><td>6</td><td>DATA</td><td>21</td><td>NC</td></tr><tr><td>7</td><td>CLOCK</td><td>22</td><td>Ground</td></tr><tr><td>8</td><td>CRT_VS</td><td>23</td><td>TXC+</td></tr><tr><td>9</td><td>TX1-</td><td>24</td><td>TXC-</td></tr><tr><td>10</td><td>TX1+</td><td>25</td><td>CRT_RED</td></tr><tr><td>11</td><td>Ground</td><td>26</td><td>CRT_GREEN</td></tr><tr><td>12</td><td>NC</td><td>27</td><td>CRT_BLUE</td></tr><tr><td>13</td><td>NC</td><td>28</td><td>CRT_HS</td></tr><tr><td>14</td><td>DVI_5V</td><td>29</td><td>Ground</td></tr><tr><td>15</td><td>Ground</td><td>30</td><td>Ground</td></tr></table>

![Top-down schematic of an electronic circuit board with multiple components and a highlighted circular component (no text or labels)](.nupro-861-manual-3/ff1379a14ee90093c0bcfd8e6fc7747e60222a80841f2e9f325d1123ef9c792e.jpg)

![1\n8\n17\n24](.nupro-861-manual-3/bf4638807f8ad916ffd5cf195411a893ae7a19db9363362e0f28884280dc65ec.jpg)

Figure 27: DVI Port Connector

External Keyboard Connector (5-pins Pin-Header): CN19

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Keyboard CLOCK</td><td>2</td><td>Keyboard DATA</td></tr><tr><td>3</td><td>NC</td><td>4</td><td>Ground</td></tr><tr><td>5</td><td>VCC (5V)</td><td colspan="2"></td></tr></table>

![Pure electrical circuit lines without any symbols](.nupro-861-manual-3/a6a4f394c9428802b8e18d4a5dcc58251f0a142b18bc6be63ccd1c1a282206bc.jpg)

![The image displays a schematic diagram of a connector. At the top, the number '5' is positioned on the left and the number '1' on the right. Below these numbers is a rectangular outline representing the connector housing. Inside the rectangle, five small open circles are arranged in a horizontal row. On the far right, below the number '1,' there is a downward-pointing triangle and a solid black square. Two small notches are visible at the bottom edge of the rectangle.](.nupro-861-manual-3/2525c836de010db681cb76ffa14f0347459c854f5ba720d26e64c691e09c9626.jpg)
Figure 28: External Keyboard Connector

PS/2 Keyboard & Mouse Connector (6-pins Mini Din): CN20

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Keyboard DATA</td><td>2</td><td>Mouse DATA</td></tr><tr><td>3</td><td>Ground</td><td>4</td><td>VCC</td></tr><tr><td>5</td><td>Keyboard CLOCK</td><td>6</td><td>Mouse CLOCK</td></tr></table>

![Top-down schematic of an electronic circuit board layout with components and connectors (no text or labels visible)](.nupro-861-manual-3/566b6b54af339fa80f67a926b5818a265c118c0b462e4b38b537c30a5cb6fd79.jpg)

![6\n5\n4\n3\n2\n1](.nupro-861-manual-3/3e77df9eb373fa12259718ba81facc61de88cb6d9a8e7307dbffe53f5237eddf.jpg)

Figure 29: PS/2 Keyboard & Mouse Connector

Type II CompactFlash Connector: CF

<table><tr><td>Pin</td><td>Assignment</td><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Ground</td><td>2</td><td>D3</td></tr><tr><td>3</td><td>D4</td><td>4</td><td>D5</td></tr><tr><td>5</td><td>D6</td><td>6</td><td>D7</td></tr><tr><td>7</td><td>CS#1</td><td>8</td><td>Ground</td></tr><tr><td>9</td><td>Ground</td><td>10</td><td>Ground</td></tr><tr><td>11</td><td>Ground</td><td>12</td><td>Ground</td></tr><tr><td>13</td><td>VCC</td><td>14</td><td>Ground</td></tr><tr><td>15</td><td>Ground</td><td>16</td><td>Ground</td></tr><tr><td>17</td><td>Ground</td><td>18</td><td>A2</td></tr><tr><td>19</td><td>A1</td><td>20</td><td>A0</td></tr><tr><td>21</td><td>D0</td><td>22</td><td>D1</td></tr><tr><td>23</td><td>D2</td><td>24</td><td>NC</td></tr><tr><td>25</td><td>NC</td><td>26</td><td>NC</td></tr><tr><td>27</td><td>D11</td><td>28</td><td>D12</td></tr><tr><td>29</td><td>D13</td><td>30</td><td>D14</td></tr><tr><td>31</td><td>D15</td><td>32</td><td>CS#3</td></tr><tr><td>33</td><td>NC</td><td>34</td><td>IOR#</td></tr><tr><td>35</td><td>IOW#</td><td>36</td><td>VCC</td></tr><tr><td>37</td><td>INTS</td><td>38</td><td>VCC</td></tr><tr><td>39</td><td>CSEL#</td><td>40</td><td>NC</td></tr><tr><td>41</td><td>IDERST#</td><td>42</td><td>IORDY</td></tr><tr><td>43</td><td>NC</td><td>44</td><td>VCC</td></tr><tr><td>45</td><td>IDEACTS#</td><td>46</td><td>DET</td></tr><tr><td>47</td><td>D8</td><td>48</td><td>D9</td></tr><tr><td>49</td><td>D10</td><td>50</td><td>Ground</td></tr><tr><td>51</td><td>Ground</td><td>52</td><td>Ground</td></tr><tr><td>53</td><td>NC</td><td>54</td><td>NC</td></tr><tr><td>55</td><td>NC</td><td>56</td><td>NC</td></tr><tr><td>57</td><td>NC</td><td>58</td><td>NC</td></tr></table>

![Top-down schematic of a computer motherboard showing CPU socket, drive bays, and memory card (no text or labels)](.nupro-861-manual-3/53b1145579bead0e5c9f1da476517d72cfa5c973e83ff589d4dee4deaf284b5f.jpg)

![CF](.nupro-861-manual-3/31df16519ac5fc8999a38cb9439fb2b52d4826c37272d8dee7be42c965614a1c.jpg)

Figure 30: Type II CompactFlash Connector: CF

# 2.5 Optional IP-ALCS20 Audio Card

Thank you for choosing IP-ALCS20 Audio Card. Instructions on connecting the connector and the phone jack for audio functions are detailed below.

![CN1\nIP-ALCS20 Rev 1.0\nCN2\nCD_IN\nJP1](.nupro-861-manual-3/4a9293530e9f13f646c62f2dddd1918c01fd70a51f5dfc42212f2c1116b811af.jpg)

Figure 31: Board Location

# 1. Check the contents of the packing:

• IP-ALCS20 Audio Card

![Pure electrical circuit lines without any symbols](.nupro-861-manual-3/6304f897dc867514ef7a7312862723910b10ccb47965b9a67558f5580302ede6.jpg)

• Audio 9-pins round cable

![The image displays four identical, grey, mechanical-looking structures arranged in a horizontal row from left to right against a white background. Each structure appears to be a complex joint or linkage composed of vertical and horizontal bars.\n\nThe first structure on the left is connected to the second structure by three wavy, horizontal lines.\nThe second structure is connected to the third structure by three straight, horizontal lines.\nThe third structure is connected to the fourth structure by three straight, horizontal lines.\n\nThere is no text in the image.](.nupro-861-manual-3/e7fee966b296b19f30fc2d4e9f3c5b7325c0604eaeee50d301ffd8e7ee3871eb.jpg)

# 2. Audio Card Descriptions of Connector:

<table><tr><td>Connectors</td><td>Functions</td></tr><tr><td>JP1</td><td>CD_IN Connector</td></tr><tr><td>CN1</td><td>Audio Line_In, Line_Out, MIC Phone Jack</td></tr><tr><td>CN2</td><td>Audio Signal Connector</td></tr></table>

# 3. Description of Connector

CD\_IN Connector: JP1

<table><tr><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Left</td></tr><tr><td>2</td><td>Ground</td></tr><tr><td>3</td><td>Ground</td></tr><tr><td>4</td><td>Right</td></tr></table>

Audio Line\_In, Line\_Out, MIC Phone Jack: CN1

<table><tr><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>Line_In</td></tr><tr><td>2</td><td>Line_Out</td></tr><tr><td>3</td><td>MIC</td></tr></table>

Audio Signal Connector (9-pins): CN2

<table><tr><td>Pin</td><td>Assignment</td></tr><tr><td>1</td><td>+12V</td></tr><tr><td>2</td><td>3.3V</td></tr><tr><td>3</td><td>AC_SYNC</td></tr><tr><td>4</td><td>AC_SDOUT</td></tr><tr><td>5</td><td>Ground</td></tr><tr><td>6</td><td>AC_BCLK</td></tr><tr><td>7</td><td>Ground</td></tr><tr><td>8</td><td>AC_RST#</td></tr><tr><td>9</td><td>AC_SDIN0</td></tr></table>

# 3

# Award BIOS Setup

# 3.1 BIOS Instructions

Award's ROM BIOS provides a built-in Setup program, which allows the user to modify the basic system configuration and hardware parameters. The modified data will be stored in a battery-backed CMOS, so that data will be retained even when the power is turned off. In general, the information saved in the CMOS RAM will stay unchanged unless there is a configuration change in the system, such as hard drive replacement or a device is added.

It is possible for the CMOS battery to fail, which would cause data loss in the CMOS only. If this does happen the BIOS settings would need to be reconfigured.

# 3.2 Main Menu

Once the user enters into the AwardBIOS™ CMOS Setup Utility, the main menu will appear on the screen. The main menu allows the user to select from several setup functions and two exit choices. Use the arrow keys to select the items and press &lt;Enter&gt; to accept and enter the sub-menu.

Phoenix - AwardBIOS CMOS Setup Utility

<table><tr><td>➢Standard CMOS Feature➢Advanced BIOS Feature➢Advanced Chipset Feature➢Integrated Peripherals➢Power Management Setup➢PnP/PCI Configurations➢PC Health Status</td><td>➢Frequency/Voltage ControlLoad Fail-Safe DefaultsLoad Optimized DefaultsSet Supervisor PasswordSet User PasswordSave &amp; Exit SetupExit Without Saving</td></tr></table>

Esc: Quit ↑↓→←: Select Item

F10: Save & Exit Setup

Time, Date, Hard Disk Type....

Note: A brief description of each highlighted selection appears at the bottom of the screen.

# Setup Items:

The main menu includes the following main setup categories. Recall that some systems may not include all entries.

# Standard CMOS Features:

Use this menu for basic system configuration. Please refer to section 3.3 for further information.

# Advanced BIOS Features:

Use this menu to set the Advanced Features available on the system. Please refer to section 3.5 for further information.

# Advanced Chipset Features:

Use this menu to change the values in the chipset registers and to optimize the system's performance. Please refer to section 3.6 for further information.

# Integrated Peripherals:

Use this menu to specify the settings for integrated peripherals. Please refer to section 3.7 for further information.

# Power Management Setup:

Use this menu to specify the settings for power management. Please refer to section 3.8 for further information.

# PnP / PCI Configuration:

This entry appears if the user's system supports PnP / PCI. Please refer to section 3.9 for further information.

# PC Health Status:

Use this menu to view the system temperature, speed and voltage status. Please refer to section 3.10 for further information.

# Frequency / Voltage Control:

Use this menu to specify the settings for frequency/voltage control. Please refer to section 3.11 for further information.

# Load Fail-Safe Defaults:

Use this menu to load the BIOS default values for the minimal/stable performance for the system to operate. Please refer to section 3.12 for further information.

# Load Optimized Defaults:

Use this menu to load the BIOS default values that are factory settings for optimal performance system operations. While Award has designed the custom BIOS to maximize performance, the user can change these defaults to meet their needs. Please refer to section 3.13 for further information.

# Supervisor / User Password:

Use this menu to set User and Supervisor Passwords. Please refer to section 3.14 for further information.

# Save & Exit Setup:

Save CMOS value changes to CMOS and exit setup. Please refer to section 3.15 for further information.

# Exit Without Save:

Abandon all CMOS value changes and exit setup. Please refer to section 3.15 for further information.

# 3.3 Standard CMOS Features

The items in Standard CMOS Setup Menu are divided into 10 categories. Each category includes none, one, or more than one setup items. Use the arrow keys to highlight the item, then use the &lt;PgUp&gt; or &lt;PgDn&gt; keys to select the value required of each item.

Standard CMOS Features

<table><tr><td>Date (mm:dd:yy): Time (hh:mm:ss):</td><td>Mon, Aug 4200316:19:20</td><td rowspan="13">Item Help______Menu Level ➤Change the day, month, year and century</td></tr><tr><td>IDE Primary Master</td><td></td></tr><tr><td>IDE Primary Slave</td><td>13579 MB</td></tr><tr><td>IDE Secondary Master</td><td>None</td></tr><tr><td>IDE Secondary Slave</td><td>None</td></tr><tr><td></td><td>None</td></tr><tr><td>Drive A</td><td></td></tr><tr><td>Drive B</td><td>1.44M, 3.5 in.None</td></tr><tr><td>Video</td><td></td></tr><tr><td>Halt On</td><td>EGA/VGANo Errors</td></tr><tr><td>Based Memory</td><td></td></tr><tr><td>Extended Memory</td><td>640K</td></tr><tr><td>Total Memory</td><td>515072K516096K</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

Date: Options Month/DD/YYYY

Set the system date. Note that the ‘Day’ automatically changes when the date is set.

Time: Options HH : MM : SS

Set the system time.

IDE Primary Master: Options are in its sub menu (described in section 3.4)

Press &lt;Enter&gt; to enter the sub menu of detailed options.

IDE Primary Slave: Options are in its sub menu (described in section 3.4)

Press &lt;Enter&gt; to enter the sub menu of detailed options.

IDE Secondary Master: Options are in its sub menu (described in section 3.4)

Press &lt;Enter&gt; to enter the sub menu of detailed options.

IDE Secondary Slave: Options are in its sub menu (described in section 3.4)

Press &lt;Enter&gt; to enter the sub menu of detailed options.

Drive A / Drive B: Options None 360K, 5.25in/1.2M, 5.25in/720K, 3.5in/1.44M,

3.5in/2.88M, 3.5in

Select the type of floppy disk drive installed in the system.

Video: Options EGA/VGA/CGA 40/CGA 80/MONO

Select the default video device.

Halt On: Options All Errors/No Errors/All, but Keyboard/All, but Diskette/All, but Disk/Key

Select the situation in which the user wants the BIOS to stop the POST process and notify the user.

Base Memory: Option N/A

Displays the amount of conventional memory detected during boot up.

Extended Memory: Option N/A

Displays the amount of extended memory detected during boot up.

Total Memory: Option N/A

Displays the total memory available on the system.

# 3.4 IDE Adaptors

The IDE adapters control the hard disk drive. Use a separate sub menu to configure each hard disk drive.

Phoenix - AwardBIOS CMOS Setup Utility
IDE Primary Master

<table><tr><td>IDE HDD Auto-Detection</td><td>Press Enter</td><td>Item Help</td></tr><tr><td>IDE Primary MasterAccess Mode</td><td>AutoAuto</td><td rowspan="4">—Menu Level ➡&gt;To auto-detect the HDD&#x27;s size,head... on this channel</td></tr><tr><td>Capacity</td><td>13579 MB</td></tr><tr><td>CylinderHead</td><td>2631016</td></tr><tr><td>PrecompLanding ZoneSector</td><td>02630963</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

IDE HDD Auto-Detection: Options Press Enter

Press Enter to auto-detect the HDD on this channel. If detection is successful, it

fills the remaining fields on this menu.

IDE Primary Master: Options: None, Auto, and Manual

Selecting "Manual" allows the user to set the remaining fields on this screen. "User Type" allows the user to select the number of cylinders, heads, etc. Note: PRECOMP=65535 means NONE.

Access Mode: Options: CHS, LBA, Large, and Auto

Choose the access mode for this hard disk

Capacity: Options Auto Display your disk drive size

Disk drive capacity (Approximate). Note that this size is usually slightly larger than the size of a formatted disk given by a disk-checking program.

The following options are selectable only if the ‘IDE Primary Master’ item is set to ‘Manual’

Cylinder: Options Min = 0, Max = 65535

Set the number of cylinders for this hard disk.

Head: Options Min = 0, Max = 255

Set the number of read/write heads

Precomp: Options Min = 0, Max = 65535

\*\*\*\* Warning: Setting a value of 65535 indicates no hard disk

Landing zone: Options Min = 0, Max = 65535

\*\*\*\*

Sector: Options Min = 0, Max = 255

Number of sectors per track

# 3.5 Advanced BIOS Features

This section allows the user to configure their system for basic operation. The user can also select the system's default speed, boot-up sequence, keyboard operation, shadowing, and security.

Phoenix - AwardBIOS CMOS Setup Utility

Advanced BIOS Features

<table><tr><td>➢CPU Feature➢Hard Disk Boot PriorityVirus WarningCPU L1 &amp; L2 CacheQuick Power On Self TestFirst Boot DeviceSecond Boot DeviceThird Boot DeviceBoot Other DeviceSwap Floppy DriveBoot Up Floppy SeekBoot Up NumLock StatusGate A20 OptionSecurity OptionConsole RedirectionX Baud RateAgent Commect viaAgent wait time (min)Agent after boot</td><td>Press EnterPress EnterEnabledEnabledEnabledFloppyHard DiskLS-120EnabledDisabledEnabledOnFastSetupDisabled19200NULL1Enabled</td><td>Item Help______Menu Level ➤</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# CPU Feature:

Phoenix - AwardBIOS CMOS Setup Utility

CPU Feature

<table><tr><td>Thermal Management Thermal Monitor 1</td><td>Item HelpMenu Level &gt;&gt;</td></tr><tr><td colspan="2">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# Thermal Management:

It allows the user to select the thermal Monitor.

Options: Thermal monitor1.

# Hard Disk Boot Priority:

Press Enter and It shows Bootable add-in Card.

# Virus Warning:

Allows the user to choose the VIRUS Warning feature for IDE Hard Disk boot sector protection. If this function is enabled and someone attempts to write data into this area, BIOS will show a warning message on the screen and an alarm will sound.

Enabled - Activates automatically when the system boots up causing a warning message to appear when anything attempts to access the boot sector or hard disk partition table.

Disabled - No warning message will appear when anything attempts to access the boot sector or hard disk partition table.

# CPU L1& L2 Cache:

These two categories speed up memory access. However, this is dependant on the CPU/chipset design.

Enabled - Enable cache

Disabled - Disable cache

# Quick Power On Self Test:

This category speeds up Power On Self Test (POST) after powering up the computer. If it is set to Enable, the BIOS will shorten or skip some check items during POST.

Enabled - Enable quick POST

Disabled - Normal POST

# First/Second/Third Boot Device:

The BIOS attempts to load the operating system from the devices in the sequence selected in these items.

Options: Floppy, LS/ZIP, Hard Disk, CDROM, LAN and Disabled.

# Boot Other Device:

When enabled, the system searches all other possible locations for an operating system if it fails to find one in the devices specified under the first, second, and third boot devices.

Options: Enabled, Disabled

# Swap Floppy Drive:

If the system has two floppy drives, the user can swap the logical drive name assignments.

Options: Enabled, Disabled

# Boot Up Floppy Seek:

Seeks for disk drives during boot up. Disabling speeds boot up.

Options: Enabled, Disabled.

# Boot Up NumLock Status:

Select power on state for NumLock.

Options: On, Off

# Gate A20 Option:

Select if chipset or keyboard controller should control GateA20.

Normal - A pin in the keyboard controller controls GateA20

Fast - Lets chipset control GateA20

# Security Option:

Select whether the password is required every time the system boots or only when entering setup.

System - The system will not boot and access to Setup will be denied if the incorrect password is entered at the prompt.

Setup - The system will boot, but access to Setup will be denied if the incorrect password is entered at the prompt.

Note: To disable security, select PASSWORD SETTING at Main Menu. The user will then be prompted to enter the password. Do NOT type anything and press &lt;Enter&gt;. This will disable security. Once the security is disabled, the system will boot and Setup can be accessed freely.

# Console Redirection:

This item allows the user to redirect console.

Options: Enabled - Redirect console via Com Port.

Disabled - Redirect console when keyboard absent.

# Baud Rate:

This item specifies baud rate of console redirection.

Options: 9600, 19200, 38400, 57600, 115200.

# Agent Connect Via:

Select Null let agent connect directly.

Options: NULL.

# Agent Wait Time (min):

Select the time to allow agent connects when timeout.

Options: 1, 2, 4, 8.

# Agent After Boot:

This item allows the user to keep agent running after OS boot.

Options: Enabled, Disabled.

# 3.6 Advanced Chipset Features

This section allows the user to configure the system based on the specific features of the installed chipset. This chipset manages bus speeds and access to system memory resources, such as DRAM and the external cache. It also coordinates communications between the conventional ISA bus and the PCI bus. These items should never need to be altered. The default settings have been chosen because they provide the best operating conditions for the user's system. The only time the user may consider making any changes is when the user discovers that data was being lost while using the system.

Phoenix - AwardBIOS CMOS Setup Utility
Advanced Chipset Features

<table><tr><td>DRAM Timing SelectableX CAS Latency TimeX Active To Precharge DelayX DRAM RAS# To CAS# DelayX DRAM RAS# PrechargeDRAM Data Integrity ModeMGM Core FrequencySystem BIOS CacheableVideo BIOS CacheableMemory Hole At 15M-16MDelayed TransactionDelay Prior To ThermalAGP Aperture Size (MB)** On-Chip VGA Setting **On-Chip VGAOn-Chip Frame Buffer SizeBoot DisplayPannel Number</td><td>By SPD2.5633Non-ECCAuto Max266MHzEnabledDisabledDisabledEnabled16 Min64Enabled32MBVBIOS Default1</td><td>Item Help----Menu Level ➤</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# DRAM Timing Selectable:

Select the operating system that is selecting DRAM timing, so select SPD for setting

SDRAM timing by SPD.

Options: Manual, By SPD.

# CAS Latency Time:

When synchronous DRAM is installed, the number of clock cycles of CAS latency depends

on the DRAM timing.

Options: 2, 2.5

# Active To Precharge Delay:

Select the operating system that is active to precharge delay.

Options: 5, 6, 7.

# DRAM RAS# To CAS# Delay:

This field allows the user to insert a timing delay between the CAS and RAS strobe signals, used when DRAM is written to, read from, or refreshed. Fast gives faster performance; and Slow allows for a more stable performance. This field applies only when synchronous DRAM is installed in the system.

Options: 2, 3.

# DRAM RAS# Precharge:

If an insufficient number of cycles are allowed for the RAS to accumulate its charge before DRAM refresh, the refresh may be incomplete and the DRAM may fail to retain data. Fast gives faster performance; and Slow allows for a more stable performance. This field applies only when synchronous DRAM is installed in the system.

Options: 2, 3.

# DRAM Data Integrity Mode:

This item shows the user whether the DRAM has an ECC function or not.

Options: Non-ECC, ECC.

# MGM Core Frequency:

This item allows the user to determine the MGM core frequency.

Options: Auto Max 266MHz, 400/266/133/200MHz,

400/200/100/200MHz, 400/200/100/133MHz,

400/266/133/267MHz, 400/333/166/250MHz,

Auto Max 400/333.

# System BIOS Cacheable:

Selecting “Enabled” allows caching of the system BIOS ROM at F0000h-FFFFh, resulting in better system performance. However, if any program writes to this memory area, a system error may result.

Options: Enabled, Disabled.

# Video BIOS Cacheable:

Select “Enabled” allows caching of the video BIOS, resulting in better system performance. However if any program writes to this memory area, a system error may result.

Options: Enabled, Disabled.

# Memory Hole At 15M-16M:

The user can reserve this area of system memory for ISA adapter ROM. When this area is reserved, it cannot be cached. The user information of peripherals that need to use this area of system memory would have normally discussed their memory requirements.

Options: Enabled, Disabled.

# Delayed Transaction:

The chipset has an embedded 32-bit posted write buffer to support delay transactions cycles. Select “Enabled” to support compliance with PCI specification version 2.2.

Options: Enabled, Disabled.

# Delay Prior To Thermal:

Selecting this item allows delay prior to thermal time.

Options: 4Min, 8Min, 16Min and 32Min.

# AGP Aperture Size (MB):

This field determines the effective size of the Graphic Aperture used for a particular GMCH configuration. It can be updated by the GMCH-specific BIOS configuration sequence before the PCI standard bus enumeration sequence takes place. If it is not updated then a default value will select an aperture of maximum size.

Options: 4, 8, 16, 32, 64, 128 and 256.

# \*\*On-Chip VGA Setting\*\*

# On-Chip VGA:

This item allows the user to control the on-chip VGA.

Options: Enabled, Disabled.

# On-Chip Frame Buffer Size:

This item allows the user to control the on-chip frame buffer size.

Options: 1M, 4M, 8M, 16M and 32M.

# Boot Display:

This item allows the user to select the boot display device.

Options: VBIOS Default, CRT, LFP and CRT+LEP.

# Panel Number:

This item allows the user to select the panel resolution.

Options: 1 to 8

# 3.7 Integrated Peripherals

Phoenix - AwardBIOS CMOS Setup Utility
Integrated Peripherals

<table><tr><td>➢ Onboard IDE Device➢ Onboard Device➢ SuperIO DeviceOnboard Lan Boot ROMOnboard Serial Port 3Serial Port 3 Use IRQOnboard Serial Port 4Serial Port 4 Use IRQ</td><td>Press EnterPress EnterPress EnterDisabled3E8IRQ102E8IRQ11</td><td>Item Help______Menu Level ➤If your IDE hard drive supportsblock mode select Enabledfor automatic detection ofthe optimal number ofblock read/write per sectorthe drive can support</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

Onboard IDE Device:

Onboard IDE Device

<table><tr><td>On-Chip Primary PCI IDE</td><td>Enabled</td><td>Item Help</td></tr><tr><td>IDE Primary Master PIO</td><td>Auto</td><td rowspan="3">—</td></tr><tr><td>IDE Primary Slave PIO</td><td>Auto</td></tr><tr><td>IDE Primary Master UDMA</td><td>Auto</td></tr><tr><td>IDE Primary Slave UDMA</td><td>Auto</td><td rowspan="7">Menu Level ➤If your IDE hard drive supportsblock mode select Enabledfor automatic detection ofthe optimal number ofblock read/write per sectorthe drive can support</td></tr><tr><td>On-Chip Secondary PCI IDE</td><td>Enabled</td></tr><tr><td>IDE Secondary Master PIO</td><td>Auto</td></tr><tr><td>IDE Secondary Slave PIO</td><td>Auto</td></tr><tr><td>IDE Secondary Master UDMA</td><td>Auto</td></tr><tr><td>IDE Secondary Slave UDMA</td><td>Auto</td></tr><tr><td>IDE HDD Block Mode</td><td>Enabled</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# OnChip Primary/Secondary PCI IDE:

The integrated peripheral controller contains an IDE interface with support for two IDE channels. Select “Enabled” to activate each channel separately.

Options: Enabled, Disabled.

# IDE Primary/Secondary Master/Slave PIO:

The four IDE PIO (Programmed Input/Output) fields allows the user to set a PIO mode (0-4) for each of the four IDE devices that the onboard IDE interface supports. Modes 0 through 4 provide successively increased performance. In Auto mode, the system automatically determines the best mode for each device.

Options: Auto, Mode 0, Mode 1, Mode 2, Mode 3, and Mode 4.

# IDE Primary/Secondary Master/Slave UDMA:

Ultra DMA/33 implementation is possible only if the IDE hard drive supports it and the operating environment includes a DMA driver (Windows 95 OSR2 or a third-party IDE bus master driver). If the hard drive and the system software both support Ultra DMA/33, select “Auto” to enable BIOS support.

Options: Auto, Disabled.

# IDE HDD Block Mode:

Block mode is also called block transfer, multiple commands, or multiple sector read/write. If your IDE hard drive supports block mode (most new drives do), select Enabled for automatic detection of the optimal number of block read/writes per sector the drive can support.

Options: Enabled, Disabled

Onboard Device:
Onboard Device

<table><tr><td>USB Controller EnabledUSB 2.0 Controller EnabledUSB Keyboard Support DisabledUSB Mouse Support DisabledAC97 Audio AutoInit Display First PCI Slot</td><td>Item Help______Menu Level ➤</td></tr><tr><td colspan="2">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# USB / USB 2.0 Controller:

Select “Enabled” if the system contains a Universal Serial Bus (USB) / USB 2.0 controller and the user has USB peripherals.

Options: Enabled, Disabled.

# USB Keyboard Support:

Select "Enabled" if the system contains a Universal Serial Bus (USB) controller and the user has a USB keyboard.

Options: Enabled, Disabled.

# USB Mouse Support:

Select "Enabled" if the user's system contains a Universal Serial Bus (USB) controller and have a USB mouse.

Options: Enabled, Disabled.

# AC97 Audio:

This item allows the user to decide to auto or disable the chipset family to support AC97 Audio.

Options: Auto, Disabled.

# Init Display First:

This item allows the user to decide to active whether PCI Slot or on-chip VGA first.

Options: PCI Slot, Onboard.

# SuperIO Device:

SuperIO Device

<table><tr><td>Power ON FunctionX Hot Key Power ONOnboard FDC ControllerOnboard Serial Port 1Onboard Serial Port 2UART Mode SelectX RxD, TxD ActiveX IR Transmission DelayX UR2 Duplex ModeX Use IR PinsOnboard Parallel PortParallel Port ModeX EPP Mode SelectX ECP Mode Use DMAPWRON After PWR-Fail</td><td>BUTTON ONLYCtrl-F1Enabled3F8/IRQ42F8/IRQ3NormalHi, LoEnabledHalfIR-Rx2Tx2378/IRQ7SPPP EPP1.73Off</td><td>Item HelpMenu Level ➤</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# Power On Function:

This item can be used to select operating Power On the system.

Options: Button Only, Hot Key

# KB Power ON Password:

This item can be used to limit operating KB Power On system.

Options: Enter

# Hot Key Power ON:

This item can be used to select operating Hot Key to Power On system.

Options: Ctrl-F1 to Ctrl-F12.

# Onboard FDC Controller:

Select "Enabled" if the system has a floppy disk controller (FDC) installed on the system board. If the user installs an in FDC or the system has no floppy drive, select Disabled in this field.

Options: Enabled, Disabled.

# Onboard Serial Port 1/Port 2:

Select an address and corresponding interrupt for the first and second serial ports.

Options: 3F8/IRQ4, 2E8/IRQ3, 3E8/IRQ4, 2F8/IRQ3, Disabled, and Auto.

# UART Mode Select:

This item allows the user to select UART mode.

Options: IrDA, ASKIR, and Normal.

# RxD, TxD Active:

This item allows the user to determine the active of RxD, TxD.

Options: "Hi, Hi", "Lo, Lo", "Lo, Hi" and "Hi, Lo".

# IR Transmission delay:

This item allows the user to enable/disable IR transmission delay.

Options: Enabled, Disabled.

# UR2 Duplex Mode:

This item allows the user to select the IR half/full duplex function.

Options: Half, Full.

# Use IR Pins:

This item allows the user to select IR transmission routes, one is RxD2m, TxD2 (COM Port) and the other is IR-Rx2Tx2.

Options: IR-Rx2Tx2, RxD2, and TxD2.

# Onboard Parallel Port:

This item allows the user to determine access onboard parallel port controller with a particular I/O address.

Options: 3BC/IRQ7, 378/IRQ7, 278/IRQ5, and Disabled.

# Parallel Port Mode:

Select an operating mode for the onboard parallel (printer) port. Select Normal, Compatible, or SPP unless it is certain that the hardware and software the user uses both support one of the other available modes.

Options: SPP, EPP, ECP and ECP+EPP.

# EPP Mode Select:

Select EPP port type 1.7 or 1.9.

Options: EPP1.7, 1.9.

# ECP Mode Use DMA:

Select a DMA channel for the parallel port for use during ECP mode.

Options: 3, 1.

# PWRON After PWR-Fail:

This item allows the user to power on the system after power failure.

Options: Off, On, and Former-Sts.

# Onboard Lan Boot ROM:

Select "Enabled" if the system has a LAN device installed on the system board.

Options: Enabled, Disabled.

# Onboard Serial Port 3/Port4:

Select an address for the third and forth serial ports.

# Serial Port 3/Port 4 Use IRQ:

Select an IRQ for the third and forth serial ports.

# 3.8 Power Management Setup

The Power Management Setup allows the user to configure the system to most effectively save energy while operating in a manner consistent with the individual's computer operating style.

Phoenix - AwardBIOS CMOS Setup Utility
Power Management Setup

<table><tr><td>ACPI Function</td><td>Enabled</td><td>Item Help</td></tr><tr><td>Power Management</td><td>User Define</td><td></td></tr><tr><td>Video Off Method</td><td>DPMS</td><td></td></tr><tr><td>Video Off In Suspend</td><td>Yes</td><td>Menu Level ➤</td></tr><tr><td>Suspend Type</td><td>Stop Grant</td><td></td></tr><tr><td>Suspend Mode</td><td>Disabled</td><td></td></tr><tr><td>HDD Power Down</td><td>Disabled</td><td></td></tr><tr><td>CPU THER-Throttling</td><td>50.0%</td><td></td></tr><tr><td>Wake-Up by PCI card</td><td>Disabled</td><td></td></tr><tr><td colspan="3">** Reload Global Timer Events **</td></tr><tr><td>Primary IDE 0</td><td>Disabled</td><td></td></tr><tr><td>Primary IDE 1</td><td>Disabled</td><td></td></tr><tr><td>Secondary IDE 0</td><td>Disabled</td><td></td></tr><tr><td>Secondary IDE 1</td><td>Disabled</td><td></td></tr><tr><td>FDD, COM, LPT Port</td><td>Disabled</td><td></td></tr><tr><td>PCI PIRQ [A-D]#</td><td>Disabled</td><td></td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# ACPI Function:

This item allows you to enable or disable the Advanced Configuration and Power Management(ACI).

The choice: Enabled, Disabled.

# Power Management:

This category allows you to select the type (or degree) of power saving and is directly related to the following modes:

1. HDD Power Down
2. Doze Mode
3. Suspend Mode

# Min. Power Saving:

Minimum power management. Doze Mode=1 hr Standby Mode=1 hr, Suspend Mode=1 hr, and HDD Power Down=15 min.

# Max. Power Saving:

Maximum power management - ONLY AVAILABLE FOR SL CPU's. Doze Mode=1min, Standby Mode=1 min, Suspend Mode=1 min, and HDD Power Down=1 min.

# User Defined:

Allows the user to set each mode individually. When not disabled, each of the ranges are from 1 min to 1 hr except for HDD Power Down, which ranges from 1 min to 15 min and disable.

# Video Off Method:

This determines the manner in which the monitor is blanked.

# V/H SYNC+Blank:

This selection will cause the system to turn off the vertical and horizontal synchronization ports and write blanks to the video buffer.

# Blank Screen:

This option only writes blanks to the video buffer.

# DPMS:

Initial display power management signaling.

# Video Off In Suspend:

This determines the manner in which the monitor is blanked.

Options: Yes, No.

# Suspend Type:

Select the Suspend Type.

Options: PWRON Suspend, Stop Grant.

# Suspend Mode:

When “Enabled” and after the set time of system inactivity. All devices except the CPU will be shut off.

Options: Enabled, Disabled.

# HDD Power Down:

When “Enabled” and after the set time of system inactivity, the hard disk drive will be powered down while all other devices remain active.

Options: Enabled, Disabled.

# CPU THER-Throttling:

Select the CPU THRM-Throttling rate.

Options: 12.5%, 25.0%, 37.5%, 50.0%, 62.5%, 75.0%, and 87.5%.

# Wake-Up by PCI Card:

An input signal from PME on the PCI card awakens the system from a soft off state.

Options: Enabled, Disabled.

# PM Events:

PM events are I/O events where occurrence can prevent the system from entering a power saving mode or can awaken the system from such a mode. In effect, the system remains alert for anything, which occurs to a device, which is configured as Enabled, even when the system is in power down mode.

Primary IDE 0

Primary IDE 1

Secondary IDE 0

Secondary IDE 1

FDD, COM, LPT Port

PCI PIRQ [A-D] #

# 3.9 Plug and Play / PCI Configurations

This section describes how to configure the PCI bus system. PCI, or Personal Computer Interconnect, is a system which allows I/O devices to operate at speeds close to the speed the CPU uses when communicating with its own special components. This section covers some very technical items and it is strongly recommended that only experienced users make any changes to the default settings.

Phoenix - AwardBIOS CMOS Setup Utility
PnP/PCI Configurations

<table><tr><td>PNP OS Installed Reset Configuration Data Resources Controlled By X IRQ Resources X DMA Resources PCI/VGA Palette Snoop</td><td>No Disabled Auto (ESCD) Press Enter Press Enter Disabled</td><td>Item HelpMenu Level ➤</td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General Help F5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# PNP OS Installed:

Select Yes if using a Plug and Play capable operating system.

Select No. if the user requires the BIOS to configure non. Boot devices.

# Reset Configuration Data:

The common practice is to leave this field Disabled. Select “Enabled” to reset Extended System Configuration Data (ESCD) when exiting from Setup if a new add-on has been installed and the system reconfiguration has caused such a serious conflict that the operating system cannot boot.

Options: Enabled, Disabled.

# Resources Controlled By:

This allows the user to automatically configure all the boot and Plug and Play-compatible devices. If Auto is selected, all the interrupt request (IRQ) and DMA assignment fields disappear, as the BIOS automatically assigns them.

# IRQ/DMA Resources:

When resources are controlled manually, assign each system interrupt a type, depending on the type of device using the interrupt.

# PCI/VGA Palette Snoop:

Leave this field at "Disabled".
Options: Enabled, Disabled.

# 3.10 PC Health Status

Phoenix - AwardBIOS CMOS Setup Utility
PC Health Status

<table><tr><td>CPU Warning Temperature</td><td>Disabled</td><td>Item Help</td></tr><tr><td>SYS Temperature</td><td>24°C / 75°F</td><td></td></tr><tr><td>CPU Temperature</td><td>40°C / 104°F</td><td></td></tr><tr><td>SYSFAN</td><td>3283RPM</td><td>Menu Level ➤</td></tr><tr><td>CPU FAN</td><td>5152RPM</td><td></td></tr><tr><td>VDIMM (V)</td><td>2.48V</td><td></td></tr><tr><td>VCORE (V)</td><td>1.71V</td><td></td></tr><tr><td>+3.3</td><td>3.24V</td><td></td></tr><tr><td>+5 V</td><td>4.81V</td><td></td></tr><tr><td>+12 V</td><td>11.73V</td><td></td></tr><tr><td>-12 V</td><td>-11.78V</td><td></td></tr><tr><td>-5 V</td><td>-5.04V</td><td></td></tr><tr><td>VBAT (V)</td><td>3.02V</td><td></td></tr><tr><td>5VSB (V)</td><td>5.04V</td><td></td></tr><tr><td>Shutdown Temperature</td><td>Disabled</td><td></td></tr><tr><td colspan="3">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General Help</td></tr><tr><td colspan="3">F5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# CPU Warning Temperature:

This item will prevent CPU from overheating.
Options: $50^{\circ}$ C /122°F to $70^{\circ}$ C /158°F, Disabled.

# SYS Temperature:

Shows the current system temperature.

# CPU Temperature:

Shows the current CPU temperature.

# SYSFAN:

Shows the current system fan operating speed.

# CPUFAN:

Shows the current CPU fan operating speed.

# VDIMM (V)

Shows the voltage level of the DRAM.

# VCORE (V)

Shows the voltage level of CPU (Vcore).

# +3.3V/+5V/+12V/-12V/-5V/5VSB(V):

Shows the voltage of +5V/+12V/-12V/-5V.

# VBAT (V)

Shows the voltage level of the battery.

# Shutdown Temperature:

This item allows the user to set up the CPU shutdown Temperature. This item is only effective under Windows $^{®}$ 98 ACPI mode.

Options: Disabled, 60°C / 140°F, 65°C / 149°F, 70°C / 159°F, and 75°C / 167°F.

# 3.11 Frequency/Voltage Control

Phoenix - AwardBIOS CMOS Setup Utility
Frequency/Voltage Control

<table><tr><td>Auto Detect PCI CLK EnabledSpread Spectrum Modulated Disabled</td><td>Item Help____Menu Level ➤</td></tr><tr><td colspan="2">↑↓→←Move Enter: Select +/-/PU/PD: Value F10: Save ESC: Exit F1: General HelpF5: Previous Values F6: Fail-safe defaults F7: Optimized Defaults</td></tr></table>

# Auto Detect PCI CLK:

When “Enabled”, this item will auto detect if the PCI slot have devices and will send clock signal to PCI devices. When disabled, it will send the clock signal to PCI slot.

Options: Enabled, Disabled.

# Spread Spectrum Modulated:

This item allows the user to enable or disable the Spread Spectrum Modulated.

Options: Disabled, -0.25%, -0.50%, and -0.75%.

# 3.12 Load Fail-Safe Defaults

When &lt;Enter&gt; is pressed on this item a confirmation dialog box will appear with a message similar to:

Load Fail-Safe Defaults (Y/N)? N

Pressing 'Y' loads the BIOS default values for the most stable, minimum - performance system operations.

# 3.13 Load Optimized Defaults

When &lt;Enter&gt; is pressed on this item a confirmation dialog box will appear with a message similar to:

Load Optimized Defaults (Y/N)? N

Pressing 'Y' loads the default values that are factory settings for optimal performance system operations.

# 3.14 Supervisor/User Password Setting

The user can set either supervisor, user password, or both. The differences between are:

Set Supervisor Password: can enter and change the options of the setup menus.

Set User Password: only enter but do not have the right to change the options of the setup menus. When this function is selected, the following message will appear in the middle of the screen prompting the user to create a password.

# ENTER PASSWORD:

Type the password, up to eight characters in length, and press &lt;Enter&gt;. The password typed will now clear any previously entered password from CMOS memory. The user will then be asked to confirm the password. Type the password again and press &lt;Enter&gt;. The user may also press &lt;Esc&gt; to abort the selection.

To disable a password, press &lt;Enter&gt; when prompted to enter the password. A message will appear to confirm that the password will be disabled. Once the password is disabled, the system will boot and Setup can be entered into freely.

# PASSWORD DISABLED.

When a password has been enabled, there will be a prompt for the password every time the user enters into Setup. This prevents an unauthorized person from changing any part of the system configuration.

When a password is enabled, an option exists where the BIOS can request a password every time the system is rebooted. This would prevent any unauthorized access to the computer.

The user can determine when the password is required within the BIOS Features Setup Menu and its Security option (see Section 3). If the Security option is set to "System", the password will be required both at boot and at entry to Setup. If set to "Setup", prompting only occurs when trying to enter Setup.

# 3.15 Exit Selecting

# Save & Exit Setup

Pressing &lt;Enter&gt; on this item will prompt for confirmation:

# Save to CMOS and EXIT (Y/N)? Y

Pressing "Y" stores the selections made in the menus in CMOS – a special section of memory that stays on after turning the system off. The next time the computer is booted, BIOS will configure the system according to the Setup selections stored in CMOS. After saving the values the system is restarted again.

# Exit Without Saving

Pressing &lt;Enter&gt; on this item will prompt for confirmation:

# Quit without saving (Y/N)? Y

This allows the user to exit Setup without saving any changes made in CMOS. The previous selections remain in effect. This exits the Setup utility and restarts the computer.

# Warranty Policy

Thank you for choosing ADLINK. To understand your rights and enjoy all the after-sales services we offer, please read the following carefully.

1. Before using ADLINK's products please read the user manual and follow the instructions exactly. When sending in damaged products for repair, please attach an RMA application form which can be downloaded from: http://rma.adlinktech.com/policy/.
2. All ADLINK products come with a limited two-year warranty, one year for products bought in China.

- The warranty period starts on the day the product is shipped from ADLINK's factory.
- Peripherals and third-party products not manufactured by ADLINK will be covered by the original manufacturers' warranty.
- For products containing storage devices (hard drives, flash cards, etc.), please back up your data before sending them for repair. ADLINK is not responsible for any loss of data.
- Please ensure the use of properly licensed software with our systems. ADLINK does not condone the use of pirated software and will not service systems using such software. ADLINK will not be held legally responsible for products shipped with unlicensed software installed by the user.
- For general repairs, please do not include peripheral accessories. If peripherals need to be included, be certain to specify which items you sent on the RMA Request & Confirmation Form. ADLINK is not responsible for items not listed on the RMA Request & Confirmation Form.

3. Our repair service is not covered by ADLINK's guarantee in the following situations:

- Damage caused by not following instructions in the User's Manual.
- Damage caused by carelessness on the user's part during product transportation.
- Damage caused by fire, earthquakes, floods, lightening, pollution, other acts of God, and/or incorrect usage of voltage transformers.
- Damage caused by inappropriate storage environments such as with high temperatures, high humidity, or volatile chemicals.
- Damage caused by leakage of battery fluid during or after change of batteries by customer/user.

- Damage from improper repair by unauthorized ADLINK technicians.
- Products with altered and/or damaged serial numbers are not entitled to our service.
• This warranty is not transferable or extendible.
• Other categories not protected under our warranty.

4. Customers are responsible for all fees necessary to transport damaged products to ADLINK.

For further questions, please e-mail our FAE staff: service@adlinktech.com
[🔗 Link to the original document](.nupro-861-manual-3/nupro-861-manual-3.pdf)
