# MI-110

Mini-ITX Embedded Motherboard with Intel® Atom™ Processor N270 and Intel® 945GSE/ICH7M Chipset

User's Manual

![Close-up of a computer motherboard with various electronic components and connectors (no visible text or labels)](.mi-110-50-1z012-1000-200/d885a1160c62f72f3b284ba110791d76fb5436fe269aa57ae24df83eba952f89.jpg)

Manual Rev.: 2.00

Revision Date: October 2, 2009

Part No: 50-1Z012-1000

![Circular black-and-white recycling symbol with three white arrows forming a triangle (no text or symbols)](.mi-110-50-1z012-1000-200/c7f325b262f5d6c5d9dd7c0b4304226999b782fdb463942aefce920902f6e8a0.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>2009/10/02</td><td>Initial Release</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 MI-110 User's Manual is intended for hardware technicians and systems operators with knowledge of installing, configuring and operating industrial grade computers.

# Manual Organization

This manual is organized as follows:

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

Chapter 1, Introduction: Introduces the MI-110, its features, applications, and specifications, including functional descriptions and board layout.

Chapter 2, Connectors & Jumpers: Provides technical information on connectors, jumpers and pin assignments for configuring the MI-110.

Chapter 3, Getting Started: Describes how to install components and drivers on the MI-110.

Chapter 4, BIOS Setup: Presents information and illustrations to help understand and configure the system BIOS.

Appendix A, Watchdog Timer: Presents information on understanding and configuring 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 is an icon depicting a white document sheet with faint grey horizontal lines. A large, red checkmark is superimposed over the document, angled from the bottom left to the top right.](.mi-110-50-1z012-1000-200/f1245adb7e470e3474f841275dceb382ac90900fe001f638847e4e3c19c1ec7e.jpg)
NOTE:

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

![The image displays a standard yellow triangular warning sign. It features a thick black border and a large, black exclamation point centered within the yellow field.](.mi-110-50-1z012-1000-200/e50b0bda9c8b97973be4cf92ef64c7fcce22681c4d52c8be0ced714531fdb67a.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 red warning triangle with a thick white border. Inside the red triangle, there is a centered white exclamation point.](.mi-110-50-1z012-1000-200/319a4b4fabc4fafc71453aba64a59b048f6cdf553bf487c971dfb669a34b431f.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

# Table of Contents...... vii

# List of Figures ix

# List of Tables.... xi

# 1 Introduction ...... 1

1.1 Package Contents .... 1
1.2 Overview.... 2
1.3 Features.... 2
1.4 Specifications.... 3
1.5 Block Diagram 5
1.6 Functional Description 6
1.7 Power Consumption 9
1.8 Board Layout 10
1.9 Mechanical Dimensions.... 12

# 2 Connectors & Jumpers.... 15

2.1 Rear I/O Connectors.... 15
2.2 Onboard Connectors 19
2.3 Jumper Settings.... 27

# 3 Getting Started 31

3.1 System Memory 31
3.2 Driver Installation 32

# 4 BIOS Setup.... 33

4.1 Starting the BIOS.... 33

4.2 Standard CMOS Features 35
4.3 Advanced BIOS Features 37
4.4 Advanced Chipset Features.... 42
4.5 Integrated Peripherals.... 44
4.6 Power Management Setup 51
4.7 PnP/PCI Configurations 54
4.8 PC Health Status 56
4.9 Frequency/Voltage Control 57
4.10 Load Optimized Defaults.... 58
4.11 Set Supervisor & User Password.... 59
4.12 Save & Exit Setup 60
4.13 Exit Without Saving.... 61

# A Appendix: Watchdog Timer ....63

A.1 WDT Programming Instructions.... 63

# B Appendix: System Resources....65

B.1 System Memory Map 65
B.2 Direct Memory Access Channels.... 66
B.3 Fixed I/O Map 67
B.4 Variable I/O Map 68
B.5 Interrupt Request (IRQ) Lines.... 69
B.6 PCI Configuration Space Map 71
B.7 PCI Interrupt Routing Map 72

# Important Safety Instructions.... 73

# Getting Service 75

# List of Figures

Figure 1-1: MI-110 Block Diagram .... 5

Figure 1-2: MI-110 Board Layout....10

Figure 1-3: MI-110 Rear I/O Layout 11

Figure 1-4: MI-110 Board Dimensions 12

Figure 1-5: Rear I/O Faceplate Dimensions.... 13

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# List of Tables

Table 1-1: MI-110 General Specifications....4
Table 1-2: Intel® Atom™ N270 processor Power Consumption ..... 9
Table 1-3: MI-110 Board Layout Legend 11
Table B-1: System Memory Map....65
Table B-2: Direct Memory Access Channels....66
Table B-3: Fixed I/O Map 67
Table B-4: Variable I/O Map 68
Table B-5: IRQ Lines PIC Mode 69
Table B-6: IRQ Lines APIC Mode 70
Table B-7: PCI Configuration Space Map 71
Table B-8: PCI Interrupt Routing Map 72

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# 1 Introduction

This chapter will introduce the MI-110, its features, specifications, functional description, and mechanical layout.

# 1.1 Package Contents

Please check that your package contains the items below. If you discover damaged or missing items, please contact your vendor.

▶ MI-110 Mini-ITX Embedded Motherboard
▶ I/O shield
▶ 1x IDE cable
▶ 2x SATA cable
▶ 2x SATA power cable
▶ 2x COM port cable with bracket
▶ Driver CD
▶ User's Manual

![The image features a red triangle with a white exclamation point inside it. Beneath the symbol is the word 'WARNING:' in black capital letters.](.mi-110-50-1z012-1000-200/6b760a414dd1db0329b2ebbbff311cfcaef1877fc383d1f266e6f1a847edfb95.jpg)

DO NOT install or apply power to equipment that is damaged or if there is missing/incomplete equipment. Retain the shipping carton and packing materials for inspection. Please contact your ADLINK dealer/vendor immediately for assistance. Obtain authorization from your dealer before returning any product to ADLINK.

# 1.2 Overview

The ADLINK MI-110 is a Mini-ITX embedded motherboard based on the Intel® Atom™ processor N270 built on 45-nm process technology in Micro-FCBGA8 package and the Mobile Intel® 945GSE + ICH7M Express Chipset. The MI-110 is ideal for embedded applications requiring fanless operation and ultra-low power consumption in a standard small form factor motherboard with a complete set of I/O functions and high-bandwidth network connectivity. These features, combined with an SO-DIMM socket supporting DDR2-533 SDRAM up to 2 GB, IDE/SATA/CF storage interfaces, PCI and Mini PCIe expansion slots, VGA, DVI-I, dual-channel 18-bit LVDS, and audio interfaces make the MI-110 suitable for medical, transportation, and other applications requiring a low noise/power, space-saving, multiple display platform.

# 1.3 Features

▶ Mini-ITX form factor (170 mm x 170 mm)
Intel® Atom™ processor N270:

▷ 1.6 GHz core frequency
▷ 533MHz FSB
▷ 512KB L2 cache
▶ Micro-FCBGA8 package

▶ DDR2-533 up to 2GB max. (1x 200-pin SODIMM socket)
Intel® GMA950 integrated in 945GSE supporting dual independent display

▷ Dsub-15 connector up to 2048x1536 @ 75Hz (QXGA)
▷ DVI-I via Chronel 7307C, up to 1600x1200 (UXGA)
Dual-channel 18-bit LVDS up to 1600x1200 (UXGA)

▶ PCI and Mini PCIe expansion slots
▶ 2x SATA ports 1.5Gb/s, 4x RS-232 serial ports
▶ 2x GbE, 6x USB 2.0 (4 ext., 2 int.)
▶ 2x Mini-DIN for PS/2 keyboard/mouse
▶ RoHS compliant

# 1.4 Specifications

<table><tr><td colspan="2">System</td></tr><tr><td>CPU</td><td>Intel® AtomTM processor N2701.6 GHz core frequency512KB L2 cacheMicro-FCBGA8 package</td></tr><tr><td>FSB</td><td>533 MHz</td></tr><tr><td>Chipset</td><td>Mobile Intel® 945GSE + ICH7M Express Chipset</td></tr><tr><td>Memory</td><td>DDR2 533 SDRAM (2GB max.)1x 200-pin SO-DIMM slot</td></tr><tr><td>BIOS</td><td>Award BIOS with 16 Mb Flash ROM</td></tr><tr><td>TPM</td><td>TPM 1.2 via Infineon SLB 9635 TT 1.2</td></tr><tr><td>Audio</td><td>Realtek ALC888 HD AudioLine-in, line-out and mic-in</td></tr><tr><td>Watchdog Timer</td><td>1-255 second/minute programmable</td></tr><tr><td>Hardware Monitor</td><td>CPU/System temperature, fan speed and onboard DC voltage</td></tr><tr><td>Operating System</td><td>Microsoft® Windows® XP/Vista</td></tr><tr><td colspan="2">I/O Interfaces</td></tr><tr><td>Serial ATA</td><td>2x Serial ATA ports with 1.5 Gb/s data transfer</td></tr><tr><td>Parallel ATA</td><td>1x 40-pin ATA-66/100 IDE port</td></tr><tr><td>CompactFlash</td><td>1x Type-II CF socket, shared with IDE port</td></tr><tr><td>Onboard I/O</td><td>6x USB 2.0 (4x external, 2x by pin header)4x RS-232 serial ports (2x external, 2x by pin header)</td></tr><tr><td>Rear I/O</td><td>2x RJ-45 LAN ports4x USB 2.0 ports2x RS-232 serial ports1x D-Sub VGA connector1x DVI-I connector2x PS2 keyboard/mouse ports3x audio jacks (line-in, line-out and mic-in)</td></tr><tr><td>Expansion Slots</td><td>1x Mini PCIe slot1x PCI slot</td></tr></table>

<table><tr><td colspan="2">Display</td></tr><tr><td>Graphics Processor</td><td>Intel® GMA950 integrated in 945GSE supporting dual independent display</td></tr><tr><td>VRAM</td><td>Shared system memory up to 224 MB</td></tr><tr><td>CRT</td><td>Dsub-15 connector up to 2048x1536 @ 75Hz (QXGA)</td></tr><tr><td>DVI</td><td>DVI-I via Chronel 7307C, up to 1600x1200 (UXGA)</td></tr><tr><td>LVDS</td><td>Dual-channel 18-bit LVDS up to 1600x1200 (UXGA)</td></tr><tr><td colspan="2">Ethernet</td></tr><tr><td>Controller</td><td>Realtek 8111C GbE controller</td></tr><tr><td>Ports</td><td>2x RJ-45 Ethernet port</td></tr><tr><td colspan="2">Mechanical and Environment</td></tr><tr><td>Form Factor</td><td>Mini-ITX Embedded Motherboard</td></tr><tr><td>Dimensions</td><td>170 mm x 170 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>-40°C to 80°C</td></tr><tr><td>Rel. Humidity</td><td>10 - 90% RH</td></tr><tr><td>Safety</td><td>CE, FCC Class A</td></tr></table>

Table 1-1: MI-110 General Specifications

# 1.5 Block Diagram

![This block diagram illustrates the architecture of a computer system based on the Intel Atom N270 processor. The components and connections are as follows:\n\n**Central Processing Unit (CPU)**\n*   **Block:** 'CPU Intel® Atom™ N270 1.6GHz 533 MHz FSB 512K L2 Cache 437-pin Micro-FCBGA8'\n*   **Connection:** Connects via a double arrow labeled '533 MHz FSB' to the Northbridge.\n\n**Northbridge**\n*   **Block:** 'Northbridge Intel® 945GSE GMCH'\n*   **Connections:**\n    *   Connects to 'CRT DB-15'.\n    *   Connects to 'Dual Channel 18-bit LVDS'.\n    *   Connects to 'DVI', which connects to 'Chrontel 7307C DVI Transmitter'.\n    *   Connects via a double arrow labeled 'DDRII 533MHz' to 'SO-DIMM up to 2GB'.\n    *   Connects via a double arrow labeled 'DMI Interface 2 GB/s' to the Southbridge.\n\n**Southbridge**\n*   **Block:** 'Southbridge Intel® ICH7M' (Contains internal blocks: IDE, SATA, USB 2.0, LPC, SPI, PCIe Controller, AC97, PCI Controller)\n*   **Connections:**\n    *   'IDE / CF' connects to the 'IDE' block.\n    *   'SATA ports x2' connects to the 'SATA' block.\n    *   'USB 2.0 (Bracket x4, Internal x2)' connects to the 'USB 2.0' block.\n    *   The 'PCIe Controller' connects via 'PCIe x1' to 'PCIe Mini slot'.\n    *   The 'PCIe Controller' connects via 'PCIe x1' to 'RTL8111C RJ-45'.\n    *   The 'PCIe Controller' connects via 'PCIe x1' to another 'RTL8111C RJ-45'.\n    *   The 'PCI Controller' connects via 'PCI Bus' to 'PCI 32-bit/33MHz bus'.\n    *   The 'LPC' block connects to 'Winbond W83627DHG-A LPC Super I/O'.\n    *   The 'SPI' block connects to 'SPI BIOS'.\n    *   The 'AC97' block connects to 'Realtek ALC888 Audio Codec'.\n\n**Peripheral and Support Chips**\n*   **Winbond Block:** 'Winbond W83627DHG-A LPC Super I/O' connects to 'KB/Mouse' (twice) and 'RS-232x4'. It also connects to 'Hardware Monitor'.\n*   **Audio Block:** 'Realtek ALC888 Audio Codec' connects to 'Audio Jacks Line-in, Line-out, Mic-in'.](.mi-110-50-1z012-1000-200/20573096b5dbc7c507ba9b29ca78c9366c0f776d7f868ba3d32d3b73f5b36de8.jpg)

Figure 1-1: MI-110 Block Diagram

# 1.6 Functional Description

# Processor Support

The MI-110 embedded motherboard is equipped with the Intel® Atom™ N270 processor in Micro-FCBGA8 package. Implemented in 45nm process technology, the Intel® Atom™ N270 is power-optimized to deliver robust performance per watt for cost-effective embedded applications. Features include:

▶ 1.6 GHz core speed with 533 MHz FSB and 2.5 watts TDP
▶ Hyper-Threading Technology
▶ Enhanced Intel SpeedStep® Technology
▶ Enhanced low-power sleep states (C1E, C2E, C4E)
▶ Dynamic L2 cache sizing

# Mobile Intel® 945GSE Express Chipset

The MI-110 is based on the Mobile Intel® 945GSE Express Chipset, consisting of the Intel® 82945GSE Graphics Memory Controller Hub and Intel® I/O Controller Hub 7-M. The chipset features power-efficient graphics with an integrated 32-bit 3D graphics engine based on Intel® Graphics Media Accelerator 950 architecture with SDVO, LVDS, and CRT display ports. It provides rich I/O capabilities and flexibility via high-bandwidth interfaces such as PCI Express, PCI, Serial ATA, and Hi-Speed USB 2.0 connectivity. It also includes a single channel for 400/533 MHz DDR2 system memory, and Intel® High Definition Audio interface.

# DDR2 memory

To meet the requirements of memory-intensive applications, the MI-110 has a single-channel memory architecture supporting a DDR2 400/533 MHz SO-DIMM. The high-bandwidth memory specification, meets the requirements of the latest 3D graphics, multimedia, and network application, and boosts system performance by eliminating bottlenecks.

# Intel® Graphics Media Accelerator GMA 950

The Intel® Graphics Media Accelerator (GMA) 950 provides an integrated 3D graphics engine delivering sophisticated graphics for large display applications. With support for DirectX 9 hardware acceleration, 400 MHz display clock, and up to 224 MB of video memory, the Intel GMA 950 provides a cost-effective and high-performance graphics solution. The MI-110 supports dual independent display technology, enabling different content to be displayed on two separate display terminals or a single workspace to be stretched across two display devices.

# Gigabit Ethernet

The MI-110 is equipped with the PCI Express Realtek 8111C GbE controller.

# Serial ATA

Storage is efficient and secure with the Serial ATA interface. Utilizing the Intel® ICH7M, the MI-110 supports two Serial ATA devices capable of reading/writing data at up to 1.5 Gb/s. The SATA specification improves chassis airflow via thinner and more flexible cables with lower pin count.

# USB 2.0

The MI-110 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 monitors the CPU temperature, system fan speeds, and voltage levels to prevent overheating and/or component damage, effect timely failure detection, and ensure stable supply of current for critical motherboard 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.

# 1.7 Power Consumption

Intel® Atom™ N270 processor, 1.6GHz, 512KB L2 cache, 533MHz FSB

<table><tr><td colspan="2">Test Configuration</td></tr><tr><td>Memory</td><td>Elpida DDR2 667MHz, 2GB</td></tr><tr><td>Graphics</td><td>Intel® Graphics Media Accelerator 950</td></tr><tr><td>SATA HD</td><td>WD Caviar SE, WD1600JS-60NCB1, 160GB</td></tr><tr><td>Power Supply</td><td>Sunpower SPX-5600P1 500W</td></tr></table>

<table><tr><td colspan="4">DOS (idle)</td></tr><tr><td>Power Req.</td><td>+5VSB</td><td>+12V</td><td>Total</td></tr><tr><td>Current (mA)</td><td>-</td><td>719.4</td><td>-</td></tr><tr><td>Watts (W)</td><td>-</td><td>-</td><td>8.633</td></tr><tr><td colspan="4">Windows XP, Idle</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>Total</td></tr><tr><td>Current (mA)</td><td>-</td><td>695.8</td><td>-</td></tr><tr><td>Watts (W)</td><td>-</td><td>-</td><td>8.350</td></tr><tr><td colspan="4">Windows XP, CPU Stress (Kpower)</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>Total</td></tr><tr><td>Current (mA)</td><td>-</td><td>890.0</td><td>-</td></tr><tr><td>Watts (W)</td><td>-</td><td>-</td><td>10.68</td></tr><tr><td colspan="4">Windows XP, Total System Stress (Burnin)</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>Total</td></tr><tr><td>Current (mA)</td><td>-</td><td>860.5</td><td>-</td></tr><tr><td>Watts (W)</td><td>-</td><td>-</td><td>10.326</td></tr><tr><td colspan="4">S4 Mode (Windows hibernate)</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>Total</td></tr><tr><td>Current (mA)</td><td>162.8</td><td>-</td><td>-</td></tr><tr><td>Watts (W)</td><td>-</td><td>-</td><td>0.814</td></tr><tr><td colspan="4">S3 Mode</td></tr><tr><td>Power Req.</td><td>+5V</td><td>+12V</td><td>Total</td></tr><tr><td>Current (mA)</td><td>252.2</td><td>-</td><td>-</td></tr><tr><td>Watts (W)</td><td>-</td><td>-</td><td>1.261</td></tr></table>

Table 1-2: Intel® Atom™ N270 processor Power Consumption

# 1.8 Board Layout

![This image is a motherboard layout diagram showing the placement of various connectors, headers, and expansion slots. There are no explicit signal connection lines drawn between the blocks; they are arranged spatially to represent the physical layout of the board.\n\n**Labeled Blocks:**\n\n*   **Top Edge:** ATXPWR1, JBLK1, JDIO1, IDE1\n*   **Right Side (Vertical Stack, Top to Bottom):** MINI_PCIE1, SATA2, SATA1, CHA_FAN, F_PANEL1, BT1, CLRTC, USB45, SPDIF_OUT1, PCI1\n*   **Center/Left Area:** CPU1, NB_HS1, JLVS1, SODIMM_A1\n*   **Center/Right Area:** SB_HS1, SPL_JP1\n*   **Bottom Edge (Left to Right):** COM3, COM4, JCOMPWR4, JCOMPWR3, JCOMPWR2, JCOMPWR1, KBMS, COM12, VGA_DVI-D1, LAN_USB1, LAN_USB2, AAFP1, JAMP1, AUDIO1\n\n**Spatial Arrangement:**\n\n*   **Top:** A long row of connectors runs across the top edge, starting with ATXPWR1 on the left, followed by JBLK1 and JDIO1, and ending with IDE1 on the right.\n*   **Left:** CPU1 is a large square on the far left. Below it is a long horizontal slot labeled SODIMM_A1.\n*   **Center:** NB_HS1 is a large square in the middle. Above it is JLVS1. To the right is a large square labeled SB_HS1. Below SB_HS1 is a small square labeled SPL_JP1.\n*   **Right Edge:** A long vertical column of connectors runs along the right side. The top block is MINI_PCIE1. Below that are SATA2 and SATA1. The remainder of the edge (CHA_FAN, F_PANEL1, BT1, CLRTC, USB45, SPDIF_OUT1) leads down to a very tall connector labeled PCI1 at the bottom.\n*   **Bottom Edge:**\n    *   On the far left are COM3 and COM4. Below them are stacked pairs of headers: JCOMPWR4/JCOMPWR3 and JCOMPWR2/JCOMPWR1.\n    *   Below that is KBMS (large square).\n    *   Moving right are COM12, VGA_DVI-D1, LAN_USB1, and LAN_USB2.\n    *   On the far bottom right is AUDIO1 (large square). Above it are stacked headers AAFP1 and JAMP1.](.mi-110-50-1z012-1000-200/1b15d97dd9471073362cf6a5a552287f138eaddd83ac7d3d5472d74710ae5a7f.jpg)

Figure 1-2: MI-110 Board Layout

<table><tr><td>AAFP1</td><td>Front Panel Audio pin header</td><td>JCOMPWR1/2</td><td>COM1/2 RI, +12V and +5V power select jumper</td></tr><tr><td>ATXPWR1</td><td>ATX Power connector</td><td>JCOMPWR3/4</td><td>COM3/4 RI, +12V and +5V power select jumper</td></tr><tr><td>CHA_FAN</td><td>System Fan connector</td><td>JDIO</td><td>Digital IO pin header</td></tr><tr><td>CLRTC</td><td>Clear CMOS jumper</td><td>JLVDS1</td><td>LVDS connector</td></tr><tr><td>COM3/4</td><td>Serial Port pin headers</td><td>SATA1/2</td><td>SATA1/2 connectors</td></tr><tr><td>F_PANEL1</td><td>System Panel pin header</td><td>SODIMMA1</td><td>SO-DIMM socket</td></tr><tr><td>IDE1</td><td>IDE connector</td><td>SPDIF_OUT</td><td>S/PDIF pin header</td></tr><tr><td>JAMP1</td><td>Audio Amplifier connector</td><td>SPI_JP1</td><td>SPI pin header</td></tr><tr><td>JBLK1</td><td>LCD Inverter pin header</td><td>USB45</td><td>USB4/5 pin header</td></tr></table>

Table 1-3: MI-110 Board Layout Legend

![COM\nDVI\nPS/2\nKB/MS\nCOM\nVGA\nRJ-45 + USB\nAudio](.mi-110-50-1z012-1000-200/19f28064f1613464e4ebc568dea3fabfcc5c624cc4fc20d07565551e0119448f.jpg)

Figure 1-3: MI-110 Rear I/O Layout

# 1.9 Mechanical Dimensions

![163.83\n6.35\n165.1\n33.02\n10.16\nATXPWR1\nJBKL1\nJDIO1\nIDE1\nMINI_PCIE1\nJLVDS1\nCPU1\nNB_HS1\nSATA2 SATA1\nF_PANEL\nBT1\nBT1\nUSB45\nSPI_JP1\nSODIMM_A1\nPC11\nJAMP1\nAAFP1\nJCOMPWR4\nJCOMPWR3\nJCOMPWR2\nJCOMPWR1\nKBMS COM12 VGA_DVI-D1 LAN_USB1 LAN_USB2 AUDIO1](.mi-110-50-1z012-1000-200/5f61b8b378095f4e0939133bcfca391149289747c1bd75e2cc73666c6ae1b547.jpg)

Dimensions in mm
Figure 1-4: MI-110 Board Dimensions

![| Dimension | Value   |\n| --------- | ------- |\n| 3-Ø9.00   | 149.94  |\n| 138.54    | 137.59  |\n| 122.34    | 130.44  |\n| 116.54    | 123.29  |\n| 100.34    | 115.59  |\n| 94.69     | 108.44  |\n| DVI       | 101.29  |\n| 78.44     | 90.94   |\n| 62.19     | 78.44   |\n| 52.94     | 65.94   |\n| 40.44     | 52.94   |\n| 27.94     | 40.44   |\n| 2-R6.10   | 27.94   |\n| 25.55     | 14.43   |\n| 10.31     | 0.00    |\n| 0.00      | 0.00    |](.mi-110-50-1z012-1000-200/2379f697af8852fdcce8aab0b96b05d6a69f3746d7afad725bfeb899728c05fe.jpg)

Figure 1-5: Rear I/O Faceplate Dimensions

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# 2 Connectors & Jumpers

The connectors and jumpers on the MI-110 allow you to connect and configure external devices. The following specify the pin assignments for connectors and jumper on the MI-110. Refer to Figure 1-2: MI-110 Board Layout and Figure 1-3: MI-110 Rear I/O Layout for connector and jumper locations.

# 2.1 Rear I/O Connectors

PS/2 Mouse Port (green)

<table><tr><td>Pin #</td><td>Signal</td><td>Function</td></tr><tr><td>1</td><td>MSDATA</td><td>Mouse Data</td></tr><tr><td>2</td><td>NC</td><td>not connected</td></tr><tr><td>3</td><td>GND</td><td>Ground</td></tr><tr><td>4</td><td>+5V</td><td>Power</td></tr><tr><td>5</td><td>CLK</td><td>Clock</td></tr><tr><td>6</td><td>NC</td><td>not connected</td></tr></table>

![Circular diagram with numbered pins (1-6) and a central square, no text or symbols present](.mi-110-50-1z012-1000-200/145e0f318bb3cbe24ba85100de37aeb3f1702810a41b3b0fabe6675661426e25.jpg)

PS/2 Keyboard Port (purple)

<table><tr><td>Pin #</td><td>Signal</td><td>Function</td></tr><tr><td>1</td><td>KBDATA</td><td>Keyboard Data</td></tr><tr><td>2</td><td>NC</td><td>not connected</td></tr><tr><td>3</td><td>GND</td><td>Ground</td></tr><tr><td>4</td><td>+5V</td><td>Power</td></tr><tr><td>5</td><td>CLK</td><td>Clock</td></tr><tr><td>6</td><td>NC</td><td>not connected</td></tr></table>

![6\n4\n5\n3\n2 1](.mi-110-50-1z012-1000-200/a48c49b4b37a8bc8f0332b5574c04a0c4a22ebe8ac67673e37f211e73622cfe3.jpg)

# Serial Port Connectors (COM1/2)

<table><tr><td>Pin #</td><td>RS-232</td></tr><tr><td>1</td><td>DCD, Data Carrier Detect</td></tr><tr><td>2</td><td>RXD, Receive Data</td></tr><tr><td>3</td><td>TXD, Transmit Data</td></tr><tr><td>4</td><td>DTR, Data Terminal Ready</td></tr><tr><td>5</td><td>GND, ground</td></tr><tr><td>6</td><td>DSR, Data Set Ready</td></tr><tr><td>7</td><td>RTS, Request to Send</td></tr><tr><td>8</td><td>CTS, Clear to Send</td></tr><tr><td>9</td><td>RI_Power,Ring Indicator / Power*</td></tr></table>

![6\n1\n5](.mi-110-50-1z012-1000-200/7ba21efdee85b162125656b046d2913e8f3412f2ed41b2ae08f0bfadb2beb2d9.jpg)

\*Note: See “Jumper Settings” on page 27 for RI/+5V/+12V selection.

# VGA Connector.

<table><tr><td>Signal Name</td><td>Pin #</td><td>Pin #</td><td>Signal Name</td></tr><tr><td>Red</td><td>1</td><td>2</td><td>Green</td></tr><tr><td>Blue</td><td>3</td><td>4</td><td>VCC pull-up</td></tr><tr><td>GND</td><td>5</td><td>6</td><td>GND</td></tr><tr><td>GND</td><td>7</td><td>8</td><td>GND</td></tr><tr><td>VCC</td><td>9</td><td>10</td><td>GND</td></tr><tr><td>VCC pull-up</td><td>11</td><td>12</td><td>DDC2B DATA</td></tr><tr><td>HSYNC</td><td>13</td><td>14</td><td>VSYNC</td></tr><tr><td>DDC2B CLK</td><td>15</td><td></td><td></td></tr></table>

![15\n11\n5\n1](.mi-110-50-1z012-1000-200/cd4fca958dffce5018acf91858dcb3447107ed909aad853ee655a6c9514fe211.jpg)

DVI-I Connector (CN2)
![1 2 3 4 5 6 7 8\n9 10 11 12 13 14 15 16\n17 18 19 20 21 22 23 24\n-1 -4\n-3 -4\ncs](.mi-110-50-1z012-1000-200/e6b8ba831ab3a3a2c289da332aecaa9488b4095e5f251d2daa2f2ba3e03fb8c1.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>TMDS Data2-</td><td>16</td><td>Hot Plug Detect</td></tr><tr><td>2</td><td>TMDS Data2+</td><td>17</td><td>TMDS Data0-</td></tr><tr><td>3</td><td>TMDS Data2/4 Shield</td><td>18</td><td>TMDS Data0+</td></tr><tr><td>4</td><td>TMDS Data4-</td><td>19</td><td>TMDS Data0/5 Shield</td></tr><tr><td>5</td><td>TMDS Data4+</td><td>20</td><td>TMDS Data5-</td></tr><tr><td>6</td><td>DDC Clock</td><td>21</td><td>TMDS Data5+</td></tr><tr><td>7</td><td>DDC Data</td><td>22</td><td>TMDS Clock Shield</td></tr><tr><td>8</td><td>Analog Vertical Sync</td><td>23</td><td>TMDS Clock +</td></tr><tr><td>9</td><td>TMDS Data1-</td><td>24</td><td>TMDS Clock -</td></tr><tr><td>10</td><td>TMDS Data1+</td><td>C1</td><td>Analog Red</td></tr><tr><td>11</td><td>TMDS Data1/3 Shield</td><td>C2</td><td>Analog Green</td></tr><tr><td>12</td><td>TMDS Data3-</td><td>C3</td><td>Analog Blue</td></tr><tr><td>13</td><td>TMDS Data3+</td><td>C4</td><td>Analog Horizontal Sync</td></tr><tr><td>14</td><td>+5 V Power</td><td>C5</td><td>Analog GND Return</td></tr><tr><td>15</td><td>GND</td><td></td><td></td></tr></table>

# USB Connectors

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

![1\n2\n3\n4](.mi-110-50-1z012-1000-200/03214715f34428ab4f4988ac2686fb031cddf8798a9a57380995bf62232bba0d.jpg)

# LAN Port (RJ-45)

This port allows gigabit connection to a Local Area Network (LAN) using a network hub. The LAN port comes with two LEDs to indicate link, activity and speed. Refer to the tables below for the LAN port pin and LED definitions ..

<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>

![ACT/LINK\nLED\nSPEED\nLED\n1\n8](.mi-110-50-1z012-1000-200/7f0d718eb8a23ee451cb0683ee070726c5122b71aed26abda7716388c564276e.jpg)

<table><tr><td colspan="2">ACT/LINK</td><td colspan="2">SPEED</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>Orange</td><td>Linked</td><td>Orange</td><td>100 Mb connection</td></tr><tr><td>Blinking</td><td>Data Activity</td><td>Green</td><td>1 Gb connection</td></tr></table>

# Audio I/O port

The three-jack audio I/O supports Line-In, Line-Out, and Mic-In functions. The blue Line-In jack onnects to an audio source such as a CD player. The green Line-Out port connects to a speaker or headphone, while the pink Mic-In jack connects to a microphone.

# 2.2 Onboard Connectors

Front Panel Audio Pin Header (AAFP1)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>MIC2_L</td><td>6</td><td>AGND</td></tr><tr><td>2</td><td>MIC2_R</td><td>7</td><td>FP_PRES#</td></tr><tr><td>3</td><td>MIC2_R</td><td>8</td><td>SRTN1</td></tr><tr><td>4</td><td>SENSE A</td><td>9</td><td>Key</td></tr><tr><td>5</td><td>LIN2_L</td><td>10</td><td>SRTN2</td></tr></table>

![The image displays two identical rectangular grids of square tiles arranged side-by-side on a white background. Each grid consists of two columns and five rows of squares. The squares are white with black outlines. Inside each square, there is a faint, thin black cross or plus sign. The two grids are separated by a vertical white gap.](.mi-110-50-1z012-1000-200/e17bf1c523975facee09dba5ec3e75e57a73c9fd441c94bc54a6a345f1802e6c.jpg)

ATX Power Connector (ATXPWR1)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>+3.3V</td><td>11</td><td>+3.3V</td></tr><tr><td>2</td><td>+3.3V</td><td>12</td><td>-12V</td></tr><tr><td>3</td><td>GND</td><td>13</td><td>GND</td></tr><tr><td>4</td><td>+5V</td><td>14</td><td>PS-ON#</td></tr><tr><td>5</td><td>GND</td><td>15</td><td>GND</td></tr><tr><td>6</td><td>+5V</td><td>16</td><td>GND</td></tr><tr><td>7</td><td>GND</td><td>17</td><td>GND</td></tr><tr><td>8</td><td>PWRGD</td><td>18</td><td>NC</td></tr><tr><td>9</td><td>+5VSB</td><td>19</td><td>+5V</td></tr><tr><td>10</td><td>+12V</td><td>20</td><td>+5V</td></tr></table>

![10\n20\n1\n11](.mi-110-50-1z012-1000-200/86cce0cdef2454a3e5982b538b2a3b132622104a6de553cab7dee2f1b3c76db5.jpg)

System Fan Connector (CHA\_FAN)

<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></table>

![The image displays a simple line drawing of a rectangular interface or panel. Inside the central rectangle, there is a horizontal rectangular bar at the top, and below it are three smaller squares arranged in a horizontal row. To the left of the central rectangle is the number '3', and to the right is the number '1'.](.mi-110-50-1z012-1000-200/979152d2cee80c41994841f522eba6f956e11886f43e0a76a0f08f51217415f4.jpg)

Serial Port Connectors (COM3/4)

<table><tr><td>Pin #</td><td>Signal</td><td>Functions</td></tr><tr><td>1</td><td>DCD</td><td>Data Carrier Detect</td></tr><tr><td>2</td><td>TXD</td><td>Transmit Data</td></tr><tr><td>3</td><td>GND</td><td>Ground</td></tr><tr><td>4</td><td>RTS</td><td>Request to Send</td></tr><tr><td>5</td><td>RI_Power</td><td>Ring Indicate, Power *</td></tr><tr><td>6</td><td>RXD</td><td>Receive Data</td></tr><tr><td>7</td><td>DTR</td><td>Data Terminal Ready</td></tr><tr><td>8</td><td>DSR</td><td>Data Set Ready</td></tr><tr><td>9</td><td>CTS</td><td>Clear to Send</td></tr><tr><td>10</td><td>NC</td><td>Key</td></tr></table>

![1\n6\n5](.mi-110-50-1z012-1000-200/c5fce39e5d9b77825b3c5ca80e3a95e3e9ef9a386e3c26ed42b7f9ffad796713.jpg)

\*Note: See “Jumper Settings” on page 27 for RI/+5V/+12V selection.

System Panel Connector (F\_PANEL1)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin Group</td></tr><tr><td>1</td><td>HD_LED+</td><td rowspan="2">Hard Disk LED</td></tr><tr><td>2</td><td>HD_LED-</td></tr><tr><td>3</td><td>GND</td><td rowspan="2">Reset Button</td></tr><tr><td>4</td><td>RESET</td></tr><tr><td>5</td><td>NC</td><td></td></tr><tr><td>6</td><td>PWR_LED+</td><td rowspan="2">Power LED</td></tr><tr><td>7</td><td>PWR_LED-</td></tr><tr><td>8</td><td>PWR</td><td rowspan="2">Power Switch</td></tr><tr><td>9</td><td>GND</td></tr><tr><td>10</td><td>NC</td><td></td></tr></table>

![The image displays a central vertical shape with wavy left and right edges, resembling a puzzle piece. Inside this shape are ten small, hollow squares arranged in two columns of five.\n\nSurrounding this central shape are numbers and a line:\n- The number **1** is positioned to the top left.\n- The number **5** is positioned to the bottom left.\n- The number **6** is positioned to the top right.\n- A thick vertical black line runs along the far right side.](.mi-110-50-1z012-1000-200/c30f2e9f4b33106970e248bdd42630284bc99e3289a0fa6a4d5ee133e90ece9f.jpg)

IDE Connector (IDE1)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Reset</td><td>2</td><td>Ground</td></tr><tr><td>3</td><td>Data 7</td><td>4</td><td>Data 8</td></tr><tr><td>5</td><td>Data 6</td><td>6</td><td>Data 9</td></tr><tr><td>7</td><td>Data 5</td><td>8</td><td>Data 10</td></tr><tr><td>9</td><td>Data 4</td><td>10</td><td>Data 11</td></tr><tr><td>11</td><td>Data 3</td><td>12</td><td>Data 12</td></tr><tr><td>13</td><td>Data 2</td><td>14</td><td>Data 13</td></tr><tr><td>15</td><td>Data 1</td><td>16</td><td>Data 14</td></tr><tr><td>17</td><td>Data 0</td><td>18</td><td>Data 15</td></tr><tr><td>19</td><td>Ground</td><td>20</td><td>-</td></tr><tr><td>21</td><td>Request</td><td>22</td><td>Ground</td></tr><tr><td>23</td><td>I/O Write</td><td>24</td><td>Ground</td></tr><tr><td>25</td><td>I/O Read</td><td>26</td><td>Ground</td></tr><tr><td>27</td><td>I/O Ready</td><td>28</td><td>Cable Select</td></tr><tr><td>29</td><td>DMA Ack</td><td>30</td><td>Ground</td></tr><tr><td>31</td><td>Interrupt Request</td><td>32</td><td>No Connect</td></tr><tr><td>33</td><td>Device Address 1</td><td>34</td><td>ATA 66/100 Detect</td></tr><tr><td>35</td><td>Device Address 0</td><td>36</td><td>Device Address 2</td></tr><tr><td>37</td><td>Chip Select 1</td><td>38</td><td>Chip Select 3</td></tr><tr><td>39</td><td>Device Active</td><td>40</td><td>Ground</td></tr></table>

![1\n2\n39\n40](.mi-110-50-1z012-1000-200/3de6721416773e4814f8373501c40a08023750c643c6d25e7e0e3f3b3cceaf5c.jpg)

Audio Amplifier connector (JAMP1)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>AMP_L-</td></tr><tr><td>2</td><td>AMP_L+</td></tr><tr><td>3</td><td>AMP_R-</td></tr><tr><td>4</td><td>AMP_R+</td></tr></table>

![A vertical domino tile featuring six black dots arranged in two columns of three on the left side and the number 1 on the right side.](.mi-110-50-1z012-1000-200/8001fa00fd3dfa0d08c8d604d1b4b12a4b8528ca73722b4749588478b11cd325.jpg)

# LCD Inverter pin header (JBLK1)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>+12V</td></tr><tr><td>2</td><td>GND</td></tr><tr><td>3</td><td>ENBKL</td></tr><tr><td>4</td><td>VR</td></tr><tr><td>5</td><td>+5V</td></tr></table>

![Pure electrical circuit lines without any symbols](.mi-110-50-1z012-1000-200/fce7e7e5bcdd9409ec7753242c1bb3b03f857ee4d66e5b1c1d0532f15a371c50.jpg)

# Digital IO pin header (JDIO)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>DIO GP20</td><td>2</td><td>DIO GP10</td></tr><tr><td>3</td><td>DIO GP21</td><td>4</td><td>DIO GP11</td></tr><tr><td>5</td><td>DIO GP22</td><td>6</td><td>DIO GP12</td></tr><tr><td>7</td><td>DIO GP23</td><td>8</td><td>DIO GP13</td></tr><tr><td>9</td><td>DIO GP24</td><td>10</td><td>DIO GP14</td></tr><tr><td>11</td><td>DIO GP25</td><td>12</td><td>DIO GP15</td></tr><tr><td>13</td><td>DIO GP26</td><td>14</td><td>DIO GP16</td></tr><tr><td>15</td><td>DIO GP27</td><td>16</td><td>DIO GP17</td></tr><tr><td>17</td><td>SMBCLK</td><td>18</td><td>SMBDATA</td></tr><tr><td>19</td><td>Ground</td><td>20</td><td>VCC</td></tr></table>

![1\n2](.mi-110-50-1z012-1000-200/b3b82c38ce12095e65e4a7790571355badc68f9e1c3504def9bf3a2de4daad1d.jpg)

LVDS Flat Panel Connector (JLVDS1)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>2</td><td>+5V</td><td>1</td><td>+3.3V</td></tr><tr><td>4</td><td>+5V</td><td>3</td><td>+3.3V</td></tr><tr><td>6</td><td>SD_DDC</td><td>5</td><td>SC_DDC</td></tr><tr><td>8</td><td>GND</td><td>7</td><td>GND</td></tr><tr><td>10</td><td>LVDS0_P0</td><td>9</td><td>LVDS0_P1</td></tr><tr><td>12</td><td>LVDS0_N0</td><td>11</td><td>LVDS0_N1</td></tr><tr><td>14</td><td>GND</td><td>13</td><td>GND</td></tr><tr><td>16</td><td>LVDS0_P2</td><td>15</td><td>LVDS0_P3</td></tr><tr><td>18</td><td>LVDS0_N2</td><td>17</td><td>LVDS0_N3</td></tr><tr><td>20</td><td>GND</td><td>19</td><td>GND</td></tr><tr><td>22</td><td>LVDS1_P0</td><td>21</td><td>LVDS1_P1</td></tr><tr><td>24</td><td>LVDS1_N0</td><td>23</td><td>LVDS1_N1</td></tr><tr><td>26</td><td>GND</td><td>25</td><td>GND</td></tr><tr><td>28</td><td>LVDS1_P2</td><td>27</td><td>LVDS1_P3</td></tr><tr><td>30</td><td>LVDS1_N2</td><td>29</td><td>LVDS1_N3</td></tr><tr><td>32</td><td>GND</td><td>31</td><td>GND</td></tr><tr><td>34</td><td>LVDS0_CLKP</td><td>33</td><td>LVDS1_CLKP</td></tr><tr><td>36</td><td>LVDS0_CLKN</td><td>35</td><td>LVDS1_CLKN</td></tr><tr><td>38</td><td>GND</td><td>37</td><td>GND</td></tr><tr><td>40</td><td>+12V</td><td>39</td><td>+12V</td></tr></table>

![1\n2\n39\n40](.mi-110-50-1z012-1000-200/fc65f184d43f669e84eba4f6815c1a8ee000296badf2533cb8fc343838752014.jpg)

SATA Connectors (SATA1-6)

<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>

![The image displays a black-and-white technical line drawing of a vertical rectangular connector or housing. Inside the outer rectangular frame, there is a central column of alternating black and white squares. Flanking this central column on both the left and right sides are vertical lines accompanied by small horizontal notches or contacts. On the right side of the drawing, outside the main outline, the numbers '1' and '7' are visible, likely serving as reference designators.](.mi-110-50-1z012-1000-200/a00eff071f40fbc8075207a55169c2cbcf11787d1ba927df7af767657953b123.jpg)

S/PDIF Pin Header (SPDIF\_OUT)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>+5V</td></tr><tr><td>2</td><td>NC</td></tr><tr><td>3</td><td>SPDIF0</td></tr><tr><td>4</td><td>GND</td></tr></table>

![Four identical hollow rectangular shapes with rounded outer corners are stacked vertically. To the right of the bottom shape is the number 1.](.mi-110-50-1z012-1000-200/3e9f0ec25a18e45358174c3604938e47f14c6354fec2829087373f1c660363ef.jpg)

SPI pin header (SPI\_JP1)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>+3V ROM</td><td>2</td><td>GND</td></tr><tr><td>3</td><td>F_SPI_CS#</td><td>4</td><td>F_SPI_CLK</td></tr><tr><td>5</td><td>F_SPI_MISO</td><td>6</td><td>F_SPI_MOSI</td></tr><tr><td>7</td><td>SPI_HOLD#</td><td>8</td><td>NC</td></tr></table>

1
![The image is a black and white line drawing of a vertical rectangular panel. Inside the panel, there are two columns of geometric shapes arranged in a grid. The left column features a square at the top, followed by three circles stacked vertically below it. The right column consists of four circles stacked vertically, aligned with the shapes in the left column.](.mi-110-50-1z012-1000-200/9a76959c25c3854ae796328e4c25a626209ceb9ed0ec1ab03a9e84f722de6b30.jpg)

USB 2.0 Connector (USB45)

<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>USB4-</td><td>4</td><td>USB5-</td></tr><tr><td>5</td><td>USB4+</td><td>6</td><td>USB5+</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>

![The image displays a horizontal row of five identical rectangular outlines, each containing four smaller squares arranged in a 2x2 grid. To the far left, the numbers '9' and '10' are stacked vertically. To the far right, the numbers '1' and '2' are stacked vertically.](.mi-110-50-1z012-1000-200/c344f6586a78c50ad037e392f3d0d102805a502fe423b2014fdf5fb37ef4aa4b.jpg)

# 2.3 Jumper Settings

# Clear CMOS Jumper (CLRTC)

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. Unplug the MI-110.
2. Short the CLRTC pins 2-3.

3. Remove the jumper cap from pins 2-3 and reinstall it to pins 1-2. Power up the system.

![1\nNormal\n(Default)\nClear CMOS\n1](.mi-110-50-1z012-1000-200/496d2cc427e9062100d1cd6ef91e1aa33c273bf1a453618f6fc72ba266eb8aa4.jpg)

# COM1 RI, +12V and +5V Function Select (JCOMPWR1/2)

These jumpers allows you to select COM1 RI, +5V and +12V functions. Set JCOMPWR1 to pins 1-3 and JCOMPWR2 to pins 1-3 to select +5V power. Set JCOMPWR1 to pins 3-5 and JCOMPWR2 to pins 1-3 to select +12V power. Set JCOMPWR2 to pins 3-5 and JCOMPWR1 to open for RI selection.

![The image displays a technical diagram organized into three rows, each representing a different setting or voltage configuration.\n\n**Top Row: +5V**\n*   **Left Diagram:** Labeled **JCOMPWR1**. It features a grid of six squares arranged in two rows of three. The numbers **2** and **6** are positioned at the top left and top right corners, respectively. The numbers **1** and **5** are positioned at the bottom left and bottom right corners. A dark blue rectangular block covers the bottom-left square (next to **1**) and the bottom-middle square. The other squares are white.\n*   **Right Diagram:** Labeled **JCOMPWR2**. It has the same grid layout and numbering. A dark blue rectangular block covers the bottom-middle square and the bottom-right square (next to **5**). The other squares are white.\n\n**Middle Row: +12V**\n*   **Left Diagram:** Labeled **JCOMPWR1**. It has the same grid layout. A dark blue rectangular block covers the bottom-middle square and the bottom-right square (next to **5**). The top row squares and bottom-left square are white.\n*   **Right Diagram:** Labeled **JCOMPWR2**. It has the same grid layout. A dark blue rectangular block covers the bottom-middle square and the bottom-right square (next to **5**). The top row squares and bottom-left square are white.\n\n**Bottom Row: RI**\n*   **Left Diagram:** Labeled **JCOMPWR1**. It has the same grid layout. All six squares are white; there are no blue blocks.\n*   **Right Diagram:** Labeled **JCOMPWR2**. It has the same grid layout. A dark blue rectangular block covers the bottom-left square (next to **1**) and the bottom-middle square. The other squares are white.\n\nAll numbers (**1**, **2**, **5**, **6**) are printed in blue. The labels **JCOMPWR1** and **JCOMPWR2** are in black text. The row headers **+5V**, **+12V**, and **RI** are in black text.](.mi-110-50-1z012-1000-200/28a2d0fa7ecafca0d094defe2b2e7bdcf51519b8253b570859eee2135c71a44f.jpg)

# COM2 RI, +12V and +5V Function Select (JCOMPWR1/2)

These jumpers allow you to select COM2 RI, +5V and +12V power. Set JCOMPWR1 to pins 2-4 and JCOMPWR2 to pins 2-4 to select +5V power. Set JCOMPWR1 to pins 4-6 and JCOMPWR2 to pins 2-4 to select +12V power. Set JCOMPWR2 to pins 4-6 and JCOMPWR1 to open for RI selection.

![The image displays a technical diagram illustrating power jumper settings for computer motherboards. It is divided into two sections:\n\n**Top Section (+5V):**\n*   Labeled **'+5V'** at the top.\n*   Two diagrams are shown side-by-side labeled **'JCOMPWR1'** and **'JCOMPWR2'**.\n*   In both diagrams, a blue jumper block covers the pin labeled **'2'** in the top row. The other pins are labeled **'1'**, **'5'**, and **'6'**.\n\n**Bottom Section (+12V):**\n*   Labeled **'+12V'** at the top.\n*   Two diagrams are shown side-by-side labeled **'JCOMPWR1'** and **'JCOMPWR2'**.\n*   In both diagrams, a blue jumper block covers the pin labeled **'6'** in the top row. The other pins are labeled **'1'**, **'2'**, and **'5'**.](.mi-110-50-1z012-1000-200/53b149adf7f0c48f771603ab69f652815d875781020e742344061b06925eb707.jpg)

RI
![The image features a central 2x2 grid of squares, each containing a smaller inner square. Surrounding this grid are numbers: a black '2' is to the top left, a black '6' is to the top right, a blue '1' is to the bottom left, and a blue '5' is to the bottom right. Below the grid is the text 'JCOMPWR1'.](.mi-110-50-1z012-1000-200/fea9f087d12f77e1ffa2811e0f71d2916514b4510491b7c431a250580d581ea4.jpg)

![The image features the text 'JCOMPWR2' at the bottom. Above this text are two rows of square icons. The top row consists of a white square icon with a black square inside on the left, and a blue square icon with a white square inside on the right. The bottom row consists of two white square icons, each with a black square inside. To the left of the top row is the number '2', with the number '1' directly below it. To the right of the top row is the number '6', with the number '5' directly below it.](.mi-110-50-1z012-1000-200/c24f730c79aeb0b3966e4f4292656ddb193523ce68668a51b655373cac753563.jpg)

# COM3 RI, +12V and +5V Function Select (JCOMPWR3/4)

These jumpers allow you to select COM3 RI, +5V and +12V power. Set JCOMPWR3 to pins 1-3 and JCOMPWR4 to pins 1-3 to select +5V power. Set JCOMPWR3 to pins 3-5 and JCOMPWR4 to pins 1-3 to select +12V power. Set JCOMPWR4 to pins 3-5 and JCOMPWR3 to open for RI selection.

![+5V\n2 6 2 6\n1 5 1 5\nJCOMPWR3 JCOMPWR4\n+12V\n2 6 2 6\n1 5 1 5\nJCOMPWR3 JCOMPWR4\nRI\n2 6 2 6\n1 5 1 5\nJCOMPWR3 JCOMPWR4](.mi-110-50-1z012-1000-200/3724d3f5bad3ceba52008c6fc472b4e9f3e72590893647af173c3dec5bd9eb12.jpg)

# COM4 RI, +12V and +5V Function Select (JCOMPWR3/4)

These jumpers allow you to select COM4 RI, +5V and +12V power. Set JCOMPWR3 to pins 2-4 and JCOMPWR4 to pins 2-4 to select +5V power. Set JCOMPWR3 to pins 4-6 and JCOMPWR4 to pins 2-4 to select +12V power. Set JCOMPWR4 to pins 4-6 and JCOMPWR3 to open for RI selection.

![+5V\n2 6 2 6\n1 5 1 5\nJCOMPWR3 JCOMPWR4\n+12V\n2 6 2 6\n1 5 1 5\nJCOMPWR3 JCOMPWR4\nRI\n2 6 2 6\n1 5 1 5\nJCOMPWR3 JCOMPWR4](.mi-110-50-1z012-1000-200/b896cad928fc50bbdb6b0ac89b70e319d1b8f7d32567e25df011289dce6a942e.jpg)

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# 3 Getting Started

This chapter provides information on how to install components to the MI-110 SBC.

# 3.1 System Memory

The MI-110 supports up to 2 GB of DDR2 400/533 SDRAM in one 200-pin SO-DIMM socket. See Figure 1-2 on page 10 for the SO-DIMM socket location.

# Memory Module Installation

The DDR2 memory modules are notched to facilitate correct installation in the DIMM sockets.

![This image features a maroon triangular warning sign containing a white exclamation point in the center. Below the triangle is the text 'WARNING:' in black capital letters.](.mi-110-50-1z012-1000-200/f45d097371d76b40bcda907db321f2745cbb23a49fb6f254b44af0c0e6dcffea.jpg)

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

To install a memory module:

1. Locate the SO-DIMM slot on the motherboard.
2. Align the memory module on the socket, making sure that the notch matches the break on the socket.
3. Insert the module firmly into the slot until the retaining clips snap back inwards and the module is securely seated.

# 3.2 Driver Installation

The MI-110 drivers for Windows XP 32-bit are located in the following directories on the Driver CD, or can be downloaded from the ADLINK website (http://www.adlinktech.com):

<table><tr><td>Chipset</td><td>X:\MI-110\CHIP\setup.exe</td></tr><tr><td>Display</td><td>X:\MI-110\VGA\Win2KXP\win2k_xp14311.exe</td></tr><tr><td>LAN</td><td>X:\MI-110\LAN\Win2KXP\setup.exe</td></tr><tr><td>Audio</td><td>X:\MI-110\Audio\Windows 32_64\WDM_R182.exe</td></tr><tr><td>TPM</td><td>X:\MI-110\TPM\setup.exe</td></tr></table>

Follow the instructions below to install the required MI-110 drivers:

1. Install the Windows operating system before installing any driver. Most standard I/O device drivers are installed during Windows installation.
2. Install the Chipset driver by running the program X:\MI-110\CHIP\setup.exe. Follow the instructions given and reboot when instructed.
3. Install the Display driver and utilities by running the program X:\MI-110\VGA\Win2KXP\win2k\_xp14311.exe. Follow the instructions given and reboot when instructed.
4. Install the LAN driver by running the program X:\MI-110\LAN\Win2KXP\setup.exe. Follow the instructions given and reboot if required.
5. Install the Audio driver by running the program
X:\MI-110\Audio\Windows 32\_64\WDM\_R182.exe. Follow the instructions given and reboot if required.
6. Install the TPM driver by running the program X:\MI-110\TPM\setup.exe. Follow the instructions given and reboot if required.

# 4 BIOS Setup

The following chapter describes basic navigation for the Phoenix AwardBIOS Setup Utility.

# 4.1 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 during the Power-On-Self-Test (POST) to enter the Setup utility.
3. After you press the &lt;Delete&gt; key, the main BIOS Setup Menu will be displayed.

# Phoenix - Award WorkstationBIOS CMOS Setup Utility

Standard CMOS Features

▶ Advanced BIOS Features

▶ Advanced Chipset Features

▶ Integrated Peripherals

▶ Security Chip Configuration

▶ Power Management Setup

▶ PnP/PCI Configurations

Esc : Quit

F10 : Save & Exit Setup

PC Health Status

▶ Frequency/Voltage Control

Load Optimized Defaults

Set Supervisor Password

Set User Password

Save & Exit Setup

Exit Without Saving

↑ ↓ → ← : Select Item

Time, Date, Hard Disk Type . . .

# Navigation

Use the keys described below to navigate through the BIOS Setup Utility

<table><tr><td>Key(s)</td><td>Function Description</td></tr><tr><td>F1</td><td>General help, only for Status Page Setup Menu and Option Page Setup Menu</td></tr><tr><td>Esc</td><td>Return to the main menu from a sub-menu or prompts you to quit the setup program.</td></tr><tr><td>←, →</td><td>Move to the item on the left or right</td></tr><tr><td>↑, ↓</td><td>Move to previous or next item</td></tr><tr><td>Enter</td><td>Brings up a selection menu for the highlighted field.</td></tr><tr><td>+ or PgUp</td><td>Moves the cursor to the first field</td></tr><tr><td>- or PgDn</td><td>Moves the cursor to the last field</td></tr><tr><td>F5</td><td>Loads the previous values</td></tr><tr><td>F6, F7</td><td>Loads the fail-safe / optimized defaults</td></tr><tr><td>F10</td><td>Saves changes and exits Setup</td></tr></table>

# Submenus

Note that a right pointer symbol (▶) appears to the left of certain fields. This pointer indicates that you can display a submenu from this field. A sub-menu contains additional options for a field parameter. To display a sub-menu, move the highlight to the field and press &lt;Enter&gt;. The sub-menu appears. Use the legend keys to enter values and move from field to field within a sub-menu as you would within a menu. Use the &lt;Esc&gt; key to return to the main menu.

# 4.2 Standard CMOS Features

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

<table><tr><td colspan="3">Phoenix - Award WorkstationBIOS CMOS Setup Utility
Standard CMOS Features</td></tr><tr><td>Date (mm: dd: yy)
Time (hh: mm: ss)</td><td>Fri, Dec 19 2008
14:39:20</td><td>Item Help</td></tr><tr><td>▶ IDE Channel 0 Master
▶ IDE Channel 0 Slave
▶ IDE Channel 1 Master
▶ IDE Channel 1 Slave</td><td>[ None]
[ TRANSCEND]
[ None]
[ None]</td><td>Menu Level ▶
Change the day, month,
year and century</td></tr><tr><td>Video
Halt On</td><td>[EGA/VGA]
[All, But Keyboard]</td><td></td></tr><tr><td>Base Memory
Extended Memory
Total Memory</td><td>639K
2086912K
2087936K</td><td></td></tr></table>

# Date/Time

Use this option to change the system time and date. 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.

# IDE Channel 0/1 Master/Slave

This selection brings up the configuration submenu of the designated device.

IDE HDD Auto-detection: Press Enter to auto-detect the HDD on the selected channel.

IDE Device Setup: None/Auto/Manual. Selecting 'manual' allows the user to set the remaining fields on the submenu.

Capacity: Auto display disk size Disk drive capacity (approximated).

Access Mode: CHS/LBA/Large/Auto Selects the access mode for a hard disk The following options are selectable only if the 'IDE Primary Master' item is set to 'Manual'

Cylinder: Min = 0 Max = 65535 Sets the number of cylinders for a hard disk.

Head: Min = 0 Max = 255 Sets the number of read/write heads

Precomp: Min = 0 Max = 65535

Landing zone: Min = 0 Max = 65535

Sector: Min = 0 Max = 255 Number of sectors per track

# Video

This category detects the type of adapter used for the primary monitor that matches your video display card and monitor.

▶ EGA / VGA: Enhanced Graphics Adapter/Video Graphics Array. For EGA, VGA, SVGA, or PGA monitor adapters
▶ CGA 40: Color Graphics Adapter, power up in 40 column mode
▶ CGA 80: Color Graphics Adapter, power up in 80 column mode
▶ MONO: Monochrome adapter, includes high resolution monochrome adapters

# Halt On

Sets the system to halt on errors according to the system functions specified in each option. Configuration options: [All Errors] [No Errors] [All, But Keyboard]

# Memory

This category displays base memory, extended memory, and total memory detected during POST (Power On Self Test).

# 4.3 Advanced BIOS Features

This section allows users to configure the Advanced BIOS Features of the system.

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup Utility
Advanced BIOS Features</td></tr><tr><td rowspan="2">CPU Feature [Press Enter]
Hard Disk Boot Priority [Press Enter]
Virus Warning [Disabled]
CPU L1 &amp; L2 Cache [Enabled]
Hyper-Throading Technology [Enabled]
Quick Power On Self Test [Enabled]
First Boot Device [Hard Disk]
Second Boot Device [CDROM]
Third Boot Device [LS120]
Boot Other Device [Enabled]
Boot Up NumLock Status [On]
Gate A20 Option [Fast]
Security Option [Setup]
x APIC Mode Enabled
MPS Version Control For OS [1.4]
Small Logo (EPA) Show [Disabled]</td><td>Item Help</td></tr><tr><td>Menu Level ▶</td></tr><tr><td colspan="2">↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help
F5:Previous Values F7:Setup Defaults</td></tr></table>

# CPU Features

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup Utility
CPU Feature</td></tr><tr><td rowspan="2">► Delay Prior to Thermal [16 Min]
► Limit CPUID MaxVal [Disabled]
C1E Function [Auto]
Execute Disable Bit [Enabled]</td><td>Item Help</td></tr><tr><td>Menu Level ►</td></tr><tr><td colspan="2">↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help
F5:Previous Values F7:Setup Defaults</td></tr></table>

# Delay Prior to Thermal

The Delay Prior To Thermal BIOS feature controls the activation of the Thermal Monitor's automatic mode. It allows you to determine when the Pentium 4's Thermal Monitor should be activated in automatic mode after the system boots. For example, with the default value of 16 Minutes, the BIOS activates the Thermal Monitor in automatic mode 16 minutes after the system starts booting up.

# Limit CPUID MaxVal

Set Limit CPUID MaxVa1 to 3. This should be disabled for WinXP

# C1E Function

CPU C1E function select

# Execute Disable Bit

When disabled, forces the XD feature flag to always return 0

# Hard Disk Boot Priority

Sets hard disk boot device priority.

![Phoenix - AwardBIOS CMOS Setup Utility\nHard Disk Boot Priority\n\n1. Ch0 S. : TRANSCEND\n2. Bootable Add-in Cards\n\nItem Help\n\nMenu Level ▶\nUse (↑) or (↓) to select\na device, then press (+)\nto move it up, or (- ) to\nmove it down the list.\nPress(ESC) to exit this\nmenu.\n\n↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help\nF5:Previous Values F7:Setup Defaults](.mi-110-50-1z012-1000-200/44a41c95d12b819f27ee8a340318b36ddffc16ca609c6dab44ba307edc74f1d0.jpg)

# CHO S.

Primary SATA channel with Master Device. It will show the device model / type when SATA HDD or CD ROM connected.

# Bootable Add-in Cards

"Bootable add-in cards" is an item on the HDD boot priority list.

# Virus Warning

Enables or disables the virus warning.

# CPU L1 & L2 Cache

Enables or disables the CPU L1 & L2 Cache. Enabling this feature speeds up memory access.

# Hyper-Threading Technology

Enables or disables the Hyper-Threading function of the CPU.

# Quick Power On Self Test

Speeds up the Power On Self Test (POST). If enabled, the BIOS will shorten the test time or skip some check items during POST.

# First/Second/Third Boot Device

Pressing &lt;Enter&gt; displays the Boot Device Menu. The BIOS will attempt to load the operating system from the selected devices in sequence.

# Boot Other Device

Enables the BIOS to boot from a second or third device if booting from the first device fails. When disabled the BIOS will not attempt to boot from alternative devices.

# Boot-Up NumLock Status

Selects the power on state for system NumLock. Options: On/Off

# Gate A20 Option

Gate A20 is a device used to address memory above 1 MB. The options are Fast and Normal. The Fast setting is controlled by a chipset specific method. Normal setting is controlled by keyboard controller or chipset hardware.

# Security Option

Selects whether a password is required every time the system boots or only when setup is entered. Options include:

▶ System: The system will not boot without password access and access to Setup will be denied if an incorrect password is entered at the prompt.
▶ Setup: The system will boot, but access to Setup will be restricted without password access.

To disable security, select PASSWORD SETTINGS in the Main Menu. The user will then be prompted to enter a password. To disable security, DO NOT type anything, only press &lt;Enter&gt;. Once security is disabled, the system will boot and setup can be accessed.

# APIC Mode

Enables or disables the APIC Mode.

# MPS Version Control for OS

This option is only valid for multiprocessor motherboards as it specifies the version of the Multiprocessor Specification (MPS) that the motherboard will use. The MPS is a specification by which PC manufacturers design and build Intel architecture systems with two or more processors.

MPS 1.1 was the original specification. MPS version 1.4 adds extended configuration tables for improved support of multiple PCI bus configurations and greater expandability in the future. In addition, MPS 1.4 introduces support for a secondary PCI bus without requiring a PCI bridge.

# Small Logo (EPA) Show

This item allows you enabled/disabled display of the small EPA logo during POST.

# 4.4 Advanced Chipset Features

# Phoenix - AwardBIOS CMOS Setup Utility Advanced Chipset Features

<table><tr><td colspan="2">DRAM Clock/Drive Control [By SPD]</td><td>Item Help</td></tr><tr><td>X CAS Latency Time</td><td>Auto</td><td rowspan="8">Menu Level ▶</td></tr><tr><td>X DRAM RAS# to CAS# Delay</td><td>Auto</td></tr><tr><td>X DRAM RAS# Precharge</td><td>Auto</td></tr><tr><td>X Precharge dealy (tRAS)</td><td>Auto</td></tr><tr><td>X System Memory Frequency</td><td>Auto</td></tr><tr><td>System BIOS Cacheable</td><td>[Enabled]</td></tr><tr><td>Video RAM Cacheable</td><td>[Disabled]</td></tr><tr><td>Memory Hole At 15M-16M</td><td>[Disabled]</td></tr><tr><td colspan="2">** VGA Setting **</td><td rowspan="6"></td></tr><tr><td>On-Chip Frame Buffer Size</td><td>[8MB]</td></tr><tr><td>DVMT Mode</td><td>[DVMT]</td></tr><tr><td>DVMT/FIXED Memory Size</td><td>[128MB]</td></tr><tr><td>Boot Display</td><td>[CRT]</td></tr><tr><td>Panel Number</td><td>[640 x 480 18bit]</td></tr></table>

# DRAM Clock/Drive Control

When set to “BySPD”, the DRAM timing parameters are set according to DRAM SPD (Serial Presence Detect). When disabled, one can manually set the DRAM timing parameters using the sub items below. Set to “BySPD” if not sure.

# CAS Latency Time

Controls the latency between the SDRAM Read command and the time data actually becomes available.

# DRAM RAS# to CAS# Delay

Controls the latency between the DDR SDRAM active command and the read/write command.

# DRAM RAS# Precharge

Controls the idle clocks after issuing a precharge command to the DDR SDRAM.

# Precharge delay (tRAS)

This setting controls the precharge delay, which determines the timing delay for DRAM precharge.

# System Memory Frequency

Allow to choose different frequency of memory module.

# System BIOS Cacheable

Selecting “Enabled” allows caching of the system BIOS ROM at F0000h- FFFFFh, resulting in better system performance. However, if any pro-gram writes data to this memory area, a system error may occur.

# Video BIOS Cacheable

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

# Memory Hole At 15M-16M

Enabling this feature reserves 15 MB to 16 MB memory address space for ISA expansion cards that specifically require this setting. This makes memory from 15 MB and up unavailable to the system. Expansion cards can only access memory up to 16 MB. The default setting is “Disabled”.

# On-Chip Frame Buffer Size

The On-Chip Frame Buffer Size can be set as 1MB or 8MB. This memory is shared with the system memory.

# DVMT Mode

Use this field to select the memory to allocate for video memory. The choices are "Fixed", "DVMT" and "BOTH".

# DVMT/FIXED Memory Size

Specify the size of DVMT/system memory to allocate for video memory.

# Boot Display

Options: VBIOS Default, CRT, LFP, CRT+LFP, EFP(DVI), CRT+EFP(DVI). (VBIOS Default: CRT, LFP: LVDS Flat Panel, EFP(DVI): DVI)

# Panel Number (LVDS panel resolution)

Options: 640x480 18bit, 800x600 18bit, 1024x768 18bit, 1024x768 18bit/2 (dual channel).

# 4.5 Integrated Peripherals

# Phoenix - AwardBIOS CMOS Setup Utility Integrated Peripherals

OnChip IDE Device
Onboard Device
▶ Super IO Device

Onboard Lan1 Boot ROM

Onboard Lan2 Boot ROM

Watch Dog Timer Select

Onboard Serial Port 3

Serial Port 3 Use IRQ

Onboard Serial Port 4

Serial Port 4 Use IRQ

USB Device Setting

[Press Enter]

[Press Enter]

[Press Enter]

[Disabled]

[Disabled]

[Disabled]

[3E8]

[IRQ10]

[2E8]

[IRQ11]

[Press Enter]

Item Help

Menu Level

![A white, right-pointing triangle centered on a dark blue rectangular background.](.mi-110-50-1z012-1000-200/e90e8a8b92a273982755a7c7706e2894300624015af8ec5a8e67deccd11fd379.jpg)

![The image displays a blue rectangular sign featuring four white arrows arranged horizontally from left to right. The first arrow points up, the second points down, the third points right, and the fourth points left.](.mi-110-50-1z012-1000-200/fe05ab0ccab627d00d269f0b74090018568ef49783d7d257c9ca19aaeff72f1b.jpg)

:Move

Enter:Select

+/-/PU/PD:Value

F10:Save

ESC:Exit

F1:General Help

F5:Previous Values

F7: Setup Defaults

# On Chip IDE Device

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup UtilityOnChip IDE Device</td></tr><tr><td rowspan="2">&lt;img src="images/1bd2e7e284b730a84a5c46570440d458e5d2cd494c0f1788ba91542c6290eba8.jpg"/&gt;*** On-Chip Serial ATA Setting ***On-Chip Serial ATA [Auto]X SATA PORT Speed Settings DisabledX PATA IDE Mode SecondarySATA Port P0, P2 is Primary</td><td>Item Help</td></tr><tr><td>Menu Level ▶If your IDE hard drivesupports block modeselect Enabled forautomatic detection ofthe optimal number ofblock read/wites pesector the drive cansupport</td></tr></table>

# IDE HDD Block Mode

If your IDE hard drive supports block mode select Enabled for automatic detection of the optimal number of block read/writes per sector the drive can support.

# IDE DMA Transfer Access

Use this field to enable or disable IDE DMA transfer access.

# 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.

# IDE Primary/Secondary Master/Slave PIO/UDMA Mode

Two IDE devices may have a different Mode timing (0, 1, 2, 3, 4), which need to be independent. The default setting “Auto” will allow auto detection to ensure optimal performance.

# On-Chip SerialATA

Options: Disabled, Auto, Combined Mode, Enhanced Mode, SATA only

# Onboard Device

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup Utility
Onboard Device</td></tr><tr><td rowspan="2">Azalia Audio Select [Enabled]
Audio Amplifier [Enabled]
Amplifier Gain(dB) [31.8 dB]
Onboard LAN1 Device [Enabled]
Onboard LAN2 Device [Enabled]</td><td>Item Help</td></tr><tr><td>Menu Level ▶</td></tr><tr><td colspan="2">↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help
F5:Previous Values F7:Setup Defaults</td></tr></table>

# Azalia Audio Select

Select [Disabled] if you do not want to use Azalia audio. Configuration options: [Enabled] [Disabled]

# Super I/O Device

<table><tr><td colspan="3">Phoenix - AwardBIOS CMOS Setup Utility
SuperIO Device</td></tr><tr><td rowspan="2">POWER ON Function [Any KEY]
X KB Power ON Password Enter
X Hot Key Power ON Ctrl-F1
Onboard Serial Port 1 [3F8/IRQ4]
Onboard Serial Port 2 [2F8/IRQ3]
PWRON After PWR-Fail [Off]</td><td>Item Help</td><td></td></tr><tr><td>Menu Level ▶</td><td></td></tr><tr><td colspan="3">↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help F5:Previous Values F7:Setup Defaults</td></tr></table>

# Power ON Function

This feature allows you to wake up the system using any of the listed options. The selections are “Hot KEY”, “Mouse Left”, “Mouse Right”, “Any KEY” and “BUTTON ONLY” (default).

# KB Power ON Password

The system will ask for a password, after entering the correct password the keyboard can then be used.

# Hot Key Power ON

Awaken the system by pressing the hot key button. The options are “Ctrl-F1”, “Ctrl-F2”, “Ctrl-F3” to “Ctrl-F8”.

# Onboard Serial Port 1/2

The settings are “3F8/IRQ4”, “2F8/IRQ3”, “3E8/IRQ4”, “2E8/IRQ3”, and “Disabled” for the on-board serial connector.

Onboard Parallel Port

This field sets the address of the on-board parallel port connector. You can select "378/IRQ7", "278/IRQ5", "3BC/IRQ7", or "Disabled". If you install an I/O card with a parallel port, make sure there is no conflict in the address assignments. The single board computer can support up to three parallel ports.

# PWRON After PWR-Fail

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

# Onboard LAN1/2 Boot ROM

Options: Enable, Disable.

# Watchdog Timer Select

This option will determine watch dog timer. Options: Disabled, 10, 20, 30, 40 Sec. 1, 2, 4 Min.

# Onboard Serial Port 3/4

Options: Disable, 3F8, 2F8, 3E8, 2E8

# Serial Port 3/4 Use IRQ

Options: IRQ3, IRQ4, IRQ10, IRQ11

# USB Device Setting

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup Utility
USB Device Setting</td></tr><tr><td rowspan="2">USB Controller [Enabled]
USB 2.0 Controller [Enabled]
USB Operation Mode [High Speed]
USB Keyboard Function [Enabled]
USB Mouse Function [Enabled]
USB Storage Function [Enabled] *** USB Mass Storage Device Boot Setting ***</td><td>Item Help</td></tr><tr><td>Menu Level ▶
[Enable] or [Disable]
Universal Host
Controller Interface for
Universal Serial Bus.</td></tr><tr><td colspan="2">↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help
F5:Previous Values F7:Setup Defaults</td></tr></table>

# USB Controller

The options: Disabled, Enabled.

# USB 2.0 Controller

The options: Disabled, Enabled.

# USB Operation Mode

Allows you to configure the USB 2.0 controller in HiSpeed (480 Mbps) or Full Speed (12 Mbps). Configuration options: [Full/Low Speed] [HiSpeed]

# USB Keyboard Function

The options: Disabled, Enabled.

# USB Mouse Function

The options: Disabled, Enabled.

# USB Storage Function

The options: Disabled, Enabled.

# Security Chip Configuration

# Phoenix - Award WorkstationBIOS CMOS Setup Utility Security Chip Configuration

TPM Support

TPM Current Status

TPM Status

[Disabled]

Disabled & Deactivated
No change

Item Help

Menu Level

![The image displays a blue background featuring a horizontal row of white triangles pointing to the right, resembling a 'fast forward' symbol.](.mi-110-50-1z012-1000-200/a8e63a2c00840347c7d9830eee5f59508be416b005db50dbd926a586c04f169d.jpg)

Enable/Disable Trusted Platform Module.

![Four white arrows arranged horizontally on a blue background: pointing up, down, right, and left.](.mi-110-50-1z012-1000-200/982eaba498df24ddf4bcaaf90793cdc0650aeb619d3de7502bd0248965f56b92.jpg)

:Move

Enter:Select +/-/PU/PD:Value

F10:Save

ESC:Exit

F1:General Help

F5:Previous Values

F7: Setup Defaults

# TPM Support

The choices are “Enabled” and “Disabled”.

# TPM Current Status

This item shows you the current TPM status.

# TPM Status

The options are “No Change” / “Clear” / “Enable & Activate” / “Deactivate & Disable”.

# 4.6 Power Management Setup

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup Utility
Power Management Setup</td></tr><tr><td rowspan="2">ACPI function [Enabled]
ACPI Suspend Type [S3(STR)]
Run VGABIOS if S3 Resume [Auto]
Power Management [User Define]
Video Off Method [DPMS]
Video Off In Suspend [Yes]
Suspend Type [Stop Grant]
MODEM Use IRQ [3]
Suspend Mode [Disabled]
HDD Power Down [Disabled]
Soft-Off by PWR-BTTN [Instant-Off]
Wake-Up by PCI card [Enabled]
Power On by Ring [Disabled]
USB KB Wake-Up From S3 [Disabled]
Resume by Alarm [Disabled]
X Date(of Month) Alarm 0
X Time(hh:mm:ss) Alarm 0:0:0</td><td>Item Help</td></tr><tr><td>Menu Level ▶</td></tr><tr><td colspan="2">↑↓→←:Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General Help
F5:Previous Values F7:Setup Defaults</td></tr></table>

# ACPI Function

The options are “Enabled” and “Disabled”.

# ACPI Suspend Type

This item allows you to set ACPI suspend type to S1/POS (Power On Suspend) or S3/STR (Suspend To RAM).

# Run VGABIOS if S3 Resume

Select “Auto” to run VGA BIOS if S3 resume automatically. The “Yes” enables running VGA BIOS if S3 resume. The “No” disables this function.

# Power Management

There are three selections for Power Management, and each of them has fixed mode settings.

▶ Min. Power Saving: Minimum power management, HDD Power Down = 15 Min,

▶ Max. Power Saving: Maximum power management, HDD Power Down =1 Min
▶ User Defined: Allows you 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

Use this to select the method to turn off the video. The options are "Blank Screen", "V/H SYNC+ Blank", and "DPMS".

# Video Off In Suspend

When the system is in suspend mode, the video will turn off. The options are "No" and "Yes".

# Suspend Type

Select the suspend type. The choice: Stop Grant, Pwron suspend.

# MODEM Use IRQ

This determines the IRQ in which the MODEM can use. The options: NA, 3, 4, 5, 7, 9, 10, 11.

# Suspend Mode

Enable/disable system suspend.

# HDD Power Down

Select “1-15 mins” to enable HDD Power Down mode between 1 to 15 mins. Select “Disabled” to disable HDD Power Down function.

Soft-Off by PWR-BTTN: Configures the power button:

▶ Instant-Off: The power button functions as a normal power-on/-off button.
▶ Delay 4 Sec: The system is turned off if the power button is pressed for more than four seconds. Pressing the button momentarily (for less than 4 seconds) will switch the system to “suspend” mode.

# Wake-Up by PCI card

The options are “Enabled” and “Disabled”.

# Power On by Ring

Select “Enabled” to power on the system from a soft off state by an input signal on the serial Ring Indicator (RI) line. The options are “Enabled” and “Disabled”.

# USB KB Wake-Up from S3

When “Enabled”, enter any key to wake up the system from S3 state. The options are “Enabled” and “Disabled”.

# Resume by Alarm

When “Enabled”, set the date and time at which the RTC (real-time clock) alarm awakens the system from suspend mode. The options are “Enabled” and “Disabled”.

# 4.7 PnP/PCI Configurations

This section describes configuring the PCI (Personal Computer Interconnect) bus system. PCI is a system which allows I/O devices to operate at speeds nearing the speed the CPU itself uses when communicating with its own components.

<table><tr><td colspan="3">Phoenix - AwardBIOS CMOS Setup UtilityPnP/PCI Configurations</td></tr><tr><td>Init Display FirstReset Configuration Data</td><td>[Onboard][Disabled]</td><td>Item Help</td></tr><tr><td>Resources Controlled ByX IRQ Resources</td><td>[Auto(ESCD)]Press Enter</td><td>Menu Level ▶</td></tr><tr><td>PCI/VGA Palette SnoopINT Pin 1 AssignmentINT Pin 2 AssignmentINT Pin 3 AssignmentINT Pin 4 AssignmentINT Pin 5 AssignmentINT Pin 6 AssignmentINT Pin 7 AssignmentINT Pin 8 Assignment</td><td>[Disabled][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Outo][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto[Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto[ Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][ Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto[ Outo][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto][Auto]</td><td></td></tr><tr><td>** PCI Express relative items **Maximum Payload Size [128]</td><td></td><td></td></tr><tr><td colspan="3">&lt;img src="images/1108439afce93fde8433637f7cd9213ae9f826362ffd704b51f6a18d6be84b0a.jpg"/&gt; :Move Enter:Select +/-/PU/PD:Value F10:Save ESC:Exit F1:General HelpF5:Previous Values F7:Setup Defaults</td></tr></table>

# Init Display First

This item allows you to choose the first display interface to initiate while booting. The choice is “PCI Slot” or “Onboard”.

# Reset Configuration Data

The default is “Disabled”. Select Enabled to reset Extended System Configuration Data (ESCD) if you have installed a new add-on card, and system configuration is in such a state that the OS cannot boot.

# Resource Controlled By

The commands here are “Auto (ESCD)” or “Manual”. Choosing “Manual” requires you to choose resources from the following sub-menu. “Auto(ESCD)” automatically configures all of the boot and Plug and Play devices, but you must be using Windows 95 or above.

# PCI/VGA Palette Snoop

This is set to "Disabled" by default.

# INT Pin 1/2/3/4/5/6/7/8 Assignment

The options: Auto, 3, 4, 5, 7, 9, 10, 11

# Maximum Payload Size

This allows you to set the maximum TLP payload size for PCI Express devices. The options are [128 bytes], [256 bytes], [512 bytes], [1024 bytes], [2048 bytes], and [4096 bytes].

# 4.8 PC Health Status

Phoenix - AwardBIOS CMOS Setup Utility
PC Health Status

<table><tr><td rowspan="2">Shutdown Temperature [Disabled]CPU Warning Temperature [Disabled]Current System Temp 39°C/102°FCurrent CPU1 Temperature 41°C/105°FCPU Fan Speed 0 RPMSystem Fan Speed 0 RPMVcore 0.88V+12V 11.90V+5V 5.25V</td><td>Item Help</td></tr><tr><td>Menu Level ▶</td></tr></table>

# Shutdown Temperature

Options: 60 °C/140 °F, 65 °C/149 °F, 70 °C/158 °F, Disabled

# CPU Warning Temperature

Options: Disabled, 50 °C/122 °F, 53 °C/127 °F, 56 °C/133 °F, 60 °C/140 °F, 63 °C/145 °F, 66 °C/151 °F, 70 °C/158 °F

# 4.9 Frequency/Voltage Control

<table><tr><td colspan="2">Phoenix - AwardBIOS CMOS Setup Utility
Frequency/Voltage Control</td></tr><tr><td rowspan="2">Auto Detect PCI Clk [Enabled]
Spread Spectrum [Disabled]
CPU Host/SRC/PCI Clock [Default]</td><td>Item Help</td></tr><tr><td>Menu Level ▶</td></tr><tr><td colspan="2">↑↓→←:Move Enter:Select +/-PU/PD:Value F10:Save ESC:Exit F1:General Help
F5:Previous Values F7:Setup Defaults</td></tr></table>

# Auto Detect PCI Clk

This allows you to enable or disable auto detect PCI clock. Options: Enabled, Disabled.

# Spread Spectrum

This setting allows you to reduce EMI by modulating the signals the CPU generates so that the spikes are reduced to flatter curves. This is achieved by varying the frequency slightly so that the signal does not use any particular frequency for more than a moment. Options: Enabled, Disabled.

# CPU/Host/SRC/PCI Clock

Options: Default, 133/100/33

# 4.10 Load Optimized Defaults

Use this menu to load the BIOS default values that are factory settings for optimal performance system operations. Press "Y" to load the default values setting for optimal performance system operations.

# Phoenix - Award BIOS CMOS Setup Utility

▶ Standard CMOS Features
▶ Advanced BIOS Features
▶ Advanced Chipset Features
▶ Integrated Peripherals
▶ Security Chip
▶ Power Manage
▶ PnP/PCI Configurations

Esc : Quit

F10: Save & Exit Setup

▶ PC Health Status
▶ Frequency/Voltage Control

Load Optimized Defaults

Set Supervisor Password

Load Setup Defaults (Y/N)?

word

etup

Exit Without Saving

![A vertical rectangular sign featuring a white arrow pointing straight up against a dark blue background.](.mi-110-50-1z012-1000-200/2c101721c5168aa95ffb8411d1b6599ddc10f39ba690270889aa32d4e4e922cb.jpg)

![The image displays three white, downward-pointing arrows arranged horizontally in a row against a solid blue background.](.mi-110-50-1z012-1000-200/b82eecbe4cecd2134a019c8516aa2e1d2df1a24b3f75fb75e3b7379dddb71198.jpg)

![A white arrow pointing to the right on a blue background.](.mi-110-50-1z012-1000-200/5043580ef85b4c915d85fb9ba8803fac5d4b724f2fd7d21faf35da2207a55520.jpg)

![The image shows a white arrow pointing to the left against a solid blue background. It appears to be a traffic sign or directional icon.](.mi-110-50-1z012-1000-200/627431122667aca5e19e7103e6c88c13b0172e55e9fd7f9c914529d4ac482ff6.jpg)

: Select Item

Change/Set/Disable Password

# 4.11 Set Supervisor & User Password

These two options set the system password. Supervisor Password sets a password that will be used to protect the system and Setup utility. User Password sets a password that will be used exclusively on the system. To specify a password, highlight the type you want and press &lt; Enter &gt;. The “Enter Password:” message prompts you on the screen. Type the password, up to eight characters in length, and press &lt; Enter &gt;. The system confirms your password by asking you to type it again. After setting a password, the screen automatically returns to the main screen.

# Phoenix - Award BIOS CMOS Setup Utility

▶ Standard CMOS Features
▶ Advanced BIOS Features
▶ Advanced Chipset Features
▶ Integrated Peripherals
▶ Security Chip
▶ Power Manage
▶ PnP/PCI Configurations

Esc : Quit

F10 : Save & Exit Setup

▶ PC Health Status
▶ Frequency/Voltage Control

Load Optimized Defaults

Set Supervisor Password

# Enter Password:

word

etup

Exit Without Saving

![A white upward arrow on a blue background.](.mi-110-50-1z012-1000-200/795a586d5bb32854be0c84a4cab355ce1842935ae3392f9cf3cd72407a0d15b3.jpg)

![Four vertical blue rectangles arranged side-by-side, each containing a centered white arrow pointing downwards.](.mi-110-50-1z012-1000-200/916a5be33e18224977910048d24957104c8819c69c7f5f9609fc1f05cca9c3ac.jpg)

![The image displays a white arrow pointing to the right, centered on a blue rectangular background.](.mi-110-50-1z012-1000-200/36b3c600c0ee8ce68db63007aec4e5c8cc6d9696aca8ca6e2ec2795190c7cef3.jpg)

![The image shows a white arrow pointing to the left on a blue background.](.mi-110-50-1z012-1000-200/e38c84cea9f85a4d148556305698fa43729abe89b481166a649261f3c39e9989.jpg)

: Select Item

Change/Set/Disable Password

# 4.12 Save & Exit Setup

This option allows you to determine whether to accept any modifications or not. Typing Y will quit the setup utility and save all changes into the CMOS memory. Typing "N" will return to the Setup Utility Main Screen.

# Phoenix - Award BIOS CMOS Setup Utility

▶ Standard CMOS Features
▶ Advanced BIOS Features
▶ Advanced Chipset Features
▶ Integrated Peripherals
▶ Security Chip Configuration
▶ Power Manage
PnP/PCI Confi

PC Health Status
▶ Frequency/Voltage Control

Load Optimized Defaults

Set Supervisor Password

Set User Password

# SAVE to COMS and EXIT (Y/N)?

etup

Saving

Esc : Quit

F10: Save & Exit Setup

![The image displays four vertical blue strips arranged side-by-side, each containing a white arrow pointing upward.](.mi-110-50-1z012-1000-200/2b2905d3e5a312f93da0cf6978eccce6edb22d4225ac13e7525851a93b7c5007.jpg)

![Three white, downward-pointing arrows arranged horizontally against a blue background.](.mi-110-50-1z012-1000-200/d1d433c601d355a19aefe6d09c7192ac57dd43c6bf60456e4750bea54ae23474.jpg)

![The image displays a blue rectangular sign. Centered at the top is the text 'BAY 1' in white capital letters. Centered at the bottom is the text 'BAY 2' in white capital letters. In the center of the sign is a large white arrow pointing to the right.](.mi-110-50-1z012-1000-200/f6dea50754ffe2cbce7f572545593fbf8454f88dacb43707df38808c9e43c827.jpg)

![A blue rectangular sign featuring a large white arrow pointing to the left.](.mi-110-50-1z012-1000-200/1c57b9fc5a91fca4e4858a47300cbf1d5f745ed79a903053c72c5045e83e4362.jpg)

: Select Item

Save Data to CMOS

# 4.13 Exit Without Saving

Select this option to exit the Setup utility without saving the changes you have made in this session. Typing "Y" will quit the Setup utility without saving any modifications. Typing "N" will return to the Setup utility.

# Phoenix - Award BIOS CMOS Setup Utility

▶ Standard CMOS Features
▶ Advanced BIOS Features
▶ Advanced Chipset Features
▶ Integrated Peripherals
▶ Security Chip Configuration
▶ Power Manage
PnP/PCI Confi

▶ PC Health Status
▶ Frequency/Voltage Control

Load Optimized Defaults

Set Supervisor Password

Set User Password

# Quit Without Saving (Y/N)? N

etup

Saving

Esc : Quit

F10 : Save & Exit Setup

![The image displays a close-up view of a horizontal sequence of three white arrows pointing upwards. They are arranged side-by-side against a dark blue background. The arrows are separated by thin, vertical blue bars, resembling a traffic signal or lane control sign. The image is slightly blurry.](.mi-110-50-1z012-1000-200/31e0de5ba7d7de8e9c0209e85d71bef00b158ef285117dfdbd8915b46edfe544.jpg)

![The image displays a horizontal row of white, downward-pointing arrows set against a solid blue background. There are three visible arrows arranged side-by-side. There is no text in the image.](.mi-110-50-1z012-1000-200/c842600ed84c01a8ebeb8784f16e59bd94050b7587415d863529182cb28d6a50.jpg)

![The image displays a white arrow pointing to the right, centered against a solid dark blue background.](.mi-110-50-1z012-1000-200/3d63d3f6d77ef14c608c375fcf89ded2a8bac3951cc9cbd4c1dad2b89da73a3c.jpg)

![A white arrow pointing to the left on a blue background.](.mi-110-50-1z012-1000-200/e5e12b358f8213070bc3088a7cd783799aac27ff157e0a9d70e90649b8ed7bc2.jpg)

: Select Item

Abandom all Data

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# Appendix A - Watchdog Timer

The programming instructions for the MI-110's Watchdog Timer are as follows.

# A.1 WDT Programming Instructions

# Unlock W83627DHG-A:

outportb(0x2E, 0x87) ;Unlock Super I/O

# Select Logical Device:

outportb(0x2E, 0x07) ;Select device number register
outportb(0x2F, 0x08) ;Set to Logical Device 8

# Activate WDT:

outportb(0x2E, 0x30) ;Select WDTO# activate register
outportb(0x2F, 0x01) ;Enable watchdog

# Set Seconds or Minutes:

outportb(0x2E, 0xF5) ;Select WDTO# control register
outportb(0x2F, mode) ;where mode=0x00(Sec) or 0x08(Min)

# Set base timer:

outportb(0x2E, 0xF6) ;Select WDTO# counter register
outportb(0x2F, timeout) ;where timeout=0x00\~0xFF

# Reset timeout counter:

outportb(0x2E, 0xF6) ;Select WDTO# counter register
outportb(0x2F, timeout) ;where timeout=0x00\~0xFF}

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# 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 – FEEFFFFF</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 – CBFFF: Onboard VGA BIOS CC000 – CCFFF: Intel 82566DM PXE 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: Whole 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></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>8-bits</td><td>Direct memory access controller</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 1/3 is selected when using parallel port. Floppy (Winbond default uses DMA 02) and parallel port cannot be used at the same time.

B.3 Fixed I/O Map

<table><tr><td>Hex Range</td><td>Device</td></tr><tr><td>000-01F</td><td>DMA controller 1, 82C37 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 (W83627) configuration index/data registers</td></tr><tr><td>040-042-043</td><td>Timer/Counter</td></tr><tr><td>4E-4F</td><td>N/A</td></tr><tr><td>061</td><td>NMI controller</td></tr><tr><td>60,62,64,66</td><td>N/A (MicroController)</td></tr><tr><td>070-077</td><td>Real Time Clock Controller</td></tr><tr><td>080-9F</td><td>DMA Controller, or LPC or PCI</td></tr><tr><td>0A0-0AD and 0B4-0BD</td><td>Interrupt controller</td></tr><tr><td>0B2 and 0B3</td><td>Power Management</td></tr><tr><td>0C0-0DF</td><td>DMA controller</td></tr><tr><td>0F0</td><td>Read PCI and Master Abord, Write FERR#/IGNNE#/Interrupt Controller</td></tr><tr><td>0170-177</td><td>SATA Controller, or PCI</td></tr><tr><td>01F0-1F7</td><td>SATA Controller, or PCI</td></tr><tr><td>0376</td><td>SATA Controller, or PCI</td></tr><tr><td>03F6</td><td>SATA Controller, or PCI</td></tr><tr><td>04D0-4D1</td><td>Interrupt Controller</td></tr><tr><td>0CF9</td><td>Reset Generator</td></tr></table>

Table B-3: Fixed I/O Map

B.4 Variable I/O Map

<table><tr><td>Hex Range</td><td>Device</td></tr><tr><td>400</td><td>ACPI</td></tr><tr><td>Anywhere in 64KB I/O Space</td><td>USB UHCI Controller #1</td></tr><tr><td>Anywhere in 64KB I/O Space</td><td>USB UHCI Controller #2</td></tr><tr><td>Anywhere in 64KB I/O Space</td><td>USB UHCI Controller #3</td></tr><tr><td>Anywhere in 64KB I/O Space</td><td>USB UHCI Controller #4</td></tr><tr><td>Anywhere in 64KB I/O Space</td><td>USB UHCI Controller #5</td></tr><tr><td>500</td><td>SMBUS</td></tr><tr><td>460</td><td>TCO</td></tr><tr><td>480</td><td>GPIO</td></tr><tr><td>378-37F</td><td>Parallel Port</td></tr><tr><td>3F8/2F8/3E8/2E8</td><td>Serial Port 1 Serial Port 2</td></tr><tr><td>3E8/2E8</td><td>Serial Port 3, Serial Port 4</td></tr><tr><td>290</td><td>Hardware Monitor</td></tr></table>

Table B-4: Variable I/O Map

# B.5 Interrupt Request (IRQ) Lines

IRQ Lines PIC Mode

<table><tr><td>IRQ#</td><td>Typical Interrupt Resource</td><td>Connected to Pin</td><td>Note</td></tr><tr><td>0</td><td>System timer</td><td>N/A</td><td>No</td></tr><tr><td>3</td><td>Communications port (COM2)</td><td>IRQ3 via SERIRQ, IRQ3 at ISA bus</td><td>Note (1)</td></tr><tr><td>4</td><td>Communications port (COM1)</td><td>IRQ4 via SERIRQ, IRQ4 at ISA bus</td><td>Note (1)</td></tr><tr><td>5</td><td>Intel® 82801G (ICH7) SMBus controller - 27DA</td><td></td><td></td></tr><tr><td>8</td><td>System CMOS / Real-time clock</td><td></td><td></td></tr><tr><td>9</td><td>Microsoft ACPI-compliant system</td><td></td><td></td></tr><tr><td>10</td><td>Communications port (COM3)</td><td>IRQ10 via SERIRQ, IRQ10 at ISA bus</td><td>Note (1)</td></tr><tr><td>11</td><td>Communications port (COM4)</td><td>IRQ11 via SERIRQ, IRQ11 at ISA bus</td><td>Note (1)</td></tr><tr><td>13</td><td>Numeric data processor</td><td></td><td></td></tr><tr><td>14</td><td>Primary IDE controller</td><td></td><td></td></tr></table>

Table B-5: 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>Note</td></tr><tr><td>0</td><td>System Timer</td><td></td><td></td></tr><tr><td>3</td><td>Communications port (COM2)</td><td>IRQ3 via SERIRQ, IRQ3 at ISA bus</td><td>Note (1)</td></tr><tr><td>4</td><td>Communications port (COM1)</td><td>IRQ4 via SERIRQ, IRQ4 at ISA bus</td><td>Note (1)</td></tr><tr><td>5</td><td>Intel® 82801G (ICH7) SMBus controller - 27DA</td><td></td><td></td></tr><tr><td>8</td><td>System CMOS / Real-time clock</td><td></td><td></td></tr><tr><td>9</td><td>Microsoft ACPI-compliant system</td><td></td><td></td></tr><tr><td>10</td><td>Communications port (COM3)</td><td>IRQ10 via SERIRQ, IRQ10 at ISA bus</td><td>Note (1)</td></tr><tr><td>11</td><td>Communications port (COM4)</td><td>IRQ11 via SERIRQ, IRQ11 at ISA bus</td><td>Note (1)</td></tr><tr><td>13</td><td>Numeric data processor</td><td></td><td></td></tr><tr><td>14</td><td>Primary IDE controller</td><td></td><td></td></tr><tr><td>16</td><td>PCI standard PCI-to-PCI bridge</td><td></td><td></td></tr><tr><td>16</td><td>Standard Universal PCI to USB Host Controller</td><td></td><td></td></tr><tr><td>18</td><td>PCI standard PCI-to-PCI bridge</td><td></td><td></td></tr><tr><td>18</td><td>Realtek RTL8168C/8111C PCI-E Gigabit Ethernet NIC</td><td></td><td></td></tr><tr><td>18</td><td>Standard Universal PCI to USB Host Controller</td><td></td><td></td></tr><tr><td>19</td><td>PCI standard PCI-to-PCI bridge</td><td></td><td></td></tr><tr><td>19</td><td>Realtek RTL8168C/8111C PCI-E Gigabit Ethernet NIC #2</td><td></td><td></td></tr><tr><td>19</td><td>Standard Universal PCI to USB Host Controller</td><td></td><td></td></tr><tr><td>23</td><td>Standard Universal PCI to USB Host Controller</td><td></td><td></td></tr><tr><td>23</td><td>Standard Universal PCI to USB Host Controller</td><td></td><td></td></tr></table>

Table B-6: 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.

B.6 PCI Configuration Space Map

<table><tr><td>Bus #</td><td>Device #</td><td>Function #</td><td>Routing</td><td>Description</td></tr><tr><td>00</td><td>00</td><td>00</td><td>Internal</td><td>Intel Host Bridge</td></tr><tr><td>00</td><td>02</td><td>00</td><td>Internal</td><td>Intel VGA-compatible Controller</td></tr><tr><td>00</td><td>02</td><td>01</td><td>Internal</td><td>Intel Other Display Controller</td></tr><tr><td>00</td><td>1B</td><td>00</td><td>Internal</td><td>Unknown Device</td></tr><tr><td>00</td><td>1C</td><td>00</td><td>Internal</td><td>Intel PCI-to-PCI Bridge</td></tr><tr><td>00</td><td>1C</td><td>02</td><td>Internal</td><td>Intel PCI-to-PCI Bridge</td></tr><tr><td>00</td><td>1C</td><td>03</td><td>Internal</td><td>Intel PCI-to-PCI Bridge</td></tr><tr><td>00</td><td>1D</td><td>00</td><td>Internal</td><td>Intel UHCI USB Controller</td></tr><tr><td>00</td><td>1D</td><td>01</td><td>Internal</td><td>Intel UHCI USB Controller</td></tr><tr><td>00</td><td>1D</td><td>02</td><td>Internal</td><td>Intel UHCI USB Controller</td></tr><tr><td>00</td><td>1D</td><td>03</td><td>Internal</td><td>Intel UHCI USB Controller</td></tr><tr><td>00</td><td>1D</td><td>07</td><td>Internal</td><td>Intel USB v2.0 Controller</td></tr><tr><td>00</td><td>1E</td><td>00</td><td>Internal</td><td>Intel Subtractive Decode P2P Bridge</td></tr><tr><td>00</td><td>1F</td><td>00</td><td>Internal</td><td>Intel ISA Bridge</td></tr><tr><td>00</td><td>1F</td><td>02</td><td>Internal</td><td>Intel IDE Controller</td></tr><tr><td>00</td><td>1F</td><td>03</td><td>Internal</td><td>Intel SMBus Device</td></tr><tr><td>02</td><td>00</td><td>00</td><td>Internal</td><td>Realtek Ethernet Controller</td></tr><tr><td>03</td><td>00</td><td>00</td><td>Internal</td><td>Realtek Ethernet Controller</td></tr></table>

Table B-7: PCI Configuration Space Map

B.7 PCI Interrupt Routing Map

<table><tr><td>INT Line</td><td>INT1</td><td>INT2</td><td>INT3</td><td>INT4</td></tr><tr><td>Intel VGA compatible Controller</td><td>X</td><td></td><td></td><td></td></tr><tr><td>Intel Multimedia device</td><td>X</td><td></td><td></td><td></td></tr><tr><td>Intel PCI-to-PCI Bridge</td><td>X</td><td></td><td></td><td></td></tr><tr><td>Intel PCI-to-PCI Bridge</td><td></td><td></td><td>X</td><td></td></tr><tr><td>Intel PCI-to-PCI Bridge</td><td></td><td></td><td></td><td>X</td></tr><tr><td>Intel UHCI USB Controller</td><td>X</td><td></td><td></td><td></td></tr><tr><td>Intel UHCI USB Controller</td><td></td><td>X</td><td></td><td></td></tr><tr><td>Intel UHCI USB Controller</td><td></td><td></td><td>X</td><td></td></tr><tr><td>Intel UHCI USB Controller</td><td></td><td></td><td></td><td>X</td></tr><tr><td>Intel USB v2.0 Controller</td><td>X</td><td></td><td></td><td></td></tr><tr><td>Intel IDE Controller</td><td></td><td>X</td><td></td><td></td></tr><tr><td>Intel SMBus Device</td><td></td><td>X</td><td></td><td></td></tr><tr><td>Realtek Ethernet Controller</td><td>X</td><td></td><td></td><td></td></tr><tr><td>Realtek Ethernet Controller</td><td>X</td><td></td><td></td><td></td></tr></table>

Table B-8: PCI Interrupt Routing Map

# 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 features a dark red triangle containing a white exclamation point in its center. Directly below the triangle, the word 'WARNING' is written in black, uppercase letters. The bottom edges of the text are cropped out of the frame.](.mi-110-50-1z012-1000-200/b2018a5d992941f53f875ffc1256e38c675bca92374ba9e99e3b7e84f65d18bf.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
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Tel: +886-2-8226-5877

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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)

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Address: 北京市海淀区上地东路 1 号盈创动力大厦 E 座 801 室 (100085)
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Tel: +86-10-5885-8666

Fax: +86-10-5885-8625

Email: market@adlinktech.com

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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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