# EGX-MXM-A1000/EGX-MXM-A2000

NVIDIA Ampere™ GA107 RTX A1000/A2000 Embedded Graphics Module

User’s Manual

![Close-up of a green printed circuit board with multiple integrated circuits and gold contacts (no visible text or symbols)](.0131-egx-mxm-a1000-a2000-user-manual/117042ed82c4f208e0b1cb744439e297b85198a0acc6725a6eb97ddba7dad4ef.jpg)

Manual Rev.: 1.0

Revision Date: July 22, 2022

Part No: 50M-00085-1000

Revision History

<table><tr><td>Revision</td><td>Release Date</td><td>Description of Change(s)</td></tr><tr><td>1.0</td><td>2022-07-22</td><td>Initial release</td></tr></table>

# Preface

# Copyright © 2022 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.

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Battery Labels (for products with battery)
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# California Proposition 65 Warning

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WARNING: This product can expose you to chemicals including acrylamide, arsenic, benzene, cadmium, Tris(1,3-dichloro-2-propyl) phosphate (TDCPP), 1,4- Dioxane, formaldehyde, lead, DEHP, styrene, DINP, BBP, PVC, and vinyl materials, which are known to the State of California to cause cancer, and acrylamide, benzene, cadmium, lead, mercury, phthalates, toluene, DEHP, DIDP, DnHP, DBP, BBP, PVC, and vinyl materials, which are known to the State of California to cause birth defects or other reproductive harm. For more information go to www.P65Warnings.ca.gov.

# Trademarks

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

# Conventions

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

![The image displays a white document icon with a folded top-right corner and faint horizontal gray lines running across it. Superimposed over the document is a large, bold red checkmark (or tick) that stretches diagonally from the lower left to the upper right.](.0131-egx-mxm-a1000-a2000-user-manual/a063426c2fb5a444f2baadb0276d6b0b980e7bbc11e2327c78abfca4d22560ae.jpg)
NOTE:

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

![The image displays a yellow triangular warning sign with a thick black border. Centered within the triangle is a large black exclamation mark.](.0131-egx-mxm-a1000-a2000-user-manual/05654a8912ab325ee2cc2ae130dd0408940ccf547545c36e6039ea6503c59e69.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 triangular warning sign containing a single white exclamation point in the center.](.0131-egx-mxm-a1000-a2000-user-manual/ea4c87db0b22d146ddd40960dea1f1bd412fb996c00abfed25ad131e15d5326e.jpg)
WARNING:

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

# Table of Contents

# Revision History........ ii

# Preface ............. iii

# List of Tables ........ .... vii

# List of Figures ........ ix

# 1 Introduction ......

1.1 Overview ...... 1
1.2 Features.. 2
1.3 Specifications.... 3

1.3.1 Graphics Module .... 3
1.3.2 Display Support and Options.... 4
1.3.3 Software Support... 4
1.3.4 Graphics Options..... 4

1.4 Functional Block Diagram.. 5
1.5 Mechanical Layout.. 6
1.6 MXM Connector Pin Definitions.... 9
1.7 Thermal Policy ..... 14
1.8 Unpacking Checklist .... 14

# 2 System Requirements........ . 15

2.1 Power Sequencing...... 15
2.2 Module Power Up and Down .... 1 5
2.3 Reset Requirements ... 16
2.4 System BIOS Settings ... 17
2.5 Dual Mode DisplayPort Implementation .. 18
2.6 DVI/HDMI on DisplayPort Interface .. 1 9
2.7 Driver Installation ... 20
2.8 Certifications & Agencies... . 21

Important Safety Instructions...... . 23

Getting Service ......... ...... 25

# List of Tables

Table 1-1: Graphics Module Display Options . 4
Table 1-2: NVIDIA Link Display Types . 4
Table 1-3: MXM Connector Pin Definitions... 9
Table 1-4: Thermal Policy .... . 14

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# List of Figures

Figure 1-1: EGX-MXM-A1000/A2000 Functional Block Diagram . 5
Figure 1-2: EGX-MXM-A1000/A2000 Dimensions.... 6
Figure 1-3: EGX-MXM-A1000/A2000 Top and Side Views .......... 7
Figure 1-4: EGX-MXM-A1000/A2000 Bottom View ... 8
Figure 1-5: MXM Connector.... .. 8
Figure 2-1: Power Sequencing . . 15
Figure 2-2: Module Power Down . . 16
Figure 2-3: Reset Sequencing .. . 16
Figure 2-4: Sample BIOS Menu Settings.... . 17
Figure 2-5: Dual Mode DisplayPort Implementation ..... . 18
Figure 2-6: DVI/HDMI on DisplayPort Interface ..... . 19
Figure 2-7: Active IC for HDMI Dongle .. 20

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# 1 Introduction

# 1.1 Overview

The EGX-MXM-A1000/EGX-MXM-A2000 embedded graphics module features the NVIDIA RTX A1000 and A2000 embedded GPU based on the advanced NVIDIA Ampere GA107 architecture in MXM 3.1 Type A form factor. The two modules bring a new level of performance to visual graphics and computing applications, fully integrating hardware acceleration for both graphics and computing code, enabling hardware acceleration for a wider class of software applications than ever before.

The EGX-MXM-A1000 and EGX-MXM-A2000 support operability in an extended temperature range of $\angle 0 ^ { \circ } \mathsf { C }$ to $70 \textdegree$ , suitable for mission-critical harsh environments. With up to 2560 CUDA core Ampere GPU, these modules support 4 FHD displays, delivering the latest leading-edge GPU performance for your embedded system. Its superior graphics performance, GPU computing and video capabilities are the ideal solution for systems such as digital signage, medical image, defense and aerospace application.

# 1.2 Features

 MXM 3.1 Type A FF (82 x 70 mm)
 2048/2560 CUDA cores
 6.6/8.2 TFLOPS SP peak performance
 4/8 GB GDDR6 memory
 224 GB/s maximal memory bandwidth
 Support for up to 4 FHD displays, 35W-60W TGP
 5 year performance warranty
 NVIDIA RTX A1000 GPU

 Package 29 x 29 mm
 Base Clock @1192 MHz with 60W TGP
 Boost Clock @1624 MHz with 60W TGP

 NVIDIA RTX A2000 GPU

 Package 29 x 29 mm
 Base Clock @1117 MHz with 60W TGP
 Boost Clock @1612 MHz with 60W TGP

# 1.3 Specifications

# 1.3.1 Graphics Module

<table><tr><td>Model</td><td>EGX-MXM-A1000</td><td>EGX-MXM-A2000</td></tr><tr><td colspan="3">Graphics Core</td></tr><tr><td>Architecture</td><td colspan="2">NVIDIA® Ampere GA107</td></tr><tr><td>GPU</td><td>RTX A1000</td><td>RTX A2000</td></tr><tr><td>Display Outputs</td><td colspan="2">4x DisplayPort 1.4Max resolution 7680 x4320 @60Hz DSC</td></tr><tr><td>Signal Interface</td><td colspan="2">MXM 3.1, PCI Express Gen4 x8 support</td></tr><tr><td colspan="3">GPGPU Computing</td></tr><tr><td>CUDA Support</td><td colspan="2">CUDA Toolkit 8.0, CUDA Compute version 6.1OpenCLTM 1.2, DirectX® 12.1, OpenGL 4.6, Vulcan 1.0</td></tr><tr><td colspan="3">Memory</td></tr><tr><td>GDDR6 Memory</td><td>4GB @7Gbs</td><td>4GB @6Gbs8GB @7GbsECC supported</td></tr><tr><td>Configuration</td><td colspan="2">256Mb x32</td></tr><tr><td>Bandwidth</td><td colspan="2">128-bit224 GB/s data ratex32 GDDR6 DRAM device data width</td></tr><tr><td colspan="3">Physical</td></tr><tr><td>Dimensions</td><td colspan="2">82 (W) x 70 (D) x 4.8 (H) mm</td></tr><tr><td>Locking Mechanism</td><td colspan="2">Standard MXM 3.1 Type A</td></tr><tr><td colspan="3">Environmental</td></tr><tr><td>Operating Temp.</td><td colspan="2">Standard: 0 to 55°C, Extended: -20°C to 70°C</td></tr><tr><td>Storage Temp.</td><td colspan="2">-40°C to 85°C</td></tr><tr><td colspan="3">Operating Systems</td></tr><tr><td>Supported OS</td><td colspan="2">Windows 10, Windows 11 &amp; Linux Drivers, 64-bit</td></tr></table>

# 1.3.2 Display Support and Options

<table><tr><td>DisplayPort</td><td>▶ 1.2/1.3/1.4▶ Max. pixel clock: 1050 MP/s▶ Max. bandwidth: 25.9 GB/s/connector</td></tr><tr><td>HDMI 2.0</td><td>Max. resolution: 4096 x 2160 at 60 Hz</td></tr><tr><td>HDCP Support</td><td>1.3 (DP), 2.2 (DP, HDMI)</td></tr></table>

# 1.3.3 Software Support

 CUDA Toolkit 8.0 and higher
 CUDA Compute version 6.1 and higher
 OpenCL™ 1.2
 DirectX® 12
 OpenGL 4.6
 Vulcan 1.0

# 1.3.4 Graphics Options

Both the EGX-MXM-A1000 and EGX-MXM-A2000 support a 4xDisplayPort by default, with display options as shown below.

<table><tr><td>MXM port</td><td>DP_A</td><td>DP_B</td><td>DP_C</td><td>DP_D</td></tr><tr><td>NVIDIA Link</td><td>Link E</td><td>Link A</td><td>Link C</td><td>Link B</td></tr></table>

Table 1-1: Graphics Module Display Options

<table><tr><td>Link</td><td>Display Type</td></tr><tr><td>Link A</td><td>DisplayPort, DVI (Single Link or Dual Link with Link B)</td></tr><tr><td>Link B</td><td>DisplayPort, DVI (Dual Link with A)</td></tr><tr><td>Link C</td><td>DisplayPort, HDMI</td></tr><tr><td>Link D</td><td>Internal/ eDP only</td></tr><tr><td>Link E</td><td>DisplayPort, HDMI</td></tr><tr><td>Link F</td><td>DisplayPort</td></tr></table>

Table 1-2: NVIDIA Link Display Types

# 1.4 Functional Block Diagram

![Based on the provided image, here is the accurate description of the flowchart:\n\n**Labeled Blocks:**\n*   **MxM Connector** (Left vertical block)\n*   **EN20-P3/P1 TGP:35W and 60W** (Central vertical block)\n*   **GDDR6 x32 memory down** (Four instances on the far right)\n*   **VBIOS** (Right block)\n*   **LED*2** (Right block below VBIOS)\n\n**Connections:**\n\n**Between MxM Connector and EN20-P3/P1:**\n*   **PCIE x8 Gen4**: Connects **PCIE** (in EN20 block) to **MxM Connector**.\n*   **DP1.4**: Connects **IFPE** (in EN20 block) to **DP_A** (in MxM block).\n*   **DP1.4**: Connects **IFPA** (in EN20 block) to **DP_B** (in MxM block).\n*   **DP1.4**: Connects **IFPC** (in EN20 block) to **DP_C** (in MxM block).\n*   **DP1.4**: Connects **IFPB** (in EN20 block) to **DP_D** (in MxM block).\n*   **I2C**: Connects **I2C** (in EN20 block) to **MxM Connector**.\n*   **Power Management (PWR_EN、PWR_GOOD、WAKE#)**: Connects **PM** (in EN20 block) to **MxM Connector**.\n*   **JTAG**: Connects **JTAG** (in EN20 block) to **MxM Connector**.\n\n**From EN20-P3/P1 to Right Side Peripherals:**\n*   **GDDR6 Channel A**: Connects to a **GDDR6 x32 memory down** block.\n*   **GDDR6 x32**: Connects to a **GDDR6 x32 memory down** block.\n*   **GDDR6 Channel B**: Connects to a **GDDR6 x32 memory down** block.\n*   **GDDR6 x32**: Connects to a **GDDR6 x32 memory down** block.\n    *   *Note: Above these blocks is the text 'Total support 4GB or 8GB'.*\n*   **SPI**: Connects to **VBIOS**.](.0131-egx-mxm-a1000-a2000-user-manual/df7da1940c52982e94241d27eee32472859b8066e27b0802aa7cb2bbf5556497.jpg)

Figure 1-1: EGX-MXM-A1000/A2000 Functional Block Diagram

# 1.5 Mechanical Layout

![The image displays a simple icon representing a document or file. It depicts a white piece of paper with a slight fold at the top left corner. Faint horizontal lines are visible near the bottom of the page. Superimposed over the center of the document is a large, bold red checkmark (or tick) drawn diagonally from the bottom left to the top right.](.0131-egx-mxm-a1000-a2000-user-manual/9fcdc16d8774f77d8ef3391d651da37b679bd1b1a4a25665d189bcfc1e72724e.jpg)
NOTE:

All dimensions shown are in mm

![82\n70](.0131-egx-mxm-a1000-a2000-user-manual/c2d0655311c736a4e69164ef0630090bf5a1b195ab54c62301fad5d6f3b2515f.jpg)

Figure 1-2: EGX-MXM-A1000/A2000 Dimensions

![0\n14\n21.36\n28.5\n35.64\n43\nB\nC\nC\nB\n16.75\n24.28\n31.25\n38.22\n45.75\n37.50\n39\n39.51\n34.49\n1.45 MIN\n3.10\n0.50\n135x0.35\n0.85\n2x4.82\n2xR0.5±0.05\nTop side](.0131-egx-mxm-a1000-a2000-user-manual/0cdc595a52aea012ba3860edd6ca232e9eff7ed0b58e1b762d3fd4f32ea8b452.jpg)

![The image displays a technical drawing featuring two concentric circles. A leader line points from the text 'Ø 3.2' to the inner circle, while another leader line points from the text 'Ø 6' to the outer circle. A thick black horizontal line runs along the bottom edge of the image.](.0131-egx-mxm-a1000-a2000-user-manual/16a7bc5fc139f2cf3c75240550bafc257bb9148f1ceaa97d91813ff37e2eb7a8.jpg)
Section-B Scale 2:1

![Ø6\nØ3.2](.0131-egx-mxm-a1000-a2000-user-manual/84e07c5d9ac95862800b65f59f69f801df90debb7d327992165e0724253b7595.jpg)

Section-C Scale 2:1

![1.20\n2.05\n0.85\nA](.0131-egx-mxm-a1000-a2000-user-manual/ff1766d20574cc4f0b70fcb4c98f43cf07a7820dc233212761e958810d9321c2.jpg)

![The image displays a technical schematic featuring a vertical rectangular bar on the left side, which has three horizontal slots near the top. To the right of the bar, a diagonal line extends upward, accompanied by an angular dimension labeled '45°±10°'. At the bottom right, a horizontal line extends outward, and a vertical dimension line indicates a measurement of '0.18'.](.0131-egx-mxm-a1000-a2000-user-manual/20de6cc764abed0636159aa9cf4107bffda854c5ff9aa3875ce13212032c2e48.jpg)
Section-A Scale 2:1

PTH HOLE 2 PCS
PTH HOLE 4 PCS
TOP SIDE: OD=6.0mm; ID=3.2mm BOTTOM SIDE: OD=7.0mm; ID=3.2mm
![1.25\n1.25\n0.5\n0.5\n1\n3.75](.0131-egx-mxm-a1000-a2000-user-manual/433e196ffc02aad43b089ebeabc9516638ecd5c5f23e4e5bd166cc6e15c08715.jpg)

Section-D Scale 2:1

![1\n1\n0.5\n0.5](.0131-egx-mxm-a1000-a2000-user-manual/609cab19e0df9f5ac67638fb2e6c3f7ece385607ca30631ba5536002e8ac8c78.jpg)

Section-E Scale 2:1
Figure 1-3: EGX-MXM-A1000/A2000 Top and Side Views

![B\nC\nC\nB\n39.76\n34.74\n31\n28.75\n3.10\nE\n129x0.35\n2x4.82\n2.35\n1.85](.0131-egx-mxm-a1000-a2000-user-manual/8ab11bcc42daa3b7bfe598e854574d1dd8790c360ff35953682a73cd3d8cb257.jpg)

Figure 1-4: EGX-MXM-A1000/A2000 Bottom View

![Pin 281\nPin 125\nPin 133\n(R G5 X G6)\nPin E1\nPin E3\nPin 134\nPin 124\nPin E2\nPin E4](.0131-egx-mxm-a1000-a2000-user-manual/02ac25755576c2086d1bf97f3423edb5554783032b8f334c96616d3aec350f9e.jpg)

Figure 1-5: MXM Connector

# 1.6 MXM Connector Pin Definitions

<table><tr><td colspan="3">Primary Side (bottom side)</td><td colspan="3">Secondary Side (top side)</td></tr><tr><td>Pin</td><td>Signal</td><td>PU/PD</td><td>Pin</td><td>Signal</td><td>PU/PD</td></tr><tr><td>E1</td><td>PWR_SRC</td><td></td><td>E2</td><td>PWR_SRC</td><td></td></tr><tr><td>E3</td><td>GND</td><td></td><td>E4</td><td>GND</td><td></td></tr><tr><td>1</td><td>5V</td><td></td><td>2</td><td>PRSNT_R#</td><td>0ohm PD</td></tr><tr><td>3</td><td>5V</td><td></td><td>4</td><td>RSVD</td><td></td></tr><tr><td>5</td><td>5V</td><td></td><td>6</td><td>PWR_GOOD</td><td></td></tr><tr><td>7</td><td>5V</td><td></td><td>8</td><td>PWR_EN</td><td></td></tr><tr><td>9</td><td>5V</td><td></td><td>10</td><td>27MHZ_REF</td><td></td></tr><tr><td>11</td><td>GND</td><td></td><td>12</td><td>GND</td><td></td></tr><tr><td>13</td><td>GND</td><td></td><td>14</td><td>RSVD</td><td></td></tr><tr><td>15</td><td>GND</td><td></td><td>16</td><td>RSVD</td><td></td></tr><tr><td>17</td><td>GND</td><td></td><td>18</td><td>PWR_LEVEL</td><td>100K PU to 3.3V</td></tr><tr><td>19</td><td>RSVD</td><td></td><td>20</td><td>TH_OVERT#</td><td>100K PU to 3.3V</td></tr><tr><td>21</td><td>RSVD</td><td></td><td>22</td><td>TH_ALERT#</td><td>100K PU to 3.3V</td></tr><tr><td>23</td><td>RSVD</td><td></td><td>24</td><td>RSVD</td><td></td></tr><tr><td>25</td><td>RSVD</td><td></td><td>26</td><td>RSVD</td><td></td></tr><tr><td>27</td><td>RSVD</td><td></td><td>28</td><td>RSVD</td><td></td></tr><tr><td>29</td><td>RSVD</td><td></td><td>30</td><td>RSVD</td><td></td></tr><tr><td>31</td><td>RSVD</td><td></td><td>32</td><td>SMB_DAT</td><td>100K PU to 3.3V</td></tr><tr><td>33</td><td>RSVD</td><td></td><td>34</td><td>SMB_CLK</td><td>100K PU to 3.3V</td></tr><tr><td>35</td><td>RSVD</td><td></td><td>36</td><td>GND</td><td></td></tr><tr><td>37</td><td>GND</td><td></td><td>38</td><td>RSVD</td><td></td></tr><tr><td>39</td><td>RSVD</td><td></td><td>40</td><td>RSVD</td><td></td></tr><tr><td>41</td><td>RSVD</td><td></td><td>42</td><td>RSVD</td><td></td></tr><tr><td>43</td><td>RSVD</td><td></td><td>44</td><td>RSVD</td><td></td></tr><tr><td>45</td><td>RSVD</td><td></td><td>46</td><td>GND</td><td></td></tr></table>

Table 1-3: MXM Connector Pin Definitions

<table><tr><td colspan="3">Primary Side (bottom side)</td><td colspan="3">Secondary Side (top side)</td></tr><tr><td>Pin</td><td>Signal</td><td>PU/PD</td><td>Pin</td><td>Signal</td><td>PU/PD</td></tr><tr><td>47</td><td>GND</td><td></td><td>48</td><td>PEX_TX15#</td><td></td></tr><tr><td>49</td><td>PEX_RX15#</td><td></td><td>50</td><td>PEX_TX15</td><td></td></tr><tr><td>51</td><td>PEX_RX15</td><td></td><td>52</td><td>GND</td><td></td></tr><tr><td>53</td><td>GND</td><td></td><td>54</td><td>PEX_TX14#</td><td></td></tr><tr><td>55</td><td>PEX_RX14#</td><td></td><td>56</td><td>PEX_TX14</td><td></td></tr><tr><td>57</td><td>PEX_RX14</td><td></td><td>58</td><td>GND</td><td></td></tr><tr><td>59</td><td>GND</td><td></td><td>60</td><td>PEX_TX13#</td><td></td></tr><tr><td>61</td><td>PEX_RX13#</td><td></td><td>62</td><td>PEX_TX13</td><td></td></tr><tr><td>63</td><td>PEX_RX13</td><td></td><td>64</td><td>GND</td><td></td></tr><tr><td>65</td><td>GND</td><td></td><td>66</td><td>PEX_TX12#</td><td></td></tr><tr><td>67</td><td>PEX_RX12#</td><td></td><td>68</td><td>PEX_TX12</td><td></td></tr><tr><td>69</td><td>PEX_RX12</td><td></td><td>70</td><td>GND</td><td></td></tr><tr><td>71</td><td>GND</td><td></td><td>72</td><td>PEX_TX11#</td><td></td></tr><tr><td>73</td><td>PEX_RX11#</td><td></td><td>74</td><td>PEX_TX11</td><td></td></tr><tr><td>75</td><td>PEX_RX11</td><td></td><td>76</td><td>GND</td><td></td></tr><tr><td>77</td><td>GND</td><td></td><td>78</td><td>PEX_TX10#</td><td></td></tr><tr><td>79</td><td>PEX_RX10#</td><td></td><td>80</td><td>PEX_TX10</td><td></td></tr><tr><td>81</td><td>PEX_RX10</td><td></td><td>82</td><td>GND</td><td></td></tr><tr><td>83</td><td>GND</td><td></td><td>84</td><td>PEX_TX9#</td><td></td></tr><tr><td>85</td><td>PEX_RX9#</td><td></td><td>86</td><td>PEX_TX9</td><td></td></tr><tr><td>87</td><td>PEX_RX9</td><td></td><td>88</td><td>GND</td><td></td></tr><tr><td>89</td><td>GND</td><td></td><td>90</td><td>PEX_TX8#</td><td></td></tr><tr><td>91</td><td>PEX_RX8#</td><td></td><td>92</td><td>PEX_TX8</td><td></td></tr><tr><td>93</td><td>PEX_RX8</td><td></td><td>94</td><td>GND</td><td></td></tr><tr><td>95</td><td>GND</td><td></td><td>96</td><td>PEX_TX7#</td><td></td></tr><tr><td>97</td><td>PEX_RX7#</td><td></td><td>98</td><td>PEX_TX7</td><td></td></tr><tr><td>99</td><td>PEX_RX7</td><td></td><td>100</td><td>GND</td><td></td></tr><tr><td>101</td><td>GND</td><td></td><td>102</td><td>PEX_TX6#</td><td></td></tr><tr><td>103</td><td>PEX_RX6#</td><td></td><td>104</td><td>PEX_TX6</td><td></td></tr><tr><td>105</td><td>PEX_RX6</td><td></td><td>106</td><td>GND</td><td></td></tr></table>

Table 1-3: MXM Connector Pin Definitions

<table><tr><td colspan="3">Primary Side (bottom side)</td><td colspan="3">Secondary Side (top side)</td></tr><tr><td>Pin</td><td>Signal</td><td>PU/PD</td><td>Pin</td><td>Signal</td><td>PU/PD</td></tr><tr><td>107</td><td>GND</td><td></td><td>108</td><td>PEX_TX5#</td><td></td></tr><tr><td>109</td><td>PEX_RX5#</td><td></td><td>110</td><td>PEX_TX5</td><td></td></tr><tr><td>111</td><td>PEX_RX5</td><td></td><td>112</td><td>GND</td><td></td></tr><tr><td>113</td><td>GND</td><td></td><td>114</td><td>PEX_TX4#</td><td></td></tr><tr><td>115</td><td>PEX_RX4#</td><td></td><td>116</td><td>PEX_TX4</td><td></td></tr><tr><td>117</td><td>PEX_RX4</td><td></td><td>118</td><td>GND</td><td></td></tr><tr><td>119</td><td>GND</td><td></td><td>120</td><td>PEX_TX3#</td><td></td></tr><tr><td>121</td><td>PEX_RX3#</td><td></td><td>122</td><td>PEX_TX3</td><td></td></tr><tr><td>123</td><td>PEX_RX3</td><td></td><td>124</td><td>GND</td><td></td></tr><tr><td>125</td><td>GND</td><td></td><td>126</td><td>KEY</td><td></td></tr><tr><td>127</td><td>KEY</td><td></td><td>128</td><td>KEY</td><td></td></tr><tr><td>129</td><td>KEY</td><td></td><td>130</td><td>KEY</td><td></td></tr><tr><td>131</td><td>KEY</td><td></td><td>132</td><td>KEY</td><td></td></tr><tr><td>133</td><td>GND</td><td></td><td>134</td><td>GND</td><td></td></tr><tr><td>135</td><td>PEX_RX2#</td><td></td><td>136</td><td>PEX_TX2#</td><td></td></tr><tr><td>137</td><td>PEX_RX2</td><td></td><td>138</td><td>PEX_TX2</td><td></td></tr><tr><td>139</td><td>GND</td><td></td><td>140</td><td>GND</td><td></td></tr><tr><td>141</td><td>PEX_RX1#</td><td></td><td>142</td><td>PEX_TX1#</td><td></td></tr><tr><td>143</td><td>PEX_RX1</td><td></td><td>144</td><td>PEX_TX1</td><td></td></tr><tr><td>145</td><td>GND</td><td></td><td>146</td><td>GND</td><td></td></tr><tr><td>147</td><td>PEX_RX0#</td><td></td><td>148</td><td>PEX_TX0#</td><td></td></tr><tr><td>149</td><td>PEX_RX0</td><td></td><td>150</td><td>PEX_TX0</td><td></td></tr><tr><td>151</td><td>GND</td><td></td><td>152</td><td>GND</td><td></td></tr><tr><td>153</td><td>PEX_REFCLK#</td><td></td><td>154</td><td>PEX_CLK_REQ#</td><td></td></tr><tr><td>155</td><td>PEX_REFCLK</td><td></td><td>156</td><td>PEX_RST#</td><td></td></tr><tr><td>157</td><td>GND</td><td></td><td>158</td><td>RSVD</td><td></td></tr><tr><td>159</td><td>RSVD</td><td></td><td>160</td><td>RSVD</td><td></td></tr><tr><td>161</td><td>RSVD</td><td></td><td>162</td><td>RSVD</td><td></td></tr><tr><td>163</td><td>RSVD</td><td></td><td>164</td><td>RSVD</td><td></td></tr><tr><td>165</td><td>RSVD</td><td></td><td>166</td><td>GND</td><td></td></tr></table>

Table 1-3: MXM Connector Pin Definitions

<table><tr><td colspan="3">Primary Side (bottom side)</td><td colspan="3">Secondary Side (top side)</td></tr><tr><td>Pin</td><td>Signal</td><td>PU/PD</td><td>Pin</td><td>Signal</td><td>PU/PD</td></tr><tr><td>167</td><td>RSVD</td><td></td><td>168</td><td>RSVD</td><td></td></tr><tr><td>169</td><td>RSVD</td><td></td><td>170</td><td>RSVD</td><td></td></tr><tr><td>171</td><td>RSVD</td><td></td><td>172</td><td>RSVD</td><td></td></tr><tr><td>173</td><td>GND</td><td></td><td>174</td><td>GND</td><td></td></tr><tr><td>175</td><td>RSVD</td><td></td><td>176</td><td>RSVD</td><td></td></tr><tr><td>177</td><td>RSVD</td><td></td><td>178</td><td>RSVD</td><td></td></tr><tr><td>179</td><td>GND</td><td></td><td>180</td><td>GND</td><td></td></tr><tr><td>181</td><td>RSVD</td><td></td><td>182</td><td>RSVD</td><td></td></tr><tr><td>183</td><td>RSVD</td><td></td><td>184</td><td>RSVD</td><td></td></tr><tr><td>185</td><td>GND</td><td></td><td>186</td><td>GND</td><td></td></tr><tr><td>187</td><td>RSVD</td><td></td><td>188</td><td>RSVD</td><td></td></tr><tr><td>189</td><td>RSVD</td><td></td><td>190</td><td>RSVD</td><td></td></tr><tr><td>191</td><td>GND</td><td></td><td>192</td><td>GND</td><td></td></tr><tr><td>193</td><td>RSVD</td><td></td><td>194</td><td>RSVD</td><td></td></tr><tr><td>195</td><td>RSVD</td><td></td><td>196</td><td>RSVD</td><td></td></tr><tr><td>197</td><td>GND</td><td></td><td>198</td><td>GND</td><td></td></tr><tr><td>199</td><td>DP_C_L0#</td><td></td><td>200</td><td>RSVD</td><td></td></tr><tr><td>201</td><td>DP_C_L0</td><td></td><td>202</td><td>RSVD</td><td></td></tr><tr><td>203</td><td>GND</td><td></td><td>204</td><td>GND</td><td></td></tr><tr><td>205</td><td>DP_C_L1#</td><td></td><td>206</td><td>DP_D_L0#</td><td></td></tr><tr><td>207</td><td>DP_C_L1</td><td></td><td>208</td><td>DP_D_L0</td><td></td></tr><tr><td>209</td><td>GND</td><td></td><td>210</td><td>GND</td><td></td></tr><tr><td>211</td><td>DP_C_L2#</td><td></td><td>212</td><td>DP_D_L1#</td><td></td></tr><tr><td>213</td><td>DP_C_L2</td><td></td><td>214</td><td>DP_D_L1</td><td></td></tr><tr><td>215</td><td>GND</td><td></td><td>216</td><td>GND</td><td></td></tr><tr><td>217</td><td>DP_C_L3#</td><td></td><td>218</td><td>DP_D_L2#</td><td></td></tr><tr><td>219</td><td>DP_C_L3</td><td></td><td>220</td><td>DP_D_L2</td><td></td></tr><tr><td>221</td><td>GND</td><td></td><td>222</td><td>GND</td><td></td></tr><tr><td>223</td><td>DP_C_AUX#</td><td></td><td>224</td><td>DP_D_L3#</td><td></td></tr><tr><td>225</td><td>DP_C_AUX</td><td></td><td>226</td><td>DP_D_L3</td><td></td></tr></table>

Table 1-3: MXM Connector Pin Definitions

<table><tr><td colspan="3">Primary Side (bottom side)</td><td colspan="3">Secondary Side (top side)</td></tr><tr><td>Pin</td><td>Signal</td><td>PU/PD</td><td>Pin</td><td>Signal</td><td>PU/PD</td></tr><tr><td>227</td><td>RSVD</td><td></td><td>228</td><td>GND</td><td></td></tr><tr><td>229</td><td>RSVD</td><td></td><td>230</td><td>DP_D_AUX#</td><td></td></tr><tr><td>231</td><td>RSVD</td><td></td><td>232</td><td>DP_D_AUX</td><td></td></tr><tr><td>233</td><td>RSVD</td><td></td><td>234</td><td>DP_C_HPD</td><td>PD 100K</td></tr><tr><td>235</td><td>RSVD</td><td></td><td>236</td><td>DP_D_HPD</td><td>PD 100K</td></tr><tr><td>237</td><td>RSVD</td><td></td><td>238</td><td>RSVD</td><td></td></tr><tr><td>239</td><td>RSVD</td><td></td><td>240</td><td>3V3</td><td></td></tr><tr><td>241</td><td>RSVD</td><td></td><td>242</td><td>3V3</td><td></td></tr><tr><td>243</td><td>RSVD</td><td></td><td>244</td><td>GND</td><td></td></tr><tr><td>245</td><td>RSVD</td><td></td><td>246</td><td>DP_B_L0#</td><td></td></tr><tr><td>247</td><td>RSVD</td><td></td><td>248</td><td>DP_B_L0</td><td></td></tr><tr><td>249</td><td>RSVD</td><td></td><td>250</td><td>GND</td><td></td></tr><tr><td>251</td><td>GND</td><td></td><td>252</td><td>DP_B_L1#</td><td></td></tr><tr><td>253</td><td>DP_A_L0#</td><td></td><td>254</td><td>DP_B_L1</td><td></td></tr><tr><td>255</td><td>DP_A_L0</td><td></td><td>256</td><td>GND</td><td></td></tr><tr><td>257</td><td>GND</td><td></td><td>258</td><td>DP_B_L2#</td><td></td></tr><tr><td>259</td><td>DP_A_L1#</td><td></td><td>260</td><td>DP_B_L2</td><td></td></tr><tr><td>261</td><td>DP_A_L1</td><td></td><td>262</td><td>GND</td><td></td></tr><tr><td>263</td><td>GND</td><td></td><td>264</td><td>DP_B_L3#</td><td></td></tr><tr><td>265</td><td>DP_A_L2#</td><td></td><td>266</td><td>DP_B_L3</td><td></td></tr><tr><td>267</td><td>DP_A_L2</td><td></td><td>268</td><td>GND</td><td></td></tr><tr><td>269</td><td>GND</td><td></td><td>270</td><td>DP_B_AUX#</td><td></td></tr><tr><td>271</td><td>DP_A_L3#</td><td></td><td>272</td><td>DP_B_AUX</td><td></td></tr><tr><td>273</td><td>DP_A_L3</td><td></td><td>274</td><td>DP_B_HPD</td><td>PD 100K</td></tr><tr><td>275</td><td>GND</td><td></td><td>276</td><td>DP_A_HPD</td><td>PD 100K</td></tr><tr><td>277</td><td>DP_A_AUX#</td><td></td><td>278</td><td>3V3</td><td></td></tr><tr><td>279</td><td>DP_A_AUX</td><td></td><td>280</td><td>3V3</td><td></td></tr><tr><td>281</td><td>PRSNT_L#</td><td>0 ohm PD</td><td></td><td></td><td></td></tr></table>

Table 1-3: MXM Connector Pin Definitions

# 1.7 Thermal Policy

The GPU core clock throttles at temperatures $( \mathsf { T } _ { \mathsf { J } } )$ past the thresholds shown with the behaviors as listed. Thermal throttling ensures that the highest temperature on the die does not exceed the sense temperature for prolonged periods of time.

<table><tr><td>Parameter</td><td>Value</td><td>Units</td></tr><tr><td>Thermal Resistance (Junction to Case, RJC)</td><td>0.039</td><td>°C/W</td></tr><tr><td>Thermal Resistance (Junction to PCB Board, RJB)</td><td>1.46</td><td>°C/W</td></tr><tr><td>GPU Maximum Operating Temperature1</td><td>89</td><td>°C</td></tr><tr><td>GPU Slowdown Temperature (THERM_ALERT)2</td><td>98</td><td>°C</td></tr><tr><td>GPU Shutdown Temperature (OVERT)3</td><td>100</td><td>°C</td></tr></table>

Table 1-4: Thermal Policy

![An icon depicting a white document with a folded top-right corner and horizontal lines, overlaid with a large red checkmark.](.0131-egx-mxm-a1000-a2000-user-manual/3b5a2042b93922fa2681bdfea3eca151fc5dc4406950aac3bf9a88184b436940.jpg)
NOTE:

 Max.GPU operating temperature is the maximum at which the GPU is guaranteed to operate at target performance (base clock) under total board power level
 THERM\_ALERT generates a 50% (÷2) hardware clock slowdown.
 OVERT generates a 87.5% (÷8) hardware clock slowdown

# 1.8 Unpacking Checklist

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

 EGX-MXM-A1000/EGX-MXM-A2000 embedded graphics module

# 2 System Requirements

# 2.1 Power Sequencing

For initial power on, or to Resume from S3 and S4, this sequence must be followed.

![| Component         | Time Window |\n| ----------------- | ----------- |\n| PWR_SRC           | T_PV-PE     |\n| 5V                | T_PV-PE     |\n| 3V3               | T_PV-PE     |\n| PWR_EN            | T_PV-PE     |\n| Module Internal Power | T_PE-PG     |\n| PWR_GOOD          | T_PE-PG     |](.0131-egx-mxm-a1000-a2000-user-manual/77fd094427ee987a11b3fa1949d6b94c44844f898b2fe070da39e25647211bd4.jpg)

Figure 2-1: Power Sequencing

# 2.2 Module Power Up and Down

Issuing the PWR\_EN signal powers the MXM module down, and the system designer can decide whether to keep the module input power when the MXM module is powered down.

![MODULE\nINPUT POWER\nPWR_EN\nMODULE\nINTERNAL POWER\nPWR_GOOD](.0131-egx-mxm-a1000-a2000-user-manual/3c2f2db3d8041cb2cbc603e704ae6c0f46747f381ae0044ed7548ce1f7ac43a8.jpg)

Figure 2-2: Module Power Down

# 2.3 Reset Requirements

![| Signal          | Value     |\n|-----------------|-----------|\n| MODULE INPUT POWER | T_PVPERL  |\n| PWR_EN          | T_PVPERL  |\n| PWR_GOOD        | T_PVPERL  |\n| PEX_REFCLK      | T_PVPERL  |\n| PEX_RST#        | T_PVPERL  |\n| T_PVERST-PG     | T_PERST-PG |\n| T_PERST-CLK     | T_PERST-CLK |\n| T_FAIL          | T_PERST-CLK |\n| T_PVPERL ≥100 ms | T_PVPERL  |\n| T_PERST-CLK ≥100 μs | T_PERST-CLK |\n| T_PERST-PG ≥200 μs | T_PERST-PG |\n| T_FAIL ≤ 500 ns  | T_PERST-CLK |](.0131-egx-mxm-a1000-a2000-user-manual/6a430bfc7f61cb11e8dfe735833193f562e5718698bad2ef3d5d18459d68670e.jpg)

Figure 2-3: Reset Sequencing

# 2.4 System BIOS Settings

The system BIOS must meet the following criteria:

 SBIOS must support the "Above 4G decoding" feature to support a resizable BAR1 size.
 SBIOS must enable "Above 4G decoding" as the default configuration.

The following is a sample BIOS menu setting for reference. The actual menu setting can vary depending on the specific SBIOS design.

![Aptio Setup Utility - Copyright (C) 2022 American Megatrends, Inc.\nChipset\nSystem Agent (SA) Configuration\nSA PCIe Code Version 7.0.108.64\nVT-d Supported\n► Memory Configuration\n► Graphics Configuration\n► PEG Port Configuration\nVT-d (Enabled)\nAbove 4GB MMIO BIOS (Enabled)\nassignment\nEnable/Disable above\n4GB MemoryMappedIO BIOS\nassignment\nThis is enabled\nautomatically when\nAperture Size is set to\n2048MB.\n+: Select Screen\n↑↓: Select Item\nEnter: Select\n+/-: Change Opt.\nF1: General Help\nF8: Previous Values\nF9: Optimized Defaults\nF10: Save & Exit\nESC: Exit\nVersion 2.20.1275. Copyright (C) 2022 American Megatrends, Inc.](.0131-egx-mxm-a1000-a2000-user-manual/5a8fb22d99743786530259e12472425814f29b482a488f85a9b4c27872cb4a3a.jpg)

![Aptio Setup Utility - Copyright (C) 2022 American Megatrends, Inc.\nChipset\nSystem Agent (SA) Configuration\nSA PCIe Code Version 7.0.108.64\nVT-d Supported\n► Memory Configuration\n► Graphics Configuration\n► PEG Port Configu ABoxe 4GB MMIO BIOS assignment —\nVT-d\nAbove 4GB MMIO B\nassignment\nEnabled\nDisabled\nEnter: Select\n+/-: Change Opt.\nF1: General Help\nF8: Previous Values\nF9: Optimized Defaults\nF10: Save & Exit\nESC: Exit\nEnable/Disable above\n4GB MemoryMappedIO BIOS\nassignment\nThis is enabled\nautomatically when\nAperture Size is set to\n2048MB.\nAct Screen\nAct Item\nVersion 2.20.1275. Copyright (C) 2022 American Megatrends, Inc.](.0131-egx-mxm-a1000-a2000-user-manual/5904dec1888c57ab8ca2fb61ba058f1021a6b42f3b27fb641ba531bf3e50061a.jpg)

Figure 2-4: Sample BIOS Menu Settings

# 2.5 Dual Mode DisplayPort Implementation

The EGX-MXM-A1000/EGX-MXM-A2000 supports four dual mode DisplayPorts by default. HDMI can be supported via dongle. The system requires a switch circuit to determine whether the AUX or DDC signal is output from the MXM module, and AC coupling capacitors should be placed on the system board.

![The diagram illustrates the signal connections between an **MXM Connector** (left) and a **DisplayPort Connector** (right). The connections are organized into five signal lines with various passive components and switches:\n\n1.  **Top Line:** Labeled **AUX_N/DDC_DAT**. It connects the MXM Connector to the DisplayPort Connector. This line passes through a switch within a central block and has a pull-up resistor connected to **3.3V**.\n2.  **Second Line:** Labeled **AUX_P/DDC_CLK**. It connects the MXM Connector to the DisplayPort Connector. This line passes through a switch within the central block and has a pull-down resistor connected to Ground.\n3.  **Central Block:** A rectangular block containing two switches and two capacitor symbols (vertical parallel lines). It is labeled below as **CONFIG1 (CABLE ADAPTOR DETECT)**.\n4.  **Third Line:** An unlabeled line connecting the MXM Connector to the DisplayPort Connector. It passes through a rectangular box labeled **Hot Plug Detect**.\n5.  **Bottom Two Lines:** Labeled **DP_x_Lx_P** and **DP_x_Lx_N**. These lines connect the MXM Connector to the DisplayPort Connector and each passes through a series capacitor.](.0131-egx-mxm-a1000-a2000-user-manual/6dc0cc693cd173aa52c1fac8dd978fd736eb96696aa6f76e8503a3be35484cd0.jpg)

Figure 2-5: Dual Mode DisplayPort Implementation

# 2.6 DVI/HDMI on DisplayPort Interface

DVI and HDMI connectors can both be implemented through the DisplayPort interface. To support HDMI display from MXM, the HDMI port needs to be routed from DP\_C and/or DP\_A. To support DVI from MXM, the DVI port needs to be routed from DP\_B and/ or DP\_D. Dual Link DVI must use DP\_B and DP\_D together. See “Graphics Options” on page 4. Circuits required on the system board are as shown. 499Ω with 1% pulldown resistors to the ground on the DP lanes must placed on the DVI/HDMI connector side of the AC coupling, gated by a MOSFET to limit leakage.

![3.3V 3.3V\nHot Plug Detect\nMXM Connector\nAUX_N/DDC_DAT\nAUX_P/DDC_CLK\nLevel Shifter\nDVI/HDMI Connector\nDP_x_Lx_P\nDP_x_Lx_N\n499Ω 1%\n499Ω 1%\nPWR_EN](.0131-egx-mxm-a1000-a2000-user-manual/9f1441dcc094f5ddcfd28dffdef695b95d0955136b91dc3d95f88ceabd8663fc.jpg)

Figure 2-6: DVI/HDMI on DisplayPort Interface

For resolutions higher than 1080P, contact an ADLINK FAE for customized service, or use an active IC for the circuit design.

![MXM Connector\nAUX_P\n100K\nAUX_N\n100K\n3V3\nDP_x_Lx_P\nDP_x_Lx_N\nHot Plug DET\nDP to HDMI Dongle\nDDC_CLK\nDDC_DAT\nHDMI_TX_xP\nHDMI_TX_xN\nHot Plug DET\n100K\nNI\n5V 5V\nHDMI Connector\nNI is Reserve](.0131-egx-mxm-a1000-a2000-user-manual/066b138d84390b46cdc40c38c596371527918f263eae9a1993015ffb5992f18a.jpg)

Figure 2-7: Active IC for HDMI Dongle

# 2.7 Driver Installation

Drivers can be downloaded from:

https://www.adlinktech.com/Products/Embedded\_Graphics/ embedded-graphics-solutions/EGX-MXM-A1000

and

https://www.adlinktech.com/Products/Embedded\_Graphics/ embedded-graphics-solutions/EGX-MXM-A2000

# 2.8 Certifications & Agencies

Windows Hardware Quality Lab (WHQL) certified for Windows 10 and Windows 11
 EU Reduction of Hazardous Substances (EU-RoHS)
 Conformité Européenne (CE)
 Federal Communications Commission (FCC)

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# Important Safety Instructions

For user safety, please read and follow all instructions, Warnings, Cautions, and Notes marked in this manual and on the associated device before handling/operating the device, to avoid injury or damage.

S'il vous plaît prêter attention stricte à tous les avertissements et mises en garde figurant sur l'appareil , pour éviter des blessures ou des dommages.

 Read these safety instructions carefully
 Keep the User’s Manual for future reference
 Read the Specifications section of this manual for detailed information on the recommended operating environment
 The device can be operated at an ambient temperature of 50ºC
When installing/mounting or uninstalling/removing device; or when removal of a chassis cover is required for user servicing:
 Turn off power and unplug any power cords/cables
 Reinstall all chassis covers before restoring power
 To avoid electrical shock and/or damage to device:
 Keep device away from water or liquid sources
 Keep device away from high heat or humidity
 Keep device properly ventilated (do not block or coverventilation openings)
 Always use recommended voltage and power source settings
 Always install and operate device near an easily accessible electrical outlet
 Secure the power cord (do not place any object on/over the power cord)
 Only install/attach and operate device on stable surfaces and/or recommended mountings

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

Never attempt to repair the device, which should only be serviced by qualified technical personnel using suitable tools
 The device must be serviced by authorized technicians when:

 The power cord or plug is damaged
 Liquid has entered the device interior
 The device has been exposed to high humidity and/or moisture
 The device is not functioning or does not function according to the User’s Manual
 The device has been dropped and/or damaged and/or shows obvious signs of breakage

Disconnect the power supply cord before loosening the thumbscrews and always fasten the thumbscrews with a screwdriver before starting the system up
 It is recommended that the device be installed only in a server room or computer room where access is:

 Restricted to qualified service personnel or users familiar with restrictions applied to the location, reasons therefor, and any precautions required
 Only afforded by the use of a tool or lock and key, or other means of security, and controlled by the authority responsible for the location.

<table><tr><td>&lt;img src="images/7d7afac7b5bde111107e0b46b2bad723f25a941e1fde83d0d21e806956e2f602.jpg"/&gt;</td><td>BURN HAZARDTouching this surface could result in bodily injury.To reduce risk, allow the surface to cool before touching.RISQUE DE BRÛLURESNe touchez pas cette surface, cela pourrait entraîner des blessures.Pour éviter tout danger, laissez la surface refroidir avant de la toucher.</td></tr></table>

# Getting Service

Ask an Expert: http://askanexpert.adlinktech.com

# ADLINK Technology, Inc.

No. 66, Huaya 1st Rd., Guishan District

Taoyuan City 333411, Taiwan

Tel: +886-3-216-5088

Fax: +886-3-328-5706

Email: service@adlinktech.com

# Ampro ADLINK Technology, Inc.

6450 Via Del Oro

San Jose, CA 95119-1208, USA

Tel: +1-408-360-0200

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

+1-408-600-1189

Email: info@adlinktech.com

# ADLINK Technology (China) Co., Ltd.

300 Fang Chun Rd., Zhangjiang Hi-Tech Park

Pudong New Area, Shanghai, 201203 China

Tel: +86-21-5132-8988

Fax: +86-21-5132-3588

Email: market@adlinktech.com

# ADLINK Technology GmbH

Hans-Thoma-Straße 11

D-68163 Mannheim, Germany

Tel: +49-621-43214-0

Fax: +49-621 43214-30

Email: emea@adlinktech.com

Please visit the Contact page at www.adlinktech.com for information on how to contact the ADLINK regional office nearest you.
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