# AVA-1000

# User’s Manual

Fanless Scalable Railway Edge AI Platform

![Exterior view of a black ADLINK industrial device with multiple ports and connectors (no readable text or symbols beyond labels)](.ava-1000-50m-41060-1020-12/cf6caf570319e6a3427e636f8ab33b9f7f1707828bf32b5efb3f7c891fd1727a.jpg)

Manual Rev.: Rev. 1.2

Revision Date: November 20, 2025

Part Number: 50M-41060-1020

# Revision History

<table><tr><td>Revision</td><td>Description</td><td>Date</td></tr><tr><td>1.0</td><td>Initial release</td><td>2025-06-19</td></tr><tr><td>1.1</td><td>Connector pinouts and jumper settings updated</td><td>2025-09-19</td></tr><tr><td>1.2</td><td>System interfaces updated</td><td>2025-11-20</td></tr></table>

# Preface

# Copyright

Copyright 2025 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.

![Symbol of a trash bin crossed with a diagonal line and a horizontal bar below (no text or labels)](.ava-1000-50m-41060-1020-12/267f04e592012101c970624b65b5e799d94d58f1516c98ee36e3e6269a36257a.jpg)

Battery Labels (for products with battery)

![Simple line drawing of a trash bin with crossed lines indicating no waste or prohibition (no text or symbols)](.ava-1000-50m-41060-1020-12/3c7de0038085d5a68a1a906e0f9b36bd3ac925e8a3bc82a2fd2d4ed8ae7b3901.jpg)

![Li-ion](.ava-1000-50m-41060-1020-12/1258bbb94ecd41958d9741082faf9cf679389f19b2be3cb8ac3d3bb01c7e3af6.jpg)

![RECYCLE\nRBRC\nLi-ion\n7.800.822.8837](.ava-1000-50m-41060-1020-12/ce1ddd82c7323b61b5adfeb2b5a31f7247964571cd9c042ba82e58fc2b3bdfbe.jpg)

![廢電池請回收](.ava-1000-50m-41060-1020-12/01d1110d13009d734ba6bf2cb082d49f5155531a6b403bdb35304f7ed5be223a.jpg)

# California Proposition 65 Warning

![A yellow triangular warning sign with a thick black border and a black exclamation point in the center.](.ava-1000-50m-41060-1020-12/0b16c1b21a275630831242e0f5ee81f3476008502f13869132cec8a67b79b89e.jpg)

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 an icon of a white document with a folded top-right corner and faint horizontal gray lines representing text. A large, bold red checkmark is superimposed over the left side of the document.](.ava-1000-50m-41060-1020-12/30feee546e41ce7e7b03fff6e8457581af101e2679236786b3ae65f85ee9df39.jpg)
NOTE:

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

![A yellow triangular warning sign with a black border featuring a black exclamation point in the center.](.ava-1000-50m-41060-1020-12/eaa3a9f0a4e64fbd90d15695824242eae372e82ccbc2b4e965e84095cfbd1b95.jpg)
CAUTION:

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

ATTENTION: Informations destinées à prévenir les blessures corporelles mineures, les dommages aux composants, la perte de données et/ou la corruption de programme lors de l'exécu- tion d'une tâche.

![The image displays a standard warning symbol: a red triangle containing a white exclamation point in the center. A thin black vertical line runs along the left edge.](.ava-1000-50m-41060-1020-12/7cf00285a5df665b8a5ebd89662218707e8a65c3c7daf3e6563b1b1a9c2c2859.jpg)
WARNING:

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

AVERTISSEMENT: Informations destinées à prévenir les bles- sures corporelles graves, les dommages aux composants, la perte de données et/ou la corruption de programme lors de l'exécution d'une tâche spécifique.

# Table of Contents

# Preface...

# List of Tables... .vii

# 1 Introduction....

1.1 Overview.. ..9
1.2 Features.. .9
1.3 Packing List . ..10
1.4 Optional Accessories . ..10

# 2 Specifications ... .11

2.1 Product Specifications.... .11
2.2 Power Specifications... ..13
2.3 Functional Block Diagram .... ..14

# 3 Mechanical Layout .. .15

3.1 Mechanical Dimensions . .15
3.2 I/O Panel Connector Locations . ..16

# 4 Getting Started... .21

4.1 Removing the Movable Cover. ..21
4.2 Installing the M.2 M-Key 2242 NVMe Storage Module . .22
4.3 Installing M.2 2230 E-Key Wi-Fi/BT Modules .. .22
4.4 Installing M.2 B-Key 3042/52 5G Modules . ..24
4.5 Wall Mounting ...... .27
4.6 Connecting a Ground Cable... .27
4.7 Connecting the Power Supply . ..28
4.8 Starting the System.. .28

# 5 Connector Pinouts and Jumper Settings .... .29

5.1 External Connectors . .29
5.2 Internal Connectors.. .33
5.3 Buttons and LEDs.. ..36

# 6 System Interfaces.. .39

6.1 Installing Operating System . ..39
6.2 Install AVA-1000-iMX8MP\_factory\_yocto\_2v1 ARM (Recovery image for SD Card to EMMC ) .... ....40
6.3 DIO Test . .44
6.4 RS-485/422/232 Test.. .53

# Safety Instructions.... .62

# Getting Services.......... ..64

# List of Figures

Figure 1: Functional block diagram . ..14

Figure 2: Mechanical dimensions... ...15

Figure 3: Front I/O panel connector locations .... ...16

Figure 4: Front I/O panel connector locations with open lid .. ..17

Figure 5: Front I/O panel connector locations ... ...18

Figure 6: Side I/O panel connector without cover ... ...19

# List of Tables

Table 1: Front I/O panel connector descriptions (with open lid) . .17
Table 2: Side I/O panel connector descriptions (without cover) . ..19

This page intentionally left blank.

# 1 Introduction

# Overview

This user manual provides an overview on the AVA-1000. This user guide focuses on describing the special features of the AVA-1000 series variants (AVA-1000/x7433RE/8G/64G & AVA-1000/iMX8MP/8G/64G) and provides information on assembly, installation, operation, and maintenance on AVA-1000 to make the best use of the product. It is recommended to read the instructions in this user manual before using the product.

AVA-1000 is a compact fanless system targeting for Train-to-Ground, (T2G) communication, serving as an onboard gateway in the railway application. The CPU option includes Intel Amston Lake Atom series based on x86 architecture and NXP i.MX8M Plus based on ARM structure.

AVA-1000 is a fan-less communication gateway supporting on board GNSS, up to two 5G modem M.2-3042/3052 B-key slots and one M.2-2230 E-key slot for Wi-Fi and Bluetooth modules. Each modem slot supports 2 nano SIM cards. AVA-1000 is equipped by default with QMA antenna connectors for connectivity according to the configuration. The installation of the modems and modules can be completed by opening the lid after loosening the thumb screws on the panel.

For storage, the OS can be integrated into the eMMC on the SMARC module in AVA-1000. In addition, AVA-1000 provides an M.2-2230 M-key slot as another storage option.

# Features

EN 50155:2021 certified
Fan-less and compact design
Computing Processor:

o Intel Atom x7433RE Quad-Core 1.5 GHz, 9W TDP, LPDDR5 8GB soldered
o NXP i.MX8M Plus with Quad core ARM Cortex-A53, LPDDR4L 8GB soldered
o Other CPU and DDR options upon request

Front panel interfaces

o 1x M12 K-coded male power connector with ignition
o 3x 2.5G M12 X-coded female Ethernet ports
o 1x 2x6 terminal block connector supporting RS-232/422/485, 4x DI/4x DO, and other optional interfaces.
o Contact ADLINK for additional interfaces if needed

Side panel interfaces for maintenance

o 1x Reset button
o 1x HDMI 1.4
o 1x USB 3.1 Gen1 5G Type A

Special ports for ARM based AVA-1000

o 1x Micro SD for quickly flash image to eMMC
o 1x Console port for system debug
o 1x Micro-B support OTG mode and NXP serial download mode
o 1x Dip switch for boot mode selection

• Open lid for internal modules installation and removal

o 2x M.2-3042/4052 B Key slots for 5G/LTE modem installation
o 1x M.2-2230 E Key slot for Wi-Fi/BT or other expansion
o 1x M.2-2242 M Key slot for NVME storage
o 1x onboard u-blox Neo-M9N GNSS module

Rear side antenna

o 11pcs QMA connectors for x86 based and 7pcs for ARM based

# Packing List

Please check that your package contains the items listed below. If you discover any damaged or missing items, please contact your ADLINK representative for assistance.

AVA-1000 hardware configured as ordered
AVA-1000 mating power cable with terminal block (PN: 30-22184-0000-A0)
AVA-1000 wall mount kit
Terminal block for DI/DO and COM (PN: 20-C2041-2060)
AVA-1000 Wi-Fi AX210 Thermal Part (PN: 58-10643-200E)
AVA-1000 FN990 Bottom PAD Thermal Part (PN: 58-10643-300E)
Technical service card

For modem and modules not supported in the list, please notify ADLINK representatives for thermal solution.

![The image features a red triangle containing a white exclamation point in the center.](.ava-1000-50m-41060-1020-12/710a639357b7624fbc437ec07c6f5ed5c5b4a6e5ecd2ccd1c9d3f497c5231499.jpg)
WARNING:

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.

# Optional Accessories

The AVA-1000 is shipped without add-on modules. The approved modules is listed as below:

AVA-1000 24VDC IN AC-DC PSU (PN: 91-95376-000E)
5G modem FN990A40-HP (PN: 29-D0990-E000)
Intel AX210 Wi-Fi module (PN: 29-E0210-2010)
ADLINK NVME series. Please contact ADLINK representative for selection

# 2 Specifications

Product Specifications

<table><tr><td>Products</td><td>AVA-1000/x7433RE/8G/64G</td><td>AVA-1000/iMX8MP/8G/64G</td></tr><tr><td rowspan="10">System</td><td>Intel Atom x7433RE Quad-Core 1.5 GHz, 9W TDP</td><td>NXP i.MX8M Plus with Quad core ARM Cortex-A53</td></tr><tr><td>LPDDR5 8 Gbyte soldered by default</td><td>LPDDR4L-4266 8GB soldered by default</td></tr><tr><td>AMI® Aptio V</td><td>-</td></tr><tr><td>3x 2.5GbE via M12 X-coded</td><td>3x 2.5GbE via M12 X-coded</td></tr><tr><td>4x DI/4 DO in 1x 2x6 terminal block</td><td>4x DI/4 DO in 1x 2x6 terminal block</td></tr><tr><td>1x RS-232/422/485 in 1x 2x6 terminal block</td><td>1x RS-232/422/485 in 1x 2x6 terminal block</td></tr><tr><td>1x HDMI 1.41920*1080 @ 60Hz</td><td>1x HDMI 1.41920*1080 @ 60Hz</td></tr><tr><td>1x USB 3.1 Gen1 5G Type A</td><td>1x USB 3.1 Gen1 5G Type A</td></tr><tr><td>I2C, CAN reserved upon request</td><td>I2C, CAN reserved upon request</td></tr><tr><td>-</td><td>1x Console port for system debug1x Micro-B support OTG mode and NXP serial download mode1x Dip switch for boot mode selectionCovered with lids for security purpose</td></tr><tr><td rowspan="3">Storage</td><td>64GB eMMC by default</td><td>64GB eMMC by default</td></tr><tr><td>-</td><td>1x Micro SD slot for image loadingCovered with lids for security purpose</td></tr><tr><td>1 M.2-2242 M Key with PCIe Gen3 for PCIE/NVME only</td><td>1 M.2-2242 M Key with PCIe Gen2 for PCIE/NVME only</td></tr><tr><td rowspan="7">Connectivity</td><td>2x M.2-3042/4052 B Key (USB 3.0+USB 2.0) for 5G/LTE</td><td>1x M.2-3042/4052 B Key (USB 3.0+USB 2.0) for 5G/LTE</td></tr><tr><td>1x M.2-2230 E Key (PCIe Gen3/ USB 2) for WiFi and BT</td><td>1x M.2-2230 E Key (PCIe Gen2/ USB 2) for Wi-Fi and BT</td></tr><tr><td>GNSS receiver supporting GPS, Galileo, GLONASS, BeiDou (NEO-M9N-0-12)</td><td>GNSS receiver supporting GPS, Galileo, GLONASS, BeiDou (NEO-M9N-0-12)</td></tr><tr><td>8x antenna QMA connectors for 5G/LTE</td><td>4x antenna QMA connectors for 5G/LTE</td></tr><tr><td>2x antenna QMA connectors for Wi-Fi</td><td>2x antenna QMA connectors for Wifi</td></tr><tr><td>1x antenna QMA connectors for GNSS</td><td>1x antenna QMA connectors for GNSS</td></tr><tr><td>4x Nano Sim Card on RF board2 Sim per one 5G modem</td><td>2x Nano Sim Card on RF board for ARM version2 Sim per one 5G modem</td></tr><tr><td rowspan="3">Miscellaneous</td><td>1x Power/Reset LED (Green)1x Watchdog LED (Yellow)3x Ethernet Link LEDs (Green)12x User define LEDs (Green)</td><td>1x Power/Reset LED (Green)1x Watchdog LED (Yellow)3x Ethernet Link LEDs (Green)12x User define LEDs (Green)</td></tr><tr><td>1x Reset button</td><td>1x Reset button</td></tr><tr><td>TPM 2.0</td><td>TPM 2.0</td></tr><tr><td>Power interface</td><td>M12 A-coded support 24V to 110V DC nominal (EN50155),10ms hold-up time (acc. EN50155, class S2, C1)Ignition support</td><td>M12 A-coded support 24V to 110V DC nominal (EN50155),10ms hold-up time (acc. EN50155, class S2, C1)Ignition support</td></tr><tr><td rowspan="7">Mechanical</td><td>Aluminum heatsink</td><td>Aluminum heatsink</td></tr><tr><td>Passive coolingFan-less designSuggested air flow 0.6m/s</td><td>Passive coolingFan-less designSuggested air flow 0.6m/s</td></tr><tr><td>Stainless steel M6 20mm stud</td><td>Stainless steel M6 20mm stud</td></tr><tr><td>Wall mount</td><td>Wall mount</td></tr><tr><td>EN60529 IP40</td><td>EN60529 IP40</td></tr><tr><td>L: 220mm; W:130mm; H: 72.3mm</td><td>L: 220mm; W:130mm; H: 72.3mm</td></tr><tr><td>2.070 kg with 2x modems, 1x Wi-Fi, 1x NVME modules</td><td>2 kg with 1x modem, 1x Wi-Fi, 1x NVME modules</td></tr><tr><td>MTBF</td><td>220,051 hrs. by Telcordia Issue 4, 40 degree C, GB, GC</td><td>250,350 hrs. by Telcordia Issue 4, 40 degree C, GB, GC</td></tr><tr><td>Conformal Coating</td><td>Coating PCBA</td><td>Coating PCBA</td></tr><tr><td>Battery</td><td>MuRata CR2032X Battery by default</td><td>MuRata CR2032X Battery by default</td></tr><tr><td rowspan="3">Software</td><td>AMI® Aptio V UEFI BIOS</td><td>-</td></tr><tr><td>Ubuntu Linux 22.04</td><td>Yocto Linux</td></tr><tr><td>1 to 255 sec. system reset</td><td>1 to 255 sec. system reset</td></tr><tr><td>Operating Temperature</td><td>Depending on SMARC module selection -40 °C to +70 °C, +85°C for 10 min (-40 °F to 158 °F, 185 °F for 10 min) according to EN50155, class OT4, ST1</td><td>Depending on SMARC module selection -40 °C to +70 °C, +85°C for 10 min (-40 °F to 158 °F, 185 °F for 10 min) according to EN50155, class OT4, ST1</td></tr><tr><td>Storage Temperature</td><td>-40°C to +85°C</td><td>-40°C to +85°C</td></tr><tr><td>Humidity</td><td>+25°C to +55 °C, 95 % (acc. EN50155)</td><td>+25°C to +55 °C, 95 % (acc. EN50155)</td></tr><tr><td>EMC</td><td>EN 50155:2021 Clause 13.4.9EN 50121-3-2</td><td>EN 50155:2021 Clause 13.4.9EN 50121-3-2</td></tr><tr><td rowspan="2">Safety</td><td>EN 50155:2021</td><td>EN 50155:2021</td></tr><tr><td>EN45545-2:2013+A1:2015 (HL 1-3) EL9 for PCB (R24 / R25)Exclude add on modules</td><td>EN45545-2:2013+A1:2015 (HL 1-3) EL9 for PCB (R24 / R25)Exclude add on modules</td></tr></table>

# Power Specifications

# 2.2.1 AVA-1000 Power Consumption

Ubuntu 22.04.4 LTS X86:

<table><tr><td></td><td>AVA-1000 A2 version</td></tr><tr><td>CPU</td><td>Intel(R) Atom(TM) x7433REx4</td></tr><tr><td>Memory</td><td>8GB</td></tr><tr><td>OS</td><td>Ubuntu 22.04.4 LTS</td></tr><tr><td>Idle mode</td><td></td></tr><tr><td>24V(A) Adapter</td><td>0.68</td></tr><tr><td>Power consumption(W)</td><td>16.32</td></tr><tr><td>MAX mode</td><td></td></tr><tr><td>24V(A) Adpter</td><td>1.45</td></tr><tr><td>Power consumption(W)</td><td>34.8</td></tr></table>

AVA-1000-iMX8MP\_yocto\_2v1 ARM:

<table><tr><td></td><td>AVA-1000 A2 version</td></tr><tr><td>CPU</td><td>ARM Cortex-A53P-duke</td></tr><tr><td>Memory</td><td>8GB</td></tr><tr><td>OS</td><td></td></tr><tr><td>Idle mode</td><td></td></tr><tr><td>24V(A) Adapter</td><td>0.58</td></tr><tr><td>Power consumption(W)</td><td>13.92</td></tr><tr><td>MAX mode</td><td></td></tr><tr><td>24V(A) Adapter</td><td>1.32</td></tr><tr><td>Power consumption(W)</td><td>31.68</td></tr></table>

# Functional Block Diagram

![**Central Component:**\n*   **Carrier board with LEC-IMX8MP / LEC-IMX8M / LEC-ALN**\n\n**Peripheral Blocks and Connections:**\n\n*   **PW-051 board**: Connects to the Carrier board via '+12V' (dashed), '+12V', and 'I2C and IGN function'.\n*   **C2 Gold CAP board**: Connects to the Carrier board via '+12V' (dashed) and 'I2C_PM'.\n*   **RTC Co-lay Battery/Gold CAP**: Connects to the Carrier board via 'Reset_IN (ALN only) USB4' and 'VDD_RTC'.\n*   **Reset Button**: Connects to 'Reset_IN (ALN only) USB4'.\n*   **Pin Header**: Connects to the Carrier board via 'USB2.0', 'I2C*3', '4*DIO*4+DO', '2*CAN_H/L', '2*MCP2542 FDE/SN', 'UART 2 wire', and 'UART 4 wire'. It also connects to 'SP339EER1-L' via 'RS232/422/485 (485 only for LEC-ALN)'. Outputs '+5V@0.9A (USB)', '+12V@0.5A (User)', and '12*Jumper wire'.\n*   **Camera FPC Connector**: Connects to the Carrier board via 'CSI 4lane' (dashed) and 'I2C' (dashed).\n*   **M.2 NVME M Key**: Connects to the Carrier board via '1*PCIe x1' (dashed).\n*   **GNSS**: Connects to the Carrier board via 'UART 2 wire' (dashed).\n*   **3 pin header for 8M Console**: Connects to the Carrier board via 'UART 2 wire' (dashed).\n*   **RF B2B connector**: Connects to the Carrier board via 'PCIe x1' (dashed), '2*PCIe x1' (dashed), 'USB2.0' (dashed), and 'USB3.0' (dashed). Connects to 'USB HUB CYUSB3314-88LTXI' via 'USB3.0' (dashed). Outputs '+3.3V@0.5A', '+1.8V@0.1A', '+5V@0.5A', '+12V@0.5A', and 'I2C' (dashed).\n*   **USB HUB CYUSB3314-88LTXI**: Connects to the Carrier board via 'USB3.0' (dashed), 'USB2.0' (dashed), 'USB3.0' (dashed), and 'USB3.0' (dashed). Connects to 'USB 3.0 Type A R.A.' via 'USB 3.0' (dashed).\n*   **FT232RQ**: Connects to the Carrier board 'SER0 Console' via 'UART 2wire'. Connects to 'Micro USB' via 'USB2.0'.\n*   **Micro USB** (top right): Receives 'Power from connector'.\n*   **micro SD**: Connects to the Carrier board 'SDIO' via 'SDIO'.\n*   **Micro USB** (bottom right): Connects to the Carrier board 'USB0 (8MP Flash mode only)' via 'USB2.0'.\n*   **2*DIP SW**: Connects to the Carrier board 'Boot_SEL Force_RECOV#' via '2*GPIO'.\n*   **LAN7800-IVSX**: Connects to the Carrier board 'GBE0/1' via '2*MDI'. Connects to 'Active LED GPIO' via 'MDI'. Connects to 'Front panel B2B R.A. connector' via '2*Active LED GPIO' (dashed). Connects to Carrier board 'I2C_GP' via dashed line.\n*   **GPIO expander**: Connects to the Carrier board 'I2C_GP' via 'I2C'. Connects to 'Front panel B2B R.A. connector' via '8*GPIO'. Connects to the Carrier board via 'Status/WDT GPIO' (dashed).\n*   **TPM**: Connects to the Carrier board 'I2C_GP' via 'I2C' (dashed).\n*   **Front panel B2B R.A. connector**: Connects to the Carrier board 'GBE0/1' via '2*Active LED GPIO' (dashed). Connects to the Carrier board 'I2C_GP' via '8*GPIO' (dashed). Connects to the Carrier board via 'Status/WDT GPIO' (dashed).\n*   **USB 3.0 Type A R.A.**: Connects to the Carrier board 'USB3.0' via 'USB 3.0' (dashed). Connects to 'USB HUB' via 'USB 3.0' (dashed).\n*   **SP339EER1-L**: Connects to the Carrier board 'SER1 (option)' via 'UART 2 wire' (dashed). Connects to the Carrier board 'SER2' via 'UART 4 wire' (dashed). Connects to 'Pin Header' via 'RS232/422/485 (485 only for LEC-ALN)'.\n*   **HDMI** (top): Connects to the Carrier board 'HDMI'. Connects to 'MUX' via 'HDMI'.\n*   **MUX** (top): Connects to 'MUX' (bottom) via 'AC' and 'DC'.\n*   **LVDS0/1** (on Carrier board): Connects to 'MUX' (bottom) via 'LVDS-dual channel'.\n*   **MUX** (bottom): Connects to 'FFC/FPC R.A. connector' and 'HDMI' (bottom).\n*   **Co-lay to Left side** (pink box): Contains text '))2x Ethernet 1Gbe ports with 10/100 re-lay bypass', '))2x LEDs for two Ethernet LINK_ACT#', and '))2x LEDs for Status and WDT'.](.ava-1000-50m-41060-1020-12/3e707cca2699e6ee4d2768ca4cc3ccf4c20b0e18284292031096742fc258b32d.jpg)

![Based on the provided image, here is the accurate description of the flowchart/block diagram:\n\n**Labeled Blocks:**\n*   Nano SIM x2\n*   Nano SIM x2\n*   M.2 5G_A B Key\n*   M.2 5G_B B Key\n*   M.2 Wi-Fi E Key\n*   USB 3.0 tpye-A\n*   RF Board\n*   RF B2B connector\n\n**Connections:**\n*   **Nano SIM x2** (left) and **M.2 5G_A B Key**: Connected by a bidirectional arrow.\n*   **Nano SIM x2** (middle) and **M.2 5G_B B Key**: Connected by a bidirectional arrow.\n*   **M.2 5G_A B Key** and **RF Board**: Connected by a downward arrow labeled 'USB 3.0'.\n*   **M.2 5G_B B Key** and **RF Board**: Connected by a downward arrow labeled 'PCIe x1' and an upward green arrow labeled 'USB 2.0'.\n*   **M.2 Wi-Fi E Key** and **RF Board**: Connected by a downward arrow labeled 'PCIe x1' and an upward green arrow labeled 'USB2.0'.\n*   **USB 3.0 tpye-A** and **RF Board**: Connected by an upward green arrow labeled 'USB3 SS'. A thin black line also connects the bottom of the **M.2 Wi-Fi E Key** block to the left side of the **USB 3.0 tpye-A** block.\n*   **RF Board** and **RF B2B connector**: Connected by multiple arrows:\n    *   Downward arrow labeled '2*PCIe x1'.\n    *   Downward arrow labeled '2*USB 3.0'.\n    *   Downward arrow labeled 'USB 2.0'.\n    *   Upward green arrow labeled '+12V@0.5A'.\n    *   Upward green arrow labeled '+5V/3.3V'.\n\n**Labels on the RF Board:**\n*   Under the left connection: 'USB HUB'\n*   Under the middle connections: 'PCIEC (ALN only)' and 'USB3 (ALN only)'\n*   Under the right connections: 'PCIEA', 'USB HUB', and 'USB3 SS'](.ava-1000-50m-41060-1020-12/34fdaa38b629b9ef345736c34a8a1bedb7f4d1a360838c98212ed97a6566ba94.jpg)

![The flowchart depicts a system centered around a **Front panel board**, with connections to various external components and power sources.\n\n**Top Section:**\n*   Power inputs **+3.3V@0.1A** and **+5V@0.1A** connect via an arrow to the **Front panel B2B R.A. connector**.\n*   This connector connects bidirectionally to the **Front panel board** with labels **3*MDI** and **13*GPIO**.\n*   A connection labeled **12*Jump wire** points to the left from the upper-left area of the board.\n\n**Left Column:**\n*   The **Front panel board** connects bidirectionally via **12*Signals** to the **Pin Header 12 Pin**.\n*   The **Pin Header 12 Pin** connects bidirectionally via **12*Signals** to the **Terminal block 12 Pin**.\n\n**Middle Column:**\n*   The **Front panel board** connects bidirectionally via **2*MDI** to the **2*Transformer**.\n*   The **2*Transformer** connects bidirectionally via **2*MDI** to the **2*M12 X-code to Front side**.\n\n**Right-Middle Column:**\n*   The **Front panel board** connects bidirectionally via **MDI** to the **Transformer**.\n*   The **Transformer** connects bidirectionally via **MDI** to the **1*M12 X-code to Front side**.\n\n**Far Right Column:**\n*   Four vertical labels—**8*GPIO**, **3*GBE GPIO**, **Status GPIO**, and **WDT GPIO**—connect from the board to the final block.\n*   This block is labeled **8*User define LED 3*ETH LED 1*Status LED 1*WDT LED**.](.ava-1000-50m-41060-1020-12/6d306d51c6fa428818efa97626e27d10cba06d80eb7d980b512cfea07ce4f63f.jpg)

Figure 1: Functional block diagram

# 3 Mechanical Layout

# Mechanical Dimensions

![The image displays an icon of a white document with a folded top-right corner and faint horizontal lines. A large, bold red checkmark is superimposed over the document.](.ava-1000-50m-41060-1020-12/b0aa2518b43eefc611f3c2bcad38eab97db441ba80c9f36914bab19cfc57b6bc.jpg)
NOTE:

All dimensions are in millimeters, unless noted.

![The image is a technical line drawing of a rectangular electronic device, likely a radio transceiver, displaying six different views with dimensional annotations.\n\n**Top Left View (Rear Panel):**\n*   **Dimensions:** Vertical lines labeled '60.8' and '72.3'.\n*   **Labels:** Above a row of circular connectors: 'OMNI', 'ANT 1', 'ANT 2', 'ANT 3', 'ANT 4', 'ANT 5', 'ANT 6', 'ANT 7', 'ANT 8', 'ANT 9', 'ANT 10'.\n\n**Center View (Front Panel):**\n*   **Dimensions:**\n    *   Horizontal width: '220.60'\n    *   Vertical height: '130'\n    *   Right-side offset: '14.50'\n    *   Left-side vertical height: '75'\n    *   Top-left offset: '5.50'\n    *   Radius: 'R5'\n*   **Labels:**\n    *   Center logo: 'AUDLINK'\n    *   Bottom left (under power jack): 'Power Input 24-110 VDC'\n    *   Bottom row connectors: 'LAN0', 'LAN1', 'LAN2', 'LAN3', 'CN00', 'COM', 'I/O'\n\n**Bottom View:**\n*   **Dimensions:**\n    *   Horizontal width: '202.60'\n    *   Vertical height: '71.10'\n    *   Small dimension on far left: '11'\n\n**Top Right View (Isometric):**\n*   Shows the 3D perspective of the unit, highlighting the row of antenna connectors on the top edge and the front panel layout.\n\n**Far Left and Far Right Views (Side Profiles):**\n*   Show the side profile of the device, including mounting brackets and cable connections, without text labels.](.ava-1000-50m-41060-1020-12/54ebb7789e72206f381167cc42db2a22f1f4e3b3596d1595e985b1c9ad9f6c71.jpg)
Figure 2: Mechanical dimensions

# I/O Panel Connector Locations

# 3.2.1 Front View

![ADLINK\nWatch dog\nPower\n24-110 VDC\nLAN3\nLAN2\nLAN1\nDI/DO\nCOM\nLAN Activity LED (Green)\nUser define LED (Green)](.ava-1000-50m-41060-1020-12/bde599b60a5298e9a45b1141c194a290b0976d5c14f890179067b7004244e2cc.jpg)

Figure 3: Front I/O panel connector locations

![1\n2\n3\n4\n5\n6\n7\n8\nPower input\n24-110 VDC\nPower\nLAN3\nLAN2\nLAN1\nDI/LO\nCOM](.ava-1000-50m-41060-1020-12/a19f54e0583448fb649e913561514ac16f9cb2ec2659fa4a715255089770a52f.jpg)

Figure 4: Front I/O panel connector locations with open lid

Table 1: Front I/O panel connector descriptions (with open lid)

<table><tr><td>No.</td><td>Function</td><td>Approved module</td><td>Remark</td></tr><tr><td>1</td><td>M.2-2030 E key for Wi-Fi /BT</td><td>Intel AX-210, Wi-Fi/BT M.2 Card</td><td>Need a compatible thermal kit for assembly. Assemble procedure is in the following chapter.</td></tr><tr><td>2</td><td>M.2-3042/3052 B key for 5G/LTE modem</td><td>Telit FN990A28Telit FN990A40</td><td>Need a compatible thermal kit for assembly. Assemble procedure is in the following chapter.</td></tr><tr><td>3</td><td>M.2-3042/3052 B key for 5G/LTE modem</td><td>Telit FN990A28Telit FN990A40</td><td>Need a compatible thermal kit for assembly. Assemble procedure is following chapter.Available on AVA-1000, based on x86 platform and ARM platform</td></tr><tr><td>4</td><td> $1^{st}$  Nano SIM slot for modem No. 1</td><td></td><td></td></tr><tr><td>5</td><td> $2^{nd}$  Nano SIM slot for modem No. 1</td><td></td><td></td></tr><tr><td>6</td><td> $1^{st}$  Nano SIM slot for modem No. 2</td><td></td><td></td></tr><tr><td>7</td><td> $2^{nd}$  Nano SIM slot for modem No. 2</td><td></td><td></td></tr><tr><td>8</td><td>M.2-2242 M key for NVME</td><td></td><td>Need a compatible thermal pad for heat dissipation</td></tr></table>

# 3.2.2 Side View

![USB 3.0\nHDMI\nReset](.ava-1000-50m-41060-1020-12/10437df93e90882ecdcee97f2632de1ef5ca6de1fbf6c64a7fdf3a4659d3e5e3.jpg)

The IO interface is only for maintenance purposes.
Figure 5: Front I/O panel connector locations

![Switch\nMicro-B Console\nMicro SD\nUSB 3.0\nHDMI\nReset](.ava-1000-50m-41060-1020-12/0bb27affe84e58086ca95e4b7933d6154162f4252be538cde28d60ae1a7a4752.jpg)

Figure 6: Side I/O panel connector without cover

Table 2: Side I/O panel connector descriptions (without cover)

<table><tr><td>No.</td><td>Function</td><td>Function</td></tr><tr><td>1</td><td>Dip switch for boot mode selection</td><td>To selection boot mode</td></tr><tr><td>2</td><td>Micro-B</td><td>Support OTG mode and NXP serial download mode</td></tr><tr><td>3</td><td>Console</td><td>For system debug</td></tr><tr><td>4</td><td>Micro SD</td><td>For flash image to EMMC</td></tr><tr><td>5</td><td>USB3.0 GEN2 TypeA</td><td>Maintenance</td></tr><tr><td>6</td><td>HDMI</td><td>Maintenance</td></tr><tr><td>7</td><td>Reset</td><td>Reset system</td></tr></table>

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# 4 Getting Started

Follow the instructions describing the installation of SIM cards, Wi-Fi, cellular and M.2 NVMe modules; ground cable; and DC power supply.

![The image displays a white document icon with a folded top-left corner and faint horizontal lines, overlaid with a large red checkmark.](.ava-1000-50m-41060-1020-12/ea6314c1c60833ccf98120c91a786e5566c0344b371a8cc8824e752779089b45.jpg)
NOTE:

MXM and CAN bus modules must be installed at the factory. Please contact your local ADLINK representative for more information.

# Removing the Movable Cover

To install the optional modules, first remove the movable cover as illustrated below:

1. Place the box PC on a suitable surface with the top side facing up. Remove the 2 thumb screws from the topright side as indicated below.
2. Lift the rear cover off of the box PC chassis.

![Interior view of an electronic device with labeled ports and connectors (no readable text or symbols beyond labels)](.ava-1000-50m-41060-1020-12/dacb2c0405341ca85e50a557d2ebfb4a857d0c600dced4d23f5096998e38a960.jpg)

# Installing the M.2 M-Key 2242 NVMe Storage Module

To install the M.2 M-Key 2242 NVMe module, insert the module into the slot and attach the thermal pad, securing it with M2.5 screws, as shown below.

![Three-panel photo showing a computer motherboard with connected cables and electronic components, no visible text or symbols.](.ava-1000-50m-41060-1020-12/92208ce4542377f43f9be0e92e7d72b61ca785487bd3c933f10d399235e92702.jpg)

![The image displays a square icon containing a white document with a folded top-right corner and faint horizontal lines. A large red checkmark is superimposed over the document. The entire graphic is enclosed within a thin black border.](.ava-1000-50m-41060-1020-12/896d02c20a828a030740176f3060a072a9fb529d0ff078327b89f40bfc993338.jpg)
NOTE:

M.2 modules require an additional thermal solution when operated above $6 0 ^ { \circ } \mathsf { C }$ . Please contact your local ADLINK representative for more information.

Secure the NVME module: Insert the NVME module into the corresponding slot and fasten it with screws.

# Installing M.2 2230 E-Key Wi-Fi/BT Modules

![Front view of a black electronic device with multiple coaxial connectors and a central connector (no visible text or symbols on the body)](.ava-1000-50m-41060-1020-12/7452c518282cc313f71eed6088a849774ee5c0c98079b2eea6ddc51caa2d7e05.jpg)

The GNSS QMA antenna is preassembled during the production stage.

The Aux1 and Aux 2 are assigned for Wi-Fi modules. The Wi-Fi module should be placed at the location marked as below.

![Power input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nCOM\nDI/DO\nSwitch dogs\nNITC\nADLINK\nACOSMICOS 1200\nFE\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nS\nM1\nM2\nM3\nM4\nM5\nM6\nM7\nM8\nM9\nM10\nM11\nM12\nM13\nM14\nM15\nM16\nM17\nM18\nM19\nM20\nM21\nM22\nM23\nM24\nM25\nM26\nM27\nM28\nM29\nM30\nM31\nM32\nM33\nM34\nM35\nM36\nM37\nM38\nM39\nM40](.ava-1000-50m-41060-1020-12/eb315773ba8c1f3907d4cb007a315c0d0e99684c2f854f60449d81652b41bfb5.jpg)

1. To install the Wi-Fi/BT module, Find the heat spreader and placed on the location for Wifi M.2. Place the thermal pad at the location marked as below.

![ADLINK\nCE\n2448\nSE 6H-3\nF-100 CE US\nI-32212-0A20\n1108203\n38F02](.ava-1000-50m-41060-1020-12/e0cf274eab6c953305e14a00ba6e2c8dbf7fa9bec7226852f0bc93f82e78f4bf.jpg)

![ADLINK\n2-988\nCE\nF-100 C US\n1-32212-0A20\n15\n1000000000000000000000000000000000000000000000000000000000000000000000000000000000](.ava-1000-50m-41060-1020-12/837a85345e9922f5913e07a3af1a32d265709d89b35c7321931ad964b8385cf7.jpg)

2. Attach the AUX1 and AUX2 QMA to I-PEX4 connector to the Wi-Fi module and fasten the screw. Organize the cable prevent it from being overlap on the thermal solution. Cover the heat spreader and fasten two screws.

![AOLINK\n2PWR\n100 C\n32212-0A20\nSOUTH METER: A2519008\nT: 100000000000000000000000000000000000000000000000000000000000000000000000000000\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXY\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXX\nT: 11XXXXXXXXXXZ\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 11XXXXXXXXX\nT: 75553385007\nT: 4732779\nMade in China](.ava-1000-50m-41060-1020-12/649c27fb766608105286ca70a14f9be120f50f958e9ba7a8b4b93ae5e49c2055.jpg)

![ADLINK\n2498\n100 C US\n32212-0A20\nA13-07 E I A\n38602](.ava-1000-50m-41060-1020-12/69d310cadac65b16a6272023c8d1e46bfd28616d7c44fb76d53955818a960355.jpg)

# Installing M.2 B-Key 3042/52 5G Modules

There are two M.2 B Key 3042/3052 5G module slots. Slot 1 is supported for both x86 and ARM version. Slot 2 is supported only for AVA-1000 based on x86 architecture. Slot 1 a is connected to AUX7, AUX8, AUX9, AUX10. Slot 2 is connected to AUX3, AUX4, AUX5, AUX6.

![2\n1\nPower input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nDI/DO\nCOM](.ava-1000-50m-41060-1020-12/e91c8dba1d0f97653d7dff94d5aeefba498b37848a43bb17ad6df8bf9e240e32.jpg)

![Front view of a black electronic device with multiple coaxial connectors and a central connector (no visible text or symbols on the body)](.ava-1000-50m-41060-1020-12/8446927e89c9c3c87ed2a9f9958949a494e2d54e5be3791bde40077760a5afd5.jpg)

The 5G modem assembly is the same for both slot 1 and slot 2.

1. Step 1: Find the thermal pad for 5G modem FN990 and place it at the PCB with gold plate.

![Close-up of an electronic circuit board with visible components and traces (no readable text or symbols)](.ava-1000-50m-41060-1020-12/dbaf0448dada20811b6c55878e70eb8571394d1ee8c55b368cabf60ff4f03115.jpg)

2. Step 2: Attach the QMA to IPEX1 cables at the location assigned on the modem according to the silkscreen on the PCBA of the modem.

![Close-up of a Siemens TT540-MOSA-HP integrated circuit chip mounted on a workbench, surrounded by electronic components and connectors (no readable text or symbols)](.ava-1000-50m-41060-1020-12/499530e30a0945e41253274a62b1b86bb96d4ad86cbdf5e9d54554b9f4461fdf.jpg)

3. Attach the IPEX bracket onto the modem. The bracket is to prevent the IPEX connector from falling off. Sliding from the end of the modem is recommended. Pay attention to the cable from interfere the bracket.

![Close-up of a black electronic component with visible traces and connectors, placed on a circuit board (no readable text or symbols)](.ava-1000-50m-41060-1020-12/1b6497065b92b9e979744e318de2642062827d853a8cf3b37ff5bfad9c1da0bd.jpg)

4. Fasten the 5G modem screws. Organize the cable to the edge of the chassis. It is to prevent the cables from overlapping on the thermal pad.

![ADI INK\n300A-610075\n32000000000000000000000000000000000000000000000000000000000000000000000000000000000000\nHIT FN999A4D-HP\n338666666666666666666666666666666666666666666666666666666666666666666666666666666666666\nID: RIF7888A4GHP\n131A-FN999A4GHP\nCE\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775\nDCB 2418775](.ava-1000-50m-41060-1020-12/adbf2b5cb6b821bb2855f92ea314c38e133cc987987e1756868eec63636c907e.jpg)

Step 5: Close the cover. The thermal pad on the cover will help dissipate the heat to the housing.

# Wall Mounting

The AVA-1000 can be wall or surface mounted using the wall mount brackets and screws provided. If wall mounting, make sure the wall can support the weight of the device. Secure the brackets to the chassis using the 4 screws provided.

![Technical line drawing of an electronic device chassis with mounting brackets and internal compartments (no text or symbols)](.ava-1000-50m-41060-1020-12/f3328427d553ecd508f53a5c96c43f5defecccb866236b1b09f5c82eedae4414.jpg)

# Connecting a Ground Cable

![The image displays a yellow triangular warning sign with a black border and a large black exclamation point in the center. Below the triangle, the word 'CAUTION:' appears in black capital letters.](.ava-1000-50m-41060-1020-12/6b3c23bfc9dc49e2795fe0509fefe8ddd82cb68043a9f74cb6675af6e71fccfd.jpg)

Connect the ground cable before making any other connections. When disassembling the system, always detach the ground cable last.

• Use a ground cable with a cross section of at least 0.823mm2 (18AWG) and an M5 size ring terminal.
• Slide the ring terminal onto the ground stud and secure it with the locking M5 nut.

![Front view of a black ground audio testing device with multiple coaxial connectors and a central connector (no visible text or symbols on the device body)](.ava-1000-50m-41060-1020-12/a31d97b51baf27dac48d72c7dbabb0b5dc71aa1fafd88076cbc048738a59a948.jpg)

# Connecting the Power Supply

![The image displays a yellow triangular warning sign with a black border. Inside the triangle is a large black exclamation point. Below the triangle, the text 'CAUTION:' is printed in black capital letters.](.ava-1000-50m-41060-1020-12/e1aa606378275042dfc4fcd9076450868cf634dd10b1addc13178bf5fefe7e82.jpg)

Connect the ground cable before making any other connections. When disassembling the system, always detach the ground cable last.

![The image displays a standard warning sign featuring a red equilateral triangle with a white exclamation point in the center. Below the symbol, the text 'WARNING:' appears in black, uppercase letters.](.ava-1000-50m-41060-1020-12/2a41211b0bb3e46064098b2c7f91dda70b2beb57ac2f40df099513787aa7d945.jpg)

• Work on the computer system may only be carried out by personnel qualified for the specific task and who have the training and experience to identify risks and avoid potential hazards.
• Make sure that a ground cable has been connected to the system before connecting an external power supply and switching on the system.
• Make sure that the voltage supplied by the external power supply conforms to specifications of the system.

Connect the power supply to the 4-pin M12 A-coded connector on the front of the chassis. The device will power up when the power supply is turned on.

![ADLINK\nWatch dog\n+Power\nPower input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nDI/DO\nCOM\n(●)](.ava-1000-50m-41060-1020-12/0825e29382486279673e8bc7b0fc96e7b6c86e5514ef8158d6c1ad82aaa0e715.jpg)

![The image features an icon of a document with a folded top-left corner, horizontal gray lines, and a large red checkmark. Below the icon is the text 'NOTE:'.](.ava-1000-50m-41060-1020-12/c9000f7fb8058d8fa686316378e70775a9c453b9cffe9b15097a0c82b89b8b9b.jpg)

The user must provide the +24 to 110VDC

# Starting the System

Upon starting up, the system will auto-detect storage devices and boot from the operating system, if found. To change the boot device order, press &lt;Del&gt; or &lt;Esc&gt; to enter BIOS setup menu and change the Boot Option settings. If no operating system is found, the system will enter the BIOS setup menu automatically.

The AVA-1000 is delivered without an operating system installed.

# 5 Connector Pinouts and Jumper Settings

# External Connectors

Please refer to 3.2.1 Mechanical Layout Front View for connector locations.

# 5.1.1 DC Power Input M12 A-Coded Connector

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>IGN</td></tr><tr><td>2</td><td>VIN</td></tr><tr><td>3</td><td>DC+</td></tr><tr><td>4</td><td>DC+</td></tr></table>

![The image displays a technical diagram labeled '**FRONT VIEW**' in capital letters at the bottom. The diagram features a large circle containing a series of smaller shapes arranged in a ring along its interior perimeter. Starting from the top and moving clockwise, the shapes are: a single small circle, a small rectangle, a single small circle, a cluster of two small circles, a single small circle, a single small circle, and a cluster of three small circles.](.ava-1000-50m-41060-1020-12/c6ca67e74d52b57febe909238b00a27f2a6c5b164246a77a4ac319f910b35b45.jpg)

# 5.1.2 LAN Connector

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>MDI_T_P0</td></tr><tr><td>2</td><td>MDI_T_N0</td></tr><tr><td>3</td><td>MDI_T_P1</td></tr><tr><td>4</td><td>MDI_T_N1</td></tr><tr><td>5</td><td>MDI_T_P3</td></tr><tr><td>6</td><td>MDI_T_N3</td></tr><tr><td>7</td><td>MDI_T_N2</td></tr><tr><td>8</td><td>MDI_T_P2</td></tr></table>

![The image displays a technical line drawing of a circular connector faceplate. Around the outer perimeter, the numbers 1 through 8 are arranged in a clockwise sequence. Inside the main circle, there is a ring of eight smaller circles, positioned in pairs within the four quadrants created by the central structure. In the center, a cross-shaped component with vertical and horizontal rectangular elements is visible. The diagram is rendered in black lines on a white background.](.ava-1000-50m-41060-1020-12/cd0645fa69a74d58b8a24c7466fc1ec2450cee3398e8db6ddcbd4ac0b424a3df.jpg)

# 5.1.3 USB 3.0 Connector

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>USB3.0_P5VA</td></tr><tr><td>2</td><td>USB2_CMAN</td></tr><tr><td>3</td><td>USB2_CMAP</td></tr><tr><td>4</td><td>GND</td></tr><tr><td>5</td><td>USB3A_CMRXN</td></tr><tr><td>6</td><td>USB3A_CMRXP</td></tr><tr><td>7</td><td>GND</td></tr><tr><td>8</td><td>USB3A_CMTXN</td></tr><tr><td>9</td><td>USB3A_CMTXP</td></tr></table>

![9\n8\n7\n6\n5\n1\n2\n3\n4](.ava-1000-50m-41060-1020-12/115b865f94ef6ed7f019de7a1f7e650226c522152c7d25ac9db66ebee26b311e.jpg)

# 5.1.4 HDMI Connector

<table><tr><td>Pin #</td><td>Signal Name</td><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>TMDS Data2+</td><td>2</td><td>TMDS Data2 Shield</td></tr><tr><td>3</td><td>TMDS Data2-</td><td>4</td><td>TMDS Data2-</td></tr><tr><td>5</td><td>TMDS Data1 Shield</td><td>6</td><td>TMDS Data1-</td></tr><tr><td>7</td><td>TMDS Data2-</td><td>8</td><td>TMDS Data0 Shield</td></tr><tr><td>9</td><td>TMDS Data0-</td><td>10</td><td>TMDS Data2-</td></tr><tr><td>11</td><td>TMDS Clock Shield</td><td>12</td><td>TMDS Clock-</td></tr><tr><td>13</td><td>CEC</td><td>14</td><td>SDA</td></tr><tr><td>15</td><td>SCL</td><td>16</td><td>SDA</td></tr><tr><td>17</td><td>DDC/CEC Ground</td><td>18</td><td>+5 V Power</td></tr><tr><td>19</td><td>Hot Plug Detect</td><td></td><td></td></tr></table>

![The image is a technical line drawing of a 2-row electrical connector housing. It features 10 circular contact slots in each of the two rows, totaling 20 pins. The housing has a notched left end and a raised right end.\n\nNumbering labels indicate specific pin positions:\n*   **12** is above the top-left pin.\n*   **11** is below the bottom-left pin.\n*   **1** is above the top-right pin.\n*   **2** is below the bottom-right pin.\n*   **3** is above the top row, second from the right.\n*   **4** is below the bottom row, second from the right.\n\nTwo small rectangular features are visible along the bottom edge of the housing.](.ava-1000-50m-41060-1020-12/c71806405a1b0b266b7244e939cdd72179761b755e094396c796ae0edac923c9.jpg)

# 5.1.5 GPIO and COM Connectors

<table><tr><td>SMARC module:LEC-ASL</td><td>SMARCCONNECTOR pin</td><td>Carrier board</td><td>AVA-1000 GPIOconnector pin</td><td>Remark</td></tr><tr><td>O2_GPIO_7</td><td>P115</td><td>S_GPIO07_3V_CN</td><td>2</td><td>DO</td></tr><tr><td>O2_GPIO_6_TACHIN(O2_GPIO_6)</td><td>P114</td><td>S_GPIO06_3V_CN</td><td>3</td><td>DO</td></tr><tr><td>O2_GPIO_11</td><td>P119</td><td>S_GPIO11_3V_CN</td><td>5</td><td>DI</td></tr><tr><td>O2_GPIO_10</td><td>P118</td><td>S_GPIO10_3V_CN</td><td>6</td><td>DI</td></tr></table>

![DI\nS_GPIO10_3V_CN\nDI\nS_GPIO11_3V_CN\nGND\nDO\nS_GPIO06_3V_CN\nDO\nS_GPIO07_3V_CN\nGND\nCN_COM1_TXD\nCN_COM1_RXD\nCN_COM1_RTS#\nCN_COM1_CTS#\nGND\nGND\n6 5 4 3 2 1\n+\n+\n+\n+\n+\n+\n+\n+\nG2 12 11 10 9 8 7 G1\nTB_12_R3.3mm\nCN701](.ava-1000-50m-41060-1020-12/bd39d6b60b1a55dc2f43b6d8fd3f98fae2dff8666ea6e88471a5d12f830cb43c.jpg)

![Pin 6 5 4 3 2 1\nPin 12 11 10 9 8 7](.ava-1000-50m-41060-1020-12/20218aa765c4322a88cb41ffd1c197d87161756129a10227c582713e04c499f1.jpg)

# 5.1.6 uUSB Connectors

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>SDIO_R_D2</td></tr><tr><td>2</td><td>SDIO_R_D3</td></tr><tr><td>3</td><td>SDIO_R_CMD</td></tr><tr><td>4</td><td>P_+SD</td></tr><tr><td>5</td><td>SDIO_R_CK</td></tr><tr><td>6</td><td>GND</td></tr><tr><td>7</td><td>SDIO_R_D0</td></tr><tr><td>8</td><td>SDIO_R_D1</td></tr><tr><td>9</td><td>GND</td></tr><tr><td>10</td><td>GND</td></tr><tr><td>11</td><td>SDIO_R_CD#</td></tr><tr><td>12</td><td>GND</td></tr></table>

![14.00 (.551)\n16.00 (.630)\n4.60 (.181)\nPUCH ELECTION POSITION\nCARD CENTER\nCONNECTOR CENTER\n1.30 (.051)\n0.80 (.031)\nPUCH STOP POSITION\n1.80 (.071)\nPUCH WORKING POSITION\n①\n②\n⑨\n⑧](.ava-1000-50m-41060-1020-12/1ba81614145cab13e6ad2dce265b6963ae9d16873b3e2f2693d1164a738fd535.jpg)

# uUSB Connectors (For OTG)

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>P_+5V_UUSB_FLASH</td></tr><tr><td>2</td><td>USB0_DN_CN</td></tr><tr><td>3</td><td>USB0_DP_CN</td></tr><tr><td>4</td><td>USB0_OTG_ID_CN</td></tr><tr><td>5</td><td>GND</td></tr></table>

![PICK & PLACE AREA\nØ3 REF.\n1.8 REF.\n0.6 REF.\n8.1 REF.](.ava-1000-50m-41060-1020-12/f7c1a96f03a14fba1596b311b0b505c282c1709caf4fc9f02d38e3784a4063b6.jpg)

# uUSB Connectors (For Console)

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>P_+5V_MUSB</td></tr><tr><td>2</td><td>USB_UART_HS_DB_N_CN</td></tr><tr><td>3</td><td>USB_UART_HS_DB_P_CN</td></tr><tr><td>4</td><td>Test point</td></tr><tr><td>5</td><td>GND</td></tr></table>

![PICK & PLACE AREA\nØ3 REF.\n1:8 REF.\n0:6 REF.\n8:1 REF.](.ava-1000-50m-41060-1020-12/e1a37e557844c7233a1c03a80ae219b04c22451d005f04f7ea6107141fb8bc22.jpg)

# 5.1.7 Reset Connectors

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>T1</td><td>GND</td></tr><tr><td>T2</td><td>RESET_IN#_5V</td></tr><tr><td>T3</td><td>GND</td></tr><tr><td>T4</td><td>GND</td></tr></table>

![0.40\n(.016)\n0.70\n(.028)\n4.50\n(.174)\n7.00±0.50\n(.276±0.020)\n8.50±0.40\n(.335±0.016)\n1.80±0.50\n(.071±0.50)\n4.00\n(.157)\n7.20\n(.283)](.ava-1000-50m-41060-1020-12/852e8058f0e42fc4265a3702051f630b50dcbe792608d8fd3f0a859c7bbfc1f1.jpg)

![T₃\nT₄\nGROUND\nTERMINAL\nT₁](.ava-1000-50m-41060-1020-12/0b2d0aff4f5843c1a3d9485422a5516cd346b2718255b0279e19d8bf8415dcff.jpg)

5.1.8 Switch Connectors

<table><tr><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>GND</td></tr><tr><td>2</td><td>GND</td></tr><tr><td>3</td><td>FORCE_RECOV#</td></tr><tr><td>4</td><td>BOOT_SEL_SW</td></tr></table>

![6.64\n1.30\n10.20\nDIP 1 2 ON\n0,1,2,~9\n1,2~9,X,Y,Z\nDATE CODE\n2.54](.ava-1000-50m-41060-1020-12/1291463894555d63ef3e2a15df968b49601ca91f660d8d6ea6e592a8978cfa41.jpg)

<table><tr><td>Pin</td><td>1</td><td>2</td><td>Boot Source</td><td>Remark</td></tr><tr><td rowspan="2">Status</td><td>ON</td><td>OFF</td><td>From uSD card</td><td>Only 8MP(ARM)</td></tr><tr><td>ON</td><td>ON</td><td>From SMARC model EMMC</td><td></td></tr></table>

# Internal Connectors

# 5.2.1 M.2 M-Key 2242 PCIe module Connector

![14.00\n2.50\nPIN1 0.50 0.12 ±0.02\nTYP.\n1.375\n2.00\nPIN57 PIN67 PIN75\nPCIB4.0 M.2 DATE CODE M\nX\nPIN2 0.50 0.12 ±0.02\nTYP.\n1.125\nPIN58 PIN68 PIN74\n1.50\n14.00\n2.50](.ava-1000-50m-41060-1020-12/fc2ab823d6180eccc2f12b3984a125aaa850387507a1f5e66506a47e362aac09.jpg)

<table><tr><td>Pin #</td><td>Signal Name</td><td>Pin #</td><td>Signal Name</td><td>Pin #</td><td>Signal Name</td></tr><tr><td>1</td><td>M.2M_CONFIG_3</td><td>31</td><td>NC</td><td>69</td><td>M.2M_CONFIG_1</td></tr><tr><td>2</td><td>P_+3V3_M.2M</td><td>32</td><td>NC</td><td>70</td><td>P_+3V3_M.2M</td></tr><tr><td>3</td><td>GND</td><td>33</td><td>GND</td><td>71</td><td>GND</td></tr><tr><td>4</td><td>P_+3V3_M.2M</td><td>34</td><td>NC</td><td>72</td><td>P_+3V3_M.2M</td></tr><tr><td>5</td><td>NC</td><td>35</td><td>NC</td><td>73</td><td>GND</td></tr><tr><td>6</td><td>NC</td><td>36</td><td>NC</td><td>74</td><td>P_+3V3_M.2M</td></tr><tr><td>7</td><td>NC</td><td>37</td><td>NC</td><td>75</td><td>M.2M_CONFIG_2</td></tr><tr><td>8</td><td>NC</td><td>38</td><td>PU 10K to 3.3V</td><td rowspan="23" colspan="2"></td></tr><tr><td>9</td><td>GND</td><td>39</td><td>GND</td></tr><tr><td>10</td><td>Test point</td><td>40</td><td>NC</td></tr><tr><td>11</td><td>NC</td><td>41</td><td>PCIE_B_RX_N_R</td></tr><tr><td>12</td><td>P_+3V3_M.2M</td><td>42</td><td>NC</td></tr><tr><td>13</td><td>NC</td><td>43</td><td>PCIE_B_RX_P_R</td></tr><tr><td>14</td><td>P_+3V3_M.2M</td><td>44</td><td>NC</td></tr><tr><td>15</td><td>GND</td><td>45</td><td>GND</td></tr><tr><td>16</td><td>P_+3V3_M.2M</td><td>46</td><td>NC</td></tr><tr><td>17</td><td>NC</td><td>47</td><td>PCIE_B_TX_N_C</td></tr><tr><td>18</td><td>P_+3V3_M.2M</td><td>48</td><td>NC</td></tr><tr><td>19</td><td>NC</td><td>49</td><td>PCIE_B_TX_P_C</td></tr><tr><td>20</td><td>NC</td><td>50</td><td>PCIE_B_RST_N_3V_CN</td></tr><tr><td>21</td><td>M.2M_CONFIG_0</td><td>51</td><td>GND</td></tr><tr><td>22</td><td>NC</td><td>52</td><td>M2_KEY-M_CLK_REQ_N</td></tr><tr><td>23</td><td>NC</td><td>53</td><td>PCIE_B_REFCLK_N_R</td></tr><tr><td>24</td><td>NC</td><td>54</td><td>M2_KEY-M_PEWAKE_N</td></tr><tr><td>25</td><td>NC</td><td>55</td><td>PCIE_B_REFCLK_P_R</td></tr><tr><td>26</td><td>NC</td><td>56</td><td>NC</td></tr><tr><td>27</td><td>GND</td><td>57</td><td>GND</td></tr><tr><td>28</td><td>NC</td><td>58</td><td>NC</td></tr><tr><td>29</td><td>NC</td><td>67</td><td>NC</td></tr><tr><td>30</td><td>NC</td><td>68</td><td>M.2_M_SUSCLK</td></tr></table>

5.2.2 M.2 B-Key 3042 5G Module Connector

<table><tr><td>Pin</td><td>Signal Name</td><td>Pin</td><td>Signal Name</td></tr><tr><td>1</td><td>NC</td><td>2</td><td>3.3V</td></tr><tr><td>3</td><td>GND</td><td>4</td><td>3.3V</td></tr><tr><td>5</td><td>GND</td><td>6</td><td>FULL CARD OFF-L</td></tr><tr><td>7</td><td>USB2 DP</td><td>8</td><td>W DIS-L</td></tr><tr><td>9</td><td>USB2 DM</td><td>10</td><td>LED-L</td></tr><tr><td>11</td><td>GND</td><td></td><td></td></tr><tr><td colspan="4">KEY-B</td></tr><tr><td>21</td><td>NC</td><td>20</td><td>NC</td></tr><tr><td>23</td><td>NC</td><td>22</td><td>NC</td></tr><tr><td>25</td><td>NC</td><td>24</td><td>NC</td></tr><tr><td>27</td><td>GND</td><td>26</td><td>NC</td></tr><tr><td>29</td><td>USB3 RX N</td><td>28</td><td>NC</td></tr><tr><td>31</td><td>USB3 RX P</td><td>30</td><td>SIM RST1</td></tr><tr><td>33</td><td>GND</td><td>32</td><td>SIM CLK1</td></tr><tr><td>35</td><td>USB3 TX N</td><td>34</td><td>SIM DAT1</td></tr><tr><td>37</td><td>USB3 TX P</td><td>36</td><td>SIM PWR1</td></tr><tr><td>39</td><td>GND</td><td>38</td><td>NC</td></tr><tr><td>41</td><td>PCIE RX N</td><td>40</td><td>SIM DET2</td></tr><tr><td>43</td><td>PCIE RX P</td><td>42</td><td>SIM DAT2</td></tr><tr><td>45</td><td>GND</td><td>44</td><td>SIM CLK2</td></tr><tr><td>47</td><td>PCIE TX N</td><td>46</td><td>SIM RST2</td></tr><tr><td>49</td><td>PCIE TX P</td><td>48</td><td>SIM PWR2</td></tr><tr><td>51</td><td>GND</td><td>50</td><td>PERST-L</td></tr><tr><td>53</td><td>PCIE CLK N</td><td>52</td><td>CLKREQ-L</td></tr><tr><td>55</td><td>PCIE CLK P</td><td>54</td><td>NC</td></tr><tr><td>57</td><td>GND</td><td>56</td><td>NC</td></tr><tr><td>59</td><td>NC</td><td>58</td><td>NC</td></tr><tr><td>61</td><td>NC</td><td>60</td><td>NC</td></tr><tr><td>63</td><td>NC</td><td>62</td><td>NC</td></tr><tr><td>65</td><td>NC</td><td>64</td><td>NC</td></tr><tr><td>67</td><td>NC</td><td>66</td><td>SIM DET1</td></tr><tr><td>69</td><td>NC</td><td>68</td><td>NC</td></tr><tr><td>71</td><td>GND</td><td>70</td><td>3.3V</td></tr><tr><td>73</td><td>GND</td><td>72</td><td>3.3V</td></tr><tr><td>75</td><td>NC</td><td>74</td><td>3.3V</td></tr></table>

![1\n75\nH](.ava-1000-50m-41060-1020-12/c2f54982bc95bc1a350c6507704e06fec2437fb660e31285694566f136e2da0a.jpg)

5.2.3 M.2 E-Key 2230 Wi-Fi Module Connector

<table><tr><td>Pin</td><td>Signal Name</td><td>Pin</td><td>Signal Name</td></tr><tr><td>1</td><td>GND</td><td>2</td><td>3.3V</td></tr><tr><td>3</td><td>USB2_DP</td><td>4</td><td>3.3V</td></tr><tr><td>5</td><td>USB2 DM</td><td>6</td><td>WIFI LED1</td></tr><tr><td>7</td><td>GND</td><td>8</td><td>NC</td></tr><tr><td>9</td><td>NC</td><td>10</td><td>NC</td></tr><tr><td>11</td><td>NC</td><td>12</td><td>NC</td></tr><tr><td>13</td><td>NC</td><td>14</td><td>NC</td></tr><tr><td>15</td><td>NC</td><td>16</td><td>WIFI LED2</td></tr><tr><td>17</td><td>NC</td><td>18</td><td>WIFI VIO CFG</td></tr><tr><td>19</td><td>NC</td><td>20</td><td>NC</td></tr><tr><td>21</td><td>NC</td><td>22</td><td>NC</td></tr><tr><td>23</td><td>N/C</td><td>24</td><td>N/C</td></tr><tr><td colspan="4">Key E</td></tr><tr><td>33</td><td>GND</td><td>32</td><td>NC</td></tr><tr><td>35</td><td>PCIE TX DP</td><td>34</td><td>NC</td></tr><tr><td>37</td><td>PCIE TX DN</td><td>36</td><td>NC</td></tr><tr><td>39</td><td>GND</td><td>38</td><td>NC</td></tr><tr><td>41</td><td>PCIE RX DP</td><td>40</td><td>NC</td></tr><tr><td>43</td><td>PCIE RX DN</td><td>42</td><td>NC</td></tr><tr><td>45</td><td>GND</td><td>44</td><td>NC</td></tr><tr><td>47</td><td>PCIE CLK DP</td><td>46</td><td>NC</td></tr><tr><td>49</td><td>PCIE CLK DN</td><td>48</td><td>NC</td></tr><tr><td>51</td><td>GND</td><td>50</td><td>NC</td></tr><tr><td>53</td><td>PCIE CLKREQ-L</td><td>52</td><td>PCIE RST-L</td></tr><tr><td>55</td><td>PEWAKE0-L</td><td>54</td><td>WIFI BT DIS-L</td></tr><tr><td>57</td><td>GND</td><td>56</td><td>WIFI DIS-L</td></tr><tr><td>59</td><td>NC</td><td>58</td><td>NC</td></tr><tr><td>61</td><td>NC</td><td>60</td><td>NC</td></tr><tr><td>63</td><td>GND</td><td>62</td><td>NC</td></tr><tr><td>65</td><td>NC</td><td>64</td><td>NC</td></tr><tr><td>67</td><td>NC</td><td>66</td><td>NC</td></tr><tr><td>69</td><td>GND</td><td>68</td><td>NC</td></tr><tr><td>71</td><td>NC</td><td>70</td><td>NC</td></tr><tr><td>73</td><td>NC</td><td>72</td><td>3.3V</td></tr><tr><td>75</td><td>GND</td><td>74</td><td>3.3V</td></tr></table>

# Buttons and LEDs

# 5.3.1 Power Button

The power button is non-latching, the system turns on when the button is pressed, then the power LED illuminates. If the system hangs, pressing the button will completely shut it down.

![Close-up of a computer power supply unit with black buttons and wiring, no visible text or symbols on the main components.](.ava-1000-50m-41060-1020-12/22e8d8865923aa74cf4e75280d6e075556f352ae3540b83d0125739ae4954c75.jpg)

<table><tr><td>System status</td><td>Power LED (GREEN)</td></tr><tr><td>Power On</td><td>On</td></tr><tr><td>Power Off</td><td>Off</td></tr></table>

# 5.3.2 Reset Button

The reset button is non-latching. The system is restarts when the button is pressed. If the system hangs, press the button to restart it.

# 5.3.3 Status LEDs

![ADLINK\nWatch dog\nPower\nDI/DO\nPower input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nCOM](.ava-1000-50m-41060-1020-12/ce8ffb57434bc7fc8e0f4f4d959f019a237ce3f2f23dd33f2582505af92e4557.jpg)

<table><tr><td>LED indicator</td><td>Color</td><td>Description</td></tr><tr><td>Power</td><td>Green</td><td>1 x power on and reset LED (Green), LED on when power on. LED off when power off.</td></tr><tr><td>Watchdog</td><td>Yellow</td><td>1 x WDT LED (Yellow), Indicates watchdog timer status. When the watchdog timer starts, the LED flashes. When the timer is expired, the system will auto reboot.</td></tr><tr><td>Lan</td><td>Green</td><td>1 x 1G Ethernet (signal from USB) (Green)2 x 1G Ethernet (signal from SMARC) (Green)</td></tr><tr><td>Wi-Fi</td><td>Green</td><td>4 x Wi-Fi LED (Green)</td></tr><tr><td>Customer indicator LEDs</td><td>Green</td><td>8 x customer indicator LEDs (2x 4 Green)</td></tr></table>

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# 6 System Interfaces

# Installing Operating System

# 6.1.1 Install Ubuntu 22.04.4 LTS (Kernel Linux adlink-ava-1v3 6.5.0-25-generic) X86

Use Rufus tool recovery AVA-1000\_Ubuntu\_22.04.4\_x64\_IMG\_1v3.iso image

![The image displays the Ubuntu logo set against a solid orange square background. The logo itself is a white circle composed of three smaller white circles arranged in a triangular formation, appearing to touch or connect at their edges.](.ava-1000-50m-41060-1020-12/7db8582fe22def4ebcba48eb777ca07a8fae7869c4454b2b60b53e69ec226293.jpg)

# Ubuntu

Device Name

Hardware Model

Memory

Processor

Graphics

Disk Capacity

OS Name

OS Type

GNOMEVersion

42.9

Windowing System

SoftwareUpdates

# Install AVA-1000-iMX8MP\_factory\_yocto\_2v1 ARM (Recovery image for SD Card to EMMC )

1. Download the AVA-1000-iMX8MP\_factory\_yocto\_2v1 image and unzip it with 7-zip.
2. Please use Rufus tool to recover the AVA-1000-iMX8MP\_factory\_yocto\_2v1 image to an SD Card (SD card must be more than 16G).

![Rufus 4.5.2180\nDrive Properties\nDevice\nBOOT (H:) (64 GB)\nSD Card\nBoot selection\nAVA-1000-iMX8MP_FLASH-YOCTO_2v1_DQAC.img\nSELECT\nPartition scheme\nMBR\nTarget system\nBIOS (or UEFI-CSM)\nShow advanced drive properties\nFormat Options\nVolume label\nBOOT\nFile system\nLarge FAT32 (Default)\nCluster size\n32 kilobytes (Default)\nHide advanced format options\nQuick format\nCreate extended label and icon files\nCheck device for bad blocks\n1 pass\nStatus\nREADY\nSTART\nCLOSE\nUsing image: AVA-1000-iMX8MP_FLASH-YOCTO_2v1_DQAC.img](.ava-1000-50m-41060-1020-12/ee1e24c81c99631a9bb2d424969240906402404825f3ed77b41e1bac554c3792.jpg)

3. Set jump Switch SW1 to ON / SW2 to OFF for SD card image recovery to EMMC, and plug in the SD card slot.

![SW1 ON / SW2 OFF\nDIP 1 2\n↓ON\nSwitch Micro-B](.ava-1000-50m-41060-1020-12/7faa3ca97423b9215c492f8537195148ffa4721d1bb2581c3ac29cdda0dfa451.jpg)

![Plug in SD Crad in Slot\nSwitch Micro-B Console Micro SD](.ava-1000-50m-41060-1020-12/2945ca9f4e9c876fa6d94d9abecb4050294ecb36184a8122db314a8ad465f341.jpg)

4. Use a Micro USB to USB Type-A cable to connect the Console slot to the Host PC (Window 10).

![Switch Micro-B Console Micro SD](.ava-1000-50m-41060-1020-12/80ce855dd45de758c711d80ee3432506636e0f981092969cdae1becddcdc05d6.jpg)

5. Check the COM port in Windows Device Manager. Open PuTTY, Select connection type:Serial, and set COM port and speed (115200).

![PuTTY Configuration\nCheck COM port in Windows × Device Manager.\nCategory:\nSession\nLogging\nTerminal\nKeyboard\nBell\nFeatures\nWindow\nAppearance\nBehaviour\nTranslation\nSelection\nColours\nConnection\nData\nProxy\nSSH\nSerial\nTelnet\nRlogin\nSUPDUP\nBasic options for your PuTTY session\nSpecify the destination you want to connect to\nSerial line\nCOM3\nSpeed\n115200\nConnection type:\nSSH Serial Other: Telnet\nLoad, save or delete a stored session\nSaved Sessions\nDefault Settings\nLoad\nSave\nDelete\nClose window on exit:\nAlways Never Only on clean exit\nAbout Help Open Cancel](.ava-1000-50m-41060-1020-12/f3a123108c0b37052fe982a82f87f092792b7eac99cb3b2a68b7bdf33f1a42d8.jpg)

6. Once the AVA-1000 is powered ON, PuTTY will show the SD card image being restored to eMMC.

![(*** ) (1 of 2) A start job is running for...cal Compatibility (33s / no limit)\n( 39.453047) usb 2-1.3: new SuperSpeed USB device number 5 using xhci-hcd\n( 39.482072) usb 2-1.3: LPM exit latency is zeroed, disabling LPM.\n( 39.679100) option 2-1.3:1.0: GSM modem (1-port) converter detected\n( 39.686022) usb 2-1.3: GSM modem (1-port) converter now attached to ttyUSB0\n( 39.728584) qmi_wwan 2-1.3:1.2: cdc-wdm0: USB WDM device\n( 39.735003) qmi_wwan 2-1.3:1.2 wwan0: register 'qmi_wwan' at usb-xhci-hcd.1.a\nuto-1.3, WWAN/QMI device, 7e:9d:c8:d3:52:01\n( 39.746480) option 2-1.3:1.3: GSM modem (1-port) converter detected\n( 39.753116) usb 2-1.3: GSM modem (1-port) converter now attached to ttyUSB1\n( 39.760482) option 2-1.3:1.4: GSM modem (1-port) converter detected\n( 39.767156) usb 2-1.3: GSM modem (1-port) converter now attached to ttyUSB2\n( 39.774564) option 2-1.3:1.5: GSM modem (1-port) converter detected\n( 39.781593) usb 2-1.3: GSM modem (1-port) converter now attached to ttyUSB3\n( 39.789061) option 2-1.3:1.6: GSM modem (1-port) converter detected\n( **) (1 of 2) A start job is running for...cal Compatibility (38s / no limit)\n( 43.680987) kauditd_printk_skb: 6 callbacks suppressed\n( 43.680997) audit: type=1334 audit(1677837294.336:16): prog-id=14 op=UNLOAD\n( *** ) (2 of 2) A start job is running for...local if it exist (55s / no limit)\n( 60.410432) imx-sdma 30e10000.dma-controller: firmware found.\n( 60.416243) imx-sdma 30bd0000.dma-controller: firmware found.\n( * ) (2 of 2) A start job is running for...local if it exist (59s / no limit)\n( *** ) (1 of 2) A start job is running for...Compatibility (1min 2s / no limit)](.ava-1000-50m-41060-1020-12/7ee37236452ce672e74a58a7a860ba81bc6e59baacadf5c0f8315a059a4a5097.jpg)

SD card image successfully restored to eMMC.

![( 134.821987) EXT4-fs (mmcblk2p3): mounted filesystem with ordered data mode. Q\n(* ) (2 of 2) A start job is running for... if it exist (2min 11s / no limit)\n( 136.446166) EXT4-fs (mmcblk2p3): unmounting filesystem.\n( 136.522999) EXT4-fs (mmcblk2p5): mounted filesystem with ordered data mode. Q\n( * ) (2 of 2) A start job is running for... if it exist (2min 35s / no limit)\n( 160.678568) EXT4-fs (mmcblk2p2): mounted filesystem with ordered data mode. Q\n(** ) (2 of 2) A start job is running for... if it exist (2min 46s / no limit)\n( OK ) Started /etc/rc.local Compatibility.\n( OK ) Started Getty on tty1.\n( OK ) Started Serial Getty on ttymxc1.\n( OK ) Reached target Login Prompts.\n\nNXP i.MX Release Distro 6.1-mickledore AVA-1000 ttymxc1\n\nAVA-1000 login: ( 189.248774) EXT4-fs (mmcblk2p5): unmounting filesystem.\n( 189.362704) EXT4-fs (mmcblk2p2): mounted filesystem with ordered data mode. Q\nquota mode: none.\n( 191.453132) iwlwifi 0000:03:00.0: Direct firmware load for iwlwifi-ty-a0-gf-a\n0-69.ucode failed with error -2\n( 191.463018) iwlwifi 0000:03:00.0: Falling back to sysfs fallback for: iwlwifi\n-ty-a0-gf-a0-69.ucode\n( 199.140742) EXT4-fs (mmcblk2p2): unmounting filesystem.\n( 199.164726) mmcblk2: p1 p2 p3 p4 ( p5 p6 p7 )\n\nAVA-1000 login:](.ava-1000-50m-41060-1020-12/304a6463563ac99ce75beeba86482a92853e0ce5996b9c07d1ae59a7bf3532fd.jpg)

7. Set jump Set SW1 to OFF / SW2 to OFF. Remove the SD card and Micro USB cable, then connect the HDMI cable and boot from eMMC.

![1 2\nDIP\nON\nSwitch\nMicro-B Co](.ava-1000-50m-41060-1020-12/76f3799be5120e562a47d6da7d4bce020911d0969954fe0b2a1a18b4776bb3c8.jpg)

![Switch Micro-B Console Micro SD](.ava-1000-50m-41060-1020-12/95757a634e36372715a9d8157e7780d26babb7422862a7089b0c364906816046.jpg)

![bash-5.2# uname -a\nLinux AVA-1000 6.1.55-ava-1000.2v1+2116b750c0e0 #1 SMP PREEMPT Fri Jan 17 12:42:\n09 CST 2025 aarch64 GNU/Linux\nbash-5.2#](.ava-1000-50m-41060-1020-12/5dd9ea29c9016d10378482a9c5b0a9eaa9fbea7915face1a32188ba1e6076e82.jpg)

# DIO Test

# 6.3.1 Ubuntu 22.04.4 LTS (Kernel Linux adlink-ava-1v3 6.5.0-25-generic) X86 GPIO Test

Platform: AVA-1000
• OS: Ubuntu 22.04.4 LTS (Kernel Linux adlink-ava-1v3 6.5.0-25-generic)

# The gpio chip have GPIOs include 12 pins, use the GPIO loopback test fixture test
![ADLINK\nWatch dog\n+Power\nPower input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nDI/DO\nCOM\n(●)](.ava-1000-50m-41060-1020-12/54da1fe0bdb40d4b377a7593541e54bc14d802633c08e95d4cd6568243a150fc.jpg)

Identify the GPIO number for the DIO pin
![DI\nS_GPIO10_3V_CN\nDI\nS_GPIO11_3V_CN\nGND\nDO\nS_GPIO06_3V_CN\nDO\nS_GPIO07_3V_CN\nGND\nCN_COM1_TXD\nCN_COM1_RXD\nCN_COM1_RTS#\nCN_COM1_CTS#\nGND\nGND\nTB_12_R3.3mm\nGN701](.ava-1000-50m-41060-1020-12/d2369f3d65c89536482650ed323eff34e00c972402ed8a3e7991078f47c37f85.jpg)

# # Check GPIO function number in the platform schematic

Refer the platform schematic, there are 2 \* DI( O2\_GPIO\_11/ O2\_GPIO\_10) and 2 \* DO( O2\_GPIO\_7/ O2\_GPIO\_6).

<table><tr><td>SMARC module: LEC-ASL</td><td>SMARC connector pin</td><td>Carrier board</td><td>AVA-1000 GPIO connector pin</td><td>Remark</td></tr><tr><td>O2_GPIO_7</td><td>P115</td><td>S_GPIO07_3V_CN</td><td>2</td><td>DO</td></tr><tr><td>O2_GPIO_6_TACHIN (O2_GPIO_6)</td><td>P114</td><td>S_GPIO06_3V_CN</td><td>3</td><td>DO</td></tr><tr><td>O2_GPIO_11</td><td>P119</td><td>S_GPIO11_3V_CN</td><td>5</td><td>DI</td></tr><tr><td>O2_GPIO_10</td><td>P118</td><td>S_GPIO10_3V_CN</td><td>6</td><td>DI</td></tr></table>

(1) GPIO connector
![Pin 6 5 4 3 2 1\nPin 12 11 10 9 8 7](.ava-1000-50m-41060-1020-12/599a49d1efc2da6a20c2b4de67e832cd0352eb65f6497992f7eeb6a51ec635a6.jpg)

(2) Carrier board:
Level shift for GPIO

![0.65V ~ 3.6V\nP_+1V8_S\nC2213\n100nF_25V\nU2205\n14\n13\nP_+3V3_S\nC2215\n100nF_25V\nVCCA VCCB\nA1 B1\nA2 B2\nA3 B3\nA4 B4\n12 S_GPIO06_3V R2232 0ohm +-1%\n11 S_GPIO07_3V R2235 0ohm +-1%\n10 S_GPIO08_3V R2236 0ohm +-1%\n9 S_GPIO09_3V R2237 0ohm +-1%\nDIR High= A to B\nDIR Low= B to A\n(4) S_GPIO06\n(4) S_GPIO07\n(4) S_GPIO08\n(4) S_GPIO09\nP_+1V8_S\nR2241 0ohm +-1%\n7 OE GND\nSN74AXC4T774RSVR_UQFN16\nPU on P22\nLS_EN# MAIN_1V8 R2243 0ohm +-1%\nNI\nR2245\n10K +-1%\n8](.ava-1000-50m-41060-1020-12/70ad7fab7f340a5b4845f8c2722dd4814c0ddacf7ba5353c60a84c1159a669a5.jpg)

![P+1V8_S\nC2212\n100nF_25V\nP+3V3_S\nC2214\n100nF_25V\nU2204\n14\n13\nVCCA VCCB\n1\n1\nA1 B1\n12 S_GPIO10_3V R2233 0ohm +-1%\n(4) S_GPIO10 1\n2\nA2 B2\n11 S_GPIO11_3V R2234 0ohm +-1%\n(4) S_GPIO11 2\n3\nA3 B3\n10 S_GPIO12_3V R2238 0ohm +-1%\n(4) S_GPIO12 3\n4\nA4 B4\n9 S_GPIO13_3V R2239 0ohm +-1%\n(4) S_GPIO13 4\nR2240 0ohm +-1%\n15 DIR1\n16 DIR2\n5 DIR3\n6 DIR4\nDIR High= A to B DIR Low= B to A\nLS_EN#_MAIN_1V8 R2242 0ohm +-1%\n7 OE GND\nSN74AXC4T774RSVR_UQFN16\nNI\nR2244\n10K +-1%\nPU on P22](.ava-1000-50m-41060-1020-12/25e962730e491d80c2163195ac300ce4d94e52a0873efcddb73593695d724d34.jpg)

# (3) SMARC module: LEC-ASL

GPIO expander on the SMARC module (LEC-ASL).

120
![C GPIO Expander\n3-PAD PLACEMENT\nRc\n46 I2C_GP_CK_3V\n31.46 SMB_CLK_S\nRe\n46 I2C_GP_DAT3V\n31.46 SMB_DAT_S\nRd\n17.38 GPIO_INT-L\nA K\nED1 SCS521S-TG_30V\nP_+3V3_S0\nP_+1V8_S0\nR414 10K_+1%\nNi\nR415 10K_+1%\nU15\nI2C GPIO_CK_R 25\nI2C GPIO_DAT_R 24\nGPIO_A1 10\nGPIO_A0 26\nTP45 NI 11\nOSCIO VCC2 18\nINT\n3 GND1 I/O13 21\nGND2 I/O14 22\nGND3 I/O15\n4 VDDM VCC1 4\n27 RESET 28\nI/O0 I/O1 1\nI/O2 I/O3 2\nI/O4 I/O5 6\nI/O6 I/O7 7\nI/O7\nADDR1 ADDR0 8\nOSCIO VCC2 13\nI/O8 I/O9 I/O10 I/O11 I/O12 20\nGND3 I/O15\nSX1509BIULTRT_SEMTECH\nP_+1V8_S0\n470K_+1% R405\n470K_+1% R406\n470K_+1% R409\n470K_+1% R412 R413\n470K_+1% R416 R417\n470K_+1% R418 R419\nRemove dual-pu\nBOM option I2C_PM I2C_GP](.ava-1000-50m-41060-1020-12/aeec8272da80c7b0bbe6a42bef923a57bc938ee0eec979750d3ab1dd32f20fc1.jpg)

<table><tr><td>BOM option</td><td>I2C_PM</td><td>I2C_GP</td></tr><tr><td>Rc/Rd</td><td>Stuff</td><td>Un-stuff (default)</td></tr><tr><td>Re/Rf</td><td>Un-stuff</td><td>Stuff (default)</td></tr></table>

# 6.3.2 Test GPIO function

Digital Input & Output

DIO function

AVA-1000 platform has 4 DI & 4 DO from SMARC HW pin GPIOs.

# Digital Input & Output Table

<table><tr><td>Digital Input</td><td>HW Pin</td><td>Digital Output</td><td>HW Pin</td></tr><tr><td>DI1</td><td>GPIO6</td><td>DO1</td><td>GPIO10</td></tr><tr><td>DI2</td><td>GPIO7</td><td>DO2</td><td>GPIO11</td></tr><tr><td>DI3</td><td>GPIO8</td><td>DO3</td><td>GPIO12</td></tr><tr><td>DI4</td><td>GPIO9</td><td>DO4</td><td>GPIO13</td></tr></table>

DIO control

Using SEMA to control SMARC HW pin.

# Config DIO HW pin & set value default low
```shell
$ sudo semautil /i2c write_raw 2 0x3f 2 0e 3c # 0011 1100
$ sudo semautil /i2c write_raw 2 0x3f 2 0f 31 # 0011 0001
$ sudo semautil /i2c write_raw 2 0x3f 2 10 00 # 0000 0000
$ sudo semautil /i2c write_raw 2 0x3f 2 11 0e # 0000 1110
```

```shell
# Control DO output level
# DO1 high
$ sudo semautil /i2c write_raw 2 0x3f 2 11 7f
# DO2 high
$ sudo semautil /i2c write_raw 2 0x3f 2 11 bf
# DO3 high
$ sudo semautil /i2c write_raw 2 0x3f 2 10 01
# DO4 high
$ sudo semautil /i2c write_raw 2 0x3f 2 10 02
# DOx low
$ sudo semautil /i2c write_raw 2 0x3f 2 10 00
$ sudo semautil /i2c write_raw 2 0x3f 2 11 3f
```

Using SEMA to control SMARC HW pin.

```shell
# Get DI input level
$ sudo semautil /i2c read_raw 2 0x3f 10 1
```

\# read DI hex value

Return value 00 is a hexadecimal value. ( 0000 0000 )

If DI1 is high, the hex value is 04 ( 0000 0100 )

If DI2 is high, the hex value is 08 ( 0000 1000 )

If DI3 is high, the hex value is 10 ( 0001 0000 )

If DI4 is high, the hex value is 20 ( 0010 0000 )

```txt
root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 0e 3c
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 0f 31
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 10 00
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 11 3f
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 11 7f
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c read_raw 2 0x3f 10 1
Read data:
00 : 04

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 11 bf
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c read_raw 2 0x3f 10 1
Read data:
00 : 08

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c write_raw 2 0x3f 2 11 ff
Data Written Successfully

root@adlink-ava-1000-1v3:/home/adlink/AVA-1000/smea/sema-linux# sudo semautil /i2c read_raw 2 0x3f 10 1
Read data:
00 : 0c
```

# 6.3.3 Test LED function

# LED

# LEC control

Using SEMA to control LED HW pin
```txt
# Config LED HW pin & set LED default off
$ semautil /i2c write_raw 2 0x71 2 0e 00
$ semautil /i2c write_raw 2 0x71 2 0f 00
$ semautil /i2c write_raw 2 0x71 2 10 f0
$ semautil /i2c write_raw 2 0x71 2 11 00
```

Control LED
```txt
# set LED all on
$ sudo semautil /i2c write_raw 2 0x71 2 10 ff
$ sudo semautil /i2c write_raw 2 0x71 2 11 ff

# set LED column1 on
$ sudo semautil /i2c write_raw 2 0x71 2 10 ff
$ sudo semautil /i2c write_raw 2 0x71 2 11 00

# set LED column2 off
$ sudo semautil /i2c write_raw 2 0x71 2 10 f0
$ sudo semautil /i2c write_raw 2 0x71 2 11 0f

# set LED column3 on
$ sudo semautil /i2c write_raw 2 0x71 2 10 f0
$ sudo semautil /i2c write_raw 2 0x71 2 11 f0

# set LED all off
$ sudo semautil /i2c write_raw 2 0x71 2 10 f0
$ sudo semautil /i2c write_raw 2 0x71 2 11 00
```

# 6.3.4 AVA-1000-iMX8MP\_factory\_yocto\_2v1 ARM GPIO Test

# Test GPIO function

AVA-1000 ARM System, DIO Port plug-in DIO test fixture

![ADLINK\nWatching\nPower\nPower Input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nD/DO\nCOM](.ava-1000-50m-41060-1020-12/ef671e2e7ca53b51ed3dc302bf52534b1dd856fb8d19901de65b80edf8366ee7.jpg)

Digital Input & Output
connect:
```shell
GPIO6&lt;-&gt;GPIO10
GPIO7&lt;-&gt;GPIO11
GPIO8&lt;-&gt;GPIO12
GPIO9&lt;-&gt;GPIO13
#cd /sys/class/gpio_switch/
#echo 1 > DO01
#echo 1 > DO02
#cat DI01
1
#cat DI02
1
```

![bash-5.2# cd /sys/class/gpio_switch/\nbash-5.2# echo 1 )D001\nbash-5.2# cat DI01\n1bash-5.2# echo 1 )D002\nbash-5.2# cat DI02\n1bash-5.2#](.ava-1000-50m-41060-1020-12/6eb271bcc8d0f467dd99b4dec6d2df39a2181a6fa2ee1cf0e7a8e6c670715212.jpg)

# 6.3.5 Test LED function

# LED1\~LED12 ON

```shell
# cd /sys/class/ leds /
# echo 1 > /sys/class/leds/usr_led01/brightness
# echo 1 > /sys/class/leds/usr_led02/brightness
# echo 1 > /sys/class/leds/usr_led03/brightness
# echo 1 > /sys/class/leds/usr_led04/brightness
# echo 1 > /sys/class/leds/usr_led05/brightness
# echo 1 > /sys/class/leds/usr_led06/brightness
# echo 1 > /sys/class/leds/usr_led07/brightness
# echo 1 > /sys/class/leds/usr_led08/brightness
# echo 1 > /sys/class/leds/usr_led9/brightness
# echo 1 > /sys/class/leds/usr_led10/brightness
# echo 1 > /sys/class/leds/usr_led11/brightness
# echo 1 > /sys/class/leds/usr_led12/brightness
```

![bash-5.2# cd /sys/class/leds/\nbash-5.2# echo 1 )/sys/class/leds/usr_led01/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led02/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led03/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led04/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led05/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led06/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led07/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led08/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led09/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led10/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led11/brightness\nbash-5.2# echo 1 )/sys/class/leds/usr_led12/brightness\nbash-5.2#](.ava-1000-50m-41060-1020-12/b9e85c4edd51fd44f34e8f80ff94a57a0413ffbd7f2b1d8d1dcae9f3434b3672.jpg)

![ADLINK\nWatchdog\nPower\nPower input\n24-110 VDC\nLAN3\nLAN2\nLAN1\nDI/DO\nCOM](.ava-1000-50m-41060-1020-12/c26af2c7ea7ffd985d155e5cd7d2e514c24a285c4386d248cb422452190f6015.jpg)

# LED1\~LED12 OFF

#cd /sys/class/ leds /

```shell
# echo 0 > /sys/class/leds/usr_led01/brightness
# echo 0 > /sys/class/leds/usr_led02/brightness
# echo 0 > /sys/class/leds/usr_led03/brightness
# echo 0 > /sys/class/leds/usr_led04/brightness
# echo 0 > /sys/class/leds/usr_led05/brightness
# echo 0 > /sys/class/leds/usr_led06/brightness
# echo 0 > /sys/class/leds/usr_led07/brightness
# echo 0 > /sys/class/leds/usr_led08/brightness
# echo 0 > /sys/class/leds/usr_led9/brightness
# echo 0 > /sys/class/leds/usr_led10/brightness
# echo 0 > /sys/class/leds/usr_led11/brightness
# echo 0 > /sys/class/leds/usr_led12/brightness
```

![bash-5.2# cd /sys/class/leds/\nbash-5.2# echo 0 )/sys/class/leds/usr_led01/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led02/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led03/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led04/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led05/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led06/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led07/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led08/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led09/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led10/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led11/brightness\nbash-5.2# echo 0 )/sys/class/leds/usr_led12/brightness](.ava-1000-50m-41060-1020-12/7027b3c785c62c4723bd0e42e3181aa86f12c5584381c4c3a1c6b86278463f66.jpg)

![ADLINK\nWatching\nPower\nDI/DO\nPower input\n24-110 VDC LAN3 LAN2 LAN1 COM](.ava-1000-50m-41060-1020-12/c53a3bdc198b921e9becd486081067114b3165d28deb105fcc4dc77749907cef.jpg)

# RS-485/422/232 Test

In the BIOS, select the serial port mode for each pin-definition wiring, and perform the tests according to the procedures below.

# 6.4.1 RS-485 Connector Pin Definitions and Wiring Methods

<table><tr><td>PIN</td><td>RS-232</td><td>RS-422</td><td>RS-485</td></tr><tr><td>8</td><td>GND</td><td>GND</td><td>GND</td></tr><tr><td>9</td><td>-</td><td>TX-</td><td>D-</td></tr><tr><td>10</td><td>-</td><td>RX-</td><td>-</td></tr><tr><td>11</td><td>RXD</td><td>TX+</td><td>D+</td></tr><tr><td>12</td><td>TXD</td><td>RX+</td><td>-</td></tr></table>

<table><tr><td>RS-485</td><td></td><td></td><td></td></tr><tr><td>AVA-1000</td><td></td><td></td><td>Device</td></tr><tr><td>PIN</td><td>RS-485</td><td></td><td>RS-485</td></tr><tr><td>8</td><td>GND</td><td></td><td>GND</td></tr><tr><td>9</td><td>D-</td><td></td><td>D-</td></tr><tr><td>10</td><td>-</td><td></td><td>-</td></tr><tr><td>11</td><td>D+</td><td></td><td>D+</td></tr><tr><td>12</td><td>-</td><td></td><td>-</td></tr></table>

<table><tr><td>RS-422</td><td></td><td></td><td></td></tr><tr><td>AVA-1000</td><td></td><td></td><td>Device</td></tr><tr><td>PIN</td><td>RS-422</td><td></td><td>RS-422</td></tr><tr><td>8</td><td>GND</td><td></td><td>GND</td></tr><tr><td>9</td><td>TX-</td><td></td><td>TX-</td></tr><tr><td>10</td><td>RX-</td><td></td><td>RX-</td></tr><tr><td>11</td><td>TX+</td><td></td><td>TX+</td></tr><tr><td>12</td><td>RX+</td><td></td><td>RX+</td></tr></table>

<table><tr><td rowspan="8"></td><td>RS-232</td><td></td><td></td><td></td></tr><tr><td>AVA-1000</td><td></td><td></td><td>Device</td></tr><tr><td>PIN</td><td>RS-232</td><td></td><td>RS-232</td></tr><tr><td>8</td><td>GND</td><td></td><td>GND</td></tr><tr><td>9</td><td>-</td><td></td><td>-</td></tr><tr><td>10</td><td>-</td><td></td><td>-</td></tr><tr><td>11</td><td>RXD</td><td></td><td>RXD</td></tr><tr><td>12</td><td>TXD</td><td></td><td>TXD</td></tr></table>

# AVA-1000 RS-485 port DQA test method

BIOS version: 1.00.10

OS version (BSP): AVA-1000 1v3 (\\adlink-fs1\SEC\SEC\_ReleaseForTPDC\AVA-1000 [5076]\BSP\ADLINK\x86\ubuntu\64bit\Image\1v3)

1. Please update the BIOS to v0.09.10 or later.

![Aptio Setup - AMI\nMain Advanced Chipset Security Boot Save & Exit\nBIOS Information\nBIOS Vendor\nBIOS Version\nBuild Date\nMRC Version\nGOP Version\nME FW Version\nAmerican Megatrends Inc.\n1.00.10\n05/09/2025\n0.0.4.74\n21.0.1063\n16.50.10.1351](.ava-1000-50m-41060-1020-12/b22fbb647fadbad680303c63637340891a2a317034ff90d344f5f4b1b9159067.jpg)

# 2. Set the serial port mode to RS-485.

Advanced > Miscellaneous > Serial Port Mode > RS485 Mode

![Advanced\nAptio Setup - AMI\nMiscellaneous\nPower Supply Unit	(ATX Mode)\nI2C Speed Control	(100 Kbps)\nWOL From S5	(ON)\nLID Function	(Disabled)\nSleep Function	(Enabled)\nPower Ignition Power-off delay	( 1 Minute)\ntime\nSerial Port Mode	(RS485 Mode)\nSerial Port Mode\nRS232 Mode\nRS485 Mode\nRS422 Mode](.ava-1000-50m-41060-1020-12/71ce703af6c6b1d137bc41f14cdd0a5f9cc3a60165d6ce66e401f6dabb766dcb.jpg)

# 3. In the OS, manage the RS-485 receive/transmit mode:

(1) Open Terminal
(2) Enter # sudo su
(3) Enter # echo 800 > /sys/class/gpio/export

(3.1) Receive data: # echo 1 > /sys/class/gpio/gpio800/value

(3.2) Transmit data: # echo 0 > /sys/class/gpio/gpio800/value

![root@adlink-ava-1000-1v3: /home/adlink\nadlink@adlink-ava-1000-1v3: \$ sudo su\nroot@adlink-ava-1000-1v3:/home/adlink# echo 800 ) /sys/class/gpio/export\nroot@adlink-ava-1000-1v3:/home/adlink# echo 1 ) /sys/class/gpio/gpio800/value\nroot@adlink-ava-1000-1v3:/home/adlink#](.ava-1000-50m-41060-1020-12/ce19d13737d8bba1dff41ffbb42c8639011987eda82e307ee76167215f4c8f03.jpg)

4. Open another terminal and use the sudo putty command to start the PuTTY program. Set PuTTY to: serial/dev/ttyS4.

![adlink@adlink-ava-1000-1v3: \$ sudo putty\nputty:2036): Gtk-CRITICAL **: 18:20:50.794: gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nputty:2036): Gtk-CRITICAL **: 18:20:50.792: gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nputty:2036): Gtk-CRITICAL **: 18:20:50.794: gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nPuTTY Configuration\nCategory:\n✓ Session\nLogging\n✓ Terminal\nKeyboard\nBell\nFeatures\n✓ Window\nAppearance\nBehaviour\nTranslation\nSelection\nColours\nFonts\n✓ Connection\nData\nProxy\n) SSH\nSerial\nTelnet\nBasic options for your PuTTY session\nSpecify the destination you want to connect to\nSerial line Speed\n/dev/ttyS4 9600\nConnection type:\n○ SSH Serial Other: Telnet\nLoad, save or delete a stored session\nSaved Sessions\nDefault Settings Load\nSave Delete\nClose window on exit:\n● Always Never Only on clean exit\nAbout Open Cancel](.ava-1000-50m-41060-1020-12/c2fca06349d5691c5078384a57209908867b4e5bac943b335933e5f6fee14001.jpg)

5. Refer to the attached RS-485 wiring diagram to connect the serial port of the other computer.

![DI/DO\nCOM](.ava-1000-50m-41060-1020-12/cf0f56e26cdae6c63cadc0f4ebe98c9f5b40fdb908ed750a4ef999f6e6ca60da.jpg)

![DI/DO\nCOM](.ava-1000-50m-41060-1020-12/415a306179a95dfdd54cc3fd1af2f2e46aa96e64ca9524860c0f599bde283479.jpg)

![PIN\n8\n9\n10\n11\n12\nRS-232\nGND\n-\nRXD\nTXD\nRS-422\nGND\nTX-\nRX-\nTX+\nRX+\nRS-485\nGND\nD-\n-\nD+\n-\nCOM\n-](.ava-1000-50m-41060-1020-12/d3acd3c8b8e72d898f92e54736e0842f5e63a7a5758c2e7ad561ed460f994217.jpg)

![Two ADLINK audio equipment units connected by wires and sensors, no visible text or symbols on the devices themselves.](.ava-1000-50m-41060-1020-12/46ceb4188bcf473355b8d014fc3959150586ccc0cd780435ce90f1e983e7383a.jpg)

6. To switch the RS-485 port’s receive/transmit commands, use Item 3 (3.1) or Item 3 (3.2).

(3.1) Receive data:
# echo 1 > /sys/class/gpio/gpio800/value
(3.2) Transmit data:
# echo 0 > /sys/class/gpio/gpio800/value

![Laboratory setup with electronic equipment and two computer monitors displaying data dashboards (no readable text or symbols on main components)](.ava-1000-50m-41060-1020-12/42b2ee952ef2eefed08c6d4b953e45a34b8ec5a8392f5f3e58a064502f4a6bd3.jpg)

![/dev/ttyS4 - PuTTY](.ava-1000-50m-41060-1020-12/1c73937daeb876b1c53c11c59ad5984f8546af9ca52d872e3feb4e2c6b1078ae.jpg)

# 6.4.2 RS-422 Connector Pin Definitions and Wiring Methods

# AVA-1000 RS-422 port DQA test method

BIOS version: 1.00.10

OS version(BSP): AVA-1000 1v3 (\\adlink-fs1\SEC\SEC\_ReleaseForTPDC\AVA-1000 [5076]\BSP\ADLINK\x86\ubuntu\64bit\Image\1v3)

1. Update the BIOS to v0.09.10 or later.

![Aptio Setup - AMI\nMain Advanced Chipset Security Boot Save & Exit\nBIOS Information\nBIOS Vendor American Megatrends Inc.\nBIOS Version 1.00.10\nBuild Date 05/09/2025\nMRC Version 0.0.4.74\nGOP Version 21.0.1063\nME FW Version 16.50.10.1351](.ava-1000-50m-41060-1020-12/4a1be28a848ff9fa6545c5052952e11903e5b0e711ed1f64ed2b6f01352a80f8.jpg)

# 2. Set the serial port mode to RS422.

Advanced > Miscellaneous > Serial Port Mode > RS422 Mode

![Aptio Setup - AMI\nAdvanced\nMiscellaneous\nPower Supply Unit	(ATX Mode)\nI2C Speed Control	(100 Kbps)\nWOL From S5	(ON)\nLID Function	(Disabled)\nSleep Function	(Enabled)\nPower Ignition Power-off delay	( 1 Minute)\ntime\nSerial Port Mode	(RS422 Mode)\nSerial Port Mode\nRS232 Mode\nRS485 Mode\nRS422 Mode](.ava-1000-50m-41060-1020-12/ec72a0167a6ad95eb57cae3348e8a6a1e490ad28093b6b56c3408ae1a5438d40.jpg)

# 3. In the OS, manage the RS-422 receive/transmit mode:

(1) Open Terminal
(2) Enter # sudo su
(3) Enter # echo 800 > /sys/class/gpio/export

# (3.1) Receive data:

\# echo 1 > /sys/class/gpio/gpio800/value

# (3.2) Transmit data:

\# echo 0 > /sys/class/gpio/gpio800/value

![root@adlink-ava-1000-1v3: /home/adlink\nadlink@adlink-ava-1000-1v3: \$ sudo su\nroot@adlink-ava-1000-1v3:/home/adlink# echo 800 ) /sys/class/gpio/export\nroot@adlink-ava-1000-1v3:/home/adlink# echo 1 ) /sys/class/gpio/gpio800/value\nroot@adlink-ava-1000-1v3:/home/adlink#](.ava-1000-50m-41060-1020-12/85243c91f547b429e4cac1c242b4201cdcd794f130125a77a585ed81f969e2b8.jpg)

4. Open another terminal and use the sudo putty command to start the PuTTY program. Set PuTTY to: serial/dev/ttyS4.

![adlink@adlink-ava-1000-1v3: \$ sudo su\nroot@adlink-ava-1000-1v3:/home/adlink# echo 800 ) /sys/class/gpio/export\nroot@adlink-ava-1000-1v3:/home/adlink# echo 1 ) /sys/class/gpio/gpio800/value\nroot@adlink-ava-1000-1v3:/home/adlink#\nadlink@adlink-ava-1000-1v3: \$ sudo putty\n(putty:2036): Gtk-CRITICAL **: 18:20:50.794: gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\n(putty:2036): Gtk-CRITICAL **: 18:20:50.792: gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\n(putty:2036): Gtk-CRITICAL **: 18:20:50.794: gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nPuTTY Configuration\nCategory:\n✓ Session\nLogging\n✓ Terminal\nKeyboard\nBell\nFeatures\n✓ Window\nAppearance\nBehaviour\nTranslation\nSelection\nColours\nFonts\n✓ Connection\nData\nProxy\n) SSH\nSerial\nTelnet\nBasic options for your PuTTY session\nSpecify the destination you want to connect to\nSerial line Speed\n/dev/ttyS#: 9600\nConnection type:\nSSH Serial Other: Telnet\nLoad, save or delete a stored session\nSaved Sessions\nDefault Settings Load\nSave Delete\nClose window on exit:\nAlways Never Only on clean exit\nAbout Open Cancel](.ava-1000-50m-41060-1020-12/3c93abfa1ac8ec5fc7e52a43febc70d188c9f545f806baa34a6849481550c372.jpg)

5. Refer to the attached RS-422 wiring diagram to connect the serial port of the other computer.

![DI/DO\nCOM\nDI/DO\nG2 12 11 10 9 8 7 G1\nCOM\nPIN RS-232 RS-422 RS-485\n8 GND GND GND\n9 - TX- D-\n10 - RX- -\n11 RXD TX+ D+\n12 TXD RX+ -](.ava-1000-50m-41060-1020-12/e53a62e3b3dabbdc3b8ae04c0c624e1f775d7c187a9be137eb5528017f2f28fa.jpg)

![Two ADLINK audio equipment units connected to a power input terminal, with visible wiring and connectors (no text or symbols on main components)](.ava-1000-50m-41060-1020-12/fd71b8a21617be9034ce49be11467ecac33d05be051567d0e2a6cda8bb3ab68a.jpg)

6. To switch the RS-422 port’s receive/transmit commands, use Item 3 (3.1) or Item 3 (3.2).

(3.1) Receive data:

\# echo 1 > /sys/class/gpio/gpio800/value

(3.2) Transmit data:

\# echo 0 > /sys/class/gpio/gpio800/value

![Laboratory setup with electronic equipment and two computer monitors displaying data dashboards (no readable text or symbols on main components)](.ava-1000-50m-41060-1020-12/9dbf673cca4fc12b331e8bf47d26c480043c6af8aa8003bff7bf87d2056cf895.jpg)

![/dev/ttyS4 - PuTTY](.ava-1000-50m-41060-1020-12/ce8dac81f71393262cc46ae00e7f1fbeb2cb793ed0fb98d1cd3d833e30e9dd70.jpg)

# 6.4.3 RS-232 Connector Pin Definitions and Wiring Methods

# AVA-1000 RS-232 port DQA test method

BIOS version: 1.00.10

OS version(BSP): AVA-1000 1v3 (\\adlink-fs1\SEC\SEC\_ReleaseForTPDC\AVA-1000 [5076]\BSP\ADLINK\x86\ubuntu\64bit\Image\1v3)

1. Please update the BIOS to v0.09.10 or later.

![Aptio Setup - AMI\nMain Advanced Chipset Security Boot Save & Exit\nBIOS Information\nBIOS Vendor American Megatrends Inc.\nBIOS Version 1.00.10\nBuild Date 05/09/2025\nMRC Version 0.0.4.74\nGOP Version 21.0.1063\nME FW Version 16.50.10.1351](.ava-1000-50m-41060-1020-12/36a0b21821f65545840ef96af3f7d5a796167419be9a4a8843d52a774b7466b7.jpg)

2. Set the serial port mode to RS-232.

Advanced > Miscellaneous > Serial Port Mode > RS232 Mode

3. In the OS, manage the RS-232 receive/transmit mode:

(1) Open Terminal
(2) Enter # sudo su
(3) Enter # echo 800 > /sys/class/gpio/export

(3.1) Receive data: # echo 1 > /sys/class/gpio/gpio800/value

(3.2) Transmit data: # echo 0 > /sys/class/gpio/gpio800/value

![root@adlink-ava-1000-1v3: /home/adlink\nadlink@adlink-ava-1000-1v3: \$ sudo su\nroot@adlink-ava-1000-1v3:/home/adlink# echo 800 ) /sys/class/gpio/export\nroot@adlink-ava-1000-1v3:/home/adlink# echo 1 ) /sys/class/gpio/gpio800/value\nroot@adlink-ava-1000-1v3:/home/adlink#](.ava-1000-50m-41060-1020-12/5fb74ec27ec8e60e62efb2b2a110b4434a40d61925f453b00699c3aef50849c9.jpg)

4. Open another terminal and use the sudo putty command to start the PuTTY program. Set PuTTY to: serial/dev/ttyS4.

![adlink@adlink-ava-1000-1v3: \$ sudo putty\nputty:2036): Gtk-CRITICAL **: 18:20:50.794; gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nputty:2036): Gtk-CRITICAL **: 18:20:50.792; gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nputty:2036): Gtk-CRITICAL **: 18:20:50.794; gtk_box_gadget_distribute: assertio\nn 'size )= 0' failed in GtkScrollbar\nPuTTY Configuration\nCategory:\n✓ Session\nLogging\n✓ Terminal\nKeyboard\nBell\nFeatures\n✓ Window\nAppearance\nBehaviour\nTranslation\nSelection\nColours\nFonts\n✓ Connection\nData\nProxy\n) SSH\nSerial\nTelnet\nBasic options for your PuTTY session\nSpecify the destination you want to connect to\nSerial line Speed\n/dev/ttyS4 9600\nConnection type:\n○ SSH Serial Other: Telnet\nLoad, save or delete a stored session\nSaved Sessions\nDefault Settings Load\nSave Delete\nClose window on exit:\n● Always Never Only on clean exit\nAbout Open Cancel](.ava-1000-50m-41060-1020-12/198c9c3856f3fef5957f3298d9d33d5e43c302cede7123fd6f07883e9ccbd23a.jpg)

5. Refer to the attached RS-232 wiring diagram to connect the serial port of the other computer.

![DI/DO\nCOM](.ava-1000-50m-41060-1020-12/dc8567e5c0926344e70bc340ba4ad5946e2dd78220dd6c4b75aab6e9f44bee16.jpg)

![DI/DO\nCOM](.ava-1000-50m-41060-1020-12/2f57b191dbc63e490b7dca9f39837658974edd7ace8b3fc6143349135799ab1f.jpg)

![PIN\nRS-232\nRS-422\nRS-485\n8\nGND\nGND\nGND\n9\n-\nTX-\nD-\n10\n-\nRX-\n-\n11\nRXD\nTX+\nD+\n12\nTXD\nRX+](.ava-1000-50m-41060-1020-12/e1cc1f5b737cf083375f53984b61b7d3ecd176d1fe265a601a21da530518f67e.jpg)

![Two electronic equipment units (ADLINK and AOLINK) with connected cables and connectors, placed on a purple surface (no visible text or symbols)](.ava-1000-50m-41060-1020-12/ee8d1c77dd7bd1b25de06e43717fa695359bae9e3fc4cdb27aa13d57d7bb45f5.jpg)

6. To switch the RS-232 port’s receive/transmit commands, use Item 3 (3.1) or Item 3 (3.2).

(3.1) Receive data:

\# echo 1 > /sys/class/gpio/gpio800/value

(3.2) Transmit data:

\# echo 0 > /sys/class/gpio/gpio800/value

![Laboratory setup with electronic equipment and two computer monitors displaying a webpage (no visible text on equipment or screens)](.ava-1000-50m-41060-1020-12/d41fa782920265d0e5a2dd3e5d1fc614a6c5a19024a71520f4b2c901dde96393.jpg)

![/dev/ttyS4 - PuTTY\nHELLO!](.ava-1000-50m-41060-1020-12/cd7829d2b63723b1d967464dbbeeb75a993ee3644a60b5adf1b4e0cbba08ecc6.jpg)

# 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.
► 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 cover ventilation 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) and connect it to a socket-outlet with earthing connection.
[> 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.
► A Lithium-type battery may be provided for uninterrupted backup or emergency power.

![The image displays a yellow triangle with a black border. Inside the triangle is a centered black exclamation point.](.ava-1000-50m-41060-1020-12/e0383151c0938c531533425a6909ad377c8358d3a579dceab658c7a93a95e79f.jpg)
CAUTION:

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

Risque d’explosion si la pile est remplacée par une autre de type incorrect. Veuillez jeter les piles usagées de façon appropriée.

► 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.

[> The equipment is not intended to be installed or used in a home, school, or public area accessible to the general population.
[> The knurled thumb screws with slotted heads for each Node module should be tightened with a tool after both initial installation and subsequent use.

► 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 therefore, 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.

► Please use an approved power source certified by IEC or UL. If you need an adapter, optional accessories, or further assistance, please contact ADLINK for more information.

![The image shows a yellow triangular warning sign with a thick black border. Inside the triangle is a black symbol consisting of three vertical wavy lines rising above a horizontal black line, which is the standard symbol for a hot surface.](.ava-1000-50m-41060-1020-12/27ebc190fe992ab7eb39ae1c58b9441ba9404ca17aae5e9f2641463f8f953b47.jpg)

# BURN HAZARD

Touching this surface could result in bodily injury. To reduce risk, allow the surface to cool before touching.

# RISQUE DE BRÛLURES

Ne touchez pas cette surface, cela pourrait entraîner des blessures. Pour éviter tout danger, laissez la surface refroidir avant de la toucher.

► Lisez attentivement ces consignes de sécurité
► Conservez le manuel de l'utilisateur pour pouvoir le consulter ultérieurement
Lisez la section Spécifications de ce manuel pour des informations détaillées sur l'environnement d'exploitation recommandé
Lors de l'installation/montage ou de la désinstallation/retrait de l'appareil ; ou lorsque le retrait d'un boîtier est nécessaire pour l'entretien par l'utilisateur (voir Mise en route) :
► Éteignez l'alimentation et débranchez tous les cordons/câbles d'alimentation.
► Réinstallez tous les panneaux du boîtier avant de remettre l'alimentation sous tension.
► Pour éviter les chocs électriques et/ou d’endommager l’appareil :

► Tenez l'appareil à l'écart de toute source d'eau ou de liquide
► Tenez l'appareil à l'écart d'une forte chaleur ou d'une humidité élevée
► Maintenez l'appareil correctement ventilé (n'obstruer ou ne couvrez pas les ouvertures de ventilation)
► Utilisez toujours les réglages de tension et de source d'alimentation recommandés
► Installez et utilisez toujours l'appareil près d'une prise de courant facilement accessible
Fixez le cordon d'alimentation (ne placez aucun objet sur/au-dessus du cordon d'alimentation) et connectez-le à une prise de courant avec mise à la terre

► N'essayez jamais de réparer l'appareil, qui doit être réparé uniquement par du personnel technique qualifié et utilisant des outils appropriés.

► Lors de l'installation/montage ou de la désinstallation/retrait d'un périphérique, ou lorsque le retrait d'un couvercle de châssis est requis pour l'entretien par l'utilisateur :
► Coupez l’alimentation et débranchez tous les cordons/câbles d’alimentation.

► Réinstallez tous les capots du châssis avant de rétablir l'alimentation. Installez/fixez et utilisez l'appareil uniquement sur des surfaces stables et/ou des supports recommandés.

► Si l'appareil n'est pas utilisé pendant une longue période, éteignez-le et débranchez-le de sa source d'alimentation.

► Une batterie de type lithium peut être fournie pour une alimentation de secours ou de secours ininterrompue.

► L'appareil doit être réparé par des techniciens agréés lorsque :
► Le cordon d'alimentation ou la fiche est endommagé.
► Du liquide est entré dans l’appareil. € L'appareil a été exposé à une humidité élevée et/ou à l'humidité.
► L'appareil ne fonctionne pas ou ne fonctionne pas conformément au manuel de l'utilisateur.

► L'appareil est tombé et/ou a été endommagé et/ou présente des signes évidents de casse.
► Débranchez le cordon d'alimentation avant de desserrer les vis moletées et fixez toujours les vis moletées avec un tournevis avant de démarrer le système.
L'équipement n'est pas destiné à être installé ou utilisé dans une maison, une école ou une zone publique accessible au grand public.
Les vis à molette avec têtes fendue pour chaque module Node doivent être serrées avec un outil après l'installation initiale et lors de l'utilisation suivante.
► Il est recommandé d'installer l'appareil uniquement dans une salle de serveurs ou une salle informatique dont l'accès est :

Réservé au personnel de service qualifié ou aux utilisateurs familiers avec les restrictions appliquées à l'emplacement, les raisons de celles-ci et les précautions requises.
Autorisé uniquement par l'utilisation d'un outil ou d'une serrure et d'une clé, ou d'autres moyens de sécurité, et contrôlé par l'autorité responsable du lieu.

Veuillez utiliser une source d'alimentation approuvée et certifiée par la norme IEC ou UL. Si vous avez besoin d'un adaptateur, d'accessoires en option ou d'une assistance supplémentaire, veuillez contacter ADLINK pour plus d'informations.

# Getting Services

Ask an Expert: https://www.adlinktech.com/en/Askanexpert

# ADLINK Technology, Inc.

Address: No. 66, Huaya 1st Road, Guishan District Taoyuan City 333, Taiwan

Tel: +886-3-216-5088

Fax: +886-3-328-5723

Email: service@adlinktech.com

# Ampro ADLINK Technology, Inc.

Address: 6450 Via Del Oro, San Jose, CA 95119-1208, USA

Tel: +1-408-360-0200

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

Fax: +1-408-600-1189

Email: info@adlinktech.com

# ADLINK Technology (China) Co., Ltd.

Address: 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

Address: Hans-Thoma-Strasse 8-10, 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.
[🔗 Link to the original document](.ava-1000-50m-41060-1020-12/ava-1000-50m-41060-1020-12.pdf)
