# NEON-2000-JT2-X Series

AI Smart Camera

User’s Manual

![Exterior view of a NEION optical sensor device with lens and connector (no readable text or symbols beyond branding)](.neon-2000-jt2-x-man-50-1z338-1000-10/1141d1945478d87c8f706a1c5a2cc58c257c691e17722613dc76323284b9c85a.jpg)

Manual Rev.: 1.0

Revision Date: October 27, 2020

Part No: 50-1Z338-1000

Revision History

<table><tr><td>Revision</td><td>Release Date</td><td>Description of Changes</td></tr><tr><td>1.0</td><td>2020-10-27</td><td>Initial version</td></tr></table>

# Preface

Copyright © 2020 ADLINK Technology, Inc.

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

# Disclaimer

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

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

# Environmental Responsibility

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

# Trademarks

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

# Conventions

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

![The image displays a graphic icon of a white document with a folded top-right corner. Faint gray horizontal lines run across the page, simulating text. A large, bold red checkmark is superimposed over the document, slanting upwards from the bottom left to the top right.](.neon-2000-jt2-x-man-50-1z338-1000-10/eee3b87faf3c8d6de1ddc9ffe63d169a333140105707ff36f47b3ff8cebbc525.jpg)
NOTE:

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

![A cropped image showing the top portion of a yellow triangular warning sign with a black border. Inside the triangle is a large black exclamation point. Above the triangle, a black horizontal line runs across the top edge of the image against a white background.](.neon-2000-jt2-x-man-50-1z338-1000-10/bf04a7446358b6a501426b7ff4241c65fc5599de6cec8af5fef9f07ddeab925a.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'exécution d'une tâche.

![The image shows a red triangle with a white border. Centered inside the triangle is a large white exclamation point. A black horizontal line runs across the very top edge of the image.](.neon-2000-jt2-x-man-50-1z338-1000-10/5c6d82e93592206cf484e5c982a5e25f30d160e255d5dfc1293991c91e88f097.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 blessures 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

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

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

# List of Figures ........ .... vii

# List of Tables...... ix

# 1 Introduction ......

1.1 Overview ...... 1
1.2 Features... 2
1.3 General Specifications.... 3
1.4 Mechanical Dimensions. 5

1.4.1 Camera Dimensions .... 5

1.5 Accessories ..... 6

# 2 Connectors and I/O ...... 7

2.1 Bottom Side I/O and Connector Description....... 8

2.1.1 DI/O Connector Pin Definitions.. 9
2.1.2 LAN Connector Pin Definitions .. . 11

2.2 Top Side LED Indicators.. 12
2.3 Front Side Description .. 13

# 3 Getting Started ..... 1 5

3.1 Mounting the Device .... 15

3.1.1 DIN Rail Mount .... .. 16

3.2 Digital I/O Connections . 17
3.3 Attaching a Lens ..... 18
3.4 Power and Peripheral Connections .... 1 9
3.5 Image Capture and Inference ..... 21

3.5.1 Executing the Sample Code . .. 21

3.5.2 Inference Concepts and Sample Code.......... .... 24
3.5.3 Image Inference Procedure .... .... 24

# 3.6 Using the Basler pylon Utility ...... . 26

3.6.1 Capturing Images in pylon..... .... 26
3.6.2 Modifying Image Sensor Settings in pylon................ 29
3.6.3 Using APIs to Modify Image Sensor Settings ........... 33

# 4 Software Upgrade .......... . 35

# 4.1 System Flash .... . 35

4.1.1 System Flashing Equipment... .... 36
4.1.2 System Flashing Procedure.... .... 37

# Important Safety Instructions......... . 39

# Consignes de Sécurité Importante ......... . 41

# Getting Service .......... 43

# List of Figures

Figure 2-1: NEON-2000-JT2-X Orientation.. 7

Figure 2-2: Bottom Side I/O and Connectors... 8

Figure 2-3: DI/O M12 17-Pin Connector .. . 9

Figure 2-4: LAN Connector .. . 11

Figure 2-5: Top Side LED Indicators..... .. 12

Figure 2-6: Front Side Components... . 13

Figure 3-1: NEON-2000-JT2-X Mounting Holes ..... .. 15

Figure 3-2: DIN Rail Mount (Separated) . 16

Figure 3-3: DIN Rail Mount (Assembled) . . 16

Figure 3-4: Digital Input Schematic Diagram ... . 17

Figure 3-5: Digital Output Schematic Diagram..... .. 17

Figure 3-6: Lens Attachment Assembly . . 18

Figure 3-7: Powered by AC/DC Adapter.. .. 19

Figure 3-8: Powered by USB Type-C Hub/Adapter .. .. 20

This page is intentionally left blank.

# List of Tables

Table 1-1: NEON-2000-JT2-X Model and Sensor Specifications 1
Table 1-2: NEON-2000-JT2-X Starter Kit Contents.... . 6
Table 2-1: Bottom Side Connectors and Functions .. 8
Table 2-2: DI/O M12 17-Pin Connector Pin Definitions ............. 10
Table 2-3: DI/O Connector Specifications ..... . 10
Table 2-4: LAN Connector Pin Definitions ... . 11
Table 2-5: Top Side LED Indicator Behavior ...... . 12
Table 2-6: Front Side Description .. . 13

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# 1 Introduction

# 1.1 Overview

The NEON-2000-JT2-X series is an open camera platform equipped with an NVIDIA® Jetson™ TX2 module to support a series of image sensors that provide industrial DI/O and image capture and inference capabilities. The NEON-2000-JT2-X is IP67-certified and is designed for deep learning inference and other vision applications that require a GPU at the edge in harsh environments. Ubuntu Linux, Jetpack, camera drivers, and utilities are pre-installed to save effort on integration and prevent compatibility issues. The following table lists the current NEON-2000-JT2- X models and their respective sensor specifications.

<table><tr><td>Model Name</td><td>Image Sensor Specifications</td><td>Image Sensor Module</td></tr><tr><td>NEON-201B-JT2-X</td><td>1/3&quot;, 1.2M, Global Shutter, 1280x960, 54fps, Color</td><td>Basler, DAA1280-54UC-CS</td></tr><tr><td>NEON-202B-JT2-X</td><td>1/1.8&quot;, 1.9M, Global Shutter, 1600x1200, 60fps, Color</td><td>Basler, DAA1600-60UC-CS</td></tr><tr><td>NEON-203B-JT2-X</td><td>1/3.7&quot;, 2M, Rolling Shutter, 1920x1080, 30fps, Color</td><td>Basler, DAA1920-30UC-CS</td></tr><tr><td>NEON-204B-JT2-X</td><td>1/2.5&quot;, 5M, Rolling Shutter, 2592x1944, 14fps, Color</td><td>Basler, DAA2500-14UC-CS</td></tr></table>

Table 1-1: NEON-2000-JT2-X Model and Sensor Specifications

# 1.2 Features

 IP67 (Ingress Protection)-certified, suited for harsh environments
 Pre-installed operating system, drivers, and utilities; deep learning sample code; plug and play
NVIDIA Jetson TX2 and dual-core NVIDIA Denver 2 + quad-core ARM Cortex-A57, 8GB 128-bit LPDDR4 memory and integrated 256-core Pascal GPU
 USB 3.0 sensor interface compatible with most machine vision software
 IP67 USB Type-C connector supports DC power and DisplayPort to reduce cabling
 IP67 M12 17-pin connector for DC 24V input, DI/O, and RS-232
 IP67 M12 8-pin connector for Gigabit Ethernet
 Highly integrated, compact system for easy deployment

# 1.3 General Specifications

 Lens mount: C-mount
 Total weight: 900g (with lens protector, without lens)
 Operating temperature: $4 5 \textdegree$ (tested when running YOLOv4; airflow 0.6 m/s)

 Power consumption: &lt;35W

 Compute module: NVIDIA Jetson TX2

 CPU: ARM Cortex-A57 MPCore (quad-core) and NVIDIA Denver 2 (dual-core)
 GPU: 256-core NVIDIA Pascal GPU
 Memory: 8 GB LPDDR4
 Storage: 32 GB eMMC (on Jetson TX2 module)

 Camera connectors and functions

 1x IP67 USB Type-C for power, DisplayPort, and USB 3.0
 1x IP67 M12 17-pin connector for DC 24V input, RS-232, and DI/O
 1x IP67 M12 8-pin connector for Gigabit Ethernet

![The image displays a simple digital icon featuring a white sheet of paper with a folded top-left corner and faint horizontal lines running across it. A large, bold red checkmark is superimposed over the document, extending from the bottom left to the upper right. The entire graphic is enclosed within a thin black square border.](.neon-2000-jt2-x-man-50-1z338-1000-10/2009cafd096e04122571eea4685c4120be9b261b2ef274498f1a3b2177585d45.jpg)
NOTE:

1. When powering from the DC 24V input, the USB Type-C connector can provide 3W of power to an external device such as a USB Type-C hub. Devices that require more than 3W cannot be used.
2. DC power can be supplied from either the USB Type-C port or the M12 17-pin connector.
3. Use only recommended ADLINK power adapters.

&lt;table&gt;<tr><td></td><td>NEON-201B-JT2-X</td><td>NEON-202B-JT2-X</td><td>NEON-203B-JT2-X</td><td>NEON-204B-JT2-X</td></tr><tr><td>Compute Module</td><td colspan="4">NVIDIA® JetsonTM TX2</td></tr><tr><td>Processor</td><td colspan="4">ARM Cortex-A57 and NVIDIA Denver 2</td></tr><tr><td>Display Output</td><td colspan="4">DisplayPort over USB Type-C, 1920x1080 @ 30fps</td></tr><tr><td>Image Sensor Resolution</td><td>1280x960</td><td>1600x1200</td><td>1920x1080</td><td>2592x1944</td></tr><tr><td>Image Sensor Size</td><td>1/3”</td><td>1/1.8”</td><td>1/3.7”</td><td>1/2.5”</td></tr><tr><td>Frame Rate (fps)</td><td>54</td><td>60</td><td>30</td><td>14</td></tr><tr><td>Shutter</td><td colspan="2">Global</td><td colspan="2">Rolling</td></tr><tr><td>Color/Mono</td><td colspan="4">Color</td></tr><tr><td>Image Sensor Trigger Mode</td><td colspan="4">External trigger (see note below), software trigger, free run</td></tr><tr><td>Digital Input</td><td colspan="4">2x DI, includes 1x sensor trigger</td></tr><tr><td>Digital Output</td><td colspan="4">2x DO, includes 1x strobe out</td></tr><tr><td>RS-232</td><td colspan="4">TXD, RXD, GND</td></tr><tr><td>Dimensions/Weight</td><td colspan="4">123 x 122.85 x 79.55mm; 900g</td></tr><tr><td>Power Supply</td><td colspan="4">DC power over USB Type-C or DC 24V over M12 17-pin connector</td></tr></table>

![This image features a white document icon with a folded top-left corner and faint horizontal lines. A large, red checkmark is prominently displayed in the center of the document.](.neon-2000-jt2-x-man-50-1z338-1000-10/d171c17f9a373ac09fe981b17d67cdfd36ad702d391c21095439af719107aff0.jpg)
NOTE:

In External Trigger Mode, you can adjust the sensor exposure time in the Basler pylon utility.

# 1.4 Mechanical Dimensions

This section provides dimensions and related mechanical information for the NEON-2000-JT2-X.

# 1.4.1 Camera Dimensions

![79.55\n123\nM4\nM4\nM4\n30\n36\n(14.3)](.neon-2000-jt2-x-man-50-1z338-1000-10/8b3be72f6a9bbef122a2d2206859fdb4317fff089b2faaebe4ad00a5e9ee4c19.jpg)

![122.85\n57.25\nNEON](.neon-2000-jt2-x-man-50-1z338-1000-10/0e9fd1ba445a7408bb5eca889a1486154bd0be6e83e9a798c2f641824104b83f.jpg)

Dimensions: mm

![M4\nM4\nM4\n31.5\n80\n64](.neon-2000-jt2-x-man-50-1z338-1000-10/55192be664dfdaf7249be6d72c9f652fc4028aa70ca067d40c7d2e2e60fee347.jpg)

# 1.5 Accessories

ADLINK provides all the necessary parts and accessories for the NEON-2000-JT2-X in the starter kit. You can purchase individual accessories according to your needs. The following table provides details about each item.

<table><tr><td>Item</td><td>Specification/Description</td><td>Part Number</td></tr><tr><td>IP67 USB Type-C cable</td><td>► Type-C (M) to Type-C (M) interface; 2m► Supports power, Display-Port, and USB 3.0</td><td>30-01335-0000-A0</td></tr><tr><td>IP67 Ethernet cable</td><td>► M12 A-code 8P (M) to RJ45 (M), 3m► Supports Gigabit Ethernet</td><td>30-01336-0000-A0</td></tr><tr><td>IP67 DI/O cable</td><td>► M12 A-code 17P (M) to DB37P (M), 3m► Supports DC24V, 2x DI/O, and 1x RS-232► NEON-side: 17P; other side: 37P to DIN-37-01</td><td>30-01337-0000-A0</td></tr><tr><td>Flash cable</td><td>► M12 A-code 17P (M) to USB 2.0 Type-A (M)/SWx2► For flashing the Jetson TX2</td><td>30-01338-0000-A0</td></tr><tr><td>DIN-37D-01 terminal board</td><td>I/O extension board for use with IP67 DI/O cable</td><td>91-14025-1020</td></tr><tr><td>Camera lens</td><td>8mm f/1.4, 2/3”</td><td>92-15731-0010</td></tr><tr><td>USB Type-C hub/adapter</td><td>For power and I/O connections</td><td>92-99090-1010</td></tr><tr><td>Lens cover</td><td>Lens protection; length 58mm</td><td>34-90110-0000</td></tr></table>

Table 1-2: NEON-2000-JT2-X Starter Kit Contents

# 2 Connectors and I/O

This chapter includes the locations and descriptions of the connectors and I/O on the NEON-2000-JT2-X.

![Top Side\nFront Side\nBack Side\nBottom Side\nTop Side\nBottom Side](.neon-2000-jt2-x-man-50-1z338-1000-10/e9b245eac6831c74ea98baf4ddb8d869a9d1305d4906bbd0316ec7b8630a8c46.jpg)

Figure 2-1: NEON-2000-JT2-X Orientation

# 2.1 Bottom Side I/O and Connector Description

![1\n2\n3\nDIVO\nType C\nLAN](.neon-2000-jt2-x-man-50-1z338-1000-10/7258c2e4d4baeb9008490f0563d64347848fbdb37787e1fc8261fd78ab364895.jpg)

Figure 2-2: Bottom Side I/O and Connectors

<table><tr><td>Item</td><td>Description</td></tr><tr><td>1</td><td>IP67 USB Type-C connector for power, DisplayPort, and USB 3.0</td></tr><tr><td>2</td><td>IP67 M12 17-pin connector for DC 24V input, 2x DI/O, and 1x RS-232</td></tr><tr><td>3</td><td>IP67 M12 8-pin connector for Gigabit Ethernet</td></tr></table>

Table 2-1: Bottom Side Connectors and Functions

![The image features a white rectangular shape representing a piece of paper with a folded top-right corner. Faint horizontal lines run across the paper. A large, thick red checkmark is placed diagonally across the center of the document.](.neon-2000-jt2-x-man-50-1z338-1000-10/fdb305b1b0f6df0eb52a7f034ec600ba0812a22f4792123ff9f0498c953526e8.jpg)
NOTE:

DC power can be supplied from either the USB Type-C port or the M12 17-pin connector.

# 2.1.1 DI/O Connector Pin Definitions

![1\n2\n3\n4\n5\n6\n7\n8\n9\n10\n11\n12\n13\n14\n15\n16](.neon-2000-jt2-x-man-50-1z338-1000-10/1cfec37afe1e39720951ec4f0f69e76119eb05f79903799032ce682e1c9bbfcb.jpg)

Figure 2-3: DI/O M12 17-Pin Connector

<table><tr><td>Pin</td><td>Type</td><td>Description</td></tr><tr><td>1</td><td>Bi-DIR</td><td>USB 2.0 D+ (for flashing the TX2)</td></tr><tr><td>2</td><td>Input</td><td>DC 24V input</td></tr><tr><td>3</td><td>Input</td><td>DC 24V input</td></tr><tr><td>4</td><td>Input</td><td>Digital input 0/Trigger input 0 (see Note 1)</td></tr><tr><td>5</td><td>Output</td><td>Digital output 0/Strobe output 0 (see Note 2)</td></tr><tr><td>6</td><td>Output</td><td>Digital output 1</td></tr><tr><td>7</td><td>--</td><td>Reserved</td></tr><tr><td>8</td><td>--</td><td>Reserved</td></tr><tr><td>9</td><td>Input</td><td>TX2 recovery (for flashing the TX2)</td></tr><tr><td>10</td><td>Bi-DIR</td><td>USB 2.0 D- (for flashing the TX2)</td></tr><tr><td>11</td><td>Input</td><td>USB 2.0 power (for flashing the TX2)</td></tr></table>

<table><tr><td>Pin</td><td>Type</td><td>Description</td></tr><tr><td>12</td><td>--</td><td>GND</td></tr><tr><td>13</td><td>Input</td><td>Digital input 1</td></tr><tr><td>14</td><td>Input</td><td>RS-232 RXD (PC&gt;NEON)</td></tr><tr><td>15</td><td>Output</td><td>RS-232 TXD (NEON&gt;PC)</td></tr><tr><td>16</td><td>Input</td><td>TX2 reset</td></tr><tr><td>17</td><td>--</td><td>GND</td></tr></table>

Table 2-2: DI/O M12 17-Pin Connector Pin Definitions

![The image displays a digital icon of a white document with a folded top-right corner. Faint horizontal lines run across the lower portion of the paper. A large, bold red checkmark is superimposed over the center of the document.](.neon-2000-jt2-x-man-50-1z338-1000-10/2a1594c433b694dd64d1711a0fdc7fdf4d44ee94806c4598ebc12eae94e6d457.jpg)
NOTE:

1. Pin 4 (Digital input 0/Trigger input 0) is programmable. When configured for trigger input, pin 4 is used for hardware triggering of the image sensor. Connect an external sensor signal to pin 4 and set the camera to hardware trigger mode to enable real-time or hardware-triggered image capture.
2. Pin 5 (Digital output 0/Strobe output 0) is programmable. When configured for strobe output, pin 5 can be connected to an LED /strobe controller to adjust the timing latency/delay according to the camera connected to pin 5.

<table><tr><td>I/O Category</td><td>Maximum Throughput</td><td colspan="3">Specifications</td></tr><tr><td>RS-232</td><td>-</td><td colspan="3">Baud rate: 9600bps @ 8N1</td></tr><tr><td rowspan="4">Digital Input</td><td rowspan="4">10 KHz</td><td>Common sharing:</td><td colspan="2">1 common for sharing ground</td></tr><tr><td>Input range:</td><td colspan="2">0-5 VDC</td></tr><tr><td>High level threshold:</td><td colspan="2">2-5 VDC</td></tr><tr><td>Low level threshold:</td><td colspan="2">0-0.8 VDC</td></tr><tr><td rowspan="2">Digital Output</td><td rowspan="2">10KHz</td><td rowspan="2">Open-collector</td><td>Input voltage range</td><td>3.3-30 VDC</td></tr><tr><td>Maximum sink current</td><td>100 mA</td></tr></table>

Table 2-3: DI/O Connector Specifications

# 2.1.2 LAN Connector Pin Definitions

![7\n1\n2\n6\n8\n3\n5\n4](.neon-2000-jt2-x-man-50-1z338-1000-10/3b357a59debac231372748c12f42c21dae196e7e6e2e29010edffddf10fcaa42.jpg)

Figure 2-4: LAN Connector

<table><tr><td>Pin</td><td>Description</td></tr><tr><td>1</td><td>MDI2-</td></tr><tr><td>2</td><td>MDI3+</td></tr><tr><td>3</td><td>MDI3-</td></tr><tr><td>4</td><td>MDI0-</td></tr><tr><td>5</td><td>MDI1+</td></tr><tr><td>6</td><td>MDI0+</td></tr><tr><td>7</td><td>MDI2+</td></tr><tr><td>8</td><td>MDI1-</td></tr></table>

Table 2-4: LAN Connector Pin Definitions

# 2.2 Top Side LED Indicators

![POWER / STATUS\nLAN](.neon-2000-jt2-x-man-50-1z338-1000-10/bd699ad1e1f5188fe2ec5efd9aba2a7b287d4983210a5fbff9802bf6e0ba6821.jpg)

Figure 2-5: Top Side LED Indicators

<table><tr><td>LED</td><td>Function</td><td>Description</td></tr><tr><td>LAN</td><td>Ethernet status indicator</td><td>► Red: Ethernet is active► Green: 100/1000 Mbps► Orange (Red/Green): Ethernet is working normally</td></tr><tr><td>POWER/STATUS</td><td>System and power indicator</td><td>► Red: System is ready► Green: Power on► Orange (Red/Green): Camera is working normally</td></tr></table>

Table 2-5: Top Side LED Indicator Behavior

# 2.3 Front Side Description

![1\n2\n3\nPOWER BALLS\n4W\nADLINK\nNEON](.neon-2000-jt2-x-man-50-1z338-1000-10/25a3d1d789b13ec22633b7789eb7fb909a4433bb7b62fca33b6be1820c500e03.jpg)

Figure 2-6: Front Side Components

<table><tr><td>Item</td><td>Description</td></tr><tr><td>1</td><td>C-mount type lens mount</td></tr><tr><td>2</td><td>Image sensor</td></tr><tr><td>3</td><td>Lens protector mounting thread (Metric thread: M60x1.5mm)</td></tr></table>

Table 2-6: Front Side Description

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# 3 Getting Started

# 3.1 Mounting the Device

The NEON-2000-JT2-X can be mounted using the mounting screw holes on either the front (A) or back (B) sides.

Le NEON-2000-JT2 peut être monté à l'aide des trous de vis de montage sur les côtés avant (A) ou arrière (B).

![This image displays two technical line drawings of an industrial component, likely a sensor or actuator, with dimensional annotations and screw specifications.\n\n**Top Drawing:**\n*   Shows a front view of a rectangular device with a central circular lens or window.\n*   **Dimensions:**\n    *   Width at the top: **79.55**\n    *   Total height on the right: **123**\n    *   Upper section height: **81**\n    *   Lower section height: **30**\n    *   Width of the bottom cable glands: **36**\n*   **Labels:** Four screw holes are marked with the letter **A** (two upper, two lower).\n*   **Text Annotation (Right):**\n    *   **A: 4x M4 screws, L=6mm**\n    *   **4x vis M4, L=6mm**\n\n**Bottom Drawing:**\n*   Shows a side view (or back view) featuring vertical heat sink fins.\n*   **Dimensions:**\n    *   Width at the bottom: **64**\n    *   Total height on the right: **123**\n    *   Upper section height: **31.5**\n    *   Lower section height: **80**\n*   **Labels:** Four screw holes are marked with the letter **B** (two upper, two lower).\n*   **Text Annotation (Bottom Right):**\n    *   **B: 4x M4 screws**\n    *   **4x vis M4, L=6m** (The text is slightly cut off at the end).](.neon-2000-jt2-x-man-50-1z338-1000-10/32d2022ebae48202c34bfc66b38a746961efc4931efb00458373af3cfa3b96d7.jpg)
,L=6mm 4x vis M4, L=6mm
rews,L=6mm 4x visM4,L=6mm

Figure 3-1: NEON-2000-JT2-X Mounting Holes

# 3.1.1 DIN Rail Mount

You can purchase a DIN rail kit and related accessories from ADLINK (P/N: 91-95281-000E).

![Technical line drawing of an electrical contactor assembly with mounting brackets and wiring (no text or labels)](.neon-2000-jt2-x-man-50-1z338-1000-10/b3ec34d654feb82e4d4592e452461f7fc558f680f20fde93443dde856d56b59a.jpg)

Figure 3-2: DIN Rail Mount (Separated)

![Technical line drawing of a mechanical component with mounting holes and a cylindrical shaft (no text or symbols)](.neon-2000-jt2-x-man-50-1z338-1000-10/4d675d1589dae658d5b36f3f85619850a35fba396152feeaae704de616004e49.jpg)

Figure 3-3: DIN Rail Mount (Assembled)

# 3.2 Digital I/O Connections

External devices such as trigger sensors, LED light controllers and relays can be connected to the NEON-2000-JT2-X to implement different applications. This section shows how to connect such devices.

![Camera Side\nDI 0,1 Max. 5V Control circuit\nVDD\nDI/O GND](.neon-2000-jt2-x-man-50-1z338-1000-10/deee11d4b34b022f3a66d66ed07c8a47d59731bfc115fa37fffecffeefa02b12.jpg)

Figure 3-4: Digital Input Schematic Diagram

![Camera Side\nOCP/OVP\nDO 0, 1\nMax. 100mA\nLoad\nControl circuit\nDC\nMax. 30V\nDI/O GND](.neon-2000-jt2-x-man-50-1z338-1000-10/1445a4322be9fac315098425f881451592f3ac8092b383d2e63eea27d550fc7a.jpg)

Figure 3-5: Digital Output Schematic Diagram

# 3.3 Attaching a Lens

The NEON-2000-JT2-X is compatible with C-mount type lenses.

![Washer\nTransfer Ring\nLens\nLens Cover](.neon-2000-jt2-x-man-50-1z338-1000-10/6d8c150e3866909260f4415cd9a84ccb178157f4590640d99e4e7b7d1e116809.jpg)

Figure 3-6: Lens Attachment Assembly

![The image features a white sheet of paper icon with a folded top-left corner. Faint grey horizontal lines run across the lower portion of the paper. A large, bold red checkmark is superimposed over the document, slanting from the bottom left to the top right.](.neon-2000-jt2-x-man-50-1z338-1000-10/2a703c3031fe6d779d42d7712f149e609a5a79b9ef93c2da1f7003a75fea5e1e.jpg)
NOTE:

The transfer ring is preinstalled. The washer is used only with the NEON-202B-JT2-X.

# 3.4 Power and Peripheral Connections

The NEON-2000-JT2-X can be powered from either a USB Type-C adapter or the DI/O M12 17-pin connector (24V DC input). The USB Type-C connector also supports DisplayPort video signal and USB 3.0, which can be used to connect a keyboard and mouse. The following figures show examples of power and peripheral connection configurations.

![The flowchart illustrates connections between various devices and a hardware unit (shown on the right) with three ports labeled 'DIO', 'Type C', and 'LAN'.\n\n**Labeled Blocks:**\n*   RS-232 Devices\n*   External I/O Devices or Trigger\n*   AC Power\n*   AC/DC Adapter\n*   DIN-37-01\n*   HDMI Monitor\n*   USB Type-C Hub/Adapter\n*   USB Keyboard & Mouse\n\n**Connections:**\n*   **RS-232 Devices** and **External I/O Devices or Trigger** both connect to **DIN-37-01**.\n*   **AC Power** connects to **AC/DC Adapter**, which connects to **DIN-37-01**.\n*   **DIN-37-01** connects to the **DIO** port via a green line labeled **DI/O Cable**.\n*   **HDMI Monitor** and **USB Keyboard & Mouse** both connect to **USB Type-C Hub/Adapter**.\n*   **USB Type-C Hub/Adapter** connects to the **Type C** port via a blue line labeled **USB Type-C Cable**.](.neon-2000-jt2-x-man-50-1z338-1000-10/16596476bc86a163403f4b35abb3484096f9f216f23ce448c39b9a49289c0ff3.jpg)

![The image displays a white square icon featuring a document with horizontal lines and a large red checkmark in the center. Below the icon is the text 'NOTE:' in black capital letters.](.neon-2000-jt2-x-man-50-1z338-1000-10/5b45008decabe30b6ff2abb5333a5e6971f5d27075ed295320ce1b3bd7189b28.jpg)

This configuration requires an ADLINK AC/DC power adapter (P/N: 31-62138-0000) and I/O extension board DIN-37-01 (P/ N: 91-14025-1020).

Do not supply power to the camera from the AC/DC adapter and the USB Type-C hub/adapter at the same time.

Figure 3-7: Powered by AC/DC Adapter

![This diagram illustrates the connections between peripheral devices and a hardware unit featuring three ports labeled **DIO**, **Type C**, and **LAN**.\n\n**Labeled Blocks:**\n*   RS-232 Devices\n*   External I/O Devices\n*   DIN-37-01\n*   AC Power\n*   HDMI Monitor\n*   USB Keyboard & Mouse\n*   USB Type-C Hub/Adapter\n\n**Connections:**\n*   **RS-232 Devices** connects to **DIN-37-01**.\n*   **External I/O Devices** connects to **DIN-37-01**.\n*   **DIN-37-01** connects via a green line labeled **DI/O Cable** to the **DIO** port.\n*   **AC Power** connects to **USB Type-C Hub/Adapter**.\n*   **HDMI Monitor** connects to **USB Type-C Hub/Adapter**.\n*   **USB Keyboard & Mouse** connects to **USB Type-C Hub/Adapter**.\n*   **USB Type-C Hub/Adapter** connects via a blue line labeled **USB Type-C Cable** to the **Type C** port.](.neon-2000-jt2-x-man-50-1z338-1000-10/cb84903f38f6e28bb9c2561bb211d819113346259a5e0e6b8ad8b1d48426d90f.jpg)

![A white document icon with a folded top-left corner and horizontal lines, featuring a large red checkmark drawn over it.](.neon-2000-jt2-x-man-50-1z338-1000-10/c2420a6ce426fba0f59e1024c4992b1deaac8931a5bca6677fc495ff11384341.jpg)
NOTE:

This configuration requires an ADLINK USB Type-C hub/ adapter (P/N 92-99090-1010).

Do not supply power to the camera from the AC/DC adapter and the USB Type-C hub/adapter at the same time.

Figure 3-8: Powered by USB Type-C Hub/Adapter

# 3.5 Image Capture and Inference

ADLINK provides sample code files for testing the built-in Basler image capturing and inference functions on the NEON-2000-JT2-X. This section describes how to execute the classification sample code with the NEON-2000-JT2-X.

# 3.5.1 Executing the Sample Code

1. Right-click the Capture\_and\_inference\_Sample folder on the desktop and select Open in Terminal.

![NVIDIA\nJetson\nDeveloper\nZone\nOpen\nReturn\nOpen In New Tab\nCtrl+Return\nOpen In New Window\nShift+Return\nOpen With Other Application\nCut\nCtrl+X\nCopy\nCtrl+C\nMove to...\nCopy to...\nMove to Trash\nDelete\nResize Icon...\nRename...\nF2\nCompress...\nRevert to Previous Version...\nLocal Network Share\nSend to...\nOpen in Terminal\nProperties\nCtrl+I\nChromium\nWeb\nBrowser\nCapture_\nInference_\nSample](.neon-2000-jt2-x-man-50-1z338-1000-10/b5c1302c9944d83765ae261ddc693ea29ba91dd1cdc3018edef476435b5842d7.jpg)

2. Enter and execute the following command:

./build/aarch64/bin/imagenet-camera [Sensor\_width] [Sensor\_height]

[Sensor\_width] and [Sensor\_height] are based on the camera model and sensor settings. For example, for the NEON-203B-JT2X, the command would be:

./build/aarch64/bin/imagenet-camera 1920 1080

![/build/aarch64/bin/magenet-camera 1920 1080](.neon-2000-jt2-x-man-50-1z338-1000-10/77262971d4d8764531a3126003c090550572daf00bc6c1220e812d5650572671.jpg)

Image capture and inference results will appear in a new window, with the inference result in the upper-left corner.

![70.61% mouse, computer mouse\n(Camera) Unlncgrubbed\n(Camera) WiD5: 1929, web\n(Camera) buffer address\nlass 808: 0.013359 C\nlass 8013: 0.010466 C\nlass 8073: 0.074685 C\nlass 8718: 0.024682 C\nlass 8763: 0.014336 C\nlass 8844: 0.157715 C\nlass 8859: 0.013466 C\n(Progmet-camera): 87.699\n(Camera) Unlncgrubbed\n(Camera) WiD5: 1929, web\n(Camera) buffer address\nlass 8088: 0.010466 C\nlass 8073: 0.740855 C\nlass 8718: 0.016359 C\nlass 8763: 0.013359 C\nlass 8844: 0.154294 C\n(Progmet-camera): 70.699\n(Camera) Unlncgrubbed\n(Camera) WiD5: 1929, web\n(Camera) buffer address](.neon-2000-jt2-x-man-50-1z338-1000-10/19ce6c129530734bb04bdd49ed49fb0bd254db5d10e9852d0f7a62b2285742a2.jpg)

You can also modify the Sensor\_width and Sensor\_height settings in the pylon Viewer utility.

![pylon Viewer 64-Bit\nFile View Camera Tools Window\nDevices\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nAuto-Scan\nFeatures\nSearch (Ctrl+F)\nFeature	Value\nFavorites\nBasler daA1920-30ucADL (23337875)\nAnalog Control\nImage Format Control\nSensor Width	1920\nSensor Height	1080\nWidth Max	1920\nHeight Max	1080\nWidth	1920\nHeight	1080\nOffset X	0\nOffset Y	0\nBinning Horizontal	1\nBinning Vertical Mode	Average\nBinning Vertical	1\nReverse X\nReverse Y\nUser Level: Guru	Show Unavailable Favorites	Pgiling\nBASLER?](.neon-2000-jt2-x-man-50-1z338-1000-10/a04a4132c6b4e205e1be5ef49a36adba59ee03fea2354bcd72add4fc29ae8c22.jpg)

For details, see Modifying Image Sensor Settings in pylon.

# 3.5.2 Inference Concepts and Sample Code

This section illustrates the main concepts of inference with sample files and also provides a link to examples from NVIDIA. The default path of the sample files is /home/Desktop/Capture\_and\_ Inference\_Sample.

The following folders and files in this directory are essential for image capture and inference tasks:

 System requirements and sample build-up procedures:

/Capture\_and\_Inference\_Sample /README.md

 Pre-training model for image classification:

/Capture\_and\_Inference\_Sample/data/networks

 Sample code:

/Capture\_and\_Inference\_Sample/examples/imagenet-camera/imagenet-camera.cpp

 Capturing images:

/Capture\_and\_Inference\_Sample/utils/camera/indCamera.cpp

 Execution file:

/Capture\_and\_Inference\_Sample/build/aarch64/bin/imagenet-camera

To learn more about image sensors, samples and documents are included in /opt/pylon5. For more samples relating to image inference, NVIDIA provides examples at https://github.com/dusty-nv/ jetson-inference.

# 3.5.3 Image Inference Procedure

Use these steps to set up a streaming camera and to display and classify an image inference.

1. Create a camera.

ADLINK provides indcamera.cpp and indcamera.h, which package several pylon APIs for developers to create custom applications for the NEON-2000-JT2-X.

2. Create an ImageNet.

Make sure to create an inference model before using it. This sample uses ImageNet as an example.

# 3. Start streaming.

In this sample, the NEON-2000-JT2-X is in free run mode and frames are passed one at a time. You can set the pixel format of the camera output to RGB mode in pylon Viewer via Features > Basler [Product Name] > Image Format Control > Pixel Format > RGB8.

# 4. Classify the image.

The image source can be defined as either from the NEON-2000- JT2-X or storage media. The following commands will result in errors if the NEON-2000-JT2-X sensor is still connected to pylon Viewer. If an error occurs, disconnect the camera by clicking Close Camera in pylon Viewer:

```txt
./build/aarch64/bin/imagenet-camera [input_width]
[input_height]
./build/aarch64/bin/imagenet-console [input_image]
[output_image]
```

CD:

```txt
~/Desktop/Capture_and_Inference Sample/
```

# 5. Update the display.

Draw frames and the inference result using OpenGL.

# 3.6 Using the Basler pylon Utility

This section describes how to use the Basler pylon utility to capture images and adjust, load, and save sensor settings.

# 3.6.1 Capturing Images in pylon

The following steps illustrate how to capture images using the Basler pylon Viewer application.

1. Click the pylon Viewer icon.

![pylon Viewer](.neon-2000-jt2-x-man-50-1z338-1000-10/d73dae586505cb8e989c03a524d90925962cd0f47872824c8f1fe00f99faa010.jpg)

2. Select the sensor name and click the Open Camera button to open the camera.

![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nDevice Open Camera\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nAuto-Scan](.neon-2000-jt2-x-man-50-1z338-1000-10/531a0c3acf3ff5a77106a7f8cdb379065a54d275ff45e671b4e5b06ea9089452.jpg)

![The image features a white document icon with a folded top-left corner and horizontal grey lines representing text. A large, bold red checkmark is superimposed over the document, slanting upwards from the bottom left to the top right.](.neon-2000-jt2-x-man-50-1z338-1000-10/f9ad8937d624039de001e5945c17462b20458d3874d35653632ba3b3d1fb24b1.jpg)
NOTE:

Basler daA1920-30ucADL is the image sensor for the NEON-203B-JT2-X and NEON-204B-JT2-X. The sensor name that appears will reflect the model being used.

3. Click the Single Shot or Continuous Shot button to capture images.

![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nDevices\nSingle Shot\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nAuto-Scan](.neon-2000-jt2-x-man-50-1z338-1000-10/cdac563fdc31c5009bf1412b43811d38ca67f7e73dbceb036053bc15e5cf3487.jpg)

Single Shot
![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nDevices Continuous Shot\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nAuto-Scan](.neon-2000-jt2-x-man-50-1z338-1000-10/c23986ba10b1d227027cde5b018ca7cfb82e4f09d074c1e402a798a6dceb9bf8.jpg)

Continuous Shot

The camera will capture images and display activity according to the selected option.

![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nDevices\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nFeatures\nSearch (Out+F)\nFeature Value\nFavorites\nBasler daA1920-30ucADL (23337875)\nImages: 1, tors: 0 1920 x 1080](.neon-2000-jt2-x-man-50-1z338-1000-10/71b498ca58da426d29437a28ae1af65cbe203cf36eaac0b90c5659b6d0681518.jpg)

Single Shot
![pylon Viewer 64-Bit\nFile View Camera Tools Window I\nDevices\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nFeatures\nSearch (C314-F)\nFeature Value\nFavorites\nBasler daA1920-30ucADL (23337875)\nAuto Scan\nImages: 2.877; Errors: 0 1920 x 1080\n29.4 fps (121.8 MB/s)](.neon-2000-jt2-x-man-50-1z338-1000-10/3edd172a7269c0facdaa1e8c4ec45b46bda7b8c36f925425ca9451aa04a5b1a4.jpg)

Continuous Shot

# 3.6.2 Modifying Image Sensor Settings in pylon

The default NEON-2000-JT2-X image sensor settings may not be suitable for all applications. This section illustrates how to modify image sensor settings in the Basler pylon utility.

1. Click the pylon Viewer icon.

![pylon Viewer](.neon-2000-jt2-x-man-50-1z338-1000-10/99c2045521ff94e3818fc0d51562dff9f777de45737e6edb92e8f135b5a051b6.jpg)

2. Select the sensor name and click the Open Camera button to open the camera.

![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nDevice Open Camera\nGigE\nUSB\nBasler daA1920-30ucADL (23337875)\nAuto-Scan](.neon-2000-jt2-x-man-50-1z338-1000-10/65b60ad98a49185ead70de8869acf7499f003895e7918141245d9545d1157118.jpg)

![The image features a stylized icon of a piece of white paper with light grey horizontal lines. Superimposed on the document is a large, bold red checkmark. Below the graphic, the text 'NOTE:' appears in black, uppercase letters.](.neon-2000-jt2-x-man-50-1z338-1000-10/f00abb7795aab1a67bd3622bcfa5ee49cb939bdecf97b509634bb01bae95704d.jpg)

Basler daA1920-30ucADL is the image sensor for the NEON-203B-JT2-X and NEON-204B-JT2-X. The sensor name that appears will reflect the model being used.

# 3. Click Camera > Load Features...

![pylon Viewer 64-Blt\nFile View Camera Tools Window ?\nOpen Ctrl+O\nClose Ctrl+L\nSingle Shot F6\nContinuous Shot F7\nStop F8\nAutomatic Image Adjustment\nVometting Correction\nLoad Features...\nSave Features...\nFile Access...\nCopy Camera Features Ctrl+Shift+C\nAdd Remote GigE Camera... F12\nFeatures Search (Ctrl) Value\nFavorites\nBasler daA1920-30ucADL (23337875)\nBASLEF](.neon-2000-jt2-x-man-50-1z338-1000-10/8e7c35f9b8413f44e539efbc023709d31d1763eebc302416cf9b20f650d8993b.jpg)

# 4. Select the desired \*.pfs file and click Open to load the sensor settings.

![Load File\nLook in: /home/adlink\nComputer\nadlink\nName	Size	Type	Date Modified\nADLINK	Folder	26 Aug...:32:20\nDesktop	Folder	10 Sep ...7:01:02\nDocuments	Folder	20 Aug...:17:43\nDownloads	Folder	20 Aug...:17:43\ngenicam_xml_cache	Folder	26 Aug...:29:14\nMusic	Folder	20 Aug...:17:43\nPictures	Folder	10 Sep ...6:36:47\nPublic	Folder	20 Aug...:17:43\nTemplates	Folder	20 Aug...:17:43\nVideos	Folder	20 Aug...:17:43\nVisionWorks_SEM_0.90_Samples	Folder	20 Aug...:46:04\ndaA1920-30ucADL_23337875.pfs	3 KB pfs File	10 Sep ...7:12:35\ndaA1920-30ucADL_23337876.pfs	3 KB pfs File	10 Sep ...7:13:05\nFile name: daA1920-30ucADL_23337875.pfs\nFiles of type: Pylon Feature Stream (*.pfs)\nOpen\nCancel](.neon-2000-jt2-x-man-50-1z338-1000-10/6dee0619bc66d8b4d7ab7562a2998387767b95c5d8478ddad32a1c9867322e2d.jpg)

The image sensor settings will update and appear under Features in the main window.

![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nDevices\nGigE\nUSB\nBasier daA1920-30ucADL (23337875)\nFeatures\nSearch (Ctrl+F)\nFeature Value\nBasler daA1920-30ucADL (23337875)\nAnalog Control\nGain Selector All\nGain (dB) 0.0\nGain Auto Off\nAuto Gain Lower Limit ... 0.0\nAuto Gain Upper Limit ... 24.014275\nUser Level: Guru Show Unavailable Favorites Pglling\nMessage Log\nLevel Time Source Message\nInformation 2020-09-14 09:52:44.774 Basler daA1920-30ucADL (23337875) 'Basler daA1920-30ucADL (23337875)' has been opened.\nInformation 2020-09-14 09:52:39.794 Basler daA1920-30ucADL (23337875) 'Basler daA1920-30ucADL (23337875)' has been detected.\nInformation 2020-09-14 09:52:39.437 pylon Viewer pylon Viewer 5.2.0.13457 64-Bit has been started.\nMessage Log Feature Documentation](.neon-2000-jt2-x-man-50-1z338-1000-10/d603bc6cc01c142b775c7b7bdc25a2a9820fdd5d31f947561a53dfacf76fd498.jpg)

5. Modify the image sensor settings as needed.
6. Click Camera > Save Features.

![pylon Viewer 64-Bit\nFile View Camera Tools Window ?\nOpen Ctrl+O\nClose Ctrl+L\nSingle Shot F6\nContinuous Shot F7\nStop F8\nAutomatic Image Adjustment\nVignetting Correction\nLoad Features...\nSave Features...\nFile Access...\nCopy Camera Features Ctrl+Shift+C\nAdd Remote GigE Camera... F12\nFeatures Search (Ctrl) Value\nFavorites\nBasler daA1920-30ucADL (23337875)\nBASLEF](.neon-2000-jt2-x-man-50-1z338-1000-10/266586bf10ce81a34906a52337b1cbb776a6721c9d45c85d7199821cdde1faf3.jpg)

7. Select a location, specify a name for the \*.pfs file, and click Save to save the sensor settings.

![Save File As\nLook in: /home/adlink\nComputer\nadlink\nName Size Type Date Modified\nADLINK Folder 26 Aug...:32:20\nDesktop Folder 10 Sep ...7:01:02\nDocuments Folder 20 Aug...:17:43\nDownloads Folder 20 Aug...:17:43\ngenicam_xml_cache Folder 26 Aug...:29:14\nMusic Folder 20 Aug...:17:43\nPictures Folder 10 Sep ...6:36:47\nPublic Folder 20 Aug...:17:43\nTemplates Folder 20 Aug...:17:43\nVideos Folder 20 Aug...:17:43\nVisionWorks-SFM-0.90-Samples Folder 20 Aug...:46:04\ndaA1920-30ucADL_23337875.pfs 3 KB pfs File 10 Sep ...7:12:35\ndaA1920-30ucADL_23337876.pfs 3 KB pfs File 10 Sep ...7:13:05\nFile name: daA1920-30ucADL_23337875 Save\nFiles of type: Pylon Feature Stream (*.pfs) Cancel](.neon-2000-jt2-x-man-50-1z338-1000-10/ac030e63efc1c52e610316f6bad82f5945348e083a2a0c249e362605c4d98de9.jpg)

# 3.6.3 Using APIs to Modify Image Sensor Settings

After opening the device, you can add the PylonFeaturePersistenceLoad function to load features and modify the image sensor settings.

You can find supporting documentation and additional sample code in the following directories:

• /opt/pylon5/share/doc/C
• /opt/pylon5/Samples/C

This page is intentionally left blank.

# 4 Software Upgrade

Each NEON-2000-JT2-X comes with Ubuntu and Jetpck preinstalled. ADLINK builds custom flash files to upgrade the NEON-2000-JT2-X based on NVIDIA’s release schedule.

# Important Notice

NVIDIA official operating system releases for the Jetson TX2 development kit CANNOT be used on the NEON-2000-JT2-X. Be sure to upgrade the NEON-2000-JT2-X with an operating system or flash file ONLY from ADLINK.

DO NOT use the NVIDIA SDK manager to upgrade the NEON-2000-JT2-X.

# 4.1 System Flash

This section describes the equipment and procedures required to flash the NEON-2000-JT2-X OS image.

# 4.1.1 System Flashing Equipment

The following table lists the required tools for flashing the NEON-2000-JT2-X OS image.

<table><tr><td>Item</td><td>Description</td><td>Note</td></tr><tr><td>1</td><td>1x Host PC</td><td>Minimum requirements:► Intel® CoreTM i3 CPU, 4 GB DDR and 128 GB of free SSD/HDD space.► Ubuntu Desktop 16.04 or 18.04</td></tr><tr><td>3</td><td>System Flash Cable</td><td>&lt;img src="images/2e7ba02c0fb0e79494c55dac224d6e521d977c7e3cea866fc8c6979bef6da90e.jpg"/&gt;ADLINK P/N: 30-01338-0000-A0</td></tr></table>

# 4.1.2 System Flashing Procedure

This section illustrates how to flash the NEON-2000-JT2-X OS image. Ensure that you have obtained the correct image file from ADLINK and have saved it to the host PC before performing the following procedure.

1. Connect the M12 17-pin connector (male) on the system flash cable to the DI/O input on the bottom side of the NEON-2000-JT2-X.

![DI/O\nType C\nLAN](.neon-2000-jt2-x-man-50-1z338-1000-10/8a3bdee3fca403d11501c63a12d4187287284d826f3841939fa4aa8d4d866be4.jpg)

2. Power on the NEON-2000-JT2-X and wait for the status LED to solid light orange (not flashing).
3. Connect the NEON-2000-JT2-X to the host PC using the system flash cable.
4. Enter Recovery Mode using the system flash cable.
5. Press and hold the black button for at least three seconds.
6. With the black button depressed, press the red button, and then release the black button.
7. Execute the Isusb command on the host PC. If "NVIDIA Corp." appears on the list, then the NEON-2000-JT2-X has successfully entered Recovery Mode.

![adlink@adlink-MXC6400: ~\nFile Edit View Search Terminal Help\nadlink@adlink-MXC6400:~\$ lsusb\nBus 002 Device 001: ID 1d6b:0003 Linux Foundation 3.0 root hub\nBus 001 Device 006: ID 0955:7020 Nvidia Corp.\nBus 001 Device 005: ID 046d:c31c Logitech, Inc. Keyboard K120\nBus 001 Device 004: ID 045e:00cb Microsoft Corp. Basic Optical Mouse v2.0\nBus 001 Device 001: ID 1d6b:0002 Linux Foundation 2.0 root hub\nBus 004 Device 001: ID 1d6b:0003 Linux Foundation 3.0 root hub\nBus 003 Device 002: ID 064f:2af9 WIBU-Systems AG\nBus 003 Device 001: ID 1d6b:0002 Linux Foundation 2.0 root hub\nadlink@adlink-MXC6400:~\$](.neon-2000-jt2-x-man-50-1z338-1000-10/834395cf7e6eb6081d814986a2d9c7d615207b4e9245ccc6ec5f14f145bbf165.jpg)

8. Navigate to the directory containing the flash file and execute the flash script to begin the flashing process.

cd Linux\_for\_Tegra.NEON.32.2\_20190828/bootloader sudo ./multi\_tegra\_flash.sh

![adlink@adlink-MXC6400: ~/Linux_for_Tegra.NEON.32.2_20190828/bootloader\nFile Edit View Search Terminal Help\nadlink@adlink-MXC6400:~\$ cd Linux_for_Tegra.NEON.32.2_20190828/bootloader/\nadlink@adlink-MXC6400:~/Linux_for_Tegra.NEON.32.2_20190828/bootloader\$ sudo ./multi_tegra_flash.sh\nStart flashing; PID=5135\nStart flashing device: 1-6, PID: 5180\nOngoing processes: 5180\nOngoing processes: 5180\nOngoing processes: 5180\nOngoing processes: 5180\nHOST PC](.neon-2000-jt2-x-man-50-1z338-1000-10/c76f9536c079ef3c968b1a1c03ca28f4eab6f247917ccdae1c3c73e4d4e85b60.jpg)

![The image displays a simple icon of a white document or sheet of paper with a folded top-right corner. Horizontal gray lines run across the page, representing text. A large, bold red checkmark is drawn diagonally across the document.](.neon-2000-jt2-x-man-50-1z338-1000-10/69921ad3c9f7ed8ba7307d22506448a701abd3f15f3f34a2e9489391aa93058d.jpg)
NOTE:

The names of the directory and flash file in this example are for illustration only. Directory and flash file names will vary according to your system configuration and the specific flash file used.

The system flash process is now started. The flash process takes about twelve minutes to complete.

# Important Safety Instructions

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

 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
 Operating temperature: $\mathtt { 3 5 ^ { \circ } C }$ with USB Type-C hub/adapter or $4 0 \%$ with the AC/DC adapter.
When installing/mounting or uninstalling/removing device; or when removal of a chassis cover is required for user servicing:

 Turn off power and unplug any power cords/cables
 Reinstall all chassis covers before restoring power

 To avoid electrical shock and/or damage to device:

 Keep device away from water or liquid sources
 Keep device away from high heat or humidity
 Keep device properly ventilated (do not block or coverventilation openings)
 Always use recommended voltage and power source settings
 Always install and operate device near an easily accessible electrical outlet
 Secure the power cord (do not place any object on/over the power cord)
 Only install/attach and operate device on stable surfaces and/or recommended mountings

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

Never attempt to repair the device, which should only be serviced by qualified technical personnel using suitable tools

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

![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.](.neon-2000-jt2-x-man-50-1z338-1000-10/77e70cfe4eabf042e4feae4eb2bb3eef2954fd617b0b3fc5261d064c987ab220.jpg)

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

 The device must be serviced by authorized technicians when:

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

Disconnect the power supply cord before loosening the thumbscrews and always fasten the thumbscrews with a screwdriver before starting the system up

 It is recommended that the device be installed only in a server room or computer room where access is:

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

 It is recommended that the device be installed in Information Technology Rooms that are in accordance with Article 645 of the National Electrical Code and NFPA 75.

![Yellow triangular warning sign with black smoke symbol indicating hot weather](.neon-2000-jt2-x-man-50-1z338-1000-10/501fb5e592f0256ff88f9d7594860cc321ac11873a9306381b7662c7ed62e3c6.jpg)

# BURN HAZARD

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

# Consignes de Sécurité Importante

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.

 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.
Température de fonctionnement: 35 ° C avec adaptateur / concentrateur USB Type C ou 40 ° C avec l'adaptateur.
Lors de l'installation / du montage ou de la désinstallation / suppression du périphérique; ou lorsque le retrait d'un capot de châssis est requis pour l'entretien par l'utilisateur:
 Coupez l'alimentation et débranchez tous les cordons / câbles d'alimentation
 Réinstallez tous les couvercles de châssis avant de rétablir l'alimentation
 Pour éviter les chocs électriques et / ou les dommages à l'appareil:
 Gardez l'appareil éloigné de l'eau ou des sources de liquide
 Gardez l'appareil loin de la chaleur ou de l'humidité élevée
 Gardez l'appareil correctement ventilé (ne bloquez pas et ne couvrez pas les ouvertures de ventilation)
 Utilisez toujours les paramètres de tension et de source d'alimentation recommandés
 Installez et utilisez toujours l'appareil à proximité d'une prise électrique facilement accessible
 Fixez le cordon d'alimentation (ne placez aucun objet sur / par-dessus le cordon d'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 de longues périodes, éteignez-le et débranchez-le de sa source d'alimentation

 N'essayez jamais de réparer l'appareil, qui ne doit être entretenu que par du personnel technique qualifié à l'aide d'outils appropriés.

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

![The image displays a yellow triangular warning sign with a black border containing a black exclamation point in the center. Below the triangle, the text reads 'CAUTION:'.](.neon-2000-jt2-x-man-50-1z338-1000-10/95fa6f89cdaa4910776d838f6cb76f9c30c96595db7ce025b9a9d7548b1c25b6.jpg)

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

 L'appareil doit être réparé par des techniciens autorisés lorsque:

 Le cordon d'alimentation ou la fiche est endommagé
 Du liquide a pénétré à l'intérieur de 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 selon le manuel de l'utilisateur
 L'appareil est tombé et / ou endommagé et / ou montre 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

 Il est recommandé d'installer l'appareil uniquement dans une salle de serveurs ou une salle informatique où 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 nécessaires
 Seulement permis 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 de l'emplacement

 Il est recommandé que l'appareil soit installé dans des salles informatiques conformes à l'article 645 du Code national de l'électricité et à la NFPA 75.

![The image displays a standard safety warning sign. It is a yellow equilateral triangle with rounded corners and a thick black border. Inside the triangle, there is a graphic symbol consisting of three black wavy lines rising vertically above a single horizontal black line, representing heat rising from a surface.](.neon-2000-jt2-x-man-50-1z338-1000-10/1acf4e31cdb5118b73fdd8df783d8c2484203998fc8dfb5caacdb92b51f78a03.jpg)

# 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.

# Getting Service

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

# ADLINK Technology, Inc.

9F, No.166 Jian Yi Road, Zhonghe District

New Taipei City 235, Taiwan

Tel: +886-2-8226-5877

Fax: +886-2-8226-5717

Email: service@adlinktech.com

# Ampro ADLINK Technology, Inc.

5215 Hellyer Avenue, #110

San Jose, CA 95138, USA

Tel: +1-408-360-0200

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

+1-408-360-0222

Email: info@adlinktech.com

# ADLINK Technology (China) Co., Ltd.

300 Fang Chun Rd., Zhangjiang Hi-Tech Park

Pudong New Area, Shanghai, 201203 China

Tel: +86-21-5132-8988

Fax: +86-21-5132-3588

Email: market@adlinktech.com

# ADLINK Technology GmbH

Hans-Thoma-Strasse 11

D-68163 Mannheim, Germany

Tel: +49-621-43214-0

Fax: +49-621 43214-30

Email: emea@adlinktech.com

Please visit the Contact page at www.adlinktech.com for information on how to contact the ADLINK regional office nearest you:
[🔗 Link to the original document](.neon-2000-jt2-x-man-50-1z338-1000-10/neon-2000-jt2-x-man-50-1z338-1000-10.pdf)
