## Slide 1

![The slide features a white, wheeled robot (AMR) equipped with a solar panel and a top-mounted sensor, situated on a tiled floor with red graphical overlays suggesting sensor scanning. To the bottom right, two gray, ruggedized computer modules are shown, with the larger unit labeled 'ROS cube.'  The text on the slide reads: *   'The Future of AMRs Now Wide Open' *   'ADLINK ROS 2 Solution'  The bottom right corner displays the ADLINK logo with the tagline 'LEADING EDGE COMPUTING' and the NVIDIA logo with a green badge reading 'PREFERRED PARTNER.'](.ebook-amr-web/slide-001.jpg)

## Slide 2

![The slide presents a **Table of Contents** overlaid on a background featuring a robotic arm in a warehouse setting. The text lists the following sections and corresponding page numbers:  *   **The Future of AMRs is Open** ... 03 *   **Discover Our ROS 2 Robotic Controllers** ... 04 *   **Solution Stack** ... 05 *   **Accelerate Your Success with ADLINK ROS 2 Solution** ... 06 *   **Key Components of a Sensor Fusion System** ... 07 *   **Unleashing the Power of AMRs with ADLINK ROS 2 Solution** ... 08 *   **Next-Gen Logistics Automation - Forklift Robot** ... 09 *   **24/7 Automated Delivery Service - Delivery Robot** ... 10 *   **Effortless Lawn Care - Robotic Lawn Mower** ... 11 *   **Automated Safety Patrol - Security Robot** ... 12 *   **The Future of Public Transit - Autonomous Vehicle** ... 13 *   **Product Selection Guide** ... 14  The page number '02' appears in the bottom left corner.](.ebook-amr-web/slide-002.jpg)

## Slide 3

![This slide is titled **'The Future of AMRs Now Wide Open'**.  Below the title is a paragraph of text that reads: 'The future of Automated Mobile Robots (AMRs) is now wide open, as they are due to revolutionize every sector. These intelligent machines can autonomously navigate and adapt to dynamic environments, performing tasks like material handling, package delivery, lawn mowing, and more. With proven value in enhancing productivity and safety, AMRs will become even smarter and more adaptable further down the road, expanding their applications to sectors beyond imaginable. Embrace AMRs and automation technologies, and you are in for a transformational treat in the coming years.'  The background features a bright industrial warehouse setting. On the left, a large vertical robotic arm lifts a pallet of white blocks. In the lower center, a small, round autonomous bot carries a cardboard box. A drone hovers in the upper right corner. The page number '03' appears in the bottom right corner.](.ebook-amr-web/slide-003.jpg)

## Slide 4

![**Header:** Discover Our ROS 2 Robotic Controllers  **Body Text:** The robotic controller is crucial in enabling an AMR to operate independently. Since it has to combine sensor data, decision-making algorithms, and task execution logic to navigate, interact with its environment, and carry out assigned tasks efficiently and safely, its effectiveness directly impacts the AMR system's overall performance, reliability, and adaptability. Hence, ADLINK has created the ROScube, a highly versatile and modular ROS 2 robotic controller family, and here are the three main series of ROScube:  **Product 1 (Left):** RQP-T37 ROScube-Pico TGL Compact robotic controller powered by Intel® CPU for quick and easy development  **Product 2 (Middle):** ROX-58G-E RQX-59F ROScube-X AI robotic controller powered by NVIDIA® Jetson™ for real-time Sensor Fusion  **Product 3 (Right):** RQI-58-E ROScube-I Intelligent robotic controller powered by Intel® CPU for complex data processing  **Footer:** 04](.ebook-amr-web/slide-004.jpg)

## Slide 5

![**Title:** Solution Stack  **Introductory Text:** The ROScube family is specially designed to seamlessly integrate with ROS 2 and its ecosystem. This guarantees a smoother development process and improved synergy between hardware and software.  **Layer 1: ROS 2 Robotic Controller Hardware** *   **Left Group:**     *   NVIDIA.     *   ROX-59 Series     *   ROX-580/58G     *   NPN-1B/2B *   **Right Group:**     *   intel partner Titanium     *   ROQ-T33/35/37     *   RQI-53/55/57/58  **Layer 2: ROS 2 Software** *   **AI Accelerator SDK:**     *   Intel OpenVINO OpenVino     *   NVIDIA TensorRT NVIDIA TENSORRT *   **ROS-Compatible Add-Ons & SDK:**     *   Remote Control EdgeGo EdgeGO)     *   Motion Control SuperCat SuperCAT *   **Protocol:** Zenoh, Cyclone DDS *   **Security:** Trusted OS, TPM *   **Integrated Development Utilities:**     *   NAV2     *   MoveIt2     *   GAZEBO     *   RQT     *   RQT_Graph     *   RViz *   **Bottom Bar:** OS – ROScube BSP – Ubuntu Linux Kernel  **Layer 3: Partners** *   **Solution Partners:** FAROBOT, TIER IV *   **Sensor Partners:**     *   Camera: TIER IV, StereoLabs*, oToBrite, LEOPARD *   **LiDAR:** OUSTER  **Footer:** ADLINK’s products and services 05](.ebook-amr-web/slide-005.jpg)

## Slide 6

![The slide is titled 'Accelerate Your Success with ADLINK ROS 2 Solution' and features a red background with industrial machinery imagery. It is divided into two main sections:  **Benefits** Three boxes with icons display the following text: *   'We have years of experience in system and sensor integrations.' *   'We are experts in edge AI platform and BSP customization.' *   'Our strategic partnerships with leading sensor brands enable us to provide reliable robotic solutions.'  **Service Flow** A four-step process is illustrated with icons and arrows: 1.  'In-depth discussion over project details and requirements' 2.  'Recommending a suitable edge AI platform (robotic controller)' 3.  'Customer testing and feedback' 4.  'Quick PoC and implementation'  The slide number '06' appears in the bottom left corner.](.ebook-amr-web/slide-006.jpg)

## Slide 7

![**Title:** Key Components of a Sensor Fusion System  **Introduction:** A sensor fusion system combines data from multiple sensors to provide an accurate understanding of the environment.  **Key components of such a system include** *   Crucial sensors: Cameras, LiDAR, radar, and more, capturing different types of data. *   Data preprocessing: Cleaning and organizing data for further processing. *   Sensor calibration: Ensuring proper alignment and synchronization. *   Sensor data fusion algorithms: Combining data and extracting valuable information using techniques such as Kalman filtering and particle filtering. *   Edge perception units and/or computational platforms: Effectively processing large amounts of data and flawlessly executing fusion algorithms.  **Diagram Labels (Robot Components):** *   3D LiDAR *   360-Degree Camera *   Mic & Speaker *   3D Camera *   Robotic Controller (RQX-59 Series)  **Bottom Text:** ADLINK’s ROScube robotic controller is known for its outstanding performance and power efficiency. The RQX-59 Series is the perfect edge perception system that offers Frame Sync for GMSL2 and FPD-Link III cameras, as well as customized BSPs. It has a comprehensive I/O interface and uses the Jetson AGX Orin module, designed to process sensor fusion data and execute fusion algorithms seamlessly.  **Page Number:** 07](.ebook-amr-web/slide-007.jpg)

## Slide 8

![This slide presents a collage of autonomous robotics and industrial hardware set against a dark, textured background. The images depict a yellow automated forklift in a warehouse aisle, a small white delivery robot with a solar panel, a robotic lawnmower on grass, a white delivery van on a sidewalk, and an autonomous shuttle bus. In the bottom right, two industrial computers are shown with the labels 'ROP-T37' and 'ROX-59E,' alongside a 'ROS cube' logo. The main headline reads: 'Unleashing the Power of AMRs with ADLINK ROS 2 Solution'. The slide number '08' is located in the bottom left corner.](.ebook-amr-web/slide-008.jpg)

## Slide 9

![**Left Column**  *   **Image:** A yellow forklift robot operating in a warehouse aisle. *   **Header:** Forklift Robot *   **Challenges & Requirements**     *   Covering a wide geographic area and transporting heavy goods over long distances.     *   Must maintain daily productivity with limited staff resources. *   **Solution & Insight**     *   ADLINK’s RQX-59F can support various types of LiDAR and up to 8 FPD-Link III cameras. It processes sensor data in real-time and enables forklift robots to navigate safely in narrow spaces, even with big and heavy cargo.     *   A forklift robot can do the work of several workers and never get tired, reducing labor costs yet improving work efficiency.  **Right Column**  *   **Header:** Use Case Next-Gen Logistics Automation *   **Project Purpose**     *   Growing demand for smarter and more flexible AGV systems.     *   AMRs offering efficient solutions amid rising labor costs.     *   Minimizing workplace injuries caused by incorrect machine handling. *   **Diagram**     *   **Central Unit:** ADLINK RQX-59F     *   **Inputs/Connections:**         *   UART connected to Ultrasonic Sensor         *   UART connected to Proximity Sensor         *   M.2 Key B connected to 5G M.2 Data Card, leading to 5G Data Transmission         *   M.2 Key E connected to Wi-Fi 6 + BT Combo Module, leading to 6 Wi-Fi Data Transmission         *   Mini FAKRA connected to FPD-Link III Camera (x 8)         *   LAN connected to LiDAR (within a 'Frame sync' box)         *   UART connected to IMU Sensor     *   **Processing:** All data flows into 'Sensor Fusion'.     *   **Outputs:**         *   Localization / Mapping         *   Object Detection         *   Segmentation *   **Page Number:** 09](.ebook-amr-web/slide-009.jpg)

## Slide 10

![**Header & Title** *   Use Case *   24/7 Automated Delivery Service  **Project Purpose** *   Increasing demand for contactless, efficient delivery. *   Fulfilling 24/7 delivery services while addressing labor shortages in the delivery industry. *   Cost-effective alternative to traditional delivery services.  **Left Column Content** *   **Delivery Robot** *   **Challenges & Requirements**     *   Ensuring safe and reliable automated navigation in dynamic and unpredictable environments.     *   Designing and integrating robust sensor systems for accurate perception and obstacle avoidance. *   **Solution & Insight**     *   ADLINK’s RQX-59G supports the integration of various sensors, such as cameras and LiDAR, and effectively collects and processes sensor fusion data for reliable navigation and obstacle detection in dynamic environments.     *   ADLINK’s RQX-59G has a wide temperature operating range, ensuring performance and reliable operation in summer heat. *   10  **Diagram Section** *   **Diagram** *   **Top Component:** ADLINK RQX-59G *   **Connections/Modules:**     *   UART (Proximity Sensor)     *   UART (Ultrasonic Sensor)     *   M.2 Key B (5G M.2 Data Card -) 5G Data Transmission)     *   M.2 Key E (Wi-Fi 6 + BT Combo Module -) 6 Wi-Fi Data Transmission)     *   Mini FAKRA (x 8 GMSL 2 Camera)     *   Frame sync     *   LAN (LiDAR) *   **Central Processing Box:** Sensor Fusion *   **Outputs:**     *   Localization / Mapping     *   Object Detection     *   Segmentation](.ebook-amr-web/slide-010.jpg)

## Slide 11

![**Header** Use Case Effortless Lawn Care  **Project Purpose** • Robotic lawn mowers can be equipped with automated safety features for emergencies to prevent accidents and injuries caused by human errors. • Effortless lawn maintenance and consistent results are achieved as the robotic mower handles cutting, trimming, and mulching, leading to a well-maintained lawn year-round.  **Left Column** Robotic Lawn Mower  **Challenges & Requirements** • A reliable edge AI platform to control the robot and process sensor data in real-time. • 360-degree perception to navigate optimally through different terrains and environments.  **Solution & Insight** • The RQX-59F with Jetson AGX Orin enhances the robotic mower's precision by detecting and avoiding obstacles through powerful AI performance. • The RQX-59F supports up to 8 FPD-Link III cameras to ensure 360-degree image coverage, with internal IMU sensors also helping with navigation.  **Diagram** Diagram • Ultrasonic Sensor / UART • Proximity Sensor / UART • GNSS module / UART/USB • ADLINK RQX-59F • M.2 Key B / 5G M.2 Data Card / 5G / Data Transmission • M.2 Key E / Wi-Fi 6 + BT Combo Module / 6 Wi-Fi / Data Transmission • Mini FAKRA / x 8 / FPD-Link III Camera • LAN / LiDAR • Frame sync • Sensor Fusion • Localization / Mapping • Object Detection • Segmentation  11](.ebook-amr-web/slide-011.jpg)

## Slide 12

![**Top Right Section:** *   **Header:** Use Case *   **Title:** Automated Public Safety Patrol *   **Sub-header:** Project Purpose     *   Security robots can be programmed to follow specific routes and protocols, ensuring reliable coverage without distractions or human errors.     *   Security robots can handle real-time threats using the processed data received from various sensors, replacing human guards in hazardous environments.  **Left Column (Red Banner & Text):** *   **Banner:** Security Robot *   **Sub-header:** Challenges & Requirements     *   The robots should be able to issue visual, audio, and smoke warnings to suspicious individuals and apprehend perpetrators.     *   The robot should be able to patrol public areas and address potential threats automatically. Plus, it should be able to react quickly. *   **Sub-header:** Solution & Insight     *   The RQP-T37 enables complex tasks like facial recognition and object detection and can also facilitate real-time data processing for quick decision-making.     *   The RQP-T37 is a compact and energy-efficient device that significantly reduces power consumption in security robots. *   **Page Number:** 12  **Right Column (Diagram):** *   **Header:** Diagram *   **Central Component:** ADLINK RQP-T37 *   **Peripherals connected via lines:**     *   **UART** connects to **IMU Sensor**     *   **M.2 Key E** connects to an icon leading to **6 Wi-Fi 6 + BT Combo Module**     *   **USB** connects to four instances of **USB Camera**     *   **LAN** connects to **nanoScan3 LASER**](.ebook-amr-web/slide-012.jpg)

## Slide 13

![**Header** Use Case The Future of Public Transit  **Project Purpose** • Autonomous vehicles are equipped with advanced sensors and artificial intelligence, reducing human errors and accidents caused by distractions, fatigue, or impaired driving. • Autonomous vehicles can communicate with each other and optimize traffic flow, leading to smoother and more efficient transportation systems.  **Left Column** Autonomous Vehicle  **Challenges & Requirements** • Seamless integration of hardware and software components with robust middleware. • Achieving precise synchronization between LiDAR and multiple automotive cameras is crucial. • Advanced computing is necessary for safety measurements and monitoring.  **Solution & Insight** • TIER IV has implemented an Edge Perception Development Kit for self-driving buses at airports and in crowded cities. • The Edge Perception Development Kit includes ADLINK’s ROScube RQX-58G controller and TIER IV’s C1/C2 cameras. • ADLINK’s RQX-58G excels in supporting sensor fusion data processing and simultaneously supporting up to 8 automotive GMSL2 cameras.  Note: To learn more about the Edge Perception Development Kit, please visit: https://www.adlinktech.com/en/autonomous-driving-visual-perception-tier-iv. We highly recommend upgrading the RQX-58G to the latest RQX-59G model for 8X stronger AI performance with the Jetson Orin module.  **Right Column (Diagram Section)** Diagram ADLINK RQX-58G M.2 Key B 5G M.2 Data Card 5G Data Transmission M.2 Key E Wi-Fi 6 + BT Combo Module 6 Wi-Fi Data Transmission Mini FAKRA Frame sync LAN x 8 GMSL 2 Camera LiDAR Sensor Fusion Localization / Mapping Object Detection Segmentation  13](.ebook-amr-web/slide-013.jpg)

## Slide 14

![**Left Panel:** Product Selection Guide 14  **Right Panel (Table):** **Header:** Model Name   RQX-59 Series  **Rows:** *   **NVIDIA® or Intel®:** NVIDIA® Jetson AGX Orin™ *   **GMSL2 / FPD-Link III enabled:** GMSL2 x 8 /FPD-Link III x 8 *   **Frame Sync and Time Sync:** Yes *   **Validated Sensors:**     *   **Brands:** GMSL2 Camera   FPD-Link III Camera   LiDAR     *   **TIER IV:** Automotive HDR camera C1/C2   -   -     *   **StereoLabs:** ZED-X/ ZED-X mini   -   -     *   **oToBrite:** oToCAM264ISP   oToCAM264ISP oToCAM222 oToCAM251 (customized BSP)   -     *   **Leopard:** LI-AR0233-GMSL2(non ISP)   -   -     *   **Ouster:** -   -   OS1-32 *   **OS:** Jetpack 5.1.2 or above Ubuntu 20.04 *   **I/O:** 4x USB3.2; 2 x lockable USB3.2; 1x Micro USB (OTG); 2 x GbE *   **Storage Device:** 1x M.2 Key M 2280 and 2242; 1x micro SD card slot *   **Expansion:** 1x M.2 Key E 1630/2230 for Wi-Fi 6/BT; 1x M.2 Key B 3042/3052 for 5G/LTE *   **Audio:** Input/ Output *   **CAN bus:** CAN FD *   **Dimensions (W x D x H):** 190 x 210 x 80 mm, 7.48 x 8.27 x 3.149 in With expansion: 322 x 210 x 80 mm, 12.68 x 8.27 x 3.149 in *   **Weight:** 3.4kg w/o expansion box 4.7kg w/ expansion box](.ebook-amr-web/slide-014.jpg)

## Slide 15

![The slide presents a technical specification table comparing different computer models, divided into two main sections: a left column for the **RQX-580/58G** and a right section comparing the **RQP-T33/35/37** and **RQI-53/55/57/58** models. Images of the hardware units are displayed above the respective tables.  **Left Table (RQX-580/58G):** *   **Model Name:** RQX-580/58G *   **NVIDIA® or Intel®:** NVIDIA® Jetson AGX Xavier™ *   **GMSL2 / FPD-Link III enabled:** GMSL2 x 8 *   **Frame Sync and Time Sync:** Yes *   **Validated Sensors:**     *   **Brands:** GMSL2 Camera, LiDAR     *   **TIER IV:** Automotive HDR camera C1/C2, -     *   **oToBrite:** oToCAM264ISP, -     *   **Leopard:** LI-AR0233-GMSL2 (non ISP), -     *   **Ouster:** -, OS1-32 *   **OS:** Jetpack 4.6 or above Ubuntu 18.04 *   **I/O:** 4x USB3.2; 2 x lockable USB3.2; 1x Micro USB (OTG); 2 x GbE *   **Storage Device:** 1x M.2 Key M 2280 and 2242; 1x micro SD card slot *   **Expansion:** 1x M.2 Key E 1630/2230 for Wi-Fi 6/BT; 1x mini PCIe socket for 4G/LTE *   **Audio:** Input/ Output *   **CAN bus:** CAN FD *   **Dimensions (W x D x H):** 190x 210x 80 mm (7.48 x 8.27 x 3.149 inch) With Expansion: 322 x 210 x 80 mm (12.68 x 8.27 x 3.149 inch) *   **Weight:** 3.4kg w/o expansion box 4.7kg w/ expansion box  **Right Table (RQP & RQI Models):** *   **Model Name:** RQP-T33/35/37   RQI-53/55/57/58 *   **NVIDIA® or Intel®:** 11th Gen Intel® Core™ i7/i5/i3   8/9th Gen Intel® Core™ i7/i5/i3 *   **GMSL2 / FPD-Link III enabled:** USB camera   USB camera *   **Frame Sync and Time Sync:** Yes   Yes *   **Validated Sensors:**     *   **Brands:** USB camera, LiDAR   USB camera, LiDAR     *   **Intel®:** RealSense™ Depth Camera D435   RealSense™ Depth Camera D435     *   **SICK:** -, nanoScan3   -, nanoScan3     *   **Ouster:** -, OS1-32   -, OS1-32 *   **OS:** Compatible with Ubuntu 20.04   Compatible with Ubuntu 20.04 *   **I/O:** 2x USB 3.2 Gen2 Type A port;2x USB 3.2 Gen2 Type C ports; COM 1: RS-232; COM 2: power management; 1x 1GbE, 1x 2.5GbE; 1x DP, 1x HDMI   4x GbE; COM 1/2: RS-232/422/485; 6 x USB 3.1 Gen 1 Type A; 4x USB 2.0 Type A *   **Storage Device:** 1x M.2 Key-M for NVMe PCIe Gen4 x4 SSD   256GB mSATA SSD or 128GB mSATA SSD or 64GB mSATA SSD *   **Expansion:** 1x M.2 Key-E 2230 for Wi-Fi   1 x Mini PCIe for CAN; 1 x Mini PCIe for WiFi or LTE; 1 x A+E key, 2230 for Wi-Fi *   **Audio:** Input/ Output   N/A *   **CAN bus:** N/A   CAN FD module (FARO-FP900) (optional) *   **Dimensions (W x D x H):** 140 x 110 x 63 mm   w/o expansion box: 210 x 240 x 86 mm; w/ expansion box: 210 x 240 x 165 mm *   **Weight:** 1,086g   3.6kg w/o expansion box 4.6kg w/ expansion box  The page number **15** is visible in the bottom right corner.](.ebook-amr-web/slide-015.jpg)

## Slide 16

![Head Office ADLINK Technology, Inc. No. 66, Huaya 1st Rd., Guishan Dist., Taoyuan City 333411, Taiwan Tel: +886-3-216-5088 Fax: +886-3-328-5706 www.adlinktech.com  Worldwide Offices  Ampro ADLINK Technology, Inc. 6450 Via Del Oro, San Jose, CA 95119-1208, USA Tel: +1-408-360-0200 Toll Free: +1-800-966-5200 (USA only) Fax: +1-408-360-0222 Email: info@adlinktech.com  ADLINK Technology (China) Co., Ltd. 上海市浦东新区张江高科技园区芳春路 300 号 (201203) 300 Fang Chun Rd., Zhangjiang Hi-Tech Park Pudong New Area, Shanghai, 201203 China Tel: +86-21-5132-8988 Fax: +86-21-5192-3588 Email: market@adlinktech.com  ADLINK Technology Beijing 北京市海淀区上地东路 1 号盈创动力大厦 E 座 801 室 (100085) Rm. 801, Power Creative E, No. 1 Shang Di East Rd. Beijing, 100085 China Tel: +86-10-5885-8666 Fax: +86-10-5885-8626 Email: market@adlinktech.com  ADLINK Technology Shenzhen 深圳市南山区科技园南区高新南七号数字技术园 A1 栋 2 楼 C 区 (518057) 2F, C Block, Bldg. A1, Cyber-Tech Zone, Gao Xin Ave. Sec. 7 High-Tech Industrial Park S., Shenzhen, 518054 China Tel: +86-755-2643-4858 Fax: +86-755-2664-6353 Email: market@adlinktech.com  ADLINK Technology Singapore Pte. Ltd. 84 Genting Lane #07-02A, Axxel Innovation Centre, Singapore 349584 Tel: +65-6844-2261 Fax: +65-6844-2263 Email: singapore@adlinktech.com  ADLINK Technology Singapore Pte Ltd. (Indian Liaison Office) #50-56, First Floor, Spearhead Towers Margosa Main Road (between 16th/17th Cross) Malleswaram, Bangalore - 560 055, India Tel: +91-80-42246107, +91-80-23464606 Fax: +91-80-23464606 Email: india@adlinktech.com  ADLINK Technology Japan Corporation 〒 101-0045 東京都千代田区神田鍛冶町 3-7-4 ユニゾ神田鍛冶町三丁目ビル 4F Unizo Kanda Kaji-cho 3 Chome Bldg. 4F, 3-7-4 Kanda Kajicho, Chiyoda-ku, Tokyo 101-0045, Japan Tel: +81-3-4455-3722 Fax: +81-3-5209-6013 Email: japan@adlinktech.com  ADLINK Technology Korea Ltd. 경기도 용인시 수지구 신수로 767 A 동 1503 호 ( 동천동, 분당수지유타워) ( 우 ) 16827 A-1503, U-TOWER, 767 Sinsu-ro, Suji-gu, Yongin-si, Gyeonggi-do, Republic of Korea, 16827 Toll Free: +82-80-800-0585 Tel: +82-31-786-0585 Fax: +82-31-786-0583 Email: korea@adlinktech.com  ADLINK Technology, Inc. (Israel Liaison Office) MIXER Herzliya (Building B, 9 Floor) 3 Arik Einstein st., Zip code 4610301 Herzliya, Israel, P.O.Box - 351 Tel: +972-54-632-5251 Fax: +972-77-208-0230 Email: israel@adlinktech.com  ADLINK Technology GmbH Hans-Thoma-Straße 11 D-68163 Mannheim, Germany Tel: +49 621 43214-0 Fax: +49 621 43214-30 Email: germany@adlinktech.com  Ulrichsbergerstraße 17 D-94469 Deggendorf, Germany Tel: +49 991 290 94-10 Fax: +49 991 290 94-29 Email: germany@adlinktech.com  ADLINK Technology, Inc. (French Liaison Office) Bâtiment Thalès - Parc des Algorithmes, Route de l'Orme des Merisiers, 91190 SAINT AUBIN, France Tel: +33 (0) 1 60 12 35 66 Fax: +33 (0) 1 60 12 35 66 Email: france@adlinktech.com  ADLINK Technology, Inc. (UK Liaison Office) First Floor West Exeter House, Chichester fields Business Park Tangmere, West Sussex, PO20 2FU, United Kingdom Tel: +44-1243-859677 Email: uk@adlinktech.com  NVIDIA PREFERRED PARTNER intel partner Titanium  All products and company names listed are trademarks or trade names of their respective companies. ©2024 ADLINK Technology, Inc. All Rights Reserved. All pricing and specifications are subject to change without further notice.](.ebook-amr-web/slide-016.jpg)

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