Choosing Right Carrier Board For Your NVIDIA® Jetson Module.

Tanna TechBiz Eagle 101 Carrier Board

The EAGLE -101 carrier board has been developed by Tanna TechBiz and is a make in India initiative. This board has been designed for the NVIDIA® Jetson NanoTM Module.
The entire system constituting of the carrier board and module can be used for a wide array of use cases ranging from computer vision, robotics, factory automation, Traffic management solutions (ITMS), Smart Cities and soon.

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AVerMedia EN715 - Carrier Board

AVerMedia carrier board EN715 is designed for NVIDIA® Jetson Nano™ (Version B01)/ Xavier™ NX module and for the industry applications in the environment with the high physical space concern and operation in the temperature range from 0°C to 70°C. It features the very compact dimensions of 70.6mm (L) x 87mm (W) x 27.3mm (H), with four Ø 3.2 mounting holes for the highly reliable field installation.

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AVerMedia NX215 -Carrier Board

AVerMedia’s NX215 Carrier board equips powerful NVIDIA® Jetson Xavier™ NX/TX2 NX/NANO modules. This efficient system-on-module (SoM) opens new worlds of embedded IoT applications with full analytic capabilities.

AVerAI NX215 is designed for the industry applications with spatial concern and feature a rich assortment of I/O ports for rapid AI-based solution development and seamless deployment as required by demanding business applications.

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Avermedia D315 Carrier Board

D315 includes a 120-pin high-speed connector for connecting MIPI SerDes cameras, which can fulfill the demand for AMRs. In addition, a sufficient Ethernet bandwidth with 10G is excellent for applying smart security, enabling dozens of IP cameras to stream simultaneously. The connector for the 10GigE Vision Camera is also great for smart inspection. Lastly, with its compact size, D315 furnishes a PCIe slot for multi-function expansion and excellent compatibility with Wi-Fi 6 and 5G.

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AVerMedia D131 Carrier Board

Standard Carrier Board D131 for NVIDIA® Jetson Orin™ NX/ Jetson Xavier™ NX/Jetson Nano™ Module. This efficient system-on-module (SoM) opens new worlds of embedded IoT applications with full analytic capabilities.

AVerAI D131 is designed for the industry applications with spatial concern and feature a rich assortment of I/O ports for rapid AI-based solution development and seamless deployment as required by demanding business applications.

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AverMedia AG411 Carrier Board for AGX Xavier

AVerMedia’s AG411 carrier board fully supports NVIDIA® Jetson AGX Xavier™ or AGX Xavier™ Industrial which is designed for AI-centric edge computing for use cases such as robotics and industrial automation. The AG411 carrier board provides 4x Mini-PCIe and 2x M.2 Key M 2280 slots allowing flexibility to receive various video inputs through AVerMedia’s capture cards.

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AVerMedia D131L Carrier Board

AVerMedia D131L includes fully featured carrier board which is all developed for NVIDIA® Jetson Orin™ NX / Orin™ Nano modules. AVerMedia D131L provides not only the access to a great list of latest interfaces on NVIDIA® Jetson Orin™ NX/ Orin™ Nano modules but also 1 x GbE RJ-45 (Option PoE) & 40-pin expansion header as the function enrichment.

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Realtimes RTSO-6001B Carrier Board

Electronic components and circuits are very sensitive to electrostatic discharge. Although our company designs anti-static protection for the main interfaces on the card when designing circuit board products, it is difficult to achieve anti-static safety protection for all components and circuits.

Therefore, it is recommended to observe anti-static safety precautions when handling any circuit board component (including RTSO-6001B). Anti-static safety protection measures include, but are
not limited to the following:
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Realtimes RTSO -1002 Carrier Board

RTSO-1002 is an industrial-grade carrier board for AGX Xavier/AGX Xavier industrial/AGX Orin, with an operating temperature of -20℃—+85℃, low power consumption, high security level, and can meet various harsh conditions.NVIDIA® Jetson AGX Xavier™/AGX Xavier industrial /AGX Orin module is a processor suitable for machine deep learning launched by NVIDIA, with powerful computing power and small module area. It is mainly aimed at the fast-developing artificial intelligence market in recent years, such as unmanned aerial vehicles, automatic driving systems, etc

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Realtimes  RTSO-1001 Carrier Board 

NVIDIA® Jetson AGX Xavier™ /AGX Xavier industrial /AGX Orin module is a machine for deep learning processor launched by NVIDIA, computing power is powerful, modular Small group area. It is mainly aimed at the rapidly developing artificial intelligence edge computing market in recent years, such as autonomous driving, V2X, AGV cars, logistics vehicles, robots and other fields. with a relatively wide range Broad application prospects. Rtso-1001 is the industrial-grade loading board for AGX Xavier /AGX Xavier industrial /Orin, operating temperature -40℃ -- +85℃, low power consumption, safety level High, can meet a variety of harsh conditions.

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Realtimes RTSO - 6002 Carrier Board

RTSO-6002 is an industrial-grade carrier board for Xavier NX/TX2 NX/Nano, with an operating temperature of -40°C—+80°C, low power consumption, high security level, and can meet various harsh conditions.

The NVIDIA Jetson Xavier NX/TX2 NX/Nano module is a processor suitable for machine deep learning introduced by NVIDIA. It has powerful computing power and the module area is only the size of a credit card. It is mainly aimed at the fast-developing artificial intelligence market in recent years, such as unmanned aerial vehicles and autonomous driving systems, which have relatively broad application prospects.

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Realtimes RTSO - 6003 Carrier Board

The RTSO 6003/6003E board is an industrial-grade board for Nano/Xavier NX/TX2 NX. It has abundant interfaces, low power consumption, and high security level, which can meet various harsh conditions.

NVIDIA Jetson Nano/Xavier NX/TX2 NX module is a processor for machine deep learning launched by Nvidia. It has powerful computing power and the module area is only the size of a credit card. Mainly targeted at the rapid development of artificial intelligence market in recent years, such as unmanned aerial vehicle, automatic driving system, etc., has a relatively broad application prospect.

You Can Buy From Here :- Realtimes RTSO - 6003 Carrier Board

Realtimes RTSO - 6004 Carrier Board

RTSO-6004 is an industrial-grade carrier for Nano/Xavier NX/TX2 NX, with an operating temperature of -40℃ to +80℃, low power consumption and high safety level, which can meet various harsh conditions.

NVIDIA Jetson Nano/Xavier NX/TX2 NX module is a processor for machine deep learning launched by Nvidia. It has powerful computing power and the module area is only the size of a credit card. Mainly targeted at the rapid development of artificial intelligence market in recent years, such as unmanned aerial vehicle, automatic driving system, etc., has a relatively broad application prospect.

You Can Buy From Here :- Realtimes RTSO - 6004 Carrier Board

LeeTop A203 Carrier Board

LeeTop A203. It adds additional pins and one USB 3.0 20-pin ZIF Connector. It is a high-performance, interface rich NVIDIA Jetson Nano / Xavier NX/TX2 NX compatible carrier board, providing HDMI 2.0, Gigabit Ethernet, USB3.0, M.2 key E Wifi / BT, M.2 key M solid-state drive, CSI camera, RS232, SD card, CAN, PIO, I2C, I2S, fan and other rich peripheral interfaces are suitable for environments with strict environmental requirements, small size and powerful functions.

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LeeTop A206 Carrier Board

The LEETOPTECH® Jetson Xavier™ NX SUB kit Development System includes a powerefficient, compact Jetson Xavier NX module for AI edge devices. It benefits from new cloud-native support and accelerates the NVIDIA software stack in as little as 10 W with more than 10X the performance of its widely adopted predecessor, Jetson TX2. The capability to develop and test power-efficient, small form-factor solutions with accurate, multi-modal AI inference opens the door for new breakthrough products.

You Can Buy From Here :- LeeTop A206 Carrier Board

Leetop A606 Carrier Board

The A606 is a high performance, interface rich NVIDIA Jetson Orin NX carrier board. A606 carrier board provides 1 HDMI2.0, 1 Gigabit Ethernet port, 4 USB3.0, 1 xUSB 2.0 +3.0 Type C, M.2Kye E, M.2 KEY M interface, CAN bus, GPIO,I2C, fan and other abundant peripheral interface.  The leetop A606 powered module is based on discovering the power of artificial intelligence and robotics through NVIDIA® Jetson. It's small, powerful, and suitable for everyone. This means educators, students and other enthusiasts can now easily create projects with fast and efficient AI using the entire GPU-accelerated NVIDIA software stack. The Leetop A606 benefits from new cloud-native support across the entire Jetson platform line-up, making it easier to build, manage, and deploy AI at the edge. Pre-trained AI models from NVIDIA NGC together with the NVIDIA TAO Toolkit, provides a faster path to trained and optimized AI networks.

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Know About Carrier Board

A Carrier Board, in the context of electronics and computing, is a term used to refer to a specific type of printed circuit board (PCB). The primary purpose of a carrier board is to host and provide connectivity for smaller, more specialized electronic components, such as system-on-modules (SOMs) or computer-on-modules (COMs).

These SOMs or COMs are essentially compact computing systems that include a processor, memory, and other essential components, similar to a full-fledged computer or microcontroller. However, they are designed to be integrated into larger systems, and that's where the carrier board comes in.

The carrier board typically offers various connectors, sockets, and interfaces that allow the SOM or COM to be easily attached and communicate with other peripherals and the outside world. These may include connectors for power supply, display interfaces (e.g., HDMI, DisplayPort), USB ports, Ethernet, audio jacks, storage interfaces (e.g., SATA or PCIe), and various GPIO (General Purpose Input/Output) pins, among others.

Using a carrier board allows for greater flexibility and modularity in designing electronic systems. Engineers can develop a specific SOM or COM for their computing needs and then create different carrier boards with varying features and I/O options, depending on the application. This approach can help to reduce development time and costs for specialized projects, as well as facilitate upgrades or replacements of individual components without redesigning the entire system.