Single Board Computers (SBCs), Computer On Module (COM)

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SRM6828S32D01GE008V21C0

SRM6828S32D01GE008V21C0

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MODULE SOM DDR A388

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SRMX6DLW00D01GE000V15C0

SRMX6DLW00D01GE000V15C0

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SOM DUAL 1GB 1GHZ

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SRMX6DUW00D01GE008B00CH

SRMX6DUW00D01GE008B00CH

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SBC BASE CARRIER DUAL IMX6

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SRMX6SOWT1D512E000V15C0

SRMX6SOWT1D512E000V15C0

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SOM SOLO WIFI/BT 512MB 1GHZ

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SRI8000S00D04GE008Q01CE

SRI8000S00D04GE008Q01CE

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SOLIDPC Q4 IB8000 4GB RAM, 8GB E

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SRMX6SOW00D512E008G00AH

SRMX6SOW00D512E008G00AH

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SBC GATE CARRIER SOLO IMX6

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SRM6828S32D02GE000V21C0

SRM6828S32D02GE000V21C0

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MODULE SOM DDR A388

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SRMX6DUWT1D01GE008G00CH

SRMX6DUWT1D01GE008G00CH

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SBC GATE CARRIER WIFI/BT DUAL

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SRMX6DLW00D01GE008P00CH

SRMX6DLW00D01GE008P00CH

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SBC BASE CARRIER DUAL LT IMX6

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SRMX6DLW00D01GE008B00CH

SRMX6DLW00D01GE008B00CH

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SBC BASE CARRIER DUAL LT IMX6

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SRMX6DLWT1D01GE008P00CH

SRMX6DLWT1D01GE008P00CH

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SBC PRO CARRIER WIFI/BT DUAL

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SRMX6SOW00D512E008E00IH

SRMX6SOW00D512E008E00IH

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SBC EDGE CARRIER SOLO IMX6

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SRMX6QDWT1D02GE008G00CH

SRMX6QDWT1D02GE008G00CH

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SBC GATE CARRIER WIFI/BT QUAD

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SRMX6DLWT1D01GE000V15C0

SRMX6DLWT1D01GE000V15C0

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SOM DUAL WIFI/BT 1GB 1GHZ

0

SRMX6DUW00D01GE008P00CH

SRMX6DUW00D01GE008P00CH

SolidRun

SBC PRO CARRIER DUAL IMX6

0

SRMX6SOW00D512E000V15I0

SRMX6SOW00D512E000V15I0

SolidRun

SOM SOLO INDUST TEMP 512MB 1GHZ

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SRMX6SOW00D512E008G00CH

SRMX6SOW00D512E008G00CH

SolidRun

SBC GATE CARRIER SOLO IMX6

0

SRMX6QDW00D02GE008G00IH

SRMX6QDW00D02GE008G00IH

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SBC GATE CARRIER QUAD IMX6

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SRMX6QDW00D02GE000V15I0

SRMX6QDW00D02GE000V15I0

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SOM QUAD PRO IND TEMP 2GB 1GHZ

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SRMX6DLW00D01GE000V15I0

SRMX6DLW00D01GE000V15I0

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SOM DUAL INDUST TEMP 1GB 1GHZ

0

Single Board Computers (SBCs), Computer On Module (COM)

1. Overview

Embedded computers are specialized computing systems designed for specific tasks within larger mechanical or electrical systems. Single Board Computers (SBCs) integrate all computer components on a single circuit board, providing a compact and self-contained solution. Computer On Module (COMs) are standardized modules containing core computing components, designed to be integrated into carrier boards for customized applications. These technologies are critical in industrial automation, IoT, robotics, and edge computing due to their reliability, scalability, and space efficiency.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
SBC (e.g., Raspberry Pi)Complete system with CPU, RAM, storage, and I/O interfacesSmart home devices, educational tools
COM (e.g., COM Express)Modular design with processor, memory, and basic I/O; requires carrier boardMedical imaging systems, industrial controllers
Industrial SBCRuggedized components for harsh environmentsFactory automation, outdoor kiosks

3. Structure and Components

A typical SBC includes a processor (ARM/x86), RAM, flash storage (eMMC/NOR), power management unit, and interfaces (USB, HDMI, GPIO). COMs feature a dense layout with SoC (System on Chip), DDR4 memory packages, thermal dissipation layers, and high-speed connectors. Both utilize PCB substrates with multi-layer routing for signal integrity.

4. Key Technical Specifications

ParameterDescriptionImportance
CPU PerformanceMeasured in DMIPS or GHzDetermines processing capability
Thermal Design Power (TDP)Power consumption in wattsImpacts cooling requirements
Interface TypesUSB 3.0, PCIe, CAN, etc.Dictates peripheral compatibility
Operating Temperature-40 C to +85 C rangeDefines environmental tolerance

5. Application Areas

  • Industrial: CNC machines, PLC controllers
  • Healthcare: Patient monitoring systems, diagnostic equipment
  • Transportation: In-vehicle infotainment, ADAS
  • Smart Cities: Surveillance cameras, environmental sensors

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
Raspberry Pi FoundationRaspberry Pi 4 Model BQuad-core Cortex-A72, 4K HDMI
IntelCOM Express modules11th Gen Core processors, PCIe 4.0
NVIDIAJETSON AGX XavierAI accelerator, 32 TOPS performance
AdvantechAIMB-236 SBCIntel Atom x6425E, -20 C to 70 C operation

7. Selection Guidelines

Consider processing requirements, power constraints, environmental conditions, and long-term availability. For industrial applications, prioritize extended temperature ranges and RoHS compliance. Evaluate ecosystem support (OS compatibility, SDKs) and choose modular designs for future upgrades.

8. Industry Trends

Key trends include AI integration at the edge, adoption of RISC-V architecture, increased use of heterogeneous computing (CPU+GPU+NPU), and standardization of COM interfaces (e.g., SMARC 2.0). Energy efficiency improvements and cybersecurity features are becoming critical for IoT deployments.

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