Interface Boards

Image Part Number Description / PDF Quantity Rfq
96RC-ST-2C-P-HP

96RC-ST-2C-P-HP

Advantech

CARD CONTROLLER/RAID

0

96NIC-1G-P-DL

96NIC-1G-P-DL

Advantech

ETHERNET D-LINK NETWORK CARD

0

96RC-SAS-8P-PE-LS3

96RC-SAS-8P-PE-LS3

Advantech

LSI RAID SAS 8PORT 6GB/S 1G PCIE

0

GFX-N3A1-01FSS1

GFX-N3A1-01FSS1

Advantech

ADD-IN BOARD

0

DVP-7632HE

DVP-7632HE

Advantech

4-CH HD-SDI H.264 PCIEX1 VIDEO C

0

GFX-AH7750L16-5J1

GFX-AH7750L16-5J1

Advantech

HD7750 2G GDDR5 PCI-EX16 MINI DP

0

GFX-NG710L16-3C

GFX-NG710L16-3C

Advantech

ADD-IN BOARD GT710 DDR3

0

GFX-N3D2-40NSS1

GFX-N3D2-40NSS1

Advantech

BOARD ADD-IN

0

96RC-SAS-24-PE-AD

96RC-SAS-24-PE-AD

Advantech

ADAPTEC 72405 SAS 24P 6GB/S PCIE

0

PCM-3665-00A1E

PCM-3665-00A1E

Advantech

PC/104 PLUS DUAL GIGA ETHERNET M

0

96NIC-10G2P-IN

96NIC-10G2P-IN

Advantech

NTEL NIC 100M/1G/10G PCIEX8 2P S

0

96VG-AE9260FX8-5A

96VG-AE9260FX8-5A

Advantech

INTERFACE PCIE

0

Interface Boards

1. Overview

Interface boards for embedded computers are hardware components that facilitate communication between embedded systems and external devices. These boards convert data protocols, manage signal transmission, and ensure compatibility across different hardware architectures. They play a critical role in enabling seamless integration of sensors, actuators, communication modules, and peripheral devices in modern technology, supporting applications from industrial automation to consumer electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Communication Interface BoardsSupport protocols like RS-232, RS-485, CAN, SPI, I2C, and EthernetIndustrial sensors, automotive control units
Digital I/O BoardsProvide programmable input/output channels for binary signalsFactory automation, robotics
Analog I/O BoardsHandle continuous voltage/current signals for precision measurementsMedical equipment, test instruments
Sensor Interface BoardsIntegrate ADC/DAC converters and signal conditioning circuitsEnvironmental monitoring systems
Bus Interface BoardsBridge between embedded systems and standard buses (PCIe, USB, UART)Consumer electronics, aerospace systems

3. Structure and Components

Typical interface boards consist of:

  • PCB substrate with multi-layer routing
  • Connectors (e.g., DB9, RJ45, M12, USB-C)
  • Microcontroller or FPGA for protocol handling
  • Interface-specific chips (e.g., MAX232 for RS-232, CAN transceivers)
  • Power management modules (voltage regulators, isolation circuits)
  • Optional onboard memory (EEPROM, Flash)
  • Thermal management features (heat sinks, thermal vias)

4. Key Technical Specifications

ParameterImportance
Interface TypeDetermines compatibility with connected devices
Data Transfer RateImpacts system response time (up to 10 Gbps in high-speed interfaces)
Operating TemperatureIndustrial (-40 C to +85 C) vs. commercial (0 C to 70 C) ranges
Power ConsumptionCritical for battery-powered embedded systems
Physical DimensionsAffects integration into compact devices
EMI/EMC ComplianceEnsures reliable operation in electrically noisy environments

5. Application Fields

  • Industrial Automation: PLCs, CNC machines, SCADA systems
  • Medical Devices: MRI scanners, patient monitors, diagnostic equipment
  • Automotive: ECU interfaces, ADAS systems, infotainment units
  • Consumer Electronics: Smart home devices, wearable tech
  • Aerospace: Avionics systems, flight control interfaces

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
AdvantechPCM-3680 (Industrial I/O board with multiple interfaces)
National InstrumentsCompactDAQ (Modular data acquisition system)
NXP SemiconductorsKinetis K64F (ARM Cortex-M4 based development board)
TI (Texas Instruments)Tiva C Series TM4C123G (USB-enabled microcontroller board)
SiemensSIMATIC IOT2000 (Industrial IoT gateway with multiple interfaces)

7. Selection Recommendations

Key considerations include:

  • Application Requirements: Match interface types and speeds to system needs (e.g., CAN FD for automotive diagnostics)
  • Environmental Factors: Choose ruggedized boards for vibration/dust-prone environments
  • Future-Proofing: Select boards supporting emerging standards (e.g., PCIe 4.0)
  • Software Support: Verify availability of drivers and SDKs for target OS
  • Cost-Benefit Analysis: Balance performance requirements against budget constraints

8. Industry Trends

  • Miniaturization: Development of sub-10mm interface modules for wearable devices
  • Integration: Combining multiple interface types on single-board computers (SBCs)
  • Wireless Convergence: Growth of Bluetooth/Wi-Fi 6 interface boards
  • AI-Enhanced: Boards with onboard neural processing units (NPUs) for edge computing
  • Industrial 4.0: Time-sensitive networking (TSN) interfaces for real-time automation
  • Green Design: Low-power interfaces compliant with Energy Star standards
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