Evaluation Boards - Expansion Boards, Daughter Cards

Image Part Number Description / PDF Quantity Rfq
MIKROE-4123

MIKROE-4123

MikroElektronika

XPRO-ADAPTER CLICK

6

MIKROE-2543

MIKROE-2543

MikroElektronika

RN4870 CLICK

0

MIKROE-1535

MIKROE-1535

MikroElektronika

DEV BOARD TRF

0

MIKROE-971

MIKROE-971

MikroElektronika

BOARD ACCY ETH CLICK MIKROBUS

87

MIKROE-3259

MIKROE-3259

MikroElektronika

PEDOMETER 3 CLICK

5

MIKROE-4119

MIKROE-4119

MikroElektronika

FINGERPRINT 2 CLICK

4

MIKROE-4294

MIKROE-4294

MikroElektronika

PRESSURE 13 CLICK

8

MIKROE-3078

MIKROE-3078

MikroElektronika

RGB DRIVER CLICK

2

MIKROE-2840

MIKROE-2840

MikroElektronika

UT-S 7-SEG R CLICK

0

MIKROE-4267

MIKROE-4267

MikroElektronika

OXIMETER 3 CLICK

7

MIKROE-4558

MIKROE-4558

MikroElektronika

ENVIRONMENT 2 CLICK

0

MIKROE-1999

MIKROE-1999

MikroElektronika

LINE FOLLOWER CLICK

0

MIKROE-2891

MIKROE-2891

MikroElektronika

TOUCHKEY 3 CLICK

3

MIKROE-4063

MIKROE-4063

MikroElektronika

COMPASS 3 CLICK

22

MIKROE-3272

MIKROE-3272

MikroElektronika

TEMP&HUM 7 CLICK

3

MIKROE-4265

MIKROE-4265

MikroElektronika

FINGERPRINT 3 CLICK

1

MIKROE-1915

MIKROE-1915

MikroElektronika

BOARD DUAL COMPARATOR CLICK

3

MIKROE-3414

MIKROE-3414

MikroElektronika

SAML TOUCH CLICK

12

MIKROE-4236

MIKROE-4236

MikroElektronika

TRUST M CLICK

5

MIKROE-2101

MIKROE-2101

MikroElektronika

SHT CLICK HUMIDITY/TEMP SENSOR

8

Evaluation Boards - Expansion Boards, Daughter Cards

1. Overview

Evaluation Boards (EVBs), Expansion Boards, and Daughter Cards are essential hardware tools for embedded system development, prototyping, and testing. These platforms enable engineers to assess processor capabilities, interface peripherals, and validate designs before mass production. Their modular architecture supports rapid innovation in IoT, automotive, industrial automation, and consumer electronics sectors.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Microcontroller EVBsARM/FPGA SoC integration, onboard sensors, debug interfacesIoT edge devices, smart sensors
Expansion BoardsStandard interfaces (PCIe, USB-C), protocol convertersIndustrial gateways, communication modules
Daughter CardsSpecialized functionality modules (ADC/DAC, RF transceivers)Medical imaging equipment, test instruments
Programmer KitsFlash programming, JTAG/SWD debugging, voltage monitoringAutomotive ECUs, aerospace controllers

3. Structure and Components

Typical architecture includes:

  • Multi-layer PCB with high-speed traces
  • Processor sockets or soldered-down SoCs
  • Standardized connectors (2.54mm headers, M.2)
  • Onboard memory (RAM, Flash storage)
  • Power management ICs and voltage regulators
  • Debug interfaces (SWD, JTAG, UART)

4. Key Technical Specifications

ParameterDescription
Clock SpeedDetermines processing capability (1MHz-2GHz range)
Bus WidthMemory bandwidth (8/16/32-bit configurations)
Interface SupportUSB 3.0, Ethernet, CAN, SPI/I2C compatibility
Power ConsumptionTypical range: 0.5W-25W (varies with workload)
Operating TemperatureIndustrial (-40 C to +85 C) or commercial grade

5. Application Areas

Major industries include:

  • Telecommunications (5G base stations, optical transceivers)
  • Medical equipment (MRI scanners, patient monitors)
  • Industrial automation (PLC controllers, robotics)
  • Consumer electronics (smart home devices, wearables)
  • Automotive (ADAS systems, V2X communication)

6. Leading Manufacturers and Products

VendorProduct Series
XilinxZynq UltraScale+ MPSoC Evaluation Kit
IntelStratix 10 GX FPGA Development Board
STMicroelectronicsSTM32 Nucleo Expansion Boards
Texas InstrumentsProcessor DKx Daughter Cards

7. Selection Guidelines

Key considerations:

  • Match SoC architecture to target application requirements
  • Verify interface compatibility with existing systems
  • Evaluate available ecosystem (IDE support, middleware)
  • Consider power budget and thermal management needs
  • Assess long-term availability and RoHS compliance

8. Industry Trends

Future developments include:

  • Integration of AI accelerators (NPU modules)
  • Adoption of 5nm/3nm process technologies
  • Expansion of RISC-V based evaluation platforms
  • Increased focus on functional safety (ISO 26262 compliance)
  • Growing adoption of modular "Lego-style" prototyping systems
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