Evaluation Boards - Embedded - MCU, DSP

Image Part Number Description / PDF Quantity Rfq
TMDXL138LOGICEXP

TMDXL138LOGICEXP

Texas Instruments

OMAP-L138 EVAL BRD

0

TMDX570LS30376USCB

TMDX570LS30376USCB

Texas Instruments

TMS570LS EVAL BRD

0

TMDXEVM6678LE

TMDXEVM6678LE

Texas Instruments

TMS320C6678 EVAL BRD

0

TMDSDOCK28343

TMDSDOCK28343

Texas Instruments

EXPERIMENTER TMS320C28343 EVAL

0

TMDXL138LOGICEXP-B

TMDXL138LOGICEXP-B

Texas Instruments

OMAP-L138 EVAL BRD

0

COP8SA-EPU-1

COP8SA-EPU-1

Texas Instruments

COP8SA EVAL BRD

0

XTCIEVMK2X

XTCIEVMK2X

Texas Instruments

K2H EVAL BRD

0

EKT-LM4F232

EKT-LM4F232

Texas Instruments

LM4F232 EVAL BRD

0

TMDXEVM6678L

TMDXEVM6678L

Texas Instruments

TMS320C6678 EVAL BRD

0

TMDXEVM6455-0E

TMDXEVM6455-0E

Texas Instruments

TMS320C6455 EVAL BRD

0

TMDSEZD2812

TMDSEZD2812

Texas Instruments

EZDSP TMS320F2812 EVAL BRD

0

TMDXEVM6657LE

TMDXEVM6657LE

Texas Instruments

TMS320C6657 EVAL BRD

0

EKT-LM3S9D90

EKT-LM3S9D90

Texas Instruments

LM3S9D90 EVAL BRD

0

TMDX320036711

TMDX320036711

Texas Instruments

TMS320C6711 EVAL BRD

0

CP3-TB-BT26-0

CP3-TB-BT26-0

Texas Instruments

CP3BT26 EVAL BRD

0

TMDSKSP5912-ME

TMDSKSP5912-ME

Texas Instruments

MISTRAL OMAP5912 EVAL BRD

0

TMDXRM57DHDK

TMDXRM57DHDK

Texas Instruments

KIT DEV HERCULES

0

LDP3430-VG1.1.0

LDP3430-VG1.1.0

Texas Instruments

ZOOM OMAP34X EVAL BRD

0

TMDXEVM6424

TMDXEVM6424

Texas Instruments

TMS320C6424 EVAL BRD

0

TMDXEVM355

TMDXEVM355

Texas Instruments

DIGITAL VID TMS320DM355 EVAL BRD

0

Evaluation Boards - Embedded - MCU, DSP

1. Overview

Evaluation Boards (Dev Boards) for Embedded MCUs (Microcontroller Units) and DSPs (Digital Signal Processors) are specialized hardware platforms designed to facilitate the development, testing, and prototyping of embedded systems. These boards provide a physical environment to validate processor capabilities, peripheral integration, and software algorithms before final product deployment. They play a critical role in accelerating development cycles for applications ranging from IoT devices to industrial automation systems.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
MCU Evaluation BoardsARM Cortex-M series, integrated peripherals (UART, SPI, I2C), low-power modesSmart sensors, wearables, home automation
DSP Development KitsHigh-speed floating-point processing, SIMD instructions, real-time signal analysisAudio processing, radar systems, motor control
SoC Embedded BoardsIntegrated CPU+GPU+FPGA, multimedia acceleration, OS supportEdge computing, robotics, automotive infotainment
FPGA-based Prototyping BoardsReconfigurable logic, hardware-software co-design, high-speed I/O5G communication, AI inference accelerators

3. Structure and Components

Typical evaluation boards consist of:

  • PCB base with processor/microcontroller soldered onboard
  • Memory modules (SRAM, Flash, DDR)
  • Debugging interfaces (JTAG, SWD, UART)
  • Power management unit (voltage regulators, PMICs)
  • Peripheral connectors (GPIO, ADC/DAC, Ethernet)
  • Expansion headers for add-on modules (shields, PMODs)
  • Onboard sensors/actuators (depending on application focus)

4. Key Technical Specifications

ParameterImportance
Processor ArchitectureDetermines computational capabilities and software ecosystem compatibility
Maximum Clock FrequencyImpacts processing speed and real-time performance
Memory BandwidthAffects data throughput for signal processing applications
Peripheral IntegrationReduces external component requirements and system complexity
Power ConsumptionCritical for battery-powered and thermal-constrained applications
Debugging CapabilitiesEnables efficient firmware development and hardware verification

5. Application Fields

Key industries utilizing evaluation boards:

  • Industrial Automation: PLCs, motor drives, predictive maintenance systems
  • Consumer Electronics: Smart home devices, AR/VR headsets
  • Automotive: ADAS prototyping, ECU development
  • Medical: Portable diagnostic equipment, wearable health monitors
  • Communications: 5G baseband processing, software-defined radios
  • Energy: Smart grid controllers, solar inverters

6. Leading Manufacturers and Representative Products

ManufacturerProduct SeriesKey Features
STMicroelectronicsSTM32 Nucleo SeriesARM Cortex-M cores, Arduino compatibility, mbed OS support
Texas InstrumentsTMDX SeriesC2000 DSPs for power electronics, Code Composer Studio integration
NXP Semiconductorsi.MX RT SeriesARM Cortex-M7 based crossover processors, LCD interface support
XilinxZynq UltraScale+ MPSoCARM Cortex-A53 + FPGA fabric, AI acceleration with DPU

7. Selection Guidelines

Key considerations when choosing evaluation boards:

  • Match processor architecture to target application requirements (e.g., ARM for general-purpose, DSP for signal processing)
  • Verify peripheral compatibility with system design (number of timers, communication interfaces)
  • Assess expansion capabilities for future upgrades
  • Evaluate software toolchain maturity (IDE, compilers, RTOS support)
  • Consider power consumption specifications for end-application scenarios
  • Check available community resources and technical documentation

8. Industry Trend Analysis

Emerging trends shaping evaluation board development:

  • Increased integration of AI acceleration cores (e.g., Google Edge TPU integration)
  • Rise of RISC-V based evaluation platforms for customizable computing
  • Enhanced security features (trusted execution environments, hardware encryption)
  • Development of low-power wide-area network (LPWAN) enabled boards for IoT
  • Adoption of heterogeneous computing architectures (CPU+GPU+DSP+FPGA)
  • Cloud-connected evaluation platforms for remote testing and collaboration
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