Evaluation and Demonstration Boards and Kits

Image Part Number Description / PDF Quantity Rfq
EVAL-AD2S1200SDZ

EVAL-AD2S1200SDZ

Analog Devices, Inc.

BOARD EVAL FOR AD2S1200

1

EVLSTNRG-1KW

EVLSTNRG-1KW

STMicroelectronics

EVAL BOARD 1KW SMPS STNRG388A

0

DRV8303EVM

DRV8303EVM

Texas Instruments

EVAL MODULE DRV8303

1

LMK61E2-100M00EVM

LMK61E2-100M00EVM

Texas Instruments

EVAL BOARD FOR LMK61E2-100M00

1

ME812AU-WH50R

ME812AU-WH50R

Bridgetek

BOARD EVAL FT812 CAP 5 LCD

14

EVAL6EDL04I06PTTOBO1

EVAL6EDL04I06PTTOBO1

IR (Infineon Technologies)

EVAL BOARD

2

STEVAL-IPMNG3Q

STEVAL-IPMNG3Q

STMicroelectronics

EVAL BOARD FOR STGIPQ3H60T-H

1

PCAP01-EVA-KIT

PCAP01-EVA-KIT

ScioSense

EVAL KIT PCAP01

0

DRV8886EVM

DRV8886EVM

Texas Instruments

DRV8886EVM

3

DC2073A-A

DC2073A-A

Analog Devices, Inc.

EVAL BOARD SILICON OSC

0

IQS266EV02-S

IQS266EV02-S

Azoteq

IQS266 EVAL KIT 2

7

DC1531A

DC1531A

Analog Devices, Inc.

BOARD DEMO FOR LT3092EDD

17

EPC9078

EPC9078

EPC

BOARD DEV FOR EPC2045 100V EGAN

27

ADP5090-2-EVALZ

ADP5090-2-EVALZ

Analog Devices, Inc.

EVAL BOARD SYNC BOOST DC REG

25

DC2248A-B

DC2248A-B

Analog Devices, Inc.

DEMO BOARD FOR LTC6951

1

MAX17613CEVKIT#

MAX17613CEVKIT#

Maxim Integrated

EVAL MAX17613C REVERSE VP

334

MAXAUTHDEMO1#

MAXAUTHDEMO1#

Maxim Integrated

EVAL KIT SECURE AUTH DEMO 1 ES10

55252

AD637-EVALZ

AD637-EVALZ

Analog Devices, Inc.

BOARD EVALUATION FOR AD637

8

PRT-15217

PRT-15217

SparkFun

LIPO CHARGER PLUS

94

SI5356-EVB

SI5356-EVB

Silicon Labs

EVALUATION BOARD FOR SI5356

0

Evaluation and Demonstration Boards and Kits

Evaluation and Demonstration Boards and Kits are hardware platforms designed to facilitate the development, testing, and demonstration of electronic systems. They serve as critical tools for engineers and developers to prototype applications, validate designs, and accelerate time-to-market. These boards integrate processors, sensors, communication interfaces, and software ecosystems, enabling rapid experimentation across diverse industries such as IoT, automotive, and industrial automation.

TypeFunctional FeaturesApplication Examples
Microcontroller Development BoardsEmbedded CPUs, GPIOs, integrated peripheralsIoT devices, robotics
FPGA Evaluation BoardsReconfigurable logic, high-speed interfacesCommunication systems, AI accelerators
Sensor Expansion KitsMulti-sensor integration (temperature, motion, etc.)Smart agriculture, environmental monitoring
Wireless Communication ModulesBluetooth/Wi-Fi/LoRa protocols, antenna interfacesConnected healthcare, smart cities

Typical architecture includes: - Processing Units: Microcontrollers, FPGAs, or SoCs - Memory: RAM, Flash, EEPROM - Interfaces: USB, UART, SPI, I2C, Ethernet - Power Management: Regulators, battery connectors - Software Stack: SDKs, device drivers, IDEs Physical designs often feature standardized form factors (e.g., Arduino Uno, Raspberry Pi HATs) for modular expansion.

ParameterDescription
Processor Performance (MHz/GHz)Determines computational capability
Memory Capacity (RAM/Flash)Affects program complexity and data storage
Interface TypesDictates peripheral compatibility
Power Consumption (mW/MHz)Critical for battery-operated devices
Operating Temperature (-40 C to +85 C)Defines environmental durability

- Internet of Things (IoT): Smart home controllers, edge AI nodes - Automotive: ADAS sensor fusion platforms - Industrial Automation: PLC controllers, predictive maintenance systems - Consumer Electronics: Wearables, AR/VR prototypes

ManufacturerRepresentative Products
STMicroelectronicsSTM32 Nucleo Series, SensorTile Kit
IntelIntel Edison, Movidius Neural Compute Stick
XilinxZynq UltraScale+ MPSoC Evaluation Kit
ArduinoArduino MKR Series, Nano 33 IoT

Key considerations: 1. Match processor capabilities to application complexity 2. Verify interface compatibility with target peripherals 3. Assess software ecosystem maturity (e.g., ROS support) 4. Evaluate power budget requirements 5. Consider long-term availability and community support

- Growing adoption of RISC-V-based evaluation platforms - Integration of AI/ML accelerators in edge computing boards - Expansion of open-source hardware ecosystems - Increased focus on energy-efficient architectures for IoT - Standardization of form factors (e.g., SparkFun's Qwiic system)

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