Evaluation Boards - Sensors

Image Part Number Description / PDF Quantity Rfq
STEVAL-MKI178V1

STEVAL-MKI178V1

STMicroelectronics

EVAL BOARD FOR LSM6DSL

0

STEVAL-MKI099V1

STEVAL-MKI099V1

STMicroelectronics

BOARD ADAPTER LPR403AL DIL24

0

STEVAL-MKI011V1

STEVAL-MKI011V1

STMicroelectronics

BOARD ADAPTER 20DIP LIS302ALB

0

EK3L02AQ

EK3L02AQ

STMicroelectronics

BOARD EVAL MEMS FOR LIS3L02AQ

0

STEVAL-MKI003V1

STEVAL-MKI003V1

STMicroelectronics

BOARD EVALUATION LIS3L02AQ3

0

EK3L02AL

EK3L02AL

STMicroelectronics

BOARD EVALUATION FOR LIS3L02AL

0

STEVAL-IFS001V1

STEVAL-IFS001V1

STMicroelectronics

EVAL BOARD 3AXIS MEMS ACCELLRMTR

0

EK3L02DQX

EK3L02DQX

STMicroelectronics

BOARD EVALUATION FOR LIS3L02DQX

0

STEVAL-MKI154V1

STEVAL-MKI154V1

STMicroelectronics

BOARD MODULE ADAPTER LSM9DS0

0

STV-974/552S-R02

STV-974/552S-R02

STMicroelectronics

BOARD DEMO USB STV0974 W/VS6552

0

STEVAL-MKI007V1

STEVAL-MKI007V1

STMicroelectronics

BOARD EVAL ACCELEROM LIS302ALB

0

EK3L02AS4

EK3L02AS4

STMicroelectronics

BOARD EVAL MEMS FOR LIS3L02AS4

0

EK3LV02DQ

EK3LV02DQ

STMicroelectronics

BOARD EVALUATION FOR LIS3LV02DQ

0

EK3L02DQ

EK3L02DQ

STMicroelectronics

BOARD EVAL MEMS FOR LIS3L02DQ

0

STV-674/502V-R01

STV-674/502V-R01

STMicroelectronics

KIT REF DESIGN STV0674/VV6502

0

STEVAL-MKI002V1

STEVAL-MKI002V1

STMicroelectronics

BOARD EVALUATION LIS3L02AL

0

STEVAL-MKI001V1

STEVAL-MKI001V1

STMicroelectronics

BOARD EVALUATION LIS3L02AS4

0

STEVAL-MKI111V1

STEVAL-MKI111V1

STMicroelectronics

BOARD DEMO LPS001WP MEMS

0

STV-676/501C-R01

STV-676/501C-R01

STMicroelectronics

KIT REF DESIGN STV0676/VV6501

0

STEVAL-MKI010V1

STEVAL-MKI010V1

STMicroelectronics

BOARD ADAPTER 20DIP LIS3L02AS4

0

Evaluation Boards - Sensors

1. Overview

Evaluation boards for sensors are specialized hardware platforms designed to test, validate, and develop sensor-based applications. These boards integrate sensor elements with processing units, communication interfaces, and power management modules. They play a critical role in accelerating product development cycles in industries such as IoT, industrial automation, healthcare, and consumer electronics by enabling rapid prototyping and performance characterization.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Temperature Sensor BoardsHigh-precision thermal sensing with digital/analog outputsClimate control systems, medical devices
Accelerometer Boards3-axis motion detection with programmable sensitivityVibration monitoring, fitness trackers
Pressure Sensor BoardsAtmospheric/differential pressure measurementWeather stations, automotive systems
Environmental Sensor BoardsMulti-parameter detection (humidity, gas, light)Smart agriculture, air quality monitors
Image Sensor BoardsHigh-resolution optical sensing with ISP integrationSurveillance cameras, machine vision

3. Structure and Components

Typical evaluation boards consist of: - Sensor element (MEMS, CMOS, or discrete transducers) - Microcontroller/SoC with ADC/DAC interfaces - Communication modules (I2C, SPI, UART, BLE/Wi-Fi) - Power management ICs and voltage regulators - Debugging interfaces (JTAG, SWD) - Auxiliary components (LED indicators, potentiometers) The PCB layout optimizes signal integrity while minimizing electromagnetic interference.

4. Key Technical Specifications

ParameterDescriptionImportance
Measurement RangeMinimum/maximum detectable valuesDetermines application suitability
AccuracyError margin vs. reference valuesImpacts system reliability
Sampling RateData acquisition frequencyDefines dynamic response capability
Power ConsumptionOperating current/voltage requirementsAffects battery life and thermal design
Interface TypeCommunication protocol compatibilityDictates system integration complexity

5. Application Areas

  • Industrial Automation: Predictive maintenance systems, process control
  • Healthcare: Wearable vital sign monitors, diagnostic equipment
  • Consumer Electronics: Smart home devices, mobile accessories
  • Automotive: Tire pressure monitoring, ADAS sensors
  • Aerospace: Structural health monitoring, navigation systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
STMicroelectronicsSTEVAL-MKI187V16-axis IMU with advanced calibration
Texas InstrumentsBOOSTXL-ULTRASONICUltrasonic sensing for distance measurement
Analog DevicesEVAL-ADICUP3029Low-power Cortex-M4F based platform
NXP SemiconductorsFRDM-FXS-MULTI-BMulti-sensor fusion for IoT applications

7. Selection Guidelines

Key considerations include: - Match sensor specifications to target application requirements - Verify compatibility with existing development ecosystems - Evaluate power budget and form factor constraints - Consider available software support (drivers, SDKs) - Assess calibration and certification requirements Example: For a wearable health monitor, prioritize low-power accelerometers with medical-grade accuracy.

8. Industry Trends

Emerging trends include: - Integration of AI accelerators for edge computing - Development of wireless sensor nodes with energy harvesting - Advancements in MEMS fabrication for higher sensitivity - Standardization of sensor fusion algorithms - Growth of open-source hardware ecosystems Market projections indicate a 12% CAGR through 2027 driven by IoT and Industry 4.0 adoption.

RFQ BOM Call Skype Email
Top