MEMS, nano Series, Sensor Evaluation Boards

Results:
7
Manufacturer
Series
Sensitivity
Utilized IC / Part
Sensing Range
Voltage - Supply
Embedded
Interface
Supplied Contents
Sensor Type
Results remaining7
Applied Filters:
MEMS, nano
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ImageProduct DetailPriceAvailabilityECAD ModelInterfaceSensor TypeSupplied ContentsSeriesSensing RangeSensitivityEmbeddedUtilized IC / PartVoltage - Supply
STEVAL-MKI031V1
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Quantity
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PCB Symbol, Footprint & 3D Model
USB
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±2g, 4g, 8g
3.9mg/digit, 2mg/digit, 1mg/digit
Yes, MCU, 8-Bit
LIS331DLH
-
STEVAL-MKI092V2
EVAL BOARD FOR LIS331HH
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Quantity
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PCB Symbol, Footprint & 3D Model
I²C, Serial, SPI
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±6g, 12g, 24g
12mg/digit, 6mg/digit, 3mg/digit
No
LIS331HH
-
STEVAL-MKI105V1
BOARD ADAPT LIS3DH DIL24 SOCKET
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Quantity
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PCB Symbol, Footprint & 3D Model
I²C, Serial, SPI
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±2g, 4g, 8g, 16g
1mg/digit, 2mg/digit, 4mg/digit, 12mg/digit
No
LIS3DH
1.7V ~ 3.6V
SEN-10345
EVAL BOARD FOR LIS331HH
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Quantity
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PCB Symbol, Footprint & 3D Model
I²C, Serial, SPI
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±6g, 12g, 24g
12mg/digit, 6mg/digit, 3mg/digit
No
LIS331HH
2.16V ~ 3.6V
STEVAL-MKI088V1
BOARD DEMO FOR LIS33DE
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Quantity
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PCB Symbol, Footprint & 3D Model
I²C, Serial, SPI
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±2.3g, 9.2g
18mg/digit, 72mg/digit
No
LIS33DE
-
STEVAL-MKI090V1
DEMO BOARD FOR LIS331DLF
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Quantity
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PCB Symbol, Footprint & 3D Model
I²C, Serial, SPI
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±2g, 4g, 8g
16LSB/g, 8LSB/g, 4LSB/g
No
LIS331DLF
-
STEVAL-MKI089V1
DEMO BOARD FOR LIS331DLH
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
I²C, Serial, SPI
Accelerometer, 3 Axis
Board(s)
MEMS, nano
±2g, 4g, 8g
3.9mg/digit, 2mg/digit, 1mg/digit
No
LIS331DLH
-

Sensor Evaluation Boards

Sensor Evaluation Boards are pre-assembled circuit boards that serve as practical examples of specific integrated circuits or devices, showcasing the functionality and performance of various sensors in real-world applications. These boards come populated with components and are designed to provide a platform for evaluating and testing different sensor technologies. The family of Sensor Evaluation Boards offers examples of a wide variety of sensors, including accelerometers, barometric pressure sensors, gyroscopes, temperature sensors, humidity sensors, optical sensors, light sensors, air quality sensors, capacitive sensors, carbon dioxide sensors, fingerprint sensors, encoders, fluid sensors, gas sensors, infrared sensors, joystick sensors, magnetic sensors, and many more. This diverse range of sensors covers a multitude of environmental and positional sensing applications, catering to different industry needs and electronic system requirements. Engineers and designers can use these evaluation boards to assess the performance, accuracy, and functionality of different sensors under realistic operating conditions. By utilizing these boards, professionals can evaluate parameters such as precision, response time, sensitivity, and environmental robustness to determine the suitability of specific sensors for their intended applications. In summary, Sensor Evaluation Boards are valuable tools that provide practical examples of a wide array of sensors and integrated circuits. With their diverse sensor offerings and real-world application demonstrations, these boards offer a comprehensive platform for evaluating and selecting the most suitable sensor solutions for a broad range of electronic applications.