The SCA3000-E01 belongs to the category of accelerometers and is designed for use in various applications requiring accurate measurement of acceleration. This sensor is characterized by its compact size, high precision, and low power consumption. The package includes the SCA3000-E01 sensor itself, along with essential documentation and support materials. It is available in both single-unit packaging and bulk quantities to cater to different user requirements.
The SCA3000-E01 features a standard pin configuration with specific pins allocated for power supply, communication interface, and data output. A detailed pinout diagram is provided in the product datasheet for easy reference during integration.
The SCA3000-E01 operates based on the principle of capacitive sensing, where changes in capacitance due to acceleration are converted into digital signals. This allows for precise measurement of acceleration in the specified range.
The SCA3000-E01 finds extensive application in: - Motion tracking and gesture recognition in consumer electronics - Vibration monitoring in industrial equipment - Impact detection in automotive safety systems
For users seeking alternative options, the following models can be considered: - SCA100T-D02: Offers a wider measurement range for higher acceleration applications. - SCA2100-D01: Provides enhanced temperature stability for extreme operating conditions.
In conclusion, the SCA3000-E01 accelerometer offers high precision and low power consumption, making it suitable for diverse applications requiring accurate acceleration measurement within a limited range.
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What is the SCA3000-E01?
What are the key features of the SCA3000-E01?
How is the SCA3000-E01 typically used in technical solutions?
What is the operating voltage range of the SCA3000-E01?
Can the SCA3000-E01 communicate with microcontrollers or other digital systems?
What is the resolution of the SCA3000-E01?
Is the SCA3000-E01 suitable for harsh environments?
Can the SCA3000-E01 be calibrated for specific applications?
What are the typical output formats of the SCA3000-E01?
Are there any application notes or reference designs available for integrating the SCA3000-E01 into technical solutions?