The STEVAL-MIC007V1 is a daughterboard featuring four IMP23ABSU analog MEMS microphones, designed for ultrasound analysis and predictive maintenance. It offers omnidirectional sensitivity, a frequency response up to 80kHz, and ultra-low power consumption of 150μA. The board supports a supply voltage from 1.52 to 3.6V and provides a high acoustic overload point of 130dBSPL. Its modular design allows easy testing and detachment of individual microphones, making it suitable for industrial and acoustic research applications. RoHS compliant and optimized for sensitive ultrasound detection.
Number of Microphones: 4 IMP23ABSU analog MEMS microphones
Supply Voltage: 1.52 to 3.6 V
Acoustic Overload Point: 130 dBSPL
Frequency Response: Up to 80 kHz for ultrasound applications
Power Consumption: Max 150 μA
Sensitivity: -38 dBV +1 dB
Microphone Type: Omnidirectional analog MEMS
RoHS compliant
Enhanced RF immunity
Microphone configuration: Bottom port
Buy the STMicroelectronics IMP23ABSU – Reliable Ultrasonic Microphone Array for Industrial Applications
Discover the innovative STMicroelectronics microphone array module featuring four IMP23ABSU MEMS microphones with ultrasonic bandwidth up to 80kHz. Perfect for ultrasound analysis, predictive maintenance, and acoustic research, this low-power, omnidirectional board supports voltages from 1.52 to 3.6 V and offers high overload capacity of 130dBSPL. Its modular design allows easy testing and customization for industrial needs. RoHS compliant, making it an essential component for advanced acoustic sensing systems and industrial diagnostics.
Order your STMicroelectronics SeriesSTEVALMIC007V1 ultrasonic microphone array today and enhance your industrial maintenance and ultrasound research projects with dependable quality.
Frequently Asked Questions
Where can I buy STMICROELECTRONICS STEVALMIC007V1?
You can click on the BUY or RFQ button to purchase STEVALMIC007V1 from an authorized STMICROELECTRONICS distributor.
How do I troubleshoot issues or seek technical support for part STEVALMIC007V1?