The MAX86141ENP+T belongs to the category of integrated optical sensor modules. It is designed for use in wearable health and fitness applications, offering characteristics such as high sensitivity, low power consumption, and small package size. The sensor comes in a compact package and is essential for monitoring various biometric parameters. The packaging includes a single sensor module per quantity.
The MAX86141ENP+T features a 14-pin wafer-level package with specific pin functions for power supply, data communication, and sensor input/output. The detailed pin configuration is as follows: 1. VDD: Power Supply 2. SDA: I2C Data 3. SCL: I2C Clock 4. INTB: Interrupt Output 5. RDY: Ready Output 6. GND: Ground 7. LEDANODE: LED Anode 8. LEDCATHODE: LED Cathode 9. PDANODE: Photodetector Anode 10. PDCATHODE: Photodetector Cathode 11. LEDGND: LED Ground 12. PDGND: Photodetector Ground 13. NC: No Connection 14. NC: No Connection
The MAX86141ENP+T offers the following functional features: - Integrated optical sensor for heart rate and SpO2 monitoring - Low power consumption for extended battery life - High sensitivity for accurate biometric measurements - Compact package size for easy integration into wearable devices - I2C interface for seamless data communication
The MAX86141ENP+T operates based on the principles of photoplethysmography (PPG) to measure heart rate and oxygen saturation levels. It utilizes an integrated LED and photodetector to emit light into the skin and measure the reflected or transmitted light, which is then processed to derive biometric information.
The MAX86141ENP+T is ideally suited for integration into various wearable health and fitness devices, including: - Fitness trackers - Smartwatches - Heart rate monitors - Pulse oximeters - Biometric sensing wearables
For those seeking alternative options, the following integrated optical sensor modules can be considered: - MAX30102 - MAX30101 - MAXM86161
In conclusion, the MAX86141ENP+T is a versatile and efficient solution for biometric monitoring in wearable health and fitness applications, offering high sensitivity, low power consumption, and compact packaging.
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