MAX30102 Heart Rate and Pulse Oximeter Sensor

Original price was: 310,00 EGP.Current price is: 300,00 EGP.

حساس (سينسور) يُستخدم في رصد وقياس الإشارات الفيزيائية لمشاريع Arduino و Raspberry Pi وإنترنت الأشياء. | a sensor module used to detect and measure physical signals for Arduino, Raspberry Pi, and IoT projects.

Description

MAX30102 Heart Rate and Pulse Oximeter Sensor

The MAX30102 Heart Rate and Pulse Oximeter Sensor is an advanced optical module designed to measure heart rate and blood oxygen saturation (SpO2) with exceptional accuracy. It integrates red and infrared LEDs along with a high-sensitivity photodetector, which ensures precise readings even during motion or intense physical activity.

Moreover, this sensor operates with ultra-low power consumption, making it ideal for battery-powered and portable devices such as fitness trackers, smartwatches, and health monitoring systems. In addition, its compact and highly integrated design simplifies circuit integration, reducing both development time and cost.

Furthermore, the MAX30102 includes built-in ambient light cancellation and motion artifact reduction, ensuring stable and reliable data even in challenging environments. These features make it a perfect choice for developers who require dependable performance in wearable or IoT-based health monitoring projects.

As a result, this sensor has become a preferred solution in modern medical and wellness devices, where efficiency and precision are crucial. Additionally, it supports I2C communication, allowing easy interface with microcontrollers such as Arduino, ESP32, and Raspberry Pi.


Features

  • Optical heart-rate and pulse oximetry solution for accurate health monitoring.

  • Upgraded version of the MAX30100 with better accuracy, enhanced reliability, and new features.

  • New improvements include proximity sensing and advanced ambient light rejection.

  • Tiny breakout board design for easy integration into compact systems.

  • Extremely low power and suitable for wearable or portable devices.

  • Non-chest-based heart-rate and SpO2 detection method.

  • Reliable operation with ultra-low current draw, ensuring long battery life.


Specifications

  • Power Supply: 3.3V to 5.5V

  • Current Draw: ~600μA (during measurement)

  • Standby Current: ~0.7μA

  • Red LED Wavelength: 660nm

  • IR LED Wavelength: 880nm

  • Temperature Range: -40˚C to +85˚C

  • Temperature Accuracy: ±1˚C


Pin Configuration

The sensor includes standard pins for VCC, GND, SDA, and SCL, which can be easily connected to most development boards via I2C. Thus, integration is straightforward and requires minimal setup.


In conclusion, the MAX30102 Heart Rate and Pulse Oximeter Sensor combines precision, energy efficiency, and versatility in one compact package. Therefore, whether you are developing a medical-grade device or an innovative fitness tracker, this sensor provides the reliability and performance needed for next-generation health applications.

  • VIN is the power pin. You can connect it to 3.3V or 5V output from your Arduino.
  • SCL is the I2C clock pin, connect to your Arduino’s I2C clock line.
  • SDA is the I2C data pin, connect to your Arduino’s I2C data line.
  • INT The MAX30102 can be programmed to generate an interrupt for each pulse. This line is open-drain, so it is pulled HIGH by the onboard resistor. When an interrupt occurs the INT pin goes LOW and stays LOW until the interrupt is cleared.
  • IRD The MAX30102 integrates an LED driver to drive LED pulses for SpO2 and HR measurements. Use this if you want to drive the IR LED yourself, otherwise leave it unconnected.
  • RD pin is similar to the IRD pin, but is used to drive the Red LED. If you don’t want to drive the red LED yourself, leave it unconnected.
  • GND is the ground.
Applications:
  • Fitness Assistant Devices
  • Medical Monitoring Devices
  • Home Heart Rate and SpO2 Monitoring
Package Include:
  • 1x MAX30102 Heart Rate and Pulse Oximeter Sensor
  • 2x set of header pins
DataSheet

MAX30102 Pulse Oximeter Sensor

Handling & Safety

Always power the biometric sensor within its rated voltage range and double-check pin connections before powering up. Avoid touching the circuit while it is live, and keep it away from moisture and static discharge during handling. These steps protect the part from damage.

Why Choose This Biometric Sensor

First, it is a widely used part in the maker community, so documentation, libraries and example wiring diagrams are easy to find. Second, it works with common microcontroller platforms, so you can get it running quickly. Third, our team checks basic function before it ships. So, you avoid guesswork when you order. As a result, this is a dependable choice for learning, prototyping or finishing a project.

Wiring Tips

Before final assembly, test the part on a breadboard if you are unsure of the wiring. Therefore, you avoid damaging your main circuit during first power-up. Also, keep connections short and secure to reduce noise and reading errors. In addition, label each wire during assembly so future troubleshooting is easier. As a result, your project stays reliable and easy to maintain.

Good to Know

A well-matched biometric sensor saves time on debugging later. Therefore, double-check the pin layout and voltage requirements against your other components before wiring everything together. Also, keep the original packaging until you have tested the part, since this makes any exchange easier if something is not right. In addition, bookmark the manufacturer’s documentation for quick reference during your build. As a result, your project moves forward with fewer surprises.

MAX30102 Heart Rate and Pulse Oximeter Sensor

MAX30102 Heart Rate and Pulse Oximeter Sensor حساس حيوي مخصص لـ مراقبة معدل ضربات القلب والإشارات الحيوية المرتبطة.

الاستخدامات

  • مشاريع مراقبة صحية ذاتية
  • مشاريع تتبع اللياقة
  • المشاريع التعليمية الطبية الحيوية
  • الإلكترونيات القابلة للارتداء

ملاحظات الأمان

شغّل حساس حيوي دايمًا في حدود الجهد المقنن ليه، وراجع توصيلات الأطراف قبل التشغيل. تجنب لمس الدائرة وهي شغالة، وخليها بعيدة عن الرطوبة والشحنات الساكنة أثناء التعامل معاها. هذه الخطوات بتحمي القطعة من التلف.

ليه تختار حساس حيوي ده

أولاً، قطعة مستخدمة بشكل واسع في مجتمع الصناع، فتلاقي شروحات ومكتبات وأمثلة توصيل بسهولة. ثانيًا، بيشتغل مع منصات المتحكمات الشائعة، فتقدر تشغّله بسرعة. ثالثًا، بنتأكد من الوظيفة الأساسية قبل الشحن. فهو اختيار موثوق للتعلم أو التجربة أو إنهاء مشروعك.

تقدر تستعرض باقي الحساسات والموديولات عندنا لمشروعك القادم.

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