Pick the right kit for you
Three configurations — from the bare demo board to the complete development kit with enclosure.
Pre-soldered MAX30102 sensor + 0.96" OLED display. Just connect to any 3.3V/5V microcontroller via I²C and start measuring.
- ✓MAX30102 optical sensor (SpO₂ + HR)
- ✓0.96" OLED display (128×64)
- ✓Pre-soldered header pins
- ✓I²C interface (3.3V / 5V)
- ✓Free code + GitHub tutorials
Everything in the board variant plus an ESP32-WROOM-32 development board with USB-C — Wi-Fi and Bluetooth ready out of the box.
- ✓Everything in Board Only
- ✓ESP32-WROOM-32 (240 MHz dual-core)
- ✓USB Type-C interface
- ✓Wi-Fi 802.11b/g/n + Bluetooth 4.2
- ✓Arduino IDE + MicroPython ready
The full package — demo board, ESP32, and a custom-fit acrylic case for safe, professional handling during lab, classroom, and field use.
- ✓Everything in Board + ESP32
- ✓Custom acrylic protective case
- ✓ESD-safe design
- ✓Lab & field ready enclosure
- ✓Gift-ready packaging
⚠ Educational demo board only — not a certified medical device. Not for clinical use or patient monitoring.
What students are saying
"This board saved me during my final-year project. The OLED display shows live SpO₂ and BPM the moment you plug it in — no soldering, no configuration headaches. I had data streaming to my laptop in under 20 minutes. The I²C library just worked with Arduino IDE. Absolutely worth ₹999."
"I've used three different MAX30102 breakout boards from other vendors and the readings were all over the place. This one is rock-solid. The ESP32 bundle is a steal — got Wi-Fi telemetry running to a Node-RED dashboard within an afternoon. Highly recommend for anyone doing IoT health monitoring research."
"Our lab professor actually recommended AikyaNova after seeing my demo. The pre-soldered headers mean I can share it across the whole batch without worrying about someone burning a pad. The acrylic case in the full kit is a nice touch — feels professional. Delivery was fast, packed well."
"Really solid hardware. I used it for a machine learning project correlating SpO₂ patterns with sleep quality — the signal quality is clean enough to actually train on. Took off one star only because I wish there was a sample Python script included, but I found community code online. Support replied to my email within a day."
"I'm from a diploma background and was nervous this would be too advanced, but the documentation on the AikyaNova site walked me through everything. Got it working with an Arduino Nano in my first sitting. Presented it at our college tech fest and won second place! The OLED display is what made it stand out visually."
"Picked this up for a biophysics lab demonstration. The raw PPG waveform output is perfect for teaching students about photoplethysmography principles — you can literally see the pulse wave on an oscilloscope. Build quality is noticeably better than the cheap modules on e-commerce sites. Delivery took 4 days to Pune, which is fine."
Built for builders
The AikyaNova MAX30102 PPG SpO₂ Sensor Kit is a complete biomedical learning module designed for engineering students, makers, and STEM educators. Unlike bare sensor breakout boards, this kit comes pre-soldered with header pins — just plug it into your breadboard and you're ready.
At the heart of the kit is the MAX30102 high-sensitivity PPG biosensor, which uses infrared and red LED-based photoplethysmography to measure Heart Rate (BPM) and SpO₂ in real time, displayed on the onboard 0.96" OLED screen.
AikyaNova provides free downloadable sample code and step-by-step tutorials on GitHub — covering basic heart rate reading to SpO₂ calculation algorithms.
Educational demo board intended for learning and prototyping only. Not a certified medical device and should not be used for clinical diagnosis or patient monitoring.
Full specs
Common questions
Who is this board for?
This board is ideal for engineering students, researchers, makers, and developers who want to prototype SpO₂ and heart-rate measurement systems. It's also suitable for proof-of-concept healthcare IoT projects and academic lab work.
Do I need the ESP32 variant?
If you already have an Arduino, Raspberry Pi, or another microcontroller, the standalone board is sufficient — it communicates over I²C. Choose the ESP32 variant if you want Wi-Fi or Bluetooth connectivity out of the box.
Is the firmware open-source?
Yes. All purchasers receive access to the full source code on GitHub — including the Arduino library, ESP32 firmware, and example sketches. You can modify and extend it freely for personal and academic use.
What payment methods are accepted?
We accept all major payment methods through Razorpay — UPI (PhonePe, GPay, Paytm), Debit & Credit Cards (Visa, MasterCard, RuPay), Net Banking, and EMI options on select cards.
How long does shipping take?
Orders are dispatched within 2–3 business days. Delivery typically takes 4–7 business days across India. You will receive a tracking number via email once shipped. Free shipping on orders above ₹2,000.
Get special pricing for bulk purchases — ideal for college labs, maker spaces, research groups, and institutional procurement.
Contact for Bulk Pricing →AikyaNova conducts hands-on biomedical electronics workshops for engineering colleges and STEM programs — covering PPG sensing, SpO₂ algorithms, and embedded systems.
Contact for a Workshop →


























