Wearable Health Monitoring Sensor for Domestic Animals Using ESP32
Introduction
Domestic animals such as cows, goats, dogs, and pets play an important role in households and agriculture. Their health condition directly affects productivity, safety, and overall well-being. Early detection of abnormal body temperature or unusual movement can help prevent serious illness and reduce veterinary costs.
With advancements in embedded systems and IoT technology, wearable devices can be used to continuously monitor animal health parameters. This project focuses on designing a wearable sensor system that monitors body temperature using an infrared temperature sensor and activity/movement using an accelerometer, controlled by an ESP32 Mini microcontroller.
For Full Project:
https://electronicsworkshops.com/wearable-health-monitoring-sensor-for-domestic-animals-using-esp32/
Objectives of the Project
The main objectives of this project are:
To design a compact and wearable device suitable for domestic animals
To monitor body temperature using a non-contact infrared sensor
To track animal movement and activity using an accelerometer
To process sensor data using the ESP32 Mini microcontroller
To display or transmit collected data for monitoring purposes
To create a low-power and cost-effective solution for animal health monitoring
PCB Manufacturer
PCBWAY is a highly skilled company specializing in PCB manufacturing. They offer their services at incredibly low prices, such as providing 10 PCBs for only $5. Additionally, new members receive a $5 bonus. The website allows customers to upload their Gerber Files and place orders.ORDER LINK

PCBWAY is known for producing PCBs of exceptional quality and maintaining high standards, which is why many people trust them for their PCB and PCBA needs.
System Overview
The wearable sensor system consists of three main components:
Sensing Unit – Infrared temperature sensor and accelerometer
Control Unit – ESP32 Mini microcontroller
Output/Communication Unit – Serial monitor, mobile app, or cloud platform (optional)
The system is worn on the animal’s body (collar or harness) and continuously collects data related to temperature and movement.
Working Principle
The working principle of the wearable sensor system is based on continuous data acquisition, processing, and monitoring of an animal’s physiological and activity parameters. The infrared temperature sensor measures the surface body temperature of the animal without physical contact by detecting the infrared radiation emitted from the skin, ensuring comfort and hygiene. At the same time, the accelerometer continuously senses motion and orientation changes along three axes (X, Y, and Z), allowing the system to identify activity levels such as movement, rest, or abnormal behavior. The ESP32 Mini microcontroller collects raw data from both sensors, filters and processes the signals, and compares them with predefined normal ranges. The processed information is then displayed on the serial monitor or transmitted wirelessly using the ESP32’s built-in Wi-Fi or Bluetooth for remote monitoring. This real-time monitoring enables early identification of fever or unusual inactivity, supporting timely intervention and improved animal health management.
Circuit Diagram

This circuit diagram represents a wearable health monitoring system for domestic animals based on an ESP32 Mini controller. The system is powered by a battery, and the supply voltage is regulated from 5 V to 3.3 V using an AMS1117-3.3 voltage regulator to safely power the ESP32 and sensors. An infrared temperature sensor and an accelerometer are interfaced with the ESP32 through the I²C communication bus, with pull-up resistors ensuring reliable data transfer. NMOS transistors are used to control the power supply to each sensor, allowing the ESP32 to switch them on or off for reduced power consumption, which is essential for wearable applications. The ESP32 processes the temperature and motion data and can transmit it wirelessly or display it through serial communication, while the reset and boot circuitry ensures proper startup and programming, making the overall design compact, efficient, and suitable for continuous animal health monitoring.
PCB Files


3D Files


Conclusion
This project successfully demonstrates the design and development of a wearable sensor system for domestic animals using an ESP32 Mini, infrared temperature sensor, and accelerometer. The system provides an efficient and practical solution for monitoring animal health and activity. With further enhancements, it can be transformed into a complete IoT-based smart animal health monitoring system.
For Full Project:
https://electronicsworkshops.com/wearable-health-monitoring-sensor-for-domestic-animals-using-esp32/
Wearable Health Monitoring Sensor for Domestic Animals Using ESP32
*PCBWay community is a sharing platform. We are not responsible for any design issues and parameter issues (board thickness, surface finish, etc.) you choose.
Raspberry Pi 5 7 Inch Touch Screen IPS 1024x600 HD LCD HDMI-compatible Display for RPI 4B 3B+ OPI 5 AIDA64 PC Secondary Screen(Without Speaker)
BUY NOW- Comments(0)
- Likes(0)
- 0 USER VOTES
- YOUR VOTE 0.00 0.00
- 1
- 2
- 3
- 4
- 5
- 6
- 7
- 8
- 9
- 10
- 1
- 2
- 3
- 4
- 5
- 6
- 7
- 8
- 9
- 10
- 1
- 2
- 3
- 4
- 5
- 6
- 7
- 8
- 9
- 10
- 1
- 2
- 3
- 4
- 5
- 6
- 7
- 8
- 9
- 10
More by Rabin Poudel
-
Automatic Water Pump Control System Using ESP-12F
IntroductionWater scarcity and wastage are major challenges in residential, agricultural, and indust...
-
Flood Detection and warning system using LORA and Arduino
IntroductionFloods are one of the most devastating natural disasters, causing immense damage to life...
-
DIY LED Decoration Tiny Star PCB Project
IntroductionThe Tiny Star PCB is a small and fun DIY electronics project that is perfect for hobbyis...
-
Simple and Cheap Clap Switch Circuit
IntroductionThe Simple and Cheap Clap Switch Circuit is a practical and fun DIY electronics project ...
-
Arduino-based Mist Maker and Hand Dryer
IntroductionIn today’s world, automation and hygiene have become essential, especially in public pla...
-
MPL3115A2 Barometric Pressure, Altitude, and Temperature Sensor
IntroductionThe MPL3115A2 is a highly accurate, low-power digital barometric pressure sensor from NX...
-
E-Speaker Using ESP32
IntroductionThe E-Speaker is a smart, portable, and versatile audio system built using the ESP32 mic...
-
Heart Rate Monitor Circuit Using Photoplethysmography (PPG)
IntroductionHeart rate is a vital physiological parameter that reflects the health and fitness of an...
-
Automated Greenhouse Control System using ESP32
IntroductionAn automated greenhouse control system leverages technology to optimize plant growth con...
-
STD CH330N USB to Serial Converter 5V
IntroductionThe CH330N is a versatile USB-to-serial converter chip that simplifies interfacing betwe...
-
KY-032 Obstacle avoidance sensor module
IntroductionIntroduction to Obstacle Avoidance SensorsObstacle avoidance sensors are essential compo...
-
BC547 BASED WATER LEVEL INDICATOR
IntroductionA water level indicator using a BC547 transistor is a simple and effective electronic pr...
-
How to Design Own Arduino Wifi shield PCB
OverviewArduino wifi shield connects the Arduino with a wifi chip through the serial communication p...
-
DIY Air Quality Tester
OverviewIn this project “DIY Air Quality Tester” we use Node MCU microcontroller and air quality sen...
-
Digital Clock Using Arduino
OverviewIn this project, “Digital clock using Arduino” we will make a PCB board for digital clock an...
-
Bluetooth Controlled car using Arduino
OverviewA Bluetooth Controlled Car Using Arduino is a fascinating DIY project that involves building...
-
ESP8266 Programmer Board (USB-C Based)
IntroductionThe ESP8266 Programmer is a compact breakout board designed to simplify firmware uploadi...
-
Power Management Board for Battery Powered Projects
IntroductionThe LiPo Power Board functions as a power controller for devices powered by batteries, m...
-
-
ARPS-2 – Arduino-Compatible Robot Project Shield for Arduino UNO
2241 0 5 -
-
A Compact Charging Breakout Board For Waveshare ESP32-C3
2733 3 7 -
AI-driven LoRa & LLM-enabled Kiosk & Food Delivery System
2927 2 0 -
-
-
-
ESP32-C3 BLE Keyboard - Battery Powered with USB-C Charging
2964 0 2 -
-







