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Excellence In TEMPERATURE & HUMIDITY SYS..(S-ET&HS-7197)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

  • Duration2 Months
  • Enrolled0
  • Lectures50
  • Videos0
  • Notes0
  • CertificateYes

What you'll learn

The Temperature & Humidity System course is a practical electronics, embedded systems, and IoT program designed to teach learners how to develop a system for measuring, displaying, monitoring, and responding to temperature and humidity levels.

The course covers microcontrollers, temperature and humidity sensors, LCD displays, alert systems, relay-based automation, data logging, and WiFi-based monitoring. Learners gain hands-on experience in collecting environmental data and using programmed threshold conditions to generate alerts or control suitable devices.

What You Will Learn

  • Fundamentals of temperature and humidity measurement
  • Electronics and basic circuit connections
  • Arduino microcontroller programming
  • Temperature sensor interfacing
  • Humidity sensor interfacing
  • DHT11 and DHT22 sensors
  • LM35 and DS18B20 sensor concepts
  • LCD and I2C display integration
  • Real-time environmental monitoring
  • Celsius and Fahrenheit conversion
  • Temperature and humidity threshold alerts
  • LED and buzzer warning systems
  • Automatic fan/device control using relays
  • Data logging and storage concepts
  • WiFi and IoT-based monitoring
  • Mobile and web monitoring concepts
  • Sensor calibration and troubleshooting

Who Can Join?

  • School students
  • Electronics beginners
  • Robotics and STEM learners
  • Engineering and diploma students
  • ITI and technical students
  • Arduino beginners
  • IoT learners
  • Embedded systems beginners
  • Automation enthusiasts
  • Students interested in environmental monitoring

Prerequisite

Basic computer knowledge and logical thinking are helpful. Basic electronics or programming knowledge is an advantage but not mandatory. No previous experience in environmental monitoring systems is required.

Course Outcome

After completing this course, learners will be able to:

  • Understand the fundamentals of temperature and humidity monitoring.
  • Interface temperature and humidity sensors with a microcontroller.
  • Read and process environmental sensor data.
  • Display temperature and humidity values on an LCD.
  • Set temperature and humidity threshold levels.
  • Develop LED and buzzer-based alert systems.
  • Control suitable low-voltage devices based on sensor readings.
  • Implement basic environmental data logging.
  • Understand WiFi and IoT-based monitoring.
  • Develop basic mobile or web monitoring systems.
  • Calibrate sensors and troubleshoot measurement problems.
  • Build and demonstrate a functional Temperature & Humidity System.

Career & Learning Opportunities

  • IoT Project Trainee
  • Electronics Project Trainee
  • Embedded Systems Trainee
  • Environmental Monitoring Project Assistant
  • Automation Trainee
  • Sensor Technology Trainee
  • Robotics Project Assistant
  • IoT Support Trainee
  • Electronics Technician – Entry Level
  • Embedded Systems Project Assistant
  • Smart Automation Project Assistant
  • STEM/Robotics Trainer – Entry Level


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Course Syllabus

Module 1: Introduction to Temperature & Humidity Systems

  • Introduction to environmental monitoring
  • Meaning of temperature and humidity
  • Importance of environmental measurement
  • Applications of temperature and humidity monitoring
  • Digital monitoring systems
  • Basic working principle
  • Components required for the project

Module 2: Electronics Fundamentals

  • Basic electronic components
  • Voltage, current and resistance
  • Resistors and capacitors
  • LEDs and switches
  • Breadboard fundamentals
  • Basic circuit connections
  • Power supply concepts

Module 3: Microcontroller Fundamentals

  • Introduction to microcontrollers
  • Arduino overview
  • Arduino board components
  • Digital and analog pins
  • Input and output devices
  • Sensor interfacing
  • Microcontroller-based monitoring

Module 4: Programming Fundamentals

  • Introduction to Arduino IDE
  • Program structure
  • Variables and data types
  • Operators
  • Conditional statements
  • Loops and functions
  • Serial communication
  • Uploading and testing programs

Module 5: Temperature Sensors

  • Introduction to temperature sensors
  • Analog and digital temperature sensors
  • LM35 sensor
  • DS18B20 sensor
  • Temperature data acquisition
  • Sensor interfacing
  • Sensor testing and calibration

Module 6: Humidity Sensors

  • Introduction to humidity measurement
  • Relative humidity concepts
  • DHT11 sensor
  • DHT22 sensor
  • Sensor connections
  • Reading humidity values
  • Temperature and humidity data collection

Module 7: DHT Sensor Integration

  • DHT sensor working principle
  • DHT11/DHT22 connections
  • Sensor libraries
  • Reading temperature values
  • Reading humidity values
  • Handling sensor errors
  • Displaying sensor readings
  • Practical sensor testing

Module 8: LCD Display System

  • Introduction to LCD displays
  • 16x2 LCD
  • I2C LCD concepts
  • LCD connections
  • Displaying temperature
  • Displaying humidity
  • Creating a monitoring interface

Module 9: Real-Time Data Monitoring

  • Real-time temperature monitoring
  • Real-time humidity monitoring
  • Celsius and Fahrenheit
  • Minimum and maximum values
  • Data refresh
  • Serial monitor
  • Monitoring sensor readings

Module 10: Threshold & Alert System

  • Understanding threshold values
  • Setting temperature limits
  • Setting humidity limits
  • LED warning indicators
  • Buzzer alerts
  • High-temperature alerts
  • Low-temperature alerts
  • High/low humidity alerts

Module 11: Automatic Fan & Device Control

  • Automatic control concepts
  • Relay module introduction
  • Temperature-based fan control
  • Humidity-based control
  • Relay connections
  • Automatic ON/OFF programming
  • Safe low-voltage load control
  • Testing automatic control

Module 12: Data Logging & Storage

  • Introduction to data logging
  • Recording temperature values
  • Recording humidity values
  • Microcontroller memory
  • EEPROM concepts
  • SD card data logging concepts
  • Time-based recording
  • Data retrieval

Module 13: IoT-Based Monitoring

  • Introduction to IoT
  • WiFi-enabled microcontrollers
  • ESP8266 and ESP32 overview
  • Connecting sensors to WiFi devices
  • Sending environmental data through WiFi
  • Remote monitoring concepts
  • IoT dashboard concepts

Module 14: Mobile & Web Monitoring

  • Web-based monitoring
  • Mobile monitoring concepts
  • Real-time sensor data
  • Basic monitoring interface
  • Remote temperature monitoring
  • Remote humidity monitoring
  • Notification concepts

Module 15: Advanced Environmental Monitoring

  • Multiple sensor integration
  • Monitoring different locations
  • Temperature trend monitoring
  • Humidity trend monitoring
  • Automatic threshold detection
  • Environmental condition analysis
  • Smart monitoring concepts

Module 16: Power Supply & System Management

  • Battery types
  • Selecting suitable power sources
  • Voltage requirements
  • Power distribution
  • Sensor power requirements
  • Low-power monitoring concepts
  • Safe power management
  • System stability

Module 17: Calibration & Troubleshooting

  • Sensor calibration concepts
  • Temperature reading errors
  • Humidity reading errors
  • Sensor connection problems
  • Display problems
  • Communication errors
  • Power supply issues
  • Software debugging
  • Measurement reliability

Module 18: Temperature & Humidity Project Design

  • Project planning
  • Component selection
  • Sensor selection
  • Circuit design
  • Display integration
  • Alert system design
  • Programming workflow
  • Testing and documentation

Module 19: Practical Temperature & Humidity Projects

  • Digital temperature monitor
  • Temperature and humidity display system
  • Temperature alert system
  • Humidity alert system
  • Automatic fan control system
  • Environmental data logging system
  • WiFi-enabled monitoring system

Module 20: Final Temperature & Humidity System Project

  • Complete circuit assembly
  • Sensor integration
  • Microcontroller programming
  • LCD/display integration
  • Alert system setup
  • Data monitoring
  • Calibration and testing
  • Troubleshooting
  • Final project demonstration
  • Practical assessment


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