SKU: SENS-3037
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DFRobot Gravity Analog CO/Combustible Gas Sensor MQ9 Module

₹1,019.00 (Inclusive of all taxes)
Out of Stock

The DFRobot Gravity MQ9 is an analog semiconductor gas sensor module designed for Arduino and other 5V microcontroller platforms. It detects Carbon Monoxide (CO) and combustible gases like Methane and Propane, providing a voltage output proportional to gas concentration for easy integration into air quality monitoring and safety systems.

Features

  • Detects Carbon Monoxide (10-1000ppm) and combustible gases (100-10000ppm)
  • 5V DC power supply with simple analog voltage output interface
  • Dual-temperature cycle operation for selective gas detection and sensor cleaning
  • Integrated potentiometer for on-board sensitivity adjustment
  • Gravity-series connector for plug-and-play compatibility with DFRobot shields

Out of stock

Description

The DFRobot Gravity MQ9 module utilizes a tin dioxide (SnO2) semiconductor sensing element. Its conductivity changes in the presence of target gases. The module employs a dual-heating cycle: a low-temperature phase (1.5V heater) optimizes sensitivity to Carbon Monoxide, while a high-temperature phase (5.0V heater) detects combustible gases like Methane and Propane and cleans the sensor of residues. This design enhances selectivity and sensor longevity.

The module outputs an analog voltage signal that varies linearly with gas concentration, which can be read directly by any microcontroller with an ADC input, such as Arduino, ESP32, or Raspberry Pi (with an ADC board). The onboard potentiometer allows for calibration and sensitivity tuning to suit specific environmental conditions and detection thresholds.

Key Features

  • Semiconductor Sensing Core: Utilizes a stable SnO2 sensor for reliable detection of CO and combustible gases.
  • Dual-Temperature Operation: Intelligent heating cycle switches between low temp for CO sensing and high temp for combustible gas detection and purification.
  • Analog Voltage Output: Provides a 0-5V signal directly proportional to gas density for straightforward ADC interfacing.
  • On-Board Sensitivity Adjustment: Features a built-in potentiometer for fine-tuning the sensor's response threshold.
  • Gravity Standard Interface: 3-pin connector (Signal, VCC, GND) ensures quick, foolproof wiring with compatible expansion boards.
  • Optimized Drive Circuit: Includes necessary signal conditioning for stable operation directly from a 5V supply.
  • Low Power Heater: Heater consumption is ≤350mW, making it suitable for portable or battery-powered applications.

Applications

  • Residential and commercial carbon monoxide alarm systems and gas leak detectors
  • Industrial safety monitoring for workshops, garages, or boiler rooms using combustible fuels
  • Portable air quality analyzers and personal safety devices for field technicians
  • Educational kits for demonstrating semiconductor gas sensing principles and IoT environmental monitoring
  • HVAC system air intake monitoring to detect contamination from nearby combustion sources

Technical Specifications

Sensor TypeSemiconductor (SnO2)
Detection GasesCarbon Monoxide (CO), Methane, Propane, Combustible Gases
CO Concentration Range10 - 1000 ppm
Combustible Gas Range100 - 10000 ppm
Power Supply Voltage5V DC
Heater Voltage (Low Temp)1.5V
Heater Voltage (High Temp)5.0V
InterfaceAnalog Output (0-5V)
Heater Resistance31Ω ±3Ω
Sensing Resistance (in 100ppm CO)2 kΩ - 20 kΩ
Sensitivity (Rs(air)/Rs(100ppm CO))≥5
Heater Consumption≤350 mW
Operating Temperature20°C ±2°C
Operating Humidity65% ±5% RH
Module Dimensions (L x W)36.4 mm x 26.6 mm

Frequently Asked Questions

What is the operating voltage for the DFRobot MQ9 sensor module, and what does the analog output range?

The module requires a 5V DC power supply for both its logic and sensor heater. The analog output signal ranges from 0V to approximately 5V, corresponding to the detected gas concentration. A higher output voltage indicates a higher gas density. This signal can be connected directly to an analog input pin on an Arduino or other microcontroller.

How does the dual-temperature heating cycle work, and what gases does it detect?

The MQ9 uses a controlled heating cycle. When the internal heater is run at a lower voltage (~1.5V), the sensor is optimized for detecting Carbon Monoxide (CO). When the heater is switched to a higher voltage (5.0V), it becomes sensitive to combustible gases like Methane and Propane. This high-temperature phase also helps burn off residues, cleaning the sensor for the next reading cycle.

How do I calibrate or adjust the sensitivity of the MQ9 module?

Sensitivity can be adjusted using the blue potentiometer on the module. Turning it adjusts the reference point for the onboard comparator, effectively setting the threshold at which the analog signal is considered 'high'. For precise concentration measurement, a multi-point calibration in a known gas concentration is required, comparing ADC readings to reference values.

Can this sensor differentiate between Carbon Monoxide and Methane?

No, the MQ9 sensor itself cannot definitively differentiate between specific gases within its detection spectrum. It responds to a broad range of reducing gases, including CO, Methane, and Propane. Identification relies on the dual-heating cycle: the low-temperature phase is more sensitive to CO, while the high-temperature phase is more sensitive to combustible gases. Pattern analysis of the response at both temperatures can provide clues.

Package Includes

  • 1 x DFRobot Gravity Analog CO/Combustible Gas Sensor (MQ9) Module

Additional Information

Weight 0.005 kg
Dimensions 3.64 × 2.66 cm