AS150U Male Connector 799.00 (Inc. GST)
677.12 (+18% GST Extra)
Back to products
DFRobot Fermion MEMS Odor Sensor Gas Detection Sensor. 899.00 (Inc. GST)
761.86 (+18% GST Extra)

DFRobot Fermion MEMS CH4 Sensor Gas Detection Sensor.

Specifications :

  • Gas Detected: Methane (CH4)
  • Detection Range: Typically 200 to 10000 ppm (parts per million) CH4
  • Sensitivity: High sensitivity with a low detection limit
  • Operating Voltage: 5V DC
  • Output Signal Type: Analog voltage output
  • Analog Output Voltage Range: 0-5V (corresponding to the detected CH4 concentration)
  • Warm-up Time: <1 minute
  • Response Time: <10 seconds (typical)
  • Operating Temperature: -20°C to 50°C (-4°F to 122°F)
  • Storage Temperature: -20°C to 70°C (-4°F to 158°F)
  • Humidity: 15% to 90% RH (non-condensing)
  • Dimensions: Compact size, suitable for integration into various applications
  • Interface: Analog output for easy integration with microcontrollers and data acquisition systems
  • Power Consumption: Low power consumption for extended operation and battery-powered applications
  • Accuracy: High accuracy in methane gas detection
  • Certifications: CE certified
SKU: RDNA-AS06

Apple Shopping Event

Hurry and get discounts on all Apple devices up to 20%

Sale_coupon_15

899.00 (Inc. GST)
761.86 (+18% GST Extra)

In stock

In stock

19 People watching this product now!
  • Pick up from the RoboticsDNA Store in Pune / Dunzo

To pick up today

Free

  • Same Day Delivery in Pune

(Mon-Sat) (Please Place Order Before 1:30 PM)​

Rs. 99

  • via Delhivery.com (Express Mode)

Our courier will deliver to the specified address

3-5 Days

Rs. 149

  • via Delhivery.com (Surface Mode)

Our courier will deliver to the specified address

4-7 Days

Rs. 69

Payment Methods:

Description

The DFRobot Fermion MEMS CH4 Gas Detection Sensor is a cutting-edge sensor designed for detecting methane (CH4) gas. Here’s a brief description of its features and functionalities:

  1. MEMS Technology: The sensor utilizes Micro-Electro-Mechanical Systems (MEMS) technology, which offers high sensitivity and accuracy in gas detection.
  2. Methane Detection: Specifically calibrated for detecting methane gas, which is crucial for applications such as environmental monitoring, industrial safety, and gas leak detection.
  3. High Sensitivity: The sensor boasts high sensitivity, enabling it to detect even trace amounts of methane gas in the environment.
  4. Low Power Consumption: Designed to consume minimal power, making it suitable for battery-operated devices and applications requiring prolonged operation.
  5. Analog Output: Typically, the sensor provides analog output signals corresponding to the detected methane gas concentration, allowing for easy integration with microcontrollers and data acquisition systems.
  6. Compact Design: Its compact form factor makes it easy to integrate into various electronic devices and systems without occupying much space.
  7. Robust Construction: Built to withstand harsh environmental conditions, ensuring reliable operation in diverse settings.
  8. Easy Integration: The sensor is designed for easy integration into different projects, with straightforward wiring and compatibility with popular development platforms and microcontrollers.

DFRobot is known for producing high-quality sensors and electronic components, and the Fermion MEMS CH4 Gas Detection Sensor is no exception. It offers precision, reliability, and ease of use, making it a valuable tool for applications requiring methane gas detection.

Package Includes:

1 x DFRobot Fermion MEMS CH4 Sensor Gas Detection Sensor

Specification

Overview

Dimensions 7 × 6 cm

Processor

Dimensions 7 × 6 cm

Display

Dimensions 7 × 6 cm

RAM

Dimensions 7 × 6 cm

Storage

Dimensions 7 × 6 cm

Video Card

Dimensions 7 × 6 cm

Connectivity

Dimensions 7 × 6 cm

Features

Dimensions 7 × 6 cm

Battery

Dimensions 7 × 6 cm

General

Dimensions 7 × 6 cm

Customer Reviews

0 reviews
0
0
0
0
0

There are no reviews yet.

Only logged in customers who have purchased this product may leave a review.