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Methane Sensor, 0 To 100% Vol

Methane Sensor, 0 To 100% Vol
Methane Sensor, 0 To 100% Vol
Methane Sensor, 0 To 100% Vol
Methane Sensor, 0 To 100% Vol
Methane Sensor, 0 To 100% Vol
Methane Sensor, 0 To 100% Vol
Methane Sensor, 0 To 100% Vol
from
$992.31
Ex Tax: $992.31
  • Stock: In Stock
  • Model: RDDLZ-ICDS-7042A
  • Weight: 1.00
  • SKU: RDDLZ-ICDS-7042A

Available Options

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The CH4 sensor has built-in temperature compensation, working temperature from -40℃ to 70℃ . The combustible gas sensor has the characteristics of good selectivity, no oxygen dependence, stable performance, long life and ultra-low power consumption.

Features

  • High sensitivity, high resolution, low power consumption, quick response.
  • UART output.
  • Temperature compensation, excellent stability.
  • Long lifespan, Anti-poisons, anti-vapor interference.
  • Detect combustible gas concentration matching with flame-proof marked detector in area 1&2 explosive environments which mix of Ⅱ A, Ⅱ B, Ⅱ C and T1-T6 flammable gases, vapors and air.

Specification

  • Model: RDDLZ-ICDS-7042A
  • Detection gas: Combustible gas, other combustible gas sensor can be customized.
  • Working voltage: (5.0±0.1) VDC
  • Average current: <0.60mA (Peak current< 150mA)
  • Interface level: 3.0V (Compatible with 5V)
  • Measuring range: 0~100% LEL
  • Output signal: UART (TTL)
  • Warm-up time: < 30s
  • Response time: T90 < 30s
  • Working temperature: -40℃ ~ 70℃
  • Working humidity: 0~95% RH (no condensation)
  • Dimension: Φ51*65mm
Gas nameMolecular formulaRangeResolutionPrecisionNote
MethaneCH40~5% Vol0.01% Vol±3%FS @(10℃-40℃) ±5%FS @(-40℃-10℃,40℃-70℃)With Temperature Compensation
MethaneCH40~10% Vol0.1% Vol
MethaneCH40~100% Vol0.1% 
Propane C3H80-2.2% Vol0.01% Vol 
ChloromethaneCH3CL0-8.1% Vol0.01% Vol
AcetyleneC2H20-2.3% Vol0.02% Vol
EthaneCH3CH30-3.0% Vol0.03% Vol
IsobuteneC4H100-1.8% Vol0.018% Vol
GasolineC3-C120-1.1% Vol0.01% Vol±5%FS @(10℃-40℃), ±10%FS @(-40℃-10℃,40℃-70℃)Without Temperature Compensation
MethanolCH3OH0-5.5% Vol0.06% Vol
DichloromethaneCH2CL20-15% Vol0.15% Vol
TolueneC7H80-1.2% Vol0.012% Vol
AlcoholC2H5OH0-3.3% Vol0.033% Vol
OxiraneC2H4O0-3.0% Vol0.03% Vol
Acetic acidCH3COOH0-4.0% Vol0.04% Vol
Ethyl acetateCH3COOC2H50-2.0% Vol0.02% Vol

Dimension (mm)

 

Tips: Where should methane sensors be placed?

Methane sensors should be strategically placed in areas where methane gas buildup is likely to occur. Some common locations for placing methane sensors include:

  • Near Gas Appliances: Install methane sensors near gas-powered appliances such as stoves, ovens, water heaters, furnaces, and boilers. These appliances are potential sources of methane leaks, especially if they are old or poorly maintained.
  • Along Gas Pipelines: Place methane sensors along gas pipelines to detect leaks or emissions along the pipeline route. Monitoring methane levels at various points along the pipeline can help identify and address potential leaks promptly.
  • In Industrial Facilities: Install methane sensors in industrial facilities where methane gas is used or produced, such as refineries, chemical plants, wastewater treatment plants, and agricultural operations. These facilities may have equipment or processes that produce methane as a byproduct, posing a risk of leaks or emissions.
  • Confined Spaces: Install methane sensors in confined spaces such as basements, crawl spaces, tunnels, and underground vaults where methane gas may accumulate. Poor ventilation in these areas can lead to the buildup of methane gas, posing a risk of explosion or asphyxiation.

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