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Figaro TGS2602 Air Quality / VOC Sensor

1,762.75 (Including tax)

  1. Product: Figaro TGS2602 Air Quality / VOC Sensor
  2. Heater Voltage: 5.0±0.2V DC
  3. Circuit Voltage:  5.0±0.2V DC
  4. Heater power consumption: 280mW (typical)
  5. Heater Current: 56±5mA

Discount per Bulk Quantity

QuantityDiscountPrice
5 - 105%1,674.60 (Including tax)
11 - 208%1,621.72 (Including tax)
21 - 4010%1,586.47 (Including tax)
41 - 10012%1,551.21 (Including tax)

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SKU: rz2436200 Category:
Description

The sensing element comprises a metal oxide semiconductor layer formed on the alumina substrate of a sensing chip together with an integrated heater. In the presence of detectable gas, sensor conductivity increases depending on gas concentration in the air. A simple electrical circuit can convert the change in conductivity to an output signal which corresponds to the gas concentration. The TGS2602 has high sensitivity to low concentrations of odorous gases such as ammonia and H2S generated from waste materials in office and home
environments. The sensor also has a high sensitivity to low concentrations of VOCs such as toluene emitted from wood finishing and construction products.

Attention: For additional technical specifications, please refer to the accompanying datasheet in the attachment section. 


Features:

  1. High sensitivity to VOCs and odorous gases
  2. Low power consumption
  3.  High sensitivity to gaseous air contaminants
  4. Long life
  5.  It uses a simple electrical circuit
  6.  Small size

Package Includes:

1 x Figaro TGS2602 Air Quality / VOC Sensor

Additional information
Model No.

TGS2602-B00

Heater Voltage

5.0±0.2V DC

Circuit Voltage

5.0±0.2V DC

Heater power consumption

280mW (typical)

Heater Current

56±5mA

Sensing Principle

MOS type

Heater Resistance

approx 59Ω at room temp. (typical)

Load Resistance

variable 0.45kΩ min

Sensor Resistance

10kΩ ~ 100kΩ in air

Standard Package

TO-5 metal can

Target Gases

Air contaminants (VOCs

,

ammonia

,

H2S

,

etc.)

Test Gas Conditions

normal air at 20±2˚C

,

65±5%RH

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