formaldehyde gas sensor

formaldehyde gas sensor

formaldehyde gas sensor

Product catalog summary
Introduction
The S1001 formaldehyde gas sensor is a semiconductor sensor utilizing MEMS technology, designed to detect formaldehyde gas in various environments. The company offers complete sensor modules with integrated circuits.

Characteristics
The sensor features MEMS technology and semiconductor materials, providing high sensitivity, resolution, and accuracy for formaldehyde detection. It can detect as low as 40ppb of formaldehyde, is compact, consumes low power, and offers fast response and recovery times. It is stable, durable, and resistant to shock.

Main Applications
The sensor is widely used in air purifiers, fresh air conditioners, smart wearables, and portable detectors.

Technical Parameters
  • Sensor Model: S1001
  • Sensor Style: MEMS semiconductor sensor
  • Standard Package: Ceramic Package
  • Detected Gas: Formaldehyde
  • Detection Range: 0~3ppm (HCHO)
  • Resolution: 0.01 ppm (HCHO)
  • Standard Circuit Voltage (VC): ≤ 5 V DC
  • Heating Voltage (VH): 1.8±0.05 V AC/DC
  • Load Resistance (RL): Adjustable (Proposed RL:10K)
  • Heating Resistance (RH): 45±10 Ω (Room Temperature)
  • Heating Power (RH): ≤ 30 mW
  • Sensor Resistance (Rs): 200 ~ 1000 KΩ (in air)
  • Sensitivity (S): R0 (in air)/Rs (in 0.4 ppm HCHO) ≥ 1.3
  • Slope (a): ≤0.6 (R0.4ppm/R0.01ppm HCHO)
  • Standard Test Conditions: Temperature 20±2 ℃; Humidity 55±5% RH
  • Preheating Time: 3-5 min
  • Response Time (T90): <15s
  • Recovery Time (T10): <60 s
  • Expected Lifetime: ≥ 5 Years

Pin Assignment & Reference Circuit
The sensor requires two voltages: heater voltage (Vh) and test voltage (Vcc). Vh provides the working voltage, and Vcc is the test voltage for the load resistance RL.

Characteristic Figures
Tests are conducted under standard conditions. R0 is the stable resistance in clean air, and Rs is the stable resistance in various gas concentrations. The sensor's stability curve shows the voltage over time with a load resistance of 51k.
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Catalog excerpts

formaldehyde gas sensor-1

MEMS Formaldehyde sensor (HCHO) Introduction The S1001 formaldehyde gas sensor is a semiconductor gas sensor developed based on MEMS technology and can be used to detect the formaldehyde gas content in different scenarios. In addition to the sensor design, the company also provides complete gas sensor modules including integrated circuits. Characteristic Using MEMS technology, semiconductor materials, good sensitivity, resolution and accuracy for formaldehyde, can detect 40ppb formaldehyde, small size, low power consumption, high sensitivity, fast response recovery, simple drive circuit, good stability, long life, The structure is strong and the shock resistance is good. Main application Widely used in air purifiers, fresh air conditioners, smart wearables, portable detectors. Technical Parameters

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formaldehyde gas sensor-3

Note: The picture above shows the basic test circuit of the S1001 sensor. The sensor needs to apply 2 voltages: heater voltage (V h) and test voltage (Vcc). Among them, Vh is used to provide a specific working voltage for the sensor, and DC power or AC power can be used. Vout is sensing The voltage across the load resistor (R L) connected in series. Vcc is the test voltage for the load resistance RL, and a DC power supply is required.

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formaldehyde gas sensor-4

Characteristic figures The test is completed under standard test conditions. In the figure, R 0 represents the stable resistance value of the sensor in clean air, and Rs represents the stable resistance value of the sensor in different concentrations of gas atmosphere. The test is completed under standard test conditions. The curve in the figure represents the real-time voltage value of the sensor. The test gas is 0.4ppm formaldehyde gas, and the load resistance used is 51k.

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formaldehyde gas sensor-5

In the figure, Rs represents the stable resistance of the sensor in 0.4ppm concentration of formaldehyde gas under different temperature and humidity conditions, and R0 represents the stable resistance of the sensor in 0.4ppm concentration of formaldehyde gas under 20℃ and 55%RH humidity conditions. Sensor stability curve The test is completed under standard test conditions. The abscissa is the time that the sensor continues to be energized, the ordinate is the actual voltage value of the sensor, and the load resistance used is 51k.

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