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Thermal mass flow sensor MFS02 ideal for ultra-high-speed measurement of gas flow rate and direction-MFS02
Thermal mass flow sensor MFS02 ideal for ultra-high-speed measurement of gas flow rate and direction-OG Co., Ltd.

Thermal mass flow sensor MFS02 ideal for ultra-high-speed measurement of gas flow rate and direction
OG Co., Ltd.


About This Product

■Features

- Ideal for applications requiring high flow rates and fast response times in CTA mode - Ideal for leak detection at very low flow rates and in bridge mode ・Very high dynamic measurements possible in CTA mode (10´000´:1) without bypass ・High chemical resistance against hazardous gases and vapors -Various sensitivities and circuit topologies available ・Custom-made sensors can be manufactured upon request. ・Detection of flow direction

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    Thermal mass flow sensor MFS02 ideal for ultra-high-speed measurement of gas flow rate and direction

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1 Models of Thermal mass flow sensor MFS02 ideal for ultra-high-speed measurement of gas flow rate and direction

Image Part Number Price (excluding tax) Voltage range (nominal) Element matching Accuracy Temperature range (chip) Temperature range (gas) Temperature characteristics Power consumption (without flow rate) Minimum usage range Connection Response time t63 Response sensitivity Dimensions: Chip (mm) Dimensions: PCB exposure (mm) Dimensions: PCB standard (mm) Usage measurement range (full bridge mode) Usage measurement range (CTA mode) Bridge offset (full bridge mode) TCR bridge offset (full bridge mode)
Thermal mass flow sensor MFS02 ideal for ultra-high-speed measurement of gas flow rate and direction-Part Number-MFS02

MFS02

Available upon quote

2V~6V (full bridge mode)

<2%

<2% measured value (depends on electronics and calibration)

-40℃~+160℃

-40℃~+80℃ (maximum +80℃ lower than chip temperature)

<0.1%/K (depends on electronic circuit)

10mW~50mW (resp.chip temperature +50℃~+160℃)

0l/min~10l/min

Bonding pad

<10ms

0.0003m/s (20microliter/min)

5.0x3.4x0.5

34.2/37.4x10.8x1.0/2.0

38.2x10.8x1.0/2.0

0m/s~1.5m/s, 0ml/min~100ml/min

0m/s~150m/s

Maximal±50mV at VCC=5V; typical±10mV

Maximal±50ppm/K x VCC/2

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