Product Details
Place of Origin: WUXI
Brand Name: Consensic
Certification: PTC23040404901C-CN01
Model Number: CAFS4000
Payment & Shipping Terms
Minimum Order Quantity: Please contact us for details
Price: Offline conversation or face-to-face discussion
Delivery Time: 3-7 work days
Payment Terms: L/C/Ade/Pellet/Texi Union, MoneyGram, Alipay, and business-to-business payments
Supply Ability: 999
Measures From: |
0 To 300 SLPM |
Offers An Analog Output Of: |
1-5 VDC |
Power Supply: |
8-24 VDC, 12 VDC Recommended |
Temperature Range: |
-25°C To +85°C |
Measures From: |
0 To 300 SLPM |
Offers An Analog Output Of: |
1-5 VDC |
Power Supply: |
8-24 VDC, 12 VDC Recommended |
Temperature Range: |
-25°C To +85°C |
Feature | CAFS4000B Medical Gas Mass Flow Sensor |
---|---|
Model Options | CAFS4003BV, CAFS4004BV, CAFS4005BV, CAFS4100BV, CAFS4101BV, CAFS4102BV, CAFS4103BV, CAFS4104BV |
Flow Range | -12 to 12 SLPM to -300 to 300 SLPM |
Maximum Flow Velocity | 0.527 to 13.16 m/s based on the model |
Analog Voltage Output | 1 to 5 VDC (also available with 0-3 VDC output) |
Zero Point Voltage | 0.95 to 1.05 VDC |
Zero Drift | Up to 0.2% F.S |
Resolution | 0.1% F.S |
Load Resistance | 100 KΩ |
Accuracy | 1.5% F.S |
Response Time | 20 ms (default), up to 30 ms |
Power Supply Voltage | 8 to 24 VDC, 12 VDC recommended |
Power Supply Current | 20 to 30 mA |
Overall Material | Silicon Carbide, Epoxy Resin, Polyphenylene Sulfide, FR4, Silicon |
Calibration Condition | Air at 20°C and 101.325 kPa |
The CAFS4000B Medical Gas Mass Flow Sensor is versatile and well-suited for a variety of medical and industrial applications, including:
Model | Flow Range (SLPM) | Max Flow Velocity (m/s) |
---|---|---|
CAFS4003BV | -12 to 12 | 0.527 |
CAFS4004BV | -20 to 20 | 0.877 |
CAFS4005BV | -35 to 35 | 1.535 |
CAFS4100BV | -50 to 50 | 2.193 |
CAFS4101BV | -100 to 100 | 4.387 |
CAFS4102BV | -150 to 150 | 6.58 |
CAFS4103BV | -200 to 200 | 8.773 |
CAFS4104BV | -300 to 300 | 13.16 |
The CAFS4000B Medical Gas Mass Flow Sensor is a sophisticated measurement tool designed for the precise and reliable measurement of small gas flows in medical and industrial applications. Utilizing cutting-edge MEMS technology, the CAFS4000B offers a wide flow range with exceptional accuracy and stability. Its design includes high-quality materials and advanced features like temperature compensation and a fast response time, making it an excellent choice for critical medical devices and systems. The sensor supports a range of outputs and is built to meet high standards of performance and durability, facilitating the advancement of medical technology and industrial processes.
Feel free to adjust or expand these details for specific marketing or technical documentation purposes!
Feature | Details |
---|---|
Model | CAFS4000B |
Flow Range | 0-300 SLPM |
Accuracy | ±1.5% F.S |
Output Options | 1-5 VDC Analog, I2C Digital |
Temperature Range | -25°C to +85°C |
Response Time | 20 ms |
Power Supply | 8-24 VDC, 12 VDC Recommended |
Applications | Ventilators, Oxygen Concentrators, Gas Masks, Nebulizers, CPAP Devices, Anesthesia Systems, Leak Testing, Spectrometers, Mass Flow Controllers, Environmental Climate Control, Fuel Cell Control |
This detailed description of the CAFS4000B Medical Gas Mass Flow Sensor provides a comprehensive overview of its features, performance parameters, and applications, designed for high-precision measurement and advanced medical and industrial processes.
CAFS4000B Medical Gas Mass Flow Sensor is specifically designed for the measurement and process control of various medical gases. Leveraging our proprietary MEMS (Micro-Electro-Mechanical Systems) flow sensor technology, the CAFS4000B is ideal for a range of clean and relatively dry gases used in medical applications. This advanced sensor facilitates the digitalization and smart upgrading of medical gas equipment, offering high safety, reliability, and performance for modern medical and industrial needs. It supports a broad flow measurement range, high sensitivity, high reliability, and stability, making it a pivotal tool for advancing energy efficiency and intelligent control in the medical field.