GZP6899A Differential Pressure Sensor Silicon Piezoresistive MEMS Technology Healthcare and Industrial Applications

GZP6899A Differential Pressure Sensor Silicon Piezoresistive MEMS Technology Healthcare and Industrial Applications

  • GZP6899A Differential Pressure Sensor Silicon Piezoresistive MEMS Technology Healthcare and Industrial Applications
  • GZP6899A Differential Pressure Sensor Silicon Piezoresistive MEMS Technology Healthcare and Industrial Applications
Summary
The GZP6899A Differential Pressure Sensor, based on advanced MEMS silicon piezoresistive technology, delivers high-precision and stable differential pressure measurement for demanding applications. Featuring digital compensation for offset, sensitivity, temperature drift, and nonlinearity, it provides calibrated voltage output for enhanced system integration. Designed with a compact SOP8 package and anti-detachment barbed pressure nozzles, this sensor ensures reliable performance in healthcare, industrial testing, HVAC, and IoT applications. With a wide operating pressure range from -100kPa to 1000kPa and 3.3V to 5.5V supply voltage, it supports versatile use in gas flow monitoring, ventilation systems, and smart medical devices.More
  • GZP6899A Differential Pressure Sensor Silicon Piezoresistive MEMS Technology Healthcare and Industrial Applications

Product Description

The GZP6899A differential pressure sensor is suitable for the application scenario of differential pressure measurement. Its core part is a silicon piezoresistive pressure-sensitive chip processed by MEMS technology. The front and back sides of the pressure-sensitive chip feel different pressures through the pressure-sensitive nozzle, thus forming a pressure difference and producing a pressure difference. The value is proportional to the voltage signal. The built-in conditioning chip digitally compensates for the offset, sensitivity, temperature drift and nonlinearity of the sensor, and generates a standard voltage signal after calibration and temperature compensation based on the power supply voltage.

The GZP6899A pressure sensor adopts the form of table encapsulation. The two pressure nozzles are designed with barb tubes. The structure is easy to install and has high reliability. The output signal can be calibrated according to user requirements. It is widely used in health care, industrial testing, sports and fitness equipment and other fields.

Product Features
Measurement range-100kPa...0kPa~0.5kPa...1000kPa
SOP8 packaging, differential pressure type
Air nozzle with anti-detachment structure
Suitable for non-corrosive gases
3.3~5.5V power supply
Standard voltage output or proportional voltage output can be selected

The maximum pressure at the low-pressure end is 500kPa


Application Field
Ventilator, pulmonary vitameter, negative pressure wound treatment, blood pressure monitoring, sleep asphyxia treatment and other medical fields
Air flow detection, heating ventilation and air conditioning, pneumatic equipment, pressure switches and other industrial fields
Biological science, small household appliances, consumer electronics, sports and fitness equipment, fire fighting equipment, Internet of Things and other fields
Gas flow meter, gas emission, variable air volume regulation and other fields
Gas Flow Sensor, Pressure Sensor (mV Output), Pressure Sensor (Analog Amplified), Pressure Sensor (Digital), Pressure Transmitter, Vehicle Sensor, Gas Sensor, Infrared sensor, Current Sensor, Sensor Wafer
Contact Supplier
Download
REQUEST MORE DETAILS
Please fill out the form below and click the button to request more information about
Fill out the form below to make an inquiry
Company*
Country/Region*
FirstName*
LastName*
Business Email*
Whatsapp/Phone*
Your Request*
Verification code*
We needs the contact information you provide to us to contact you about our products and services.
If your supplier does not respond within 24 hours, we will connect you with three to five qualified alternative suppliers.
We use Cookie to improve your online experience. By continuing browsing this website, we assume you agree our use of Cookie.