This series of sensors uses the advanced high-precision and high-stability diffused silicon core, equipped with ASIS high-performance amplifier circuit, after thousands of fatigue shocks, high and low temperature cycle aging and precise digital temperature compensation process, and then complete stainless steel sealing and welding (Laser welding) refined.
High-quality sensors, strict calibration process, and perfect assembly process ensure the excellent quality of the product.It is especially suitable for pressure measurement of hydraulic pressure, pneumatic pressure and other media, even for harsh environments such as sewage, steam, mildly corrosive, and gas measurement.
This series of sensors uses the advanced high-precision and high-stability diffused silicon core, equipped with ASIS high-performance amplifier circuit, after thousands of fatigue shocks, high and low temperature cycle aging and precise digital temperature compensation process, and then complete stainless steel sealing and welding (Laser welding) refined.
High-quality sensors, strict calibration process, and perfect assembly process ensure the excellent quality of the product.It is especially suitable for pressure measurement of hydraulic pressure, pneumatic pressure and other media, even for harsh environments such as sewage, steam, mildly corrosive, and gas measurement.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.
The compact pressure transmitter adopts imported diffused silicon or ceramic piezoresistive sensor as the pressure detection element, adopts micro-melting technology, and uses high-temperature glass to melt the micro-machined silicon varistor on the stainless steel diaphragm.The glass bonding process avoids the influence of temperature, humidity, mechanical fatigue and media on the glue and materials, thereby improving the long-term stability of the sensor in an industrial environment.Because of its small size, it is called a compact pressure transmitter.