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Demystifying the working principle and trend of pressure sensors
- Categories:Industry information
- Time of issue:2017-02-13 17:02
(Summary description)Pressure sensor is the most commonly used sensor in industrial practice. It is widely used in various industrial automation environments, involving water conservancy and hydropower, railway transportation, intelligent buildings, production automation, aerospace, military, petrochemical, oil well, electricity, ships, machine tools , Pipelines and many other industries. And in different environments, different types of pressure sensors need to be used to avoid errors. How different pressure sensors work 1. Piezoresistive force sensor: Resistance strain gauge is one of the main components of piezoresistive strain sensor. The working principle of the metal resistance strain gauge is the phenomenon that the resistance value of the strain resistance changes with the mechanical deformation, which is commonly known as the resistance strain effect. 2. Ceramic pressure sensor: The ceramic pressure sensor is based on the piezoresistive effect. The pressure directly acts on the front surface of the ceramic diaphragm, causing a slight deformation of the diaphragm. The thick film resistor is printed on the back of the ceramic diaphragm and connected to form a Wheatstone. The bridge, due to the piezoresistive effect of the varistor, makes the bridge generate a highly linear voltage signal proportional to the pressure and proportional to the excitation voltage. The standard signal is calibrated to 2.0/3 according to the pressure range. 0/3. 3mV/V, etc., compatible with strain gauge sensors. 3. Diffused silicon pressure sensor: The working principle of the diffused silicon pressure sensor is also based on the piezoresistive effect. Using the principle of piezoresistive effect, the pressure of the measured medium directly acts on the sensor's diaphragm (stainless steel or ceramic), causing the diaphragm to interact with the medium. The micro-displacement proportional to the pressure changes the resistance value of the sensor. The electronic circuit detects this change and converts and outputs a standard measurement signal corresponding to the pressure. 4. Sapphire pressure sensor: Utilizing the working principle of strain resistance type, using silicon-sapphire as the semiconductor sensitive element, it has unparalleled measurement characteristics. Therefore, semiconductor sensitive components made of silicon-sapphire are not sensitive to temperature changes and have good working characteristics even under high temperature conditions; sapphire has extremely strong radiation resistance characteristics; in addition, silicon-sapphire semiconductor sensitive components are not sensitive to temperature changes. p-n drift. 5. Piezoelectric pressure sensor: The piezoelectric effect is the main working principle of the piezoelectric sensor. The piezoelectric sensor cannot be used for static measurement, because the charge after the action of external force can only be saved when the circuit has an infinite input impedance . The actual situation is not like this, so this determines that the piezoelectric sensor can only measure dynamic stress. Application areas of pressure sensors Pressure sensors are mainly used in: booster cylinders, superchargers, gas-liquid booster cylinders, gas-liquid boosters, presses, compressors, air conditioning and refrigeration equipment and other fields. 1. Applied to hydraulic system The pressure sensor is mainly used to complete the closed-loop control of the force in the hydraulic system. When the control spool moves suddenly, a peak pressure several times the system working pressure will be formed in a very short time. In typical mobile machinery and industrial hydraulics, if such extreme conditions are not taken into account in the design, any pressure sensor will be quickly destroyed. It is necessary to use shock-resistant pressure sensors. There are two main methods for pressure sensors to achieve shock resistance. One is to change strain-type chips, and the other is to connect an external coil. Generally, the first method is used in hydraulic systems, mainly because Easy to install. Another reason is that the pressure sensor has to withstand continuous pressure pulsation from the hydraulic pump. 2. Applied to safety control system Pressure sensors are often used in safety control systems, and the main target area is the safety management system of the air compressor itself. There are many sensor applications in the field of safety control. As a very common sensor, pressure sensors are not surprisingly used in safety control systems. Applications in the field of safety control are generally considered from the perspective of performance, from the consideration of price, and from the safety and convenience of actual operation. It has been proved that the effect of selecting a pressure sensor is very good. The pressure sensor uses the processing technology of mechanical equipment to install some components and signal conditioners on a small chip. So
Demystifying the working principle and trend of pressure sensors
(Summary description)Pressure sensor is the most commonly used sensor in industrial practice. It is widely used in various industrial automation environments, involving water conservancy and hydropower, railway transportation, intelligent buildings, production automation, aerospace, military, petrochemical, oil well, electricity, ships, machine tools , Pipelines and many other industries. And in different environments, different types of pressure sensors need to be used to avoid errors.
How different pressure sensors work
1. Piezoresistive force sensor: Resistance strain gauge is one of the main components of piezoresistive strain sensor. The working principle of the metal resistance strain gauge is the phenomenon that the resistance value of the strain resistance changes with the mechanical deformation, which is commonly known as the resistance strain effect.
2. Ceramic pressure sensor: The ceramic pressure sensor is based on the piezoresistive effect. The pressure directly acts on the front surface of the ceramic diaphragm, causing a slight deformation of the diaphragm. The thick film resistor is printed on the back of the ceramic diaphragm and connected to form a Wheatstone. The bridge, due to the piezoresistive effect of the varistor, makes the bridge generate a highly linear voltage signal proportional to the pressure and proportional to the excitation voltage. The standard signal is calibrated to 2.0/3 according to the pressure range. 0/3. 3mV/V, etc., compatible with strain gauge sensors.
3. Diffused silicon pressure sensor: The working principle of the diffused silicon pressure sensor is also based on the piezoresistive effect. Using the principle of piezoresistive effect, the pressure of the measured medium directly acts on the sensor's diaphragm (stainless steel or ceramic), causing the diaphragm to interact with the medium. The micro-displacement proportional to the pressure changes the resistance value of the sensor. The electronic circuit detects this change and converts and outputs a standard measurement signal corresponding to the pressure.
4. Sapphire pressure sensor: Utilizing the working principle of strain resistance type, using silicon-sapphire as the semiconductor sensitive element, it has unparalleled measurement characteristics. Therefore, semiconductor sensitive components made of silicon-sapphire are not sensitive to temperature changes and have good working characteristics even under high temperature conditions; sapphire has extremely strong radiation resistance characteristics; in addition, silicon-sapphire semiconductor sensitive components are not sensitive to temperature changes. p-n drift.
5. Piezoelectric pressure sensor: The piezoelectric effect is the main working principle of the piezoelectric sensor. The piezoelectric sensor cannot be used for static measurement, because the charge after the action of external force can only be saved when the circuit has an infinite input impedance . The actual situation is not like this, so this determines that the piezoelectric sensor can only measure dynamic stress.
Application areas of pressure sensors
Pressure sensors are mainly used in: booster cylinders, superchargers, gas-liquid booster cylinders, gas-liquid boosters, presses, compressors, air conditioning and refrigeration equipment and other fields.
1. Applied to hydraulic system
The pressure sensor is mainly used to complete the closed-loop control of the force in the hydraulic system. When the control spool moves suddenly, a peak pressure several times the system working pressure will be formed in a very short time. In typical mobile machinery and industrial hydraulics, if such extreme conditions are not taken into account in the design, any pressure sensor will be quickly destroyed. It is necessary to use shock-resistant pressure sensors. There are two main methods for pressure sensors to achieve shock resistance. One is to change strain-type chips, and the other is to connect an external coil. Generally, the first method is used in hydraulic systems, mainly because Easy to install. Another reason is that the pressure sensor has to withstand continuous pressure pulsation from the hydraulic pump.
2. Applied to safety control system
Pressure sensors are often used in safety control systems, and the main target area is the safety management system of the air compressor itself. There are many sensor applications in the field of safety control. As a very common sensor, pressure sensors are not surprisingly used in safety control systems.
Applications in the field of safety control are generally considered from the perspective of performance, from the consideration of price, and from the safety and convenience of actual operation. It has been proved that the effect of selecting a pressure sensor is very good. The pressure sensor uses the processing technology of mechanical equipment to install some components and signal conditioners on a small chip. So
- Categories:Industry information
- Time of issue:2017-02-13 17:02
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