ADP42913

Panasonic Electronic Components ADP42913

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  • ADP42913
  • Panasonic Electronic Components
  • SENSOR PRESSURE 980.7KPA STD DIP
  • Pressure Sensors, Transducers
  • ADP42913 Datasheet
  • 6-DIP Module
  • 6-DIP Module
  • Lead free / RoHS CompliantLead free / RoHS Compliant
  • 2054
  • Spot Inventory / Athorized Dstributor / Factory Excess Stock
  • 1 year quality assurance 》
  • Click to get rates

What is ADP42913

Panasonic Electronic Components Part Number ADP42913Pressure Sensors, Transducers), developed and manufactured by Panasonic Electronic Components, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.

ADP42913 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.

ADP42913 Specifications

  • Part NumberADP42913
  • CategoryPressure Sensors, Transducers
  • ManufacturerPanasonic Electronic Components
  • DescriptionSENSOR PRESSURE 980.7KPA STD DIP
  • Package6-DIP Module
  • SeriesPS
  • FeaturesTemperature Compensated
  • Operating Temperature-20°C ~ 100°C
  • Package / Case6-DIP Module
  • Output0 mV ~ 65 mV
  • Accuracy±0.6%
  • Output TypeWheatstone Bridge
  • Termination StyleThrough Hole
  • Pressure TypeVented Gauge
  • Operating Pressure142.24 PSI (980.7 kPa)
  • Port StyleBarbless
  • Maximum Pressure213.36 PSI (1471.05 kPa)
  • Port SizeMale - 0.1" (2.5mm) Tube

Application of ADP42913

Pressure Sensors and pressure Transducers (pressure Transducers) are widely used in petrochemical, water conservancy and hydropower, aerospace, medical equipment and other industries. In the petrochemical industry, they are used to monitor the pressure of pipelines and storage tanks to prevent leaks and explosions. In water conservancy and hydropower projects, it helps to control water flow and regulate water pressure to ensure water supply safety and power generation efficiency; In the automotive industry, it is used to monitor the brake system and engine oil pressure to ensure driving safety; In medical equipment, they play an important role in monitoring patients' vital signs and assisting diagnosis and treatment.

ADP42913 Datasheet

ADP42913 Datasheet , 6-DIP Module,PS,Temperature Compensated,-20°C ~ 100°C,6-DIP Module,0 mV ~ 65 mV,±0.6%,Wheatstone Bridge,Through Hole,Vented Gauge,142.24 PSI (980.7 kPa),Barbless,213.36 PSI (1471.05 kPa),Male - 0.1"

ADP42913 Classification

Pressure Sensors, Transducers

Pressure Sensors,Transducers are indispensable components in modern industry. They play an important role in automation control, safety monitoring and data processing. The core function of Pressure Sensors is to accurately sense changes in external pressure and convert them into measurable electrical signals. These electrical signals, such as voltage, current or frequency, are then transmitted to the control system for analysis and processing, enabling real-time monitoring and control of pressure parameters. Pressure Transducers (Pressure Transducers) is an extended application based on pressure sensors. It not only contains the sensing function of the sensor, but also integrates the signal conditioning and conversion circuit, which can convert the weak or non-standard signal output by the sensor into a standard current (such as 4-20mA) or voltage (such as 0-10V) signal.

FAQ about Pressure Sensors, Transducers

  • 1. What is a pressure sensor?

    A pressure sensor is a device that can convert a pressure signal into an electrical signal and is widely used in various industrial automatic control environments. It usually consists of a pressure sensitive element and a signal processing unit, which can sense the pressure signal and convert it into a usable output electrical signal according to a certain rule.
    Definition and function
    The basic concept of a pressure sensor is to convert a pressure signal into an electrical signal for subsequent signal processing and control. The working principle of a pressure sensor is mainly based on physical phenomena such as piezoelectric effect, strain effect and capacitance effect. The piezoelectric effect refers to the fact that certain materials generate electric charge when subjected to pressure; the strain effect refers to the deformation of the material when subjected to pressure, thereby changing the resistance value; the capacitance effect refers to the change in capacitance value caused by pressure change.
    Classification
    According to the working principle and structural characteristics, pressure sensors can be divided into the following categories:
    Piezoresistive pressure sensor: based on the strain effect, usually made of semiconductor materials.
    Piezoelectric pressure sensor: based on the piezoelectric effect, usually made of crystal or ceramic materials.
    Capacitive pressure sensor: based on the capacitance effect, composed of two conductors and an insulating medium.
    Fiber optic pressure sensor: uses the light transmission characteristics of optical fiber to convert pressure signals into optical signals.

  • 2. What are the three types of pressure sensors?

    There are three main types of pressure sensors:
    Gage pressure sensor: This sensor is used to measure pressure relative to atmospheric pressure. It is usually used to measure the pressure of liquids or gases and convert pressure changes into electrical signal output.
    Differential pressure sensor: The differential pressure sensor uses two different pressure ports to measure the pressure difference relative to each other. It is often used to measure the pressure difference between two different locations, such as measuring flow in a fluid system.
    Absolute pressure sensor: Absolute pressure sensor is used to measure absolute pressure, that is, pressure relative to a vacuum. It is not affected by atmospheric pressure and is often used for high-precision measurements and applications that require stable pressure readings.
    In addition, there are other types of pressure sensors, such as piezoresistive, capacitive, piezoelectric, strain gauge, fiber optic pressure sensor, and magnetostrictive. These sensors have different characteristics and application fields.
    For example:
    Piezoresistive pressure sensor: simple structure, small size, low cost, high sensitivity and accuracy, widely used in consumer electronics, medical equipment and industrial control.
    Capacitive pressure sensor: has good dynamic response characteristics and stability, suitable for aerospace, automobile manufacturing and precision instruments.
    Piezoelectric pressure sensor: does not require external power supply, has extremely high sensitivity and fast response time, and is often used for high-frequency vibration measurement and dynamic pressure monitoring.
    Strain pressure sensor: has a wide measurement range, high accuracy and good stability, and is widely used in industrial automation, engineering machinery and aerospace.
    Fiber optic pressure sensor: has strong anti-electromagnetic interference ability, corrosion resistance, high temperature resistance, suitable for pressure measurement in harsh environments.
    Magnetostrictive pressure sensor: has high accuracy, fast response and good reliability, and is often used in high-precision pressure measurement and control systems.

  • 3. What is the difference between a transducer and a sensor?

    Sensors and transducers are two different concepts. A sensor is a device that converts non-electrical signals into electrical signals, while a transducer is a device that converts one form of energy into another form.
    1. Definition of sensors and transducers
    Both sensors and transducers are devices that measure physical quantities.
    A sensor is a device that converts non-electrical signals into electrical signals, and is usually used to convert physical quantities into electrical signals, such as temperature, pressure, humidity, light intensity, etc. Sensors are widely used in industry, medical care, environmental monitoring and other fields.
    A transducer is a device that converts one form of energy into another. A transducer can convert any form of physical quantity (such as pressure, force, torque, displacement, sound, light, heat, etc.) into electrical signals or other forms of energy output. The application field of transducers is also very wide, and they are often used to detect, control and measure various industrial processes.
    2. The difference between sensors and transducers
    The main difference between sensors and transducers is which signal they convert into which signal. Sensors mainly convert non-electrical signals into electrical signals, while transducers can convert any form of signal into other forms of energy, such as electrical signals or mechanical motion.
    In addition, the application fields of sensors and transducers are also different. Sensors are mainly used to detect, monitor and measure various physical quantities, such as temperature, pressure, humidity, light intensity, etc.; while transducers are widely used to control, measure and detect various industrial processes, such as flow, speed, force, pressure and displacement, etc.
    3. Application fields of sensors and transducers
    Sensors and transducers have a wide range of applications. Sensors are usually used in the following fields:
    1. Industrial process control and monitoring.
    2. Equipment control and monitoring in the fields of automobiles, machinery, electronics, medical equipment, aerospace, etc.
    3. Environmental monitoring and weather forecasting.
    4. Home automation and smart home fields.
    Transducers are mainly used in the following fields:
    1. Exploration and production processes in the fields of ocean, petroleum, aviation, energy, etc.
    2. Engineering measurement and control fields, such as monitoring and control of structures such as buildings, bridges and tunnels.
    3. Scientific research fields, such as physics, chemistry, biology, etc.
    4. Music and art fields, such as electronic musical instruments and sound amplifiers, etc.

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Panasonic Electronic Components
Panasonic Electronic Components
Panasonic Electronic Components is a subsidiary of the Panasonic Group, which is dedicated to the production and sales of electronic components and equipment. Panasonic has established a branch in China, which includes Panasonic...
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