TSP-R-0036-351-103-3%-RH Allicdata Electronics
Allicdata Part #:

905-1083-ND

Manufacturer Part#:

TSP-R-0036-351-103-3%-RH

Price: $ 6.59
Product Category:

Sensors, Transducers

Manufacturer:
Short Description: SENSOR THINPOT 10K OHM 36MM
More Detail: Resistive Sensor Rotary Position Flexible Membrane...
DataSheet: TSP-R-0036-351-103-3%-RH datasheetTSP-R-0036-351-103-3%-RH Datasheet/PDF
Quantity: 1000
25 +: $ 5.98752
Stock 1000Can Ship Immediately
$ 6.59
Specifications
Series: ThinPot
Part Status: Active
For Measuring: Rotary Position
Technology: Resistive
Rotation Angle - Electrical, Mechanical: 0° ~ 351°
Linear Range: --
Output: Resistive
Output Signal: Clockwise Increase
Actuator Type: Flexible Membrane - Rotary
Linearity: ±3%
Resistance: 10 kOhms
Resistance Tolerance: ±20%
Voltage - Supply: --
Mounting Type: Custom
Termination Style: Connector
Operating Temperature: -40°C ~ 50°C
Description

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Position Sensors - Angle, Linear Position Measuring

The TSP-R-0036-351-103-3%-RH is a position sensor that has a number of applications across various industries. This type of position sensor can be used to measure angle, linear position, and even rotational speed among other similar readings. Primarily designed for usage in industries such as medical, automotive, aerospace and consumer electronics, the sensors are built to meet exacting standards and requirements.

The TSP-R-0036-351-103-3%-RH sensor is based on a piezoelectric principle, which is a physical phenomenon in which electric charge is generated from a material when it is subjected to strain or pressure. Piezoelectric sensors have the ability to sense changes in pressure, acceleration, temperature or strain and convert them into electric charge and signal. This signal is then used to determine changes in the process that the sensor is used to sense. As such, the advantage of using piezoelectric principles for sensors is that they provide an output as an electrical charge, which is easier to convert into usable signals than other types of sensors.

In terms of application, the TSP-R-0036-351-103-3%-RH sensor is suitable for the measurement of angles in mechanically-operated systems. The system takes into account the inertial characteristics of a system, since the motion of any system can be distorted by vibration, thus increasing the accuracy and precision of the reading. As such, the TSP-R-0036-351-103-3%-RH is ideal for controlling, monitoring and measuring the position of rotating equipment and objects in many industries. The benefits of using the sensor is that it can be used to provide precision and accuracy in control and monitoring of the systems in which it is installed.

The working principle of TSP-R-0036-351-103-3%-RH is based on electromechanical transduction. A piezoelectric transducer is deployed inside the body of the sensor, which generates an electric charge when subjected to strain. This electric charge is then converted into a potentiometric electrical signal which is measured and read by either an analog or digital output. The output signal can be then used to measure the position, angular velocity, or acceleration of the system in question. Additionally, the sensor is also equipped with an adjustable damping mechanism, which helps to avoid irregularities in output signals during rapid changes in position or speed.

In conclusion, the TSP-R-0036-351-103-3%-RH position sensor is designed to provide highly accurate and precise readings in the measurement and monitoring of angles, linear position, and rotational speed in mechanical systems. The sensor is based on a piezoelectric transduction principle, which converts mechanical features such as strain and pressure into electric charge and signal. This signal can then be used to accurately measure and monitor the state and position of objects in a wide range of sectors. Being adjustable and configurable, the TSP-R-0036-351-103-3%-RH sensor is very versatile in its applications and can be used across many different industries in the measurement and monitoring of a variety of mechanical properties.

The specific data is subject to PDF, and the above content is for reference

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