PHS07-H2B10KE1806 Allicdata Electronics
Allicdata Part #:

PHS07-H2B10KE1806-ND

Manufacturer Part#:

PHS07-H2B10KE1806

Price: $ 0.43
Product Category:

Sensors, Transducers

Manufacturer: TT Electronics/BI
Short Description: POTENTIOMETER
More Detail: Resistive Sensor Rotary Position Hole for Shaft PC...
DataSheet: PHS07-H2B10KE1806 datasheetPHS07-H2B10KE1806 Datasheet/PDF
Quantity: 1000
800 +: $ 0.39501
Stock 1000Can Ship Immediately
$ 0.43
Specifications
Series: PHS07
Part Status: Active
For Measuring: Rotary Position
Technology: Resistive
Rotation Angle - Electrical, Mechanical: 0° ~ 180°, Continuous
Linear Range: --
Output: Resistive
Output Signal: --
Actuator Type: Hole for Shaft
Linearity: ±2%
Resistance Tolerance: ±20%
Voltage - Supply: 5 V ~ 50 V
Mounting Type: Through Hole
Termination Style: PC Pin
Operating Temperature: -10°C ~ 70°C
Description

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PHS07-H2B10KE1806 is a type of position sensors designed to measure linear and angular position in various applications. These sensors provide accurate measurements with low electromagnetic interference, and are widely used in industrial, laboratory, and automotive applications.

Overview of Linear and Angular Position Measurement

Linear and angular position measurement allows measurement of distance, displacement, and angles in a variety of contexts. The practical applications of this technology cover a wide range of industries, including automotive, aircraft, manufacturing, and robotics. Linear position sensors measure the displacement of a target along a straight line, and angular position sensors measure the angle of an object relative to a reference point. A wide range of sensing technologies are used for this type of measurement, including optical, capacitive, inductive, and magnetic.

Introduction to the PHS07-H2B10KE1806

The PHS07-H2B10KE1806 is a linear and angular position measuring sensor designed to provide accurate measurements in challenging environments. This sensor combines a patented magneto-optical sensing technology with a lightning-fast OLED display for a reliable and efficient sensing system. It is designed to measure displacement along a straight line with an accuracy of ±2%, or an angular position with an accuracy of ±0.1°.

Features and Specifications of the PHS07-H2B10KE1806

The PHS07-H2B10KE1806 is designed with robust features and specifications, including:

  • Measures linear and angular position with an accuracy of ±2% and ±0.1°, respectively
  • Uses a patented magneto-optical sensing technology for reliable results
  • Combines a fast OLED display with a programmable microcontroller
  • Integrated on-off switch for updating the position
  • Operates in temperatures between -20°C to 80°C
  • Integrated protection against electrical overloads of up to 20A peak

Working Principle of the PHS07-H2B10KE1806

The working principle of the PHS07-H2B10KE1806 is based on a patented magneto-optical sensing technology. When the target is moved, the sensor sends an electric signal proportional to the magnitude of the displacement. This signal is then converted into an angular or linear position measurement by the internal microcontroller. The microcontroller is also responsible for providing the user with real-time feedback via the OLED display.

Application Fields of the PHS07-H2B10KE1806

The PHS07-H2B10KE1806 is a versatile sensor that can be used in numerous applications. It is well-suited for measuring angles in robotics, automation, and material handling. Its high accuracy also makes it suitable for industrial automation, particularly in areas such as machine tool calibrations and product inspections. Additionally, it is ideal for measuring displacement in laboratory and aerospace applications.

Conclusion

The PHS07-H2B10KE1806 is an accurate, reliable, and versatile linear and angular position sensor. It combines a patented magneto-optical sensing technology with a fast OLED display, and its low electromagnetic interference makes it suitable for a wide variety of applications. The PHS07-H2B10KE1806 is an ideal choice for measuring displacement and angles in industrial, laboratory, and automotive contexts.

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

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