PEC12R-4117F-S0012 Allicdata Electronics
Allicdata Part #:

PEC12R-4117F-S0012-ND

Manufacturer Part#:

PEC12R-4117F-S0012

Price: $ 0.87
Product Category:

Sensors, Transducers

Manufacturer: Bourns Inc.
Short Description: ENCODER ROTARY
More Detail: N/A
DataSheet: PEC12R-4117F-S0012 datasheetPEC12R-4117F-S0012 Datasheet/PDF
Quantity: 796
1 +: $ 0.78750
10 +: $ 0.73143
25 +: $ 0.69073
50 +: $ 0.60959
100 +: $ 0.50117
250 +: $ 0.48762
500 +: $ 0.46053
1000 +: $ 0.43344
5000 +: $ 0.37926
Stock 796Can Ship Immediately
$ 0.87
Specifications
Series: PEC12R
Part Status: Active
Encoder Type: Mechanical
Output Type: Quadrature (Incremental)
Pulses per Revolution: 12
Voltage - Supply: --
Actuator Type: 6mm Dia Flatted End
Detent: Yes
Built in Switch: Yes
Mounting Type: PCB, Through Hole
Orientation: Vertical
Termination Style: PC Pin
Rotational Life (Cycles Min): 30K
Description

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Encoders are a type of transducer which may convert physical or information signals into electrical, optical, or other measurable signals. PEC12R-4117F-S0012 is a type of encoders that is made up of Hall-effect sensors, which are small, solid state devices that measure the strength of a magnetic field, and optical, inductive, and magnetic encoder wheel. This encoder function by monitoring the rotational position of a motor shaft, and then providing a dynamic signal that can be processed by a computer or controller.

The PEC12R-4117F-S0012 has a number of advantages over traditional rotary encoders, including its small size, reliable operation, and low cost. It can also operate over a wide temperature range, and in harsh environmental conditions. The high resolution of the PEC12R-4117F-S0012 is also a key benefit, as this allows for precise control of the position of the motor shaft, which in turn allows for more accurate automatic control and feedback.

In terms of its application field, PEC12R-4117F-S0012 is widely used in a range of motion control applications, such as robotic arms, automated assembly lines, and automated material handling systems. This type of encoder is particularly well suited for these applications, as it allows for precise and reliable positioning of the motor shaft, which in turn increases the accuracy of automated operations. Other possible applications of this encoder include control of motors used in pumps, conveyors, and other industrial machines, and as the input device for monitoring the speed and position of machinery.

The working principle behind the PEC12R-4117F-S0012 is fairly simple. It uses a combination of Hall effect sensors and encoder wheels to detect the position of the motor shaft. The Hall effect sensors measure the strength of a magnetic field generated by magnets placed around the periphery of the motor shaft. The signals from the Hall effect sensors are then processed by the encoder wheels in order to calculate the angular position of the motor shaft.

The encoder wheels are attached to the shaft of the motor and rotate along with the motor shaft. As the encoder wheel rotates, small magnets attached to the wheel generate a magnetic field. The Hall effect sensors then measure the strength of the magnetic field and, through processing, calculate the angular position of the motor shaft. The resulting signals are then sent to a controller, which uses the signals to control the motor’s speed and position.

In addition to providing precise and accurate position data, the PEC12R-4117F-S0012 also offers other features, such as a digital output for automatically setting the reference position and a reset function for resetting the reference position during operation. These features further increase the utility of this encoder for a variety of motion control applications.

To summarize, the PEC12R-4117F-S0012 is an encoder made up of Hall-effect sensors, optical, inductive, and magnetic encoder wheels, and is widely used in a variety of motion control applications. This type of encoder functions by monitoring the rotational position of a motor shaft, and then providing a dynamic signal that can be processed by a computer or controller. Its main advantages include small size, reliable operation, and high resolution, which allows for precise and accurate control of the position of the motor shaft.

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

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