GIDINGS&LEWIS M.1017.6083编码器模块
1.产 品 资 料 介 绍:
GIDINGS&LEWIS M.1017.6083 编码器模块介绍
一、工作原理
二、性能参数
英文资料:
Introduction to GIDINGS&LEWIS M.1017.6083 Encoder Module
In the field of industrial automation and precision control, encoder modules play a crucial role in the precise operation of equipment as key components. The GIDINGS&LEWIS M.1017.6083 encoder module is one of the highly anticipated products, widely used in various complex industrial scenarios with its advanced technology and reliable performance.
1、 Working principle
M. The 1017.6083 encoder module can operate based on photoelectric or magneto electric principles. The photoelectric sensor is coupled with a grating disk. When light passes through the gap of the grating disk and shines on the sensor, the motor shaft drives the grating disk to rotate, and the on/off changes of the light will generate periodic pulse signals. Magnetoelectric sensors use magnetic field changes to sense position information, such as using magnetic poles and Hall effect sensors. As the rotor position changes, the magnetic field changes are captured by the sensor and converted into electrical signals. Subsequently, the electronic signal processor within the module processes and decodes these raw signals, ultimately outputting digital pulse signals or absolute position values that can be recognized by the control system, providing precise feedback on key information such as the position, rotational speed, and direction of the motor shaft.
2、 Performance parameters
Resolution: This module has excellent resolution and can output a large number of pulses per rotation, such as common specifications such as 1024 and 2048 pulses per revolution. This means that it can accurately distinguish extremely small angle or displacement changes, providing high-precision position feedback data for the system. It is suitable for industrial processing, precision measurement and other scenarios that require high precision.
Signal output types: Supports multiple output types, such as incremental A-phase, B-phase, Z-phase (or C-phase) signals. The A and B phases are delayed by 1/4 cycle (90 degrees) from each other. By determining the order of A and B phases and their rising and falling edges, the motor's forward and reverse directions can be distinguished, and it can achieve 2 or 4 times the frequency to improve measurement accuracy; The Z-phase is a single cycle pulse, with one pulse emitted per cycle to determine the zero reference point. In addition, it may also have an absolute value output function, which outputs absolute position information in the form of binary code, Gray code, etc. Even in the event of power failure, the device position can be saved, and the accurate position can be directly read after power on, avoiding recalibration and improving system stability.
Response frequency: It has a high response frequency and can quickly respond to a large number of pulses within 1 second. Assuming the maximum response frequency can reach 100kHz, it can also timely and accurately feedback position and speed information to the control system when the motor is running at high speed, ensuring real-time and precise control of the motor and preventing control deviation caused by feedback delay.
Electrical interface compatibility: Equipped with multiple electrical interfaces, such as common push-pull output (HTL format), voltage output, open collector output (NPN/PNP transistor output), and long line driver output, it can flexibly adapt to different types of controllers and control systems, reduce system integration difficulty, and facilitate application in various industrial automation architectures.
2.产 品 展 示
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The content is from Ruichang Mingsheng Automation Equipment Co., LTD
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