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Incremental encoder for Germany MICO​ Inverter 340

Incremental encoder for Germany MICO​ Inverter 340

2020-03-05




Incremental encoder for Germany MICO Inverter 340

 

If you are looking for the rotary encoder for Germany MICO AC governor 330,

we can offer the best choice in choosing the right electrical parameters for you in a very short time.

 

To get more details, call me now!!!

Email:heng@shhxgd.cn or add whatsapp/Wechat +86 18616883327

 

High performance optical rotary encoder sensors made by our  

Shanghai Hengxiang Optical Electronics Co,ltd  

for embedded OEM motion control applications. Medical, optics, robotics, 3D printers, gimbals and hand held devices applications. With a lot of advantage, such as high speed,customization leader and the best price performance

 

from cost-aware standard types through to extremely robust heavy-duty products,we  HENGXIANG ENCODER FACTORY can supply the right

incremental rotary encoder for every application. With optical incremental rotary encoders, a line-coded disc made of metal, plastic or glass and mounted on a rotary bearing interrupts a beam of light from a light-emitting diode. The number of lines determines the resolution of an optical encoder, which is the number of measured points in one revolution. The interruptions of the light beam are sensed by the receptor element and electronically processed. The information is then made available as a rectangular signal at the encoder output. We HENGXIANG ENCODER FACTORY can provide rotary encoders with up to 80,000 pulses per revolutionM, and the mimimum pulse can be even less than 10 pulses, all pulses can be made based on customers's requirements.

Incremental rotary encoders generate an output signal each time the shaft rotates a certain angle. The number of signals (pulses) per turn defines the resolution of the device. The incremental encoder does not output an absolute position, which makes the internal components of the encoder much simpler and more economical.

 

Besides position tracking, incremental encoders are often used to determine velocity. The position in relation to the starting point can be calculated by counting the number of pulses. The velocity can be retrieved by dividing the number of pulses by the measured time interval.

 

 

 

 


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