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Room 218, Building 1, No. 351 Guoshoujing Road, Pudong New Area, Shanghai
Dingluan (Shanghai) Electromechanical Equipment Co., Ltd
Room 218, Building 1, No. 351 Guoshoujing Road, Pudong New Area, Shanghai
SCHNEIDER proximity switchIntroduction:
Reflective board type photoelectric switch:
Installing the light emitter and receiver into the same device, installing a reflective plate in front, and using the principle of reflection to achieve photoelectric control, is called a reflective plate reflective (or mirror reflective) photoelectric switch. Under normal circumstances, the light source emitted by the emitter is reflected back by the reflector and then received by the receiver; Once the detected object blocks the light path and the receiver cannot receive light, the photoelectric switch will activate and output a switch control signal.
Diffuse reflection photoelectric switch:
The detection head of the diffuse reflection photoelectric switch is also equipped with an emitter and a receiver, but there is no reflector in front of the diffuse reflection photoelectric switch. Under normal circumstances, the light collector emitted by the emitter cannot be found. During detection, when the object passes through, it blocks the light and partially reflects it back, and the receiver receives the light signal and outputs a switch signal.
Schneider focuses on providing automation control system solutions, with its main business divided into two parts: one is to provide automation control system solutions for the mechanical and equipment manufacturing industry, namely the OEM industry; The second is to provide corresponding products and solutions for process automation, such as factory automation process control. Overall, Schneider has divided its business into two major segments: OEM and process automation.
SCHNEIDER proximity switchIt is a new type of switch component used in industrial automation control systems to achieve full contactless detection, control, and output links. When the switch approaches an object, it emits an induction signal. When the metal target approaches this magnetic field and reaches the induction distance, eddy currents are generated inside the metal target, causing oscillation attenuation and even stopping. The changes in oscillator oscillation and stop oscillation are processed by the post amplification circuit and converted into switch signals, triggering the driving control device to achieve non-contact detection.
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