MMS-P | MMS-N (-P positive output | -N negative output) 300mA (limited) output current LED indicators for fault and sensing
Germany
In addition to purely switching sensors, your sensor specialist EGE also offers you inductive proximity switches with analogue output for measuring tasks. The analogue signal is proportional to the approximation of the metal part. This sensor is also available in a version up to 160° C. The proximity sensor is based on the proven inductive principle: When metallic objects come close, the resonant circuit of a coil is dampened through induction and an analogue signal generated from it. Analogue inductive are e.g. suitable for the double occupation control of metal plates, for the tensioning control of wire or for monitoring metallic brake pads.
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Housing Form A plastic. Housing Form B die-cast zinc alloy. Active face POM. Housing Form C high-alloy stainless steel Version: Voltage: U = 10 – 30 V DC Function: Normally open Switch type: PNP Mounting type: flush Security type: IP 67 Note: Non-contact, functions wear-free with high switching frequency and accuracy. Non-sensitive to vibrations, dust and moisture. Inductive sensors record all metals without contact. Form C enables screw fastening in a T-slot. Is safe and saves space as the proximity switch lays flush in the slot. Short-circuit proof and reverse-polarity protected.
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BERNSTEIN offers the user coordinated coded magnetic switches and corresponding actuators. With suitable evaluation (e.g. BERNSTEIN MÜZ), the sensor fulfils the requirements of DIN EN 60947-5-3 and is therefore suitable for safety-related monitoring of doors, Protective guards and flaps in accordance with DIN EN 14119 and DIN EN 13849. — Manipulation protection through coding (multicode) — Redundancy through NC and NO contacts — Cannot be operated with conventional magnets — Cable versions in 3m, 6m and 9m or plug version — Sturdy plastic enclosure
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It is used for vertical transportation of wheat. It consists of two parts: lower and upper heading. Pipe length is adjusted according to the building height. The drive of the elevator is made by the reducer motor located on the upper head. The motor stand has slides and can be easily adjusted to enable shaft center adjustments. Belt tension is provided by the tensioning mechanism connected to the bearings.
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