Sufficient demagnetizing device for electronic communication equipment
A technology of communication equipment and degaussing device, which is applied in the direction of circuits, magnetic objects, electrical components, etc., can solve the problems of inconvenient operation, low work efficiency, and small number of degaussing equipment, and achieve the effect of easy access and improved work efficiency
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Embodiment 1
[0029] see Figure 1-4 , a fully degaussing device for electronic communication equipment, comprising a device base 1, two support plates 2 provided on the top of the device base 1, a degaussing mechanism 3 provided between the two support plates 2 on the device base 1, and driving the electronic communication equipment in the The moving mechanism 4 that is active in the degaussing mechanism 3.
[0030] The degaussing mechanism 3 includes a degaussing housing 31 fixedly connected to the top of the device base 1. A through degaussing channel is provided in the middle of the degaussing housing 31, and the degaussing housing 31 is provided with a degaussing channel distributed around the degaussing channel and used to accommodate the degaussing coil 32. slot, one end of the degaussing slot communicates with the outside world.
[0031] The movable mechanism 4 includes a drive shaft 41 that is rotatably connected to the surface of the support plate 2, and a storage mechanism 42 is...
Embodiment 2
[0034] see Figure 2-3 , the storage mechanism 42 includes a movable column 421 threaded on the surface of the drive shaft 41, the entire surface of the drive shaft 41 is provided with threads that drive the movable column 421, the surface of the movable column 421 is movably connected with a storage column 422, and the storage column 422 The surface of the surface is provided with thread-like lines that are compatible with the internal thread grooves of the degaussing channel. The center of the storage column 422 is provided with a through hole that is compatible with the movable column 421, and the inner wall of the through hole passes through the slider and the chute. Slidingly connected to the surface of the movable column 421, the surface of the storage column 422 is evenly provided with a storage cavity that opens from the center to the outside, and the inside of the storage cavity is fixedly connected with a storage bag 423, and the opening of the storage bag 423 is seal...
Embodiment 3
[0037] see Figure 4 , the drive mechanism 43 includes a drive housing 431 fixedly connected to the top of the device base 1, one end of the drive shaft 41 extends to the inside of the drive housing 431, and the end surface of the drive shaft 41 is sequentially fixed from the support plate 2 to the direction of the drive housing 431 A drive gear 432 and a drive pinion 433 are connected. The base 1 of the device is located on the top surface of the drive housing 431 and is provided with a motor, and the output end of the motor is fixedly connected with a linkage shaft 434. The end of the linkage shaft 434 away from the motor is supported by a bearing and The surface of the plate 2 is rotationally connected, the surface of the linkage shaft 434 is slidingly connected with a push column 435 through the slider and the chute, and the surface of the push column 435 is fixedly connected with a gear ring 436, and the surface of the gear ring 436 meshes with the surface of the driving g...
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