Temporary storage equipment for single-chip microcomputer processing
A temporary storage device and single-chip microcomputer technology, applied in the direction of external frames, packaging, unloading devices, etc., can solve problems such as pin deformation, easy entanglement of pins, and single-chip microcomputer damage, so as to avoid collision impact, avoid winding, reduce The effect of collision
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Embodiment 1
[0022] as attached figure 1 to attach Figure 5 Shown:
[0023] The present invention is a temporary storage device for single-chip processing, its structure includes a storage device 1, a support rod 2, a mobile base 3, the middle end of the outer surface of the storage device 1 is hinged to the top of the support rod 2, and the lower end of the support rod 2 Welded with the upper surface of the mobile base 3, the storage device 1 includes a storage rack 11, an opening and closing door 12, a separation mechanism 13, and a take-out mechanism 14. The front end surface of the storage rack 11 is provided with an opening and closing door 12, and the storage rack 11 The interior is embedded with a separation mechanism 13, the opening and closing door 12 is located at the front end of the separation mechanism 13, and the take-out mechanism 14 is located at the rear end of the separation mechanism 13, and the take-out mechanism 14 is located on the rear end surface of the storage ra...
Embodiment 2
[0030] as attached Figure 6 to attach Figure 7 Shown:
[0031] Wherein, the take-out mechanism 14 includes a fixed frame 141, a guide block 142, a sliding door 143, and an outlet 144. The fixed frame 141 is fixedly installed on the rear end surface of the storage rack 11, and the guide block 142 is arranged inside the fixed frame 141. The guide block 142 is mounted on the inside of the outer side of the sliding door 143 using a clearance fit, and the sliding door 143 is installed on the inside of the fixed frame 141 by using a clearance fit. The inside of the fixed frame 141 runs through an outlet 144. Six, respectively corresponding to the six placement slots on the placement mechanism 131 , through the sliding door 143 , the single-chip microcomputers placed inside the slots can be discharged separately.
[0032]Wherein, the sliding door 143 includes a blocking door 44a, a buffer plate 44b, a rotating shaft 44c, and a compression spring 44d. The blocking door 44a is inst...
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