A stacked fixed tool for assembly and processing of integrated circuit boards
A technology of integrated circuit board and fixed tooling, which is applied in the direction of electrical components, electrical components, transportation and packaging, etc., which can solve the problem of inconvenient picking up circuit boards by manipulators, and achieve the effect of convenient transportation and ensuring stability
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Embodiment 1
[0035] see Figure 1-Figure 5 , a stacking fixed tool for assembling and processing an integrated circuit board 2, including a loading box 1, a plurality of lifting mechanisms are installed in the loading box 1, and the lifting mechanism includes a conveying carrier 6 connected with the loading box 1, and the conveying carrier 6 is connected with the loading box. 1 Connected by the connecting block 7, the first rotating shaft 8 and the second rotating shaft 9 are rotatably installed in the transmission carrier 6, the first rotating shaft 8 is installed with the first gear 3, the second rotating shaft 9 is installed with the second gear 29, A gear 3 is connected with the second gear 29 through a transmission belt 4, and a power device for driving the second shaft 9 to rotate is also installed on the loading box 1;
[0036] A plurality of first bearing plates 11 are installed on the conveyor belt 4 , a bearing slot 30 is formed on the first bearing plate 11 , a second bearing pl...
Embodiment 2
[0039] see Figure 1-Figure 6 , This embodiment is a further explanation of Embodiment 1. The power device includes a power box 5 fixedly installed on the loading box 1, one end of the second rotating shaft 9 extends into the power box 5, and the second rotating shaft 9 is connected to the power box 5. The inner wall of the shaft is connected by a spring 22, which is used to provide the power to cause the second shaft 9 to rotate.
[0040] It should be noted that, when the circuit board 2 is loaded, one side of the circuit board 2 is firstly placed on the two first carrying boards 11 , and the first carrying board 11 is urged against the first carrying board 11 . The board 21 is in contact with the bottom of the interference block 20, and then the other side of the circuit board 2 is placed on the other two first carrier boards 11, and pressure is applied to cause the four first carrier boards 11 to move downward at the same time, so that the other two The contact plate 21 on...
Embodiment 3
[0043] see Figure 1-Figure 7 , This embodiment is a further improvement to Embodiment 2. It should be noted that when the circuit board 2 located on the top of the loading box 1 is removed, the interference block 20 no longer restricts the rotation of the conveyor belt 4. At this time, the conveyor belt 4 Under the action of the spring 22, it will rapidly rotate around the conveying carrier 6, and the circuit board 2 in the loading box 1 will be transported to the top opening of the loading box 1 at this time. 2 has not been taken away, therefore, the first carrier board 11 holding the circuit board 2 is always under the abutment block 20, and the abutment board 21 installed on the first carrier board 11 will abut against the abutment block 20, If the conveying speed of the conveyor belt 4 is too fast, the collision force between the collision block 20 and the collision plate 21 will increase, and the circuit board 2 may be separated from the loading box 1 under the collision...
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