CN218851064U - Type-C interface plug-in components tool - Google Patents

Type-C interface plug-in components tool Download PDF

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Publication number
CN218851064U
CN218851064U CN202222915055.8U CN202222915055U CN218851064U CN 218851064 U CN218851064 U CN 218851064U CN 202222915055 U CN202222915055 U CN 202222915055U CN 218851064 U CN218851064 U CN 218851064U
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component
type
extrusion
circuit board
base
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CN202222915055.8U
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Chinese (zh)
Inventor
吴锡军
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Kunshan Shengchang Electronics Co ltd
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Kunshan Shengchang Electronics Co ltd
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Priority to CN202222915055.8U priority Critical patent/CN218851064U/en
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Abstract

The utility model discloses a Type-C interface plug-in components tool, which comprises a base, set up the workstation on the base, the upside of workstation is equipped with spacing backup pad and carries the dish, carry the upside that the dish set up in spacing backup pad, the below that lies in the workstation on the base sets up plug-in components extrusion device, and the side that lies in the workstation on the base is equipped with vertical support frame, and installation handle presses down subassembly one on the vertical support frame, and the handle presses down the downside fixed connection double-deck clamp plate of subassembly one. On can pegging graft the PCB circuit board to a plurality of Type-C interfaces simultaneously, work efficiency is high, reduces the condition of grafting skew, reduces the grafting defective rate, practices thrift the processing cost, alleviates staff's work load.

Description

Type-C interface plug-in components tool
Technical Field
The utility model relates to a PCB board technical field is a Type-C interface plug-in components tool.
Background
The Type-C interface is a connecting interface of a USB interface, and the most obvious characteristic of the Type-C interface is that the front and back blind plugging is supported, so that the Type-C interface is widely applied to mobile phones, computers and PAD electronic equipment and is used as a PCB (printed circuit board) carried by the mobile phones, the computers and the PAD electronic equipment, and the additional installation requirement of the Type-C interface is more and more; when installing the Type-C interface additional to the PCB circuit board after the process of PCB circuit board brush tin cream, the staff adopts the mode of manual grafting to realize the equipment of Type-C interface usually, and the incline not only takes place easily for this kind of mode, and manual grafting moreover once presses and can only peg graft 1 Type-C interface, and machining efficiency is on the low side.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: to the problem and not enough of existence among the above-mentioned prior art, the utility model aims at providing a Type-C interface plug-in components tool. On can pegging graft the PCB circuit board to a plurality of Type-C interfaces simultaneously, work efficiency is high, reduces the condition of grafting skew, reduces the grafting defective rate, practices thrift the processing cost, alleviates staff's work load.
The technical scheme is as follows: in order to achieve the purpose, a Type-C interface plug-in components tool, which comprises a base, set up the workstation on the base, the upside of workstation is equipped with spacing backup pad and carries the dish, carry the upside that the dish set up in spacing backup pad, the below that lies in the workstation on the base sets up plug-in components extrusion device, and the side that lies in the workstation on the base is equipped with vertical support frame, and the subassembly is pressed to vertical support frame installation handle, the handle presses the downside fixed connection double layer clamp plate of subassembly one.
Furthermore, the plug-in extruding device comprises a supporting frame, a guide rail, a transverse guide rod, a handle pressing assembly II, an extruding assembly I, a handle pressing assembly III and an extruding assembly II, wherein the supporting frame is arranged on the base and positioned at the lower side of the workbench, the guide rail is arranged on the inner side of the supporting frame, the transverse guide rod is arranged on the supporting frame, the extruding assembly I and the extruding assembly II are both arranged on the guide rail in a sliding mode, and the extruding assembly I and the extruding assembly II are arranged on the transverse guide rod in a penetrating mode; the second handle pressing assembly is fixedly arranged on the left side of the supporting frame, the third handle pressing assembly is fixedly arranged on the right side of the supporting frame, the first handle pressing assembly controls the extrusion assembly to horizontally slide, and the third handle pressing assembly controls the extrusion assembly to horizontally slide. Handle pressing component two can control extrusion component one and carry out reciprocating sliding in the finite distance on the guide rail, and handle pressing component three control extrusion component two carries out reciprocating sliding in the finite distance on the guide rail to can realize utilizing extrusion component one and extrusion component two pairs of a plurality of Type-C material spare to carry out the extrusion of horizontal direction simultaneously.
Further, extrusion subassembly one and two structures of extrusion subassembly are the same, all including promoting piece, a plurality of slip extrusion piece and limiting plate, promote the piece and press the two or three connections of subassembly of handle pressing assembly, the slip extrusion piece passes through the sliding seat and installs on the guide rail, and the limiting plate setting is in the top of guide rail, and is equipped with the groove of passing through that supplies the sliding seat to pass on the limiting plate.
The handle of subassembly two or the subassembly three is pressed to the handle is at the pivoted in-process, and the steerable removal that takes place the horizontal direction that promotes the piece to the realization is to the promotion of slip extrusion piece, and the slip extrusion piece utilizes the sliding seat to realize the even movement on the guide rail, and the limiting plate is spacing to the sliding position of slip extrusion piece, controls the sliding distance of slip extrusion piece, thereby once with a plurality ofly peg graft Type-C material spare on the PCB circuit board.
Furthermore, two rows of first guide posts arranged in parallel are arranged on the pushing block, and elastic shock absorption blocks are arranged at two ends of the pushing block. The design of guide post one can control and promote the piece and steadily remove, and the vibrations that the elasticity snubber block produced are promoting the piece in-process to promoting the slip extrusion piece are reduced in the design of elasticity snubber block.
Furthermore, two rows of guide posts II which are arranged in parallel are arranged between the sliding extrusion piece and the limiting plate. Due to the design of the guide columns, the sliding extrusion pieces are not prone to deflection, and accurate alignment extrusion of each extrusion piece and a Type-C material piece is achieved.
Furthermore, the limiting support plate comprises a base plate and a plurality of limiting blocks, two limiting blocks are arranged on each four corners of the base plate respectively, and the two sides of the base plate are provided with a groove for taking and placing the loading disc and a first extrusion sheet moving groove for sliding the extrusion sheet.
Furthermore, the surface of the limiting block, which is in contact with the carrying disc, is an inclined surface. The design of inclined plane is convenient for carry the dish and put into spacing backup pad and carry on spacing fixed.
Further, carry and be equipped with Type-C material spare standing groove, circuit board standing groove one, circuit board and get the groove, two extrusion piece activity grooves three and circuit board standing groove two of extrusion piece activity groove on the dish, circuit board standing groove one and two parallel arrangement of circuit board standing groove, outline department between them all is equipped with the circuit board and gets and put the groove, type-C material spare standing groove includes a plurality of, sets up respectively in the both sides of circuit board standing groove one, and extrusion piece activity groove three and circuit board standing groove two set up the outside at Type-C material spare standing groove relatively.
Furthermore, a vertical guide rod is arranged between the vertical support frame and the base, and the double-layer pressing plate penetrates through the outer side of the vertical guide rod. The design of vertical guide bar for the handle presses the subassembly and steadily takes place to push down in the control double-deck clamp plate, is difficult for taking place the skew.
Above-mentioned technical scheme can see out, the beneficial effects of the utility model are that:
a Type-C interface plug-in components tool, will wait to plug in Type-C interface and PCB circuit board and place the corresponding position back of carrying the dish, will carry and carry out spacing fixed in the dish is placed spacing backup pad, utilize plug-in components extrusion device to realize the quick grafting of a plurality of Type-C interfaces to the PCB circuit board from both sides, work efficiency is high, effectively reduces the condition of grafting incline, reduces the grafting defective rate, practices thrift the processing cost, alleviates staff's work load.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the insert pressing device of the present invention;
FIG. 3 is a schematic structural diagram of a first extrusion assembly and a second extrusion assembly of the present invention;
fig. 4 is a schematic structural view of the sliding extrusion sheet, the sliding seat and the guide rail of the present invention;
fig. 5 is a schematic structural diagram of a limiting plate of the present invention;
FIG. 6 is a schematic structural view of the boat of the present invention;
fig. 7 is a schematic structural view of the second handle pressing component and the third handle pressing component of the present invention.
Detailed Description
The invention will be further elucidated with reference to the drawings and the specific embodiments.
1-7, including base 1, set up workstation 2 on the base, the upside of workstation 2 is equipped with spacing backup pad 3 and year dish 4, it sets up the upside at spacing backup pad 3 to carry dish 4, the below that lies in workstation 2 on base 1 sets up plug-in components extrusion device 5, and the side that lies in workstation 2 on base 1 is equipped with vertical support frame 6, and the installation handle presses subassembly 8 on vertical support frame 6, and the downside fixed connection double-layer pressing plate 9 of subassembly 8 is pressed to the handle. The plug-in unit extrusion device 5 comprises a supporting frame 51, a guide rail 52, a transverse guide rod 53, a second handle pressing component 54, a first extrusion component 55, a third handle pressing component 56 and a second extrusion component 57, wherein the supporting frame 51 is arranged on the base 1 and positioned on the lower side of the workbench 2, the guide rail 52 is arranged on the inner side of the supporting frame 51, the transverse guide rod 53 is arranged on the supporting frame 51, the first extrusion component 55 and the second extrusion component 57 are both arranged on the guide rail 52 in a sliding mode, and the first extrusion component 55 and the second extrusion component 57 are arranged on the transverse guide rod 53 in a penetrating mode; the second handle pressing assembly 57 is fixedly arranged on the left side of the supporting frame 51, the third handle pressing assembly 56 is fixedly arranged on the right side of the supporting frame 51, the first squeezing assembly 55 is controlled by the second handle pressing assembly 54 to horizontally slide, and the second squeezing assembly 57 is controlled by the third handle pressing assembly 56 to horizontally slide.
In this embodiment, the first squeezing assembly 55 and the second squeezing assembly 57 have the same structure, and each of the first squeezing assembly 55 and the second squeezing assembly 57 includes a pushing block 551, a plurality of sliding squeezing pieces 552, and a limiting plate 553, the pushing block 551 is connected to the second handle pressing assembly 54 or the third handle pressing assembly 56, the sliding squeezing pieces 552 are mounted on the guide rail 52 through a sliding seat 554, the limiting plate 553 is disposed above the guide rail 52, and the limiting plate 553 is provided with a penetrating groove 5531 for the sliding seat 554 to pass through. Two rows of first guide posts 5511 which are arranged in parallel are arranged on the pushing block 551, and elastic shock absorption blocks 5512 are arranged at two ends of the pushing block 551. Two rows of second guide posts 5521 are arranged between the sliding pressing piece 552 and the limit plate 553 in parallel.
In this embodiment, the limiting support plate 3 includes a substrate 31 and a plurality of limiting blocks 32, two limiting blocks 32 are respectively disposed at each of four corners of the substrate 31, and a first pressing sheet moving groove 312 for taking and placing the groove 311 of the carrying tray 4 and for moving the sliding pressing sheet 552 is disposed at two sides of the substrate 31.
In this embodiment, the surface of the limiting block 32 contacting with the carrying disc 4 is an inclined surface.
In this embodiment, the carrying tray 4 is provided with a Type-C material placing groove 41, a first circuit board placing groove 42, a first circuit board placing groove 43, a second pressing sheet moving groove 44, a third pressing sheet moving groove 45 and a second circuit board placing groove 46, the first circuit board placing groove 42 and the second circuit board placing groove 46 are arranged in parallel, the circuit board placing grooves 43 are arranged at the outer contours of the first circuit board placing groove 42 and the second circuit board placing groove 46, the Type-C material placing groove 41 comprises a plurality of grooves which are respectively arranged at two sides of the first circuit board placing groove 42, and the third pressing sheet moving groove 45 and the second circuit board placing groove 46 are oppositely arranged at the outer side of the Type-C material placing groove 41.
In this embodiment, a vertical guide rod 10 is disposed between the vertical support frame 6 and the base 1, and a double-layer pressing plate 9 is disposed outside the vertical guide rod 10.
During operation, firstly, the carrying disc 4 is placed on the limiting supporting plate 3 for limiting and fixing, then a PCB circuit board to be processed is placed on the first circuit board placing groove 42 and the second circuit board placing groove 46, then the Type-C material part 100 is placed in the Type-C material part placing groove 41, the first handle pressing component 8 is utilized to drive the double-layer pressing plate 9 to press down, the Type-C material part and the PCB circuit board to be processed are pressed from the upper side, then the second handle pressing component 54 and the third handle pressing component 56 are utilized to control the sliding extrusion piece 552 to move respectively, the Type-C material part 100 is extruded to be plugged on the PCB circuit board, after the pressing is completed, the second handle pressing component 54 and the third handle pressing component 56 are reset, the sliding extrusion piece 552 is controlled to be far away from the Type-C material part 100, then the PCB circuit board in the first circuit board placing groove 42 is taken out, the PCB circuit board on the second circuit board placing groove 46 is replaced in the first circuit board placing groove 42, and plugging operation is carried out again.
The examples are given solely for the purpose of illustration and are not intended to limit the scope of the invention, which is to be construed as limitations of the invention as defined in the appended claims when read in light of the above teachings.

Claims (9)

1. The utility model provides a Type-C interface plug-in components tool which characterized in that: including base (1), set up workstation (2) on base (1), the upside of workstation (2) is equipped with spacing backup pad (3) and carries dish (4), carry the upside that dish (4) set up in spacing backup pad (3), the below that lies in workstation (2) on base (1) sets up plug-in components extrusion device (5), and the side that lies in workstation (2) on base (1) is equipped with vertical support frame (6), and installation handle presses component (8) on vertical support frame (6), and downside fixed connection double layer pressing plate (9) of component (8) are pressed to the handle.
2. The Type-C interface plug-in component jig of claim 1, characterized in that: the plug-in unit extrusion device (5) comprises a supporting frame (51), a guide rail (52), a transverse guide rod (53), a handle pressing component II (54), an extrusion component I (55), a handle pressing component III (56) and an extrusion component II (57), wherein the supporting frame (51) is arranged on the base (1) and is positioned on the lower side of the workbench (2), the guide rail (52) is arranged on the inner side of the supporting frame (51), the transverse guide rod (53) is arranged on the supporting frame (51), the extrusion component I (55) and the extrusion component II (57) are both arranged on the guide rail (52) in a sliding mode, and the extrusion component I (55) and the extrusion component II (57) are arranged on the transverse guide rod (53) in a penetrating mode; the second handle pressing component (54) and the third handle pressing component (56) are fixedly arranged on two sides of the supporting frame (51), the first handle pressing component (54) controls the first squeezing component (55) to horizontally slide, and the third handle pressing component (56) controls the second squeezing component (57) to horizontally slide.
3. The Type-C interface plug-in fixture of claim 2, wherein: the first extrusion assembly (55) and the second extrusion assembly (57) are identical in structure and comprise a pushing block (551), a plurality of sliding extrusion pieces (552) and limiting plates (553), the pushing block (551) is connected with the second handle pressing assembly (54) or the third handle pressing assembly (56), the sliding extrusion pieces (552) are installed on the guide rail (52) through sliding seats (554), the limiting plates (553) are arranged above the guide rail (52), and the limiting plates (553) are provided with penetrating grooves (5531) for the sliding seats (554) to penetrate through.
4. The Type-C interface plug-in component jig of claim 3, characterized in that: two rows of first guide posts (5511) arranged in parallel are arranged on the pushing block (551), and elastic damping blocks (5512) are arranged at two ends of the pushing block (551).
5. The Type-C interface plug-in component jig of claim 4, characterized in that: two rows of second guide posts (5521) which are arranged in parallel are arranged between the sliding extrusion piece (552) and the limiting plate (553).
6. The Type-C interface plug-in fixture of claim 1, wherein: the limiting support plate (3) comprises a base plate (31) and a plurality of limiting blocks (32), two limiting blocks (32) are arranged at four corners of the base plate (31) respectively, and grooves (311) for taking and placing the carrying disc (4) and first extrusion piece moving grooves (312) for moving the sliding extrusion pieces (552) are formed in two sides of the base plate (31).
7. The Type-C interface plug-in fixture of claim 6, wherein: the surface of the limiting block (32) contacting with the carrying disc (4) is an inclined surface.
8. The Type-C interface plug-in component jig of claim 1, characterized in that: the novel material loading tray is characterized in that a Type-C material part placing groove (41), a first circuit board placing groove (42), a first circuit board taking and placing groove (43), a second pressing piece moving groove (44), a third pressing piece moving groove (45) and a second circuit board placing groove (46) are formed in the carrying tray (4), the first circuit board placing groove (42) and the second circuit board placing groove (46) are arranged in parallel, the circuit board taking and placing grooves (43) are arranged at the outer contours of the first circuit board placing groove (42), the Type-C material part placing groove (41) comprises a plurality of pressing piece moving grooves, the pressing piece moving grooves (45) and the second circuit board placing grooves (46) are arranged on the outer sides of the Type-C material part placing groove (41) relatively.
9. The Type-C interface plug-in fixture of claim 1, wherein: a vertical guide rod (10) is arranged between the vertical support frame (6) and the base (1), and the double-layer pressing plate (9) penetrates through the outer side of the vertical guide rod (10).
CN202222915055.8U 2022-10-31 2022-10-31 Type-C interface plug-in components tool Active CN218851064U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222915055.8U CN218851064U (en) 2022-10-31 2022-10-31 Type-C interface plug-in components tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222915055.8U CN218851064U (en) 2022-10-31 2022-10-31 Type-C interface plug-in components tool

Publications (1)

Publication Number Publication Date
CN218851064U true CN218851064U (en) 2023-04-11

Family

ID=87294473

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222915055.8U Active CN218851064U (en) 2022-10-31 2022-10-31 Type-C interface plug-in components tool

Country Status (1)

Country Link
CN (1) CN218851064U (en)

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