A memory stick connector quick loading device
By designing a fast loading device for memory stick connectors, mechanized means are used to achieve automatic transportation, material distribution, transfer and loading of connectors, which solves the problem of low efficiency of manual loading in the existing technology, improves loading efficiency and reduces labor intensity.
Patent Information
- Application Number
- CN202210222773.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-09
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2042-03-09
AI Technical Summary
In the prior art, the process of installing the memory stick connector relies on manual operation, which is inefficient and labor-intensive.
A memory stick connector rapid loading device is designed, which includes a feeding mechanism, a connector dividing mechanism, a conversion mechanism, a storage bin, a translational movement mechanism, a gripping mechanism and a loading mechanism. The device realizes the transportation, dividing, transfer and loading of connectors through mechanized means.
The automatic loading of memory stick connectors is realized, which improves efficiency, reduces labor intensity, and avoids connector accumulation and multiple connector grabbing errors.
Smart Images

Figure CN114655505B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to connector processing equipment, in particular to a memory stick connector rapid loading device. Background Art
[0002] A memory connector, also known as a memory slot, is a slot on a motherboard that inserts memory modules. The type and capacity of memory supported by the motherboard are determined by the memory connector. After production, memory connectors need to be mounted on a tray. Existing technology relies on manual rotation, which is inefficient and labor-intensive. Summary of the Invention
[0003] In view of the deficiencies in the prior art, the present invention provides a memory stick connector quick loading device.
[0004] The technical solution of the present invention is: a memory stick connector rapid loading device, including a feeding mechanism, a connector dividing mechanism, a connector conversion mechanism, a connector storage bin, a translational movement mechanism, a connector grabbing mechanism, and a loading mechanism. The connector dividing structure is arranged at the end of the feeding mechanism, and the connector conversion mechanism is arranged on one side of the dividing mechanism. The connector separated by the connector dividing mechanism is flipped to the connector storage bin by the connector conversion mechanism, and the connector grabbing mechanism uses the translational movement mechanism to transfer the connector on the connector storage bin to the loading mechanism to realize the loading of the connector.
[0005] Preferably, the feeding mechanism includes a feeding bracket, a feeding motor is provided on the feeding bracket, and a driving roller and a driven roller are provided at both ends of the feeding bracket. A feeding belt is provided between the driving roller and the driven roller, and the feeding motor is connected to the driving roller through a transmission belt.
[0006] Preferably, the material dividing mechanism includes a material dividing bracket and a material dividing assembly symmetrically arranged on the material dividing bracket, and a connector support plate is arranged between the two material dividing assemblies.
[0007] Preferably, the material dividing assembly includes a material dividing cylinder and a material dividing stop rod. A sliding rail is provided on the material dividing bracket, and a material dividing slide is slidably connected to the sliding rail. A material dividing slide is provided on the material dividing mounting seat. A material dividing cylinder is provided on one side of the material dividing mounting seat. The material dividing cylinder is connected to the material dividing stop rod, and the material dividing stop rod passes through the material dividing mounting seat and extends to the upper end of the connector support plate.
[0008] Preferably, the connector conversion mechanism includes a lateral movement mechanism and a flip assembly provided on the lateral movement mechanism. A connector storage bin for cooperating with the flip assembly is further provided on one side of the lateral movement mechanism.
[0009] Preferably, the lateral moving mechanism includes a lateral moving cylinder, a lateral moving slide, and a support frame. The lateral moving cylinder is arranged on the base plate, and the lateral moving cylinder is also connected to the lateral moving slide. The lateral moving slide is slidably connected to the slide rail arranged on the base plate through a slide seat. The lateral moving slide is provided with a support frame, and the support frame is provided with a flipping assembly.
[0010] Preferably, the flipping assembly includes a flipping cylinder, a flipping frame, and a clamping assembly. The flipping cylinder is arranged on the support frame and connected to one end of the flipping frame. The clamping assembly is arranged on the other end of the flipping frame.
[0011] Preferably, the clamping assembly includes a grabbing cylinder, and clamping claws for clamping the connector are provided on both ends of the grabbing cylinder.
[0012] Preferably, the connector storage bin is arranged on the bottom plate through a storage bin bracket, and a clamping assembly is provided at one end of the connector storage bin, and a baffle for cooperating with the clamping assembly is provided at the other end of the connector storage bin.
[0013] Preferably, the clamping assembly includes a connector clamping cylinder and a connector clamping claw arranged on the connector clamping cylinder, and the connector clamping cylinder is arranged at the lower end of the connector storage bin.
[0014] Preferably, the translational movement mechanism includes a first moving assembly and a second moving assembly, the second moving assembly is arranged on the first moving assembly, the first moving assembly includes a crossbeam, a first moving motor, and a first moving slide, the first moving motor is arranged at one end of the crossbeam, and the first moving motor is transmission-connected to a first moving screw rod arranged on the crossbeam, and the first moving slide is connected to the first moving screw rod through a screw rod seat;
[0015] The second movable component includes a vertical beam, a second movable motor, and a second movable slide. The vertical beam is arranged on the first movable slide, and a second movable motor is arranged at one end of the vertical beam. The second movable motor is transmission-connected to the second movable screw rod arranged on the vertical beam, and the second movable slide is connected to the second movable screw rod through a screw rod seat.
[0016] Preferably, the connector grabbing mechanism includes a first grabbing motor, a first mounting plate, and a first movable plate, the first mounting plate being arranged on the second movable slide plate through a connecting plate, the first grabbing motor being arranged on the first mounting plate, and the motor shaft of the first grabbing motor extending downward and being connected to the first movable plate through a motor shaft seat, and the first movable plate being slidably connected to a slide rail arranged at the lower end of the first mounting plate through a plurality of slide seats;
[0017] A plurality of first movable bars are provided at the lower end of the first movable plate, and a movable groove is provided at the central position of each first movable bar, and the first movable bar is movably connected to the first movable plate through the movable groove and the connecting bolt;
[0018] Both ends of each first movable bar are slidably connected to the slide rail provided at the lower end of the first mounting plate through corresponding slide seats; and corresponding first clamping claws are also provided at both ends of each first movable bar;
[0019] The lower end of the first movable plate is also connected to the clamping cylinder through a clamping connecting seat. Corresponding clamping seats are also provided at both ends of the clamping cylinder. Each of the clamping seats is provided with a plurality of corresponding clamping plates; and the clamping plates pass through the through holes of the first clamping claws.
[0020] Preferably, the tray loading mechanism includes a fixed plate, a tray separating mechanism provided on the fixed plate, and a tray conveying mechanism cooperating with the tray separating mechanism.
[0021] Preferably, the plate separating mechanism includes a plate storage bin, a discharging mechanism arranged at the lower end of the plate storage bin, and a plate clamping mechanism arranged at both sides of the plate storage bin, and the plate storage bin is arranged on a fixed plate.
[0022] Preferably, the plate clamping mechanism includes a plate clamping seat and a plate clamping cylinder connected to the plate clamping seat, and the plate clamping cylinder is arranged on the side wall of the plate storage bin.
[0023] Preferably, the discharge mechanism includes a discharge cylinder and a plate support seat connected to the discharge cylinder, the discharge cylinder is arranged at the lower end of the fixed plate, and the discharge cylinder passes upward through the fixed plate and is connected to the plate support seat, and the plate support seat is located at the lower end of the plate.
[0024] Preferably, the plate conveying mechanism includes a plate conveying straight rail motor and a plate conveying plate. The plate conveying straight rail motor is connected to the conveying guide rail, and the plate conveying plate is arranged on the conveying guide rail.
[0025] Preferably, side plates are symmetrically provided on the fixed plate at the other end of the plate storage bin, and corresponding material blocking components are provided on the two side plates.
[0026] Preferably, the material blocking assembly includes a material blocking cylinder and a material blocking plate, wherein one of the material blocking cylinders is horizontally arranged on two side plates, and the material blocking cylinder is connected to the material blocking plate arranged on one side of the side plate, and the material blocking plate is also slidably connected to the slide rails arranged on the two side plates.
[0027] Another material stopping cylinder of the material stopping assembly is arranged on the fixed plate. The material stopping cylinder is arranged vertically and connected to the material stopping plate on one side of the side plate.
[0028] The beneficial effects of the present invention are:
[0029] 1. The present invention can realize the actions of conveying, dividing, transferring, grabbing, and loading connectors;
[0030] 2. The present invention realizes the separation of connectors through the separation mechanism, thereby preventing multiple connectors from piling up together and causing multiple connectors to be grabbed at one time;
[0031] 3. The present invention utilizes a connector conversion mechanism to transfer the connector after material separation to the corresponding position, thereby facilitating the subsequent robot to grab it to the corresponding station;
[0032] 4. The plate loading mechanism of the present invention can realize automatic distribution and transportation of plates, thereby facilitating the subsequent grabbing mechanism to grab the connector onto the plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 It is a structural schematic diagram of the device of the present invention;
[0034] Figure 2 A schematic diagram of the mechanism of another aspect of the present invention;
[0035] Figure 3 Schematic diagram of the structure of the feeding mechanism of the present invention;
[0036] Figure 4 It is a structural schematic diagram of the connector material distribution mechanism and the connector conversion mechanism of the present invention;
[0037] Figure 5 This is a structural diagram of the connector material distribution mechanism of the present invention;
[0038] Figure 6 It is a structural schematic diagram of the connector conversion mechanism of the present invention;
[0039] Figure 7 It is a structural schematic diagram of the translation movement mechanism of the present invention;
[0040] Figure 8 This is a structural diagram of the connector material grabbing mechanism of the present invention;
[0041] Figure 9 This is another structural diagram of the connector grabbing mechanism of the present invention;
[0042] Figure 10 This is a schematic diagram of the hidden structure of the connector gripping mechanism of the present invention. Figure 1 ;
[0043] Figure 11 This is a schematic diagram of the hidden structure of the connector gripping mechanism of the present invention. Figure 2 ;
[0044] Figure 12 This is a schematic diagram of the hidden structure of the connector gripping mechanism of the present invention. Figure 3 ;
[0045] Figure 13 Schematic diagram of the structure of the first moving bar of the present invention;
[0046] Figure 14 It is a structural schematic diagram of the tray loading mechanism of the present invention;
[0047] Figure 15 Another structural schematic diagram of the tray loading mechanism of the present invention;
[0048] Figure 16 is a structural schematic diagram of the plate conveying mechanism of the present invention;
[0049] In the figure, 1-feeding mechanism, 2-connector distributing mechanism, 3-connector converting mechanism, 4-connector storage bin, 5-translational movement mechanism, 6-connector grabbing mechanism, 7-loading mechanism;
[0050] 11-feeding bracket, 12-feeding motor, 13-feeding belt;
[0051] 21- material distribution bracket, 22- connector support plate, 23- material distribution cylinder, 24- material distribution stop rod, 25- material distribution slide plate, 26- material distribution mounting base;
[0052] 31- lateral movement cylinder, 32- lateral movement slide, 33- support frame, 34- bottom plate, 35- turning cylinder, 36- turning frame, 37- grabbing cylinder, 38- clamping claw;
[0053] 41-storage bin bracket, 42-baffle, 43-connector clamping cylinder, 44-connector clamping claw;
[0054] 51- horizontal beam, 52- first moving motor, 53- first moving slide, 54- vertical beam, 55- second moving motor, 56- second moving slide;
[0055] 61-first grabbing motor, 62-first mounting plate, 63-first moving plate, 64-first moving bar, 65-moving slot, 66-first clamping claw; 67-clamping cylinder, 68-clamping seat, 69-clamping sheet;
[0056] 71-fixed plate, 72-plate storage bin, 73-plate clamping seat, 74-plate clamping cylinder, 75-discharging cylinder, 76-plate supporting seat, 77-plate conveying straight rail motor, 78-plate conveying plate, 79-conveying guide rail. DETAILED DESCRIPTION
[0057] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings:
[0058] like Figure 1-2 As shown, this embodiment provides a memory stick connector rapid loading device, comprising a feeding mechanism 1, a connector sorting mechanism 2, a connector conversion mechanism 3, a connector storage bin 4, a translation mechanism 5, a connector grabbing mechanism 6, and a loading mechanism 7. The connector sorting mechanism 2 is disposed at the end of the feeding mechanism 1, thereby conveying the connectors on the feeding mechanism 1 to the connector sorting mechanism 2. The connector conversion mechanism 3 is disposed on one side of the connector sorting mechanism 2, and the connectors separated by the connector sorting mechanism 2 are flipped and transferred to the connector storage bin 4 by the connector conversion mechanism 3. The connector grabbing mechanism 6 uses the translation mechanism 5 to transfer the connectors on the connector storage bin 4 to the loading mechanism 7, thereby realizing the loading of the connectors.
[0059] As preferred in this embodiment, Figure 3 As shown, the feeding mechanism 1 includes a feeding bracket 11, a feeding motor 12 is provided on the feeding bracket 11, and a driving roller and a driven roller are provided at both ends of the feeding bracket 11. A feeding belt 13 is provided between the driving roller and the driven roller, and the feeding motor 12 is connected to the driving roller through a transmission belt, so that the connector is transported by the feeding belt 13.
[0060] As preferred in this embodiment, Figure 4 and 5 As shown, the connector dividing mechanism 2 includes a dividing bracket 21 and dividing components symmetrically arranged on the dividing bracket 21. A connector support plate 22 is arranged between the two dividing components, and the connector is transported to the connector support plate 22 through the feeding belt 13.
[0061] As preferred in this embodiment, Figure 4 and 5 As shown, the material dividing assembly includes a material dividing cylinder 23 and a material dividing stop rod 24. A slide rail is provided on the material dividing bracket 21, and a material dividing slide plate 25 is slidably connected to the slide rail. A material dividing slide plate 25 is provided on the material dividing mounting seat 26. A material dividing cylinder 23 is provided on one side of the material dividing mounting seat 26. The material dividing cylinder 23 is connected to the material dividing stop rod 24. The material dividing stop rod 24 passes through the material dividing mounting seat 26 and extends to the upper end of the connector support plate 22. The corresponding material dividing stop rod 24 is controlled to extend through the two material dividing cylinders 23, thereby blocking the connector on the connector support plate 22, thereby preventing it from continuing to move forward.
[0062] As preferred in this embodiment, Figure 4 and 6 As shown, the connector conversion mechanism 3 includes a lateral movement mechanism and a flip assembly arranged on the lateral movement mechanism. A connector storage bin 4 for cooperating with the flip assembly is also provided on one side of the lateral movement mechanism.
[0063] As preferred in this embodiment, Figure 4 and 6 As shown, the lateral movement mechanism includes a lateral movement cylinder 31, a lateral movement slide 32, and a support frame 33. The lateral movement cylinder 31 is arranged on a base plate 34, and the lateral movement cylinder 31 is also connected to the lateral movement slide 32. The lateral movement slide 32 is slidably connected to a slide rail arranged on the base plate 34 through a slide seat. A support frame 33 is arranged on the lateral movement slide 32, and a flip assembly is arranged on the support frame 33.
[0064] As preferred in this embodiment, Figure 4 and 6 As shown, the flipping assembly includes a flipping cylinder 35, a flipping frame 36, and a clamping assembly. The flipping cylinder 35 is arranged on the support frame 33, and the flipping cylinder 35 is connected to one end of the flipping frame 36. The clamping assembly is arranged on the other end of the flipping frame 36.
[0065] As preferred in this embodiment, Figure 4 and 6 As shown, the clamping assembly includes a grabbing cylinder 37 , and clamping claws 38 for clamping the connector are provided on both ends of the grabbing cylinder 37 .
[0066] As preferred in this embodiment, Figure 4 and 6 As shown, the connector storage bin 4 is set on the base plate 34 through the storage bin bracket 41, and one end of the connector storage bin 4 is provided with a clamping assembly, and the other end of the connector storage bin 4 is provided with a baffle 42 for cooperating with the clamping assembly.
[0067] As preferred in this embodiment, Figure 4 and 6 As shown, the clamping assembly includes a connector clamping cylinder 43 and a connector clamping claw 44 arranged on the connector clamping cylinder 43. The connector clamping cylinder 43 is arranged at the lower end of the connector storage bin 4.
[0068] As preferred in this embodiment, Figure 7As shown, the translational movement mechanism 5 includes a first moving component and a second moving component, the second moving component is arranged on the first moving component, the first moving component includes a beam 51, a first moving motor 52, and a first moving slide 53, the first moving motor 52 is arranged at one end of the beam 51, and the first moving motor 52 is transmission-connected to the first moving screw arranged on the beam 51, and the first moving slide 53 is connected to the first moving screw through a screw seat.
[0069] The second movable component includes a vertical beam 54, a second movable motor 55, and a second movable slide 56. The vertical beam 54 is arranged on the first movable slide 53, and a second movable motor 55 is arranged at one end of the vertical beam 54. The second movable motor 55 is transmission-connected to the second movable screw arranged on the vertical beam 54, and the second movable slide 56 is connected to the second movable screw through a screw seat.
[0070] As preferred in this embodiment, Figure 8-12 As shown, the connector grabbing mechanism 6 includes a first grabbing motor 61, a first mounting plate 62, and a first movable plate 63. The first mounting plate 62 is arranged on the second movable slide plate 56 through a connecting plate. The first grabbing motor 61 is arranged on the first mounting plate 62, and the motor shaft of the first grabbing motor 61 extends downward and is connected to the first movable plate 63 through a motor shaft seat. The first movable plate 63 is slidably connected to the slide rail arranged at the lower end of the first mounting plate 62 through a plurality of slide seats.
[0071] The lower end of the first movable plate 63 is provided with a plurality of first movable bars 64, such as Figure 13 As shown, a moving groove 65 is provided at the central position of each of the first moving bars 64, and the first moving bars 64 are movably connected to the first moving plate 63 through the moving groove 65 and the connecting bolts;
[0072] Both ends of each first movable bar 64 are slidably connected to the slide rail provided at the lower end of the first mounting plate 62 through corresponding slide seats; and corresponding first clamping claws 66 are also provided at both ends of each first movable bar 64;
[0073] The lower end of the first movable plate 63 is also connected to the clamping cylinder 67 through a clamping connecting seat. Corresponding clamping seats 68 are also provided at both ends of the clamping cylinder 67. Each of the clamping seats 68 is provided with a plurality of corresponding clamping plates 69; and the clamping plates 69 pass through the through holes of the first clamping claws 66.
[0074] As preferred in this embodiment, Figure 14-15As shown, the tray loading mechanism 7 includes a fixed plate 71, a tray separating mechanism provided on the fixed plate 71, and a tray conveying mechanism coordinated with the tray separating mechanism.
[0075] As preferred in this embodiment, Figure 14-15 As shown, the plate separating mechanism includes a plate storage bin 72 , a discharging mechanism arranged at the lower end of the plate storage bin 72 , and a plate clamping mechanism arranged on both sides of the plate storage bin 72 . The plate storage bin 72 is arranged on a fixed plate 71 .
[0076] As preferred in this embodiment, Figure 14-15 As shown, the plate clamping mechanism includes a plate clamping seat 73 and a plate clamping cylinder 74 connected to the plate clamping seat 73 , and the plate clamping cylinder 74 is arranged on the side wall of the plate storage bin 72 .
[0077] As preferred in this embodiment, Figure 14-15 As shown, the discharge mechanism includes a discharge cylinder 75 and a plate support seat 76 connected to the discharge cylinder 75. The discharge cylinder 75 is arranged at the lower end of the fixed plate 71, and the discharge cylinder 75 passes upward through the fixed plate 71 and is connected to the plate support seat 76. The plate support seat 76 is located at the lower end of the plate.
[0078] As preferred in this embodiment, Figure 16 As shown, the plate conveying mechanism includes a plate conveying straight rail motor 77 and a plate conveying plate 78 . The plate conveying straight rail motor 77 is connected to a conveying guide rail 79 , and the plate conveying plate 78 is disposed on the conveying guide rail 79 .
[0079] Side plates are symmetrically provided on the fixed plate 71 at the other end of the plate storage bin 72, and corresponding material blocking components are provided on the two side plates.
[0080] As a preferred embodiment of this embodiment, the material stopper assembly includes a material stopper cylinder and a material stopper plate, wherein one of the material stopper cylinders is horizontally arranged on the two side plates and connected to the material stopper plate arranged on one side of the side plates, and the material stopper plate is also slidably connected to the slide rails arranged on the two side plates. The material stopper cylinder of the other material stopper assembly is arranged on the fixed plate 71, and the material stopper cylinder is vertically arranged and connected to the material stopper plate on one side of the side plates.
[0081] The above embodiments and descriptions are only for explaining the principles and best embodiments of the present invention. Without departing from the spirit and scope of the present invention, the present invention may be subject to various changes and improvements, which shall fall within the scope of the invention to be protected.
Claims
1. A memory stick connector quick loading device, characterized by: The invention comprises a feeding mechanism (1), a connector distributing mechanism (2), a connector conversion mechanism (3), a connector storage bin (4), a translation mechanism (5), a connector grabbing mechanism (6), and a loading mechanism (7). The connector distributing mechanism (2) is arranged at the end of the feeding mechanism (1), and the connector conversion mechanism (3) is arranged on one side of the connector distributing mechanism (2). The connectors separated by the connector distributing mechanism (2) are flipped and transferred to the connector storage bin (4) by the connector conversion mechanism (3). The connector grabbing mechanism (6) transfers the connectors on the connector storage bin (4) to the loading mechanism (7) by using the translation mechanism (5). The connector distributing mechanism (2) comprises a distributing bracket (21) and a distributing assembly symmetrically arranged on the distributing bracket (21); a connector supporting plate (22) is arranged between the two distributing assemblies, and the connector is transported to the connector supporting plate (22) via a feeding belt (13); The connector conversion mechanism (3) includes a transverse movement mechanism and a flip assembly arranged on the transverse movement mechanism. A connector storage bin (4) for cooperating with the flip assembly is also arranged on one side of the transverse movement mechanism. The connector grabbing mechanism (6) includes a first grabbing motor (61), a first mounting plate (62), and a first movable plate (63); the first mounting plate (62) is arranged on the second movable slide plate (56) through a connecting plate; the first grabbing motor (61) is arranged on the first mounting plate (62); and the motor shaft of the first grabbing motor (61) extends downward and is connected to the first movable plate (63) through a motor shaft seat; the first movable plate (63) is slidably connected to a slide rail arranged at the lower end of the first mounting plate (62) through a plurality of slide seats; A plurality of first moving bars (64) are provided at the lower end of the first moving plate (63), a moving groove (65) is provided at the central position of each of the first moving bars (64), and the first moving bars (64) are movably connected to the first moving plate (63) through the moving groove (65) and the connecting bolts; Both ends of each first movable bar (64) are slidably connected to a slide rail provided at the lower end of the first mounting plate (62) through corresponding slide seats; and corresponding first clamping claws (66) are also provided at both ends of each first movable bar (64); The lower end of the first movable plate (63) is also connected to the clamping cylinder (67) through a clamping connection seat, and corresponding clamping seats (68) are also provided at both ends of the clamping cylinder (67), and each of the clamping seats (68) is provided with a plurality of corresponding clamping pieces (69); and the clamping pieces (69) pass through the through hole of the first clamping claw (66); The tray loading mechanism (7) comprises a fixed plate (71), a tray separating mechanism arranged on the fixed plate (71), and a tray conveying mechanism coordinated with the tray separating mechanism; The plate separation mechanism includes a plate storage bin (72), a material discharge mechanism arranged at the lower end of the plate storage bin (72), and a plate clamping mechanism arranged at both sides of the plate storage bin (72). The plate storage bin (72) is arranged on a fixed plate (71). The transverse movement mechanism comprises a transverse movement cylinder (31), a transverse movement slide (32), and a support frame (33); the transverse movement cylinder (31) is arranged on a base plate (34), and the transverse movement cylinder (31) is also connected to the transverse movement slide (32); the transverse movement slide (32) is slidably connected to a slide rail arranged on the base plate (34) through a slide seat; the transverse movement slide (32) is provided with a support frame (33); and the support frame (33) is provided with a flip assembly; The turning assembly comprises a turning cylinder (35), a turning frame (36), and a clamping assembly. The turning cylinder (35) is arranged on the support frame (33), and the turning cylinder (35) is connected to one end of the turning frame (36). The clamping assembly is arranged on the other end of the turning frame (36). The clamping assembly comprises a material grabbing cylinder (37), and both ends of the material grabbing cylinder (37) are provided with material clamping claws (38) for clamping the connector; The connector storage bin (4) is arranged on the bottom plate (34) via a storage bin bracket (41), and a clamping assembly is provided at one end of the connector storage bin (4), and a baffle (42) for cooperating with the clamping assembly is provided at the other end of the connector storage bin (4); The clamping assembly comprises a connector clamping cylinder (43) and a connector clamping claw (44) arranged on the connector clamping cylinder (43), and the connector clamping cylinder (43) is arranged at the lower end of the connector storage bin (4).
2. The memory stick connector quick loading device according to claim 1, characterized in that: The material dividing assembly includes a material dividing cylinder (23) and a material dividing stop rod (24). A slide rail is provided on the material dividing bracket (21). A material dividing slide plate (25) is slidably connected to the slide rail. A material dividing slide plate (25) is provided on the material dividing slide plate (25). A material dividing cylinder (23) is provided on one side of the material dividing mount (26). The material dividing cylinder (23) is connected to the material dividing stop rod (24). The material dividing stop rod (24) passes through the material dividing mount (26) and extends to the upper end of the connector support plate (22). The corresponding material dividing stop rod (24) is controlled to extend through the two material dividing cylinders (23), thereby blocking the connector on the connector support plate (22) and preventing it from continuing to move forward.
3. The memory stick connector quick loading device according to claim 1, characterized in that: The translational movement mechanism (5) includes a first moving assembly and a second moving assembly, the second moving assembly is arranged on the first moving assembly, the first moving assembly includes a crossbeam (51), a first moving motor (52), and a first moving slide plate (53), the first moving motor (52) is arranged at one end of the crossbeam (51), and the first moving motor (52) is transmission-connected to a first moving screw rod arranged on the crossbeam (51), and the first moving slide plate (53) is connected to the first moving screw rod through a screw rod seat; The second moving assembly includes a vertical beam (54), a second moving motor (55), and a second moving slide (56). The vertical beam (54) is arranged on the first moving slide (53), and a second moving motor (55) is arranged at one end of the vertical beam (54). The second moving motor (55) is transmission-connected to a second moving screw rod arranged on the vertical beam (54), and the second moving slide (56) is connected to the second moving screw rod through a screw rod seat.
4. The memory stick connector quick loading device according to claim 1, characterized in that: The plate clamping mechanism comprises a plate clamping seat (73) and a plate clamping cylinder (74) connected to the plate clamping seat (73); the plate clamping cylinder (74) is arranged on the side wall of the plate storage bin (72).
5. The memory stick connector quick loading device according to claim 1, characterized in that: The discharging mechanism includes a discharging cylinder (75) and a plate support seat (76) connected to the discharging cylinder (75). The discharging cylinder (75) is arranged at the lower end of the fixed plate (71), and the discharging cylinder (75) passes through the fixed plate (71) upward and is connected to the plate support seat (76). The plate support seat (76) is located at the lower end of the plate.
6. The memory stick connector quick loading device according to claim 1, characterized in that: The plate conveying mechanism comprises a plate conveying straight rail motor (77) and a plate conveying plate (78). The plate conveying straight rail motor (77) is connected to a conveying guide rail (79), and the plate conveying plate (78) is arranged on the conveying guide rail (79).
7. The memory stick connector quick loading device according to claim 1, characterized in that: Side plates are symmetrically arranged on the fixed plate (71) at the other end of the plate storage bin (72), and corresponding material blocking components are also arranged on the two side plates.