Carrier positioning module with B2B connecting plate and lens in different directions
By designing a vehicle module for large carrier board assembly, small carrier board assembly, large flip cover assembly and large snap assembly, the problem of the camera matching with the two B2B connectors is solved, and stable positioning and electrical signal testing are achieved.
Patent Information
- Application Number
- CN202422020805.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-08-20
AI Technical Summary
There is a lack of a vehicle module in the prior art that can achieve the opposite coordination between the camera and the two B2B connectors, resulting in poor positioning and inability to meet production needs.
A vehicle module including a large carrier plate assembly, a small carrier plate assembly, a large flip assembly and a large snap assembly were designed. Through the limit and support structure of these components, the camera and the two B2B connectors are realized indirectly, and the electrical signals are transmitted through the wiring elements for performance testing.
It realizes stable positioning of the camera and the two B2B connectors in an outward direction, meets production needs, and can effectively conduct electrical signal testing.
Smart Images

Figure CN223207182U_ABST
Abstract
Description
Technical Field
[0001] The utility model is applied to the field of product carriers, and particularly relates to a carrier positioning module with a B2B connecting plate and a lens in different directions. Background Art
[0002] Current mobile phone cameras use B2B connectors to output electrical signals. During the production process, each camera needs to be loaded and then the B2B connector in the product needs to be positioned. The B2B connector works with the lower needle module to export the electrical signal to the external device, thereby testing the performance of the product. However, the common positioning and loading method is to position the product in which two B2B connectors are matched with the lens in the same direction. There is no positioning carrier that can load and position a camera in the case where two B2B connectors are matched with different directions. Based on the above problems, if a carrier module can be designed so that the camera can be matched with two B2B connectors in different directions, and this carrier module can have a higher positioning method for the B2B connector while the B2B connector and the camera module are in different directions, and can realize a carrier module that meets production needs, then the above problems can be well solved. Utility Model Content
[0003] The technical problem to be solved by the present invention is to overcome the shortcomings of the existing technology and provide a carrier module in which a camera can cooperate with two B2B connectors in different directions. The carrier module can have a better positioning method for the B2B connector while the B2B connector and the camera module are in different directions, and can realize a carrier positioning module with different directions of the B2B connecting plate and the lens to meet production needs.
[0004] The technical solution adopted by the present invention is: the present invention includes a large carrier plate assembly, a small carrier plate assembly, a large flip cover assembly and a large buckle assembly, the large flip cover assembly and the large buckle assembly are respectively fixed at both ends of the large carrier plate assembly, the large buckle assembly is limitedly matched with the large flip cover assembly, the small carrier plate assembly is limitedly matched with the large carrier plate assembly, a product is arranged between the large carrier plate assembly and the large buckle assembly, the two ends of the product are respectively limitedly matched with the large carrier plate assembly and the large buckle assembly, a wiring element is arranged on the product, and the wiring element is matched with the small carrier plate assembly. It can be seen that the large carrier board assembly serves to limit and support the large flip cover assembly, the product and the large buckle assembly. The large flip cover assembly rotates to press the product, thereby limiting the product. The large buckle assembly cooperates with the large flip cover assembly to limit the large flip cover assembly, thereby locking the large flip cover assembly. At the same time, the wiring element is connected and cooperated with the small carrier board assembly to transmit electrical signals, thereby testing the product performance.
[0005] Furthermore, the small carrier assembly includes a small carrier base, a Nest flip cover assembly, a small snap assembly and a B2B connector support assembly. The Nest flip cover assembly and the small snap assembly are respectively fixed at the two ends of the small carrier base. The Nest flip cover assembly is limited in cooperation with the small snap assembly. A cable baffle is provided on the small carrier base, and the cable baffle is cooperated with the cable element. The two ends of the cable element are respectively limited in cooperation with the small carrier base and the Nest flip cover assembly. The B2B connector support assembly is fixed on the lower surface of the small carrier base, and the B2B connector support assembly is cooperated with the cable element.
[0006] Furthermore, the large flip cover assembly and the Nest flip cover assembly both include a rotating shaft, and a plurality of torsion springs are provided on the rotating shaft.
[0007] Furthermore, the small carrier base is provided with a plurality of first pins, a plurality of second pins and a plurality of third pins, the first pins are limitedly matched with the Nest flip cover assembly, the second pins are limitedly matched with the cable baffle, the cable baffle is fixed on the small carrier base, and the third pins are limitedly matched with the small buckle assembly.
[0008] Furthermore, a plurality of pins are provided on the small carrier base, and the pins are limitedly matched with the cable baffle, and the cable baffle is fixed on the small carrier base.
[0009] Furthermore, the B2B connector support assembly is a floating structure, and the B2B connector support assembly includes a VR support block, a BWI support block, a floating plate and a support plate. The VR support block and the BWI support block are respectively matched with the cable arrangement element. The VR support block and the BWI support block are both floated and matched on the floating plate. The floating plate is floated and matched on the support plate. The support plate is fixed to the lower surface of the small carrier base.
[0010] Furthermore, the Nest flip cover assembly is provided with a plurality of guide holes, guide sleeves are provided in the guide holes, a through hole is provided on the small carrier base, the through hole is coaxially matched with the guide sleeve, and the guide sleeve is limitedly matched with the external B2B connector.
[0011] Furthermore, the large carrier board assembly and the small carrier board base are evenly provided with a plurality of countersunk holes, and the large carrier board assembly and the small carrier board base are limitedly matched with external equipment by screws passing through the countersunk holes.
[0012] Furthermore, the top edges of the cable baffles are all rounded, and a surface of the cable baffles close to the cable element is a stepped plane, and the stepped plane is in contact with the cable element.
[0013] Furthermore, the VR support block, the BWI support block, and the floating plate are all provided with blind holes for placing a plurality of first springs. The first springs are arranged between the VR support block, the BWI support block, and the floating plate, and the two ends of the first springs are respectively limitedly engaged with the VR support block, the BWI support block, and the floating plate.
[0014] Furthermore, the floating plate and the support plate are both provided with blind holes for placing a plurality of second springs, the second springs are arranged between the floating plate and the support plate, and both ends of the second springs are respectively limitedly engaged with the floating plate and the support plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is the first structural view of the utility model;
[0016] Figure 2 This is the second structural view of the present utility model;
[0017] Figure 3 This is an exploded structural view of the present utility model;
[0018] Figure 4 is an exploded structural view of the small carrier plate assembly;
[0019] Figure 5 is a second structural view of the small carrier board assembly;
[0020] Figure 6 is a structural view of the small carrier base;
[0021] Figure 7 FIG. 4 is an exploded structural view of the B2B connector support assembly. FIG. DETAILED DESCRIPTION
[0022] like Figures 1 to 4As shown, in this embodiment, the utility model includes a large carrier board assembly 1, a small carrier board assembly 2, a large flip cover assembly 3 and a large snap assembly 4, the large flip cover assembly 3 and the large snap assembly 4 are respectively fixed at the two ends of the large carrier board assembly 1, the large snap assembly 4 is limitedly matched with the large flip cover assembly 3, the small carrier board assembly 2 is limitedly matched with the large carrier board assembly 1, a product is arranged between the large carrier board assembly 1 and the large snap assembly 4, the two ends of the product are respectively limitedly matched with the large carrier board assembly 1 and the large snap assembly 4, a wiring element is arranged on the product, and the wiring element is matched with the small carrier board assembly 2. It can be seen that the large carrier board assembly 1 plays a limiting and supporting role for the large flip cover assembly 3 and the large buckle assembly 4. The large flip cover assembly 3 rotates to press the product to limit the product. The large buckle assembly 4 cooperates with the large flip cover assembly 3 to limit the large flip cover assembly 3 and lock the large flip cover assembly 3 to ensure stability during the test. At the same time, the wiring element is connected and cooperated with the small carrier board assembly 2 to transmit electrical signals, thereby testing the product performance.
[0023] like Figures 4 to 6 As shown, in this embodiment, the small carrier assembly 2 includes a small carrier base 20, a Nest flip cover assembly 21, a small snap assembly 22 and a B2B connector support assembly 23, the Nest flip cover assembly 21 and the small snap assembly 22 are respectively fixed at the two ends of the small carrier base 20, the Nest flip cover assembly 21 is limitedly matched with the small snap assembly 22, a cable baffle 24 is provided on the small carrier base 20, the cable baffle 24 is matched with the cable element, the two ends of the cable element are respectively limitedly matched with the small carrier base 20 and the Nest flip cover assembly 21, the B2B connector support assembly 23 is fixed on the lower surface of the small carrier base 20, and the B2B connector support assembly 23 is matched with the cable element. It can be seen that the small carrier base 20 fixes and supports the Nest flip cover assembly 21, the small buckle assembly 22 and the B2B connector support assembly 23. The Nest flip cover assembly 21 rotates to press the wiring element, limiting the wiring element and ensuring stability during the test. The Nest flip cover assembly 21 and the small buckle assembly 22 are limited and cooperate with each other to lock the Nest flip cover assembly 21. The B2B connector support assembly 23 is connected to the wiring element, and the B2B connector support assembly 23 supports and limits the wiring element.
[0024] like Figures 1 to 2As shown, in this embodiment, the large flip cover assembly 3 and the Nest flip cover assembly 21 both include a rotating shaft, and a plurality of torsion springs are provided on the rotating shaft. As can be seen, when the large flip cover assembly 3 and the Nest flip cover assembly 21 are not restrained and matched, the torsion springs play a role in restoring the large flip cover assembly 3 and the Nest flip cover assembly 21.
[0025] like Figures 4 to 6 As shown, in this embodiment, the small carrier base 20 is provided with a plurality of first pins 70, a plurality of second pins 71, and a plurality of third pins 73. The first pins 70 are limited and matched with the Nest flip cover assembly 21, the second pins 71 are limited and matched with the cable baffle 24, and the cable baffle 24 is fixed to the small carrier base 20, and the third pins 73 are limited and matched with the small buckle assembly 22. It can be seen that the small carrier base 20 supports and fixes the first pins 70, the second pins 71, and the third pins 73. The first pins 70 guide and limit the Nest flip cover assembly 21, the second pins 71 guide and limit the cable baffle 24, and the third pins 73 guide and limit the small buckle assembly 22.
[0026] like Figure 7 As shown, in this embodiment, the B2B connector support assembly 23 is a floating structure, and the B2B connector support assembly 23 includes a VR support block 60, a BWI support block 61, a floating plate 62 and a support plate 63. The VR support block 60 and the BWI support block 61 are respectively matched with the wiring component. The VR support block 60 and the BWI support block 61 are both floated and matched on the floating plate 62. The floating plate 62 is floated and matched on the support plate 63. The support plate 63 is fixed to the lower surface of the small carrier base 20. It can be seen that the floating plate 62 supports the VR support block 60 and the BWI support block 61, and the support plate 63 is fixed to the lower surface of the small carrier base 20. The support plate 63 supports the floating plate 62. The B2B connector support assembly 23 is a floating structure, which can be used to support the B2B connector in an adaptive positioning process. At the same time, the VR support block 60 and the BWI support block 61 are connected and cooperated with the wiring component, and the VR support block 60 and the BWI support block 61 support and limit the wiring component.
[0027] like Figures 4 to 5As shown, in this embodiment, the Nest flip cover assembly 21 is provided with a plurality of guide holes, each of which is provided with a guide sleeve 210. The small carrier base 20 is provided with a through hole, which is coaxially mated with the guide sleeve 210. The guide sleeve 210 is engaged with the external B2B connector in a limited position. Thus, the external B2B connector is engaged with the Nest flip cover assembly 21 in a limited position via the guide sleeve 210, which serves to guide and position the external B2B connector.
[0028] like Figures 1 to 2 As shown, in this embodiment, the large carrier assembly 1 and the small carrier base 20 are evenly provided with a plurality of countersunk holes, and the large carrier assembly 1 and the small carrier base 20 are limitedly matched with external equipment by screws passing through the countersunk holes. It can be seen that the large carrier assembly 1 and the small carrier base 20 are both provided with the countersunk holes, and the countersunk holes can sink the screws into the large carrier assembly 1 and the small carrier base 20, thereby improving the aesthetics of the large carrier assembly 1 and the small carrier base 20. At the same time, the design of the countersunk holes can increase the contact area between the screws and the large carrier assembly 1 and the small carrier base 20, thereby improving the fastening force of the large carrier assembly 1 and the small carrier base 20 in limiting the fit with external equipment.
[0029] like Figures 4 to 6 As shown, in this embodiment, the top edges of the cable traversing baffle 24 are rounded, and the side of the cable traversing baffle 24 that is closest to the cable traversing element is a stepped surface that fits snugly with the cable traversing element. Thus, it can be seen that the rounded top edges of the cable traversing baffle 24 and the stepped surface on one side of the cable traversing element are designed to perfectly fit the cable traversing element. Furthermore, the stepped surface design can serve as a limiter and guide for the cable traversing element.
[0030] like Figure 7 As shown, in this embodiment, the VR support block 60, the BWI support block 61, and the floating plate 62 are each provided with blind holes for accommodating a plurality of first springs 64. The first springs 64 are disposed between the VR support block 60, the BWI support block 61, and the floating plate 62, with both ends of the first springs 64 respectively engaging with the VR support block 60, the BWI support block 61, and the floating plate 62. Thus, the first springs 64 create a floating structure for the VR support block 60, the BWI support block 61, and the floating plate 62. This floating structure is used to support the B2B connector and assist the B2B connector in adaptively positioning the Nest flip cover assembly 21.
[0031] like Figure 7As shown, in this embodiment, both the floating plate 62 and the support plate 63 are provided with blind holes for accommodating a plurality of second springs 65. The second springs 65 are disposed between the floating plate 62 and the support plate 63, with their ends engaging with the floating plate 62 and the support plate 63, respectively. As can be seen, the second springs 65 create a floating structure for the floating plate 62 and the support plate 63, which provides support during B2B connector testing and provides an overpressure gap to prevent damage to the B2B connector.
[0032] In this embodiment, the working principle of the utility model is as follows:
[0033] like Figures 1 to 7 As shown, when the product's performance needs to be tested, the large snap assembly 4 is moved, and the large flip assembly 3, due to the action of the torsion spring, springs back. The product is then placed on the large carrier assembly 1. The large flip assembly 3 is reset and positioned in conjunction with the large snap assembly 4. The cable components on the product are placed flat on the small carrier base 20 and positioned in conjunction with the cable baffle 24. The Nest flip assembly 21 is then pressed against the cable components and positioned in conjunction with the small snap assembly 22. After successful positioning, the test begins. Upon completion, the small snap assembly 22 and the large snap assembly 4 are moved, and the product is removed, repeating the cycle.
[0034] Although the embodiments of the present invention are described with practical solutions, they do not limit the meaning of the present invention. For those skilled in the art, it is obvious to modify the implementation scheme and combine it with other solutions based on this description.
Claims
1. A carrier positioning module with a B2B connection plate and a lens in different directions, characterized by: It comprises a large carrier assembly (1), a small carrier assembly (2), a large flip assembly (3) and a large snap assembly (4); the large flip assembly (3) and the large snap assembly (4) are respectively fixed at two ends of the large carrier assembly (1); the large snap assembly (4) is position-limitedly matched with the large flip assembly (3); the small carrier assembly (2) is position-limitedly matched with the large carrier assembly (1); a product is arranged between the large carrier assembly (1) and the large snap assembly (4); the two ends of the product are position-limitedly matched with the large carrier assembly (1) and the large snap assembly (4); a wiring element is arranged on the product; the wiring element is matched with the small carrier assembly (2).
2. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 1, characterized in that: The small carrier assembly (2) comprises a small carrier base (20), a Nest flip cover assembly (21), a small buckle assembly (22) and a B2B connector support assembly (23), wherein the Nest flip cover assembly (21) and the small buckle assembly (22) are respectively fixed at two ends of the small carrier base (20), and the Nest flip cover assembly (21) and the small buckle assembly (22) are limitedly matched, and a cable baffle (24) is provided on the small carrier base (20), and the cable baffle (24) is matched with the cable element, and the two ends of the cable element are respectively limitedly matched with the small carrier base (20) and the Nest flip cover assembly (21), and the B2B connector support assembly (23) is fixed on the lower surface of the small carrier base (20), and the B2B connector support assembly (23) is matched with the cable element.
3. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 2, characterized in that: The large flip cover assembly (3) and the Nest flip cover assembly (21) both include a rotating shaft, and a plurality of torsion springs are provided on the rotating shaft.
4. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 2, characterized in that: The small carrier base (20) is provided with a plurality of first pins (70), a plurality of second pins (71) and a plurality of third pins (73), wherein the first pins (70) are limitedly matched with the Nest flip cover assembly (21), the second pins (71) are limitedly matched with the cable baffle (24), the cable baffle (24) is fixed on the small carrier base (20), and the third pins (73) are limitedly matched with the small buckle assembly (22).
5. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 2, characterized in that: The B2B connector support assembly (23) is a floating structure. The B2B connector support assembly (23) includes a VR support block (60), a BWI support block (61), a floating plate (62) and a support plate (63). The VR support block (60) and the BWI support block (61) are respectively matched with the wiring element. The VR support block (60) and the BWI support block (61) are both floated and matched on the floating plate (62). The floating plate (62) is floated and matched on the support plate (63). The support plate (63) is fixed on the lower surface of the small carrier base (20).
6. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 2, characterized in that: The Nest flip cover assembly (21) is provided with a plurality of guide holes, wherein guide sleeves (210) are provided in the guide holes, and a through hole is provided on the small carrier base (20), wherein the through hole is coaxially matched with the guide sleeve (210), and the guide sleeve (210) is limitedly matched with the external B2B connector.
7. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 2, characterized in that: The large carrier assembly (1) and the small carrier base (20) are evenly provided with a plurality of countersunk holes, and the large carrier assembly (1) and the small carrier base (20) are limitedly matched with external equipment by screws passing through the countersunk holes.
8. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 4, characterized in that: The top edges of the cable baffle (24) are all rounded, and a side of the cable baffle (24) close to the cable element is a stepped plane, and the stepped plane is in contact with the cable element.
9. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 5, characterized in that: The VR support block (60), the BWI support block (61) and the floating plate (62) are all provided with blind holes for accommodating a plurality of first springs (64). The first springs (64) are arranged between the VR support block (60), the BWI support block (61) and the floating plate (62). Both ends of the first springs (64) are respectively engaged with the VR support block (60), the BWI support block (61) and the floating plate (62).
10. The carrier positioning module with a B2B connection plate and a lens in different directions according to claim 5, characterized in that: The floating plate (62) and the support plate (63) are both provided with blind holes for accommodating a plurality of second springs (65). The second springs (65) are arranged between the floating plate (62) and the support plate (63). Both ends of the second springs (65) are respectively engaged with the floating plate (62) and the support plate (63).