Lamp semi-finished product production equipment

Through the combination of pressure measurement components and length measurement components, automatic detection of the protruding length of PIN needles in the production of semi-finished lamps is achieved, solving the problems of low detection accuracy and efficiency, and improving the automation level and product quality of production.

CN223222796UActive Publication Date: 2025-08-15SHANGHAI YINQIN AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202422267065.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-08-15
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

In the prior art, it is difficult to accurately detect the length of the PIN needle protruding from the PCB board during the lamp production process, resulting in high unqualified installation rate and low efficiency. Especially in small lamps, the detection tool is difficult to get close to the PIN needle, which increases the rework amount and the inaccuracy of manual measurement.

Method used

The combination of pressure measurement assembly and length measurement assembly is adopted, by contacting the PIN needle with the needle and pushing the top, the length measurement assembly is used to detect the protruding length of the PIN needle, and combined with the control assembly and feedback actuator, automatic detection and dust removal are achieved to ensure detection accuracy and efficiency.

Benefits of technology

It improves the accuracy and efficiency of PIN needle protrusion length detection, reduces manual operation error, reduces rework rate, and improves the automation and production efficiency of semi-finished lamps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses lamp semi-finished product production equipment, the lamp semi-finished product production equipment comprises at least one mounting and measuring device, the mounting and measuring device comprises a pressure measuring component, the pressure measuring component comprises a pressure measuring assembly and at least one length measuring assembly, and the pressure measuring assembly comprises a plate abutting part, at least one needle abutting part and a connecting seat. The pressing and measuring assembly is arranged above the lamp semi-finished product in the mode that at least one needle abutting piece corresponds to a PIN in a shell clamping groove of the lamp semi-finished product and the plate abutting piece corresponds to a PCB in the clamping groove. When the connecting base is driven to move downwards to enable the plate abutting piece and the needle abutting piece to move downwards together, the pressing and measuring assembly is arranged above the lamp semi-finished product. The bottom end of the plate abutting piece abuts against the PCB, the bottom end of the pin abutting piece abuts against the corresponding PIN and is pushed to move upwards relative to the plate abutting piece, and the length measuring assembly is used for detecting the distance of the corresponding pin abutting piece which is pushed by the PIN and moves upwards relative to the plate abutting piece when the pressure measuring assembly moves downwards. Therefore, the detection of the assembly position of the PCB is realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of lamps, in particular to equipment for producing semi-finished lamps. Background Art

[0002] Lighting fixtures come in a variety of styles and are used across various industries. During lamp production, a PCB is typically assembled into a housing slot to create a semi-finished lamp. PIN pins, typically located within the slot, penetrate the PCB. Because protrusions from the PCB that are too long or too short can affect performance, it's often necessary to measure the protrusion length for quality screening.

[0003] Currently, most workers use manual measurement tools such as rulers. During manual measurement, the PCB board may be pushed and moved in the slot, thereby changing the length of the PIN protruding from the PCB, increasing the probability of unqualified installation and the amount of rework. In addition, manual measurement has low accuracy and low work efficiency.

[0004] In addition, when the size of the lamp is relatively small, its PIN pin is even smaller, and the detection tool may not be able to get close to the PIN pin, making detection more difficult and the detection operation difficult to perform. Utility Model Content

[0005] To solve the above technical problems and achieve at least one advantage of the present invention, the present invention provides a semi-finished lamp production device, the semi-finished lamp production device comprising at least one assembly and testing device, the assembly and testing device comprising a pressure testing component, the pressure testing component comprising:

[0006] The cam is adapted to move upwardly relative to the plate, and the cam is adapted to move the plate upwardly relative to the plate, and the cam is adapted to move the plate upwardly relative to the plate.

[0007] At least one length measuring assembly is installed on the support plate, and each of the length measuring assemblies is located on top of a pin member. The length measuring assembly is used to detect the distance that the corresponding pin member is pushed up by the PIN needle relative to the support plate when the pressure measuring assembly moves downward.

[0008] According to one embodiment of the present invention, there are two needle members, and the number of the length measuring components is consistent with the number of the needle members. When the plate member corresponds to the PCB board of the semi-finished lamp, the two needle members respectively correspond to the two PIN pins of the semi-finished lamp. The pressure measuring component moves downward to make the plate member abut against the PCB board and the two needle members respectively abut against the two PIN pins and are pushed to move upward relative to the plate member, and the two length measuring components respectively detect the upward movement distance of the two PIN pins.

[0009] According to an embodiment of the present invention, the pressure-sensing component includes a pressure-sensing drive component, the connecting seat is installed on the pressure-sensing drive component and is driven to rise and fall by the pressure-sensing drive component, the mounting device includes a pressing component, the pressing component includes a pressing component and a pressure-driving component, the pressing component is installed on the pressure-driving component and is driven to rise and fall by the pressure-driving component, when the pressing component corresponds to the PCB board, the pressing component is driven by the pressure-driving component to move close to the PCB board to apply pressure to the PCB board, the semi-finished lamp production equipment includes an equipment body, the pressure-sensing drive component and the pressure-driving component are installed on the equipment body, and the pressing component is adjacent to the pressure-sensing component, the pressing component and the pressure-sensing component as a whole move with the shell, so that the pressing component and the pressure-sensing component correspond to the PCB board in the card slot of the shell in turn.

[0010] According to one embodiment of the present invention, the device body includes a device body and at least one cutting component, the cutting component is installed on the device body, the driving component and the pressure measuring drive are both installed on the cutting component, and the cutting component is configured to drive the pressing component and the pressure measuring component to move as a whole.

[0011] According to one embodiment of the present utility model, the semi-finished lamp production equipment also includes a control component and a feedback actuator. The length measuring component is communicatively connected to the control component, and the feedback actuator is controllably connected to the control component. The control component controls the feedback actuator to perform corresponding feedback actions based on the feedback from the length measuring component.

[0012] According to one embodiment of the present invention, the feedback actuator includes a vacuum cleaner, which is adjacent to the installation and measurement device. The vacuum cleaner is controllably connected to the control component. The control component controls the start and stop of the vacuum cleaner according to the feedback of the length measurement component. The vacuum cleaner is used to remove dust from the surface of the semi-finished lamp that has passed the length measurement.

[0013] According to one embodiment of the present invention, the feedback actuator also includes a conveying component, which includes a conveying assembly. The conveying assembly is installed on the equipment body, and the pressing component or the pressure measuring component is maintained directly above the conveying component. At least one tray is conveyed by the conveying assembly and moves successively through the loading and measuring device and the vacuum cleaner. The conveying component is controllably connected to the control assembly, and the control assembly controls the tray carrying the semi-finished lamp to move away from the vacuum cleaner or remain under the vacuum cleaner based on the feedback of the length measuring assembly.

[0014] According to one embodiment of the present utility model, the semi-finished lamp production equipment also includes at least one pair of pre-installation detection components, which are installed on the outside of the conveying component. The tray is conveyed by the conveying component to move through the pre-installation detection components and then conveyed to the assembly and testing device. Both of the two pre-installation detection components in a pair can radiate signals to the assembly area of the tray to detect whether the corresponding assembly area is pre-installed with the shell and the PCB board. The pre-installation detection components are communicatively connected to the control component, and the control component controls the start and stop of the assembly and testing device and the feedback actuator according to the feedback of the pre-installation detection components.

[0015] According to one embodiment of the present invention, the control component includes a control unit, multiple readers and multiple chips, each tray is equipped with a chip, the chip is readable connected to the reader, the reader is communicatively connected to the control unit, and the conveying member is controllably connected to the control unit, wherein one of the readers is adjacent to the pre-installed detection component, and the pre-installed detection component is controllably connected to the control unit, all of the pre-installed detection components are communicatively connected to the chip arranged on the corresponding tray, the chip processes the signal transmitted to it by the pre-installed detection component and stores it, wherein one of the readers is adjacent to the installation and measurement device, and the pressure-measuring drive member, the pressure-drive component and the cutting component are all controllably connected to the control unit, the length measuring component is communicatively connected to the chip, the chip processes the signal transmitted to it by the length measuring component and stores it, wherein one of the readers is adjacent to the vacuum cleaner, and the vacuum cleaner is controllably connected to the control unit.

[0016] According to one embodiment of the present invention, the conveying component also includes a plurality of supporting assemblies, the tray conveyed by the conveying assembly moves on the top of the supporting assembly, the tray is supported by the supporting assembly to move away from or sit on the conveying assembly, each reader is provided with a supporting assembly on the outside, and the supporting assembly is controllably connected to the control unit, after each reader reads the chip set on the tray and feeds back to the control unit, the conveying assembly always keeps running, and the control unit selectively controls the operation of the supporting assembly to support the tray. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 The figure shows the structure of the semi-finished lamp production equipment of the present invention.

[0018] Figure 2 Shown Figure 1 Schematic diagram of the local structure.

[0019] Figure 3 The figure shows the structure of a single assembly and testing device of the semi-finished lamp production equipment of the present invention.

[0020] Figure 4 Shown Figure 3 A cross-sectional view of the local structure.

[0021] Figure 5 Shown Figure 1 A magnified view of the local structure. DETAILED DESCRIPTION

[0022] The following description is intended to disclose the present invention and enable those skilled in the art to implement the present invention. The preferred embodiments described below are provided for illustrative purposes only, and those skilled in the art will readily appreciate other obvious variations. The basic principles of the present invention as defined in the following description may be applied to other embodiments, variations, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.

[0023] Those skilled in the art should understand that, in the disclosure of the present invention, the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicating the orientation or position relationship are based on the orientation or position relationship shown in the accompanying drawings, which are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms cannot be understood as limiting the present invention.

[0024] It is to be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the elements may be multiple, and the term "one" should not be understood as a limitation on the quantity.

[0025] refer to Figures 1 to 3 According to a preferred embodiment of the present invention, a semi-finished lamp production equipment will be described in detail below. The semi-finished lamp production equipment includes at least one assembly and testing device 10. The assembly and testing device 10 includes a pressure testing component 11. The pressure testing component 11 is used to detect the length of two PIN pins in the housing slot of a semi-finished lamp protruding from the PCB board set in the slot, and then detect whether the position of the PCB board assembled in the housing is qualified.

[0026] The pressure-testing member 11 includes a pressure-testing assembly 111, which includes a butt plate 1111, at least one butt needle 1112, and a connecting seat 1113. The butt needle 1112 is movably mounted on the butt plate 1111, and the butt needle 1112 can be pushed up and move upward relative to the butt plate 1111. The connecting seat 1113 can be driven to rise and fall, and the butt plate 1111 is slidably mounted on the connecting seat 1113, and the butt plate 1111 can be pushed up and move upward relative to the connecting seat 1113. When the butt plate 1111 and the butt needle 1112 are only subjected to gravity, the bottom end of the butt needle 1112 remains flush with the bottom end of the butt plate 1111. The pressure-testing assembly 111 is arranged above the semi-finished lamp in such a manner that at least one of the pin members 1112 corresponds to a PIN pin and the plate member 1111 corresponds to the PCB board. When the connecting seat 1113 is driven downward to cause the plate member 1111 and the pin member 1112 to move downward together, the bottom end of the plate member 1111 abuts against the PCB board and the bottom end of the pin member 1112 abuts against the corresponding PIN pin and is pushed to move upward relative to the plate member 1111, so as to convert the length of the PIN pin protruding from the PCB board into the displacement generated by the movement of the pin member 1112 relative to the plate member 1111.

[0027] refer to Figure 4Preferably, the abutment member 1111 has a mounting hole 111101 and a through-hole 111102 formed at the bottom of the abutment member 1111 and communicating with the mounting hole 111101. The through-hole 111102 is smaller than the mounting hole 111101. The abutment member 1112 is assembled with the abutment member 1111 under the action of gravity by abutting against the bottom wall of the abutment member 1111 forming the mounting hole 111101 and partially extending from the through-hole 111102 into the mounting hole 111101.

[0028] The pressure measuring assembly 111 includes at least one elastic member 1114, the two ends of which are respectively connected to the connecting seat 1113 and the abutment member 1111. The elastic member 1114 is capable of elastically deforming when the abutment member 1111 moves upward relative to the connecting seat 1113. The elastic member 1114 is capable of resetting the abutment member 1111 when no external force is applied, so that the abutment member 1111 is quickly reset under the action of its own weight and the elastic member 1114.

[0029] Preferably, the elastic member 1114 is implemented as a spring.

[0030] The pressure member 11 includes a pressure driving member 112 . The connecting seat 1113 is mounted on the pressure driving member 112 and is driven by the pressure driving member 112 to move up and down to approach or move away from the semi-finished lamp thereunder.

[0031] The pressure-testing member 11 also includes at least one length-measuring assembly 113, which is mounted on the plate member 1111. Each length-measuring assembly 113 is located on top of a pin member 1112. The length-measuring assembly 113 is used to detect the distance that the corresponding pin member 1112 is pushed upward relative to the plate member 1111 by the PIN pin when the pressure-testing assembly 111 moves downward. In this way, the length-measuring assembly 113 can measure the length of the corresponding PIN pin protruding from the PCB board by detecting the displacement of the pin member 1112 relative to the plate member 1111, and further detect whether the position of the PCB board assembled in the housing is qualified. Compared with manual inspection, the inspection accuracy and work efficiency are higher, and the problem that the semi-finished lamp is too small to be easily inspected is solved, thereby improving the convenience and flexibility of inspection.

[0032] In one embodiment, the length measuring component 113 is implemented to include a laser rangefinder, which detects the front and rear positions of the pin stopper 1112 to measure the distance that the pin stopper 1112 moves upward relative to the plate stopper 1111, and then detects the length of the corresponding PIN pin protruding from the PCB board.

[0033] Preferably, two of the pin members 1112 are provided, and the number of the length measuring components 113 is consistent with the number of the pin members 1112. When the plate member 1111 corresponds to the PCB board of the semi-finished lamp, the two pin members 1112 respectively correspond to the two PIN pins of the semi-finished lamp. The pressure measuring component 111 moves downward to make the plate member 1111 abut against the PCB board and the two pin members 1112 respectively abut against the two PIN pins and are pushed to move upward relative to the plate member 1111. The two length measuring components 113 respectively detect the distance that the two PIN pins move upward, compared with detecting the length of a single PIN pin protruding from the PCB board, so as to improve the accuracy of the detection and effectively avoid the situation where the PCB board is installed tilted, resulting in different lengths of the two PIN pins protruding from the PCB board, resulting in large errors in single detection.

[0034] refer to Figures 2 to 3 The semi-finished lamp production equipment includes an equipment main body 20, and the pressure-testing drive member 112 is installed on the equipment main body 20. The assembly and testing device 10 includes a press-fitting component 12, and the press-fitting component 12 is installed on the equipment main body 20, and the press-fitting component 12 is adjacent to the pressure-testing component 11. The press-fitting component 12 is configured to apply pressure to the PCB board pre-installed in the shell, so that the shell is assembled with the PCB board in a manner that the two PIN pins in the card slot thereof penetrate the PCB board to form the semi-finished lamp. The press-fitting component 12 and the pressure-testing component 11 are moved as a whole with the shell, so that the press-fitting component 12 and the pressure-testing component 11 correspond to the PCB board in the card slot of the shell in turn, so as to perform the press-fitting operation and the length measurement operation of the semi-finished lamp in turn.

[0035] Furthermore, the press-fitting member 12 includes a press-fitting part 121 and a pressure-driving assembly 122. The pressure-driving assembly 122 is mounted on the device body 20. The press-fitting part 121 is mounted on the pressure-driving assembly 122 and is driven to rise and fall by the pressure-driving assembly 122. When the press-fitting member 12 is aligned with the PCB, the press-fitting part 121 is driven by the pressure-driving assembly 122 to move closer to the PCB to apply pressure to the PCB, thereby assembling the PCB and the housing to form the semi-finished lamp.

[0036] Preferably, the driving pressure component 122 is implemented to include a cylinder.

[0037] refer to Figure 1 and Figure 5The semi-finished lamp production equipment also includes a control component 30 and a feedback actuator 40. The length measuring component 113 is communicated with the control component 30. The feedback actuator 40 is installed on the equipment body 20 and is controllably connected to the control component 30. The control component 30 controls the feedback actuator 40 to perform corresponding feedback actions based on the feedback from the length measuring component 113.

[0038] Preferably, the length measuring component 113 is implemented to include a displacement sensor.

[0039] In one embodiment, the control component 30 is implemented as a controller, and the feedback actuator 40 is implemented as an alarm. When the controller determines, based on the feedback from the length measuring component 113, that the length of the PIN protruding from the PCB is unqualified, the controller controls the alarm to sound an alarm.

[0040] The feedback actuator 40 includes a vacuum cleaner 41, which is adjacent to the assembly and measurement device 10 and controllably connected to the control assembly 30. The control assembly 30 starts and stops the vacuum cleaner 41 based on feedback from the length measurement assembly 113. The vacuum cleaner 41 is used to remove dust from the surface of the semi-finished lamp that has passed the length measurement.

[0041] Specifically, when the control component 30 receives feedback from the length measuring component 113 and determines that the length of the PIN pin protruding from the PCB board is qualified, the control component 30 controls the vacuum cleaner 41 to operate so as to remove dust from the semi-finished lamp that has passed the length measurement; when the control component 30 receives feedback from the length measuring component 113 and determines that the length of the PIN pin protruding from the PCB board is unqualified, the control component 30 controls the vacuum cleaner 41 to suspend operation.

[0042] The feedback actuator 40 further includes a conveying member 42, which includes a conveying assembly 421. The conveying assembly 421 is mounted on the apparatus body 20. At least one tray is conveyed by the conveying assembly 421, sequentially passing through the assembly and measurement device 10 and the vacuum cleaner 41. The conveying member 42 is controllably connected to the control assembly 30. The control assembly 30 controls the tray carrying the semi-finished lamp to move away from the vacuum cleaner 41 or to remain below the vacuum cleaner 41 based on feedback from the length measurement assembly 113.

[0043] refer to Figures 2 to 3Preferably, the device body 20 includes a device body 21 and at least one cutting assembly 22, the vacuum cleaner 41, the conveying assembly 421 and the cutting assembly 22 are all installed on the device body 21, the pressure driving assembly 122 and the pressure measuring driving member 112 are both installed on the cutting assembly 22, and the cutting assembly 22 is configured to drive the pressing component 12 and the pressure measuring component 11 to move as a whole, so that the pressing component 12 or the pressure measuring component 11 is maintained directly above the conveying assembly 421, so that the pressing operation can be performed by the pressing component 12 or the length measurement operation can be performed by the pressure measuring component 11. In this way, while satisfying the requirements of performing the pressing operation and the length measurement operation in sequence, the trajectory of the tray conveyed by the conveying assembly 421 is reduced, thereby reducing the size of the conveying assembly 421, reducing the size of the device in the direction of conveying the tray, and saving space occupied in the corresponding direction.

[0044] Preferably, the cutting assembly 22 is implemented to include a cylinder, and the pressing component 12 and the pressure-testing component 11 are both installed on the cylinder. The telescopic trajectory of the cylinder is perpendicular to the trajectory of the pallet being transported by the conveying assembly 421, so that the pressing component 12 or the pressure-testing component 11 can be driven by the cylinder and moved directly above the conveying assembly 421.

[0045] In one embodiment, the pressure measuring member 11 and the pressing member 12 are both located directly above the conveying assembly 421, and the pressure measuring member 11 is located in the direction in which the tray is conveyed by the conveying assembly 421 and moves away from the pressing member 12 and continues to move, so that the pressing operation and the length measurement operation are performed successively by the pressing member 12 and the pressure measuring member 11.

[0046] refer to Figure 5 The semi-finished lamp production equipment also includes at least one pair of pre-installation detection assemblies 50, which are mounted on the outside of the conveyor assembly 421. The pallet is conveyed by the conveyor assembly 421, passing through the pre-installation detection assemblies 50, and then conveyed to the assembly and testing device 10. Both pre-installation detection assemblies 50 in a pair are capable of radiating signals to an assembly area of the pallet to detect whether the corresponding assembly area is pre-installed with the housing and the PCB board. The pre-installation detection assemblies 50 are in communication with the control assembly 30, and the control assembly 30 controls the start and stop of the assembly and testing device 10 and the feedback actuator 40 based on feedback from the pre-installation detection assemblies 50.

[0047] Preferably, the pre-installed detection component 50 is implemented to include a laser sensor.

[0048] refer to Figure 5The control component 30 includes a control unit 31, multiple readers 32 and multiple chips 33. Each tray is equipped with a chip 33. The chip 33 is readable and connected to the reader 32. The reader 32 is communicatively connected to the control unit 31, and the conveying component 42 is control-connected to the control unit 31.

[0049] Preferably, the control unit 31 is implemented as a controller.

[0050] One of the readers 32 is adjacent to the pre-installation detection assembly 50, and the pre-installation detection assembly 50 is controllably connected to the control unit 31. When the tray is transported by the transport assembly 421, and the chip 33 disposed on the tray aligns with the reader 32, the reader 32 reads the corresponding chip 33 and feeds back to the control unit 31. The transport member 42 is controlled by the control unit 31 to retain the corresponding tray outside the pre-installation detection assembly 50. The control unit 31 controls the operation of the pre-installation detection assembly 50, so that the pre-installation detection assembly 50 performs a pre-installation detection operation. All of the pre-installation detection assemblies 50 are in communication with the chip 33 disposed on the corresponding tray. The chip 33 processes and stores the signals transmitted to it by the pre-installation detection assembly 50.

[0051] Preferably, each tray has two assembly areas, and the number of the assembly and testing devices 10 is consistent with the number of assembly areas. When the chip 33 disposed on the tray corresponds to the reader 32 disposed outside the pre-installation detection assembly 50, the two assembly areas correspond to two pairs of pre-installation detection assemblies 50, respectively, to ensure that each assembly area can perform pre-installation detection operations.

[0052] One of the readers 32 is adjacent to the testing device 10 , and the pressure-testing driving member 112 , the pressure-driving assembly 122 , and the cutting assembly 22 are all controllably connected to the control unit 31 . After the tray is transported by the conveying assembly 421 so that the chip 33 provided on the tray corresponds to the reader 32 provided outside the assembly and testing device 10, and the reader 32 reads the corresponding chip 33 and feeds back to the control unit 31, if the reader 32 reads that the assembly area of the tray is not pre-installed with the shell and / or the PCB board, the control unit 31 controls the assembly and testing device 10 and the cutting assembly 22 to suspend operation, and the conveying member 42 is controlled by the control unit 31 to drive the corresponding tray to continue moving and move away from the assembly and testing device 10 to prevent the equipment from doing useless work and reduce operating costs; if the reader 32 reads that the assembly area is pre-installed with the shell and the PCB board, the conveying member 42 is controlled by the control unit 31 to retain the corresponding tray under the assembly and testing device 10, and the assembly and testing device 10 and the cutting assembly 22 are controlled to operate to perform press-fitting operations and length measurement operations in sequence.

[0053] Preferably, when the chip 33 provided on the tray corresponds to the reader 32 outside the mounting and measuring device 10, the PCB boards pre-installed in the shells of the two assembly areas of the tray correspond successively to the press-fitting components 12 and the press-fitting components 11 of the two mounting and measuring devices 10, so that the press-fitting operation and the length measurement operation are performed successively by the two press-fitting components 12 and the two press-fitting components 11.

[0054] The length measuring component 113 is in communication with the chip 33 , and the chip 33 processes and stores the signals transmitted to it by the length measuring component 113 . One of the readers 32 is adjacent to the vacuum cleaner 41 , and the vacuum cleaner 41 is controllably connected to the control unit 31 . After the tray is transported by the transport assembly 421 so that the chip 33 provided on the tray corresponds to the reader 32 provided outside the vacuum cleaner 41, and the reader 32 reads the corresponding chip 33 and feeds back to the control unit 31, if the reader 32 reads that the corresponding tray is not pre-installed with the shell and / or the PCB board or the length measurement of the semi-finished lamp is unqualified, the control unit 31 controls the vacuum cleaner 41 to suspend operation, and the transport component 42 is controlled by the control unit 31 to drive the corresponding tray to continue moving and move away from the vacuum cleaner 41 to prevent the equipment from doing useless work and reduce operating costs; if the reader 32 reads that the length measurement of the semi-finished lamp is qualified, the transport component 42 is controlled by the control unit 31 to retain the corresponding tray outside the vacuum cleaner 41, and the vacuum cleaner 41 is controlled to operate to perform the vacuuming operation.

[0055] refer to Figure 5 The conveying assembly 42 further includes a plurality of supporting assemblies 422. The trays conveyed by the conveying assembly 421 move on top of the supporting assemblies 422, and the trays are supported by the supporting assemblies 422 to be moved away from or placed on the conveying assembly 421. A supporting assembly 422 is provided on the exterior of each reader 32, and the supporting assemblies 422 are controllably connected to the control unit 31. After each reader 32 reads the chip 33 disposed on the tray and provides feedback to the control unit 31, the conveying assembly 421 remains in operation. The control unit 31 selectively controls the supporting assemblies 422 to operate and support the trays, thereby enabling the conveying assembly 421 to continue operating while various processes are performed on the trays, thereby preventing damage to the conveying assembly 421 from frequent starts and stops.

[0056] Preferably, the lifting assembly 422 is implemented as including a cylinder, and the conveying assembly 421 is implemented as including two belt conveyors, the conveyor belts of the two belt conveyors being spaced apart, and the pallet being conveyed simultaneously by the conveyor belts of the two belt conveyors. The lifting assembly 422 is disposed between the conveyor belts of the two belt conveyors and below the pallet, so that the cylinder can push up the pallet.

[0057] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are provided for illustrative purposes only and do not limit the present invention. The advantages of the present invention have been fully and effectively realized. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.

Claims

1. Equipment for producing semi-finished lamps, characterized in that: The semi-finished lamp production equipment includes at least one assembly and testing device, the assembly and testing device includes a pressure testing component, and the pressure testing component includes: The cam is adapted to move upwardly relative to the plate, and the cam is adapted to move the plate upwardly relative to the plate, and the cam is adapted to move the plate upwardly relative to the plate. At least one length measuring assembly is installed on the support plate, and each of the length measuring assemblies is located on top of a pin member. The length measuring assembly is used to detect the distance that the corresponding pin member is pushed up by the PIN needle relative to the support plate when the pressure measuring assembly moves downward.

2. The semi-finished lamp production equipment according to claim 1, characterized in that: There are two said needle members, and the number of said length measuring components is consistent with the number of said needle members. When said plate member corresponds to the PCB board of said semi-finished lamp, said two needle members respectively correspond to said two PIN pins of said semi-finished lamp. Said pressure measuring component moves downward to make said plate member contact with said PCB board and said two needle members respectively contact with said two PIN pins and are pushed to move upward relative to said plate member, and said two length measuring components respectively detect the distance of said two PIN pins moving upward.

3. The semi-finished lamp production equipment according to claim 1 or 2, characterized in that: The pressure-testing member includes a pressure-testing drive member, the connecting seat is installed on the pressure-testing drive member and is driven to rise and fall by the pressure-testing drive member, the mounting device includes a press-fitting member, the press-fitting member includes a press-fitting member and a pressure-driving assembly, the press-fitting member is installed on the pressure-driving assembly and is driven to rise and fall by the pressure-driving assembly, when the press-fitting member corresponds to the PCB board, the press-fitting member is driven by the pressure-driving assembly to move close to the PCB board to apply pressure to the PCB board, the semi-finished lamp production equipment includes an equipment body, the pressure-testing drive member and the pressure-driving assembly are installed on the equipment body, and the press-fitting member is adjacent to the pressure-testing member, the press-fitting member and the pressure-testing member as a whole move with the shell, so that the press-fitting member and the pressure-testing member correspond to the PCB board in the card slot of the shell in turn.

4. The semi-finished lamp production equipment according to claim 3, characterized in that: The device body includes a device body and at least one cutting assembly, the cutting assembly is installed on the device body, the driving assembly and the pressure measuring drive are both installed on the cutting assembly, and the cutting assembly is configured to drive the pressing component and the pressure measuring component to move as a whole.

5. The semi-finished lamp production equipment according to claim 4, characterized in that: The semi-finished lamp production equipment also includes a control component and a feedback actuator. The length measuring component is communicatively connected to the control component, and the feedback actuator is controllably connected to the control component. The control component controls the feedback actuator to perform corresponding feedback actions based on the feedback from the length measuring component.

6. The semi-finished lamp production equipment according to claim 5, characterized in that: The feedback actuator includes a vacuum cleaner, which is adjacent to the assembly and measurement device. The vacuum cleaner is controllably connected to the control component. The control component controls the start and stop of the vacuum cleaner based on the feedback from the length measurement component. The vacuum cleaner is used to remove dust from the surface of the semi-finished lamp that has passed the length measurement.

7. The semi-finished lamp production equipment according to claim 6, characterized in that: The feedback actuator also includes a conveying component, which includes a conveying assembly. The conveying assembly is installed on the equipment body, and the pressing component or the pressure measuring component is maintained directly above the conveying component. At least one tray is conveyed by the conveying assembly and moves successively through the loading and measuring device and the vacuum cleaner. The conveying component is controllably connected to the control component, and the control component controls the tray carrying the semi-finished lamp to move away from the vacuum cleaner or remain under the vacuum cleaner based on the feedback of the length measuring component.

8. The semi-finished lamp production equipment according to claim 7, characterized in that: The semi-finished lamp production equipment also includes at least one pair of pre-installation detection components, which are installed on the outside of the conveying component. The pallet is conveyed by the conveying component to move through the pre-installation detection components and then conveyed to the assembly and testing device. Both of the two pre-installation detection components in a pair can radiate signals to the assembly area of the pallet to detect whether the corresponding assembly area is pre-installed with the shell and the PCB board. The pre-installation detection components are communicatively connected to the control component, and the control component controls the start and stop of the assembly and testing device and the feedback actuator according to the feedback of the pre-installation detection components.

9. The semi-finished lamp production equipment according to claim 8, characterized in that: The control component includes a control unit, multiple readers and multiple chips. Each tray is equipped with a chip, which is readablely connected to the reader. The reader is communicatively connected to the control unit, and the conveying member is controllably connected to the control unit. One of the readers is adjacent to the pre-installed detection component, and the pre-installed detection component is controllably connected to the control unit. All of the pre-installed detection components are communicatively connected to the chip arranged on the corresponding tray, and the chip processes and stores the signals transmitted to it by the pre-installed detection component. One of the readers is adjacent to the installation and testing device, and the pressure-measuring drive member, the pressure-driving component and the cutting component are all controllably connected to the control unit. The length measuring component is communicatively connected to the chip, and the chip processes and stores the signals transmitted to it by the length measuring component. One of the readers is adjacent to the vacuum cleaner, and the vacuum cleaner is controllably connected to the control unit.

10. The semi-finished lamp production equipment according to claim 9, characterized in that: The conveying component also includes a plurality of supporting assemblies. The tray conveyed by the conveying assembly moves on the top of the supporting assemblies. The tray is supported by the supporting assemblies to move away from or sit on the conveying assembly. A supporting assembly is provided on the outside of each reader, and the supporting assembly is controllably connected to the control unit. After each reader reads the chip set on the tray and feeds back to the control unit, the conveying assembly always keeps running, and the control unit selectively controls the supporting assembly to operate to support the tray.