Feeding assembly and TF card testing equipment using same
By designing a loading assembly including a working platform, a motion drive device and a loading clamping mechanism, the problem of low loading efficiency of TF card testing equipment is solved, efficient loading and automated inspection are achieved, and labor intensity and production costs are reduced.
Patent Information
- Application Number
- CN202422325619.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-24
AI Technical Summary
The existing TF card testing equipment has low loading efficiency, high labor intensity and high production costs.
A loading assembly including a working platform, a motion drive device, a transport assembly and a loading clamping mechanism is designed. The loading clamping and release of the pallets are realized by driving the loading clamping cylinder to drive the loading clamping block, and the pallets are transported in combination with the motion drive device to drive the carrier assembly to achieve efficient loading.
It improves the loading efficiency of TF card inspection, reduces labor intensity, saves production costs, and improves the level of automation.
Smart Images

Figure CN223239065U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage device testing, in particular to a loading component and a TF card testing device using the component. Background Art
[0002] Existing TF card testing equipment has low loading efficiency, high labor intensity, and high production costs. In view of the above problems, it is particularly important to develop a new testing method and system that is efficient, automated, and can comprehensively detect the performance of TF cards. In this paper, a loading component and a TF card testing device using the component are proposed. Utility Model Content
[0003] The purpose of the utility model is to provide a feeding component and a TF card testing device using the component, which can realize efficient feeding operation and complete efficient testing.
[0004] The above technical objectives of the present invention are achieved through the following technical solutions:
[0005] A loading assembly includes a working platform, a motion drive device, a carrying assembly, a carrying assembly and a loading clamping mechanism. The working platform is provided with a loading area, and the loading area is provided with a loading port. The motion drive device is provided at the bottom of the working platform, and is used to drive the carrying assembly to move. The loading clamping mechanism includes two loading clamping assemblies, and the two loading clamping assemblies are relatively arranged on both sides of the loading port. The loading clamping assembly includes a loading clamping cylinder and a loading clamping block. The loading clamping block is connected to the loading clamping cylinder and is driven to move by the loading clamping cylinder.
[0006] In a preferred embodiment, the motion drive device includes a slide rail, a drive belt and a drive motor, the slide rail is arranged at the bottom of the working platform, the drive belt is arranged parallel to the slide rail, the drive motor is connected to the drive belt, and the drive belt is connected to the transport component.
[0007] In a preferred embodiment, the transport assembly includes a lifting cylinder, a support plate and a slide, the slide includes a connecting part and a slider connected to each other, the slider cooperates with the slide rail, the lifting cylinder is installed on the connecting part and connected to the support plate to drive the support plate to move up and down, and the drive belt is connected to the slide.
[0008] In a preferred embodiment, the loading clamp is provided with a support step and a mounting hole.
[0009] In a preferred embodiment, a loading limit mechanism is provided on the working platform, and the loading limit mechanism includes two loading limit components, and the two loading limit components are relatively arranged on one side of the loading port, and the loading limit component includes a limit bracket, an adjusting screw, a slide, a sliding block and a limit block. The limit bracket is installed on the working platform, and the adjusting screw and the slide are installed on the limit bracket. The sliding block cooperates with the slide and can slide on the slide. An adjusting screw hole is provided on the sliding block, and the adjusting screw is inserted into the adjusting screw hole and cooperates with the adjusting screw hole. The limit block is installed on the sliding block, and a limit step is provided on the limit block.
[0010] A TF card testing device comprises the above-mentioned loading assembly.
[0011] Compared with the prior art, during operation, the present invention uses a feeding clamping block driven by a feeding clamping cylinder to achieve movement. The two feeding clamping blocks achieve relative movement under the drive of the two feeding clamping cylinders. When the two feeding clamping blocks approach each other, the tray is clamped. When the two feeding clamping blocks move away from each other, the tray is released. The motion drive device is used to drive the carrier assembly. The tray containing the TF card to be tested is first clamped by the feeding clamping mechanism. When the carrier assembly moves to the feeding port, the feeding clamping mechanism places the tray on the carrier assembly, and the carrier assembly transports the tray for subsequent testing, screening, and unloading. Through the setting of this feeding assembly, the feeding efficiency of TF card testing can be greatly improved, the level of automation can be improved, the intensity of manual labor can be reduced, and production costs can be saved. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic diagram of the internal component structure of a TF card testing device according to the present invention (first perspective). In the figure, the dotted line portion is a virtual representation of the moving position.
[0013] Figure 2 This is a schematic diagram of the internal component structure of a TF card testing device according to the present invention (second perspective). In the figure, the dotted line portion is a virtual representation of the moving position.
[0014] Figure 3 yes Figure 1 Schematic diagram of the enlarged structure of part A.
[0015] Figure 4 yes Figure 1 Schematic diagram of the enlarged structure of part B.
[0016] In the picture
[0017] Pallet 1; working platform 2; loading port 3; inspection port 4; screening port 5; unloading port 6; slide rail 7; drive motor 8; lifting cylinder 9; support plate 10; connecting part 11; slider 12; loading clamping cylinder 13; loading clamping block 14; limiting bracket 15; adjusting screw 16; slide seat 17; sliding block 18; adjusting screw hole 19; limiting block 20; limiting step 21; unloading clamping cylinder 22; unloading clamping block 23; supporting step 24; mounting hole 25; screening support rail 26; screening motor 27; screening action frame 28; suction cup 29. DETAILED DESCRIPTION
[0018] The present invention will be described in further detail below with reference to the accompanying drawings.
[0019] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.
[0020] Example 1:
[0021] like Figures 1 to 4 As shown, a loading assembly includes a working platform 2, a motion drive device, a carrying assembly, a carrying assembly and a loading clamping mechanism. The working platform 2 is provided with a loading area, and the loading area is provided with a loading port 3. The motion drive device is provided at the bottom of the working platform 2, and is used to drive the carrying assembly to move. The loading clamping mechanism includes two loading clamping assemblies, and the two loading clamping assemblies are relatively arranged on both sides of the loading port 3. The loading clamping assembly includes a loading clamping cylinder 13 and a loading clamping block 14. The loading clamping block 14 is connected to the loading clamping cylinder 13 and is driven to move by the loading clamping cylinder 13.
[0022] During the operation of a feeding assembly of this embodiment, the feeding clamp 14 is driven by the feeding clamping cylinder 13 to realize movement. The two feeding clamps 14 realize relative movement under the drive of the two feeding clamping cylinders 13. When the two feeding clamps 14 are close to each other, the tray 1 is clamped. When the two feeding clamps 14 are away from each other, the tray 1 is released. The motion drive device is used to drive the carrying assembly. The tray 1 with the TF card to be tested is first clamped by the feeding clamping mechanism. When the carrying assembly moves to the feeding port 3, the feeding clamping mechanism places the tray 1 on the carrying assembly. The carrying assembly transports the tray 1 for subsequent testing, screening and unloading. Through the setting of this feeding assembly, the feeding efficiency of TF card testing can be greatly improved, the level of automation can be improved, the intensity of manual labor can be reduced, and production costs can be saved.
[0023] Furthermore, the motion drive device includes a slide rail 7, a drive belt and a drive motor 8. The slide rail 7 is arranged at the bottom of the working platform 2, the drive belt is arranged parallel to the slide rail 7, the drive motor 8 is connected to the drive belt, and the drive belt is connected to the transport component.
[0024] The carrying assembly includes a lifting cylinder 9, a support plate 10 and a slide. The slide includes a connecting portion 11 and a slider 12 that are connected to each other. The slider 12 cooperates with the slide rail 7. The lifting cylinder 9 is installed on the connecting portion 11 and connected to the support plate 10 to drive the support plate 10 to move up and down. The driving belt is connected to the slide.
[0025] During the working process, the driving motor 8 drives the belt to rotate, and the belt drives the slide to move when rotating. The movement of the slide drives the movement of the lifting cylinder 9, thereby driving the movement of the support plate 10, so that the support plate 10 moves between the loading port 3, the inspection port 4, the screening port 5 and the unloading port 6.
[0026] Furthermore, the loading clamp 14 is provided with a support step 24 and a mounting hole 25 .
[0027] The support steps 24 provide support for the pallets 1, allowing them to be stacked, thereby further improving the level of automated inspection. During loading, if the pallets 1 are stacked, the support plate 10 first supports all pallets 1. The loading clamps 14 then release their grip on the pallets 1. The support plate 10 is then lowered to the height of one pallet 1. Once fully lowered, the loading clamps 14 re-grip the pallets 1, allowing the bottom pallet 1 to be supported by the support plate 10, completing the transfer process.
[0028] The working platform 2 is provided with a feeding limit mechanism, and the feeding limit mechanism includes two feeding limit components, and the two feeding limit components are relatively arranged on one side of the feeding port 3. The feeding limit component includes a limit bracket 15, an adjusting screw 16, a slide 17, a sliding block 18 and a limit block 20. The limit bracket 15 is installed on the working platform 2, and the adjusting screw 16 and the slide 17 are installed on the limit bracket 15. The sliding block 18 cooperates with the slide 17 and can slide on the slide 17. An adjusting screw hole 19 is provided on the sliding block 18, and the adjusting screw 16 is inserted into the adjusting screw hole 19 and cooperates with the adjusting screw hole 19. The limit block 20 is installed on the sliding block 18, and a limit step 21 is provided on the limit block 20. When the adjusting screw 16 is rotated, due to the matching relationship between the adjusting screw 16 and the adjusting screw hole 19, the sliding block 18 will slide along the slide seat 17, and the sliding of the sliding block 18 will drive the movement of the limit block 20, so that the position of the limit block 20 can be adjusted by rotating the adjusting screw 16. The main function of the limit block 20 is to limit the position of the tray 1, so that by adjusting the limit block 20 to different positions, it can adapt to the shape of trays 1 of different specifications and sizes, improve the adaptability to the model of the tray 1, and also improve the stability of the tray 1 when it is placed.
[0029] Example 2:
[0030] like Figures 1 to 4 As shown, a TF card testing device includes the loading component described in Example 1.
[0031] A TF card testing device of this embodiment also includes a detection component. The working platform 2 is provided with a loading area, a detection area, a screening area and a unloading area. The loading area is provided with a loading port 3, the detection area is provided with a detection port 4, the screening area is provided with a screening port 5, and the unloading area is provided with a unloading port 6. The loading port 3, the detection port 4, the screening port 5 and the unloading port 6 are arranged in a line in sequence.
[0032] A TF card testing device of this embodiment is provided with a loading port 3, a detection port 4, a screening port 5 and a discharge port 6 on a working platform 2, and the loading port 3, the detection port 4, the screening port 5 and the discharge port 6 are arranged in a row in sequence. The carrier assembly can move between the loading port 3, the detection port 4, the screening port 5 and the discharge port 6 by the drive of the motion drive device. During the working process, the motion drive device is first used to move the carrier assembly to the loading area, and the tray 1 with undetected TF cards is placed on the carrier assembly. After receiving the tray 1 with undetected TF cards, the carrier assembly moves to the detection area, and uses the detection assembly to detect the TF cards. The TF cards in the tray 1 are distributed in an array. In order to facilitate Regarding the placement of TF cards, a card slot for placing TF cards should be provided in tray 1. After the detection component realizes the detection of the batch of TF cards, it obtains the detection results and locates the position of the TF cards. The carrying component transfers tray 1 to the screening area, where unqualified and qualified TF cards are screened and unqualified TF cards are removed. After the removal is completed, tray 1 is transported to the unloading area for unloading. After completing a round of detection process, the carrying component returns to the loading area for the next round of detection. The above process can realize automatic detection of TF cards in batches. Compared with the manual detection method in the existing technology, it can effectively improve the automation level of TF card detection, improve work efficiency and reduce detection costs.
[0033] Specifically, the detection component includes a test needle holder and a processor. The processor is connected to the test needle holder, and the test needle holder is located in the detection port 4. When the support plate 10 moves to the detection port 4, the lifting cylinder 9 drives the support plate 10 to rise, thereby making the test needle holder contact the TF card to detect the TF card. After the detection is completed, the lifting cylinder 9 is used to lower the support plate 10, and then subsequent operations are carried out. In this way, rapid detection of TF cards can be achieved.
[0034] The detection component includes a test needle holder and a processor. The processor is connected to the test needle holder, and the test needle holder is located in the detection port 4. When the support plate 10 moves to the detection port 4, the support plate 10 is driven by the lifting cylinder 9 to rise, thereby making the test needle holder contact the TF card to detect the TF card. After the detection is completed, the lifting cylinder 9 is used to lower the support plate 10, and then subsequent operations are carried out. In this way, rapid detection of TF cards can be achieved.
[0035] Furthermore, the working platform 2 is provided with a discharge clamping mechanism, which includes two discharge clamping assemblies. The two discharge clamping assemblies are relatively arranged on both sides of the discharge port 6. The discharge clamping assembly includes a discharge clamping cylinder 22 and a discharge clamping block 23. The discharge clamping block 23 is connected to the discharge clamping cylinder 22 and is driven to move by the discharge clamping cylinder 22. During operation, the discharge clamping block 23 is driven by the discharge clamping cylinder 22 to move. The two discharge clamping blocks 23 move relative to each other under the drive of the two discharge clamping cylinders 22. When the two discharge clamping blocks 23 approach each other, the pallet 1 is clamped. When the two discharge clamping blocks 23 move away from each other, the pallet 1 is released.
[0036] The unloading clamp 23 is also provided with a support step 24 and a mounting hole 25. In the unloading state, the unloading clamp 23 already supports the stacked pallets 1. At this time, the support plate 10 also places the pallets 1 that have been inspected. At this time, the pallets 1 on the support plate 10 are brought into contact with the bottom of the pallets 1 on the unloading clamp 23, so that all the pallets 1 are supported by the support plate 10. Then, the unloading is accelerated. After being released, the support plate 10 is raised so that the height of all the pallets 1 is higher than the height of the support step 24 provided on the unloading clamp 23. Then, the two unloading clamps 23 are brought closer to each other to clamp all the pallets 1. Thus, a convenient unloading process is achieved through the above process.
[0037] By providing the mounting holes 25 , different clamping blocks can be installed and arranged, thereby improving the adaptability of the clamping blocks.
[0038] Furthermore, the working platform 2 is provided with a screening mechanism, which includes a screening support rail 26, a screening motor 27, a screening belt, a screening action frame 28, a vacuum pump and a suction cup 29. The screening support rail 26 spans the screening port 5. The screening motor 27 and the screening belt are installed on the screening support rail 26. The screening motor 27 is connected to the screening belt and is used to drive the screening belt to rotate. The screening action frame 28 is slidably arranged on the screening support rail 26 and is connected to the screening belt. The suction cup 29 is installed on the screening action frame 28 and is connected to the vacuum pump. After the inspection is completed. The support plate 10 moves the tray 1 with the inspected TF card to the inspection port 4, and the screening mechanism is used to screen the unqualified TF cards. During the screening, the screening action frame 28 moves along the screening support rail 26, and its movement is driven by the screening motor 27 and the screening belt. The suction cup 29 adsorbs the unqualified TF cards and transports them to the collection position for placement.
[0039] The above description of the embodiments is intended to facilitate understanding and use of the present invention by those skilled in the art. It is apparent that those skilled in the art can readily make various modifications to the embodiments and apply the general principles described herein to other embodiments without requiring creative effort. Therefore, the present invention is not limited to the above-described embodiments. Improvements and modifications made by those skilled in the art based on the disclosure of the present invention without departing from the scope of the present invention should fall within the scope of protection of the present invention.
Claims
1. A feeding assembly, characterized in that: It includes a working platform, a motion drive device, a carrying component, a carrying component and a loading clamping mechanism. The working platform is provided with a loading area, and the loading area is provided with a loading port. The motion drive device is provided at the bottom of the working platform, and is used to drive the carrying component to move. The loading clamping mechanism includes two loading clamping components, and the two loading clamping components are relatively arranged on both sides of the loading port. The loading clamping component includes a loading clamping cylinder and a loading clamping block. The loading clamping block is connected to the loading clamping cylinder and is driven to move by the loading clamping cylinder.
2. A feeding assembly according to claim 1, characterized in that: The motion drive device includes a slide rail, a drive belt and a drive motor. The slide rail is arranged at the bottom of the working platform. The drive belt is arranged parallel to the slide rail. The drive motor is connected to the drive belt, and the drive belt is connected to the carrying component.
3. A feeding assembly according to claim 2, characterized in that: The carrying assembly includes a lifting cylinder, a support plate and a slide. The slide includes a connecting part and a slider that are connected to each other. The slider cooperates with the slide rail. The lifting cylinder is installed on the connecting part and connected to the support plate to drive the support plate to move up and down. The driving belt is connected to the slide.
4. A feeding assembly according to claim 2 or 3, characterized in that: The loading clamping block is provided with a supporting step and a mounting hole.
5. A feeding assembly according to claim 1, characterized in that: The working platform is provided with a feeding limit mechanism, and the feeding limit mechanism includes two feeding limit components, and the two feeding limit components are relatively arranged on one side of the feeding port, and the feeding limit component includes a limit bracket, an adjusting screw, a slide, a sliding block and a limit block. The limit bracket is installed on the working platform, and the adjusting screw and the slide are installed on the limit bracket. The sliding block cooperates with the slide and can slide on the slide. The sliding block is provided with an adjusting screw hole, and the adjusting screw is inserted into the adjusting screw hole and cooperates with the adjusting screw hole. The limit block is installed on the sliding block, and the limit block is provided with a limiting step.
6. A TF card testing device, characterized in that: The invention comprises the loading assembly according to any one of claims 1 to 5.