Testing device for front-mounted battery
By adopting the design of transverse and lifting components in the production of remote control, the problem of false battery blocking above the remote control is solved, and convenient battery installation and detection operations are achieved.
Patent Information
- Application Number
- CN202421793587.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-29
AI Technical Summary
During the production process of existing remote controls, the lifting and moving design of the fake battery causes it to block above the remote control, making it inconvenient to load and unload.
A test device for front-mounted batteries is designed, using horizontally moving components and lifting components, and moving the false battery components horizontally above the remote control, avoiding the space above the remote control, and realizing front-mounted battery operation.
Optimizes operational convenience and provides space for loading and unloading, making it easier for operators to install and inspect batteries.
Smart Images

Figure CN223166842U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of remote control production, in particular to a testing device for installing batteries on the front side. Background Art
[0002] In the process of remote control production, it is generally necessary to install batteries and power on semi-finished remote controls to realize functions such as buttons. For example, a remote control detection device disclosed in Chinese Patent Publication No. "CN110335457B".
[0003] Currently, during the remote control detection process, a fake battery is generally inserted into the battery compartment of the remote control to complete the power supply of the remote control. At present, the fixture of the conventional testing device generally adopts a design of the up-and-down lifting movement of the fake battery. During the actual operation process, due to the partial occlusion of the fake battery above the remote control, it is not convenient for the operator to perform loading and unloading operations. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the disadvantages existing in the prior art, such as the up-and-down lifting movement design, the partial occlusion of the fake battery above the remote control, and the inconvenience of operation, and to propose a testing device for installing batteries on the front side.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] Design a testing device for installing batteries on the front side, including a sliding seat sliding on a machine table, and a mounting seat fixedly installed above the sliding seat;
[0007] Above the mounting seat, a fixture is fixedly installed through a support member, and a plurality of mounting positions for placing remote controls are provided on the fixture;
[0008] Among them, a transverse movement component and a lifting component are further provided above the mounting seat. The transverse movement component is used to drive the lifting component to move above the mounting position, and the lifting component is used to drive the fake battery component to insert into the battery compartment of the remote control.
[0009] Further, the support member includes a support plate and a U-shaped plate, and the transverse movement component is installed on the U-shaped plate.
[0010] Further, the transverse movement component includes a first cylinder fixed on the U-shaped plate, and the upper side of the U-shaped plate is slidably connected with a mounting plate through a first sliding mechanism, and the lifting component is installed on the mounting plate.
[0011] Further, the lifting component includes a second cylinder located on the mounting plate, and the side surface of the mounting plate is slidably connected with a lifting plate through a second sliding mechanism.
[0012] Further, the first sliding mechanism and the second sliding mechanism have the same structure and are both arranged as a guide rail and slider mechanism.
[0013] Further, the dummy battery assembly includes a plurality of battery racks fixed to the bottom of the lifting plate, with every two battery racks as a group;
[0014] Wherein, an air passage and a slide way vertically communicating with the air passage are arranged inside the battery rack. A positive electrode and a negative electrode are slidably connected to both sides of the slide way through springs. A connector communicating with the air passage is fixed to the top of the lifting plate. Sealing parts are arranged on the opposite surfaces of the positive electrode and the negative electrode, and a limiting block is arranged in the middle of the air passage.
[0015] Further, a retaining ring for stopping the spring is placed on the opening side of the slide way. A ring groove is arranged on the outer ring of the retaining ring. The battery rack is fixed to the lifting plate through bolts, and the ends of the bolts are inserted into the ring groove.
[0016] The beneficial effect of a test device for installing batteries on the front side proposed by the present utility model is as follows: For a remote control product with a battery compartment opened on the upper side, the present utility model can realize the operation of installing batteries on the front side. Secondly, in this solution, a transverse movement is adopted to drive the dummy battery assembly to move horizontally above the remote control, so that after the movement, the dummy battery assembly can avoid the upper part of the remote control, so as to reserve space for loading and unloading for the operator while realizing the front installation of the dummy battery, and optimize the convenience of operation. Description of the Drawings
[0017] Figure 1 is a structural schematic diagram of the present utility model;
[0018] Figure 2 is a structural schematic diagram of the transverse movement assembly of the present utility model;
[0019] Figure 3 is a structural schematic diagram of the dummy battery assembly of the present utility model.
[0020] In the figure: 1, slide base; 2, mounting base; 3, support member; 31, support plate; 32, U-shaped plate; 4, jig; 5, transverse movement assembly; 51, first cylinder; 52, first sliding mechanism; 53, mounting plate; 6, lifting assembly; 61, second cylinder; 62, second sliding mechanism; 63, lifting plate; 7, dummy battery assembly; 71, battery rack; 72, air passage; 73, slide way; 74, spring; 75, positive electrode; 76, negative electrode; 77, connector; 78, sealing part; 79, retaining ring; 8, bolt. Detailed Embodiments
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0022] Referring to Figures 1 - 3 As an embodiment of the present utility model, it discloses a test device for installing batteries on the front side. Specifically, the test device includes a sliding seat 1 that slides on a machine table. Above the sliding seat 1, a mounting seat 2 is fixedly installed. The sliding seat 1 can be slid by means of a driving device, such as a ball screw mechanism, etc., for transferring the remote control to the lower part of the detection device.
[0023] Above the mounting seat 2, a jig 4 is fixedly installed through a support member 3. A number of mounting positions for placing the remote control are provided on the jig 4. It should be noted that in this embodiment, the remote control is a structural product with a battery compartment opened on the upper side, so that batteries can be installed on the front side to complete the power-on detection.
[0024] Among them, above the mounting seat 2, a lateral translation assembly 5 and a lifting assembly 6 are further provided. The lateral translation assembly 5 is used to drive the lifting assembly 6 to move above the mounting position, and the lifting assembly 6 is used to drive a dummy battery assembly 7 to insert into the battery compartment of the remote control.
[0025] In some embodiments, the support member 3 in the present utility model includes a support plate 31 and a U-shaped plate 32, and the lateral translation assembly 5 is installed on the U-shaped plate 32.
[0026] On the basis of the above embodiment, in this embodiment, the lateral translation assembly 5 includes a first cylinder 51 fixed on the U-shaped plate 32. The upper side of the U-shaped plate 32 is slidably connected with a mounting plate 53 through a first sliding mechanism 52. The lifting assembly 6 is installed on the mounting plate 53. That is, in this embodiment, the first cylinder 51 is used to drive the mounting plate 53 to perform lateral translation to drive the lifting assembly 6 to move. It should be noted that the lateral translation direction in this embodiment is along the length direction of the remote control, so that after moving, the dummy battery assembly 7 can avoid the upper part of the remote control, so as to reserve space for the operator to load and unload while realizing the front installation of the dummy battery.
[0027] Furthermore, in this embodiment, the lifting assembly 6 includes a second cylinder 61 located on the mounting plate 53. The side of the mounting plate 53 is slidably connected with a lifting plate 63 through a second sliding mechanism 62.
[0028] Specifically, in this embodiment, the first sliding mechanism 52 and the second sliding mechanism 62 have the same structure, and are both set as a guide rail and slider mechanism. Each sliding mechanism includes two guide rails and two sliders to improve the stability of sliding. In addition, the guide rail and slider mechanism is a prior art and will not be elaborated here too much.
[0029] In some embodiments, the dummy battery assembly 7 of the present utility model includes a plurality of battery holders 71 fixed to the bottom of the lifting plate 63, and every two battery holders 71 form a group.
[0030] Wherein, an air channel 72 and a slideway 73 vertically communicating with the air channel 72 are provided inside the battery holder 71. Both sides of the slideway 73 are slidably connected with a positive electrode 75 and a negative electrode 76 through springs 74. A connector 77 communicating with the air channel 72 is fixed to the top of the lifting plate 63. Sealing parts 78 are arranged on the opposite surfaces of the positive electrode 75 and the negative electrode 76. The sealing part 78 is composed of a sealing ring sleeved on the positive electrode 75 or the negative electrode 76. Specifically, in this embodiment, installation ring grooves are provided outside the positive electrode 75 and the negative electrode 76, and the sealing ring is clamped in the installation ring groove. A limiting block is arranged in the middle of the air channel 72. The limiting block is a discontinuous ring structure, and its break is opposite to the air channel 72 to facilitate the air flow to enter the slideway 73.
[0031] During specific operation, first, the remote controls are placed one by one in the installation positions of the jig 4, and at the same time, keep their fronts facing up. After that, control the first cylinder 51 to retract. The first cylinder 51 drives the lifting assembly 6 to move horizontally and drives the dummy battery assembly 7 to move above the battery compartment of the remote control. After the movement is completed, the second cylinder 61 of the lifting assembly 6 drives the lifting plate 63 to move downward to drive the dummy battery assembly 7 into the battery compartment.
[0032] Further, when the battery holder 71 enters the battery compartment, the connector 77 is externally connected to a gas source to introduce gas. The gas enters the slideway 73 along the air channel 72. With the cooperation of the sealing part 78, the positive electrode 75 and the negative electrode 76 on both sides are driven to move to both sides until they contact the positive and negative electrodes in the battery compartment of the remote control. Of course, the positive electrode 75 and the negative electrode 76 described in this embodiment should be externally connected to a power supply, and specifically, wires can be used for connection to conduct the circuit. In this way, the entire power supply operation for the remote control is completed. After that, the slide seat 1 moves below the detection device for key detection.
[0033] In order to improve the assembly, a retaining ring 79 for retaining the spring 74 is placed on the opening side of the slideway 73. A ring groove is formed on the outer circumference of the retaining ring 79. The battery holder 71 is fixed to the lifting plate 63 by bolts 8, and the end of the bolt 8 is inserted into the ring groove. That is to say, in this embodiment, the bolt 9 is used to lock and limit the retaining ring 79. When disassembling, after the bolt 8 is removed, the retaining ring 79, the spring 74, the positive electrode 75, and the negative electrode 76 can be taken out in sequence. That is, the spring 74 is movably placed in the slideway 73 in this embodiment.
[0034] In summary, for the remote control product with a battery compartment opened on the upper side in the present invention, the operation of installing batteries from the front can be realized. Secondly, in this solution, a lateral movement is adopted to drive the dummy battery assembly 7 to move laterally above the remote control, so that after the movement, the dummy battery assembly 7 can avoid the upper part of the remote control, so as to reserve space for loading and unloading for the operator while realizing the front installation of the dummy battery, and to optimize the convenience of operation.
[0035] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. A front-mounted battery testing device, comprising a sliding seat (1) slidably disposed on a machine table, characterized in that: An installation base (2) is fixedly installed above the slide base (1); Above the installation base (2), a jig (4) is fixedly installed through a support member (3). A plurality of installation positions for placing remote controls are provided on the jig (4); Among them, a transverse movement component (5) and a lifting component (6) are further arranged above the installation base (2). The transverse movement component (5) is used to drive the lifting component (6) to move above the installation position, and the lifting component (6) is used to drive a dummy battery component (7) to insert into the battery compartment of the remote control.
2. The test device with the battery installed on the front according to claim 1, characterized in that: The support member (3) includes a support plate (31) and a U-shaped plate (32), and the transverse movement component (5) is installed on the U-shaped plate (32).
3. The test device for front-mounted batteries according to claim 2, characterized in that: The transverse movement component (5) includes a first air cylinder (51) fixed on the U-shaped plate (32). The upper side of the U-shaped plate (32) is slidably connected with a mounting plate (53) through a first sliding mechanism (52), and the lifting component (6) is installed on the mounting plate (53).
4. The test device with front-mounted battery according to claim 3, characterized in that: The lifting component (6) includes a second air cylinder (61) located on the mounting plate (53). The side surface of the mounting plate (53) is slidably connected with a lifting plate (63) through a second sliding mechanism (62).
5. The test device for front-mounted batteries according to claim 4, characterized in that: The first sliding mechanism (52) and the second sliding mechanism (62) have the same structure and are both arranged as a guide rail and slider mechanism.
6. The test device for front-mounted batteries according to claim 4, characterized in that: The dummy battery component (7) includes a plurality of battery holders (71) fixed to the bottom of the lifting plate (63), and every two battery holders (71) form a group; Among them, an air passage (72) and a slideway (73) vertically communicating with the air passage (72) are opened on the inner side of the battery holder (71). A positive electrode (75) and a negative electrode (76) are slidably connected to both sides of the slideway (73) through springs (74). A joint (77) communicating with the air passage (72) is fixed to the top of the lifting plate (63). Sealing parts (78) are arranged on the opposite surfaces of the positive electrode (75) and the negative electrode (76), and a limiting block is arranged in the middle of the air passage (72).
7. The test device with a front-mounted battery according to claim 6, characterized in that: A retaining ring (79) for retaining the spring (74) is placed on the opening side of the slideway (73). A ring groove is opened on the outer circle of the retaining ring (79). The battery holder (71) is fixed to the lifting plate (63) through a bolt (8), and the end of the bolt (8) is inserted into the ring groove.
Citation Information
Patent Citations
Remote control detection device
CN110335457B