Detection positioning device for baby carriage remote controller processing

By introducing a guide plate and a motor drive system into the stroller remote control detection device, the continuity problem of remote control detection in the prior art is solved, realizing the automated detection of multiple remote controls and improving detection efficiency and convenience.

CN224081696UActive Publication Date: 2026-04-03PINGHU WELLYE ELECTRICAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing stroller remote control button detection devices lack continuity, cannot simultaneously fix multiple remote controls and automatically change detection positions, resulting in low detection efficiency.

Method used

A detection and positioning device comprising a base, a guide chamber, a guide plate, and a power unit was designed. The workstations are divided by the dividing lines on the guide plate, and the automatic detection of multiple remote controllers is achieved by the cooperation of the clamping plate and the slider, combined with the motor driving the guide plate to move.

Benefits of technology

It enables continuous detection of multiple remote control buttons, reduces the number of fixed operations on the remote control, and improves detection efficiency and convenience.

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Abstract

The utility model discloses a detection positioning device for baby carriage remote controller processing, which comprises a base and a detection unit installed on the base and used for detecting remote controller keys, the base is provided with a guide chamber corresponding to the detection unit, and a guide plate is movably connected in the guide chamber. A power part used for driving the guide plate to move in the horizontal direction of the guide cavity is arranged in the guide cavity, a plurality of parting lines evenly distributed in the length direction of the guide plate are arranged on the guide plate, and the multiple parting lines divide a plurality of stations used for containing a plurality of remote controllers on the guide plate. The guide plate is movably connected with two clamping plates used for fixing a plurality of remote controllers. The utility model has the beneficial effects that a plurality of stations for fixing the remote controller can be arranged, and the position of the remote controller to be detected can be automatically changed to correspond to the detection unit for detecting the keys of the remote controller, so that the operation times of fixing the remote controller are reduced, the continuity of the key detection operation of the plurality of remote controllers is realized, and the efficiency and convenience of the detection operation are improved.
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Description

Technical Field

[0001] This utility model relates to the field of children's vehicle remote control processing technology, and more specifically, it relates to a detection and positioning device for children's vehicle remote control processing. Background Technology

[0002] The remote control for children's electric toy cars is the core control device. It controls the vehicle's direction, speed, lights, and sound effects via wireless signals (such as 2.4GHz radio frequency, Bluetooth, or infrared). Current remote controls for children's electric toy cars mainly consist of a housing, buttons, and a circuit board. During the production of the remote control, the buttons mounted on the housing are tested to ensure that users can accurately issue commands when using the remote control, preventing the car from malfunctioning due to button failure and thus ensuring the safe use of the car.

[0003] Utility model patent application number 202420942219.2 discloses a remote control button production inspection device. During the downward sliding stroke of the servo cylinder's support plate, a linkage mechanism moves two clamping plates closer together, fixing the remote control and further improving the stability of the remote control buttons during inspection. After inspection, during the upward sliding stroke of the servo cylinder's support plate, the linkage mechanism moves the two clamping plates further apart, unlocking the remote control. An ejector then lifts the remote control from the processing station, facilitating unloading and greatly improving the working efficiency of the inspection device.

[0004] However, in the existing technology, after the button detection of one remote control is completed, the remote control needs to be removed and the next remote control needs to be manually placed on the workstation to be fixed before the button detection of the next remote control can be carried out. This lacks the continuity of the detection operation. It is not possible to set up multiple workstations for fixing remote controls and automatically change the position of the remote control to be tested to correspond with the detection unit used to detect the remote control buttons, reduce the number of operations for fixing remote controls, realize the continuity of button detection operations for multiple remote controls, and improve the efficiency and convenience of the detection operation. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a detection and positioning device for processing children's vehicle remote control.

[0006] To achieve the above objectives, the present invention provides the following technical solution:

[0007] A detection and positioning device for processing remote controls for children's vehicles includes a base and a detection unit mounted on the base for detecting remote control buttons. The base has a guide chamber corresponding to the detection unit. A guide plate for placing multiple remote controls is movably connected inside the guide chamber. A power unit for driving the guide plate to move horizontally along the guide chamber is provided inside the guide chamber. Several dividing lines are evenly arranged along the length of the guide plate, dividing the guide plate into several workstations for placing multiple remote controls. Two clamping plates for fixing multiple remote controls are movably connected to the guide plate.

[0008] A further configuration is that the clamping plate is arranged along the length of the guide plate, and the clamping plate is provided with a plurality of sliders corresponding to a plurality of workstations. The guide plate is provided with a plurality of grooves corresponding to the plurality of sliders, and the sliders slide within the corresponding grooves.

[0009] The clamping plate has a first connecting block and a second connecting block fixed at both ends. The first connecting block and the second connecting block have a first positioning hole and a second positioning hole respectively. The guide plate has a plurality of first screw holes that mate with the first positioning hole and a plurality of second screw holes that mate with the second positioning hole at both ends. The first connecting block is provided with a first fixing screw that is threadedly connected to the first positioning hole and the first screw hole in sequence. The second connecting block is provided with a second fixing screw that is threadedly connected to the second positioning hole and the second screw hole in sequence.

[0010] Further configured, the power unit is placed inside the guide cavity and below the guide plate. The power unit includes a motor installed on the inner wall of the bottom of the guide cavity and a power gear fixed to the output end of the motor. A rack that meshes with the power gear is fixed at the bottom of the guide plate. The rack is arranged along the length of the guide plate. A fixing rod is rotatably connected to the power gear and the fixing rod is fixed to the inner wall of the guide cavity.

[0011] A further configuration is provided, wherein a guide strip is installed on both sides of the guide plate, and the guide plate has two guide grooves that are movably connected to the two guide strips respectively, and the guide strips slide within the corresponding guide grooves.

[0012] Further configured, the base is equipped with two mounting side plates respectively placed on both sides of the guide chamber, the detection unit is placed between the two mounting side plates and corresponds to the remote control on the guide plate, and the two ends of the detection unit are respectively connected to the two mounting side plates.

[0013] By adopting the above technical solution, the beneficial effects of this utility model are as follows: it can set up multiple fixed remote control workstations and automatically change the position of the remote control to be tested to correspond with the detection unit used to detect the remote control buttons, reducing the number of operations of the fixed remote control, realizing the continuity of multiple remote control button detection operations, and improving the efficiency and convenience of the detection operation. Attached Figure Description

[0014] Figure 1 This is a structural schematic diagram of an embodiment of the present utility model.

[0015] Figure 2 This is a schematic diagram of the structure of the clamping plate and the guide plate.

[0016] Figure 3 A schematic diagram of the structure of the guide strip and guide groove.

[0017] Figure 4 This is a schematic diagram of the structure of the slider and the groove.

[0018] In the diagram: base 1, detection unit 100, guide chamber 2, guide plate 3, dividing line 31, work station 333, clamping plate 4, slider 5, slide groove 6, first connecting block 7, second connecting block 8, first positioning hole 71, second positioning hole 81, first screw hole 32, second screw hole 33, first fixing screw 9, second fixing screw 10, motor 11, power gear 12, rack 13, fixing rod 14, guide strip 15, guide groove 16, mounting side plate 17. Detailed Implementation

[0019] Reference Figures 1 to 4 The embodiments of this utility model will be further described below.

[0020] A detection and positioning device for processing remote control for children's vehicles includes a base 1 and a detection unit 100 installed on the base 1 for detecting remote control buttons. The detection unit 100 is prior art, and its structure and working principle will not be described in detail here. The base 1 has a guide chamber 2 corresponding to the detection unit 100. A guide plate 3 for placing multiple remote controls is movably connected in the guide chamber 2. The guide plate 3 has a number of dividing lines 31 evenly arranged along the length of the guide plate 3. The dividing lines 31 divide the guide plate 3 into a number of workstations 333 for placing multiple remote controls.

[0021] The guide plate 3 clearly divides the workstations 333 by the dividing line 31, which makes it easy for operators to place multiple remote controllers on each workstation 333 of the guide plate 3 in sequence, and facilitates the detection unit 100 to detect the remote controller buttons on each workstation 333.

[0022] The guide plate 3 is provided with two clamping plates 4 for fixing multiple remote controllers. The clamping plates 4 are arranged along the length of the guide plate 3. The clamping plates 4 are provided with several sliders 5 corresponding to several workstations 333 respectively. The guide plate 3 is provided with several sliding grooves 6 corresponding to several sliders 5. The sliders 5 slide in the corresponding sliding grooves 6. The two ends of the clamping plates 4 are respectively fixed with a first connecting block 7 and a second connecting block 8. The first connecting block 7 and the second connecting block 8 are respectively provided with a first positioning hole 71 and a second positioning hole 81. The two ends of the guide plate 3 are respectively provided with several first screw holes 32 that cooperate with the first positioning hole 71 and several second screw holes 33 that cooperate with the second positioning hole 81. The first connecting block 7 is provided with a first fixing screw 9 that is threadedly connected to the first positioning hole 71 and the first screw hole 32 in sequence. The second connecting block 8 is provided with a second fixing screw 10 that is threadedly connected to the second positioning hole 81 and the second screw hole 33 in sequence.

[0023] Two clamping plates 4 are set along the length of the guide plate 3. The sliders 5 on the clamping plates 4 slide within the corresponding grooves 6 on the guide plate 3, thereby adjusting the position of the clamping plates 4. At this time, the first positioning hole 71 on the first connecting block 7 of the clamping plate 4 corresponds to the first screw hole 32 at the corresponding position, and the second positioning hole 81 on the second connecting block 8 corresponds to the second screw hole 33 at the corresponding position. With the first fixing screw 9 threadedly connected to the first positioning hole 71 and the first screw hole 32, and the second fixing screw 10 threadedly connected to the second positioning hole 81 and the second screw hole 33, the first connecting blocks 7 and the second connecting blocks 8 at both ends of the clamping plate 4 are fixed to the two ends of the guide plate 3, thereby fixing the clamping plate 4 in the adjusted position for clamping and fixing the remote control. This achieves the purpose of clamping and fixing multiple remote controls at the corresponding workstation 333 at one time using the two clamping plates 4, ensuring that the remote control will not move during the testing process, reducing the need for fixing the remote control, and saving time.

[0024] The guide chamber 2 is equipped with a power unit for driving the guide plate 3 to move horizontally along the guide chamber 2. The power unit is located in the guide chamber 2 and below the guide plate 3. The power unit includes a motor 11 installed on the inner wall of the bottom of the guide chamber 2 and a power gear 12 fixed to the output end of the motor 11. A rack 13 that meshes with the power gear 12 is fixed to the bottom of the guide plate 3. The rack 13 is arranged along the length of the guide plate 3. A fixed rod 14 is rotatably connected to the power gear 12. The bottom of the fixed rod 14 is fixed to the inner wall of the guide chamber 2 to facilitate the stable rotation of the power gear 12.

[0025] A rack 13 fixed at the bottom of the guide plate 3 and arranged along the length of the guide plate 3 meshes with the power gear 12. When the motor 11 starts, the power gear 12 rotates and drives the guide plate 3 to move horizontally along the guide chamber 2 through meshing with the rack 13. This moves the remote controllers at different workstations 333 on the guide plate 3 to their corresponding positions on the detection unit 100 in sequence. This allows the detection unit 100 to perform button detection on the remote controllers at each workstation 333 in sequence, reducing the number of times the remote controllers are fixed during detection, achieving continuity of button detection operations for multiple remote controllers, and improving the efficiency and convenience of the detection operation.

[0026] The interval between two consecutive starts of motor 11 is set according to the detection time of detection unit 100. This allows motor 11 to start immediately after detection unit 100 has finished detecting the remote control buttons on one workstation 333, transmitting the remote control to the next workstation 333 for detection by detection unit 100. This improves the continuity of remote control button detection. A fixed rod 14 is rotatably connected to the power gear 12 and fixed to the inner wall of the guide chamber 2, facilitating stable rotation of the power gear 12.

[0027] A guide strip 15 is installed on both sides of the guide plate 3. The guide plate has two guide grooves 16 that are movably connected to the two guide strips 15 respectively. The guide strips 15 slide within the corresponding guide grooves 16. This enables the guide plate 3 to be movably connected within the guide chamber 2, and the sliding of the guide strips 15 within the guide grooves 16 restricts the direction of movement of the guide plate 3, ensuring smooth horizontal movement of the guide plate 3. Lubricating oil is added to the guide grooves 16 as needed to facilitate smooth sliding of the guide strips.

[0028] Two mounting side plates 17 are respectively installed on the base 1 and placed on both sides of the guide chamber 2. The detection unit 100 is placed between the two mounting side plates 17 and corresponds to the remote control on the guide plate 3. The two ends of the detection unit 100 are connected to the two mounting side plates 17 respectively. The two mounting side plates 17 are used to fix the detection unit 100 on the base 1, and at the same time, the detection unit 100 is placed above the guide plate 3 and corresponds to the remote control on the guide plate 3. This facilitates the detection of the remote control buttons of each station 333 on the guide plate 3, and will not affect the movement of the guide plate 3 to change the station 333 in sequence.

[0029] In use: The worker places multiple remote controls sequentially on each station 333 of the guide plate 3, ensuring that each remote control is placed within the area divided by the dividing line 31. The sliding clamp 4 slider 5 is moved to the appropriate position to contact the remote control. The first fixing screw 9 is rotated to make it threadedly connected with the first positioning hole 71 and the corresponding first screw hole 32. The second fixing screw 10 is rotated to make it threadedly connected with the second positioning hole 81 and the corresponding second screw hole 33, thereby fixing the clamp 4 after the position is adjusted. The two clamps 4 press against the sides of the multiple remote controls, thereby clamping and fixing the multiple remote controls at the same time, reducing the number of operations to fix the remote controls.

[0030] The starter motor 11 drives the guide plate 3 to move horizontally along the guide chamber 2 via the meshing of the power gear 12 and rack 13. The guide strip 15 on the guide plate 3 slides within the guide groove 16, ensuring smooth movement of the guide plate 3. This allows the remote control at the first station 333 to be aligned with the detection unit 100 for testing. After testing, the motor 11 restarts, automatically moving the guide plate 3 to the second station 333 for testing the remote control with the detection unit 100. This cycle continues until all remote control buttons at all stations 333 have been tested. The test results can be recorded on a display screen or data recording device. Ultimately, this system enables the setting of multiple fixed remote control stations 333 and automatically changes the position of the remote control to be tested to correspond with the detection unit 100 used for testing remote control buttons. This reduces the number of operations required for fixed remote controls, achieves continuous testing of multiple remote control buttons, and improves the efficiency and convenience of the testing operation.

[0031] After testing all the remote control buttons, rotate the first fixing screw 9 and the second fixing screw 10 in the opposite direction to release the clamp 4 from the guide plate 3. The sliding clamp 4 allows the remote control to be removed from the guide plate 3 after testing, so that the next batch of remote controls can be fixed, which is convenient for subsequent testing.

[0032] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0033] In this utility model, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," "join," and "fix" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0034] The control method of this utility model is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail.

[0035] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any ordinary changes and substitutions made by those skilled in the art within the scope of the technical solution of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A detection and positioning device for processing a children's stroller remote control, comprising a base (1) and a detection unit (100) mounted on the base (1) for detecting remote control buttons, characterized in that, The base (1) has a guide chamber (2) corresponding to the detection unit (100). A guide plate (3) for placing multiple remote controllers is movably connected in the guide chamber (2). A power unit for driving the guide plate (3) to move horizontally along the guide chamber (2) is provided in the guide chamber (2). Several dividing lines (31) are evenly arranged along the length of the guide plate (3). The dividing lines (31) divide the guide plate (3) into several workstations (333) for placing multiple remote controllers. Two clamping plates (4) for fixing multiple remote controllers are movably connected to the guide plate (3).

2. The detection and positioning device for processing a children's vehicle remote control according to claim 1, characterized in that, The clamping plate (4) is arranged along the length of the guide plate (3). The clamping plate (4) is provided with a plurality of sliders (5) corresponding to a plurality of workstations (333). The guide plate (3) is provided with a plurality of grooves (6) corresponding to the sliders (5). The sliders (5) slide in the corresponding grooves (6). The clamping plate (4) is fixed with a first connecting block (7) and a second connecting block (8) at both ends respectively. The first connecting block (7) and the second connecting block (8) are respectively provided with a first positioning hole (71) and a second positioning hole (81). The guide plate (3) is provided with a number of first screw holes (32) that cooperate with the first positioning hole (71) and a number of second screw holes (33) that cooperate with the second positioning hole (81) respectively. The first connecting block (7) is provided with a first fixing screw (9) that is threadedly connected to the first positioning hole (71) and the first screw hole (32) in sequence. The second connecting block (8) is provided with a second fixing screw (10) that is threadedly connected to the second positioning hole (81) and the second screw hole (33) in sequence.

3. The detection and positioning device for processing a children's vehicle remote control according to claim 2, characterized in that, The power unit is placed inside the guide chamber (2) and below the guide plate (3). The power unit includes a motor (11) installed on the inner wall of the bottom of the guide chamber (2) and a power gear (12) fixed at the output end of the motor (11). A rack (13) that meshes with the power gear (12) is fixed at the bottom of the guide plate (3). The rack (13) is arranged along the length of the guide plate (3). A fixing rod (14) is rotatably connected to the power gear (12). The fixing rod (14) is fixed to the inner wall of the guide chamber (2).

4. The detection and positioning device for processing a children's vehicle remote control according to claim 3, characterized in that, The guide plate (3) has a guide strip (15) installed on both sides. The guide plate has two guide grooves (16) that are movably connected to the two guide strips (15). The guide strips (15) slide in the corresponding guide grooves (16).

5. The detection and positioning device for processing a children's vehicle remote control according to claim 4, characterized in that, The base (1) is equipped with two mounting side plates (17) respectively placed on both sides of the guide chamber (2). The detection unit (100) is placed between the two mounting side plates (17) and corresponds to the remote control on the guide plate (3). The two ends of the detection unit (100) are respectively connected to the two mounting side plates (17).

Citation Information

Patent Citations

  • Remote controller key production detection device

    CN222419481U