Wireless charging integrated connector

By designing a wireless charging integrated connector with a rotatable charging panel and heat dissipation device, the inconvenience caused by the fixed posture of the device is solved, improving the flexibility and stability of charging.

CN224683913UActive Publication Date: 2026-08-25SHEN ZHEN CHENGDEXIN ELECTRONICS CO LTD
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Patent Information

Application Number
CN202521951019.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2026-08-25
Estimated Expiration
2035-09-11

AI Technical Summary

Technical Problem

Existing wireless chargers require devices to maintain a specific posture while charging, preventing users from freely adjusting the viewing angle or operating the screen, affecting the user experience and potentially causing charging interruptions.

Method used

Design an integrated wireless charging connector, including a wireless charger base, a rotating rod, a fixed latch, a charging panel, a ring magnet, and a primary coil. The rotating rod drives the charging panel to rotate, and a heat dissipation device is used to achieve angle adjustment and stable charging.

Benefits of technology

It allows users to freely adjust the device angle during charging, improving the user experience, and ensures charging stability and efficiency through a heat dissipation device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wireless charging integrated formula connector, including wireless charger base, rotating rod, fixed ear, charging panel, ring magnet, primary coil, sealing cover, heat abstractor, air inlet, the rotating rod is installed to the wireless charger base top rear end through the pivot, the rotating rod top is installed with fixed ear through the pivot, the fixed ear top is installed with charging panel, the inside outside of charging panel is installed with ring magnet a week, and charging panel inside center is installed with primary coil, and primary coil connecting wire is connected with the inside control panel of wireless charger base through the inside rotating rod, the front end of charging panel is bonded with sealing cover, the top center of wireless charger base is installed with heat abstractor, and the air inlet is set up to the front end center of wireless charger base. The utility model design is reasonable, will separate wireless charger main part and charging panel, and can drive charging panel rotation through rotating rod, and therefore equipment is in charging, and the user can adjust more comfortable angle.
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Description

Technical Field

[0001] This utility model relates to the field of wireless charging equipment, and in particular to an integrated wireless charging connector. Background Technology

[0002] Wireless charging integrated connectors power devices via electromagnetic induction, a technology rooted in the fusion of magnetic coupling and high-frequency inverter technology. Existing wireless chargers generally suffer from a fixed angle: the device must maintain a specific posture during charging, preventing users from freely adjusting the viewing angle or operating the screen. This rigid design not only impacts the user experience but can also lead to charging interruptions due to frequent movement. Utility Model Content

[0003] The purpose of this invention is to provide an integrated wireless charging connector to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: A wireless charging integrated connector includes a wireless charger base, a rotating rod, a fixed latch, a charging panel, a ring magnet, a primary coil, a sealing cover, a heat dissipation device, and an air inlet. The rotating rod is mounted on the rear end of the top of the wireless charger base via a pivot. A fixed latch is mounted on the top of the rotating rod via a pivot. The charging panel is mounted on the top of the fixed latch. A ring magnet is mounted around the outer perimeter of the inside of the charging panel, and a primary coil is mounted in the center of the inside of the charging panel. The primary coil connection wire is connected to the control panel inside the wireless charger base through the inside of the rotating rod. A sealing cover is adhered to the front end of the charging panel. A heat dissipation device is mounted in the center of the top of the wireless charger base, and an air inlet is provided in the center of the front end of the wireless charger base.

[0005] Preferably, the heat dissipation device further includes an air duct, a heat dissipation cavity, a micro motor, and a cooling fan. The front end of the wireless charger base has an air duct located inside the air inlet. The center of the wireless charger base has a heat dissipation cavity, and the rear end of the air duct is connected to the heat dissipation cavity. A micro motor is installed in the center of the heat dissipation cavity, and a cooling fan is installed on the top of the micro motor.

[0006] The beneficial effects of this utility model are: This utility model is reasonably designed, separating the wireless charger body from the charging panel, and the charging panel can be rotated by a rotating rod, so that the user can adjust the angle to a more comfortable position when the device is charging. Attached Figure Description

[0007] Figure 1 This is a schematic diagram of the structure of the wireless charging integrated connector of this utility model; Figure 2This is a schematic diagram of the structure of the wireless charging integrated connector of this utility model; Figure 3 This is a schematic diagram of the structure of the wireless charging integrated connector of this utility model.

[0008] In the picture: 1. Wireless charger base, 2. Rotating rod, 3. Fixing lug, 4. Charging panel, 5. Ring magnet, 6. Primary coil, 7. Sealing cover, 8. Heat dissipation device, 9. Air inlet, 10. Air duct, 11. Heat dissipation cavity, 12. Micro motor, 13. Cooling fan. Detailed Implementation

[0009] The present invention will be further described below with reference to the accompanying drawings and specific embodiments: like Figures 1-3 As shown, a wireless charging integrated connector includes a wireless charger base 1, a rotating rod 2, a fixed lug 3, a charging panel 4, a ring magnet 5, a primary coil 6, a sealing cover 7, a heat dissipation device 8, and an air inlet 9. The rotating rod 2 is mounted on the rear end of the top of the wireless charger base 1 via a rotating shaft. The fixed lug 3 is mounted on the top of the rotating rod 2 via a rotating shaft. The charging panel 4 is mounted on the top of the fixed lug 3. The ring magnet 5 is mounted around the outer periphery of the inside of the charging panel 4, and the primary coil 6 is mounted in the center of the inside of the charging panel 4. The connecting wire of the primary coil 6 is connected to the control panel inside the wireless charger base 1 through the inside of the rotating rod 2. The sealing cover 7 is adhered to the front end of the charging panel 4. The heat dissipation device 8 is mounted in the center of the top of the wireless charger base 1, and the air inlet 9 is opened in the center of the front end of the wireless charger base 1. The heat dissipation device 8 also includes an air duct 10, a heat dissipation cavity 11, a micro motor 12, and a cooling fan 13. The front end of the wireless charger base 1 has an air duct 10 located inside the air inlet 9. The center of the wireless charger base 1 has a heat dissipation cavity 11, and the rear end of the air duct 10 is connected to the heat dissipation cavity 11. The center of the heat dissipation cavity 11 is equipped with a micro motor 12, and the top of the micro motor 12 is equipped with a cooling fan 13.

[0010] The working principle of this utility model is as follows: The wireless charger base 1 has a built-in wireless charging control panel, and the charging panel 4 is connected by a rotating rod 2, so that the angle of the charging panel 4 can be adjusted at will. The charging panel 4 is connected to the charging device through a built-in ring magnet 5, and the heat dissipation device 8 takes in air through the air inlet 9 and carries away the heat of the wireless charger base 1 through the heat dissipation cavity 11, while also dissipating heat from the charging device on top.

[0011] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered exemplary in all respects, and thus equivalent variations within the scope of this invention are included within its scope.

Claims

1. A wireless charging integrated connector, comprising a wireless charger base (1), a rotating rod (2), a fixing lug (3), a charging panel (4), a ring magnet (5), a primary coil (6), a sealing cover (7), a heat dissipation device (8), and an air inlet (9), characterized in that: The wireless charger base (1) has a rotating rod (2) mounted on its top rear end via a rotating shaft. The rotating rod (2) has a fixed lug (3) mounted on its top via a rotating shaft. The fixed lug (3) has a charging panel (4) mounted on its top. The charging panel (4) has an annular magnet (5) mounted around its inner outer side. The charging panel (4) has a primary coil (6) mounted in its inner center. The primary coil (6) is connected to the control panel inside the wireless charger base (1) via the rotating rod (2). The charging panel (4) has a sealing cover (7) glued to its front end. The wireless charger base (1) has a heat dissipation device (8) mounted in its top center. The wireless charger base (1) has an air inlet (9) at its front center.

2. The wireless charging integrated connector according to claim 1, characterized in that: The heat dissipation device (8) also includes an air duct (10), a heat dissipation cavity (11), a micro motor (12), and a cooling fan (13). The front end of the wireless charger base (1) is provided with an air duct (10) inside the air inlet (9). The center of the wireless charger base (1) is provided with a heat dissipation cavity (11), and the rear end of the air duct (10) is connected to the heat dissipation cavity (11). The center of the heat dissipation cavity (11) is provided with a micro motor (12), and the top of the micro motor (12) is provided with a cooling fan (13).