Top and bottom clip wireless charging phone holder
Patent Information
- Application Number
- TW115202941
- Authority / Receiving Office
- TW · TW
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-04-02
- Publication Date
- 2026-07-11
- Estimated Expiration
- 2036-04-01
Smart Images

Figure IMG-2_DRAW_115202941-A0305-14-0001-1 
Figure IMG-2_DRAW_115202941-A0305-14-0002-2 
Figure IMG-2_DRAW_115202941-A0305-14-0003-3
Abstract
Description
Top and bottom clip wireless charging phone holder Technical Field
[0001] This invention relates to a top-and-bottom clamp wireless charging phone holder, specifically a spring-loaded holder that can lock and automatically close the phone, making the phone more secure and preventing it from falling or being ejected while the user is riding a motorcycle. It is also equipped with a wireless charging device, allowing the user to charge the phone while riding. Prior Technology
[0002] Note that conventional adjustable phone holders typically have two telescopic clamps on both sides of the holder. These clamps can extend or retract relative to the holder to hold the phone. When riding a motorcycle and placing the phone on the holder, the user must hold the phone with one hand and operate the two telescopic clamps with the other to place the phone between them. Furthermore, since this type of phone holder is not equipped with a shock-absorbing mechanism when locked on the motorcycle, this installation method is prone to failure in holding the phone, resulting in it falling or being ejected. Therefore, it needs improvement.
[0003] In view of this, based on years of experience in this field, the creator has carefully researched and continuously tested and improved the conventional mobile phone holder to solve the problems of the two telescopic clamps not being able to be operated with one hand to extend or shorten simultaneously, as well as the shock absorption, in order to prevent the held mobile phone from falling or being ejected. Now, the creator has finally created a top and bottom clamp wireless charging mobile phone holder. Summary of the Invention
[0004] The purpose of this invention is to provide a top and bottom clip-on wireless charging phone holder. When setting up the phone holder, the spring and the brake can be used to operate the rebound and automatic locking of the upper and lower telescopic brackets to firmly hold the phone and prevent it from falling off while riding a motorcycle. When combined with the wireless charging device of the charging base, users can charge their phones while riding.
[0005] Furthermore, the aforementioned clamp-on wireless charging phone holder has a shock-absorbing seat on its spherical component. The shock-absorbing spring on the shock-absorbing seat can prevent the clamped phone from being shaken and falling off.
[0006] To achieve the above objectives, this invention employs the following technical means: a top-and-bottom clamp type wireless charging phone holder, comprising: a base, the base having a groove and a chamber, the groove having a recessed hole in the center, the chamber having a spring groove and a protrusion at its upper and lower ends, the spring groove for a spring to enter; an upper telescopic bracket, one end having a U-shaped slide rail groove and a protrusion on each side, the slide rail groove having a toothed row on its groove wall; a lower telescopic bracket, one end having a U-shaped slide rail groove and a protrusion on each side, the slide rail groove having a toothed row on its groove wall, the slide rail groove having a notch on its side for a toothed rod to engage, the toothed rod having a toothed row on its side; a toothed ring, respectively meshing with the toothed rows of the upper and lower telescopic brackets, the toothed ring having a ring shaft at its front and rear ends, one of the ring shafts being inserted into the recessed hole of the base. The base consists of two tension springs, each hooking onto a protrusion on the same side of the upper and lower telescopic supports, connecting the upper and lower telescopic layers; a brake element housed within the base's chamber, one end of which has a stop tooth selectively engaging with a toothed row on the lower telescopic support's gear; the brake element has a pressure block at its upper and lower outer ends, which presses against the spring of the base; a lever, one end of which has a post hole for a protrusion outside the base chamber to be inserted; the lever has a push block on its outer side; the other end of the lever extends outside the chamber; moving the lever puts the brake element into a locked or released position; a base cover with a central shaft hole for a ring shaft on the other side of the gear ring to be inserted; a post on the inner side of the base cover that inserts into the other end of the lever's post hole; and a dust cover for a power socket fixed to the bottom of the base cover. A circuit board is placed next to the base cover, and a power socket is provided below it for plugging into the circuit board of the base cover; and a front cover is placed next to the base cover and covers the circuit board.
[0007] To provide your esteemed review committee with a better understanding of this work, the following diagrams are provided to illustrate and explain the creation in detail: Simple Explanation of the Diagram
[0008] The first image is a schematic diagram of the external structure of the mobile phone stand created in this work.
[0009] Figure 2: A schematic diagram of the structure of the mobile phone stand created in this work.
[0010] The third image is a partial exploded view of the mobile phone stand used in this creation.
[0011] Figure 4: A 3D disassembled diagram of the mobile phone stand created in this work.
[0012] Figure 5: A schematic diagram of the three-dimensional structure of the mobile phone stand created in this work.
[0013] Figure 6: A breakdown diagram of the phone stand combined with the phone from another angle.
[0014] Figure 7: A three-dimensional exploded view of the phone stand from another angle.
[0015] Figure 8: A schematic diagram of the external structure of an embodiment of the mobile phone stand created in this work. Implementation
[0016] Please refer to Figure 8. This invention provides a mobile phone holder 1, which can be installed on the rearview mirror 2 of a motorcycle. The mobile phone holder 1 can also hold and position a mobile phone 3 (as shown in Figure 6).
[0017] Referring to Figures 1 to 7, the mobile phone holder 1 includes a base 10, an upper telescopic bracket 20, a lower telescopic bracket 30, a toothed ring 40, two tension springs 50, a brake element 60, a lever 70, a base cover 80, a circuit board 90, and a front cover 100. The base 10 has a recessed hole 111 in the center of its groove 11, which allows the ring shaft 41 at one end of the toothed ring 40 to be inserted. The groove 11 also accommodates the upper and lower telescopic brackets 20 and 30. Each end of the upper and lower telescopic brackets 20 and 30 has a U-shaped slide rail groove 21 and 31. A toothed row 211 and 311 are respectively provided on the groove wall of each slide rail groove 21 and 31, and each toothed row 211 and 311 meshes with the toothed ring 40. One side of the lower telescopic bracket 30 has a… A notch 312 is provided for a toothed rod 313 to be fitted into, and a toothed row 3131 is provided on the side of the toothed rod 313. The upper and lower telescopic brackets 20 and 30 are stacked on each other, and each of the upper and lower telescopic brackets 20 and 30 has a protrusion 22 and 32 on both sides. The two tension springs 50 hook onto the protrusions 22 and 32 on the same side of the upper and lower telescopic brackets 20 and 30 respectively, so that the upper and lower telescopic brackets 20 and 30 are connected to form an interactive body. The base 10 has an open chamber 12 on the left side of the receiving groove 11. The upper and lower ends of this chamber 12 each have a spring groove 121 and 122, which can accommodate a spring 13. The chamber 12 can accommodate the actuating member 60, which is T-shaped and has a stop tooth 61 at one end. This stop tooth 61 can selectively engage with the toothed row 3131 on the toothed rod 313 of the lower telescopic bracket 30. The actuating member 60 has a pressure block 62 near its outer upper and lower ends, which presses the spring 13. Furthermore, the outer side of the chamber 12 has a protrusion 123, which can accommodate the toggle block 70. The pinhole 71 of the lever 70 is fitted with a push block 72 on the outside of the pinhole 71 of the lever 70. The other end of the lever 70 extends out of the outside of the chamber 12. When the user moves the lever 70, the push block 72 can push the brake 60 to move inward. The pressure blocks 62 at its upper and lower ends simultaneously squeeze the spring 13, so that the stop tooth 61 of the brake 60 engages with the tooth row 3131 on the toothed rod 313 of the lower telescopic bracket 30, which is the locking position. When the force applied to the brake 60 is released, the restoring force of the second tension spring 50 will return the upper and lower telescopic brackets 20 and 30 to their original positions. The stop tooth 61 of the brake 60 does not engage with the tooth row 3131 on the toothed rod 313, which is the release position.
[0018] The upper telescopic bracket 20 and the lower telescopic bracket 30 each have two claw-shaped clamps 23 and 33, which are convenient for holding the mobile phone 3.
[0019] The base cover 80 covers the toothed ring 40, the two tension springs 50, and the brake element 60 inside the upper and lower telescopic brackets 20 and 30 within the receiving groove 11 and receiving chamber 12 of the base 10. As shown in Figure 7, the base cover 80 has a shaft hole 81 at its inner center for inserting the ring shaft 42 on the other side of the toothed ring 40. The base cover 80 also has a shaft post 82 on its inner side for inserting into the other end of the post hole 71 of the lever 70. The base cover 80 has a through hole 83 on each of its four inner periphery, and one side has a power cord through groove 84. A dust cover 85 for a power socket is fixed at the bottom of the base cover 80 (as shown in Figure 5). The dust cover 85 allows the power socket 91 below the circuit board 90 to be plugged in (as shown in Figure 4). The circuit board 90 Each of the four sides is provided with a through hole 92; the front cover 100 covers the circuit board 90 on the side of the base cover 80; during assembly, four screws A are inserted from the other end of the base 10, then pass through the through hole 83 of the base cover 80 and the through hole 92 of the circuit board 90, and finally locked in the four screw holes 101 inside the front cover 100 for positioning.
[0020] As shown in Figure 4, a power switch 14 is installed on the inner side of the base 10. The power switch 14 has a rocker button 141 on its outer side, and a power cord 142 on its inner side passes through the slot 84 of the base cover 80 and is electrically connected to the circuit board 90. Furthermore, the power switch 14 is connected to an external power cord that connects to a charging dock 200. The charging dock 200 is a motorcycle-use Type-C USB charging dock that can provide high-speed power output through connection to the motorcycle battery circuit to charge mobile devices fixed on the phone holder 1. This charging dock supports the USB Power Delivery (PD) protocol and can output 5V / 3A, 9V / 2A, or 12V / 1.5A according to different needs to ensure continuous power supply to the phone during use, preventing battery depletion and maintaining sufficient power.
[0021] When the mobile phone 3 is fixed on the mobile phone holder 1 in actual operation, the extension and retraction displacement of the upper and lower telescopic brackets 20 and 30 relative to the base 10, toothed ring 40, two tension springs 50 and the brake 60 can be used to adjust the appropriate clamping distance according to the length of the mobile phone 3, so as to provide the user with the function of firmly clamping mobile phones 3 of different sizes. When the toggle block 70 is moved to a locking position, the stop tooth 61 of the brake 60 locks the tooth row 3131 of the telescopic bracket 30, and the brake 60 cannot be moved. When the toggle block 70 is moved to a releasing position, the stop tooth 61 of the brake 60 does not lock the tooth row 3131 of the telescopic bracket 30, so the brake 60 can be moved to adjust the upper and lower telescopic brackets 20 and 30 to clamp the mobile phone 3.
[0022] Please refer to Figure 7. At least one cylinder 15 is provided on the side of the base 10. The cylinder 15 has a central post 16 with a screw hole in its center. As shown in Figures 5 and 6, a shock absorber 300 is installed beside the base 10. One end of the shock absorber 300 has a spherical component 301, and the other end has at least one seat hole 302 (four seat holes are shown in this figure). The spherical component 301 allows the mobile phone holder 1 to be locked onto the motorcycle rearview mirror 2 (as shown in Figure 8). The seat hole 302 allows the rubber tube 3031 of the T-shaped mounting component 303 to be mounted. A shock-absorbing spring 304 can be fitted onto the rubber tube 3031. When installing, the shock-absorbing spring 304 can be fitted onto the central column 16 of the base 10 and extend into the cylinder 15. When the shock-absorbing spring 304 of the shock-absorbing seat 300 approaches the base 10, a bolt B is used to fit a washer and lock it in the screw hole 161 of the central column 16 for positioning (as shown in Figure 6). In this way, when the spherical part 301 is subjected to force to install the mobile phone holder 1, the shock-absorbing spring 304 on the shock-absorbing seat 300 and the rubber tube 3031 have the function of absorbing shock.
[0023] In summary, this invention, a vertical clip-on wireless charging phone holder, is an innovative phone holder. When set up, the upper and lower telescopic brackets utilize a tension spring and a locking mechanism to securely hold the phone, preventing it from falling while riding a motorcycle. Combined with a wireless charging dock, users can charge their phones while riding. Furthermore, the phone holder incorporates shock-absorbing elements to protect the phone. Its practical effectiveness is undeniable. Since this invention has never been publicly disclosed or published elsewhere, it meets the requirements of patent law, and therefore, a patent application is filed in accordance with the law.
[0024] (1): Phone stand
[0025] (10): Base
[0026] (11): Container
[0027] (111): Concave hole
[0028] (12): Refrigeration room
[0029] (121, 122): Spring groove
[0030] (123): Convex column
[0031] (13): Spring
[0032] (14): Power switch
[0033] (141): Head shake button
[0034] (142): Power cord
[0035] (15): Cylinder
[0036] (16): Central column
[0037] (161): Screw hole
[0038] (20): Upper telescopic bracket
[0039] (30): Lower telescopic support
[0040] (21, 31): Slide rail groove
[0041] (211, 311): Gear row
[0042] (22, 32): Bumps
[0043] (23, 33): Fixture
[0044] (312): Missing slot
[0045] (313): rack
[0046] (3131): Gear row
[0047] (40): Gear ring
[0048] (41, 42): Ring shaft
[0049] (50): Tension spring
[0050] (60): Actuator
[0051] (61): Stop teeth
[0052] (62): Pressing block
[0053] (70): Pulse block
[0054] (71):Pillar hole
[0055] (72): Push block
[0056] (80): Base cover
[0057] (81): Shaft hole
[0058] (82): Shaft column
[0059] (83): Perforation
[0060] (84): Through groove
[0061] (85): Dust cover
[0062] (90): Circuit board
[0063] (91): Power socket
[0064] (92): Perforation
[0065] (100): Front cover
[0066] (101): Screw hole
[0067] (200): Charging dock
[0068] (300): Shock-absorbing seat
[0069] (301): Spherical component
[0070] (302): Seat hole
[0071] (303): Installation component
[0072] (3031): Rubber tubing fittings
[0073] (304): Shock-absorbing spring
[0074] (2): Rearview mirror
[0075] (3): Mobile phone
[0076] (A): Screw
[0077] (B): Bolt
Claims
1. A top-and-bottom clip-on wireless charging phone holder, comprising: a base, wherein the base has a receiving groove and a receiving chamber, the receiving groove has a concave hole in the center, and the receiving chamber has a spring groove and a protrusion at its upper and lower ends, the spring groove being for a spring to enter; an upper telescopic bracket, one end having a U-shaped slide rail groove and each side having a protrusion, the slide rail groove having a toothed row on its groove wall; and a lower telescopic bracket, one end having a U-shaped slide rail groove and each side having a toothed row. A protrusion; a toothed row is provided on the groove wall of the slide rail; a notch is provided on the side of the slide rail groove for a toothed rod to engage; a toothed row is provided on the side of the toothed rod; a toothed ring, which meshes with the toothed rows of the upper and lower telescopic brackets respectively; a ring shaft is provided at the front and rear ends of the toothed ring, one of which is inserted into a recess in the base; two tension springs, which respectively hook onto the protrusions on the same side of the upper and lower telescopic brackets, so that the upper and lower telescopic brackets are stacked and connected; a braking element. The actuating element is housed within a base chamber, with a stop tooth at one end. The stop tooth selectively engages with a toothed row on the lower telescopic support rod. A pressure block is located at the upper and lower ends of the outer side of the actuating element, pressing against a spring in the base chamber. A lever has a post hole at one end for inserting a protruding post outside the base chamber. A push block is located on the outer side of the lever. The other end of the lever extends outside the chamber. Moving the lever puts the actuating element into a locked or released position. A base cover has a central shaft hole for inserting a ring shaft on the other side of the toothed ring. A post on the inner side of the base cover inserts into the other end of the post hole of the lever. A dust cover for a power socket is fixed to the bottom of the base cover. A circuit board is placed beside the base cover, with a power socket below it for connecting to the circuit board of the base cover. A front cover is placed beside the base cover and covers the circuit board.
2. The clip-on wireless charging phone holder as described in claim 1, wherein a power switch is installed on the inner side of the base, and the power switch has a rocking button on the outer side and a power cord connected to a charging base at the other end.
3. The clip-on wireless charging phone holder as described in claim 2, wherein the charging base is a motorcycle Type-C USB charging base, and the charging base is connected to the motorcycle battery circuit to provide high-speed power output.
4. The clip-on wireless charging phone holder as described in claim 1, wherein a shock-absorbing seat is installed on the side of the base, one end of which has a spherical component and the other end has at least one hole, the spherical component is used to lock the phone holder onto the rearview mirror of a motorcycle, the hole is used for a rubber tube of an mounting component to pass through, a shock-absorbing spring is sleeved on the rubber tube, the shock-absorbing spring is sleeved on the central column of the base and extends into the cylinder, and is locked onto the central column by a bolt.
5. The clip-on wireless charging phone holder as described in claim 1, wherein each of the four peripheries of the inner side of the base cover has a through hole, and each of the four peripheries of the circuit board has a through hole. During assembly, at least one screw is inserted through the other end of the base cover through the through hole of the base cover and the through hole of the circuit board, and then locked in at least one screw hole on the inner side of the front cover for positioning.