Quick charging structure based on intelligent ring
By introducing visual and tactile recognition components into the charging structure of the smart ring, the problem of the smart ring repeatedly adjusting the direction and charging is solved, a fast and accurate charging process is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202510532476.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2025-08-12
AI Technical Summary
When charging, the existing smart rings need to be repeatedly adjusted to align with the charging base, which is cumbersome to operate and affects the user experience.
A fast charging structure is designed, including visual recognition components and tactile recognition components, which can prompt users whether the smart ring is correctly charged through visual and tactile, ensuring a fast and accurate charging process.
Through visual and tactile prompts, users can confirm at a glance that the smart ring has been placed correctly, avoid charging failures, simplify operational processes, and improve user experience.
Smart Images

Figure CN120458336A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fast charging of smart rings, and more particularly, to a fast charging structure based on smart rings. Background Art
[0002] A smart ring is a wearable device that integrates microelectronic components, sensors and wireless communication technology. It is usually worn on the finger. It collects, processes and transmits user data through built-in sensors and software algorithms. This data can include health indicators (such as heart rate, blood oxygen saturation, sleep quality), exercise data (such as steps, calorie consumption) and daily activity information.
[0003] Smart rings are usually equipped with wireless charging coils inside. These coils are key components for wireless charging. When the smart ring is placed on a charging box or a specific wireless charging device, the coils will generate electromagnetic induction with the external charging device, thereby realizing the transmission of electrical energy.
[0004] The fast charging structure of smart rings currently on the market is to place the smart ring on a charging stand. However, most existing smart rings can be placed on the charging stand for charging in both forward and reverse directions. The direction of the smart ring needs to be repeatedly adjusted to align with the charging stand, which is cumbersome and affects the experience.
[0005] Therefore, in order to solve the above technical problems, this application proposes a fast charging structure based on a smart ring. Summary of the Invention
[0006] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide a fast charging structure based on a smart ring.
[0007] To achieve the above objectives, the present invention provides the following technical solutions: a fast charging structure based on a smart ring, comprising a base, wherein the base is provided with a charging seat, and a vertically sliding smart ring is provided on the charging seat; Wherein, the charging base is provided with a visual recognition component for visually identifying whether the smart ring is in a charging state; The charging base is provided with a prompt component for tactilely identifying whether the smart ring is in a charging state; The visual identification component includes a placement slot and a light strip; The prompt component comprises a slide groove, a top block, a slide plate, a spring and a switch.
[0008] Preferably, a placement slot is provided on the charging base, and a light strip is installed in the placement slot. The placement slot and the light strip are in the same recognizable shape, which facilitates visual identification of whether the smart ring is charging.
[0009] Preferably, an identification icon is provided on the smart ring, and the identification icon is consistent with the shape of the placement slot and the light strip in the placement slot. A groove is provided on the inner side of the smart ring to facilitate identification of whether the smart ring is charging.
[0010] Preferably, a slide groove is provided on the charging seat, and a top block is slidably connected in the slide groove. The top block passes through the charging seat and can slide on the charging seat. The top block and the charging seat are connected by a spring, and a slide plate is installed at one end of the top block in the slide groove. A switch is installed in the slide groove in the charging seat, and the switch can slide in the charging seat. The switch is connected to the light strip by an electric wire, so that it is convenient to identify whether the smart ring is charging by touch.
[0011] Preferably, the top end of the top block is in a smooth curved shape, and the size of the top block is consistent with the size of the groove opened on the smart ring. The top block can slide back and forth in the groove, making it easy for the top block to slide back and forth in the groove.
[0012] Preferably, a power socket for connecting to a power source is provided on one side of the base, so as to facilitate connecting the charging stand to a power source.
[0013] Compared with the prior art, the present invention has the following beneficial effects: 1. In the present invention, a prompt component is provided on the charging base. First, the smart ring is put on the charging base. When the smart ring is put into the charging base, the top block is squeezed into the inside of the charging base, and at the same time, the connected spring is squeezed. When the smart ring is put on the charging base, it is rotated until the groove is rotated to a position corresponding to the top block. At this time, the spring will push the top block into the groove through rebound elasticity, thereby achieving a tactile prompt to the operator that the smart ring is in a charging state, thereby solving the problem that the existing smart rings in the background technology can be placed on the charging base for charging in both forward and reverse directions, and the direction of the smart ring needs to be repeatedly adjusted to align with the charging base, which is cumbersome and affects the user experience.
[0014] 2. In the present invention, through the visual recognition component set on the charging base, when the top block enters the groove, it will move with the connected skateboard. At this time, the skateboard will return to the switch and stay at the switch position. At the same time, the skateboard will squeeze the switch. At this time, turning on the switch will make the digital light strip light up again and be in a constant light state. At the same time, the identification icon on the smart ring will correspond to the digital light strip and be in a straight line. The digital light strip can effectively light up and align with the identification icon. The user can confirm at a glance that the ring has entered the charging mode, avoiding charging failure due to incorrect placement or poor contact, and at the same time avoiding the user repeatedly adjusting the position of the smart ring. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings: Figure 1 It is a schematic structural diagram of the present invention as a whole; Figure 2 Schematic diagram of the structure of the top block in the present invention; Figure 3 Schematic diagram of the structure of the smart ring in the present invention; Figure 4 Schematic diagram of the structure of the light strip in the present invention; Figure 5 This is a schematic structural diagram of a cross-sectional view of the charging base in the present invention; Figure 6 For the present invention Figure 5 Schematic diagram of the structure of the enlarged figure at point A.
[0016] 1. Base; 2. Charging stand; 3. Visual identification component; 301. Placement slot; 302. Light strip; 4. Smart ring; 401. Identification icon; 402. Groove; 5. Prompt component; 501. Slide; 502. Top block; 503. Slide plate; 504. Spring; 505. Switch; 6. Power socket. DETAILED DESCRIPTION
[0017] like Figure 1-6 As shown, the present invention provides a fast charging structure based on a smart ring, including a base 1, which is used to ensure the stability of the whole when charging the smart ring 4. A charging seat 2 is provided in the base 1, which is used to ensure that the smart ring 4 can be charged when the smart ring 4 is inserted into the charging seat 2. A vertically sliding smart ring 4 is provided on the charging seat 2, which is used to detect the wearer. A power socket 6 for connecting to a power source is provided on one side of the base 1, which is used to connect to a power source.
[0018] Among them, the charging base 2 is provided with a visual recognition component 3 for visually identifying whether the smart ring 4 is in a charging state, which is used to realize that when the top block 502 enters the groove 402, it will move with the connected skateboard 503. At this time, the skateboard 503 will return to the switch 505, and the skateboard 503 will stay at the switch 505 position. At the same time, the skateboard 503 will squeeze the switch 505. At this time, turning on the switch 505 will make the digital light strip 302 light up again and be in a constant light state. At the same time, the identification icon 401 on the smart ring 4 will correspond to the digital light strip 302 and be in a straight line. The digital light strip 302 can effectively light up and align with the identification icon 401. The user can confirm at a glance that the ring has entered the charging mode, avoiding charging failure caused by incorrect placement or poor contact, and avoiding the user from repeatedly adjusting the position of the smart ring 4. The visual identification component 3 includes a placement slot 301 and a light strip 302. The placement slot 301 is provided on the charging base 2, which is used to realize whether the placement slot 301 is aligned with the identification icon 401 on the smart ring 4 and is on the same straight line, so that the user can visually identify whether the smart ring 4 is in a charging state. A light strip 302 is installed in the placement, which is used to realize the constant lighting of the light strip 302, so that the user can visually identify whether the smart ring 4 is in a charging state. The placement slot 301 and the light strip 302 are both in the same recognizable shape, which is used to realize the visual identification of the charging state for the user.
[0019] The charging base 2 is provided with a prompt component 5 for tactilely identifying whether the smart ring 4 is in a charging state. The prompt component 5 is used to realize that when the smart ring 4 is put on the charging base 2, the smart ring 4 will press the top block 502 into the charging base 2 when it is put into the charging base 2, and at the same time, it will press the connected spring 504. When the smart ring 4 is put on the charging base 2 and rotated until the groove 402 is rotated to a position corresponding to the top block 502, the spring 504 will push the top block 502 into the groove 402 through its rebound elasticity, which can effectively use tactile recognition to remind the user whether the smart ring 4 is in a charging state; The prompt component 5 includes a slide 501, a top block 502, a slide plate 503, a spring 504 and a switch 505. The smart ring 4 is provided with an identification icon 401, which is used to align the identification icon 401 with the placement slot 301 and the lit light strip 302, so as to visually prompt the user whether the smart ring 4 is in a charging state. The identification icon 401 is consistent in shape with the placement slot 301 and the light strip 302 in the placement slot 301. The inside of the smart ring 4 is provided with a groove 402, which is used to insert the top block 502 into the groove 402, so as to achieve a tactile prompt to the user whether the smart ring 4 is in a charging state. The charging base 2 is provided with a slide 501, which is used to ensure the sliding direction of the top block 502. The slide 501 is slidably connected with the top block 502, which is used to achieve a tactile sense of entering the groove 402 through the top block 502, so as to achieve a tactile sense of entering the groove 402 through the top block 502, so as to achieve a tactile prompt to the user whether the smart ring 4 is in a charging state. To prompt the user whether the smart ring 4 is in a charging state, the top block 502 passes through the charging base 2 and can slide on the charging base 2. The top block 502 and the charging base 2 are connected by a spring 504, which is used to realize that the top block 502 has an automatic reset function, and a slide plate 503 is installed at one end of the top block 502 in the slide groove 501, which is used to squeeze the switch 505. A switch 505 is installed in the slide groove 501 in the charging base 2, which is used to control whether the light strip 302 is on. The switch 505 can slide in the charging base 2, and the switch 505 and the light strip 302 are connected by an electric wire. The top of the top block 502 is in a smooth curved shape, which is used to facilitate the smart ring 4 to squeeze the top block 502, and the size of the top block 502 is consistent with the size of the groove 402 opened on the smart ring 4, and the top block 502 can slide back and forth in the groove 402; When the smart ring 4 is not inserted into the charging base 2, the top block 502 is in its original position, and the slide plate 503 connected to the top block 502 does not contact the switch 505. When the smart ring 4 is inserted into the charging base 2, the slide 503 will follow the top block 502 to move in the slide groove 501. At this time, the slide 503 will pass the switch 505, and when passing the switch 505, it will squeeze the switch 505 and light up the light strip 302. Then, the slide 503 will continue to move inward following the top block 502. At this time, the slide 503 will be separated from the switch 505, and the switch 505 will be reset and the light strip 302 will be turned off. When the smart ring 4 is completely inserted into the charging base 2 and the top block 502 is pushed into the groove 402 by the spring 504, the slide 503 will follow the top block 502 to move to the original position. When the top block 502 is at the innermost end of the groove 402, the top block 502 will be a certain distance away from the original position and the slide 503 will be uniformly at the switch 505 position. At this time, the slide 503 will continue to squeeze the switch 505. When the switch 505 is uniformly squeezed, the light strip 302 will be constantly on.
[0020] Working principle: When the smart ring 4 needs to be charged, first put the smart ring 4 on the charging base 2. When the smart ring 4 is put on the charging base 2, the smart ring 4 will squeeze the top block 502 when it contacts the top block 502 extending from the charging base 2. When the top block 502 is squeezed by the smart ring 4, the smart ring 4 will move into the charging base 2 in the slide groove 501. When the top block 502 moves in the slide groove 501, it will move with the connected slide plate 503 and compress the connected spring 504. When the slide plate 503 follows the top block 502 to move into the charging base 2, it will encounter the switch 505 and squeeze the switch 505 inward. When the switch 505 is completely squeezed by the slide plate 503, the digital light strip 302 in the placement slot 301 lights up. When the smart ring 4 is completely put on the charging base 2, the slide plate 503 will leave the switch 505 and the digital light strip 302 will go out. Next, the smart ring 4 is rotated on the charging stand 2. When the smart ring 4 rotates, the identification icon 401 on the smart ring 4 and the groove 402 on the smart ring 4 rotate together until the groove 402 on the smart ring 4 rotates to correspond to the top block 502. At this time, the spring 504 will push the top block 502 into the groove 402 through rebound, so as to prompt the operator through tactile sense that the smart ring 4 is in the charging state. At the same time, when the top block 502 enters the groove 402, it will move with the connected slide 503. The slide plate 503 will return to the switch 505, and the slide plate 503 will stay at the switch 505 position. At the same time, the slide plate 503 will squeeze the switch 505. At this time, the opening of the switch 505 will make the digital light strip 302 light up again and be in a constant light state, thereby visually reminding the operator that the smart ring 4 is in a charging state. At the same time, the identification icon 401 on the smart ring 4 will correspond to the digital light strip 302 and be in a straight line, thereby achieving the visual reminder to the operator again that the smart ring 4 is in a charging state.
[0021] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any form. Any ordinary technician in this industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with this profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the scope of protection of the technical solution of the present invention.
Claims
1. A fast charging structure based on a smart ring, comprising a base (1), characterized in that: The base (1) is provided with a charging seat (2) for charging, and a vertically sliding smart ring (4) is provided on the charging seat (2); Wherein, the charging base (2) is provided with a visual recognition component (3) for visually recognizing whether the smart ring (4) is in a charging state; The charging base (2) is provided with a prompt component (5) for tactilely identifying whether the smart ring (4) is in a charging state; The visual recognition component (3) includes a placement slot (301) and a light strip (302); The prompt component (5) comprises a slide groove (501), a top block (502), a slide plate (503), a spring (504) and a switch (505).
2. The fast charging structure based on a smart ring according to claim 1, characterized in that: The charging seat (2) is provided with a placement groove (301), a light strip (302) is installed in the placement groove, and the placement groove (301) and the light strip (302) are both in the same recognizable shape.
3. The fast charging structure based on a smart ring according to claim 1, characterized in that: The smart ring (4) is provided with an identification icon (401), the identification icon (401) is consistent in shape with the placement groove (301) and the light strip (302) in the placement groove (301), and a groove (402) is provided on the inner side of the smart ring (4).
4. The fast charging structure based on a smart ring according to claim 1, characterized in that: The charging seat (2) is provided with a slide groove (501), a top block (502) is slidably connected in the slide groove (501), the top block (502) passes through the charging seat (2) and can slide on the charging seat (2), the top block (502) and the charging seat (2) are connected via a spring (504), and a slide plate (503) is installed at one end of the top block (502) in the slide groove (501), a switch (505) is installed in the slide groove (501) in the charging seat (2), the switch (505) can slide in the charging seat (2), and the switch (505) is connected to the light strip (302) via an electric wire.
5. The fast charging structure based on a smart ring according to claim 4, characterized in that: The top end of the top block (502) is in a smooth curved shape, and the size of the top block (502) is consistent with the size of the groove (402) provided on the smart ring (4), and the top block (502) can slide back and forth in the groove (402).
6. The fast charging structure based on a smart ring according to claim 1, characterized in that: A power socket (6) for connecting to a power source is provided on one side of the base (1).