Wearable wireless remote controller structure
By designing a wearable wireless remote control structure, including a suspension strap, an L-shaped bracket, and a flexible support plate assembly, the problems of discomfort and operational limitations caused by bulky wireless remote controls have been solved, achieving a stable and comfortable wearing experience and efficient operation.
Patent Information
- Application Number
- CN202520768951.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-04-22
AI Technical Summary
Existing industrial wireless remote controls are bulky and heavy, causing discomfort when worn, limiting operational freedom, and increasing fatigue, thus affecting work efficiency and user experience.
A wearable wireless remote control structure was designed, including a suspension strap, an L-shaped bracket, a buffer seat, and a flexible support plate assembly. The buffer seat provides additional cushioning protection, the flexible support plate assembly adaptively adjusts according to the curve of the human body, and the elastic bandage fixes it to ensure a stable and close fit.
It improves wearing comfort and operational flexibility, reduces physical discomfort and operational limitations caused by prolonged use, and enhances work efficiency and user experience.
Smart Images

Figure CN223840125U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wireless remote control technology, specifically to a wearable wireless remote control structure. Background Technology
[0002] With the development of technology and the improvement of industrial automation, wireless remote controls are being used more and more widely in the industrial field. In modern industrial automated production, wireless remote controls are widely used for the remote operation and control of various mechanical equipment. These remote controls transmit commands via wireless signals, allowing operators to perform precise control from a distance, greatly improving work efficiency and safety.
[0003] Many existing industrial wireless remote controls are bulky and heavy, often pressing directly against the operator's body during actual use, especially when worn around the neck. This can easily cause discomfort to the user. Furthermore, because their shape does not take into account the fit to the human body's curves, this not only restricts the operator's freedom of movement but may also cause localized pressure point pain due to prolonged wear. For situations requiring long-term handheld use or frequent operation, this design leads to low operational efficiency and increased worker fatigue, affecting work efficiency and user experience. Utility Model Content
[0004] The purpose of this utility model is to provide a wearable wireless remote control structure to solve the problems mentioned in the background art, such as the current industrial wireless remote controls being large and heavy, causing discomfort when worn, limiting the operator's freedom of movement, low operating efficiency, and increasing worker fatigue.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a wearable wireless remote control structure, including a remote control body, with a suspension strap connecting the upper two sides of the remote control body, and an "L"-shaped support bracket on the back side of the remote control body. The bottom inner wall and side inner wall of the support bracket are respectively provided with a bottom buffer seat and a side buffer seat. The side outer wall of the support bracket is connected to a flexible support plate assembly adapted to the curve of the human body through an adjustable connector. The flexible support plate assembly is composed of an outer support plate and an inner support plate, and elastic bandages are provided on both sides of the inner support plate.
[0006] Preferably, the bottom buffer seat is a U-shaped structure and is welded and fixed to the inner wall of the bottom part of the support bracket, the side buffer seat is a rectangular structure and is welded and fixed to the inner walls of both sides of the side part of the support bracket, and elastic buffer pads are bonded and fixed to the inner sides of both the bottom buffer seat and the side buffer seat.
[0007] Preferably, the outer upper and lower ends of the side portion of the support bracket are provided with recesses, and the outer recess of the side portion of the support bracket is provided with an elastic support member that is connected to the adjustable connector.
[0008] Preferably, the upper inner side of the side portion of the support bracket is symmetrically provided with elastic retaining rings, and the elastic retaining rings are matched with the handle structure at the top of the remote control body. Furthermore, a number of magnetic strips are evenly provided on the inner side of the side portion of the support bracket.
[0009] Preferably, both the outer support plate and the inner support plate are arc-shaped structures, and a number of telescopic columns are connected around the outer support plate and the inner support plate, and springs are sleeved on the telescopic sections of the telescopic columns.
[0010] Preferably, the two ends of the adjustable connector are respectively hinged to the support bracket and the outer support plate via pivot pins, and the adjustable connector is symmetrically distributed between the support bracket and the outer support plate.
[0011] Compared with existing technologies, the beneficial effects of this invention are: the wearable wireless remote control structure improves wearing comfort and operational flexibility, effectively reducing physical discomfort and operational limitations caused by prolonged use, while also improving work efficiency and user experience. The wearable wireless remote control structure provides users with additional cushioning protection through its support frame and its bottom and side buffer seats, reducing pressure point pain caused by prolonged wear. The combination of adjustable connectors with outer and inner support plates, along with the application of elastic bandages, ensures that the device can adapt to different user body shapes, increasing stability and comfort during wear. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of a wearable wireless remote control according to the present invention;
[0013] Figure 2 This is a schematic diagram of the connection structure between the support bracket and the outer support plate of a wearable wireless remote control structure according to this utility model.
[0014] Figure 3 This is a schematic diagram of the inner structure of the support bracket of a wearable wireless remote control structure according to this utility model.
[0015] Figure 4 This is a schematic diagram of the inner side structure of the inner support plate of a wearable wireless remote control structure according to this utility model.
[0016] In the diagram: 1. Remote control body; 2. Suspension strap; 3. Support bracket; 4. Bottom buffer seat; 5. Side buffer seat; 6. Adjustable connector; 7. Outer support plate; 8. Inner support plate; 9. Elastic retaining ring; 10. Elastic support component; 11. Elastic bandage; 12. Telescopic column; 13. Magnetic strip. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please see Figure 1-4This utility model provides a technical solution: a wearable wireless remote control structure, including a remote control body 1, a suspension strap 2 connecting the upper two sides of the remote control body 1, an "L"-shaped support frame 3 on the back side of the remote control body 1, a bottom buffer seat 4 and a side buffer seat 5 respectively provided on the bottom inner wall and side inner wall of the support frame 3, and a flexible support plate assembly adapted to the human body curve connected to the side outer wall of the support frame 3 through an adjustable connector 6. The flexible support plate assembly is composed of an outer support plate 7 and an inner support plate 8. The middle of the side outer wall of the support frame 3 and the middle of the outer wall of the outer support plate 7 are connected by a hinge. The two ends of the adjustable connector 6 are respectively hinged to the connection points of the support frame 3 and the outer support plate 7 through pivot pins, and the adjustable connector 6 is... The support bracket 3 and the outer support plate 7 are symmetrically distributed vertically, and elastic bandages 11 are provided on both sides of the inner support plate 8. Each set of elastic bandages 11 has a corresponding Velcro adhesive side and a pasting side at its outer end. With this structure, when the operator hangs the remote control body 1 around the neck using the suspension strap 2, the support bracket 3 can support the remote control body 1 and allow the flexible support plate assembly to naturally conform to one side of the body. The bottom buffer seat 4 and the side buffer seat 5 provide additional cushioning protection at the bottom and sides of the support bracket 3, respectively, reducing discomfort at pressure points on the body. Furthermore, when operation is required, the outer support plate 7 and the inner support plate 8 of the flexible support plate assembly can be flexibly rotated through the adjustable connector 6, ensuring that the assembly can adaptively adjust according to the human body curve. The angle increases wearing comfort. Furthermore, the elastic bandage 11, when bound to the body, further secures the entire device, making it fit the body's curves more closely. This not only solves the problems of inconvenient operation and uncomfortable wearing caused by the large and bulky wireless remote control in existing technologies, but also significantly improves operational flexibility, reduces physical discomfort and operational limitations caused by prolonged use, and improves work efficiency and user experience. This achieves a stable and comfortable wearing experience, greatly improving the user's working conditions. The bottom buffer seat 4 has a U-shaped structure and is welded and fixed to the inner wall of the bottom part of the support frame 3. The side buffer seats 5 have a rectangular structure and are welded and fixed to the inner walls of both sides of the side part of the support frame 3. Both the bottom buffer seat 4 and the inner side of the side buffer seat 5 are bonded with elastic buffer pads. This structure allows the bottom buffer seat 4 to effectively distribute the pressure applied to the bottom of the support bracket 3, while the inner elastic buffer pads further absorb vibration and impact, reducing discomfort at the pressure points on the user's body. The side buffer seat 5 provides additional support and protection for the sides, and its inner side is also equipped with elastic buffer pads, which can effectively alleviate the pressure and impact on the sides, avoiding discomfort caused by side pressure during long-term wear. This allows the support bracket 3 to not only stably support the remote control body 1, but also provide all-round cushioning protection through the synergistic effect of the bottom buffer seat 4 and the side buffer seat 5. The upper and lower ends of the outer side of the side portion of the support bracket 3 are provided with notches.Furthermore, the outer recess of the side portion of the support bracket 3 is equipped with a spring support 10 that connects to the adjustable connector 6. The spring support 10 is made of high-strength spring steel with good elasticity, which can restore its original shape within a large deformation range. It is suitable for components that need to withstand repeated pressure and tension. This structure allows the adjustable connector 6 to achieve flexible angle adjustment by connecting to the spring support 10. The spring support 10, with its toughness, can provide stable support at different angles, ensuring that the adjustable connector 6 can be adjusted in angle according to user needs and remain in the adjusted position. This not only enhances flexibility but also... The connection stability between the support plate assembly and the bracket 3 allows the entire assembly to adaptively adjust to the optimal fitting angle according to the user's body contour. Elastic retaining rings 9 are symmetrically welded and fixed to the upper inner side of the side portion of the bracket 3. The outer end of the elastic retaining ring 9 has a compression opening, and the elastic retaining ring 9 matches the handle structure at the top of the remote control body 1. Furthermore, several magnetic strips 13 are evenly bonded and fixed to the inner side of the side portion of the bracket 3. This structure allows the elastic retaining ring 9 to engage with the handle at the top of the remote control body 1, ensuring that the remote control body 1 is securely fixed to the bracket 3. To prevent it from shaking or accidentally falling off during user movement, the magnetic strip 13 can attract some metal parts on the outer surface of the remote control body 1, further enhancing the connection stability between the remote control body 1 and the support bracket 3, making the support bracket 3's support for the remote control body 1 more secure and reliable. Both the outer support plate 7 and the inner support plate 8 are arc-shaped structures. A skin-friendly fabric padding material is adhered and fixed to the inner wall of the inner support plate 8. Several telescopic columns 12 are connected around the outer support plate 7 and the inner support plate 8. The telescopic ends of the telescopic columns 12 are welded and fixed to the outer support plate 7. The telescopic column 12 has a spring sleeve on its telescopic section. The curved design of the outer support plate 7 and inner support plate 8 conforms to the human body's curves, ensuring comfort and stability. The inner support plate 8 directly conforms to the human body, providing basic fit and support, while the outer support plate 7 is located outside the inner support plate 8 and provides further protection and support through several telescopic columns 12. The telescopic columns 12 not only allow for fine-tuning between the outer support plate 7 and inner support plate 8 according to the human body's curves to adapt to different body shapes and postures, but also effectively absorb impact and vibration, further reducing discomfort transmitted to the user.
[0019] Working principle: When using this wearable wireless remote control structure, first place the remote control body 1 in the support bracket 3, ensuring that the elastic retaining ring 9 engages with the handle at the top of the remote control body 1. Simultaneously, use the magnetic strip 13 to enhance the fixing effect. Then, suspend the entire device around the neck using the suspension strap 2, allowing the support bracket 3 to naturally conform to one side of the body. The bottom buffer seat 4 and side buffer seats 5 provide support and protection at the bottom and sides of the support bracket 3, respectively. Next, adjust the position of the flexible support plate assembly so that the inner support plate 8 conforms to the curve of the human body, and the outer support plate 7 is located outside the inner support plate 8. This is achieved through the telescopic column 12. Fine-tuning is performed to adapt to different body shapes. Next, elastic bandages 11 are wrapped around and secured to the body to ensure that the entire device fits the body securely. The Velcro and adhesive sides of each set of elastic bandages 11 can be easily and quickly fixed. When operation is required, the outer support plate 7 and inner support plate 8 can be adaptively adjusted according to the curve of the human body through the action of adjustable connector 6 and elastic support 10, ensuring optimal wearing comfort and operational flexibility. Throughout the process, the synergistic effect of the above components achieves a stable and comfortable wearing experience, thereby completing a series of tasks.
[0020] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A wearable wireless remote control structure, comprising a remote control body (1), wherein a suspension strap (2) is connected between the two upper sides of the remote control body (1), characterized in that: The back of the remote control body (1) is provided with an "L"-shaped support bracket (3). The bottom inner wall and the side inner wall of the support bracket (3) are respectively provided with a bottom buffer seat (4) and a side buffer seat (5). The side outer wall of the support bracket (3) is connected to a flexible support plate assembly adapted to the curve of the human body through an adjustable connector (6). The flexible support plate assembly is composed of an outer support plate (7) and an inner support plate (8). Both sides of the inner support plate (8) are provided with elastic bandages (11).
2. The wearable wireless remote control structure according to claim 1, characterized in that: The bottom buffer seat (4) is a U-shaped structure and is welded and fixed to the inner wall of the bottom part of the support bracket (3). The side buffer seat (5) is a rectangular structure and is welded and fixed to the inner walls of both sides of the side part of the support bracket (3). Elastic buffer pads are glued and fixed to the inner sides of both the bottom buffer seat (4) and the side buffer seat (5).
3. The wearable wireless remote control structure according to claim 1, characterized in that: The support bracket (3) has notches at both the upper and lower ends of its lateral side portion, and the lateral side portion of the support bracket (3) has an elastic support member (10) connected to the adjustable connector (6) inside the notch.
4. The wearable wireless remote control structure according to claim 1, characterized in that: The support bracket (3) has elastic retaining rings (9) symmetrically arranged on the upper inner side of the side portion, and the elastic retaining rings (9) match the handle structure on the top of the remote control body (1). Furthermore, the support bracket (3) has several magnetic strips (13) evenly arranged on the inner side of the side portion.
5. The wearable wireless remote control structure according to claim 1, characterized in that: Both the outer support plate (7) and the inner support plate (8) are arc-shaped structures, and a number of telescopic columns (12) are connected around the outer support plate (7) and the inner support plate (8), and springs are sleeved on the telescopic sections of the telescopic columns (12).
6. The wearable wireless remote control structure according to claim 1, characterized in that: The two ends of the adjustable connector (6) are respectively connected to the support bracket (3) and the outer support plate (7) by pivot pins, and the adjustable connector (6) is symmetrically distributed between the support bracket (3) and the outer support plate (7).