A smart jacket with pre-embedded wiring and interfaces
Patent Information
- Application Number
- CN202522184898.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-15
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-10-15
AI Technical Summary
[0003]传统智能外套的连接线路通常采用外置导线,外置导线裸露不仅影响美观,而且在日常穿戴的过程中容易受到摩擦、拉扯等外界因素的影响,导致线路损坏,从而导致接口连接不稳定,影响智能外套的使用效果
[0014]本实用新型通过预埋线路和接口的设计,有效解决了传统智能外套外置导线易损坏、连接不稳定的问题,预埋线路隐藏在衣体和衣袖的多层结构中,不仅保证了外观的美观性,还大大提高了线路的耐用性和稳定性,同时,防水接口使得设备连接更加便捷、安全,即使在恶劣的天气条件下也能保持良好的连接状态,通过石墨烯发热膜和温度传感器的配合,智能外套能够根据环境温度和用户需求自动调节温度,提供个性化的舒适穿着体验,中央控制器的无线通信功能使得用户可以通过手机应用程序对智能外套进行远程控制和健康数据监测,进一步提升了智能外套的实用性和智能化水平。
Smart Images

Figure CN224805962U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of smart jackets, specifically a smart jacket with pre-embedded wiring and interfaces. Background Technology
[0002] Smart jackets are innovative products that combine traditional clothing with modern technology. By embedding electronic components and sensors, they achieve a variety of intelligent functions, bringing users a brand-new experience. With built-in heating elements and sensors, smart jackets can automatically adjust the temperature according to the ambient temperature and user needs, providing a comfortable wearing experience. Some smart jackets have built-in health monitoring devices such as heart rate sensors, which can monitor the user's health data in real time and provide health advice through a mobile application.
[0003] Traditional smart jackets typically use external wires for connection. Exposed external wires not only affect the appearance, but are also susceptible to damage from external factors such as friction and pulling during daily wear, leading to unstable interface connections and affecting the performance of the smart jacket.
[0004] In summary, this utility model provides a smart jacket with pre-embedded wiring and interfaces to solve the above problems. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution:
[0006] A smart jacket with pre-embedded wiring and interfaces includes a smart jacket assembly comprising a jacket body, sleeves located on both sides of the jacket body, an outer pocket fixed to the outer side of the jacket body, and an inner pocket fixed to the inner side of the jacket body. The jacket body includes a back panel and a front panel fixed to both sides of the front of the back panel. Both the jacket body and the sleeves are provided with four layers: an outer outer layer, a wiring layer for embedding wiring, an insulating layer for protecting the wiring layer, and a comfortable inner lining layer. Functional components include pre-embedded wiring located in the wiring layer, a waterproof interface for connecting devices, a central controller for control, a graphene heating film for heating, a temperature sensor for monitoring temperature, and a charging power supply for providing power.
[0007] Furthermore, in this utility model, the sleeves are sewn to the garment body, a waterproof zipper is provided between the two front pieces and they are movably connected by the waterproof zipper, a placket is fixedly connected to one side of the back piece, and several outer pockets and inner pockets are provided.
[0008] Furthermore, in this utility model, the surface of the garment is fixedly connected with Velcro, which consists of a loop side and a hook side, with the loop side fixedly connected to the placket and the hook side fixedly connected to one side of the back piece.
[0009] Furthermore, in this utility model, the pre-embedded wiring includes a main line and branch lines. The main line is arranged longitudinally along the spine line of the garment, and the branch lines extend from the main line to each functional area. The pre-embedded wiring is connected to a waterproof interface. Several waterproof interfaces are provided and distributed at the cuffs of the sleeves, the back of the garment, the chest, and the shoulders. The central controller and the charging power supply are both connected to the main line through the waterproof interfaces.
[0010] Furthermore, in this invention, the graphene heating film and temperature sensor are both connected to the branch circuit through a waterproof interface, the central controller and the charging power supply are both located in the inner cavity of the inner pocket, and several graphene heating films and temperature sensors are provided, respectively located at the cuff of the sleeve, the back of the garment, the chest and the shoulder.
[0011] Furthermore, in this invention, the central controller consists of a microcontroller, a power management unit, and a wireless communication unit, wherein the wireless communication unit is Bluetooth and WiFi, and each waterproof interface is provided with multiple conductive contacts for power transmission and data communication.
[0012] Furthermore, in this invention, the embedded circuit is made of flexible conductive material, and the outer layer of the circuit is wrapped with an insulating protective layer.
[0013] Beneficial effects: This utility model has the following beneficial effects:
[0014] This invention effectively solves the problems of easily damaged and unstable connections of external wires in traditional smart jackets by using pre-embedded wiring and interface design. The pre-embedded wiring is hidden in the multi-layered structure of the body and sleeves, which not only ensures the aesthetics of the appearance but also greatly improves the durability and stability of the wiring. At the same time, the waterproof interface makes device connection more convenient and safer, and maintains a good connection even in harsh weather conditions. With the cooperation of graphene heating film and temperature sensor, the smart jacket can automatically adjust the temperature according to the ambient temperature and user needs, providing a personalized and comfortable wearing experience. The wireless communication function of the central controller allows users to remotely control the smart jacket and monitor health data through a mobile application, further enhancing the practicality and intelligence of the smart jacket. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the connection structure between the garment body and the sleeves of this utility model;
[0017] Figure 3This is a schematic diagram of the connection structure between the garment body and the functional components of this utility model;
[0018] Figure 4 This is a schematic diagram of the layered structure of the garment body of this utility model;
[0019] Figure 5 This is a schematic diagram of the system flow structure of this utility model.
[0020] In the picture:
[0021] 100. Smart jacket assembly; 110. Garment body; 111. Back panel; 112. Front panel; 113. Outer layer; 114. Circuit layer; 115. Insulation layer; 116. Lining layer; 120. Sleeve; 130. Outer pocket; 140. Inner pocket; 150. Waterproof zipper; 160. Placket; 170. Velcro; 200. Functional components; 210. Embedded wiring; 211. Main wiring; 212. Branch wiring; 220. Waterproof interface; 230. Central controller; 240. Graphene heating film; 250. Temperature sensor; 260. Charging power supply. Detailed Implementation
[0022] To better understand the technical content of this utility model, specific embodiments are described below in conjunction with the accompanying drawings. Various aspects of this utility model are described in this disclosure with reference to the accompanying drawings, which illustrate numerous illustrative embodiments. The embodiments of this disclosure are not necessarily defined to include all aspects of this utility model. It should be understood that the various concepts and embodiments described above, as well as those described in more detail below, can be implemented in any of many ways, because the concepts and embodiments disclosed in this utility model are not limited to any particular implementation. Furthermore, some aspects of this utility model can be used alone or in any suitable combination with other aspects disclosed in this utility model.
[0023] Example 1
[0024] like Figure 1-5As shown, this is the first embodiment of the present invention. This embodiment provides a smart jacket with pre-embedded wiring and interfaces, including a smart jacket assembly 100, including a body 110, sleeves 120 located on both sides of the body 110, an outer pocket 130 fixed to the outside of the body 110, and an inner pocket 140 fixed to the inside of the body 110. The body 110 includes a back piece 111 and a front piece 112 fixed to both sides of the front of the back piece 111. Both the body 110 and the sleeves 120 are provided with four layers, namely an outer layer 113, a wiring layer 114 for embedding wiring, an insulating layer 115 for protecting the wiring layer 114, and a comfortable inner lining layer 116. The functional component 200 includes pre-embedded wiring 210 located in the wiring layer 114, a waterproof interface 220 for connecting devices, a central controller 230 for control, a graphene heating film 240 for heating, a temperature sensor 250 for monitoring temperature, and a charging power supply 260 for providing power.
[0025] like Figure 1-5 As shown, the outer layer 113 provides basic protection and aesthetic design. Embedded wiring 210 is arranged in the wiring layer 114, achieving a concealed wiring layout. The insulation layer 115 prevents short circuits or leakage, ensuring safety. The inner lining layer 116 enhances wearing comfort and avoids direct skin contact with the wiring. Through this multi-layered structure, the wiring is completely encased within the clothing, solving both the aesthetic issue and enhancing the physical protection of the wiring. The main wiring 211 is arranged longitudinally along the spine, forming the main wiring trunk. Branch wiring 212 extends to various functional areas. All wiring uses flexible conductive materials, and the outer layer of the wiring is wrapped with an insulating protective layer. The combination of flexible materials and the embedded design gives the wiring good ductility and tensile strength, adapting to human movement. To meet the needs and reduce the risk of breakage, multiple waterproof interfaces 220 are distributed on the cuffs, back, chest, and shoulders of the sleeves 120, supporting power transmission and data communication. Various functional components are connected through the waterproof interfaces 220. The modular design facilitates the plugging and unplugging and replacement of functional components, enhancing the maintainability and expandability of the smart jacket. The central controller 230 and charging power supply 260 are centrally located in the inner pocket 140. The graphene heating film 240 and temperature sensor 250 are distributed in multiple key parts of the human body to achieve precise temperature control. Through the pre-embedded wiring 210, waterproof interfaces 220, and the synergy of flexible materials and multi-layer structure, the problem of exposed wiring in traditional smart jackets is effectively solved, improving the overall safety, stability, and aesthetics.
[0026] Example 2
[0027] Reference Figure 1-4 This is the second embodiment of the present invention, which is based on the previous embodiment.
[0028] In this embodiment, the sleeve 120 is sewn to the garment body 110, a waterproof zipper 150 is provided between the two front pieces 112 and is movably connected by the waterproof zipper 150, a placket 160 is fixedly connected to one side of the back piece 111, and several outer pockets 130 and inner pockets 140 are provided.
[0029] The surface of the garment body 110 is fixedly connected with Velcro 170, which consists of a napped side and a hook side. The napped side is fixedly connected to the placket 160, and the hook side is fixedly connected to the back piece 111 on one side.
[0030] like Figure 1-4 As shown, the waterproof zipper 150 allows the garment 110 to be easily opened and closed, facilitating the user's dressing and undressing as well as adjusting the internal central controller 230 and charging power supply 260. The waterproof zipper 150 also ensures the inside of the jacket remains dry in rainy or snowy weather, preventing damage to electronic components from moisture. The Velcro 170 further enhances the jacket's closure stability, ensuring it remains well-sealed, preventing cold air intrusion, and improving warmth. Furthermore, the multiple outer pockets 130 and inner pockets 140 not only meet the user's need for storing personal items but also provide a secure storage space for the central controller 230 and charging power supply 260, preventing damage caused by movement during wear. This also allows the user to easily access and replace the power supply at any time.
[0031] Example 3
[0032] Reference Figure 3 and 5 This is the third embodiment of the present invention, which is based on the first two embodiments.
[0033] In this embodiment, the pre-embedded wiring 210 includes a main wiring 211 and branch wiring 212. The main wiring 211 is arranged longitudinally along the spine line of the garment 110, and the branch wiring 212 extends from the main wiring 211 to each functional area. The pre-embedded wiring 210 is connected to the waterproof interface 220. Several waterproof interfaces 220 are provided and distributed at the cuffs of the sleeves 120, the back of the garment 110, the chest, and the shoulders. The central controller 230 and the charging power supply 260 are both connected to the main wiring 211 through the waterproof interface 220.
[0034] The graphene heating film 240 and the temperature sensor 250 are both connected to the branch line 212 through the waterproof interface 220. The central controller 230 and the charging power supply 260 are both located in the inner cavity of the inner pocket 140. Several graphene heating films 240 and temperature sensors 250 are provided, and they are respectively located at the cuff of the sleeve 120, the back of the garment 110, the chest and the shoulder.
[0035] The central controller 230 consists of a microcontroller, a power management unit, and a wireless communication unit. The wireless communication unit is Bluetooth and WiFi. A single waterproof interface 220 is provided with multiple conductive contacts for power transmission and data communication.
[0036] The pre-buried line 210 is made of flexible conductive material and is wrapped with an insulating protective layer.
[0037] like Figure 3 and 5 As shown, the design of the pre-embedded wiring 210 not only achieves a concealed wiring layout, but also ensures stable power supply and data communication for each functional component through the reasonable layout of the main wiring 211 and branch wiring 212. The main wiring 211 extends longitudinally along the spine line, serving as the core of the entire circuit. The branch wiring 212 branches off from the main wiring 211 and extends to functional areas such as the sleeves 120, back, chest, and shoulders, meeting the personalized needs of different parts. The waterproof interface 220, as a connection point, not only has excellent waterproof performance, but also achieves efficient power transmission and stable data communication through its multiple conductive contacts, further enhancing the functionality and reliability of the smart jacket. The precise distribution of the graphene heating film 240 and the temperature sensor 250 enables the smart jacket to sense the ambient temperature in real time and automatically adjust the heating power according to user needs, providing a personalized comfort experience. The central controller 230, through the integration of a microcontroller, power management unit, and Bluetooth and WiFi wireless communication modules, realizes intelligent management of various functions of the jacket.
[0038] In use, the garment body 110 is composed of a front piece 112 and a back piece 111 to form the main body of the garment. The sleeves 120 are sewn together with the garment body 110. The sleeves 120 and the garment body 110 have a four-layer structure, which facilitates the concealment of stitches. The outer pocket 130 is used for connecting external devices or quick access. The inner pocket 140 is used to hide and protect the central controller 230 and the charging power supply 260. The placket 160 and Velcro 170 are used to enhance the sealing.
[0039] The main circuit 211 is arranged along the spine, and the branch circuits 212 are distributed to the functional areas. The waterproof interfaces 220 are distributed at multiple points on the sleeves 120 and the body 110 to realize the pluggable connection of the functional modules. The central controller 230 integrates microcontroller, power management and wireless communication. The graphene heating film 240 is distributed in multiple parts to realize local or overall heating. The temperature sensor 250 monitors the temperature of the heating area in real time. Through the pre-embedded circuits 210, waterproof interfaces 220 and the synergy of flexible materials and multi-layer structure, the problem of exposed circuits in traditional smart jackets is effectively solved, and the overall safety, stability and aesthetics are improved.
[0040] All standard parts used in this application can be purchased from the market, and can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art. The control method is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art and is common knowledge in the field. Since this application is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail in this application.
[0041] Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Those skilled in the art to which this invention pertains can make various modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of this invention shall be determined by the claims.
Claims
1. A smart jacket with pre-embedded wiring and interfaces, characterized in that: include, The smart jacket assembly (100) includes a body (110), sleeves (120) located on both sides of the body (110), an outer pocket (130) fixed to the outside of the body (110), and an inner pocket (140) fixed to the inside of the body (110). The garment body (110) includes a back piece (111) and a front piece (112) fixed to both sides of the front of the back piece (111). The garment body (110) and the sleeves (120) are each provided with four layers, namely an outer outer layer (113), a wiring layer (114) for burying wires, an insulating layer (115) for protecting the wiring layer (114), and an inner lining layer (116) for providing comfort. The functional components (200) include embedded wiring (210) located in the wiring layer (114), a waterproof interface (220) for connecting the device, a central controller (230) for control, a graphene heating film (240) for heating, a temperature sensor (250) for monitoring temperature, and a charging power supply (260) for providing power.
2. The smart jacket with pre-embedded wiring and interfaces as described in claim 1, characterized in that: The sleeves (120) are sewn to the body (110), a waterproof zipper (150) is provided between the two front pieces (112), and they are movably connected by the waterproof zipper (150). A placket (160) is fixedly connected to one side of the back piece (111), and several outer pockets (130) and inner pockets (140) are provided.
3. The smart jacket with pre-embedded wiring and interfaces as described in claim 1, characterized in that: The surface of the garment body (110) is fixedly connected with Velcro (170), which consists of a fleece side and a hook side. The fleece side is fixedly connected to the placket (160), and the hook side is fixedly connected to the back panel (111) on one side.
4. The intelligent jacket with pre-embedded wiring and interfaces as described in claim 1, characterized in that: The pre-embedded wiring (210) includes a main line (211) and branch lines (212). The main line (211) is arranged longitudinally along the spine line of the garment (110). The branch lines (212) extend from the main line (211) to each functional area. The pre-embedded wiring (210) is connected to a waterproof interface (220). Several waterproof interfaces (220) are provided and distributed at the cuffs of the sleeves (120), the back of the garment (110), the chest, and the shoulders. The central controller (230) and the charging power supply (260) are both connected to the main line (211) through the waterproof interface (220).
5. The smart jacket with pre-embedded wiring and interfaces as described in claim 1, characterized in that: The graphene heating film (240) and temperature sensor (250) are both connected to the branch line (212) through a waterproof interface (220). The central controller (230) and charging power supply (260) are both located in the inner cavity of the inner pocket (140). Several graphene heating films (240) and temperature sensors (250) are provided, and they are respectively located at the cuff of the sleeve (120), the back of the garment (110), the chest, and the shoulder.
6. The smart jacket with pre-embedded wiring and interfaces as described in claim 1, characterized in that: The central controller (230) consists of a microcontroller, a power management unit and a wireless communication unit, and the wireless communication unit is Bluetooth and WiFi. Each waterproof interface (220) is provided with multiple conductive contacts for power transmission and data communication.
7. The smart jacket with pre-embedded wiring and interfaces as described in claim 1, characterized in that: The pre-embedded line (210) is made of flexible conductive material and is wrapped with an insulating protective layer.