Smart wearable device head charging box

CN224709385UActive Publication Date: 2026-09-01SHENZHEN AFFECTION INTERACTIVE TECH CO LTD
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Patent Information

Application Number
CN202521720930.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2026-09-01
Estimated Expiration
2035-08-13

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供智能穿戴设备机头充电箱,旨在解决现有技术中,智能穿戴设备机头充电箱的适配性不足的问题

Benefits of technology

[0016]与现有技术相比,本实用新型提供的智能穿戴设备机头充电箱,需要充电时,智能穿戴设备置于置放槽,各个置放槽的布局有助于降低占用空间,同等放置空间下,增大充电箱的充电数量,满足多机头同步充电,同时,通过充电部件和吸附部件的配合,实现对机头的吸附和导通,提高机头的放置稳定性以及有助于保障机头的充电作业,并且,通过不同的置放槽实现单个机头或多个机头同步充电,满足不同的充电需求,再者,通过更换不同的置放板,满足不同规格的机头进行充电,适配性更强,适用性更广,满足多种不同的规格机头的充电需求,降低充电成本。

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Abstract

This utility model relates to the technical field of head charging boxes for smart wearable devices, disclosing a head charging box for smart wearable devices. It includes a main body, a placement plate, and multiple charging heads. The main body and the placement plate are arranged in an assembled or separate manner. The placement plate has multiple placement slots, and each charging head is respectively installed on the placement plate. Each charging head includes a charging component and an adsorption component. The placement slots are used to place and position the head, the charging component is inserted into the head and used for charging, and the adsorption component is used to adsorb the head. When charging is required, the charging component and the adsorption component work together to achieve adsorption and conductivity of the head, improving the placement stability of the head. Furthermore, different placement slots allow for simultaneous charging of a single head or multiple heads, meeting different charging needs. Moreover, by replacing different placement plates, different sizes of heads can be charged, resulting in stronger adaptability and wider applicability, meeting the charging needs of various head sizes and reducing charging costs.
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Description

Technical Field

[0001] This utility model patent relates to the technical field of head unit charging boxes, and more specifically, to head unit charging boxes for smart wearable devices. Background Technology

[0002] Smart wearable devices refer to devices that use wearable technology to intelligently configure people's daily wear, embedding various sensors, recognition, connectivity and cloud services into people's glasses, watches, bracelets and other everyday wearables. They are characterized by small size, light weight and high level of informatization.

[0003] Currently, smart wearable devices need to be charged to ensure their continuous use. To improve charging efficiency, charging boxes are used to charge multiple smart wearable devices simultaneously. For example, the prior patent with authorization announcement number CN209488220U discloses a smart watch charging box, which includes: a base, a box body, and multiple charging plates; the box body is fixed on the base; multiple charging plates are disposed in the box body, and each charging plate has multiple charging positions; each charging position is provided with charging pins.

[0004] In existing technologies, charging boxes are large in size, inconvenient to carry, and easily restricted by the place of use, making it inconvenient to charge smart wearable devices. At the same time, the charging boxes are only compatible with a single type of smart wearable device, resulting in insufficient compatibility and low applicability, making it difficult to meet various different charging needs. Utility Model Content

[0005] The purpose of this utility model is to provide a charging box for smart wearable devices, aiming to solve the problem of insufficient compatibility of existing charging boxes for smart wearable devices.

[0006] This utility model is implemented as follows: a charging box for a smart wearable device includes a box body, a placement plate, and multiple charging heads. The box body and the placement plate are arranged in an assembled or separate manner. The placement plate has multiple placement slots, and each charging head is respectively installed on the placement plate. Each placement slot corresponds to and is connected to each charging head. Each charging head includes a charging component and an adsorption component. The placement slot is used to place and position the device head. The charging component is inserted into the device head and used for charging the device head. The adsorption component is used to adsorb and position the device head.

[0007] Furthermore, the main body of the box includes a box shell and a plurality of support columns. The interior of the box shell forms a cavity. The placement plate is horizontally placed in the cavity. The support columns are located in the cavity, and the lower part of the support columns is arranged to meet the box shell. The upper part of the support columns extends longitudinally to support the placement plate. The placement plate has mounting holes that are arranged through the box. A fastener passes through the mounting holes and is threadedly connected to the support columns.

[0008] Furthermore, the main body of the box includes multiple plate posts, each plate post corresponding to and connected to each of the support posts. The lower part of the plate post is fixedly connected to the support post, and the upper part of the plate post extends vertically away from the support post. The plate post is used to embed the placement plate.

[0009] Furthermore, the placement plate has multiple fixed slots, each fixed slot and each placement slot are arranged in a one-to-one correspondence and in communication, and the slot wall of the fixed slot is used to constrain the side of the positioning head.

[0010] Furthermore, the main body of the box includes a box cover, which is hinged to the box shell and is either closed or open; the box cover is provided with a cover plate, which is flat and elastically arranged, and is used to lay flat to apply a pressure and positioning force to the machine head.

[0011] Furthermore, the smart wearable device head charging box includes a control bus module, which is located below the placement plate and mounted on the placement plate. Each charging head is connected in parallel with the control bus module.

[0012] Furthermore, the charging box for the smart wearable device includes a gateway component and a power supply component. The power supply component and the gateway component are arranged in a circuit connection, and the power supply component is used to supply power to the gateway component. The gateway component is used to complete the conversion of different network protocols and communication connection, and the gateway component and the power supply component are respectively arranged in a connection with the control bus module.

[0013] Furthermore, the smart wearable device head charging box includes an OTA module, which is assembled and connected to the gateway component, and is also connected to the control bus module. The OTA module is used for remote batch upgrades of the head's firmware.

[0014] Furthermore, the charging case for the smart wearable device includes an antenna component, which is used for receiving and transmitting data from one or a combination of Bluetooth, LoRa, LoRa WAN, WIFI, NB, CATI, CATM, 4G, 5G, and satellite communication. The main body of the case includes an antenna connector, which is mounted on the placement plate and is arranged in communication with the gateway component. The antenna connector is used to assemble the antenna component.

[0015] Furthermore, the charging case for the smart wearable device includes dual USB slots, which are connected to the control bus module and are used for charging external devices and upgrading the devices.

[0016] Compared with existing technologies, the smart wearable device charging box provided by this utility model allows the smart wearable device to be placed in the placement slot when charging is needed. The layout of each placement slot helps to reduce the space occupied, and increases the number of devices that can be charged in the same space, satisfying the simultaneous charging of multiple devices. At the same time, the cooperation between the charging component and the adsorption component realizes the adsorption and conduction of the device, improving the placement stability of the device and helping to ensure the charging operation of the device. Furthermore, the simultaneous charging of a single device or multiple devices can be achieved through different placement slots to meet different charging needs. Moreover, by replacing different placement plates, different specifications of devices can be charged, making it more adaptable and applicable, meeting the charging needs of various different specifications of devices, and reducing charging costs. Attached Figure Description

[0017] Figure 1 This is a three-dimensional schematic diagram of a first embodiment of the placement plate of the charging box for the head of the smart wearable device provided by this utility model; Figure 2 This is an exploded view of Embodiment 1 of the placement plate of the charging box for the head of the smart wearable device provided by this utility model; Figure 3 This is a partially enlarged schematic diagram of the placement plate of the charging box for the head unit of the smart wearable device provided by this utility model; Figure 4 This is a cross-sectional schematic diagram of the charging box for the head unit of the smart wearable device provided by this utility model; Figure 5 This is a layout diagram of the control combiner module and gateway component of the head charging box of the smart wearable device provided by this utility model; Figure 6 This is a schematic diagram of the layout of the charging head and control busbar module of the smart wearable device charging box provided by this utility model; Figure 7 This is a three-dimensional schematic diagram of the second embodiment of the placement plate of the charging box for the head of the smart wearable device provided by this utility model; Figure 8 This is a three-dimensional schematic diagram of the second embodiment of the placement plate of the charging box for the head of the smart wearable device provided by this utility model; Figure 9 This is a three-dimensional schematic diagram of the placement plate of the charging box for the head of the smart wearable device provided by this utility model; Figure 10 This is a three-dimensional schematic diagram of the fourth embodiment of the placement plate of the charging box for the head of the smart wearable device provided by this utility model; Figure 11 This is a three-dimensional schematic diagram of Embodiment 5 of the placement plate of the charging box for the head unit of the intelligent wearable device provided by this utility model; Figure 12 This is a three-dimensional schematic diagram of Embodiment Six of the placement plate of the charging box for the head of the smart wearable device provided by this utility model. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0019] The implementation of this utility model will be described in detail below with reference to specific embodiments.

[0020] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0021] Reference Figure 1-12 The image shown is a preferred embodiment of the present invention.

[0022] The charging box for smart wearable devices includes a main body 1, a placement plate 2, and multiple charging heads 3. The main body 1 and the placement plate 2 are arranged either assembled or separately. The placement plate 2 has multiple placement slots 21. Each charging head 3 is installed on the placement plate 2, and each placement slot 21 corresponds to each charging head 3. Each charging head 3 includes a charging component and an adsorption component. The placement slots 21 are used to place and position the device head. The charging component is inserted into the device head and used to charge the device head. The adsorption component is used to adsorb and position the device head.

[0023] The aforementioned smart wearable device charging box allows the smart wearable device to be placed in the placement slot 21 when charging is required. The layout of each placement slot helps to reduce the space occupied and increases the number of devices that can be charged in the same space, satisfying the simultaneous charging of multiple devices. At the same time, the combination of charging components and adsorption components enables the adsorption and conduction of the device, improving the placement stability of the device and helping to ensure the charging operation of the device. Furthermore, different placement slots 21 can be used to achieve simultaneous charging of a single device or multiple devices, meeting different charging needs. Moreover, by replacing different placement plates 2, different specifications of devices can be charged, making it more adaptable and applicable, meeting the charging needs of various different specifications of devices, and reducing charging costs.

[0024] The charging component includes multiple charging pins arranged longitudinally and used to conduct electricity with the head. The adsorption component includes several adsorption magnets, with each charging pin positioned between the adsorption magnets. The adsorption magnets are used to synchronously adsorb and attach to the head. Under the action of the adsorption magnets, the conductivity between the charging pins and the head is ensured to guarantee the normal charging of the head.

[0025] The main body 1 of the box includes a box shell 11 and a plurality of support columns 13. The inside of the box shell 11 forms a cavity. The placement plate 2 is placed horizontally in the cavity. The support columns 13 are located in the cavity, and the lower part of the support column 13 is arranged to meet the box shell 11. The upper part of the support column 13 extends longitudinally or laterally to support the placement plate 2. The placement plate 2 has mounting holes, which are arranged in a through manner. The fasteners pass through the mounting holes and are threadedly connected to the support columns 13.

[0026] In this way, the support and assembly of the placement plate 2 are achieved under the action of each support column 13. Through cooperation with the fasteners, the assembly and disassembly of the placement plate 2 are realized, so as to meet the needs of use and replacement of the placement plate 2.

[0027] The fastener can be a screw. By rotating the screw, the placement plate 2 and each support column 13 can be arranged in a relatively fixed or relatively movable manner, thereby enabling the assembly and disassembly of the placement plate 2.

[0028] The support column 13 includes multiple plate-fixed columns, each plate-fixed column corresponding to and connected to each support column 13. The lower part of the plate-fixed column is fixedly connected to the support column 13, and the upper part of the plate-fixed column extends vertically in a direction away from the support column 13. The plate-fixed column is used to embed the mounting plate 2.

[0029] In this way, the plate-fixing column acts to limit the displacement and reinforce the placement plate 2, thereby enhancing the assembly stability between the support column 13 and the placement plate 2.

[0030] The placement plate 2 has multiple fixed slots 22, each fixed slot 22 is arranged in a one-to-one correspondence with each placement slot 21 and is connected. The slot wall of the fixed slot 22 is used to constrain and position the side of the machine head. Under the action of the fixed slot 22, the placement of the machine head plays a role in positioning and limiting the offset, which facilitates the connection between the machine head and the charging head 3 and ensures that the charging head 3 charges the machine head.

[0031] The main body of the box 1 includes a box cover 12, which is hinged to the box shell 11 and is either closed or open. The box cover 12 is provided with a cover plate, which is flat and elastically arranged. The cover plate is used to lay flat and apply pressure and positioning force to the machine head.

[0032] In this way, through the cooperation of the lid 12 and the shell 11, when charging is needed or when the head needs to be retrieved, the lid 12 and the shell 11 are in an open state, which facilitates the placement and retrieval of the head; during charging or when carrying and transferring, the lid 12 and the shell 11 are in a closed state, which serves to fix the head to prevent collision, and provides waterproof, fireproof and flame-retardant functions, thereby improving the charging safety of the smart wearable device head charging box.

[0033] Meanwhile, the cover plate enhances the stability of the charging head, preventing it from shifting or sliding and causing a disconnection from the charging module, thus ensuring the normal progress of the charging process. Additionally, the cover plate protects the charging head during transport.

[0034] The placement plate 2 has multiple module slots, and each charging head 3 is arranged in a one-to-one correspondence with each module slot. The charging head 3 is snapped into the module slot, so that the charging head 3 can be assembled through the module slot.

[0035] The module slot and the placement slot are connected, which facilitates the connection between the charging head 3 and the device head, thus facilitating the placement of the device head and the charging head 3 to charge the device head.

[0036] The charging box for smart wearable devices includes a control bus module 5, which is located below and mounted on the placement plate 2. Each charging head 3 is connected in parallel to the control bus module 5. In this way, the control bus module 5 executes charging commands and controls the transmission. Furthermore, since each charging head 3 is connected in parallel to the control bus module 5, each device can be charged individually or synchronously. The control bus module 5 also serves as a busbar to meet the charging needs of multiple devices with different numbers of devices under high current.

[0037] The charging box for the smart wearable device includes a gateway component 6 and a power supply component 7. The power supply component 7 and the gateway component 6 are arranged in a circuit connection, and the power supply component 7 is used to supply power to the gateway component 6. The gateway component 6 is used to complete the conversion of different network protocols and external communication connections. The gateway component 6 and the power supply component 7 are respectively arranged in a connection with the control bus module 5.

[0038] In this way, the power supply component 7 provides power to the gateway component 6, which facilitates network protocol conversion and communication in the gateway component 6, enables data transmission between the control bus module 5 and the backend server, and also enables remote data transmission.

[0039] The gateway device 6 uses control commands to batch distribute user information and heart rate warning thresholds stored in the head unit, and transmits them to the backend through the gateway device 6 to monitor the user's health status.

[0040] Gateway component 6 enables batch synchronization of the local time of smart wearable devices based on control commands, meeting various monitoring needs.

[0041] By using the gateway device 6 in conjunction with a network cable or PoE, data can be reported to the backend server or platform to achieve remote data transmission.

[0042] The charging box for the smart wearable device head includes an OTA module. The OTA module is assembled and connected to the gateway component 6, and the OTA module is connected to the control bus module 5. The OTA module is used for remote batch upgrades of the head's firmware.

[0043] With the help of the OTA module, the head unit can also upgrade data during the charging process, realizing software or version updates and hardware firmware upgrades.

[0044] The OTA module is used for batch setting of certain parameters, such as heart rate warning alarm values, to achieve parameter settings for the head unit.

[0045] The OTA module is used by users to transmit internal historical data of smart wearable devices in batches, such as terminal-collected data such as heart rate, blood oxygen, respiration, pressure, and fatigue.

[0046] The charging box for the smart wearable device includes an antenna component 4, which is used for receiving and transmitting data from one or a combination of Bluetooth, LoRa, LoRa WAN, WIFI, NB, CATI, CATM, 4G, 5G, and satellite communication. The main body 1 includes an antenna connector, which is mounted on a placement plate 2 and is connected to a gateway component 6. The antenna connector is used to assemble the antenna component 4.

[0047] In this way, by equipping antenna element 4, it is helpful to increase the data reception distance and meet the requirement of receiving Bluetooth signal data at a greater distance.

[0048] The charging case for the smart wearable device includes dual USB slots, which are connected to the control bus module 5. The dual USB slots are used for charging external devices and upgrading the devices. In this way, the dual USB slots enable charging of external devices, enhancing the charging scenarios of the charging case and making it more widely applicable. At the same time, it enables system upgrades or updates of the smart wearable device.

[0049] External devices include mobile phones and tablets, and external devices include UV disinfection lamps.

[0050] The UV ultraviolet disinfection lamp can disinfect the main body 1, the placement plate 2, and each charging head 3. At the same time, it can also disinfect the charging heads placed on the placement plate 2.

[0051] Example 1 of support column 13: The main body of the box 1 includes a box shell 11 and four support columns 13. The four support columns 13 are arranged in a corresponding manner at the four corners. The four support columns 13 support and assemble the placement plate 2. The four fasteners cooperate with the four support columns 13 one by one to ensure the stability of the assembly of the placement plate 2.

[0052] Example 2 of support column 13: The main body of the box 1 includes a box shell 11 and two support columns 13. The two support columns 13 are arranged at intervals and are arranged in a long strip shape. The support and assembly of the placement plate 2 are achieved through the two support columns 13.

[0053] Two fasteners cooperate with the support column 13, and the placement plate 2 is secured by four fasteners to ensure the assembly stability of the placement plate 2.

[0054] The support column 13 has a column hollow groove, which reduces its weight and makes it easier to carry and move the charging box of the smart wearable device head.

[0055] Example 1 of placement board 2: The placement slot 21 is approximately circular, and the end of the placement slot 21 is aligned with the charging head 3. The charging head 3 and the end of the placement slot 21 are aligned and connected. Thus, when the head is placed in the placement slot 21, the charging component is in contact with the head and the adsorption component is adsorbed onto the head, thereby achieving stable placement of the head and charging of the head.

[0056] It is compatible with the C3 model head for single charging or multiple simultaneous charging.

[0057] Example 2 of placement board 2: The placement slot 21 has a placement space, and the charging head is placed in the placement space, which is arranged above the charging head 3. In this way, when the charging head is placed in the placement slot 21, the charging component is in contact with the charging head and the adsorption component is adsorbed to the charging head. At the same time, the weight of the charging head is used to improve the stability of the charging head and enhance the charging stability of the charging head.

[0058] Different mounting slots 21 are provided to match different specifications of the charging heads, so as to meet the charging needs of different specifications of charging heads.

[0059] It is compatible with models J1 and J2 for single charging or multiple simultaneous charging.

[0060] Example 3 of placement plate 2: The placement slot 21 tends to be elliptical, and the end of the placement slot 21 is aligned with the charging head 3. The charging head 3 and the end of the placement slot 21 are aligned and connected. In this way, when the head is placed in the placement slot 21, the charging component is in contact with the head and the adsorption component is adsorbed onto the head, so as to achieve stable placement of the head and charging of the head.

[0061] It is compatible with C1 and C5 models for single charging or multiple simultaneous charging.

[0062] Example 4 of placement plate 2: The placement trough 21 includes a lower trough and an upper trough, which are arranged in a concave manner facing downwards. The lower trough and the upper trough are connected and arranged in a stepped manner. The charging head 3 is arranged in a corresponding manner with the upper trough. During charging, the charging head is placed in the lower trough and the upper trough simultaneously, and the charging part of the charging head is arranged in an overlapping and contacting manner with the charging head 3.

[0063] In this way, the combined effect of the lower and upper sinking troughs enhances the stability of the charging head and ensures normal charging of the charging head.

[0064] It is compatible with the X7 model head for single charging or simultaneous charging of multiple devices.

[0065] Example 5 of placement plate 2: The placement slot 21 is equipped with a fastener housing, which has a fastener slot for placing and fixing the machine head, thereby enhancing the stability of the machine head placement.

[0066] The firmware shell has multiple fixed posts, each located in a firmware slot and arranged vertically. The fixed posts are used to embed and position the machine head, thereby improving the stability of the machine head. Alternatively, the fixed posts are arranged correspondingly along the outer surface of the machine head, and the fixed posts are arranged in abutting position against the outer surface of the machine head, thereby improving the stability of the machine head.

[0067] The firmware housing includes a firmware platform, which extends in a long strip shape. The charging head 3 is mounted on the firmware platform, and the adsorption component is flush with or overlapped with the upper surface of the firmware platform. The charging component extends upward through the firmware platform. Under the action of the firmware platform, the stability of the charging component is enhanced, and the firmware platform protects the charging component and improves its service life.

[0068] It is compatible with X5 and X6 models for single charging or simultaneous charging of multiple devices.

[0069] Example 6 of placement plate 2: The placement slot 21 is arranged in a rectangular shape, and the charging head 3 is arranged inside the placement slot 21. When only the head is being charged, the head is placed in the placement slot 21, and the head and the charging head 3 are stacked and connected vertically. With the weight of the head, the head and the charging head 3 are ensured to make contact and conduction.

[0070] It is compatible with the C2 model head for single charging or multiple simultaneous charging.

[0071] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A charging case for a smart wearable device, characterized in that, The device includes a main body, a placement plate, and multiple charging heads. The main body and the placement plate are arranged either assembled or separately. The placement plate has multiple placement slots, and each charging head is respectively installed on the placement plate. Each placement slot corresponds to and is connected to each charging head. Each charging head includes a charging component and an adsorption component. The placement slot is used to place and position the charging head. The charging component is inserted into the charging head and used to charge the charging head. The adsorption component is used to adsorb and position the charging head.

2. The charging case for the head unit of the smart wearable device as described in claim 1, characterized in that, The main body of the box includes a box shell and multiple support columns. The inside of the box shell forms a cavity. The placement plate is placed horizontally in the cavity. The support columns are located in the cavity, and the lower part of the support columns is arranged to meet the box shell. The upper part of the support columns extends longitudinally to support the placement plate. The placement plate has mounting holes that are arranged through the box. A fastener passes through the mounting holes and is threadedly connected to the support columns.

3. The charging case for the head unit of the smart wearable device as described in claim 2, characterized in that, The main body of the box includes multiple plate posts, each plate post corresponding to and connected to each of the support posts. The lower part of the plate post is fixedly connected to the support post, and the upper part of the plate post extends vertically away from the support post. The plate post is used to embed the placement plate.

4. The charging case for the head unit of the smart wearable device as described in claim 2, characterized in that, The placement plate has multiple fixed slots, each fixed slot and each placement slot are arranged in a one-to-one correspondence and in communication, and the slot wall of the fixed slot is used to constrain the side of the positioning head.

5. The charging case for the head unit of the smart wearable device as described in claim 4, characterized in that, The main body of the box includes a box cover, which is hinged to the box shell and is either closed or open. The box cover is provided with a cover plate, which is flat and elastically arranged. The cover plate is used to lay flat and apply a pressure and positioning force to the machine head.

6. The charging case for the head unit of the smart wearable device as described in any one of claims 1-5, characterized in that, The smart wearable device charging box includes a control bus module, which is located below the placement plate and mounted on the placement plate. Each charging head is connected in parallel with the control bus module.

7. The charging case for the head unit of the smart wearable device as described in claim 6, characterized in that, The charging box for the smart wearable device includes a gateway component and a power supply component. The power supply component and the gateway component are arranged in a circuit connection, and the power supply component is used to supply power to the gateway component. The gateway component is used to complete the conversion of different network protocols and communication connection. The gateway component and the power supply component are respectively arranged in a connection with the control bus module.

8. The charging case for the head unit of the smart wearable device as described in claim 7, characterized in that, The smart wearable device head charging box includes an OTA module, which is assembled and connected to the gateway component. The OTA module is used for remote batch upgrades of the head unit's firmware.

9. The charging case for the head unit of the smart wearable device as described in claim 7, characterized in that, The charging case for the smart wearable device includes an antenna component, which is used for receiving and transmitting data from one or a combination of Bluetooth, LoRa, LoRa WAN, WIFI, NB, CATI, CATM, 4G, 5G, and satellite communication. The main body of the case includes an antenna connector, which is mounted on the placement plate and is arranged in communication with the gateway component. The antenna connector is used to assemble the antenna component.

10. The charging case for the head unit of the smart wearable device as described in claim 6, characterized in that, The smart wearable device charging case includes dual USB slots, which are connected to the control bus module. The dual USB slots are used for charging external devices and upgrading the devices.

Citation Information

Patent Citations

  • Intelligent watch charging box

    CN209488220U