All-in-one wireless charging device
The rotating storage mechanism of the all-in-one wireless charging device solves the problems of wireless charger compatibility and support angle, thereby improving portability and ease of use.
Patent Information
- Application Number
- CN202422745146.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-08
AI Technical Summary
Existing wireless chargers are not compatible with different types of electronic devices, forcing users to carry multiple chargers. Furthermore, the sliding structure design limits the support angle of the watch or increases the size of the charger, affecting convenience and user experience.
Design an all-in-one wireless charging device that includes a rotating storage mechanism. A power mechanism drives the support member to extend, retract, and rotate, thereby adjusting the angle of the support member. It is compatible with charging different types of electronic devices and can retract into the storage space to reduce its size when not in use.
It achieves automatic adjustment of the support angle during charging, making it convenient for users to view the content on the electronic device screen, while reducing the size of the device, making it easy to carry and use.
Smart Images

Figure CN223472060U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wireless charging technical field especially relates to a multi -in -one wireless charging device. BACKGROUND
[0002] With the development of wireless charging technology, more and more consumer electronics have wireless charging function, and different types of electronic products have different parameter configurations for wireless charging. For example, the wireless charging power of mobile phones is usually more than 15W, and the charging power of smart watches is usually only 5W. Moreover, different brands of products may use different charging protocols. Therefore, the wireless chargers for mobile phones and smart watches are usually not compatible, which makes users need to carry multiple chargers when traveling, affecting convenience.
[0003] To solve this problem, products with different specifications of wireless charging modules have appeared on the market, such as chargers with both mobile phone wireless charging modules and watch wireless charging modules. The watch wireless charging module is usually set in a sliding structure on one side of the charger. When the watch wireless charging module is needed, it is extended out of the charger, and when it is not needed, it is retracted into the charger to reduce the size. However, the sliding structure makes the watch wireless charging module only slide in and out horizontally, which limits the angle of support for the watch, making it difficult for users to view the content of the watch and miss important information. If the sliding structure is set obliquely in the charger, it will increase the size of the charger in the vertical direction, making it inconvenient for users to carry. SUMMARY
[0004] Therefore, the utility model provides a new multi -in -one wireless charging device to solve the above problems.
[0005] The application provides a multi -in -one wireless charging device, which comprises a first wireless charging module, a second wireless charging module, a base and a rotating storage mechanism. The rotating storage mechanism comprises a storage member, a supporting member and a power mechanism arranged between the storage member and the supporting member. The first wireless charging module is arranged on the supporting member, and the second wireless charging module is arranged on the top of the base. The storage member is installed on one side of the base, and the storage member is provided with a containing space connected with the outside. The supporting member is telescopically arranged in the containing space through the power mechanism. The power mechanism drives the supporting member to extend and retract relative to the storage member, and drives the supporting member to rotate relative to the storage member after the supporting member extends out of the containing space.
[0006] In an embodiment, the power mechanism comprises a driving member and a guiding limiting structure, the driving member is connected with the supporting member, the guiding limiting structure comprises a limiting sliding block arranged outside the supporting member and a limiting guide rail arranged in the receiving member, the limiting sliding block is slidably inserted into the limiting guide rail.
[0007] In an embodiment, the limiting guide rail comprises a guiding portion and a turning portion, the guiding portion and the turning portion are communicated, the guiding portion extends along the telescopic direction of the supporting member, and the turning portion is located at the outer end of the guiding portion and extends obliquely relative to the guiding portion.
[0008] In an embodiment, the limiting guide rail further comprises a positioning portion, the positioning portion is located at the end of the turning portion away from the guiding portion, and the positioning portion extends along the telescopic direction of the supporting member.
[0009] In an embodiment, the rotary receiving mechanism further comprises a telescopic member, the telescopic member is telescopically installed into the accommodating space of the receiving member, the driving member is located between the telescopic member and the receiving member, the supporting member is located at the side of the telescopic member away from the driving member and is rotationally connected with the telescopic member.
[0010] In an embodiment, the accommodating space is provided with a guiding member, the guiding member extends along the telescopic direction of the supporting member, the driving member comprises a spring, the spring is sleeved on the guiding member, the telescopic member is slidably sleeved on the guiding member and is connected with the spring.
[0011] In an embodiment, the telescopic member is provided with a first magnetic attraction member, the supporting member is provided with a second magnetic attraction member, the supporting member has a receiving state and a use state, in the receiving state, the first magnetic attraction member and the second magnetic attraction member are arranged in a staggered manner, and in the use state, the first magnetic attraction member and the second magnetic attraction member are arranged opposite to each other and are attracted to each other.
[0012] In an embodiment, the supporting member comprises a supporting body and a rotating shaft portion connected to one side of the supporting body, the first wireless charging module is arranged in the supporting body, the telescopic member is correspondingly provided with a shaft hole, and the rotating shaft portion is movably inserted into the shaft hole.
[0013] In an embodiment, the rotary receiving mechanism further comprises a lock catch assembly, the lock catch assembly comprises a movable clamping arm arranged in the receiving member and a positioning clamping block correspondingly arranged on the telescopic member, and the movable clamping arm can selectively clamp or release the positioning clamping block.
[0014] In an embodiment, the rotation angle of the supporting member relative to the receiving member is an acute angle.
[0015] In one embodiment, a main control circuit board is provided inside the base, and the first wireless charging module and the second wireless charging module are electrically connected to the main control circuit board respectively.
[0016] In one embodiment, a sliding conductive part and a fixed conductive part are provided in the accommodating space, the sliding conductive part is electrically connected to and slidably cooperates with the fixed conductive part, the first wireless charging module is electrically connected to the sliding conductive part, the main control circuit board is electrically connected to the fixed conductive part, and the fixed conductive part extends along the telescopic direction of the support member.
[0017] In one embodiment, a supporting base is further included which is mounted to the base. The supporting base includes a supporting body and a supporting shaft. The supporting shaft is rotatably connected to the base. The supporting body is provided with a third wireless charging module. The third wireless charging module is electrically connected to the main control circuit board.
[0018] The utility model provides an all-in-one wireless charging device, in which the supporting member can be extended and retracted relative to the accommodating space. When needed, the supporting member can be extended from the accommodating space, and when not in use, the supporting member can be retracted into the accommodating space. This can reduce the volume of the telescopic rotating assembly when not in use, making it convenient for users to carry. At the same time, a power mechanism is provided between the accommodating member and the supporting member, and the supporting member is movably connected to the accommodating member through the power mechanism. The power mechanism can drive the supporting member to extend and retract relative to the accommodating member, so that the supporting member is extended out of the accommodating space or retracted into the accommodating space. When the supporting member is outside the accommodating space, the power mechanism can drive the supporting member to rotate relative to the accommodating member, thereby automatically adjusting the supporting angle of the supporting member. This improves the supporting angle of the supporting member while taking into account the portability of the charger, making it convenient for users to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A schematic structural diagram of an all-in-one wireless charging device provided by one embodiment of the present invention;
[0020] Figure 2 for Figure 1 Schematic diagram of the all-in-one wireless charging device in use;
[0021] Figure 3 for Figure 1 A schematic structural diagram of the rotating storage mechanism of the all-in-one wireless charging device shown in FIG;
[0022] Figure 4 for Figure 3 Schematic diagram of the use state of the rotating storage mechanism shown in;
[0023] Figure 5 for Figure 4 An exploded schematic diagram of the rotating storage mechanism shown in FIG;
[0024] Figure 6 As Figure 4 The structural schematic view of the rotary storage mechanism shown in figure 1 is removed from the top cover.
[0025] Figure 7 As Figure 4 The structural schematic view of the rotary storage mechanism shown in figure 1 is removed from the bottom cover.
[0026] Figure 8 As Figure 5 The structural schematic view of the top cover shown in figure 1.
[0027] Figure 9 The structural schematic view of the rotary storage mechanism shown in figure 1 is removed from the top cover.
[0028] In the figure: 100, a multi-in-one wireless charging device; 1, a base; 10, a rotary storage mechanism; 11, a storage piece; 110, a containing space; 111, a bottom cover; 112, a top cover; 113, a second wireless charging module; 12, a supporting piece; 121, a main body part; 122, a rotating shaft part; 123, a second magnetic attraction piece; 124, a first wireless charging module; 13, a power mechanism; 131, a driving piece; 133, a limiting guide rail; 1331, a guide part; 1332, a turning part; 1333, a positioning part; 134, a limiting sliding block; 14, a lock catch assembly; 141, a movable clamping arm; 142, a positioning clamping block; 15, a telescopic piece; 151, a sliding part; 152, a sliding groove part; 153, a first magnetic attraction piece; 154, a limiting through hole; 16, a guide piece; 17, a sliding conductive part; 18, a fixed conductive part; 2, a bearing seat; 20, a bearing main body; 21, a bearing shaft; 22, a third wireless charging module. DETAILED DESCRIPTION
[0029] In the following, the utility model is further described in combination with the drawings and specific embodiments, and it should be noted that the following described embodiments or technical features can be combined to form new embodiments without conflict.
[0030] It should be noted that all directional indications (such as up, down, left, right, front, back, inner, outer, top, bottom, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly.
[0031] It should also be noted that when an element is referred to as being "fixed to" or "disposed on" another element, the element can be directly on the other element or there can be a middle element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be a middle element.
[0032] Referring to Figures 1 to 9 The utility model discloses a kind of multi-in-one wireless charging devices 100 provided in embodiment, including first wireless charging module 124, second wireless charging module 113, pedestal 1 and rotating storage mechanism 10, rotating storage mechanism 10 includes storage piece 11, supporting piece 12 and the power mechanism 13 between storage piece 11 and supporting piece 12, first wireless charging module 124 is located supporting piece 12, first wireless charging module 124 is, for example, watch wireless charging module, second wireless charging module 113 is located at the top of pedestal 1, second wireless charging module 113 is, for example, mobile phone wireless charging module or earphone wireless charging module, it is convenient for user to place mobile phone or earphone to the top of pedestal 1 and carry out wireless charging;Storage piece 11 is installed at one side of pedestal 1, storage piece 11 is equipped with with external communication's containing space 110, supporting piece 12 is telescopically installed in containing space 110 by power mechanism 13, power mechanism 13 drives supporting piece 12 to be telescopic to storage piece 11, and after supporting piece 12 is stretched out to the outside of containing space 110, power mechanism 13 drives supporting piece 12 to be rotated to storage piece 11, i.e., after supporting piece 12 is stretched out to the outside of pedestal 1, it is rotated to the plane that pedestal 1 is currently placed to form preset support angle, when being placed on supporting piece 12 to carry out wireless charging to the electronic equipment (for example, smart watch) to be charged, it can be convenient for user to view the information on the screen of electronic equipment with comfortable angle.
[0033] In the application embodiment, supporting piece 12 is telescopically installed in containing space 110, so that supporting piece 12 can be telescopic to containing space 110. One end of containing space 110 is open to the outside, and supporting piece 12 can be stretched out to the outside of containing space 110 or retracted into containing space 110, so when supporting piece 12 is needed, it can be stretched out to the outside of storage piece 11, and when it is not needed, it can be retracted into storage piece 11, so as to reduce the overall size of rotating storage mechanism 10 when not in use, making it convenient for users to carry and store.
[0034] Preferably, supporting piece 12 is rotationally connected with storage piece 11, and when supporting piece 12 is stretched out to the outside of storage piece 11, supporting piece 12 can be rotated relative to storage piece 11, so as to adjust the relative angle between supporting piece 12 and storage piece 11. It should be noted that supporting piece 12 being stretched out to the outside of storage piece 11 can mean that supporting piece 12 is entirely stretched out to the outside of storage piece 11, or that part of supporting piece 12 is stretched out to the outside of storage piece 11, as long as storage piece 11 does not hinder the rotation of supporting piece 12.
[0035] The support member 12 has a storage state and a use state. In the storage state, the support member 12 is stored in the accommodating space 110 and is relatively fixed with the storage member 11. In the use state, the support member 12 is extended to the outside of the accommodating space 110 and is rotated by a preset angle relative to the storage member 11.
[0036] After the rotating storage mechanism 10 is applied to the charger in the embodiment of the present application, the charger can support the electronic device to be charged by the support member 12, and make the electronic device in an inclined state during the charging process, so as to facilitate the user to watch the content displayed on the screen of the electronic device and avoid missing important information during the charging process of the electronic device.
[0037] In the embodiment of the present application, the support member 12 is telescopically arranged in the accommodating space 110 by the power mechanism 13. The power mechanism 13 can drive the support member 12 to extend or retract relative to the storage member 11, so as to make the support member 12 extend to the outside of the accommodating space 110 or retract into the accommodating space 110. Meanwhile, the power mechanism 13 can drive the support member 12 to rotate relative to the storage member 11 when the support member 12 extends to the outside of the accommodating space 110, so as to adjust the support angle of the support member 12 to the required support angle. By setting the power mechanism 13 to drive the support member 12 to extend or retract and rotate, the user does not need to manually rotate the support member 12 to adjust the support angle of the support member 12, which is convenient for the user to use. Moreover, during the process of pushing the support member 12 back to the accommodating space 110, the power mechanism 13 drives the support member 12 to automatically rotate back to the position before rotation, compared with the case that the user first rotates the support member 12 back to the position and then pushes the support member 12 back to the accommodating space 110, the user only needs to exert a pushing force on the support member 12 to drive the support member 12 to rotate back to the position and retract into the accommodating space 110, so that the user can avoid the influence of the support member 12 on the storage due to the improper operation or visual error and the like.
[0038] The power mechanism 13 drives the support member 12 to extend or retract relative to the storage member 11 along a first direction, and drives the support member 12 to rotate relative to the storage member 11 along a second direction. The second direction surrounds the outside of the first direction, that is, the central axis around which the support member 12 rotates is parallel to the extension direction of the support member 12.
[0039] Specifically, the profile shape of the storage member 11 is basically rectangular, the accommodating space 110 extends along the length direction of the storage member 11, and the support member 12 extends or retracts relative to the storage member 11 along the length direction of the storage member 11.
[0040] The rotation angle of the supporting member 12 relative to the receiving member 11 is an acute angle, and specifically, the angle range of the acute angle can be 30°-70°. Controlling the rotation angle of the supporting member 12 in the range can avoid too small or too large rotation angle of the supporting member 12, i.e., prevent too small or too large inclination degree of the supporting member 12, thereby preventing too small or too large inclination angle of the electronic device to affect the user to watch the display content of the electronic device. Preferably, the rotation angle of the supporting member 12 relative to the receiving member 11 is 50°.
[0041] In the embodiment of the present application, the power mechanism 13 includes a driving member 131 and a guide limiting structure. The driving member 131 is connected with the supporting member 12 to provide power for the supporting member 12, and drives the supporting member 12 to stretch and rotate. The guide limiting structure is arranged between the receiving member 11 and the supporting member 12. The guide limiting structure can form a guiding effect during the stretching of the supporting member 12, so that the supporting member 12 runs smoothly along the preset direction. Meanwhile, the guide limiting structure can also form a limiting effect after the supporting member 12 stretches out of the accommodating space 110, so that the supporting member 12 can be switched from the linear motion relative to the receiving member 11 to the rotation relative to the receiving member 11 under the driving of the driving member 131, to adjust the supporting angle of the supporting member 12.
[0042] It can be understood that the specific type of the driving member 131 is not limited, and can be an electric power driving member such as a motor or a pneumatic cylinder, or an elastic member such as a spring. In the present application, the driving member 131 is an elastic member. When the supporting member 12 is accommodated in the accommodating space 110, the elastic member is in a compressed state and generates an elastic potential energy, which can be used as a driving force to drive the supporting member 12 to stretch out of the accommodating space 110 and rotate relative to the receiving member 11. For the convenience of description, the driving member 131 is taken as an example in the following description, but it is not limited that the driving member must be an elastic member.
[0043] Specifically, the driving member 131 is a spring, one end of the spring is connected with the receiving member 11, the other end is connected with the supporting member 12, and the axial direction of the spring is consistent with the stretching direction of the supporting member 12. When the supporting member 12 is moved into the accommodating space 110 by an external force, the supporting member 12 will extrude the spring, so that the spring is contracted. When the external force acting on the supporting member 12 disappears, the spring returns to the initial state and drives the supporting member 12 to slide in the direction out of the accommodating space 110.
[0044] The rotating storage mechanism 10 further comprises a locking assembly 14, which has a locked state and an unlocked state. In the locked state, the support member 12 is stored in the storage space 110 and is relatively fixed with the storage member 11, i.e., the locking assembly 14 locks the support member 12 with the storage member 11 to relatively fix them. In the unlocked state, the support member 12 can move relative to the storage member 11, i.e., the locking assembly 14 is unlocked so that the support member 12 can move relative to the storage member 11. When the support member 12 is stored in the storage space 110, the locking assembly 14 can be in the locked state, so that the support member 12 is relatively fixed with the storage member 11 and is prevented from moving outward under the action of the driving member 131. When the support member 12 needs to be used, the locking assembly 14 can be switched from the locked state to the unlocked state, so that the relative fixation is released and the support member 12 automatically moves outward from the storage space 110 under the action of the driving member 131.
[0045] The specific manner in which the locking assembly 14 achieves locking and unlocking is not limited, as long as it can be switched between the locked state and the unlocked state. For example, the locking assembly 14 can achieve locking and unlocking through a buckle structure, a lock tongue and a lock hole, etc.
[0046] In the embodiment, the locking assembly 14 is switched between the locked state and the unlocked state by pressing the support member 12 into the storage space 110, i.e., the user can press the support member 12 to switch the locking assembly 14 from the locked state to the unlocked state or from the unlocked state to the locked state, so that the locking and unlocking operation is simple, i.e., one-key locking and unlocking, which is convenient for the user to use. Specifically, the locking assembly 14 comprises a movable clamping arm 141 arranged in the storage member 11 and a positioning clamping block 142 arranged on the support member 12. The positioning clamping block 142 can move relative to the storage member 11 together with the support member 12. The movable clamping arm 141 is elastic and can selectively clamp or release the positioning clamping block 142. When the movable clamping arm 141 clamps the positioning clamping block 142, the support member 12 is relatively fixed with the storage member 11 and the locking assembly 14 is in the locked state. When the movable clamping arm 141 releases the positioning clamping block 142, the support member 12 can move relative to the storage member 11 under the action of the driving member 131, and the locking assembly 14 is in the unlocked state. It should be noted that the positioning clamping block 142 is connected with the support member 12, which can be directly connected with the support member 12 or indirectly connected with the support member 12.
[0047] In the embodiment of the present application, the rotating storage mechanism 10 further comprises a telescopic member 15, which is slidably mounted to the accommodating space 110 of the storage member 11. The driving member 131 is located between the telescopic member 15 and the storage member 11, and the supporting member 12 is located on the outer side of the telescopic member 15, i.e., the side away from the driving member 131, and is rotationally connected with the telescopic member 15. One end of the driving member 131 is connected with the telescopic member 15, i.e., indirectly connected with the supporting member 12 through the telescopic member 15, and the other end is connected with the storage member 11. The telescopic member 15 can slide relative to the storage member 11 under the action of the driving member 131, and drive the supporting member 12 to slide together. When the supporting member 12 extends out of the storage member 11, the supporting member 12 rotates relative to the telescopic member 15 under the action of the driving member 131 and the guiding and limiting structure, so as to rotate relative to the storage member 11.
[0048] Specifically, the positioning clamping block 142 of the locking assembly 14 is fixed on the telescopic member 15, i.e., the movable part is indirectly connected with the supporting member 12 through the telescopic member 15.
[0049] The supporting member 12 comprises a supporting body 121 and a rotating shaft part 122 connected to one side of the supporting body 121. The telescopic member 15 is correspondingly provided with a shaft hole on the outer side, and the rotating shaft part 122 is movably inserted into the shaft hole, so that the rotating shaft part 122 is rotationally connected with the telescopic member 15. When the supporting body 121 extends out of the storage member 11, the supporting body 121 can rotate relative to the telescopic member 15 around the rotating shaft part 122. The central axis of the rotating shaft part 122 is parallel to the telescopic direction of the supporting body 121.
[0050] The specific position of the rotating shaft part 122 is not limited, which can be located at the end of the supporting body 121 or at the middle of the supporting body 121. In the embodiment of the present application, the rotating shaft part 122 and the shaft hole are respectively located at the end positions of the supporting body 121 and the telescopic member 15.
[0051] The accommodating space 110 is provided with a guiding member 16, which is fixed relative to the storage member 11. The guiding member 16 extends along the telescopic direction of the supporting member 12. The driving member 131 comprises a spring which is sleeved outside the guiding member 16. The telescopic member 15 is slidably sleeved outside the guiding member 16 and connected with the spring. By slidingly sleeving the telescopic member 15 outside the guiding member 16, the guiding member 16 can form a guiding effect during the sliding of the telescopic member 15 relative to the storage member 11, so that the telescopic member 15 and the supporting member 12 run more smoothly when they are telescopically extended relative to the storage member 11.
[0052] The specific number of the driving member 131 and the guiding member 16 is not limited, which can be one or multiple. Figure 6In the shown embodiment, the number of the driving member 131 and the guide member 16 is one, one end of the telescopic member 15 is slidably sleeved on the guide member 16, and the driving member 131 is sleeved outside the guide member 16 and connected with one end of the telescopic member 15. In the shown embodiment, the number of the driving member 131 and the guide member 16 is one, one end of the telescopic member 15 is slidably sleeved on the guide member 16, and the driving member 131 is sleeved outside the guide member 16 and connected with one end of the telescopic member 15. Figure 9 In another shown embodiment, the number of the guide member 16 and the driving member 131 is two, Figure 9 In the shown embodiment, the difference from other embodiments is only that the number of the guide member 16 and the driving member 131 is different, both ends of the telescopic member 15 are slidably sleeved on the guide member 16, each driving member 131 is sleeved outside a corresponding guide member 16, and two driving members 131 are connected with both ends of the telescopic member 15 respectively, and the two driving members 131 jointly push the telescopic member 15 and the supporting member 12 to slide, so that the telescopic member 15 and the supporting member 12 run more stably.
[0053] In the embodiment, the receiving member 11 comprises a bottom cover 111 and a top cover 112, the top cover 112 is covered on the bottom cover 111 and forms the accommodating space 110 together with the bottom cover 111, and the telescopic member 15 and the supporting member 12 are movably arranged between the bottom cover 111 and the top cover 112. The receiving member 11 is arranged as two parts of the bottom cover 111 and the top cover 112, so that the telescopic member 15, the supporting member 12 and the like can be conveniently installed.
[0054] The connection mode between the bottom cover 111 and the top cover 112 is not limited, for example, snap fit, glue fixing, mechanical fixing and the like. In the embodiment, the bottom cover 111 and the top cover 112 are fixed by fasteners such as screws.
[0055] The outer side of the telescopic member 15 is provided with a sliding part 151, the bottom cover 111 and / or the top cover 112 is provided with a sliding groove part 152, the sliding groove part 152 is communicated with the accommodating space 110 and extends along the telescopic direction of the supporting member 12, and the sliding part 151 is slidably inserted into the sliding groove part 152. When the telescopic member 15 slides relative to the receiving member 11, the sliding part 151 slides in the sliding groove part 152, so that the guiding effect is formed and the telescopic member 15 runs more stably.
[0056] Preferably, the relative two sides of the telescopic member 15 are respectively provided with the sliding part 151, and the relative two sides of the bottom cover 111 and / or the top cover 112 are correspondingly provided with the sliding groove part 152, and each sliding part 151 is inserted into a corresponding sliding groove part 152.
[0057] In the embodiment of the present application, the telescopic part 15 is provided with a first magnetic attraction part 153, and the supporting part 12 is provided with a second magnetic attraction part 123. When the supporting part 12 is in the storage state, the first magnetic attraction part 153 and the second magnetic attraction part 123 are arranged in a staggered manner. When the supporting part 12 is in the use state, the first magnetic attraction part 153 is arranged opposite to the second magnetic attraction part 123. When the first magnetic attraction part 153 and the second magnetic attraction part 123 are arranged in a staggered manner, the magnetic attraction force between the first magnetic attraction part 153 and the second magnetic attraction part 123 already exists. During the rotation process of switching the supporting part 12 from the storage state to the use state, the first magnetic attraction part 153 and the second magnetic attraction part 123 gradually approach each other, and the magnetic attraction force between them also becomes larger. The magnetic attraction force can assist the rotation of the supporting part 12 relative to the telescopic part 15, so that the supporting part 12 is quickly rotated to the position, and the first magnetic attraction part 153 and the second magnetic attraction part 123 are arranged opposite to each other, that is, the first magnetic attraction part 153 and the second magnetic attraction part 123 are aligned with each other. At this time, the magnetic attraction force between the first magnetic attraction part 153 and the second magnetic attraction part 123 is the largest, and at the same time, the stability of the supporting part 12 in the use state can be enhanced, and the risk of rotation of the supporting part 12 under the gravity of the electronic device can be reduced.
[0058] In the embodiment of the present application, the guide limiting structure includes a limiting guide rail 133 and a limiting sliding block 134. The limiting guide rail 133 is arranged in the inside of the storage part 11 and communicates with the accommodating space 110. The limiting sliding block 134 is correspondingly arranged on the outside of the supporting part 12 and can move together with the supporting part 12. The limiting sliding block 134 is slidably inserted into the limiting guide rail 133. When the supporting part 12 moves relative to the storage part 11 under the driving of the driving part 131, the supporting part 12 drives the limiting sliding block 134 to move, so that the limiting sliding block 134 slides in the limiting guide rail 133. The limiting sliding block 134 and the limiting guide rail 133 cooperate to form the effect of guiding and limiting.
[0059] The limiting guide rail 133 comprises a guide portion 1331 and a turning portion 1332 in communication with the guide portion 1331. The guide portion 1331 extends along the telescopic direction of the supporting member 12. The turning portion 1332 is located at the outer end of the guide portion 1331, i.e. the end close to the opening of the accommodating space 110, and extends obliquely relative to the guide portion 1331. After the locking assembly 14 is unlocked, the telescopic member 15 and the supporting member 12 slide out of the accommodating space 110 under the action of the driving member 131. At this time, the limiting sliding block 134 slides in the guide portion 1331 of the limiting guide rail 133. When the limiting sliding block 134 moves from the guide portion 1331 to the turning portion 1332 under the action of the driving member 131, the supporting member 12 extends to the outside of the accommodating space 110. Since the turning portion 1332 is oblique relative to the guide portion 1331, the limiting sliding block 134 is blocked by the inner wall of the turning portion 1332 when it slides in the turning portion 1332, so that the limiting sliding block 134 moves obliquely relative to the telescopic direction of the supporting member 12. The supporting member 12 rotates relative to the housing member 11 under the action of the turning portion 1332 and the limiting sliding block 134. Therefore, when the supporting member 12 is in the storage state, the user only needs to press the supporting member 12 inward to switch the locking assembly 14 from the locked state to the unlocked state. The supporting member 12 will slide under the action of the driving member 131, slide to the outside of the housing member 11 by itself and rotate relative to the housing member 11. One step can unlock the supporting member 12 to the use state, which is convenient for the user to use. When the supporting member 12 is not needed, the user only needs to push the supporting member 12 into the accommodating space 110. The supporting member 12 and the telescopic member 15 slide into the accommodating space 110 and press the driving member 131 at the same time. At the same time, the supporting member 12 rotates relative to the housing member 11 in the opposite direction under the action of the limiting sliding block 134 and the turning portion 1332. After the limiting sliding block 134 enters the guide portion 1331 from the turning portion 1332, the supporting member 12 stops rotating. The supporting member 12 moves into the accommodating space 110 together with the telescopic member 15 until the locking assembly 14 forms the locked state. One step can lock the supporting member 12 to the storage state, which simplifies the operation steps of the user.
[0060] Further, the limiting through hole 154 is provided on the telescopic member 15 corresponding to the limiting sliding block 134. The limiting through hole 154 extends along the rotating direction of the supporting member 12. The limiting through hole 154 can limit the displacement of the limiting sliding block 134 relative to the telescopic member 15 in the telescopic direction.
[0061] It is understood that when the limiting slider 134 is located at the critical position where the guide portion 1331 and the steering portion 1332 are connected, the supporting body 121 of the supporting member 12 may just extend to the outside of the receiving member 11, or may extend to the outside of the receiving member 11 and be separated from the receiving member 11 by a certain distance. In the present application, when the limiting slider 134 is located at the critical position where the guide portion 1331 and the steering portion 1332 are connected, the supporting body 121 of the supporting member 12 extends to the outside of the receiving member 11 and is separated from the receiving member 11 by a certain distance, for example, 1 mm, to prevent the supporting member 12 from being interfered with by the receiving member 11 during the rotation process.
[0062] The limiting guide rail 133 also includes a positioning portion 1333, which is connected to the steering portion 1332 and is located at the end of the steering portion 1332 away from the guide portion 1331. The positioning portion 1333 extends along the extension and contraction direction of the support member 12. That is, the steering portion 1332 is connected between the guide portion 1331 and the positioning portion 1333, and the extension direction of the guide portion 1331 is the same as the extension direction of the positioning portion 1333. When the support member 12 rotates by a predetermined angle, the limiting slider 134 moves from the steering portion 1332 into the positioning portion 1333. The positioning portion 1333 can fix the limiting slider 134 in this position, thereby preventing the support member 12 from rotating and enhancing the stability of the support member 12 when in use.
[0063] In the embodiment of the present application, a main control circuit board is provided inside the base 1, and the first wireless charging module 124 and the second wireless charging module 113 are electrically connected to the main control circuit board respectively. Specifically, the storage member 11 is installed inside the base 1. The all-in-one wireless charging device 100 can use the first wireless charging module 124 in the support member 12 to charge the electronic device. When in use, the support member 12 can be extended out of the base 1, so that the first wireless charging module 124 follows the support member 12 to extend out of the base 1 and rotate to a preset angle. The electronic device is placed on the support member 12, which can charge the electronic device while also making it convenient for the user to view the content displayed on the screen of the electronic device. When not in use, the support member 12 can be stored in the storage member 11 to reduce the overall volume of the all-in-one wireless charging device 100, making it convenient to carry and store.
[0064] In the embodiment of the present application, the accommodation space 110 of the receiving member 11 is provided with a sliding conductive part 17 and a fixed conductive part 18. The sliding conductive part 17 is electrically connected with the fixed conductive part 18 and the first wireless charging module 124 respectively, and can move together with the supporting member 12. The fixed conductive part 18 is arranged in the accommodation space 110 and is relatively fixed with the receiving member 11. The main control circuit board in the base 1 is located outside the receiving member 11 and close to the fixed conductive part 18. The fixed conductive part 18 is electrically connected with the main control circuit board. The sliding conductive part 17 and the fixed conductive part 18 are in sliding fit, and the fixed conductive part 18 extends along the extension direction of the supporting member 12. During the extension and retraction of the supporting member 12 relative to the receiving member 11, the sliding conductive part 17 moves together with the supporting member 12, so that the sliding conductive part 17 slides relative to the fixed conductive part 18. During the sliding process, the sliding conductive part 17 always contacts with the fixed conductive part 18 to form an electrical connection effect, thereby avoiding the influence of the movement of the supporting member 12 on the electrical connection.
[0065] Specifically, the sliding conductive part 17 is mounted on the telescopic member 15 and is electrically connected with the first wireless charging module 124 in the supporting member 12 through a wire. The telescopic member 12 is provided with a wire hole on the rotating shaft part 122 to pass the wire and electrically connect with the first wireless charging module 124.
[0066] The fixed conductive part 18 is provided with a conductive groove. The sliding conductive part 17, such as a conductive spring, is inserted into the conductive groove. When the telescopic member 15 slides relative to the receiving member 11, the sliding conductive part 17 slides in the conductive groove, and the sliding conductive part 17 is tightly pressed on the fixed conductive part 18 by its own elastic force, thereby ensuring the stability of the electrical connection between the sliding conductive part 17 and the fixed conductive part 18.
[0067] The all-in-one wireless charging device 100 further comprises a bearing seat 2 mounted to the base 1. The bearing seat 2 comprises a bearing body 20 and a bearing shaft 21. The bearing body 20 is fixedly connected with the bearing shaft 21. The bearing shaft 21 is rotatably connected with the base 1. The bearing body 20 is provided with a third wireless charging module 22. The third wireless charging module 22 is electrically connected with the main control circuit board. The third wireless charging module 22 is, for example, a mobile phone wireless charging module. When the third wireless charging module 22 is not used, the bearing seat 2 can be rotated and stored in the base 1. At this time, the base 1 and the bearing seat 2 form a stacked arrangement effect. The third wireless charging module 22 is located at the top of the base 1. The second wireless charging module 113 is located below the third wireless charging module 22. The first wireless charging module 124 can be extended from one side of the base 1 when used. It should be understood that the all-in-one wireless charging device 100 can be provided with both the third wireless charging module 22 and the second wireless charging module 113, or only one of them according to product design requirements.
[0068] The first wireless charging module 124 and the third wireless charging module 22 can rotate relative to the base 1, and the support angle can be adjusted, so that the electronic device which needs to watch the display content can be charged to watch the display content during the charging process, and the second wireless charging module 113 can be used to charge the electronic device which does not need to watch the display content. In the embodiment of the application, the first wireless charging module 124 is used to charge the smart watch, the third wireless charging module 22 is used to charge the mobile phone, and the second wireless charging module 113 is used to charge the Bluetooth earphone.
[0069] The above-mentioned embodiments are only preferred embodiments of the utility model, and cannot be used to limit the range of the utility model protection, and any non-substantial change and replacement made by the person skilled in the art on the basis of the utility model belongs to the range of the utility model claimed for protection.
Claims
1. A multi-in-one wireless charging device, characterized in that, The application relates to a wireless charging device, which comprises a first wireless charging module, a second wireless charging module, a base and a rotary storage mechanism. The storage member is mounted on one side of the base, and the storage member is provided with a containing space in communication with the outside; the supporting member is telescopically arranged in the containing space through the power mechanism; and the power mechanism drives the supporting member to telescopically extend relative to the storage member and to rotate relative to the storage member after the supporting member extends out of the containing space.
2. The all-in-one wireless charging device of claim 1, wherein, The power mechanism comprises a driving member and a guide limiting structure; the driving member is connected with the supporting member; and the guide limiting structure comprises a limiting sliding block arranged outside the supporting member and a limiting guide rail arranged in the storage member; and the limiting sliding block is slidably inserted into the limiting guide rail.
3. The all-in-one wireless charging device of claim 2, wherein, The limiting guide rail comprises a guide part and a turning part; the guide part and the turning part are in communication; the guide part extends along the telescopic direction of the supporting member; and the turning part is located at the outer end of the guide part and extends obliquely relative to the guide part.
4. The all-in-one wireless charging device of claim 3, wherein, The limiting guide rail further comprises a positioning part; the positioning part is located at the end of the turning part away from the guide part; and the positioning part extends along the telescopic direction of the supporting member.
5. The all-in-one wireless charging device of claim 2, wherein, The rotary storage mechanism further comprises a telescopic member; the telescopic member is telescopically mounted to the containing space of the storage member; the driving member is located between the telescopic member and the storage member; and the supporting member is located at the side of the telescopic member away from the driving member and is rotationally connected with the telescopic member.
6. The all-in-one wireless charging device of claim 5, wherein, A guide member is arranged in the containing space; the guide member extends along the telescopic direction of the supporting member; the driving member comprises a spring; the spring is sleeved on the guide member; and the telescopic member is slidably sleeved on the guide member and is connected with the spring.
7. The all-in-one wireless charging device of claim 5, wherein, A first magnetic attraction member is arranged on the telescopic member; a second magnetic attraction member is arranged on the supporting member; the supporting member has a storage state and a use state; in the storage state, the first magnetic attraction member and the second magnetic attraction member are arranged in dislocation; and in the use state, the first magnetic attraction member and the second magnetic attraction member are arranged opposite to each other and are attracted to each other.
8. The all-in-one wireless charging device of claim 5, wherein, The supporting member comprises a supporting body and a rotating shaft part connected to one side of the supporting body; the first wireless charging module is arranged in the supporting body; a shaft hole is correspondingly arranged on the telescopic member; and the rotating shaft part is movably inserted into the shaft hole.
9. The all-in-one wireless charging device of claim 5, wherein, The rotary storage mechanism further comprises a lock catch assembly; the lock catch assembly comprises a movable clamping arm arranged in the storage member and a positioning clamping block correspondingly arranged on the telescopic member; and the movable clamping arm can selectively clamp or release the positioning clamping block.
10. The all-in-one wireless charging device of claim 1, wherein, The rotation angle of the supporting member relative to the storage member is an acute angle.
11. The all-in-one wireless charging device of any of claims 1-10, wherein, A main control circuit board is arranged in the base; and the first wireless charging module and the second wireless charging module are electrically connected with the main control circuit board.
12. The all-in-one wireless charging device of claim 11, wherein, The accommodation space is provided with a sliding conductive part and a fixed conductive part, the sliding conductive part is electrically connected with the fixed conductive part and is in sliding fit, the first wireless charging module is electrically connected with the sliding conductive part, the main control circuit board is electrically connected with the fixed conductive part, and the fixed conductive part extends along the telescopic direction of the supporting piece.
13. The all-in-one wireless charging device of claim 11, wherein, Further comprising a bearing seat mounted to the base, the bearing seat comprising a bearing body and a bearing shaft, the bearing shaft being rotationally connected with the base, and the bearing body being provided with a third wireless charging module, the third wireless charging module being electrically connected with the main control circuit board.