CN217904086U - Multifunctional base, connecting structure and electronic device - Google Patents

Multifunctional base, connecting structure and electronic device Download PDF

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Publication number
CN217904086U
CN217904086U CN202221881640.4U CN202221881640U CN217904086U CN 217904086 U CN217904086 U CN 217904086U CN 202221881640 U CN202221881640 U CN 202221881640U CN 217904086 U CN217904086 U CN 217904086U
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hard shell
hole
electronic component
base
flexible
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CN202221881640.4U
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Chinese (zh)
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陈松平
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Seksun Corp ltd
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Seksun Corp ltd
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Abstract

The utility model provides a multifunctional base, include: a flexible member; and the base is connected to one end of the flexible piece and comprises a rigid shell and a joint part, the joint part extends along the edge of the rigid shell, the flexible piece is connected with the base through the joint part, and the joint part is made of flexible materials. The utility model also provides a connection structure and electron device.

Description

Multifunctional base, connecting structure and electronic device
Technical Field
The utility model relates to an electron device technical field especially relates to a multifunctional pedestal, connection structure and electron device.
Background
In outdoor activities, various electronic devices such as a charger, a fan, a mosquito killer lamp, a cosmetic mirror, a floodlight, a spray water replenisher and the like are often used. The electronic device is convenient for people to live, but is very inconvenient to carry a large number of electronic devices, and brings troubles to people. In the related art, a plurality of electronic devices having different functions can be simultaneously powered, and the portable electronic device has the disadvantages of large occupied space and inconvenience in carrying.
Content of application
In order to solve the above problem, the utility model provides a multifunctional base, connection structure and electron device, electron device not only conveniently carries still can have the electron device power supply of different functions.
A multi-function base comprising: the base is connected to one end of the flexible piece and comprises a rigid shell and a joint portion, the joint portion extends along the edge of the rigid shell, the flexible piece is connected with the base through the joint portion, and the joint portion is made of flexible materials.
A connecting structure comprising: the flexible piece, rigid housing, and joint, the flexible piece passes through the joint with rigid housing connects, the joint is made by flexible material.
An electronic device includes the connection structure and an electronic element. The connecting structure comprises a flexible piece, a rigid shell and a joint part, wherein the flexible piece is connected with the rigid shell through the joint part, and the joint part is made of flexible materials. The electronic component is arranged on the rigid shell.
Drawings
In order to illustrate the solution of the present invention more clearly, the drawings needed for describing the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is an exploded view of a multifunctional base according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of an electronic device according to a first embodiment of the present invention;
fig. 3 is a schematic structural diagram of an electronic device according to a second embodiment of the present invention;
fig. 4 is a block diagram of the electronic device of the present invention;
fig. 5 is a schematic structural diagram of an electronic device according to a third embodiment of the present invention, in which the flexible member is not shown;
FIG. 6 is an exploded view of the electronic device shown in FIG. 5;
FIG. 7 is an exploded view of the electronic device shown in FIG. 5 from another angle;
FIG. 8 is a schematic diagram of a connector of the electronic device shown in FIG. 5;
FIG. 9 is a schematic view of another angle of the connecting member of the electronic device shown in FIG. 5;
FIG. 10 is a schematic view of a further angle of the connection member of the electronic device shown in FIG. 5;
fig. 11 is a schematic structural diagram of a first rigid housing of the electronic device shown in fig. 5 and an enlarged view of a third through hole of the first rigid housing.
The objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that all the directional indicators (such as upper, lower, left, right, front, and rear … …) in the embodiments of the present invention are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicit ly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of the feature. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
Referring to fig. 1, an embodiment of the present invention provides a multifunctional base 1. The multifunctional base 1 comprises a flexible member 11 and a base 12. The base 12 is disposed on top of the flexible member 11. The base 12 comprises a rigid housing 121 at least partially disposed on top of the flexible member 11. The base 12 is typically made of a rigid material, such as acrylonitrile butadiene styrene plastic, polyethylene, polypropylene, and the like. And the flexible member 11 is made of a soft waterproof material, such as polyvinyl chloride, thermoplastic polyurethane, polystyrene, and the like. In order to better connect the flexible member 11 and the base 12, a joint portion 1211 is disposed on an edge of the rigid housing 121, and the flexible member 11 and the rigid housing 121 are hermetically connected through the joint portion 1211. The interface 1211 is made of a flexible material, such as a soft thermoplastic including, but not limited to, polyvinyl chloride and thermoplastic polyurethane elastomer rubber. Soft thermoplastics are fusible when heated and can be cured after cooling. Therefore, the flexible member 11 can be tightly bonded to the joint portion 1211 by heat pressing, heat melting, or ultrasonic wave.
In at least one embodiment, the flexible member 11 can be a collapsible housing. The joint 1211 is connected to the collapsible housing by hot pressing. The collapsible shell is provided with an air tap, and the collapsible shell can be inflated or deflated through the air tap. The air tap may be provided at an end of the collapsible housing remote from the base 12, i.e. the air tap may be provided at the bottom of the collapsible housing.
In at least one embodiment, the flexible member 11 is made of a flexible plastic. The joint 1211 may be connected to the flexible member 11 by sewing or heat pressing.
In at least one embodiment, the flexible member 11 is made of a textile material, such as cloth. The engaging portion 1211 may be connected to the flexible member 11 by sewing, hook and loop fasteners, clips, or buttons. In at least one embodiment, the flexible member 11 may be any conventional bag, such as a canvas bag or a book bag, which may be attached to the attachment portion by sewing, velcro strips, clips, or buttons to attach the base and flexible member (bag). In this way, any available bag can be fitted with the base to function as the multi-functional base without any unwanted modification of the bag, greatly increasing the applicability of the multi-functional base.
In addition, the cross-sectional area of the end of the flexible part 11 far away from the base 12 is larger than that of the end of the flexible part 11 provided with the base 12. That is, the flexible member 11 has a substantially conical configuration, and the sectional area thereof gradually decreases from the end away from the base 12 to the end where the base 12 is provided. It should be noted that the bottom of the tapered structure is not limited to be circular, and may be rectangular, triangular, or polygonal. More specifically, in practical use, the end of the flexible member 11 away from the base 12 is used as the bottom of the flexible member 11, and the bottom of the flexible member 11 can be placed on a supporting surface such as a table or the ground. At this time, the base 12 is provided on the top of the flexible member 11. Since the base 12 has a weight, the sectional area of the bottom of the flexible member 11 is larger than that of the top, which helps to improve the stability of the multifunctional base 1 and prevent the multifunctional base 1 from having unstable center of gravity due to the weight of the base 12.
In addition, in order to improve the stability of the flexible member 11, a support plate may be provided on the inner bottom wall of the flexible member 11. The support plate may provide more weight on the inner bottom wall of the flexible member 11 to further improve the stability of the flexible member 11.
Specifically, the rigid housing 121 includes a first rigid housing 1212 and a second rigid housing 1213, and the first rigid housing 1212 is disposed on top of the second rigid housing 1213 to form an accommodating space inside the rigid housing 121. That is, a cavity is formed in the rigid housing 121. The first and second rigid housings 1212, 1213 may be connected by a retaining member, such as a screw. Alternatively, the first and second rigid housings 1212, 1213 may be connected by snap fasteners. In this embodiment, the joint 1211 is provided along an edge of the top of the second rigid casing 1213. Specifically, the joint 1211 is an annular thin-layer structure disposed along the outer periphery of the second rigid casing 1213. The interface 1211 may be injection molded integrally with the second rigid housing 1213. In an alternative embodiment, the rigid housing 121 includes a connecting ring that fits over a joint 1211 provided at the top edge of the second rigid housing 1213. The connecting ring is integrally formed with the second rigid housing 1213 using an injection molding process. The portion of the attachment ring extending beyond the edge of the second rigid housing 1213 forms a joint 1211. Alternatively, the joint 1211 may be disposed on the first rigid housing and connected to the second rigid housing in the same manner, wherein the joint 1211 is disposed on the second rigid housing 1213. The joint 1211 may be sleeved on the edge of the first rigid housing 1212 through a connection ring. The connecting ring may be provided at an edge of the first rigid housing 1212, and when the first and second rigid housings 1212, 1213 are connected, the connecting ring forms a joint 1211 around the rigid housing 121.
In addition, referring to fig. 4, the base 12 further includes an operation panel 122 and a power module 123. The power module 123 is disposed in a cavity within the rigid housing 121. The operating panel 122 is exposed from the outer surface of the first rigid housing 1212. The power module 123 is electrically connected to the operation panel 122. The operation panel 122 may be an operation button or a touch panel. The power module 123 comprises a rechargeable battery 1233 and a power interface 1231, the power interface 1231 being exposed by the outer surface of the first rigid housing 1212. The rechargeable battery 1233 can be replaced with a new rechargeable battery. The rechargeable battery 1233 is electrically connected to the power interface 1231 to charge the external terminal or the rechargeable battery. The power interface 1231 may be a micro-USB interface, a USB type C interface, or a lightning interface, which are commonly available in the market.
In addition, the power module 123 further includes a solar panel 1232, and the solar panel 1232 is mounted on the top surface of the first rigid housing 1212. The solar cell panel 1232 is electrically connected to the rechargeable battery 1233 to charge the rechargeable battery 1233. The solar panel 1232 may be waterproof.
In at least one embodiment, the electronic device has a built-in battery, thus eliminating the need for a solar panel 1232 on the top surface of the first rigid housing 1212.
In an alternative embodiment, the power module 123 may include a wireless charging unit 1234, which may be disposed on the top surface of the first rigid housing 1212 and may be used for charging an external terminal. The wireless charging unit 1234 may be electrically connected to a rechargeable battery 1233, and the rechargeable battery 1233 may be connected via a power interface 1231 to be charged by an external power source. The wireless charging unit 1234 includes a wireless charging coil and a magnetic ring. The inboard of the upper surface of first rigid housing 1212 is located to wireless charging coil, the magnetic ring cover is established around wireless charging coil for adsorb the external terminal with magnet.
In at least one embodiment, the surface of the rigid housing 121 facing the flexible member 11 is provided with a light emitting module 1236. The light emitting module 1236 may be an LED array on a substrate, and the LED lamps are uniformly distributed on the substrate. The rechargeable battery 1233 supplies power to the LED array under the control of the control board 3. The bottom of the second rigid casing 1213 is provided with a through hole, or the bottom of the second rigid casing 1213 is at least partially transparent or translucent. The light emitting unit of the LED lamp may be irradiated into the flexible member 11 through the through hole, thereby enabling the flexible member 11 to emit light. When the flexible member 11 is a waterproof airbag, a waterproof light bag for outdoor illumination can be formed. In addition, two oppositely arranged inner side walls of the flexible part 11 are reflecting surfaces so as to improve the light scattering of the LED lamp.
In another embodiment, the bottom surface of the first rigid housing 1212 is provided with a light emitting module 1236. The bottom of the second rigid casing 1213 is provided with a through hole. The light emitting module 1236 may irradiate light into the flexible member 11 through the through hole 11 so that the flexible member 11 may provide light. Alternatively, the bottom of the second rigid casing 1213 is at least partially transparent or translucent, and the light emitted from the light emitting module 1236 can be irradiated into the flexible member 11 through the second rigid casing 1213, so that the flexible member 11 can provide light.
In at least one embodiment, the multi-functional base further includes an acoustic enclosure 1235. Sound box 1235 is disposed on the top surface of first rigid housing 1212 opposite to second rigid housing 1213; or the acoustic enclosure 1235 is disposed on a second rigid housing 1213. The user can control the power module 123, the light emitting module 1236, and the home appliance by communicating with the speaker 1235.
In at least one embodiment, the multi-function base 1 is provided with a handle 13 to facilitate the user to lift and carry the multi-function base 1. Specifically, the upper surface of the first rigid housing 1212 is provided with two handles 13 disposed opposite to each other in the circumferential direction. The handles 13 may be connected to each other, and the length of the two connected handles 13 may be adjusted. Specifically, each handle 13 is provided with an adjusting buckle 131, and the two handles 13 are buckled by the adjusting buckles 131 to form a bracelet. The number of the adjusting buttons 131 can be multiple, and the size of the bracelet can be adjusted by adjusting the multiple adjusting buttons 131. In another case, the two handles 13 may be hook and loop fasteners such as velcro tapes, and the length of the bracelet may be adjusted by adjusting the coupling position of the hook and loop fasteners.
The utility model also provides an electron device. Referring to fig. 2, the electronic device includes the multifunctional base 1 and the electronic component 2 according to the above embodiment. The electronic component 2 is disposed outside the rigid housing 121 of the multi-function base 1 and electrically connected to the multi-function base 1. One end of the multifunctional base 1 is a flexible part 11, and the other end of the multifunctional base 1 is provided with an electronic element 2. The electronic element 2 can be a fan 21, a mosquito killer, a sound box, an LED mirror, a cosmetic mirror, a flashlight, a solar panel, a hand warmer, an alarm clock, an electronic book, a reader, a display screen, a clock, a projector, a spray humidifier, or a spray water replenishing device. The electronic component 2 may be folded, flipped, or flipped. For convenience of description, in the following embodiments, the electronic component 2 is described by taking the fan 21 as an example.
The fan 21 is disposed outside the first rigid housing 1212 of the multifunction base 1 and is electrically connected to the control board 3 inside the rigid housing. The fan 21 is electrically connected in a fixed manner to the control board 3. For example, the first rigid housing 1212 has a through hole, and a wire passes through the through hole to connect the fan 21 and the control board 3. In other embodiments, the fan 21 may be removably electrically connected to the control board 3. For example, the first rigid housing 1212 is provided with a first metal contact electrically connected to the control board 3, and the fan 21 is provided with a second metal contact. The fan 21 may be electrically connected to the control board 3 by connecting the first metal contact with the second metal contact. By connecting the first metal contact and the second metal contact, the power module 123 can supply power to the fan 21. Likewise, when the electronic component 2 is of another type, the connection can be made by using the two different connection methods described above.
In at least one embodiment, the operation panel 122 is provided with a control button for adjusting and controlling the air volume of the fan 21. When the electronic component 2 is of another type, the operation panel 122 can be used to control the corresponding functions of the electronic component 2. For example, turning on/off a lamp on the electronic component 2, adjusting the brightness of the lamp on the electronic component 2, or turning on/off the electronic component 2.
The fan 21 may be a folding fan. Specifically, the fan 21 may be pivotally connected to the multifunctional base 1 through a hinge. The hinge may be a pivot about which the fan 21 rotates relative to the multifunction base 1. Additionally, a spring may be used at the hinge to hold the fan 21 in the deployed or folded position. The fan 21 can pivot to a folded position, and at this time, the fan 21 is attached to the outer surface of the first rigid housing 1212 for storage. It should be understood that the electronic component may be folded in the same manner when the electronic component is of another type.
The electronic components 2 may be of different types, such as fans, mosquito lamps, LED mirrors, humidifiers, camping lights, or stereos. The different types of electronic components may be folded in the same manner to attach to the outer surface of the first rigid housing 1212. The multifunctional base 1 can be square or trapezoid, and the electronic element 2 can also be square or trapezoid.
In at least one embodiment, please refer to fig. 3, the present invention further provides an electronic device according to a second embodiment, which further includes a cover 4, wherein the cover 4 is detachably connected to the multifunctional base 1 to cover the electronic component 2. When the electronic component 2 is folded on the upper surface of the multifunctional base 1, the cover 4 can cover the electronic component 2 to protect the electronic component 2. In at least one embodiment, the cover 4 includes a main body 41 and another solar panel 43 disposed on top of the main body 41 for charging the rechargeable battery. Therefore, when the cover 4 covers the electronic component 2, the solar cell panel 43 can collect sunlight to charge the rechargeable battery 1233 of the electronic component 2.
In practical use, when the flexible member 11 is a collapsible housing, and the collapsible housing is inflated, the electronic element 2 is rotated to the expanded position, and the function of the electronic element 2 can be controlled through the operation panel 122. The electronic component 2 is powered by a power module 123 within the rigid housing 12. The multi-function base 1 is supported by a collapsible housing when the electronic device is placed on a support surface. Or open the LED lamp connects into two handles 13 into the bracelet, can hang electron device on strutting arrangement such as pole, plays the effect of waterproof lamp package. After use, the electronic component 2 is folded towards the first rigid housing 1212 and the collapsible housing is compressed by the deflation gas, which can greatly reduce the volume of the electronic device.
The utility model has the advantages that: the utility model discloses a multifunctional base 1 is equipped with flexible piece 11, flexible piece 11 can be compressed to convenience of customers accomodates multifunctional base 1, convenience of customers trip. This greatly improves convenience and practicality. The provision of the engagement portion 1211 facilitates the connection of the flexible member 11 to the rigid housing 121. The multifunctional base 1 is provided with a solar cell panel 1232 which can charge a rechargeable battery 1233, or the multifunctional base 1 is provided with a wireless charging unit 1234 which can charge an external terminal. The electronic component 2 is detachably and electrically connected with the multifunctional base 1, so that the electronic component 2 has replaceability. The user can replace electronic components having various functions, and the applicability of the multifunctional base 1 is improved. The user can replace the damaged electronic element with a new one, so as to prolong the service life of the electronic device. The electronic component 2 is foldable for storage. When the multifunctional base is manufactured, the flexible part 11 can be connected with the second rigid shell, and the control panel 3 and other electronic elements can be arranged on the first rigid shell, so that the multifunctional base is convenient to assemble, and the assembling efficiency is improved. Electronic components with different functions or structures can be universally matched with the flexible piece and the first rigid shell, so that the forming cost can be saved, and the maintenance, the replacement or the upgrade of the electronic device are facilitated.
An embodiment of the utility model provides a connection structure. The connection structure may have a structure similar to the multi-functional base, including the flexible member 11, the rigid housing 121, and the joint 1211. The flexible member 11 is connected to the rigid housing 121 by a joint 1211. The joint 1211 is made of a flexible material. The flexible member 11, the rigid housing 121, the joint 1211, and the manner in which the flexible member 11 and the rigid housing 121 are connected by the joint 1211 in the above embodiments are also applicable to the present embodiment. And will not be described in detail herein.
The embodiment of the present invention provides a connection structure for connecting the flexible member 11 and the rigid housing 121. The flexible member 11 may have any structure made of a flexible material. The rigid housing 121 may be a base or housing for an electronic device or electronic component. Thus, the connection structure may connect the electronic device or electronic component with any available flexible member, such as a bag, a flexible member arranged on a sofa, or a couch. For example, the cloth or leather of the sofa may serve as a flexible member that may be coupled to a base for supporting the electronic device or a housing of the electronic device. The backpack may be used as a flexible member that is attached to a base for supporting the electronic device or to a housing of the electronic device, thereby attaching the backpack to the electronic device.
The embodiment of the utility model provides a still provide an electronic device, it includes connection structure and electronic component 2, and electronic component 2 locates on rigid housing 121.
In at least one embodiment, the electronic component 2 can be a fan, a mosquito killer lamp, an LED mirror, a humidifier, a camping lamp, or a stereo.
In at least one embodiment, the electronic component 2 is removably or pivotably coupled to the rigid housing 121.
In at least one embodiment, the electronic component 2 can be folded onto the rigid housing 121 for storage or carrying. In at least one embodiment, the electronic device further includes a cover 4, and the cover 4 is detachably connected to the rigid housing 121 to cover the electronic component 2. When the electronic component 2 is folded on the rigid case 121, the cover 4 may cover the electronic component 2 to protect the electronic component 2. In at least one embodiment, the cover 4 includes a main body 41 and a solar panel 43 disposed on the top of the main body 41, wherein the solar panel 43 is used for charging a rechargeable battery 1233 of the electronic device. Therefore, when the cover 4 covers the electronic component 2, the solar cell panel 43 can collect sunlight to charge the rechargeable battery 1233 of the electronic component 2.
Referring to fig. 5 to 11, the present invention provides an electronic device of a third embodiment. The electronic device of the third embodiment is similar to that of the first embodiment. The electronic device of the third embodiment differs from the electronic device of the first embodiment in that: (a) The first rigid housing 1212' defines a first through hole 1214' and a second through hole 1215', the first through hole 1214' being configured to receive the solar panel 1232', and the second through hole 1215' being configured to receive the speaker 1235'; (b) The second rigid shell 1213' protrudes out of at least one connecting column 1201', the connecting column 1201' is provided with a first connecting hole 1202', the first rigid shell 1212' is provided with at least one second connecting hole 1203', and a connecting piece 1204' is received in the first connecting hole 1202' and the second connecting hole 1203' to connect the first rigid shell 1212' and the second rigid shell 1213 '; (c) The electronic device of the third embodiment further includes a rotating member 13', the electronic component 2', such as the fan 21', can be connected to the rotating member 13', the first rigid housing 1212 'further defines a third through hole 1216', and the rotating member 13 'is rotatably received in the third through hole 1216' to drive the electronic component 2 'to rotate around the radial axis of the rotating member 13'. (d) The electronic device of the third embodiment further includes a connecting shaft 14', the electronic component 2' has at least one connecting end 211', the connecting shaft 14' is fixedly connected with the connecting end 211', and the connecting shaft 14' is rotatably connected with the rotating member 13', so that the electronic component 2' can rotate around the axial direction of the rotating member 13.
In at least one embodiment, the second rigid casing 1213' further has an engaging portion 1211' extending along an edge of the second rigid casing 1213', and the engaging portion 1211' of the second rigid casing 1213' can be tightly connected to the flexible member by heat pressing, heat melting, or ultrasonic wave.
In at least one embodiment, the solar panel 1232 'is sealingly received in the first through hole 1214' and the speaker 1235 'is sealingly received in the second through hole 1215'.
In at least one embodiment, the acoustic enclosure 1235 'is sealingly received in the second through hole 1215'.
In at least one embodiment, a support 1219 'is protruded from a sidewall of the first through hole 1214', and the solar cell panel 1232 'is supported by the support 1219'.
In at least one embodiment, the lower end of the sidewall of the first through hole 1214 'is protruded with the support 1219'.
In at least one embodiment, the support 1219 'extends circumferentially along the sidewall of the first through-hole 1214'.
In at least one embodiment, the second rigid housing 1213' has a plurality of connecting posts 1201' spaced apart from each other, each connecting post 1201' has a first connecting hole 1202', the first rigid housing 1212' includes a plurality of second connecting holes 1203', and the connecting members 1204' are respectively received in the corresponding first connecting holes 1202' and second connecting holes 1203' to connect the first rigid housing 1212' and the second rigid housing 1213 '.
In at least one embodiment, the second connecting holes 1203 'are spaced apart from each other and are disposed at the edge of the first through hole 1214'.
In at least one embodiment, the connecting post 1201' is cylindrical, square, or the like.
In at least one embodiment, the first rigid housing 1212' further includes at least one connection tab 1205' received in the second connection aperture 1203 '. The connector 1204' has one end connected to the connector 1205' and the other end received in the first connection hole 1202' to connect the first rigid housing 1212' and the second rigid housing 1213 '.
In at least one embodiment, the rotating member 13 'includes a connecting portion 131', a rotating portion 132 connected to a side of the connecting portion 131 'away from the electronic component 2', and at least one clamping portion 133', and the at least one clamping portion 133' is connected to an end of the rotating portion 132 'away from the connecting portion 131'.
In at least one embodiment, the connection portion 131' has a fourth through hole 1311' opened in an axial direction of the connection portion 131' and a fifth through hole 1312' opened in a radial direction of the connection portion 131 '.
In at least one embodiment, the rotating member 13' further includes a receiving slot 1321', and a bottom wall of the receiving slot 1321' is opened with a sixth through hole 1322' communicating with the fifth through hole 1312'. One end of an electric wire (not shown) is electrically connected to the rechargeable battery 1233', and the other end of the electric wire can be electrically connected to the o-clock element 2' through the sixth through hole 1322 'and the fifth through hole 1312'.
In at least one embodiment, the clamping portion 133 'is disposed on the bottom wall of the accommodating groove 1321'.
In at least one embodiment, the clamping portion 133 'has a plurality of clamping portions and is disposed at a distance from each other, and the clamping portion 133' is disposed on the bottom wall of the accommodating groove 1321 'and surrounds the fifth through hole 1312'.
In at least one embodiment, the free end of the clamping portion 133' is provided with a limiting portion 1331' protruding from the center of the sixth through hole 1322'.
In at least one embodiment, the top end of the sidewall of the third through hole 1216' is recessed with a seventh through hole 1217' communicating with the third through hole 1216 '. The rotating portion 132 'is rotatably received in the seventh through hole 1217', the clamping portion 133 'is rotatably received in the third through hole 1216', and the clamping portion 1331 'is stopped by an edge of a sidewall of the third through hole 1217' to prevent the rotating member 132 'from being disengaged from the third through hole 1216'. When the rotating member 132 'rotates in the seventh through hole 1217', the electronic component 2 'also rotates in the radial direction of the rotating member 13'.
In at least one embodiment, the sidewall of the third through hole 1216 'is further provided with a first stopping rib 1218' disposed in a radial direction of the third through hole 1216', and at least one of the rotation portions 132' is provided with a second stopping rib 1323 'disposed in a radial direction of the rotation portion 132'. When the rotating portion 132 'rotates in the seventh through hole 1217', the clamping portion 133 'rotates in the third through hole 1216', and the first stopping rib 1218 'can be stopped by the second stopping rib 1323' to limit the rotating range of the rotating portion 132', further limiting the rotating range of the electronic component 2'.
In at least one embodiment, the electronic component 2 'has two connecting ends 211' disposed opposite to each other, each connecting end 211 'has a through hole 2111', the connecting shaft 14 'is fixedly disposed in the through hole 2111', and the connecting shaft 14 'is rotatably received in the fourth through hole 1311', so that the electronic component 2 'can rotate around the axial direction of the connecting portion 131'.
In at least one embodiment, at least one fastening member 141 'is disposed in the fourth through hole 1311' and coupled to an end of the coupling shaft 14 'to prevent the coupling shaft 14' from being separated from the fourth through hole 1311 'and the through hole 2111'.
The above only is the preferred embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structure changes made by the contents of the specification and the drawings under the inventive concept of the present invention, or the direct/indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims (10)

1. A multi-function base, comprising:
a flexible member; and
the base is connected to one end of the flexible piece, the base comprises a hard shell and a joint part, the joint part extends along the edge of the hard shell, the flexible piece is connected with the base through the joint part, and the joint part is made of flexible materials.
2. The multi-functional base of claim 1, further comprising a power module, the rigid housing comprising a first rigid housing and a second rigid housing that together form a cavity, the power module being received in the cavity.
3. The multi-functional susceptor of claim 2, characterized in that at least one of the following conditions is satisfied:
a. the base further comprises an operation panel exposed from the outer surface of the first hard shell, the flexible piece is provided with an accommodating space, the second hard shell is at least partially arranged in the accommodating space, and the power supply module is electrically connected with the operation panel;
b. the power module comprises a solar panel, the solar panel is arranged at the top of the first hard shell and is electrically connected with the rechargeable battery, or the first hard shell is provided with a first through hole, and the solar panel is accommodated in the first through hole; c. the joint part is arranged on the edge of the top of the second hard shell and is integrally molded with the second hard shell, and the joint part is made of soft thermoplastic plastics;
d. the multifunctional base further comprises a light-emitting module, the light-emitting module is arranged on the second hard shell, and at least part of the bottom of the second hard shell is transparent; or the light-emitting module is arranged on the bottom surface of the second hard shell facing the flexible piece; or the light-emitting module is arranged on the bottom surface of the first hard shell facing the second hard shell, and the bottom of the second hard shell is at least partially transparent;
e. the multifunctional base further comprises a sound box, and the sound box is arranged on the surface of the first hard shell, which is opposite to the surface of the second hard shell; or, the first hard shell is provided with a second through hole, and the sound box is accommodated in the second through hole; or the sound box is arranged on the second hard shell;
f. the multifunctional base further comprises at least one connecting piece, the second hard shell comprises at least one connecting column, the first hard shell is provided with at least one connecting hole, one end of the connecting piece is contained in the connecting hole, and the other end of the connecting piece is connected with the connecting column so as to connect the first hard shell with the second hard shell.
4. The multi-functional base of claim 1, characterized in that the flexible member is a collapsible housing, the collapsible housing and the joint being connected by a heat and pressure seal.
5. A connecting structure, characterized by comprising:
a flexible member;
a hard shell; and
a joint through which the flexible member is connected with the hard shell, the joint being made of a flexible material.
6. The connecting structure according to claim 5, wherein the hard shells include a first hard shell and a second hard shell connected to the first hard shell, the flexible member has a receiving space, the second hard shell is at least partially disposed in the receiving space, the joint portion is disposed around the second hard shell, the joint portion is integrally formed with the second hard shell, and the joint portion is made of a soft thermoplastic; and/or
The flexible piece is a collapsible shell, and the collapsible shell is connected with the joint portion through hot-press sealing.
7. An electronic device comprising the connecting structure according to any one of claims 5 or 6 and an electronic component provided on a hard case.
8. The electronic device of claim 7, wherein the electronic component is removably attached to the rigid housing or the electronic component is rotatably attached to the rigid housing.
9. The electronic device according to claim 8, further comprising a rotating member and a connecting shaft, wherein the hard housing has a third through hole, the rotating member is rotatably received in the third through hole, the electronic component is connected to a side of the rotating member away from the hard housing, such that the electronic component can rotate along a radial axis of the rotating member, the connecting shaft is rotatably connected to the rotating member, and the electronic component is fixedly connected to the connecting shaft, such that the electronic component can rotate along an axial axis of the rotating member.
10. The electronic device according to claim 9, wherein the rotating member comprises a connecting portion connected to the electronic component, a rotating portion connected to a side of the connecting portion away from the electronic component, and at least one holding portion connected to an end of the rotating portion away from the connecting portion, the rotating portion is rotatably received in a third through hole, and the holding portion is stopped by an edge of a hole wall of the third through hole, so that the electronic component can rotate along a radial axis of the rotating portion.
CN202221881640.4U 2022-07-19 2022-07-19 Multifunctional base, connecting structure and electronic device Active CN217904086U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221881640.4U CN217904086U (en) 2022-07-19 2022-07-19 Multifunctional base, connecting structure and electronic device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221881640.4U CN217904086U (en) 2022-07-19 2022-07-19 Multifunctional base, connecting structure and electronic device

Publications (1)

Publication Number Publication Date
CN217904086U true CN217904086U (en) 2022-11-25

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ID=84136682

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221881640.4U Active CN217904086U (en) 2022-07-19 2022-07-19 Multifunctional base, connecting structure and electronic device

Country Status (1)

Country Link
CN (1) CN217904086U (en)

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