CN217362068U - Rotatable multifunctional data line - Google Patents

Rotatable multifunctional data line Download PDF

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Publication number
CN217362068U
CN217362068U CN202220506975.1U CN202220506975U CN217362068U CN 217362068 U CN217362068 U CN 217362068U CN 202220506975 U CN202220506975 U CN 202220506975U CN 217362068 U CN217362068 U CN 217362068U
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Prior art keywords
storage bin
storage
data line
rotatable
data
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CN202220506975.1U
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Chinese (zh)
Inventor
陈龙扣
朱惠勇
李冠铤
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Shenzhen Baseus Technology Co Ltd
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Shenzhen Baseus Technology Co Ltd
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Priority to CN202220506975.1U priority Critical patent/CN217362068U/en
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Abstract

The utility model provides a rotatable multifunctional data line, which comprises a first storage bin and a second storage bin, wherein the first storage bin and the second storage bin are stacked and rotatably connected, and the first storage bin and the second storage bin are respectively provided with a telescopic data wire; one of them of first collecting storage facility and second collecting storage facility is provided with a plurality of draw-in grooves, and another is provided with at least one and a plurality of draw-in groove complex elasticity block tongue for the draw-in groove is left in the rotatory in-process compressive deformation of first collecting storage facility or second collecting storage facility, through elastic deformation joint draw-in groove when rotatory stopping. The utility model discloses a set up elasticity block tongue, draw-in groove to through mutually supporting between the two, realize the mutual rotation of first collecting storage facility and second collecting storage facility, make the user can charge to electronic product simultaneously on the equidirectional, the user of being convenient for uses, makes suitable occasion diversified, increases user experience.

Description

Rotatable multifunctional data line
Technical Field
The utility model relates to an electronic equipment accessory technical field, concretely relates to rotatable multi-functional data line.
Background
In modern life, intelligent electronic devices such as mobile phones, tablet computers and mobile hard disks are widely used, and the electronic devices all need data lines for data transmission or charging, and the data lines become indispensable electronic accessories of the electronic devices. The data line is easy to be knotted and wound in daily use, and the existing data line has a retractable data line with a retractable and telescopic function, so that inconvenience caused by overlong or overlong retractable data line is reduced when the retractable data line is used.
The existing data line cannot meet the common use of a plurality of devices, and the prior art generally sets up a one-to-three integrated data line to meet the requirements of a plurality of different data line plugs of a user, but the branch line of the integrated data line is short, the applicable scene is single, the simultaneous charging in a minimum range can be supported, and the scene that needs multi-direction and long-distance use cannot be supported.
Secondly, current data line and the position of plug connection end, angle are fixed, and the scene that the user used the data line has the variety for the data line all need buckle the back of predetermineeing the angle and can use in many times, therefore the data cable is damaged easily, stretch over disconnected, and life is short, and economic benefits is poor, and user experience feels poor.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a rotatable multifunctional data line, concrete technical scheme is as follows:
a rotatable multifunctional data line comprises a first storage bin and a second storage bin, wherein the first storage bin and the second storage bin are arranged in a stacked mode and are rotatably connected, and the first storage bin and the second storage bin are respectively provided with a telescopic data conducting wire;
one of the first storage bin and the second storage bin is provided with a plurality of clamping grooves, and the other one of the first storage bin and the second storage bin is provided with at least one elastic clamping tongue matched with the clamping grooves, so that the first storage bin or the second storage bin is pressed and deformed to leave the clamping grooves in the rotating process, and the clamping grooves are clamped through elastic deformation when the rotation stops.
In a specific embodiment, the elastic latch is provided with a protruding portion, and the protruding portion is located in the slot and used for being pressed and deformed during the rotation process of the first storage bin or the second storage bin and alternately entering the slot.
In a specific embodiment, a plurality of the clamping grooves are adjacently arranged to form a ring shape, and the elastic member is used for being pressed and deformed during the rotation process of the first storage bin or the second storage bin and alternately entering the clamping grooves.
In a specific embodiment, the end of the elastic latch is provided with a bent structure, and the bent structure forms the bulge.
In a specific embodiment, the elastic clamping tongue is in a U-shaped structure, and the protruding part is positioned in the middle of the elastic clamping tongue.
In a specific embodiment, a fastening position connecting structure is arranged between the first storage bin and the second storage bin.
In a specific embodiment, the fastening connection structure includes an annular protrusion and an annular groove, the annular protrusion is disposed on one of the first storage compartment and the second storage compartment, the annular groove is disposed on the other of the first storage compartment and the second storage compartment, and the annular protrusion is fastened on the annular groove.
In a specific embodiment, the cross section of the convex part is one or more of arc, trapezoid or V-shaped;
and/or the section of the clamping groove is one or more of arc, trapezoid or V-shaped.
In a specific embodiment, the first storage chamber is provided with one or more retractable data conductors;
and/or the second storage bin is provided with one or more telescopic data conductors.
In a specific embodiment, the connector of the data wire comprises a MicroUSB connector, a Type-C connector or a Lightning connector;
the joint of the data wire of the first storage bin is different from the joint of the data wire of the second storage bin; or the joint of the data wire of the first storage bin is the same as the joint of the data wire of the second storage bin.
In a specific embodiment, the container further comprises a base, and the bottom of the first storage bin is rotatably connected with the base;
one of them is provided with the bulb between base and the first collecting storage, and another is provided with the holding tank, at least a part of bulb with the holding tank gomphosis.
In a specific embodiment, a wireless charging coil is arranged on the second storage bin, and the wireless charging coil is electrically connected with the internal circuit of the second storage bin.
The utility model discloses following beneficial effect has at least:
the utility model discloses a rotatable multifunctional data line, including first collecting storage and second collecting storage, first collecting storage and second collecting storage are overlapped and rotatably connected, and first collecting storage and second collecting storage are provided with telescopic data wire respectively; one of them of first collecting storage facility and second collecting storage facility is provided with a plurality of draw-in grooves, and another is provided with at least one and a plurality of draw-in groove complex elasticity block tongue for the draw-in groove is left in the rotatory in-process compressive deformation of first collecting storage facility or second collecting storage facility, through elastic deformation joint draw-in groove when rotatory stopping. The utility model discloses a set up elasticity block tongue and draw-in groove to through mutually supporting between the two, realize the mutual rotation of first collecting storage facility and second collecting storage facility, make the user can charge to electronic product simultaneously on the equidirectional, the user of being convenient for uses, makes suitable occasion diversified, increases user experience.
Furthermore, a plurality of clamping grooves are adjacently arranged to form a ring, and the elastic clamping tongues are used for being pressed to deform and alternately enter the clamping grooves in the rotating process of the first storage bin or the second storage bin. The adjacent setting of a plurality of draw-in grooves realizes 360 degrees distributions, makes first collecting storage and second collecting storage can 360 degrees rotations, overcomes the defect that original data line can't adjust the use angle, enlarges application scope.
Furthermore, the first storage bin is provided with one or more telescopic data wires; and/or the second storage bin is provided with one or more telescopic data conductors. Through the quantity that increases data wire, increase the quantity of the electronic product of electricity connection simultaneously, improve the charge efficiency when a plurality of electronic products all need to charge.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
Fig. 1 is a schematic view of a first overall structure of a rotatable multifunctional data line provided in embodiment 1;
fig. 2 is a second overall structural schematic diagram of the rotatable multifunctional data line provided in embodiment 1;
FIG. 3 is a first cross-sectional view of the rotatable multifunctional data line provided in embodiment 1;
FIG. 4 is an enlarged view of a portion of area A of FIG. 3;
fig. 5 is a third schematic overall structure diagram of the rotatable multifunctional data line provided in embodiment 1;
fig. 6 is a fourth schematic overall structure diagram of the rotatable multifunctional data line provided in embodiment 1;
FIG. 7 is a second cross-sectional view of the rotatable multifunctional data line provided in embodiment 1;
FIG. 8 is an enlarged view of a portion of area A of FIG. 7;
fig. 9 is an exploded view of a rotatable multifunctional data line provided in embodiment 1;
FIG. 10 is a schematic structural view of the elastic latch provided in embodiment 1;
fig. 11 is a schematic structural view of the elastic latch provided in embodiment 2.
Reference numerals:
1-a base; 2-a first storage bin; 3-a second storage bin; 4-a third storage bin; 12-a bulb; 21-a first housing; 22-a first circuit board; 23-a first carousel; 24-a first data conductor; 27-elastic latch; 28-accommodating grooves; 29-a first limit stop; 31-a second housing; 32-a second circuit board; 33-a second carousel; 34-a second data conductor; 35-a second stop; 41-wireless charging coil; 42-a magnetic member; 211-annular groove; 311-card slot; 312-annular projection; 2721-boss.
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 work belong to the protection scope of the present invention.
As shown in fig. 1 to 11, the present invention provides a rotatable multifunctional data line, which includes a first storage bin 2 and a second storage bin 3, wherein the first storage bin 2 and the second storage bin 3 are stacked and rotatably connected, and the first storage bin 2 and the second storage bin 3 are respectively provided with a retractable data wire; one of the first storage bin 2 and the second storage bin 3 is provided with a plurality of clamping grooves 311, and the other one is provided with at least one elastic clamping tongue 27 matched with the plurality of clamping grooves 311, so that the elastic clamping tongue is pressed to deform and leave the clamping grooves 311 in the rotation process of the first storage bin 2 or the second storage bin 3, and the elastic clamping grooves 311 are clamped when the rotation stops. The utility model discloses a set up elasticity latch 27, draw-in groove 311 to through mutually supporting between the two, realize first collecting storage 2 and second collecting storage 3's mutual rotation, make the user can charge the electronic product on the equidirectional while, convenient to use user uses, makes the application occasion diversified, increases user experience.
Example 1
As shown in fig. 1 to 4, a buckle position connection structure is arranged between the first storage bin 2 and the second storage bin 3, the buckle position connection structure includes an annular protrusion and an annular groove, one of the first storage bin 2 and the second storage bin 3 is provided with the annular protrusion, the other one of the first storage bin 2 and the second storage bin 3 is provided with the annular groove, and the annular protrusion is buckled with the annular groove.
In this embodiment, the first storage compartment 2 includes a first housing 21, the second storage compartment 3 includes a second housing 31, the second housing 31 is located on the top of the first housing 21, an annular groove 211 is disposed at one end of the first housing 21 contacting the second housing 31, an annular protrusion 312 extends downward from the second housing 31, the annular protrusion 312 is fastened to the annular groove 211, and the annular protrusion 312 is rotatably connected to the annular groove 211, so that the first storage compartment 2 is rotatably connected to the second storage compartment 3.
Optionally, in other embodiments, an annular protrusion may be disposed at one end of the first casing 21, which is in contact with the second casing 31, an annular groove is correspondingly disposed on the second casing 31, the annular protrusion is buckled on the annular groove, and the annular protrusion is rotatably connected with the annular groove.
Preferably, as shown in fig. 5 to 7, the rotatable multifunctional data line provided by the present embodiment further includes a base 1, and the base 1 is rotatably connected to the first storage compartment 2. One of the two storage chambers 1 and 2 is provided with a ball head 12, and the other one is provided with a receiving groove 28, and at least one part of the ball head 12 is embedded in the receiving groove 28. In this embodiment, the base 1 is provided with the ball 12, the first storage compartment 2 is provided with the receiving groove 28, and at least a part of the ball 12 is fitted into the receiving groove 28. The first containing bin 2 is rotated by 360 degrees on the base through the matching of the ball head 12 and the containing groove 28, the defect that the use angle of the original data line cannot be adjusted is overcome, and the application range is enlarged.
Optionally, in other embodiments, an accommodating groove may be provided for the base 1, a ball head is provided on the first accommodating chamber 2, and at least a part of the ball head is engaged with the accommodating groove.
In particular, the base 1 is preferably a cylinder.
As shown in fig. 1 to 10, the first casing 21 is provided with a first circuit board 22, a first rotary disk 23 and a first data wire 24, and the first circuit board 22 and the first rotary disk 23 are located in the first casing 21. The first casing 21 is provided with a first through hole, one end of the first data wire 24 passes through the first through hole, is wound on the first rotary disc 23, and is electrically connected with the first circuit board 22, and the other end is exposed out of the surface of the first casing 21.
The first storage bin 2 is further provided with a first elastic member (not shown in the figure) and a first limiting member 29, the first elastic member is disposed corresponding to the first rotary disc 23, and is used for being compressed and deformed when the data wire on the first storage bin 2 is stretched to drive the first rotary disc 23 to rotate, and providing elastic restoring force for the first rotary disc 23 and the data wire on the first storage bin 2 to return and rotate, so as to achieve the function of stretching and retracting the data wire on the first storage bin 2. The first limiting member 29 is disposed corresponding to the first elastic member, and is configured to fix the first elastic member when the first elastic member is deformed under pressure, so as to fix the data wire on the first storage compartment 2 at a preset length, which is convenient for a user to use, and prevent the first elastic member from resetting to cause the data wire on the first rotating disk 23 and the first storage compartment 2 to rotate.
Specifically, the first housing 21 is preferably a cylinder, the first circuit board 22 is preferably a circle, and the first turntable 23 is preferably a circle in cross section.
As shown in fig. 1 to 10, in the present embodiment, a magnetic connection structure is disposed between the receiving groove 28 and the ball head 12, and the receiving groove 28 and the ball head 12 are magnetically connected through the magnetic connection structure.
Specifically, bulb 12 exposes the surface of base 1, and holding tank 28 and bulb 12 fixed connection back have the reservation clearance between one side of first collecting chamber 2 towards base 1 and one side of base 1 towards first collecting chamber 2, and the first collecting chamber 2 of being convenient for rotates with base 1, reduces area of contact, reduces frictional force.
As shown in fig. 1 to 10, a second circuit board 32, a second turntable 33 and a second data wire 34 are disposed on the second housing 31, and the second circuit board 32 and the second turntable 33 are located in the second housing 31. The second casing 31 is provided with a second through hole, one end of the second data wire 34 passes through the second through hole and is wound on the second rotary table 33 and electrically connected with the second circuit board 32, and the other end is exposed out of the surface of the second casing 31.
The second storage bin 2 is further provided with a second elastic member (not shown in the figure) and a second limiting member 35, the second elastic member is disposed corresponding to the second rotary table 33, and is configured to deform under pressure when the second rotary table 33 is driven to rotate by stretching the data wires in the second storage bin 3, and provide elastic restoring force for the second rotary table 33 and the data wires in the second storage bin 3 to return and rotate, so as to achieve the function of stretching and retracting the data wires in the second storage bin 3. The second limiting member 35 is disposed corresponding to the second elastic member, and is configured to fix the second elastic member when the second elastic member is deformed under pressure, so as to fix the data wire on the second storage compartment 3 at a preset length, which is convenient for a user to use, and prevent the second elastic member from resetting to cause the data wire on the second turntable 33 and the second storage compartment 3 to rotate.
Specifically, the second housing 31 is preferably a cylinder, the second circuit board 32 is preferably circular, and the second turntable 33 is preferably circular in cross section.
Specifically, in the present embodiment, the first storage bin 2 is provided with the first data conductor 24, and the second storage bin 3 is provided with the second data conductor 34, in other embodiments, the first storage bin 2 may be provided with two or more retractable data conductors, and the second storage bin 3 may also be provided with two or more retractable data conductors. Through the quantity that increases data wire, increase the quantity of the electronic product of electricity connection simultaneously, improve the charge efficiency when a plurality of electronic products all need to charge.
As shown in fig. 1 to 10, the joint of the first data wire 24 is different from the joint of the second data wire 34 in the present embodiment. The connector of the first data wire 24 is a Type-C connector, and the connector of the second data wire 34 is a Lightning connector. Optionally, the connector of the first data conductor 24 and the second data conductor 34 may be one of a micro usb connector, a Type-C connector, or a Lightning connector.
Alternatively, in other embodiments, the connection of the first data line 24 may be the same as the connection of the second data line 34.
As shown in fig. 1 to 10, the first storage bin 2 is located between the base 1 and the second storage bin 3, and the second storage bin 3 is rotatably disposed on the top of the first storage bin 2. In this embodiment, an elastic latch 27 is disposed on a side of the first housing 21 contacting the second housing 31, a plurality of slots 311 are correspondingly disposed on the second housing 31, and the slots 311 are adjacently disposed to form a ring. The elastic latch 27 is engaged with the engaging groove 311, and is configured to be pressed and deformed to leave the engaging groove 311 during the rotation of the first housing 21 or the second housing 31, and engage with the engaging groove 311 through elastic deformation when the rotation is stopped. The adjacent 360 degrees distributions that realize of a plurality of draw-in grooves 311 make first collecting storage and second collecting storage can 360 degrees rotations, overcome the defect that original data line can't adjust the use angle, enlarge application scope.
Specifically, in the present embodiment, three elastic latch tongues 27 are disposed on the first housing 27, and the three elastic latch tongues 27 are disposed at intervals. By arranging the plurality of elastic clamping tongues 27, the multifunctional data line is prevented from losing the rotating function due to aging or breakage of the elastic clamping tongues 27, and when any one of the elastic clamping tongues 27 fails, the rest elastic clamping tongues 27 can still continue to work.
Specifically, a hollow portion is disposed on a side of the first housing 21 contacting the second housing 31, and the elastic latch 27 exposes a surface of the hollow portion and is connected to the latch slot 311.
In other embodiments, a plurality of slots may be disposed on the first housing 21, the slots are disposed adjacent to each other to form a ring, the second housing 31 is disposed with an elastic latch 27, and the elastic latch 27 is used for latching the slot when the first housing 21 or the second housing 31 is pressed and deformed during rotation, and latching the slot when the rotation stops.
As shown in fig. 1 to 10, in the present embodiment, the elastic latch 27 is provided with a protrusion 2721, the slot 311 is concave, and the protrusion 2721 is located in the slot 311. Through the cooperation of bellying 2721 and draw-in groove 311, make first containing storehouse 2 and second containing storehouse 3 relatively rotatory back still can relatively fixed, can avoid the user to touch first containing storehouse 2 or second containing storehouse 3, lead to the rotatory inconvenience that brings of casing by accident simultaneously, improve user experience and feel.
As shown in fig. 1 to 10, in the present embodiment, the end of the elastic latch 27 is provided with a curved structure, and the curved structure forms a protrusion 2721. The elastic latch 27 includes a first end and a second end, and is fixed to the first housing 21 by the first end of the elastic latch 27. The second end of the elastic latch 27 is provided with a protrusion 2721 protruding relative to the slot 311, and the protrusion 2721 is located in the slot 311. When the first shell 21 or the second shell 31 rotates under the action of external force, the protrusion 2721 is extruded and deformed by the edge of the slot 311 until the protrusion 2721 resets to re-engage the slot 311 when the rotation stops, so that the first shell 21 or the second shell 31 is fixed in the preset direction. Realize 360 rotatory functions of first collecting storage 2 and second collecting storage 3, overcome the unable angle regulation's of original data wire defect, enlarge application scope.
Specifically, the cross section of the protrusion 2721 is preferably arc, and may also be one or more of trapezoidal and V-shaped.
Specifically, the locking slot 311 is adapted to the protrusion 2721, and the cross section of the locking slot 311 is preferably arc-shaped, and may also be one or more combinations of trapezoid and V-shaped.
The multifunctional data line that this embodiment provided still has the wireless function of charging, is provided with wireless charging coil 41 on the second containing storehouse 3, and the internal circuit of second containing storehouse 3 includes second circuit board 32 and other electronic components, and the internal circuit of second containing storehouse 3 is connected with wireless charging coil 41 electricity to provide electric power support for wireless charging coil 41.
Be provided with magnetic part 42 on second collecting storage 3, magnetic part 42 corresponds the setting with wireless charging coil 41 for be connected with electronic product magnetism. In this embodiment, magnetic member 42 is wound around the outside of wireless charging coil 41.
The wireless charging coil 41 is used for transmitting the stored electric energy to an external electric device by wireless transmission. The magnetic member 42 is used for being rapidly matched and butted with a magnetic attraction structure in an external electric device, so that the use convenience and practicability of the charging equipment are improved. Through setting up wireless charging coil 41, realize wireless function of charging, increase the mode of charging of multi-functional data line, enlarge application scope, make multi-functional data line can provide wired and wireless formula charging service for a plurality of electronic product simultaneously, improve user experience.
Preferably, a third storage chamber 4 is further included, and the third storage chamber 4 is disposed on the top of the second storage chamber 3 and is electrically connected to the second storage chamber 3. Wireless charging coil 41 and magnetic member 42 are disposed in third storage compartment 4.
Example 2
As shown in fig. 11, in the present embodiment, the elastic latch 27 is U-shaped, and the elastic latch 27 is provided with a protrusion 2721, where the protrusion 2721 is located in the middle of the elastic latch 27.
In the present embodiment, the open end of the elastic latch 27 faces the first housing 21, and both ends of the elastic latch 27 are fixed to the first housing 21. The middle of the elastic latch 27 is provided with a protrusion 2721 protruding relative to the slot 311, and the protrusion 2721 is located in the slot 311. When the first shell 21 or the second shell 31 rotates under the action of external force, the protrusion 2721 is extruded and deformed by the edge of the slot 311 until the protrusion 2721 resets to re-engage the slot 311 when the rotation stops, so that the first shell 21 or the second shell 31 is fixed in the preset direction. Realize 360 rotatory functions of first collecting storage 2 and second collecting storage 3, overcome the unable angle regulation's of original data wire defect, enlarge application scope.
The rest of this embodiment is the same as embodiment 1, and is not described herein again.
Those skilled in the art will appreciate that the drawings are merely schematic representations of one preferred implementation scenario and that the blocks or flow diagrams in the drawings are not necessarily required to practice the present invention.
Those skilled in the art will appreciate that the modules in the devices in the implementation scenario may be distributed in the devices in the implementation scenario according to the description of the implementation scenario, or may be located in one or more devices different from the present implementation scenario with corresponding changes. The modules of the implementation scenario may be combined into one module, or may be further split into multiple sub-modules.
The sequence numbers of the present invention are only for description, and do not represent the advantages and disadvantages of the implementation scenario.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (10)

1. A rotatable multifunctional data line is characterized by comprising a first storage bin and a second storage bin, wherein the first storage bin and the second storage bin are arranged in a stacked mode and are rotatably connected, and the first storage bin and the second storage bin are respectively provided with a retractable data conducting wire;
one of the first storage bin and the second storage bin is provided with a plurality of clamping grooves, and the other one of the first storage bin and the second storage bin is provided with at least one elastic clamping tongue matched with the clamping grooves, so that the first storage bin or the second storage bin is pressed and deformed to leave the clamping grooves in the rotating process, and the clamping grooves are clamped through elastic deformation when the rotation stops.
2. The rotatable multi-function data line of claim 1, wherein the resilient latch is provided with a raised portion, the raised portion being located within the slot.
3. The rotatable multi-function data cord of claim 1 wherein a plurality of said card slots are adjacently disposed to form a ring.
4. The rotatable multifunctional data line of claim 2 wherein the ends of the resilient latches are provided with a curved structure, the curved structure forming the raised portion.
5. The rotatable multifunctional data line of claim 2 wherein the resilient latch is U-shaped and the raised portion is located in the middle of the resilient latch.
6. The rotatable multi-function data cord of claim 1 wherein a snap connection is provided between the first storage compartment and the second storage compartment.
7. The rotatable multifunctional data line of claim 6, wherein the snap connection structure comprises an annular protrusion and an annular groove, one of the first storage compartment and the second storage compartment is provided with the annular protrusion, the other of the first storage compartment and the second storage compartment is provided with the annular groove, and the annular protrusion is snapped on the annular groove.
8. The rotatable multifunctional data line of claim 1, wherein the connector of the data conductor comprises a MicroUSB connector, a Type-C connector, or a Lightning connector;
the joint of the data wire of the first storage bin is different from the joint of the data wire of the second storage bin; or the joint of the data conductor of the first storage bin is the same as the joint of the data conductor of the second storage bin.
9. The rotatable multi-function data cable of claim 1 further comprising a base, wherein the bottom of the first storage compartment is rotatably coupled to the base;
one of them is provided with the bulb between base and the first collecting storage, and another is provided with the holding tank, at least a part of bulb with the holding tank gomphosis.
10. The rotatable multifunctional data line of claim 1, wherein a wireless charging coil is disposed on the second storage compartment, and the wireless charging coil is electrically connected with the internal circuit of the second storage compartment.
CN202220506975.1U 2022-03-08 2022-03-08 Rotatable multifunctional data line Active CN217362068U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220506975.1U CN217362068U (en) 2022-03-08 2022-03-08 Rotatable multifunctional data line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220506975.1U CN217362068U (en) 2022-03-08 2022-03-08 Rotatable multifunctional data line

Publications (1)

Publication Number Publication Date
CN217362068U true CN217362068U (en) 2022-09-02

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