CN217507851U - Data line capable of avoiding twisting - Google Patents

Data line capable of avoiding twisting Download PDF

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Publication number
CN217507851U
CN217507851U CN202221107272.8U CN202221107272U CN217507851U CN 217507851 U CN217507851 U CN 217507851U CN 202221107272 U CN202221107272 U CN 202221107272U CN 217507851 U CN217507851 U CN 217507851U
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data line
plate
standard usb
connects
type
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CN202221107272.8U
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Chinese (zh)
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李锋万
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Dongguan Xunyue Electronic Co ltd
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Dongguan Xunyue Electronic Co ltd
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Abstract

The utility model discloses a can avoid hank miscellaneous data line relates to the relevant technical field of data line, for solving among the prior art because the data line is linear structure, very easily takes place the winding when accomodating, and the hank is miscellaneous together, needs the longer time to unthread it when reusing, convenient problem inadequately in the use. The one end of data line body is connected with Type-C and connects, the other end of data line body is connected with standard USB and connects, the outside that standard USB connects is provided with the protective unit, the protective unit includes Type-C joint protection subassembly and standard USB joint protection subassembly, and Type-C connects protection subassembly sliding connection, and standard USB connects spacing slip in standard USB joint protection subassembly, the middle soaking of Type-C joint protection subassembly and standard USB joint protection subassembly both sides is fused and is fixed with spacing fixed bayonet socket, spacing fixed bayonet socket and data line body block.

Description

Data line capable of avoiding twisting
Technical Field
The utility model relates to a data line correlation technique field specifically is a can avoid hanking miscellaneous data line.
Background
The data line is used for connecting the mobile equipment and the computer to achieve the purpose of data transmission or communication. The mobile device can be connected with a computer to transmit files such as videos, ringtones and pictures, and can also be connected with a charger to charge the mobile device. The COM interface is classified into a COM interface and a USB interface according to the interface types, is also called a serial port, is connected behind a desktop computer and is being eliminated; the USB interface is the mainstream, is convenient, fast and stable, and supports computers of all models.
Because the data line is of a linear structure, the data line is easy to wind and twist together when being stored, and needs a long time to untwist when being used again, so that the data line is not convenient to use; therefore, the market urgently needs to develop a data line which can avoid twisting to help people to solve the existing problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can avoid hank miscellaneous data line to solve and propose in the above-mentioned background art because the data line is linear structure, very easily take place the winding when accomodating, the hank is miscellaneous together, needs the longer time to unthread it when reusing, convenient problem inadequately in the use.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a can avoid hanking miscellaneous data line, includes the data line body, the one end of data line body is connected with Type-C and connects, the other end of data line body is connected with standard USB and connects, the outside that standard USB connects is provided with the protection unit, the protection unit includes Type-C joint protection component and standard USB joint protection component, and Type-C connects and Type-C joint protection component sliding connection, and standard USB connects spacing slip in standard USB joint protection component, the soaking of the centre of Type-C joint protection component and standard USB joint protection component both sides is fixed with spacing fixed bayonet socket, spacing fixed bayonet socket and data line body block.
Preferably, Type-C connects protection subassembly includes the bottom plate, the bilateral symmetry of bottom plate upper end is provided with the second riser, second riser and bottom plate body coupling, the upper end body coupling of second riser has the shrouding, the one end body coupling along the second riser between upper seal plate and the bottom plate has preceding riser, the other end body coupling along the second riser between upper seal plate and the bottom plate has the after-fixing board, protection groove in the middle of the middle formation second between bottom plate, after-fixing board and the upper seal plate, the middle spacing sliding tray that forms between bottom plate, second riser, upper seal plate, preceding riser and the after-fixing board.
Preferably, the standard USB joint includes second interface protective sheath, second connection port and second parcel shell, and the second parcel shell is located between second interface protective sheath and the second connection port, the second parcel shell includes connecting portion and spacing portion, and the longitudinal section size of connecting portion is the same with the longitudinal section size of the middle protective groove of second, and the longitudinal section size of spacing portion is the same with the longitudinal section size of spacing sliding tray.
Preferably, Type-C connects protection component includes the intermediate lamella, intermediate lamella and two go up the shrouding fixed, and the intermediate lamella flushes with the lateral surface of bottom plate, the bilateral symmetry of intermediate lamella upper end is provided with first riser, intermediate lamella and first riser body coupling, the upper end body coupling of first riser has the roof, and the lateral surface of roof and intermediate lamella flushes, the middle protection groove in the middle of forming between intermediate lamella, first riser and the roof is first.
Preferably, the Type-C connector comprises a first wrapping shell, a first interface protective sleeve and a first connecting port, the first wrapping shell is located between the first interface protective sleeve and the first connecting port, and the longitudinal section of the first wrapping shell is the same as that of the first middle protective groove.
Preferably, a second side winding groove is formed in the outer side among the bottom plate, the second vertical plate and the upper sealing plate, a first side winding groove is formed in the outer side among the middle plate, the first vertical plate and the top plate, and the first side winding groove and the second side winding groove are identical in size.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses an in, when accomodating, with data line body of wire winding card in the spacing fixing clip mouth in second side winding groove, to going up around, data line body of wire winding card is in the spacing fixing clip mouth in first side winding groove. Whole data line body is regular around outside the protection unit, accomodates into in the package or the drawer can not be in a jumble yet. When in use, the data wire body is rotated in the opposite direction of the winding direction, so that the data wire body is separated from the limiting fixing bayonet; can solve because the data line is linear structure, very easily take place the winding when accomodating, the hank is miscellaneous together, needs the longer time when reusing to dredge the problem of unting with it, and it is comparatively convenient in the use, only needs the winding fixed.
2. The utility model discloses an in, when accomodating, outwards draw the data line body of being connected with standard USB joint, the connecting portion of second parcel shell in the standard USB connects along the inside removal of protective slot in the middle of the second, spacing sliding tray of spacing portion slides to the bottom, and other parts card are in standard USB connects the protection component except that second interface protective sheath in standard USB connects, and Type-C connects and inserts in the first middle protective slot. The first connection port that Type-C connects and the second connection port that standard USB connects are protected by the protection unit, avoid the data line to place and make port and metallic substance friction such as key in the package, can protect the port position. And when the connector is used, the data line body connected with the Type-C connector is pulled outwards, and the data line body connected with the standard USB connector is pushed inwards, so that the port position can be exposed for use, and the connector is convenient to use.
Drawings
Fig. 1 is a schematic view of an overall structure of a data line capable of avoiding twisting of the data line;
fig. 2 is an exploded schematic view of a data line capable of avoiding twisting of the data line according to the present invention;
fig. 3 is an exploded schematic view of the protection unit of the present invention;
fig. 4 is a schematic structural view of the limiting fixing bayonet of the present invention.
In the figure: 1. a Type-C linker; 101. a first casing; 102. a first interface protective cover; 103. a first connection port; 2. a standard USB connector; 201. a second casing; 2011. a connecting portion; 2012. a limiting part; 202. a second interface protective sleeve; 203. a second connection port; 3. a data line body; 4. a protection unit; 401. a Type-C joint protection component; 4011. a middle plate; 4012. a first vertical plate; 4013. a top plate; 4014. a first intermediate protective slot; 4015. a first side winding groove; 402. a standard USB connector protection component; 4021. a base plate; 4022. a second vertical plate; 4023. an upper sealing plate; 4024. a front vertical plate; 4025. a rear fixing plate; 4026. a second intermediate protective slot; 4027. a limiting sliding groove; 4028. a second side winding groove; 5. the bayonet is fixed in a limiting way.
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.
Referring to fig. 1-4, the present invention provides an embodiment of: a data line capable of avoiding twisting impurities comprises a data line body 3, one end of the data line body 3 is connected with a Type-C connector 1, the other end of the data line body 3 is connected with a standard USB connector 2, a protection unit 4 is arranged outside the standard USB connector 2, the protection unit 4 comprises a Type-C connector protection component 401 and a standard USB connector protection component 402, the Type-C connector 1 is connected with the Type-C connector protection component 401 in a sliding manner, the standard USB connector 2 slides in the standard USB connector protection component 402 in a limiting manner, a limiting fixed bayonet 5 is fixedly arranged in the middle of two sides of the Type-C connector protection component 401 and the standard USB connector protection component 402 in a soaking manner, the limiting fixed bayonet 5 is clamped with the data line body 3 and used for winding the data line body 3, when the data line body 3 is stored, the data line body 3 is wound in the limiting fixed bayonet 5, the whole data line body 3 is regularly wound outside the protection unit 4, the storage in a bag or a drawer is not messy. When the device is used, the data wire body 3 is rotated in the opposite direction of the winding direction, so that the data wire body 3 is separated from the limiting fixed bayonet 5.
Further, the Type-C connector protection assembly 401 comprises a base plate 4021, second vertical plates 4022 are symmetrically arranged on two sides of the upper end of the base plate 4021, the second vertical plates 4022 are integrally connected with the base plate 4021, an upper sealing plate 4023 is integrally connected with the upper end of the second vertical plate 4022, a front vertical plate 4024 is integrally connected between the upper sealing plate 4023 and the base plate 4021 along one end of the second vertical plate 4022, a rear fixing plate 4025 is integrally connected between the upper sealing plate 4023 and the base plate 4021 along the other end of the second vertical plate 4022, a second middle protection slot 4026 is formed in the middle among the base plate 4021, the rear fixing plate 4025 and the upper sealing plate 4023, and a limit sliding slot 4027 is formed in the middle among the base plate 4021, the second vertical plate 4022, the upper sealing plate 4023, the front vertical plate 4024 and the rear fixing plate 4025; the standard USB connector 2 includes a second interface protective sleeve 202, a second connection port 203 and a second wrapping shell 201, the second wrapping shell 201 is located between the second interface protective sleeve 202 and the second connection port 203, the second wrapping shell 201 includes a connection portion 2011 and a limiting portion 2012, a longitudinal cross-sectional dimension of the connection portion 2011 is the same as a longitudinal cross-sectional dimension of the second middle protective groove 4026, a longitudinal cross-sectional dimension of the limiting portion 2012 is the same as a longitudinal cross-sectional dimension of the limiting sliding groove 4027, when the standard USB connector is stored, the data cable body 3 connected to the standard USB connector 2 is pulled outwards, the connection portion 2011 of the second wrapping shell 201 on the standard USB connector 2 moves inwards along the second middle protective groove 4026, and the limiting sliding groove 4027 of the limiting portion 2012 slides to the bottom end, so that other portions of the standard USB connector 2 except the second interface protective sleeve 202 are clamped in the standard USB connector protective assembly 402 for protection.
Further, the Type-C joint protection assembly 401 comprises a middle plate 4011, the middle plate 4011 is fixed with two upper sealing plates 4023, the middle plate 4011 is flush with the outer side face of the bottom plate 4021, first vertical plates 4012 are symmetrically arranged on two sides of the upper end of the middle plate 4011, the middle plate 4011 is integrally connected with the first vertical plates 4012, the upper end of the first vertical plate 4012 is integrally connected with a top plate 4013, the top plate 4013 is flush with the outer side face of the middle plate 4011, and a first middle protection groove 4014 is formed among the middle plate 4011, the first vertical plates 4012 and the top plate 4013; the Type-C connector 1 comprises a first wrapping shell 101, a first interface protective sleeve 102 and a first connection port 103, the first wrapping shell 101 is located between the first interface protective sleeve 102 and the first connection port 103, the longitudinal section of the first wrapping shell 101 is the same as that of a first middle protection groove 4014, and other parts of the Type-C connector 1 except the first interface protective sleeve 102 can be inserted into the first middle protection groove 4014 for protection.
Further, the outside between bottom plate 4021, second riser 4022 and the last shrouding 4023 forms second side winding groove 4028, and first side winding groove 4015 is formed in the outside between intermediate plate 4011, first riser 4012 and the roof 4013, and first side winding groove 4015 is the same with second side winding groove 4028 size, and data line body 3 twines the card in second side winding groove 4028's spacing fixed bayonet socket 5, and the back upwards winds, and data line body 3 twines the card in first side winding groove 4015's spacing fixed bayonet socket 5.
The working principle is as follows: when the data cable is used, the data cable body 3 connected with the Type-C connector 1 is pulled outwards, the Type-C connector 1 is pulled out of the first middle protection groove 4014, the data cable body 3 is rotated reversely according to the winding direction, and the data cable body 3 is separated from the limiting fixed bayonet 5; the data line body 3 connected with the standard USB connector 2 is pushed inwards, the connecting portion 2011 of the second wrapping shell 201 on the standard USB connector 2 moves outwards along the second middle protection groove 4026, and the connecting portion 2011 can only slide in the limiting sliding groove 4027 of the limiting portion 2012, so that after the standard USB connector 2 is pushed in place, part of the standard USB connector 2 is clamped in the standard USB connector protection component 402, and only the second connection port 203 is exposed, so that the target electronic device is inserted for connection.
When the USB connector is required to be stored, the data wire body 3 connected with the standard USB connector 2 is pulled outwards, the connecting part 2011 of the second wrapping shell 201 on the standard USB connector 2 moves inwards along the second middle protective groove 4026, the limiting sliding groove 4027 of the limiting part 2012 slides to the bottom end, and other parts of the standard USB connector 2 except the second interface protective sleeve 202 are clamped in the standard USB connector protective component 402; in the spacing fixed bayonet socket 5 of twining groove 4028 with data line body 3 winding card in second side, the back upwards winds, and in the spacing fixed bayonet socket 5 of first side winding groove 4015 of data line body 3 winding card, insert Type-C connects 1 in first middle protection slot 4014.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. A data line capable of avoiding twisting impurities comprises a data line body (3), and is characterized in that: the one end of data line body (3) is connected with Type-C and connects (1), the other end of data line body (3) is connected with standard USB and connects (2), the outside that standard USB connects (2) is provided with protecting unit (4), protecting unit (4) include Type-C joint protection component (401) and standard USB connect protection component (402), Type-C connects (1) and Type-C and connects protection component (401) sliding connection, and standard USB connects (2) spacing slip in standard USB connects protection component (402), the soaking of the centre of Type-C joint protection component (401) and standard USB joint protection component (402) both sides is fixed with spacing fixed bayonet socket (5), spacing fixed bayonet socket (5) and data line body (3) block.
2. The data line of claim 1, wherein the data line is capable of avoiding twisting, and comprises: the Type-C joint protection assembly (401) comprises a base plate (4021), second vertical plates (4022) are symmetrically arranged on two sides of the upper end of the bottom plate (4021), the second vertical plates (4022) are integrally connected with the bottom plate (4021), an upper sealing plate (4023) is integrally connected to the upper end of the second vertical plate (4022), a front vertical plate (4024) is integrally connected between the upper sealing plate (4023) and the bottom plate (4021) along one end of the second vertical plate (4022), a rear fixing plate (4025) is integrally connected between the upper sealing plate (4023) and the bottom plate (4021) along the other end of the second vertical plate (4022), a second middle protection groove (4026) is formed in the middle among the bottom plate (4021), the rear fixing plate (4025) and the upper sealing plate (4023), and a limiting sliding groove (4027) is formed in the middle among the bottom plate (4021), the second vertical plate (4022), the upper sealing plate (4023), the front vertical plate (4024) and the rear fixing plate (4025).
3. The data line of claim 2, wherein the data line is capable of avoiding twisting, and comprises: standard USB connects (2) and includes second interface protective sheath (202), second connection port (203) and second parcel shell (201), and second parcel shell (201) is located between second interface protective sheath (202) and second connection port (203), second parcel shell (201) includes connecting portion (2011) and spacing portion (2012), and the longitudinal section size of connecting portion (2011) is the same with the longitudinal section size of second middle protective groove (4026), and the longitudinal section size of spacing portion (2012) is the same with the longitudinal section size of spacing sliding tray (4027).
4. The data line of claim 2, wherein the data line is capable of avoiding twisting, and comprises: Type-C connects protection component (401) includes intermediate lamella (4011), intermediate lamella (4011) and two go up shrouding (4023) fixed, and intermediate lamella (4011) flushes with the lateral surface of bottom plate (4021), the bilateral symmetry of intermediate lamella (4011) upper end is provided with first riser (4012), and intermediate lamella (4011) and first riser (4012) body coupling, the upper end body coupling of first riser (4012) has roof (4013), and roof (4013) flushes with the lateral surface of intermediate lamella (4011), first riser (4012) and roof (4013) between the middle first middle protection groove (4014) of formation.
5. The data line of claim 4, wherein the data line is capable of avoiding twisting, and comprises: Type-C connects (1) including first parcel shell (101), first interface protective sheath (102) and first connection port (103), first parcel shell (101) are located between first interface protective sheath (102) and first connection port (103), and the longitudinal section size of first parcel shell (101) is the same with the longitudinal section size of first middle protection groove (4014).
6. The data line of claim 4, wherein the data line is capable of avoiding twisting, and comprises: the outer sides among the bottom plate (4021), the second vertical plate (4022) and the upper sealing plate (4023) form a second side winding groove (4028), the outer sides among the middle plate (4011), the first vertical plate (4012) and the top plate (4013) form a first side winding groove (4015), and the first side winding groove (4015) and the second side winding groove (4028) are identical in size.
CN202221107272.8U 2022-05-10 2022-05-10 Data line capable of avoiding twisting Active CN217507851U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221107272.8U CN217507851U (en) 2022-05-10 2022-05-10 Data line capable of avoiding twisting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221107272.8U CN217507851U (en) 2022-05-10 2022-05-10 Data line capable of avoiding twisting

Publications (1)

Publication Number Publication Date
CN217507851U true CN217507851U (en) 2022-09-27

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Application Number Title Priority Date Filing Date
CN202221107272.8U Active CN217507851U (en) 2022-05-10 2022-05-10 Data line capable of avoiding twisting

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CN (1) CN217507851U (en)

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