CN216488697U - Consolidate Type-C plug - Google Patents

Consolidate Type-C plug Download PDF

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Publication number
CN216488697U
CN216488697U CN202123449442.9U CN202123449442U CN216488697U CN 216488697 U CN216488697 U CN 216488697U CN 202123449442 U CN202123449442 U CN 202123449442U CN 216488697 U CN216488697 U CN 216488697U
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China
Prior art keywords
type
plug
shell
side portion
inner shell
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CN202123449442.9U
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Chinese (zh)
Inventor
赵海军
董海波
朱朝阳
毛建军
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Dongguan Duwei Communication Technology Co ltd
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Dongguan Duwei Communication Technology Co ltd
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Abstract

The utility model belongs to the technical field of the technique of data line and specifically relates to a consolidate Type-C plug is related to, including Type-C socket, transmission module, protective housing and elasticity shell, the protective housing includes protecting sheathing and protection inner shell, protecting sheathing and protection inner shell integrated into one piece, the beneficial effect of this application: protecting sheathing and protection inner shell integrated into one piece strengthen integratively, set up the elasticity shell and protect protecting sheathing, reduce ageing, shelling, the deformation scheduling problem of Type-C plug, reach the effect that promotes the reliability when Type-C plug uses.

Description

Consolidate Type-C plug
Technical Field
The application relates to the technical field of data lines, especially, relate to a consolidate Type-C plug.
Background
In order to perform data transmission, electronic devices are generally provided with an interface for connecting data lines, and a Type-C plug line is one of the data lines.
USB Type-C is the hardware interface specification of a general serial port bus, because the small, the transmission rate of Type-C plug cord is fast and the ability reinforce of transmission electric power for more and more manufacturers' equipment all need to carry out data transmission with Type-C plug cord in recent years.
In the use of Type-C plug cord, the operation is pulled out and is inserted the operation through the Type-C plug that snatchs Type-C plug cord usually to Type-C plug cord, but the fixed combination of the protective housing of outside and the inner shell that is used for protecting inside transmission module is passed through glue to Type-C plug on the market, has ageing, shelling, deformation scheduling problem after repetitious usage, and the reliability of product is relatively poor, and above-mentioned problem remains to be solved.
SUMMERY OF THE UTILITY MODEL
In order to reduce ageing, shelling, the deformation scheduling problem of Type-C plug, reliability when promoting the use of Type-C plug, the application provides a consolidate Type-C plug and adopt following technical scheme:
the utility model provides a consolidate Type-C plug, includes Type-C socket, transmission module, protective housing and elasticity shell, the protective housing includes protecting sheathing and protection inner shell, the protecting sheathing cladding is on the surface of protection inner shell, protecting sheathing and protection inner shell integrated into one piece, transmission module installs in the protection inner shell, the one end and the transmission module of Type-C socket are connected, the other end of Type-C socket is worn out the protection inner shell, protection inner shell and Type-C socket fixed connection, elasticity shell cladding protecting sheathing.
By adopting the scheme, the Type-C socket is used for connecting an external Type-C interface to transmit data, the transmission module is used for electrically connecting the Type-C socket and an external transmission line, the protective outer shell is used for protecting the transmission module in the coated protective inner shell and the protective inner shell, the protective inner shell coats the transmission module to protect the transmission module, an operator usually pulls out and inserts the Type-C plug cord by grabbing the protective outer shell when using the Type-C plug cord, the protective inner shell also plays a role of fixing the Type-C socket, the elastic shell is used for further protecting the protective outer shell, and the elastic shell is attached to the surface of the protective outer shell to ensure that the surface stress of the protective outer shell is even, so that the protective outer shell is not easy to break due to aging, uneven stress and the like, thereby improve the durable degree of Type-C plug, reduce ageing, shelling, the deformation scheduling problem of Type-C plug, reliability when reaching promotion Type-C plug and using.
Preferably, the Type-C plug further comprises a connecting pipe, the connecting pipe is fixedly installed on the protective outer shell and the protective inner shell, and the connecting pipe is coated at one end of the transmission line used for connecting the transmission module.
By adopting the scheme, the connecting pipe is used for connecting the protective housing and the external transmission line, the effect of protecting the connection position of the protective housing and the transmission line is achieved, and the effect that the Type-C plug is not easy to damage when an operator pulls out and inserts the Type-C plug is achieved.
Preferably, the elastic shell comprises a first opening and a second opening, the first opening and the second opening are used for allowing a Type-C socket to pass through, the first opening is communicated with the second opening, the first opening is arranged at one end, close to the Type-C socket, of the elastic shell, and the second opening is arranged at one end, far away from the Type-C socket, of the elastic shell.
By adopting the above scheme, when the elastic shell is damaged, the operator needs to change the elastic shell, because the elastic shell has elasticity, the Type-C socket passes through the first opening, and the Type-C socket and the protective housing pass through the second opening, play the effect of taking out the elastic shell and changing, reach the effect of prolonging the service life of the protective housing.
Preferably, the protective housing includes a touch portion, a first side portion and a second side portion, the touch portion, the first side portion and the second side portion enclose the protective housing, and the first side portion, the second side portion and the touch portion are integrally connected.
By adopting the above scheme, the operation people is through gripping the touching portion, and then pulls out the operation of inserting to Type-C plug, and first lateral part is used for connecting touching portion and Type-C socket, and the second lateral part is used for connecting touching portion and connecting pipe, and first lateral part, second lateral part and touching portion integrated into one piece are used for improving the holistic wholeness of protective housing, thereby make touching portion, first lateral part and second lateral part be difficult for breaking away from the connection because of ageing, reach the reliability that promotes the protective housing, thereby improve the effect of the reliability of Type-C plug.
Preferably, the cross-sectional thickness of the first side portion gradually increases from the center of the first side portion toward the connection between the first side portion and the touch portion.
Through adopting above-mentioned scheme, at the upper and lower both ends thickening of first lateral part, play the effect of the junction of consolidating first lateral part and touching portion, reach and make the protective housing more firm to promote the effect of the reliability of Type-C plug when using.
Preferably, the cross-sectional thickness of the touch portion gradually increases from the center of the touch portion toward the connection between the first side portion and the touch portion.
Through adopting above-mentioned scheme, at the both ends thickening of touching portion, play the effect of the junction of consolidating first lateral part and touching portion, reach and make the protective housing more firm to promote the effect of the reliability of Type-C plug when using.
Preferably, the two sides of the elastic shell are concavely provided with hand holding positions.
Through adopting above-mentioned scheme, hold the sunken shape that the position set to be fit for the finger and grip, hold the position and be convenient for the operating personnel and grip Type-C plug, pull out the operation of inserting to Type-C plug, reach the effect of being convenient for to grip.
Preferably, the hand-holding position is provided with an anti-slip groove.
Through adopting above-mentioned scheme, the antiskid groove sets up on holding the position, when operating personnel pulled out the plug to Type-C through holding the position, held the frictional force that the antiskid groove on the position was used for increasing hand and elasticity shell, played skid-proof effect, reached the effect that promotes the reliability when Type-C plug used.
In summary, the present application includes at least one of the following beneficial technical effects:
when a Type-C plug wire is used for transmitting data, the data are transmitted by inserting the Type-C jack and an external Type-C interface, the transmission module is placed in the protective inner shell, the protective outer shell is coated outside the protective inner shell, the protective outer shell is used for protecting the protective inner shell, the transmission module is used for processing information transmitted by an external transmission line and outputting the information through the Type-C jack, the protective inner shell protects the transmission module, the influence of external sundries or vibration on the transmission module is reduced, the elastic shell sleeve uniformly distributes force when the Type-C plug is held outside the protective outer shell, the protective outer shell and the protective inner shell are further protected, the transmission module is protected, the protective shell is not easy to exuviate due to aging and uneven stress, and the use reliability of the Type-C plug is improved, thereby reach the life's of extension Type-C plug effect.
Drawings
FIG. 1 is a schematic structural diagram of a ruggedized Type-C plug according to an embodiment of the present application.
Fig. 2 is a schematic diagram of an explosive structure of a ruggedized Type-C plug according to an embodiment of the application.
Fig. 3 is a schematic structural diagram of an elastic shell according to an embodiment of the present application.
FIG. 4 is a schematic view of another angle of the elastic sheath according to the embodiment of the present application
Fig. 5 is a schematic view of a first structure of the protective shell according to the embodiment of the present application.
Fig. 6 is a second structural schematic diagram of another angle of the protective shell according to the embodiment of the present application.
Fig. 7 is a sectional view of a protective case according to an embodiment of the present application.
Fig. 8 is a schematic structural diagram of the hand grip disposed on the elastic casing according to the embodiment of the present disclosure.
Fig. 9 is a schematic structural view of the anti-slip groove disposed on the hand-holding portion according to the embodiment of the present disclosure.
Description of reference numerals: 1. a Type-C socket; 2. a protective shell; 21. a protective housing; 211. a touch portion; 212. a first side portion; 213. a second side portion; 22. a protective inner shell; 3. an elastic shell; 31. a first opening; 32. a second opening; 33. holding the hand; 331. an anti-slip groove; 4. a transmission module; 5. a connecting pipe; 6. a transmission line.
Detailed Description
The present application is described in further detail below with reference to figures 1-9.
The embodiment of the application discloses a reinforced Type-C plug, referring to FIGS. 1-2, which comprises a Type-C socket 1 and a transmission module 4, wherein an external transmission line 6 is installed at one end of the transmission module 4, the other end of the transmission module 4 is connected with the Type-C socket 1, a protective shell 2 for protecting the transmission module 4 is arranged outside the transmission module 4, the protective shell 2 comprises a protective outer shell 21 and a protective inner shell 22, the protective inner shell 22 is coated outside the transmission module 4, the protective outer shell 21 coats the protective inner shell 22, the protective outer shell 21 and the protective inner shell 22 are integrally formed, the integrity of the protective shell 2 is improved, the use reliability of the Type-C plug is improved, the surface of the protective outer shell 21 is further coated with a layer of elastic shell 3, one end of the Type-C socket 1 is connected with the other end of the transmission module 4, the other end of the Type-C socket 1 penetrates out of the protective inner shell 22 and penetrates out of the elastic shell 3, the external Type-C interface is convenient to connect for data transmission.
Specifically, transmission module 4 adopts the PCB circuit board, and as one of them embodiment, the one end that Type-C socket 1 is used for being connected with transmission module 4 is provided with the pin, and the circuit copper wire on pin and the PCB circuit board is connected, and Type-C socket 1's the other end is used for pegging graft with external Type-C interface, and external transmission line 6 is connected to transmission module 4's one end, and Type-C socket 1 is connected to transmission module 4's the other end to realize the transmission of data.
Thereby protection inner shell 22 coats transmission module 4 and plays the effect of protection transmission module 4 and fixed transmission module 4, protective housing 21 is used for protecting inner shell 22 and the further protection of inside transmission module 4, when using the Type-C plug cord, snatch protective housing 2 usually and pull out the operation of inserting to the Type-C plug cord, protective housing 2 still is used for fixed Type-C socket 1, as one of them embodiment, protective housing 21 and protection internal medicine 22 are through adopting TPE ebonite material integrated into one piece, thereby promote the wholeness of protective housing 2, make protective housing 2 be difficult to cause the damage because of the use strength increases in the use, factor influence such as external impact and ageing, the ageing of protective housing 2 has been reduced, the shelling, the deformation, thereby promote the reliability when Type-C plug uses.
The elastic shell 3 is used for further protecting the protective outer shell 21, the protective inner shell 22 and the transmission module 4, and the pulling and inserting force of the elastic shell 3 is uniformly distributed on the protective outer shell 21, so that the stress of the protective outer shell 21 is uniform, and the protective shell 2 is not easy to damage in the using process.
Referring to fig. 2-3, the Type-C plug further includes a connecting pipe 5, the connecting pipe 5 is fixedly installed on the protective outer shell 21 and the protective inner shell 22, and the connecting pipe 5 is wrapped at one end of the transmission line 6 for connecting the transmission module 4.
Specifically, connecting pipe 5 is a soft pipe, and the one end of connecting pipe 5 is used for connecting protecting sheathing 21 and protection inner shell 22, and the cladding is on external transmission line 6, plays the effect that the junction of protective housing 2 and transmission line 6 is difficult to buckle, reaches to make Type-C plug more durable, not fragile effect.
As one embodiment, the elastic sheath 3 is also coated on the surface of the connection pipe 5.
Referring to fig. 3-4, elastic shell 3 includes first opening 31 and second opening 32 for Type-C socket 1 to pass through, and first opening 31 and second opening 32 communicate, and first opening 31 is disposed at one end of elastic shell 3 close to Type-C socket 1, and second opening 32 is disposed at one end of elastic shell 3 far from Type-C socket 1.
Specifically, the elastic shell 3 is wrapped and attached outside the protective shell 21, as one embodiment, the opening width of the second opening 32 is smaller than the opening width of the first opening 31, the end of the elastic shell 3 close to the second opening 32 is used for wrapping the connecting pipe 5, the size of the second opening 32 is smaller than the side surface of the connecting pipe 5, the end of the elastic shell 3 close to the first opening 31 is used for wrapping the protective shell 21, the size of the first opening 31 is smaller than the side surface of the protective shell 2, so as to achieve a better wrapping effect, when the elastic shell 3 needs to be replaced, utilize the elastic characteristic of elasticity shell 3, the user takes elasticity shell 3 out from 1 one end of Type-C socket, and the elasticity shell 3 that will need to be changed embolias to laminating protecting sheathing 21, plays the life of extension Type-C plug, promotes the effect of the reliability of Type-C plug.
Referring to fig. 5 to 6, the protective housing 21 includes a touching portion 211, a first side portion 212 and a second side portion 213, the touching portion 211, the first side portion 212 and the second side portion 213 enclose the protective housing 21, and the first side portion 212, the second side portion 213 and the touching portion 211 are integrally connected.
Specifically, when the Type-C plug is pulled out and inserted, the hand of an operator exerts force on the touch part 211 to pull out and insert, the first side part 212 is connected with one end of the touch part 211, the first side part 212 is fixedly connected with the Type-C socket 1, the second side part 213 is connected with the other end of the touch part 211, the second side part 213 is fixedly connected with the connecting pipe 5, the first side part 212, the second side part 213 and the touch part 211 are integrally formed, so that the Type-C plug is not easy to break away from connection due to aging, the stability of the Type-C plug in use is improved, and the effect of reinforcing the Type-C plug is achieved.
Referring to fig. 7, the cross-sectional thickness of the first side portion 212 gradually increases from the center of the first side portion 212 toward the connection between the first side portion 212 and the touching portion 211.
Specifically, as one embodiment, a thicker thickness is provided at the joint of the first side portion 212 and the touching portion 211, so that the structural strength of the protective housing 21 is improved, and the joint of the first side portion 212 and the touching portion 211 is reinforced, thereby improving the stability of the Type-C plug during plugging and unplugging.
In another embodiment, the joint between the second side portion 213 and the touch portion 211 is also made thicker to reinforce the joint between the second side portion 213 and the touch portion 211.
Referring to fig. 7, the cross-sectional thickness of the touch portion 211 gradually increases from the center of the touch portion 211 toward the connection between the first side portion 212 and the touch portion 211.
Specifically, as one of the embodiments, the thickening process is performed at one end of the touch portion 211, so that the structural strength of the protective housing 21 is improved, and the function of reinforcing the joint of the first side portion 212 and the touch portion 211 is achieved, thereby improving the reliability of the Type-C plug in use and achieving the effect of prolonging the service life.
In another embodiment, the thickening process at the other end of the touch portion 211 serves to reinforce the joint between the second side portion 213 and the touch portion 211.
Referring to fig. 8, the elastic housing 3 is concavely provided at both sides thereof with hand grips 33.
Specifically, hand position 33 is used for providing better position of gripping when pulling out and inserting Type-C plug for the operator, and as one of them embodiment, the both sides of elasticity shell 3 all are provided with hand position 33, and hand position 33 is the depressed part of elasticity shell 3, and when operator's finger was pressed on hand position 33, exert oneself elasticity shell 3 more easily, reaches the better effect of gripping Type-C plug.
Referring to fig. 9, the hand grip 33 is provided with an anti-slip groove 331.
Specifically, as one of the embodiments, the anti-slip groove 331 is set to be wavy, the anti-slip groove 331 is set on the hand holding position 33, when the operator pulls out and inserts the Type-C plug through the hand holding position 33, the anti-slip groove 331 on the hand holding position 33 is used for increasing the friction force between the hand and the elastic shell 3, the wavy shape can increase the contact area between the fingers of the operator and the anti-slip groove 331, further increase the friction force, play an anti-slip role, and achieve the effect of improving the reliability of the Type-C plug when in use.
To sum up, protecting sheathing 21 and protecting inner shell 22 integrated into one piece promote the wholeness of protective housing 2, and establish the elasticity shell 3 that easily changes at protecting sheathing 21's surface cover, carry out further protection to protecting sheathing 21 for protecting sheathing 2 is difficult to lead to damaging because of ageing, the inhomogeneous scheduling problem of atress, reaches the effect of the reliability when improving the durability of Type-C plug and using.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a consolidate Type-C plug, a serial communication port, including Type-C socket (1), transmission module (4), protective housing (2) and elasticity shell (3), protective housing (2) are including protecting sheathing (21) and protecting inner shell (22), protecting sheathing (21) cladding is on the surface of protecting inner shell (22), protecting sheathing (21) and protecting inner shell (22) integrated into one piece, install in protecting inner shell (22) transmission module (4), the one end and the transmission module (4) of Type-C socket (1) are connected, wear out the other end of Type-C socket (1) protecting inner shell (22), protecting inner shell (22) and Type-C socket (1) fixed connection, elasticity shell (3) cladding protecting outer shell (21).
2. The reinforced Type-C plug according to claim 1, further comprising a connecting pipe (5), wherein the connecting pipe (5) is fixedly mounted on the outer protective shell (21) and the inner protective shell (22), and the connecting pipe (5) is wrapped at one end of the transmission line (6) for connecting the transmission module (4).
3. A ruggedized Type-C plug as claimed in claim 1, wherein the resilient sleeve (3) includes a first opening (31) and a second opening (32) for passing the Type-C jack (1), the first opening (31) and the second opening (32) communicating, the first opening (31) being disposed at an end of the resilient sleeve (3) proximate to the Type-C jack (1), the second opening (32) being disposed at an end of the resilient sleeve (3) distal from the Type-C jack (1).
4. A ruggedized Type-C plug according to claim 1, wherein the protective housing (21) includes a touch portion (211), a first side portion (212), and a second side portion (213), the touch portion (211), the first side portion (212), and the second side portion (213) enclosing the protective housing (21), the first side portion (212), the second side portion (213), and the touch portion (211) being integrally connected.
5. A ruggedized Type-C plug of claim 4, wherein the first side portion (212) has a cross-sectional thickness that gradually increases from a center of the first side portion (212) toward a junction of the first side portion (212) and the contact portion (211).
6. The ruggedized Type-C plug of claim 5, wherein the cross-sectional thickness of the contact portion (211) increases from the center of the contact portion (211) to the junction of the first side portion (212) and the contact portion (211).
7. A ruggedized Type-C plug as claimed in claim 1, wherein the resilient shell (3) is concavely provided with hand grips (33) on both sides.
8. A ruggedized Type-C plug as claimed in claim 7, wherein the hand grip (33) is provided with anti-slip grooves (331).
CN202123449442.9U 2021-12-30 2021-12-30 Consolidate Type-C plug Active CN216488697U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123449442.9U CN216488697U (en) 2021-12-30 2021-12-30 Consolidate Type-C plug

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123449442.9U CN216488697U (en) 2021-12-30 2021-12-30 Consolidate Type-C plug

Publications (1)

Publication Number Publication Date
CN216488697U true CN216488697U (en) 2022-05-10

Family

ID=81434099

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123449442.9U Active CN216488697U (en) 2021-12-30 2021-12-30 Consolidate Type-C plug

Country Status (1)

Country Link
CN (1) CN216488697U (en)

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