CN214754453U - High numerical control transmission rate USB interface structure - Google Patents
High numerical control transmission rate USB interface structure Download PDFInfo
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- CN214754453U CN214754453U CN202120595587.0U CN202120595587U CN214754453U CN 214754453 U CN214754453 U CN 214754453U CN 202120595587 U CN202120595587 U CN 202120595587U CN 214754453 U CN214754453 U CN 214754453U
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- usb plug
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Abstract
The utility model discloses a high numerical control transmission rate USB interface structure, including the connecting wire, be equipped with the first joint on the wall body of connecting wire one end, be equipped with the second on the wall body of first joint front end and connect, the second connects and alternates through the internal slot of a lateral wall and install in first joint one end, still be equipped with the connecting rope between first joint and the second joint lateral wall body, be equipped with the USB plug on the wall body of the connecting wire other end, be equipped with anti-disengaging mechanism in the USB plug wall body, anti-disengaging mechanism includes regulating wheel, fixed strip and briquetting, anti-disengaging mechanism has still seted up the mounting groove in a lateral wall body in the USB plug. A high numerical control transmission rate USB interface structure, relate to data transmission equipment technical field, through the setting of anticreep mechanism, can make the USB plug insert the slot of external equipment back, fix the USB plug in the slot through two briquettings of anticreep mechanism, prevent to drop.
Description
Technical Field
The utility model relates to a data transmission equipment technical field, in particular to high numerical control transmission rate USB interface structure.
Background
The data line is a necessary component for connecting the hard disk and the mainboard, each data line can only be connected with two IDE devices and is widely applied between various electronic devices, however, when part of the data transmission line is used for connecting two devices, because the USB interface end and the slot of the device are only installed through insertion, in some use processes, the USB interface end is often separated from the slot due to various conditions, and the use is affected.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high numerical control transmission rate USB interface structure can effectively solve the problem in the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a high numerical control transmission rate USB interface structure, includes the connecting wire, be equipped with the first joint on the wall body of connecting wire one end, be equipped with the second on the wall body of first joint front end and connect, the second connects and alternates through the internal slot of a lateral wall and install in first joint one end, still be equipped with between first joint and the second joint lateral wall body and be connected the rope, be equipped with the USB plug on the wall body of the connecting wire other end, be equipped with anti-disengaging mechanism in the USB plug wall body, anti-disengaging mechanism includes regulating wheel, fixed strip and briquetting.
Preferably, the anti-disengaging mechanism has still seted up the mounting groove in a lateral wall body in the USB plug, first rotary trough has still been seted up respectively in the top that is located mounting groove one side and the bottom wall body to the USB plug, still be equipped with the double-screw bolt in the mounting groove between the intermediate position wall body, double-screw bolt both sides wall body is respectively through welded mode fixed mounting on a lateral wall body in the mounting groove, still seted up respectively in USB plug one side front end and the rear end wall body and accomodate the groove, seted up the spacing groove respectively in accomodating the inslot both sides wall body, still be equipped with first fixture block respectively on one side front end in the USB plug and the rear end wall body, first fixture block passes through welded mode fixed mounting in a lateral wall body in first fixture block.
Preferably, the fixed shaft is arranged on the wall body at the middle position of one side of the regulating wheel, the regulating wheel and the fixed shaft are integrally molded by injection, a second rotary groove is further formed in the wall body at the outer side of the fixed shaft, screw holes are further formed in the wall body of the regulating wheel and the wall body of the fixed shaft respectively, the regulating wheel is communicated with the screw holes, and the regulating wheel is further screwed in the screw bolts in the mounting grooves through the screw holes in the wall body.
Preferably, two be equipped with the connecting strip between the relative lateral wall body of fixed strip, two the fixed strip passes through connecting strip fixed connection, still fixed mounting has the fixed orifices on the connecting strip intermediate position wall body, and the connecting strip alternates through the fixed orifices and installs in the fixed epaxial second rotary trough.
Preferably, two chutes are further formed in one side wall body of each fixing strip, the two fixing strips are respectively inserted and installed in the grooves of the inner side wall body of the USB plug, and the fixing strips are further embedded into the corresponding first clamping blocks through the chutes.
Preferably, two be equipped with the second fixture block on the wall body of briquetting both sides respectively, and two the second fixture block is integrated into one piece with the briquetting, the briquetting is installed in the spacing groove of accomodating inslot both sides through two second fixture block interlude.
Compared with the prior art, the utility model discloses following beneficial effect has:
a high numerical control transmission rate USB interface structure, through the setting of anti-disengaging mechanism, can make the USB plug insert the slot of external equipment in the back, fix the USB plug in the slot through two briquettings of anti-disengaging mechanism, prevent to drop.
Drawings
FIG. 1 is a schematic view of the main structure of the present invention;
FIG. 2 is a sectional view of the anti-disengagement mechanism of the present invention;
fig. 3 is an enlarged view of a portion a in fig. 2.
In the figure: 1. a connecting wire; 2. a first joint; 3. a second joint; 4. connecting ropes; 5. a USB plug; 6. an anti-drop mechanism; 7. an adjustment wheel; 8. a fixing strip; 9. briquetting; 10. mounting grooves; 11. a first rotary groove; 12. a stud; 13. a receiving groove; 14. a limiting groove; 15. a first clamping block; 16. a fixed shaft; 17. A second rotary groove; 18. a screw hole; 19. a connecting strip; 20. a fixing hole; 21. a chute; 22. and a second clamping block.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1-3, the utility model provides a pair of high numerical control transmission rate USB interface structure, including connecting wire 1, be equipped with first joint 2 on the wall body of 1 one end of connecting wire, be equipped with second joint 3 on the wall body of 2 front ends of first joint, second joint 3 is installed at first joint 2 one end through the internal slot interlude of a lateral wall, still be equipped with between 3 lateral wall bodies of first joint 2 and second joint and connect rope 4, be equipped with USB plug 5 on the wall body of 1 other end of connecting wire, the internal anti-disengaging mechanism 6 that is equipped with of USB plug 5 wall, anti-disengaging mechanism 6 includes regulating wheel 7, fixed strip 8 and briquetting 9.
The anti-disengaging mechanism 6 is characterized in that a mounting groove 10 is further formed in a side wall body in the USB plug 5, a first rotary groove 11 is further formed in the top and the bottom wall body on one side of the mounting groove 10 of the USB plug 5 respectively, a stud 12 is further arranged between the wall bodies of the middle positions in the mounting groove 10, the wall bodies on two sides of the stud 12 are fixedly mounted on the side wall body in the mounting groove 10 respectively in a fusion welding mode, a containing groove 13 is further formed in the front end of one side of the USB plug 5 and the wall body on the rear end respectively, a limiting groove 14 is formed in the wall bodies on two sides in the containing groove 13 respectively, a first clamping block 15 is further arranged on the wall body on one side of the front end in the USB plug 5 and the wall body on the rear end respectively, and the first clamping block 15 is fixedly mounted in a side wall body in the first clamping block 15 in a welding mode.
The fixing shaft 16 is arranged on the wall body of the middle position of one side of the adjusting wheel 7, the adjusting wheel 7 and the fixing shaft 16 are integrally molded through injection, a second rotary groove 17 is further formed in the wall body of the outer side of the fixing shaft 16, screw holes 18 are further formed in the wall bodies of the adjusting wheel 7 and the fixing shaft 16 respectively, the two screw holes 18 are communicated, the adjusting wheel 7 is further screwed into the stud 12 installed in the installation groove 10 through the screw holes 18 in the wall bodies, and the two fixing strips 8 are driven to move through the connecting strips 19 through the adjusting wheel 7 and the fixing shaft 6.
Be equipped with connecting strip 19 between the relative lateral wall body of two fixed strips 8, two fixed strips 8 pass through connecting strip 19 fixed connection, and still fixed mounting has fixed orifices 20 on the connecting strip 19 intermediate position wall body to connecting strip 19 passes through fixed orifices 20 and alternates to install in the second rotary groove 17 on fixed axle 16.
The sliding grooves 21 are further formed in one side wall body of each of the two fixing strips 8, the two fixing strips 8 are respectively inserted and installed in the grooves of the inner side wall body of the USB plug 5, and the fixing strips 8 are further embedded into the corresponding first clamping blocks 15 through the sliding grooves 21.
The two side wall bodies of the two pressing blocks 9 are respectively provided with the second clamping blocks 22, the two second clamping blocks 22 and the pressing blocks 9 are integrally formed, the pressing blocks 9 are installed in the limiting grooves 14 on the two sides in the accommodating grooves 13 in an inserting mode through the two second clamping blocks 22, and the two fixing strips 8 are matched to extrude and fix the USB interface on the inner wall of the slot conveniently through the arrangement of the two pressing blocks 9.
It should be noted that, the utility model relates to a high numerical control transmission rate USB interface structure, when using, firstly, the USB plug 5 is inserted into the slot of the external device, then, the adjusting wheel 7 with one side of the USB plug 5 located in the first rotating groove 11 is rotated, and then the adjusting wheel 7 is rotated to one side on the stud 12 through the screw hole 18 in the wall body, and then the adjusting wheel 7 is rotated while driving the second rotating groove 17 to rotate in the fixed hole 20 in the wall body of the connecting strip 19 through the fixed shaft 16 on one side, and the connecting strip 19 is moved to one side, and at the same time the connecting strip 19 drives the fixed strips 8 on both sides to move to one side in the groove of the inner wall of the USB plug 5, and then the wall body on the other side of the fixed strip 8 is extruded to one side on the cambered surface on one side of the corresponding press block 9, and then the wall body on the other side of two press blocks 9 passes through the corresponding accommodating groove 13 to be extruded on the inner wall of the slot of the external device, and the USB plug 5 is more firmly fixed in the slot by utilizing the friction force between the two pressing blocks 9 and the inner wall of the slot of the external equipment.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (6)
1. A high numerical control transmission rate USB interface structure which is characterized in that: including connecting wire (1), be equipped with first joint (2) on connecting wire (1) one end wall body, be equipped with on the first joint (2) front end wall body the second and connect (3), the second connects (3) and alternates through the internal slot of a lateral wall and installs in first joint (2) one end, still be equipped with between first joint (2) and second joint (3) a lateral wall body and connect rope (4), be equipped with USB plug (5) on connecting wire (1) other end wall body, be equipped with anti-disengaging mechanism (6) in USB plug (5) wall body, anti-disengaging mechanism (6) are including regulating wheel (7), fixed strip (8) and briquetting (9).
2. The high numerical control transmission rate USB interface structure according to claim 1, wherein: the anti-falling mechanism (6) is also provided with a mounting groove (10) in one side wall body in the USB plug (5), the USB plug (5) is also provided with a first rotary groove (11) respectively in the top and the bottom wall body at one side of the mounting groove (10), a stud (12) is arranged between the wall bodies at the middle position in the mounting groove (10), the wall bodies at two sides of the stud (12) are respectively fixedly mounted on one side wall body in the mounting groove (10) in a welding mode, the front end and the rear end wall of one side of the USB plug (5) are respectively provided with a containing groove (13), two side wall bodies in the accommodating groove (13) are respectively provided with a limit groove (14), the front end and the rear end wall body of one side in the USB plug (5) are respectively provided with a first clamping block (15), the first clamping block (15) is fixedly installed in a side wall body in the first clamping block (15) in a welding mode.
3. The high numerical control transmission rate USB interface structure of claim 2, wherein: be equipped with on the intermediate position wall body of regulating wheel (7) one side fixed axle (16), regulating wheel (7) and fixed axle (16) injection moulding as an organic whole, second turn trough (17) have still been seted up in fixed axle (16) lateral wall body, screw (18) have still been seted up respectively in regulating wheel (7) and fixed axle (16) wall body, and two screw (18) intercommunication, on screw (12) in mounting groove (10) are still installed through screw (18) screw in the wall body in regulating wheel (7).
4. The high numerical control transmission rate USB interface structure of claim 3, wherein: two be equipped with connecting strip (19), two between the relative lateral wall body of fixed strip (8) pass through connecting strip (19) fixed connection, still fixed mounting has fixed orifices (20) on connecting strip (19) intermediate position wall body, and in second rotary trough (17) on fixed axle (16) were installed in connecting strip (19) through fixed orifices (20) interlude.
5. The high numerical control transmission rate USB interface structure of claim 4, wherein: two still seted up spout (21) respectively in the fixed strip (8) lateral wall body, two fixed strip (8) alternate respectively and install in the recess of USB plug (5) medial wall body, and fixed strip (8) still imbed on corresponding first fixture block (15) through spout (21).
6. The high numerical control transmission rate USB interface structure of claim 5, wherein: two be equipped with second fixture block (22) on the wall body of briquetting (9) both sides respectively, and two second fixture block (22) and briquetting (9) are integrated into one piece, briquetting (9) are installed in holding spacing groove (14) of groove (13) interior both sides through two second fixture block (22) interlude.
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CN202120595587.0U CN214754453U (en) | 2021-03-24 | 2021-03-24 | High numerical control transmission rate USB interface structure |
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CN202120595587.0U CN214754453U (en) | 2021-03-24 | 2021-03-24 | High numerical control transmission rate USB interface structure |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115603117A (en) * | 2022-10-20 | 2023-01-13 | 广州昶视电子科技股份有限公司(Cn) | Display mainboard supporting multi-host network connection |
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2021
- 2021-03-24 CN CN202120595587.0U patent/CN214754453U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115603117A (en) * | 2022-10-20 | 2023-01-13 | 广州昶视电子科技股份有限公司(Cn) | Display mainboard supporting multi-host network connection |
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