CN217085618U - Collect video, PD in multiport intelligent docking station of an organic whole - Google Patents

Collect video, PD in multiport intelligent docking station of an organic whole Download PDF

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Publication number
CN217085618U
CN217085618U CN202123368792.2U CN202123368792U CN217085618U CN 217085618 U CN217085618 U CN 217085618U CN 202123368792 U CN202123368792 U CN 202123368792U CN 217085618 U CN217085618 U CN 217085618U
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CN
China
Prior art keywords
docking station
clamping
plate
shell
sliding groove
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Expired - Fee Related
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CN202123368792.2U
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Chinese (zh)
Inventor
陈春海
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Shenzhen Yiwei Electronics Co ltd
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Shenzhen Yiwei Electronics Co ltd
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Priority to CN202123368792.2U priority Critical patent/CN217085618U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model belongs to the technical field of the external equipment of computer, concretely relates to collect video, PD in multiport intelligence docking station of an organic whole, including expanding the depressed place, the fixed function connecting plate that is provided with in surface center under the expanding depressed place, the movable clamping device that has of function connecting plate lower surface has the adsorber, the function connecting plate still includes the plate body, the fixed embedding of plate body surface inside has the magnet, the fixed draw-in groove of having seted up of plate body both sides edge equidistance, the inside both ends of clamping shell are passed through interior guide arm slides and is provided with splint, it is provided with the sucking disc all to fix in absorption shell opposite side surface four corners. The utility model discloses can provide this extend a plurality of mounting means of depressed place, be applicable to under the various use scenes, guarantee to extend the work that depressed place can be stable under multiple scene, in addition, the uninstallation operation of adsorber is simple quick equally.

Description

Collect video, PD in multiport intelligent docking station of an organic whole
Technical Field
The utility model belongs to the technical field of the external equipment of computer, concretely relates to collect video, PD in multiport intelligence docking station of an organic whole.
Background
A Docking station (Docking station), also called a Port Replicator (Port Replicator), is an external device specially designed for a notebook computer, and can enable the notebook computer to be conveniently connected with a plurality of accessories or external devices (such as a power adapter, a network cable, a mouse, an external keyboard, a printer and an external display) in a one-stop manner by replicating or even expanding a Port of the notebook computer;
the problems existing in the prior art are as follows:
the docking station comprises a body, a plurality of docking stations are arranged on the body, the body is provided with a structure capable of fixing the docking stations, different problems exist in the use of the docking stations due to the difference of the field environment under different use scenes, the docking stations which cannot be fixed drop easily and accidentally, and the docking stations directly placed on a desktop occupy the space of the desktop.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an collect video, PD in multiport intelligence docking station of an organic whole, can provide the multiple mounting means of this expanding depressed place, be applicable to under the various use scenes, guarantee to expand the work that the depressed place can be stable under multiple scene, in addition, the uninstallation operation of adsorber is simple quick equally.
The utility model discloses the technical scheme who takes specifically as follows:
a multi-port intelligent docking station integrating video and PD (passive digital) comprises a docking station, wherein a functional connecting plate is fixedly arranged in the center of the lower surface of the docking station, a clamp is movably clamped on the lower surface of the functional connecting plate, and an absorber is movably clamped on the lower surface of the functional connecting plate;
the functional connecting plate also comprises a plate body, wherein magnet is fixedly embedded in the surface of the plate body, and clamping grooves are fixedly formed in the edges of two sides of the plate body at equal intervals;
the docking station further comprises a docking station body, one end of the docking station body is fixedly connected with a data line, the other end of the docking station body is fixedly provided with a network cable interface, and one side of the docking station body is fixedly provided with a multi-port connecting end.
The clamping device further comprises a clamping shell, two ends of one surface of the clamping shell are fixedly provided with a first clamping block, the first clamping block is movably embedded into the clamping groove, two inner guide rods are fixedly arranged on two sides of the interior of the clamping shell, two ends of the interior of the clamping shell are provided with clamping plates through the inner guide rods in a sliding mode, one outer wall of one side, away from the two clamping plates, of each clamping plate is fixedly connected with a first spring, and the springs are sleeved on the surfaces of the inner guide rods.
A sliding groove is fixedly formed in one side, extending out of the interior of the clamping shell, of the clamping plate, an embedded plate is slidably mounted in the sliding groove, a spring II is fixedly connected between the two side walls of one end of the embedded plate and the inner wall of the sliding groove, and the other end of the embedded plate is rotatably connected with a pressing plate through a coil spring.
The adsorber further comprises an adsorption shell, wherein four corners of one side surface of the adsorption shell are fixedly provided with two fixture blocks, the two fixture blocks are movably embedded into the clamping grooves, and four corners of the other side surface of the adsorption shell are fixedly provided with suckers.
The adsorption shell is characterized in that a straight sliding groove is fixedly formed in the center of the inner portion of the adsorption shell, a first sliding block is slidably mounted in the straight sliding groove, pull plates are fixedly connected to one side walls of the first sliding block, and the tail ends of the pull plates extend out of the inner portion of the adsorption shell.
Oblique sliding grooves are fixedly formed in four sides, located on the straight sliding groove, of the interior of the adsorption shell, sliding blocks II are installed in the oblique sliding grooves in a sliding mode, the sliding blocks II are connected with the sliding blocks I through connecting lines I, the sliding blocks II are connected with the surfaces of the suckers through connecting lines II, and springs III are connected to the outer surfaces, located on the connecting lines I, of one sides of the sliding blocks II.
The utility model discloses the technological effect who gains does:
(1) the utility model can fix the docking station on the metal table top through the magnet; the docking station can be fixed at the edge of the table body by clamping the two clamping plates; then the railing can be tightly clamped between the pressing plate and the docking station through the drawn built-in plate and the rotated pressing plate; the docking station can be fixed on a smooth desktop by pressing each sucking disc; above-mentioned mode provides this expanding depressed place multiple mounting means, is applicable to under various use scenes, guarantees the work that expanding depressed place can be stable under various scenes, avoids taking place unnecessary slip, improves the stability when expanding the depressed place and using, and clamping device and adsorber all set up to dismantled and assembled form, can have more user's needs, the optional dress by oneself.
(2) The utility model discloses, in the use of adsorber, through manual pull-out arm-tie, through the dragging of connecting wire one and connecting wire two, can raise the one corner of four sucking discs simultaneously, and then can easily relieve the adsorption effect of four sucking discs, when guaranteeing the good adsorption effect of adsorber, its uninstallation mode is simple quick equally.
Drawings
Fig. 1 is a bottom perspective view provided by an embodiment of the present invention;
fig. 2 is an exploded assembly view of a docking station provided by an embodiment of the present invention;
fig. 3 is a cut-away exploded view of a clip provided by an embodiment of the present invention;
fig. 4 is an internal structure view of an adsorber according to an embodiment of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. docking stations; 101. a docking station body; 102. a data line; 103. a multi-port connection end; 2. a functional connection board; 201. a plate body; 202. a magnet; 203. a card slot; 3. a clamp; 301. clamping the shell; 302. a first clamping block; 303. an inner guide rod; 304. A splint; 305. a first spring; 306. a sliding groove; 307. a built-in plate; 308. a second spring; 309. pressing a plate; 4. an adsorber; 401. an adsorption housing; 402. a suction cup; 403. a straight sliding chute; 404. an oblique chute; 405. a first sliding block; 406. pulling a plate; 407. a first connecting line; 408. a third spring; 409. a second sliding block; 410. and a second connecting line.
Detailed Description
In order to make the objects and advantages of the present invention more apparent, the present invention will be described in detail with reference to the following embodiments. It is to be understood that the following text is only intended to describe one or several particular embodiments of the invention, and does not strictly limit the scope of the claims specifically claimed.
As shown in fig. 1-4, a multi-port intelligent docking station integrating video and PD functions comprises a docking station 1, a functional connecting plate 2 is fixedly arranged in the center of the lower surface of the docking station 1, a clamp 3 is movably clamped on the lower surface of the functional connecting plate 2, and an absorber 4 is movably clamped on the lower surface of the functional connecting plate 2.
Referring to fig. 1, the docking station 1 further includes a docking station body 101, one end of the docking station body 101 is fixedly connected with a data line 102, the other end of the docking station body 101 is fixedly provided with a network cable interface, and one side of the docking station body 101 is fixedly provided with a multi-port connection end 103.
Referring to fig. 2, the functional connection board 2 further includes a board body 201, the inside of the surface of the board body 201 is fixedly embedded with the magnet 202, the two side edges of the board body 201 are fixedly provided with the slots 203 at equal intervals, and when the docking station 1 needs to be fixed on the surface of a metal material, the docking station 1 can be directly fixed on a desktop of the metal material through the magnet 202.
Referring to fig. 3, the clamping device 3 further includes a clamping housing 301, two ends of a surface of the clamping housing 301 are respectively and fixedly provided with a first clamping block 302, the first clamping block 302 is movably embedded in the clamping groove 203, when the docking station 1 needs to be fixed at the edge of the table body, the clamping device 3 and the functional connecting plate 2 are firstly installed, the clamping device is realized by embedding the clamping block I302 into the clamping groove 203, inner guide rods 303 are fixedly arranged on two sides of the interior of the clamping shell 301, clamping plates 304 are slidably arranged at two ends of the interior of the clamping shell 301 through the inner guide rods 303, springs I305 are fixedly connected to the outer walls of the two clamping plates 304 on the opposite sides, and the first spring 305 is sleeved on the surface of the inner guide rod 303, two clamping plates 304 in one clamping shell 301 are moved, the first spring 305 is simultaneously pressed by the clamping plates 304 in the moving process, then the two clamping plates 304 are clamped with the edge of the seat body, and the force of clamping can be improved by the pressed first spring 305.
Referring to fig. 3, a sliding groove 306 is fixedly formed in one side of the clamping plate 304 extending out of the interior of the clamping shell 301, an internal plate 307 is slidably mounted in the sliding groove 306, a second spring 308 is fixedly connected between two side walls of one end of the internal plate 307 and the inner wall of the sliding groove 306, the other end of the internal plate 307 is rotatably connected with a pressing plate 309 through a coil spring, when the docking station 1 is fixed on a handrail, the internal plate 307 slides in the sliding groove 306 according to the structural situation in the field, in the process, the second spring 308 is squeezed, then, the pressing plate 309 is rotated and the coil spring is squeezed, and the arrangement of the coil spring and the second spring 308 can enable the handrail to be tightly clamped between the pressing plate 309 and the docking station 1.
Referring to fig. 2, the adsorber 4 further includes an adsorption casing 401, four corners of one side surface of the adsorption casing 401 are all fixedly provided with two fixture blocks, two fixture blocks are also movably embedded in the clamping groove 203, four corners of the other side surface of the adsorption casing 401 are all fixedly provided with suction cups 402, when the docking station 1 needs to be fixed on a smooth desktop, the adsorber 4 and the functional connecting plate 2 are installed, the two fixture blocks are embedded in the clamping groove 203, the operation can be achieved, and then the docking station 1 can be fixed on the smooth desktop by pressing the suction cups 402.
Referring to fig. 4, a straight sliding groove 403 is fixedly arranged at the center inside the suction housing 401, a first sliding block 405 is slidably mounted inside the straight sliding groove 403, a pulling plate 406 is fixedly connected to one side wall of the first sliding block 405, and the end of the pulling plate 406 extends out of the inside of the suction housing 401.
Referring to fig. 4, oblique sliding grooves 404 are fixedly arranged on four sides of a straight sliding groove 403 in an adsorption shell 401, a second slider 409 is slidably mounted in the oblique sliding groove 404, the second slider 409 is connected with the first slider 405 through a first connecting line 407, the second slider 409 is connected with the surface of a suction cup 402 through a second connecting line 410, a third spring 408 is connected to the outer surface of the first connecting line 407 on one side of the second slider 409, the second slider 409 can slide in the oblique sliding groove 404 through dragging of the first connecting line 407, meanwhile, the third spring 408 is squeezed by the second slider 409, and then, one corner of the suction cup 402 can be lifted through dragging of the second connecting line 410, so that the adsorption effect of the four suction cups 402 can be easily removed.
The utility model discloses a theory of operation does: when the docking station 1 needs to be fixed on the surface of a metal material, the docking station 1 can be directly fixed on a desktop of the metal material through the magnet 202;
when the docking station 1 needs to be fixed at the edge of a table body, at this time, the clamping device 3 and the functional connecting plate 2 are installed firstly, the clamping block 302 is embedded into the clamping groove 203, then, two clamping plates 304 in one clamping shell 301 are moved, the spring I305 can be simultaneously extruded in the moving process of the clamping plates 304, then, the two clamping plates 304 and the edge of a base body are clamped, the extruded spring I305 can improve the clamping force, in addition, when the docking station 1 is fixed on a handrail, the built-in plate 307 slides in the sliding groove 306 according to the structure condition of the field, in the process, the spring II 308 is extruded, then, the pressing plate 309 is rotated and the coil spring is extruded, and the handrail can be tightly clamped between the pressing plate 309 and the docking station 1 due to the arrangement of the coil spring II 308;
when the docking station 1 needs to be fixed on a smooth desktop, the absorber 4 and the functional connecting plate 2 are installed, the second clamping block is embedded into the clamping groove 203, then, the docking station 1 can be fixed on the smooth desktop by pressing each clamping disc 402, when the docking station 1 needs to be disassembled, the pulling plate 406 is pulled out manually, the first sliding block 405 slides in the straight sliding groove 403, in the sliding process, the second sliding block 409 can slide in the inclined sliding groove 404 by dragging the first connecting line 407, meanwhile, the third spring 408 can be extruded by the second sliding block 409, and then, one corner of the clamping disc 402 can be lifted easily by dragging the second connecting line 410, and the adsorption effect of the four clamping discs 402 is further relieved.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention. The structures, devices, and methods of operation of the present invention, not specifically described and illustrated, are generally practiced by those of ordinary skill in the art without specific recitation or limitation.

Claims (7)

1. The utility model provides a collect video, PD in multiport intelligence docking station of an organic whole, includes docking station (1), its characterized in that: a functional connecting plate (2) is fixedly arranged at the center of the lower surface of the docking station (1), a clamping device (3) is movably clamped on the lower surface of the functional connecting plate (2), and an absorber (4) is movably clamped on the lower surface of the functional connecting plate (2);
function connecting plate (2) still include plate body (201), plate body (201) fixed embedding in surface has magnet (202), plate body (201) both sides edge equidistance is fixed and has been seted up draw-in groove (203).
2. The multi-port intelligent docking station integrating video and PD functions as claimed in claim 1, wherein: the docking station (1) further comprises a docking station body (101), one end of the docking station body (101) is fixedly connected with a data line (102), the other end of the docking station body (101) is fixedly provided with a network cable interface, and one side of the docking station body (101) is fixedly provided with a multi-port connecting end (103).
3. The multi-port intelligent docking station integrating video and PD functions as claimed in claim 1, wherein: the clamping device (3) further comprises a clamping shell (301), two ends of one surface of the clamping shell (301) are fixedly provided with a first clamping block (302), the first clamping block (302) is movably embedded into the clamping groove (203), two sides of the inner portion of the clamping shell (301) are fixedly provided with an inner guide rod (303), two ends of the inner portion of the clamping shell (301) are provided with a clamping plate (304) through the sliding of the inner guide rod (303), the clamping plate (304) is separated from the outer wall of one side of the clamping shell (305) and is fixedly connected with a first spring (305), and the first spring (305) is sleeved on the surface of the inner guide rod (303).
4. The multi-port intelligent docking station integrating video and PD functions as claimed in claim 3, wherein: a sliding groove (306) is fixedly formed in one side, extending out of the clamping shell (301), of the clamping plate (304), an internal plate (307) is installed in the sliding groove (306) in a sliding mode, a second spring (308) is fixedly connected between the two side walls of one end of the internal plate (307) and the inner wall of the sliding groove (306), and the other end of the internal plate (307) is rotatably connected with a pressing plate (309) through a coil spring.
5. The multi-port intelligent docking station integrating video and PD functions as claimed in claim 1, wherein: the adsorber (4) further comprises an adsorption shell (401), four corners of the surface of one side of the adsorption shell (401) are fixedly provided with two fixture blocks, the two fixture blocks are movably embedded into the clamping groove (203), and four corners of the surface of the other side of the adsorption shell (401) are fixedly provided with suckers (402).
6. The multi-port intelligent docking station integrating video and PD functions as claimed in claim 5, wherein: the adsorption shell is characterized in that a straight sliding groove (403) is fixedly arranged in the center of the interior of the adsorption shell (401), a first sliding block (405) is slidably mounted in the straight sliding groove (403), a pull plate (406) is fixedly connected to one side wall of the first sliding block (405), and the tail end of the pull plate (406) extends out of the interior of the adsorption shell (401).
7. The multi-port intelligent docking station with integrated video and PD functions as claimed in claim 6, wherein: slant chutes (404) are fixedly arranged on four sides of the straight chute (403) inside the adsorption shell (401), sliders II (409) are slidably mounted inside the slant chutes (404), the sliders II (409) are connected with the sliders I (405) through connecting lines I (407), the sliders II (409) are connected with the surfaces of the suckers (402) through connecting lines II (410), and springs III (408) are connected to the outer surfaces of the sliders II (409) on one sides of the connecting lines I (407).
CN202123368792.2U 2021-12-29 2021-12-29 Collect video, PD in multiport intelligent docking station of an organic whole Expired - Fee Related CN217085618U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123368792.2U CN217085618U (en) 2021-12-29 2021-12-29 Collect video, PD in multiport intelligent docking station of an organic whole

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123368792.2U CN217085618U (en) 2021-12-29 2021-12-29 Collect video, PD in multiport intelligent docking station of an organic whole

Publications (1)

Publication Number Publication Date
CN217085618U true CN217085618U (en) 2022-07-29

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ID=82540454

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123368792.2U Expired - Fee Related CN217085618U (en) 2021-12-29 2021-12-29 Collect video, PD in multiport intelligent docking station of an organic whole

Country Status (1)

Country Link
CN (1) CN217085618U (en)

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Granted publication date: 20220729