CN210743418U - Hang rope and worker's tablet - Google Patents

Hang rope and worker's tablet Download PDF

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Publication number
CN210743418U
CN210743418U CN201922273358.2U CN201922273358U CN210743418U CN 210743418 U CN210743418 U CN 210743418U CN 201922273358 U CN201922273358 U CN 201922273358U CN 210743418 U CN210743418 U CN 210743418U
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China
Prior art keywords
data interface
rope
data
cap
flexible
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CN201922273358.2U
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Chinese (zh)
Inventor
孙震
罗柏林
张晔
梁德敏
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Beijing Yuanlong Yato Culture Dissemination Co ltd
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Beijing Yuanlong Yato Culture Dissemination Co ltd
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Priority to CN201922273358.2U priority Critical patent/CN210743418U/en
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Abstract

The embodiment of the application provides a hanging rope and a worker's card. The hanging rope comprises a first rope body, a first data interface, a second data interface and a first data line, and a first connecting position and a second connecting position are configured on the first rope body. And one end of the second rope body is fixedly connected to the first connecting position of the first data line. And the locking fastener is used for connecting the other ends of the first rope body and the second rope body in a configuration manner when the hanging rope is closed, and enabling the rope body part between the first connecting position and the second rope body to form a closed lantern ring. The connecting piece, including connecting cap and flexible connectors, first data interface insert connect the cap in and with be connected the cap joint, flexible connectors's one end with be connected the cap and fixed or can dismantle and be connected, flexible connectors's the other end is connected and is hung the thing, hang the rope in this application and have the data transmission function, the work tablet still is integrated with portable power source's function, can alleviate user's the burden of carrying.

Description

Hang rope and worker's tablet
Technical Field
The application relates to the technical field of office supplies, in particular to a hanging rope and a worker's card.
Background
People usually need to wear a work card in the environments of daily work, exhibition activities and the like so as to be used for identity identification of users. Meanwhile, with the popularization and the large application of mobile interconnection and intelligent equipment, mobile communication electric equipment such as a smart phone and the like are carried with the user, and electric quantity is often required to be supplemented for the equipment. In order to charge devices such as smart phones anytime and anywhere, people usually carry a mobile power supply with them, especially in use environments with a large range of activities such as exhibitions and tourism and without power plug supply. Since a charger such as a portable power source and a charging cable need to be additionally carried, a burden on a user is increased.
SUMMERY OF THE UTILITY MODEL
An object of the embodiment of this application is to provide one kind with portable power source, data line and work tablet integration to integrative worker's tablet, its function that can richen the work tablet alleviates user's the burden of carrying.
The embodiment of the application provides a hang rope, includes:
the first rope body comprises a first data interface, a second data interface and a first data line, and a first connecting position and a second connecting position are configured on the first rope body;
one end of the second rope body is fixedly connected to the first connecting position of the first data line;
the locking fastener is used for connecting the other ends of the first rope body and the second rope body in a configuration mode when the hanging rope is closed, and enabling the rope body part between the first connecting position and the second rope body to form a closed lantern ring;
the connecting piece, including connecting cap and flexible connectors, first data interface insert connect in the cap and with connect the cap joint, flexible connectors's one end with it is fixed or can dismantle the connection to connect the cap, the other end of flexible connectors is connected by the suspended object.
In the implementation process, a part of the rope body of the hanging rope is separated to be used as a first rope body, and data interfaces are arranged at two end parts of the first rope body to enable the first rope body to have the function of a data line. The second rope body is located the position of a distance of data interface at first rope body, and first hookup location department extends and passes through the hasp piece with another port of first rope body and be connected, forms the closed lantern ring, makes it possess and hangs the rope function. The connecting piece sets up and connects cap and flexible connectors, connects the plug that the cap can the first data interface of holding and protects it, and connecting piece and first data interface joint can prevent connecting piece and the slippage of first data interface connecting piece simultaneously, and flexible connectors is used for being connected with the thing that hangs. Hang the rope in this application, can make the user wear with hang outside rope complex article, can also utilize the first rope body in hanging the rope to charge for mobile device.
In one embodiment, the flexible connecting member is a connecting rope.
In another embodiment, the flexible connector is a flexible connecting band; the connecting piece is arranged on the hung object, and the flexible connecting band is fixedly connected to the hung object.
In the implementation process, the connecting piece is arranged on the hung object, the flexible connecting band is fixedly connected with the hung object, and the first data interface is fixedly connected with the connecting cap, so that the fixed connection between the first rope body and the hung object can be realized, namely, the hanging rope and the hung object can be separated from the hung object only after the clamping position is opened, and when the interface of the hung object is a data interface, the insecure connection between the first data interface and the hung object can be avoided, and further, the firm connection between the hanging rope and the hung object can be realized.
In a possible embodiment, the flexible connector is integrally formed with the connecting cap.
In the implementation process, the flexible connecting piece and the connecting cap are integrally formed, so that the production and the manufacture of the connecting piece are facilitated.
In a possible implementation manner, the first data interface comprises two oppositely arranged side faces, and elastic clamping protrusions are arranged on the two oppositely arranged side faces;
connect the cap and be equipped with the card hole with the position department that two sides that set up relatively correspond, first data interface is inserting connect the cap just the protruding not reacing of elasticity card during the card hole, the protruding compression state that is in of elasticity card, and the protruding arrival of elasticity card during the card hole, the protruding entering of elasticity card block the card hole, and the restriction first data interface by extract in the connection cap.
In the implementation process, the first data interface can be detachably connected with the connecting cap through the elastic clamping protrusion. When the first data interface is inserted into the connecting cap and the elastic clamping projection does not reach the clamping hole, the elastic clamping projection is in a compressed state; when the elastic clamping protrusion reaches the clamping hole, the elastic clamping protrusion enters the clamping hole and limits the first data interface from being pulled out of the connecting cap; when the first data line needs to be pulled out of the connecting cap, the elastic clamping protrusion is pressed and is in a compressed state, the first data interface moves towards the direction far away from the connecting cap, the elastic clamping protrusion is brought into the cavity of the connecting cap, the elastic clamping protrusion is in a compressed state, and after the first data interface is separated from the connecting cap, the elastic clamping protrusion returns to the original position.
As an implementation manner, the second rope body comprises a second data line, one end of which is provided with a third data interface;
the second data line includes a first end and a second end; the first end of the first data line is connected with a first connecting position wire of the first data line, so that a second data line is connected with the first data line in parallel; the second end is provided with the third data interface.
In the implementation process, the second rope body also adopts a data line structure and forms a parallel structure with the first rope body. The second rope body adopts the data line structure, just makes the function that the rope possesses two data lines of hanging, and then expands the application scope of hanging the rope, if usable string rope charges or data transmission for two mobile device simultaneously, also can utilize one data line of hanging the rope to charge, and another carries out data transmission.
In one possible implementation, the locking member includes:
the first connecting block is arranged at a second connecting position of the first rope body;
the second connecting block is arranged on a shell of a third data interface of the second rope body;
a sleeve comprising a first port and a second port; the first port is limited on the second rope by the second connecting block; the second port is fixedly connected with the first connecting block;
when the second port is fixedly connected with the first connecting block, the second data interface on the first rope body and the third data interface of the second rope body are limited in the sleeve.
In the implementation process, the data interface on the first rope body and the data interface on the second rope body are both limited in the sleeve. The arrangement of the sleeve can play a certain protection role for the second data interface and the third data interface. Hang the neck at the user when hanging the rope to use simultaneously, the position of hasp piece just is located the intermediate position of neck and has slight pressure to the neck, and cylindrical sleeve is owing to have glossy curved surface, can avoid appearing uncomfortable sense with user's neck laminating betterly.
In one embodiment, the length of the sleeve is greater than the sum of the lengths of the second and third data interfaces.
In the implementation process, the length of the sleeve is larger than or equal to the sum of the lengths of the second data interface and the third data interface, so that the inner diameter of the sleeve is smaller, the length of the sleeve is longer, the fitting area of the sleeve and the neck of a user is increased when the sleeve is worn, and the sleeve is more comfortable to wear.
As an embodiment, the first connecting block and the second connecting block are cylindrical structures, and the caliber of the first port is larger than the outer diameter of the second rope body and smaller than the outer diameter of the second connecting block; the outer surface of the first connecting block is provided with a silica gel ring in interference fit with the inner surface of the second port.
In the implementation process, the silica gel ring on the outer surface of the first connecting block is in interference fit with the inner surface of the second port of the sleeve, and when the first connecting block is inserted into the second port of the sleeve, the first connecting block and the sleeve are tightly matched by means of elasticity and friction force of the silica gel ring, so that the first rope body and the second rope body are connected. When the first rope body and the second rope body need to be separated, only the friction force between the silica gel ring and the inner surface of the second port needs to be overcome.
As an embodiment, the first connecting block and the second connecting block are cylindrical structures, and the caliber of the first port is larger than the outer diameter of the second rope body and smaller than the outer diameter of the second connecting block; the sleeve is in threaded connection with the first connecting block.
In one possible implementation, the locking member includes:
the elastic connecting body is provided with a closed through hole and a clamping hole with a notch; the elastic connecting body is arranged on the second rope body in a penetrating mode through the through hole and limited to slide between the first end of the second data line and the third data interface;
the clamping hole is used for being matched with the first rope body, the rope body between the first connecting position and the first data interface in the first rope body can freely slide in the clamping hole, and when the hanging rope is used, the clamping hole is clamped and fixed at the second connecting position.
In another possible implementation manner, the second data interface housing and the third data interface housing are both cylindrical structures, and the locking member includes:
the first gap is arranged on the second data interface shell and has a minor arc-shaped cross section, and a first magnetic suction piece and a first plug-in port are arranged in the first gap;
the second gap is arranged on the third data interface shell and has a minor arc-shaped cross section, and a second magnetic attraction piece and a second socket arranged on the third data interface shell are arranged in the second gap;
when the hanging rope is worn, the first notch and the second notch are clamped, the data connector of the second data interface is inserted into the second socket, the data connector of the third data interface is inserted into the first socket, and the first magnetic suction piece and the second magnetic suction piece are attracted.
In another possible implementation manner, the hanging rope further comprises a fourth data interface and an anti-falling connecting piece, wherein the interface type of the fourth data interface is different from that of the third data interface;
the anti-drop connecting piece is used for connecting a third data interface and a fourth data interface, and the fourth data interface is configured into a first working state and a second working state under the connection of the anti-drop connecting piece: in a first working state, a fourth data interface is plugged with the third data interface; in a second working state, the fourth data interface is far away from the third data interface so as to avoid a data connector of the third data interface.
In the implementation process, a fourth data interface with an interface type different from that of the third data interface is added on the basis of the third data interface, so that the hanging rope can be suitable for mobile terminals with different interface types. Meanwhile, the anti-dropping connecting piece can limit the fourth data interface to be incapable of slipping from the third data interface structure, and can prevent the fourth data interface from being lost.
In a possible implementation manner, a first kidney-shaped hole is formed in a shell of the third data interface; a second kidney-shaped hole is formed in the shell of the fourth data interface;
the anticreep connecting piece includes the sliding plate body, the one end of sliding plate body is equipped with and is used for prescribing in first waist type hole and can be at the downthehole first locating part of gliding of first waist type, the other end of sliding plate body is equipped with and is used for prescribing in second waist type hole and can be at the downthehole second locating part of gliding of second waist type.
In another possible implementation manner, the first kidney-shaped holes are symmetrically arranged on two sides of the shell of the third data interface; the second waist-shaped holes are symmetrically formed in two sides of the shell of the fourth data interface;
the sliding plate body is connected between the first waist-shaped hole and the second waist-shaped hole which are positioned on the same side.
In another possible implementation manner, the anti-dropping connecting member is a flexible rope, one end of the flexible rope is connected to the shell of the third data interface, and the other end of the flexible rope is connected to the shell of the fourth data interface.
According to another aspect of the utility model, the utility model also provides a workmanship board, which comprises the hanging rope and the mobile power supply provided with the data interface; the connecting piece is used for detachably connecting the first rope body and the mobile power supply; the first data interface is used for being connected with a data interface of the mobile power supply.
In one possible implementation, the connection may be provided on the mobile power source.
In the implementation process, the connecting piece is arranged on the mobile power supply, because the flexible connecting band is fixedly connected with the mobile power supply, the first data interface is fixedly connected with the connecting cap, the first rope body can be fixedly connected with the mobile power supply through the arrangement, namely, the rope and the mobile power supply are hung only after being opened at the clamping position, so that the rope can be separated from a hung object, the insecurity of the first data interface and the mobile power supply through the data interface connection can be avoided, and the firm connection between the rope and the mobile power supply can be realized.
As an implementation manner, the first data interface is a male data line head, and the data interface of the mobile power supply is a female data line head.
As an embodiment, the mobile power supply includes:
the power supply body comprises two planes which are oppositely arranged;
and the upper cover is arranged in front of at least one plane, and a mounting gap is reserved between the upper cover and the plane to form a clamping groove.
As an embodiment, the upper cover is detachably connected to the power supply body.
As an implementation mode, two sides of the power supply body are provided with guide rails, two sides of the upper cover are provided with flanges matched with the guide rails, the top of each flange is provided with a clamping hole, and each guide rail is provided with a convex point which is matched with the clamping hole when the upper cover moves to a preset position along the guide rails and fixes the upper cover.
In the above-mentioned realization process, hang the rope and be connected with the portable power source cooperation that has the tablet function of working, make the tablet of working have portable power source and the characteristic of charging wire function outside having information identification functions such as the picture and text information show of standard and wireless information transmission concurrently, when richening the tablet function of working, alleviate user's the burden of carrying.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are required to be used in the embodiments of the present application will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and that those skilled in the art can also obtain other related drawings based on the drawings without inventive efforts.
Fig. 1 is a schematic structural diagram of a lanyard according to an embodiment of the present disclosure in one state;
FIG. 2 is a schematic view of the structure of FIG. 1 with the lanyard in another state;
FIG. 3 is a schematic structural diagram of a connector according to an embodiment of the present disclosure;
FIG. 4 is a schematic view of the connection between the connecting member and the suspended object according to another embodiment of the present application;
fig. 5 is a schematic structural view of the fastener in an open state;
fig. 6 is another schematic view of the catch member in an open position;
fig. 7 is a schematic structural view of another fastener provided in the present application;
FIG. 8 is a schematic view of the catch member in an open position of the lanyard of the configuration shown in FIG. 9;
fig. 9 is a schematic structural diagram of a second rope according to an embodiment of the present disclosure;
fig. 10 is a schematic structural view of another second rope provided in the embodiment of the present application;
FIG. 11 is a schematic structural view of another lanyard provided in accordance with an embodiment of the present application;
fig. 12 is a schematic structural view of another fastener provided in the present application;
FIG. 13 is a schematic view of the catch member in an open position of the lanyard of the configuration shown in FIG. 12;
fig. 14 is a schematic structural diagram of a mobile power supply according to an embodiment of the present application;
fig. 15 is a diagram illustrating a connection structure between an upper cover and a power supply body in a mobile power supply according to an embodiment of the present application.
Icon: 100-a first rope body; 200-a second rope body; 300-a catch member; 101-a first data interface; 102-a second data interface; 103-a first data line; 104-a first connection location; 105-a second connection location; 106-silica gel ring; 201-a third data interface; 202-a fourth data interface; 203-anti-drop connecting piece; 204-a first kidney-shaped hole; 205-second kidney hole; 301-a first connection block; 302-a second connection block; 303-a sleeve; 310-an elastic linker; 311-a through hole; 312-card hole; 304-a first gap; 305-a first magnetically attractive element; 306-a second gap; 400-a mobile power supply; 410-a power supply body; 411-plane; 420-upper cover; 412-a guide rail; 421-flanging; 422-through hole; 413-bumps; 430-data interface; 600-a connector; 610-a connecting cap; 620-flexible connectors; 630-hung object; 640-elastic snap protrusions; 650-Snap-in hole.
Detailed Description
The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures. Meanwhile, in the description of the present application, the terms "first", "second", and the like are used only for distinguishing the description, and are not to be construed as indicating or implying relative importance.
Fig. 1 is a schematic structural diagram of a lanyard according to an embodiment of the present disclosure in one state. Fig. 2 is a schematic view of the structure of the lanyard of the structure of fig. 1 in another state. Referring to fig. 1 and 2, the lanyard includes a first string body 100, a second string body 200, a catch member 300, and a connector 600.
The first rope 100 comprises a first data interface 101, a second data interface 102 and a first data line 103, and the first rope 100 is provided with a first connection position 104 and a second connection position 105.
And a second rope 200 having one end fixedly connected to the first connection position 104 of the first data line 103. The locking device is configured to connect the other ends of the first and second string bodies 100 and 200 when the hanging string is closed, and to form a closed loop with the second string body 200 at a portion between the first and second connection positions 104 and 105.
Fig. 3 is a schematic structural diagram of a connector according to an embodiment of the present application. Referring to fig. 3, the connector 600 includes a connection cap 610 and a flexible connector 620. The connection cap 610 includes a cavity for receiving the first data interface 101, and the first data interface is inserted into the connection cap 610 and engaged with the connection cap 610. One end of the flexible connector 620 is fixedly or detachably connected to the connection cap 610, and the other end of the flexible connector 620 is connected to the hung object 630.
In the above implementation process, a part of the rope body of the hanging rope is separated to be used as the first rope body 100, and data interfaces are arranged at two end parts of the first rope body 100 to enable the first rope body to have the function of a data line. The second rope 200 extends from the first rope 100 at a position at a distance from the data interface, i.e. the first connection position 104, and is connected to the other end of the first rope 100 by the locking member 300 to form a closed loop, so that the closed loop has a rope hanging function. The connecting piece is provided with a connecting cap 610 and a flexible connecting piece 620, the connecting cap 610 can accommodate a plug of the first data interface to protect the plug, meanwhile, the connecting piece is clamped with the first data interface, the connecting piece and the first data interface can be prevented from slipping off, and the flexible connecting piece 620 is used for being connected with a hung object 630. The hanging rope in the application can enable a user to charge the mobile device by utilizing the first rope body 100 in the hanging rope besides wearing the hung object 630 (such as a Gong brand and the like) matched with the hanging rope.
As an embodiment, referring to fig. 3, the flexible connector 620 is a connection string. The connecting rope is more universal in use and low in cost, and meanwhile, the flexible wire has better toughness and is not easy to break, so that firm connection between the hanging rope and other hung objects 630 can be realized.
In another embodiment, the flexible connector 620 is a flexible connecting band. Fig. 4 is a schematic view showing the connection between the connecting member and the suspended object according to another embodiment of the present application. Referring to fig. 4, the connecting member is disposed on the suspended object 630, and the flexible connecting belt is fixedly connected to the suspended object 630.
In the implementation process, the connecting piece is arranged on the hung object 630, and the flexible connecting band is fixedly connected with the hung object 630, and the first data interface is fixedly connected with the connecting cap 610, so that the fixed connection between the first rope body and the hung object 630 can be realized, that is, the hanging rope and the hung object 630 can be separated only after the clamping position is opened, and thus the firm connection between the hanging rope and the hung object 630 can be realized.
In one possible embodiment, the flexible connector 620 is integrally formed with the connector cap 610.
In the implementation process, the flexible connector 620 and the connecting cap 610 are integrally formed, so that the production and manufacture of the connector are facilitated.
In one possible embodiment, referring to fig. 3 and 4, the first data interface includes two opposite sides, and each of the two opposite sides has a resilient protrusion 640. The positions of the connecting cap 610 corresponding to the two oppositely arranged side surfaces are provided with clamping holes 650, when the first data interface is inserted into the connecting cap 610 and the elastic clamping protrusions 640 do not reach the clamping holes 650, the elastic clamping protrusions 640 are in a compressed state, and when the elastic clamping protrusions 640 reach the clamping holes 650, the elastic clamping protrusions 640 enter the clamping holes 650 and limit the first data interface to be pulled out from the connecting cap 610.
In the above implementation process, the first data interface can be detachably connected to the connection cap 610 through the elastic protrusion 640. When the first data interface is inserted into the connection cap 610 and the elastic clamping protrusion 640 does not reach the clamping hole 650, the elastic clamping protrusion 640 is in a compressed state; when the elastic clamping protrusion 640 reaches the clamping hole 650, the elastic clamping protrusion 640 enters the clamping hole 650 and limits the first data interface from being pulled out of the connecting cap 610; when the first data line needs to be pulled out from the connecting cap 610, the elastic clamping protrusion 640 is pressed and is in a compressed state, then the first data interface moves towards a direction away from the connecting cap 610, the elastic clamping protrusion 640 is brought into the cavity of the connecting cap 610, the elastic clamping protrusion 640 is in a compressed state, and after the first data interface is separated from the connecting cap 610, the elastic clamping protrusion 640 returns to the original position.
It should be noted that, the structure of the elastic clamping protrusion 640 is not specifically limited in the present application, and any structure that can penetrate into the cavity of the connection cap 610 and be in a compressed state, can pop up after reaching the clamping hole 650 to limit the first data interface to be pulled out from the connection cap 610, and can be pulled out from the connection cap 610 after being compressed passively falls into the protection scope of the present application.
As an embodiment, the second rope 200 includes a second data line having a third data interface at one end. The second data line includes a first terminal and a second terminal. A first end is wire-connected to a first connection position 104 of the first data line 103, so that the second data line is connected in parallel to the first data line 103; the second end is provided with a third data interface 201.
In the above implementation process, the second rope 200 also adopts a data line structure and forms a parallel structure with the first rope 100. The second rope body 200 adopts a data line structure, so that the hanging rope has the functions of two data lines, the application range of the hanging rope is further expanded, if the hanging rope can be used for simultaneously charging two mobile devices or transmitting data, one data line of the hanging rope can also be used for charging, and the other data line of the hanging rope can be used for transmitting data.
In one possible implementation, referring to fig. 5, the catch member 300 includes a first connection block 301, a second connection block 302, and a sleeve 303.
The first connection block 301 is disposed at the second connection location 105 of the first rope 100. The second connection block 302 is arranged on the housing of the third data interface 201. The sleeve 303 includes a first port and a second port; the first port is restricted on the second rope 200 by the second connection block 302; the second port is fixedly connected with the first connection block 301. When the second port is fixedly connected with the first connection block 301, the second data interface 102 on the first rope 100 and the third data interface 201 of the second rope 200 are confined in the sleeve 303.
In the above implementation, the data interface on the first rope 100 and the data interface on the second rope 200 are both defined in the sleeve 303. The arrangement of the sleeve 303 can provide a certain protection for the second data interface 102 and the third data interface 201. Simultaneously because hang the rope and hang in user's neck when using, the position of hasp piece 300 just is located the intermediate position of neck and has slight pressure to the neck, and cylindrical sleeve 303 is owing to have glossy curved surface, can be better with user's neck laminating, avoids appearing uncomfortable feeling.
Further, the sleeve 303 of the present embodiment may have a certain curvature to conform to the natural shape of the neck.
In one possible implementation, the length of the sleeve 303 is greater than the sum of the lengths of the second data interface 102 and the third data interface 201.
In the implementation process, the second data interface 102 and the third data interface 201 are limited in the sleeve 303, and if the length of the sleeve 303 is smaller than the length of the second data interface 102 and the third data interface 201, the second data interface 102 and the third data interface 201 are overlapped in the sleeve 303, and since the thickness requirements of the second data interface 102 and the third data interface 201 need to be met, the inner diameter of the sleeve 303 is larger. If the length of the sleeve 303 is greater than or equal to the sum of the lengths of the second data interface 102 and the third data interface 201, the inner diameter of the sleeve 303 is smaller, the length is longer, the fitting area with the neck of a user is increased when the sleeve 303 is worn, and the sleeve is more comfortable to wear.
In a possible implementation manner, the first connection block 301 and the second connection block 302 are both cylindrical structures, and the caliber of the first port is larger than the outer diameter of the second rope and smaller than the outer diameter of the second connection block 302, so that the sleeve 303 is limited on the second rope 200 by the second connection block 302 and cannot slip off the second rope. The outer surface of the first connecting block 301 is provided with a silicone ring 106 which is in interference fit with the inner surface of the second port.
In the implementation process, the silica gel ring 106 is in interference fit with the inner surface of the second port, and when the first connecting block 301 is inserted into the second port of the sleeve 303, the first connecting block 301 and the sleeve 303 are tightly matched by means of elasticity and friction force of the silica gel ring 106, so that the first rope body and the second rope body are connected. When the first rope body and the second rope body need to be separated, only the friction force between the silica gel ring 106 and the inner surface of the second port needs to be overcome.
In another possible implementation, the sleeve 303 is threadedly connected with the first connection block 301, as shown in fig. 6.
Fig. 7 is a schematic structural view of another fastener provided in the present application. Fig. 8 is a schematic view of the construction of the catch member in the open position of the lanyard of the construction shown in fig. 7. Referring to fig. 7 and 8, the locking member includes an elastic connection body 310.
The elastic connecting body 310 is provided with a closed through hole 311 and a clip hole 312 with a notch. The elastic connecting body 310 is inserted into the second rope 200 through the through hole 311 and is limited to slide between the first end of the second data line and the third data interface 201.
The fastening hole 312 is used for being matched with the first rope 100, the rope between the first connection position 104 and the first data interface 101 in the first rope 100 can freely slide in the fastening hole 312, and when the rope is hung for use, the fastening hole 312 is fastened at the second connection position 105.
The locking fastener 300 with the structure can open the hanging rope only by separating the first rope body 100 from the binding force of the clamping hole 312, and can close the first rope body 100 by pressing the first rope body 100 into the clamping hole 312, so that the locking fastener has the advantage of simple opening and closing. Meanwhile, the locking piece 300 can still be used for the data line under the condition that the hanging rope is not required to be opened.
Fig. 9 is a schematic structural diagram of a second rope according to an embodiment of the present application. Referring to fig. 9, the lanyard further includes a fourth data interface 202 having a different interface type than the third data interface type and an anti-slip connector 203. A fourth data interface 202 and a drop-proof connector 203 are arranged on the second rope body.
The anti-drop connector 203 is used for connecting the third data interface and the fourth data interface 202, and the fourth data interface 202 is configured to be in a first working state and a second working state under the connection of the anti-drop connector 203: in the first operating state, the fourth data interface 202 is plugged into the third data interface. Referring to fig. 9, in the second operating state, the fourth data interface 202 is far away from the third data interface to avoid the data connector of the third data interface.
In the implementation process, a fourth data interface 202 with an interface type different from that of the third data interface is added on the basis of the third data interface, so that the hanging rope can be applied to mobile terminals with different interface types. Meanwhile, the anti-slip connector 203 can limit the fourth data interface 202 from slipping off the third data interface structure, and can prevent the fourth data interface 202 from being lost.
In one possible implementation, referring to fig. 9, a first kidney-shaped hole 204 is provided on the housing of the third data interface, and a second kidney-shaped hole 205 is provided on the housing of the fourth data interface 202. The anti-drop connector 203 comprises a sliding plate body, one end of the sliding plate body is provided with a first limiting part used for limiting in the first waist-shaped hole 204 and capable of sliding in the first waist-shaped hole 204, and the other end of the sliding plate body is provided with a second limiting part used for limiting in the second waist-shaped hole 205 and capable of sliding in the second waist-shaped hole 205.
The connection between the third data interface and the fourth data interface 202 can be realized by arranging the first kidney-shaped hole 204, the second kidney-shaped hole 205 and the sliding plate body on the same side of the shell of the third data interface and the shell of the fourth data interface 202. In order to enable the third data interface and the fourth data interface 202 to be connected more stably when they are plugged, in another possible implementation manner, first kidney-shaped holes 204 are symmetrically arranged on two sides of the shell of the third data interface, second kidney-shaped holes 205 are symmetrically arranged on two sides of the shell of the fourth data interface 202, and a sliding plate body is connected between the first kidney-shaped holes 204 and the second kidney-shaped holes 205 located on the same side.
Fig. 10 is a schematic structural view of another second rope according to an embodiment of the present application. Referring to fig. 10, the anti-dropping connector 203 is a flexible rope, one end of the flexible rope is connected to the shell of the third data interface, and the other end of the flexible rope is connected to the shell of the fourth data interface 202.
In the implementation process, the flexible rope is made of materials including but not limited to nylon rope, silica gel, fiber silk and the like. It should be noted that the shape of the flexible rope may also be made into a belt shape, the application does not specifically limit the material and the shape of the flexible wire, and all flexible ropes capable of connecting the third data interface and the fourth data interface 202 fall within the protection scope of the application.
In the embodiment shown in fig. 9 and 10, the length of the sleeve 303 is greater than the sum of the lengths of the third data interface and the fourth data interface 202 after being plugged, and after the third data interface and the fourth data interface 202 are plugged, the sleeve 303 passes through the third data interface and the fourth data interface 202 to be clamped with the first connection block 301 through a silicone ring, so as to realize the fixed connection of the first rope and the second rope. In another possible implementation, the sleeve 303 is connected to the first connection block 301 by a screw thread.
Fig. 11 is a schematic structural view of another sling according to an embodiment of the present application. Referring to fig. 11, the connection manner of the first rope and the second rope is the same as that of the first rope and the second rope shown in fig. 7, and the difference is that a fourth data interface 202 and a flexible rope are further provided on the second rope.
In the implementation process, the fourth data interface 202 with the interface type different from that of the third data interface is added on the basis of the third data interface, and the structure can enable the hanging rope to be suitable for mobile terminals with different interface types. Meanwhile, the flexible rope can limit the fourth data interface 202 from slipping off the third data interface structure, so as to prevent the fourth data interface 202 from being lost.
Fig. 12 is a schematic structural view of another fastener according to an embodiment of the present disclosure. Fig. 13 is a schematic view of the construction of the catch member in the open position of the lanyard of the construction shown in fig. 12. Referring to fig. 12 and 13, the second data interface 102 housing and the third data housing are both cylindrical structures, and the locking member 300 includes:
a first notch 304 with a minor arc cross section is disposed in the housing of the second data interface 102, a first magnetic attraction element 305 is disposed in the first notch 304, and a first socket (not shown in the figure due to the view angle shielding) is disposed on the housing of the second data interface 102. A second notch 306 with a minor arc cross section and disposed on the housing of the third data interface 201, wherein a second magnetic attraction member (not shown in the figure) and a second socket (not shown in the figure) disposed on the housing of the third data interface 201 are disposed in the second notch. When the hanging rope is closed, the first notch 304 and the second notch 306 are engaged, the data connector of the second data interface 102 is inserted into the second socket, the data connector of the third data interface 201 is inserted into the first socket, and the first magnetic attraction piece 305 and the second magnetic attraction piece attract each other.
In the locking member 300 with the above structure, the two data interfaces are respectively inserted into the corresponding sockets and are attracted by the attraction force of the first magnetic attraction member 305 and the second magnetic attraction member. The hanging rope can be opened by applying a force with opposite directions and larger than the suction force of the first magnetic attraction piece 305 and the second magnetic attraction piece at the two ends of the first rope body 100 and the second rope body 200, and the hanging rope has the characteristic of simple opening and closing. This structure uses magnetism to inhale the structure and carries out the connection of first rope body 100 and second rope body 200 for connection structure is simple. In addition, in this embodiment, the second data interface 102 housing and the third data interface housing both adopt cylindrical structures, and form a cylindrical joint when the hanging rope is closed. The advantages of the cylindrical joint are as described above for the cylindrical sleeve 303 and will not be described further here.
It should be noted that the structure of the locking element is only exemplary, and any structure that can connect the first rope 100 and the second rope 200 and does not obstruct the use of the second data interface 102 and/or the third data interface 201 falls within the protection scope of the present application.
According to the utility model discloses a another aspect still provides a worker's tablet, and this worker's tablet includes the string rope of any above-mentioned structure and the portable power source 400 who has data interface. The first data interface 101 of the first rope 100 in the hanging rope is connected with the data interface of the mobile power supply 400.
Fig. 14 is a schematic structural diagram of a mobile power supply according to an embodiment of the present application. As shown in fig. 14, the mobile power supply 400 includes a power supply body 410, a data interface 430, and an upper cover 420 provided on the power supply body 410.
The power supply body 410 includes two planes 411 disposed oppositely. The upper cover 420 is disposed in front of at least one plane 411, and a mounting gap is reserved between the upper cover and the plane 411 to form a slot.
In the structure shown in fig. 14, an upper cover 420 is disposed in front of one of the planes 411. It should be noted that, the two planes 411 of the power supply body 410 may be provided with an upper cover 420, which may have two slots.
But not limited to business cards, entrance cards, bus cards and the like can be placed in the card slot positions.
In the implementation process, the mobile power supply 400 further has a function of storing the card on the basis of providing the electric energy.
The upper cover 420 is detachably connected to the power supply body 410. In a possible implementation manner, fig. 15 is a connection structure diagram of an upper cover and a power supply body in a mobile power supply provided by an embodiment of the present application, as shown in fig. 15, two sides of the power supply body 410 are both provided with guide rails 412, two sides of the upper cover 420 are both provided with flanges 421 matching with the guide rails 412, a top of each flange 421 is provided with a through hole 422, and each guide rail 412 is provided with a protruding point 413 matching with the through hole 422 and fixing the upper cover 420 when the upper cover 420 moves to a predetermined position along the guide rails 412.
In one embodiment, the first data interface 101 is a male data line, and the data interface of the mobile power supply 400 is a female data line.
In the implementation process, the hanging rope is connected with the work board with the function of the mobile power supply 400 in a matched mode, so that the work board has the characteristics of the functions of the mobile power supply 400 and the charging wire outside the information identification functions of standard image-text information display, wireless information transmission and the like, the functions of the work board are enriched, and the carrying burden of a user is relieved.
In the embodiments provided in the present application, it should be understood that the disclosed apparatus and method can be implemented in other ways. The above description is only an example of the present application and is not intended to limit the scope of the present application, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application. It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.

Claims (12)

1. A lanyard, comprising:
the first rope body comprises a first data interface, a second data interface and a first data line, and a first connecting position and a second connecting position are configured on the first rope body;
one end of the second rope body is fixedly connected to the first connecting position of the first data line;
the locking fastener is used for connecting the other ends of the first rope body and the second rope body in a configuration mode when the hanging rope is closed, and enabling the rope body part between the first connecting position and the second rope body to form a closed lantern ring;
the connecting piece, including connecting cap and flexible connectors, first data interface insert connect in the cap and with connect the cap joint, flexible connectors's one end with it is fixed or can dismantle the connection to connect the cap, the other end of flexible connectors is connected by the suspended object.
2. The lanyard of claim 1 wherein the flexible connector is a connecting cord.
3. The lanyard of claim 1 wherein the flexible connector is a flexible connecting strap; the connecting piece is arranged on the hung object, and the flexible connecting band is fixedly connected to the hung object.
4. The lanyard of claim 3 wherein the flexible connector is integrally formed with the connector cap.
5. The lanyard of any one of claims 1 to 4 wherein the first data interface comprises two oppositely disposed sides, both of the oppositely disposed sides having resilient tabs thereon;
connect the cap and be equipped with the joint hole with the position department that two sides that set up relatively correspond, first data interface is inserting connect the cap just the protruding arrival of elasticity card during the joint hole, the protruding compression state that is in of elasticity card, and the protruding arrival of elasticity card during the joint hole, the protruding entering of elasticity card the joint hole, and the restriction first data interface by extract in the connection cap.
6. The lanyard of claim 5 wherein the second lanyard body includes a second data line having a third data interface disposed at one end;
the second data line includes a first end and a second end; the first end of the first data line is connected with a first connecting position wire of the first data line, so that a second data line is connected with the first data line in parallel; the second end is provided with the third data interface.
7. The lanyard of claim 6 further comprising: the interface type of the fourth data interface is different from that of the third data interface;
the anti-drop connecting piece is used for connecting a third data interface and a fourth data interface, and the fourth data interface is configured into a first working state and a second working state under the connection of the anti-drop connecting piece: in a first working state, a fourth data interface is plugged with the third data interface; in a second working state, the fourth data interface is far away from the third data interface so as to avoid a data connector of the third data interface.
8. The lanyard of claim 7 wherein,
a first kidney-shaped hole is formed in the shell of the third data interface;
a second kidney-shaped hole is formed in the shell of the fourth data interface;
the anticreep connecting piece includes the sliding plate body, the one end of sliding plate body is equipped with and is used for prescribing in first waist type hole and can be at the downthehole first locating part of gliding of first waist type, the other end of sliding plate body is equipped with and is used for prescribing in second waist type hole and can be at the downthehole second locating part of gliding of second waist type.
9. The lanyard of claim 8 wherein,
the first waist-shaped holes are symmetrically formed in two sides of the shell of the third data interface;
the second waist-shaped holes are symmetrically formed in two sides of the shell of the fourth data interface;
the sliding plate body is connected between the first waist-shaped hole and the second waist-shaped hole which are positioned on the same side.
10. The hanging rope according to claim 7, wherein the anti-dropping connector is a flexible rope, one end of the flexible rope is connected to the shell of the third data interface, and the other end of the flexible rope is connected to the shell of the fourth data interface.
11. An employee's card, comprising a lanyard according to any one of claims 1 to 10 and a mobile power supply provided with a data interface;
the connecting piece is used for detachably connecting the first rope body and the mobile power supply;
the first data interface is used for being connected with a data interface of the mobile power supply.
12. The card of claim 11, wherein the connector is disposable on the portable power source.
CN201922273358.2U 2019-12-16 2019-12-16 Hang rope and worker's tablet Active CN210743418U (en)

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Application Number Priority Date Filing Date Title
CN201922273358.2U CN210743418U (en) 2019-12-16 2019-12-16 Hang rope and worker's tablet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922273358.2U CN210743418U (en) 2019-12-16 2019-12-16 Hang rope and worker's tablet

Publications (1)

Publication Number Publication Date
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Family Applications (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111954108A (en) * 2020-09-02 2020-11-17 恩平市越普电子科技有限公司 Work card type wireless microphone

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111954108A (en) * 2020-09-02 2020-11-17 恩平市越普电子科技有限公司 Work card type wireless microphone

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