CN210040734U - Display device and terminal structure thereof - Google Patents

Display device and terminal structure thereof Download PDF

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Publication number
CN210040734U
CN210040734U CN201920855972.7U CN201920855972U CN210040734U CN 210040734 U CN210040734 U CN 210040734U CN 201920855972 U CN201920855972 U CN 201920855972U CN 210040734 U CN210040734 U CN 210040734U
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China
Prior art keywords
terminal
terminal body
track
connecting rod
rail
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Active
Application number
CN201920855972.7U
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Chinese (zh)
Inventor
王超
姜好德
房晓勇
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Hisense Visual Technology Co Ltd
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Qingdao Hisense Electronics Co Ltd
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Priority to CN201920855972.7U priority Critical patent/CN210040734U/en
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Abstract

The utility model provides a display device and terminal structure thereof, this terminal structure include shell, terminal, connecting rod and drive assembly. The shell is provided with a first rail extending in a straight line, and one end of the first rail is a closed end. The terminal comprises a terminal body and a rotating shaft protruding out of the terminal body, and the terminal body can move along the first track. One end of the connecting rod is connected with the terminal body, the output end of the driving assembly is connected with the other end of the connecting rod and drives the terminal body to move and turn over through the connecting rod, and the terminal body can move along the first track. When the terminal body moves to the closed end of the first track, the terminal body extends out of the shell and stretches out of the rotating shaft of the terminal body and is in running fit with the shell, so that the terminal body can be turned over relative to the shell, the terminal body is easy to find and convenient to butt, the terminal body is in butt joint with the driving assembly and the connecting rod under the supporting acting force, and the terminal body does not need to be supported by hands.

Description

Display device and terminal structure thereof
Technical Field
The utility model relates to a display device technical field, in particular to terminal structure and have this terminal structure's display device.
Background
With the development of artificial intelligence and smart home, the usage scene which can be provided for users by the digital television is not limited to multimedia playing, but also serves as an important intelligent multimedia terminal, so that the application range of the digital television is expanded by butting various external devices, wherein the external devices can be game devices, KTV devices and the like.
The digital television can be connected with various external devices through the terminals. In the related art, the terminal may be fixedly installed at the back of the digital tv and embedded in the digital tv, so that the terminal is difficult to be found and docked by a user. In addition, the terminal is retractable from the digital tv so that the terminal is exposed from the digital tv, however, when the terminal needs to be docked, a user needs to apply a supporting force to the terminal with one hand so that the terminal does not retract when docked, thereby completing the docking of the terminal.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a terminal structure and have this terminal structure's display device solves among the prior art problem that the terminal is difficult to discover and dock by the user.
In order to solve the technical problem, the utility model adopts the following technical scheme:
according to an aspect of the utility model, the utility model provides a terminal structure, include: the device comprises a shell, a first guide rail and a second guide rail, wherein the shell is provided with a first rail extending in a straight line, and one end of the first rail is a closed end; a terminal including a terminal body and a rotation shaft protruding from the terminal body; the terminal body is movable along the first track; when the terminal body moves to the closed end, the terminal body extends out of the shell, and the rotating shaft is in rotating fit with the shell, so that the terminal body can turn over relative to the shell; one end of the connecting rod is connected with the terminal body, and a gap is formed between the connecting position and the rotating axis of the rotating shaft; the driving component is provided with an output end capable of moving along a straight line; the output end is connected with the other end of the connecting rod and drives the terminal body to move and turn over through the connecting rod.
Optionally, the housing is further provided with a first slider; the first slider is slidably disposed in the first track; the rotating shaft is hinged to the first sliding block, so that the terminal body is driven to move along the first track along with the sliding of the first sliding block, and when the first sliding block abuts against the closed end of the first track, the rotating shaft can rotate around the first sliding block to drive the terminal body to turn.
Optionally, the first slider includes a first slider body and a connecting arm protruding outward from the first slider body, and the connecting arm is hinged to the rotating shaft.
Optionally, the rotating shaft is slidably located in the first track, so as to be able to drive the terminal body to move along the first track, and the rotating shaft can rotate around the closed end when abutting against the closed end.
Optionally, the housing is further provided with a second rail extending in a straight line, and the second rail is parallel to the first rail; the output end is slidably disposed in the second track.
Optionally, the housing is further provided with a baffle; the driving assembly further comprises a spring, one end of the spring is abutted to the baffle, and the other end of the spring is abutted to the output end, so that the output end slides along the second rail under the elastic force of the spring.
Optionally, a buckle is arranged on one side of the baffle close to the spring; the output end is provided with an elastic locking piece which can be clamped or separated from the buckle.
Optionally, one end of the buckle is provided with a first clamping part; the elastic locking sheet comprises a prepressing part and a second clamping part connected to the prepressing part, when the first clamping part abuts against the prepressing part, the second clamping part elastically contracts towards one side of the first clamping part, so that the second clamping part is buckled with the first clamping part, and the elastic locking sheet is buckled with the buckle.
Optionally, the driving assembly further includes a driving motor and a lead screw connected to an output shaft of the driving motor, and the lead screw rotates along with the rotation of the output shaft of the driving motor; the output end is screwed on the screw rod so as to slide linearly along the second track along with the rotation of the screw rod.
According to another aspect of the present invention, the present invention also provides a display device, including any one of the above terminal structures.
According to the above technical scheme, the utility model discloses following advantage and positive effect have at least:
in the terminal structure of the utility model, the output end of the driving component drives the terminal body to move and turn over through the connecting rod, wherein, the terminal body can move along the first track; when the terminal body moves to the closed end of the first track, the terminal body extends out of the shell and protrudes out of the rotating shaft of the terminal body to be matched with the shell in a rotating mode, so that the terminal body can be turned relative to the shell, the terminal body is easy to find and convenient to butt, the terminal body is butted under the supporting action force of the driving assembly and the connecting rod, and the terminal body does not need to be supported by hands.
Drawings
Fig. 1 is an exploded view of the display device of the present invention.
Fig. 2 is a perspective view of a terminal structure according to embodiment 1 of the present invention.
Fig. 3 is an original state diagram of the terminal structure of embodiment 1 of the present invention.
Fig. 4 is a moving state diagram of the terminal structure of embodiment 1 of the present invention.
Fig. 5 is a diagram of a terminal structure according to embodiment 1 of the present invention in an inverted state.
Fig. 6 is a perspective view of a housing according to embodiment 1 of the terminal structure of the present invention.
Fig. 7 is a perspective view of a first slider in terminal structure example 1 according to the present invention.
Fig. 8 is a perspective view of a terminal according to embodiment 1 of the terminal structure of the present invention.
Fig. 9 is a connection diagram of a link in embodiment 1 of the terminal structure of the present invention.
Fig. 10 is a perspective view of an output end of a drive unit according to embodiment 1 of the terminal structure of the present invention.
Fig. 11 is a plan view of a terminal structure according to embodiment 2 of the present invention.
Fig. 12 is a sectional view taken along the direction a in fig. 10.
Fig. 13 is a front view of a partial structure of embodiment 2 of the terminal structure of the present invention.
Fig. 14 is a side view of a partial structure of example 2 of the terminal structure of the present invention.
Fig. 15 is an original state diagram of the terminal structure of embodiment 2 of the present invention.
Fig. 16 is a moving state diagram of the terminal structure of embodiment 2 of the present invention.
Fig. 17 is a diagram showing a reversed state of the terminal structure according to embodiment 2 of the present invention.
Fig. 18 is an original state diagram of a partial structure of the terminal structure of embodiment 2 of the present invention.
Fig. 19 is a moving state diagram of a partial structure of embodiment 2 of the terminal structure of the present invention.
Fig. 20 is an inverted state diagram of a partial structure of the terminal structure of embodiment 2 of the present invention.
The reference numerals are explained below: 100. a display device; 110. a housing; 120. a back plate; 130. a terminal structure; 1. a housing; 11. a first track; 111. a closed end; 12. a second track; 13. a first slider; 131. a first slider body; 132. a connecting arm; 14. a baffle plate; 141. buckling; 1411. a first engaging portion; 2. a terminal; 21. a terminal body; 211. a boss; 2111. a first card slot; 2112. a first shaft hole; 22. a rotating shaft; 3. a connecting rod; 31. a connecting rod body; 32. a first connecting shaft; 33. a second connecting shaft; 4. a drive assembly; 41. an output end; 411. an elastic locking piece; 412. a second card slot; 413. a second shaft hole; 414. a spring trepan boring; 4111. a prepressing section; 4112. a second engaging portion; 42. a spring; 1a, a shell; 11a, a first track; 111a, closed end; 12a, a second track; 2a, a terminal; 21a, a terminal body; 22a, a rotating shaft; 211a, a first shaft hole; 3a, a connecting rod; 31a, a connecting rod body; 32a, a first connecting shaft; 33a, a second connecting shaft; 4a, a driving component; 41a, an output end; 42a, a driving motor; 43a, a screw rod; 411a, second shaft hole.
Detailed Description
Exemplary embodiments that embody features and advantages of the present invention will be described in detail in the following description. It is to be understood that the invention is capable of other and different embodiments and its several details are capable of modification without departing from the scope of the invention, and that the description and drawings are to be regarded as illustrative in nature and not as restrictive.
Referring to fig. 1 and 2, the present invention provides a terminal structure 130 and a display device 100 having the terminal structure 130, wherein the display device 100 can be a digital tv, a KTV display stand, a game console display stand, etc. The display device 100 can be externally connected with an external device for function increase, so that the display device 100 can be used in multiple functions, the terminal structure 130 is internally arranged in the display device 100, the external device can be externally connected with the display device 100, and the terminal structure 130 can be a connecting end, a camera end and the like.
Referring to fig. 1, in particular, the display device 100 includes a housing 110, a back plate 120 and a terminal structure 130, the housing 110 is fastened to the back plate 120, and the terminal structure 130 is disposed between the housing 110 and the back plate 120. The terminal structures 130 are disposed in the cavity formed by the housing 110 and the back-plate 120 when the terminal structures 130 are not needed. When the terminal structure 130 receives an upward pressing force, the terminal structure 130 protrudes outward.
Embodiment 1 of the terminal structure 130
Referring to fig. 2 in combination with fig. 3 to 5, in embodiment 1 of the present invention, the terminal structure 130 generally includes a housing 1, a terminal 2, a connecting rod 3, and a driving assembly 4. The terminal 2, the connecting rod 3 and the driving assembly 4 are all arranged on the same side of the shell 1. The driving unit 4 has an output end 41 capable of moving in a straight line, and one end of the link 3 is connected to the terminal 2 and the other end is connected to the output end 41 of the driving unit 4. The output end 41 of the driving assembly 4 drives the terminal 2 to move and turn via the connecting rod 3, wherein the terminal 2 has a home position and a turned position relative to the housing 1. The terminal 2 moves along the housing 1 and moves from the original position to the reversed position until the terminal 2 extends out of the housing 1, and the terminal 2 can be reversed relative to the housing 1 when in the reversed position, so that the terminal 2 is easy to find and convenient to butt joint by a user, and the terminal 2 is butt jointed under the supporting force of the driving assembly 4 and the connecting rod 3, so that the terminal 2 does not need to be supported by hands.
Referring to fig. 6 in combination with fig. 2 to 5, the housing 1 is provided with a first rail 11 extending linearly. One end of the first rail 11 is a closed end 111, and the reversed position of the terminal 2 is located on the closed end 111, and the original position of the terminal 2 is far away from the reversed position of the terminal 2. The housing 1 is further provided with a second rail 12 extending straight, the second rail 12 being parallel to the first rail 11, and the original position of the terminal 2 being close to the second rail 12. Since the second rail 12 is parallel to the first rail 11, wherein the driving assembly 4 is slidably disposed in the second rail 12, and the terminal 2 is slidably disposed in the first rail 11, the connection between the driving assembly 4 and the terminal 2 is relatively compact, so as to reduce the installation space of the housing 1, and the terminal structure 130 occupies a smaller space of the display device 100.
Referring to fig. 8 in combination with fig. 2 to 5, the terminal 2 includes a terminal body 21 and a rotation shaft 22 protruding from the terminal body 21, wherein the rotation shaft 22 may be disposed at both sides of the terminal body 21. The terminal body 21 is movable along the first rail 11 and reciprocally moves between a home position and an inverted position. When the terminal body 21 moves to the closed end 111, that is, the terminal body 21 is in the turning position, the terminal body 21 extends outward from the housing 1, and the rotating shaft 22 is in running fit with the housing 1, so that the terminal body 21 can be turned over relative to the housing 1, thereby the terminal body 21 is exposed out of the housing 1, further the terminal body 21 is convenient to butt, and the terminal body 21 is butted under the supporting force of the driving assembly 4 and the connecting rod 3, so that the terminal body 21 does not need to be supported by a hand.
Further, referring to fig. 7 in combination with fig. 2 to 6, the housing 1 is further provided with a first slider 13. The first slider 13 is slidably disposed in the first track 11 such that the first slider 13 reciprocates between a home position and a flip position. The first slider 13 includes a first slider body 131 and a connecting arm 132 protruding outward from the first slider body 131, and the connecting arm 132 is hinged to the rotating shaft 22, so that the rotating shaft 22 is hinged to the first slider 13, so that the terminal body 21 does not interfere with the first slider 13 when the terminal body 21 rotates around the rotation axis of the rotating shaft 22.
The rotation shaft 22 is hinged to the first slider 13 so as to move as the first slider 13 slides along the first rail 11. The rotating shaft 22 moves along the first track 11, the terminal body 21 moves along the first track 11 under the driving of the rotating shaft 22, and when the first slider 13 abuts against the closed end 111 of the first track 11, the terminal body 21 is at the turning position, the rotating shaft 22 can rotate around the first slider 13 to drive the terminal body 21 to turn over, so that the terminal body 21 is exposed out of the housing 1, the terminal body 21 is easy to find and convenient to butt, and the terminal body 21 is butt-jointed under the supporting force of the driving assembly 4 and the connecting rod 3, so that the terminal body 21 does not need to be supported by hands.
Specifically, the terminal body 21 may be a connector, a camera, or the like, and is not limited herein.
Referring to fig. 9 and fig. 2-5, one end of the connecting rod 3 is connected to the terminal body 21, and a gap is formed between the connecting portion and the rotation axis of the rotation shaft 22, so that the connecting portion between the terminal body 21 and the connecting rod 3 is disposed at one side of the rotation shaft 22 and is disposed in a staggered manner, and the terminal body 21 is driven by the rotation shaft 22 to change from a linear motion to an overturning motion, and the terminal body 21 is overturned around the rotation axis of the rotation shaft 22. The other end of the connecting rod 3 is connected to the output end 41 of the driving assembly 4, so that the transmission of the connecting rod 3 between the terminal body 21 and the output end 41 is realized.
Referring to fig. 8 and fig. 7, the connecting rod 3 includes a connecting rod body 31, a first connecting shaft 32 and a second connecting shaft 33, which are connected to two ends of the connecting rod body 31. The one end that terminal body 21 is close to connecting rod body 31 further is provided with the boss 211 of two parallels, forms first draw-in groove 2111 between two bosses 211, and the first axle hole 2112 has all been seted up to the symmetry in each boss 211, and during connecting rod body 31 inserted first draw-in groove 2111, two first axle holes 2112 of two bosses 211 were worn to establish through first connecting axle 32, realize connecting rod 3 and the shaft connection of terminal body 21.
Referring to fig. 8 and 9, a second slot 412 and a second shaft hole 413 are disposed at one end of the output end 41 close to the connecting rod body 31, and the connecting rod body 31 is inserted into the second slot 412, and the second connecting shaft 33 penetrates through the second shaft hole 413 of the output end 41, so that the connecting rod 3 is connected with the output end 41.
Referring to fig. 2 in combination with fig. 3-5, the driving assembly 4 has an output end 41 capable of moving along a straight line. The output end 41 is connected to the other end of the connecting rod 3 and drives the terminal body 21 to move and turn over through the connecting rod 3. The driving assembly 4 provides an elastic driving force and transmits the driving force through the connecting rod 3, and the output end 41 is slidably disposed in the second rail 12 of the housing 1 under the driving of the driving assembly 4.
Further, referring to fig. 2 in combination with fig. 3-6 and 10, the driving assembly 4 further includes a spring 42, and the driving force provided by the driving assembly 4 is an elastic force. The housing 1 is further provided with a shutter 14, and one end of the spring 42 abuts against the shutter 14 and the other end abuts against the output end 41, so that the output end 41 slides along the second rail 12 under the elastic force of the spring 42. The spring 42 is restored from the compressed state to generate an elastic force to the output end 41, and the output end 41 is made to slide along the second rail 12 by the elastic force.
Further, referring to fig. 10, the output end 41 is provided with a spring sleeve hole 414, the spring 42 is sleeved in the spring sleeve hole 414, and the spring sleeve hole 414 is in clearance fit with the spring 42, so that the spring 42 does not deflect when elastically deformed.
Referring to fig. 10 in combination with fig. 2-5, a latch 141 is disposed on a side of the baffle 14 adjacent to the spring 42. The output end 41 is provided with an elastic locking piece 411, and the elastic locking piece 411 can be engaged with or separated from the buckle 141. One end of the latch 141 is provided with a first engaging portion 1411. The elastic locking piece 411 includes a pre-pressing portion 4111 and a second engaging portion 4112 connected to the pre-pressing portion 4111, when the first engaging portion 1411 abuts against the pre-pressing portion 4111, the second engaging portion 4112 elastically contracts toward one side of the first engaging portion 1411, so that the second engaging portion 4112 is fastened to the first engaging portion 1411, and the elastic locking piece 411 is fastened to the fastener 141, at this time, the spring 42 is in a pre-pressing state.
Specifically, the output end 41 may be a second slider, which is not limited herein.
The utility model discloses among embodiment 1 terminal structure 130's use is probably as follows:
1. as shown in fig. 3, when the terminal structure 130 is not needed to be used, the elastic locking piece 411 is engaged with the buckle 141, the spring 42 is in a pre-pressed state, and the terminal body 21 does not protrude from the housing 1.
2. As shown in fig. 2 and 4, when the terminal structure 130 needs to be connected to another terminal structure 130, the terminal structure 130 needs to be in a moving state, and at this time, the terminal body 21 is pressed upward, so that the terminal body 21 receives a pushing force, and the pushing force is transmitted to the output end 41 through the connecting rod 3, so that the elastic locking piece 411 is separated from the buckle 141. The spring 42 is restored from the compressed state to generate an elastic force to the output end 41, and the output end 41 slides along the second rail 12 by the elastic force, so that the terminal body 21 moves along with the sliding of the first slider 13 along the first rail 11 until the terminal body 21 protrudes outward from the housing 1.
3. As shown in fig. 5 and 6, when the first slider 13 abuts against the closed end 111 of the first rail 11, the terminal body 21 is in the reversed position, and the output end 41 can slide along the second rail 12 under the elastic force of the spring 42. Because connecting rod 3 one end is connected in terminal body 21, and has the interval between the axis of rotation of junction and rotation axis 22 to realize that terminal body 21 overturns around the axis of rotation axis 22, and then realize that terminal body 21 easily is surveyed and convenient butt joint by the user, and terminal body 21 accomplishes the butt joint under the supporting force of drive assembly 4 and connecting rod 3, make terminal body 21 does not need the hand to support.
Embodiment 2 of the terminal structure 130
Referring to fig. 11 in combination with fig. 12 to 20, in embodiment 2 of the present invention, the terminal structure 130 generally includes a housing 1a, a terminal 2a, a connecting rod 3a, and a driving assembly 4 a. The terminal 2a, the connecting rod 3a and the driving component 4a are all disposed on the same side of the housing 1a, the driving component 4a has an output end 41a capable of moving along a straight line, one end of the connecting rod 3a is connected to the terminal 2a, and the other end is connected to the output end 41a of the driving component 4 a. The output end 41a of the driving assembly 4a drives the terminal 2a to move and turn via the link 3a, wherein the terminal 2a has a home position and a turned position with respect to the housing 1 a. The terminal 2a moves along the shell 1a and moves from the original position to the reversed position until the terminal 2a extends out of the shell 1a, the terminal 2a can be reversed relative to the shell 1a when in the reversed position, so that the terminal 2a is easy to find and convenient to butt joint by a user, and the terminal 2a is butted under the supporting force of the driving component 4a and the connecting rod 3a, so that the terminal 2a does not need to be supported by hands.
Referring to fig. 11 in combination with fig. 12, the housing 1a is provided with a first rail 11a extending linearly. One end of the first rail 11a is a closed end 111a, and the reversed position of the terminal 2a is located on the closed end 111a, and the original position of the terminal 2a is away from the reversed position of the terminal 2 a. The housing 1a is further provided with a second rail 12a extending straight, the second rail 12a being parallel to the first rail 11a, and the original position of the terminal 2a being close to the second rail 12 a. Since the second rail 12a is parallel to the first rail 11a, wherein the driving assembly 4a is slidably disposed in the second rail 12a, and the terminal 2a is slidably disposed in the first rail 11a, the connection between the driving assembly 4a and the terminal 2a is relatively compact, so as to reduce the installation space of the housing 1a, and the terminal structure 130 occupies a smaller space of the display device 100.
Referring to fig. 11 in combination with fig. 12 to 14, the terminal 2a includes a terminal body 21a and a rotation shaft 22a protruding from the terminal body 21a, wherein the rotation shaft 22a may be disposed at both sides of the terminal body 21 a. The terminal body 21a is movable along the first rail 11a and reciprocally moves between the home position and the reversed position. When the terminal body 21a moves to the closed end 111a, that is, the terminal body 21a is in the reversed position, the terminal body 21a extends out of the housing 1a, and the rotating shaft 22a is rotatably engaged with the housing 1a, so that the terminal body 21a can be reversed relative to the housing 1a, thereby exposing the terminal body 21a to the housing 1a, and facilitating the butt joint of the terminal body 21a, and the terminal body 21a is in the butt joint under the supporting force of the driving assembly 4a and the connecting rod 3a, so that the terminal body 21a does not need to be supported by a hand.
Further, the rotating shaft 22a is slidably disposed in the first track 11a, so as to drive the terminal body 21a to move along the first track 11a, wherein the rotating shaft 22a is rotatably connected to the closed end 111 a. The rotating shaft 22a moves along the first track 11a, when the rotating shaft 22a abuts against the closed end 111a, the rotating shaft 22a can rotate at the closed end 111a, so that the rotating shaft 22a rotates around the closed end 111a, and then the rotating shaft 22a drives the terminal body 21a to turn over, so that the terminal body 21a is exposed out of the housing 1a, the terminal body 21a is easy to find and convenient to dock by a user, and the terminal body 21a completes docking under the supporting force of the driving assembly 4a and the connecting rod 3a, so that the terminal body 21a does not need to be supported by a hand.
Referring to fig. 14 and fig. 11-13, one end of the connecting rod 3a is connected to the terminal body 21a, and a gap is formed between the connection point and the rotation axis of the rotation shaft 22a, so that the connection point between the terminal body 21a and the connecting rod 3a is disposed at one side of the rotation shaft 22a and is disposed in a staggered manner, and therefore the terminal body 21a can be changed from a linear motion to an overturning motion under the driving of the rotation shaft 22a, and the terminal body 21a is overturned around the rotation axis of the rotation shaft 22 a. The other end of the link 3a is connected to the output end 41a of the driving assembly 4a, thereby achieving transmission of the link 3 between the terminal body 21a and the output end 41 a.
Referring to fig. 17 and 18, the connecting rod 3a includes a connecting rod body 31a, a first connecting shaft 32a and a second connecting shaft 33a, which are connected to two ends of the connecting rod body 31a by a shaft. A first shaft hole 211a is opened at one end of the terminal body 21a close to the rotating shaft 22a, and the first connecting shaft 32a is inserted into the first shaft hole 211a of the terminal body 21a, so as to connect the connecting rod 3a and the terminal body 21 a.
Referring to fig. 17, a second shaft hole 411a is formed at one end of the output end 41a close to the connecting rod 3a, and the second connecting shaft 33a penetrates through the second shaft hole 411a of the output end 41a to connect the connecting rod 3a and the output end 41 a.
Referring to fig. 13 in combination with fig. 14 to 20, the driving element 4a has an output end 41a capable of moving in a straight line. The output end 41a is connected to the other end of the link 3a, and drives the terminal body 21a to move and turn via the link 3 a. The driving assembly 4a provides an electric driving force, and the transmission of the driving force is realized through the connecting rod 3a, and at the same time, the output end 41a is slidably disposed in the second rail 12a of the housing 1a under the driving of the driving assembly 4 a.
Further, the driving assembly 4a includes a driving motor 42a and a lead screw 43a connected to an output shaft of the driving motor 42a, and the lead screw 43a rotates as the output shaft of the driving motor 42a rotates. The output end 41a is screw-coupled to the lead screw 43a so as to linearly slide along the second rail 12a in accordance with the rotation of the lead screw 43 a.
Specifically, the output end 41a may be a second slider, and the driving motor 42a may be a servo motor, a synchronous motor, and the like, which is not limited herein.
The utility model discloses among embodiment 2 terminal structure 130's use is roughly as follows:
1. as shown in fig. 15, when the terminal structure 130 is not needed, the terminal structure 130 is in the original state, and at this time, the output end 41a is close to one end of the screw rod 43a far from the driving motor 42a, and the terminal body 21a is not exposed out of the housing 1 a.
2. As shown in fig. 16, when the terminal structure 130 needs to be mated, the terminal structure 130 needs to be in a moving state, and at this time, the driving motor 42a rotates and drives the output end 41a to move downward along the second rail 12a of the housing 1a, so that the terminal body 21a moves along with the movement of the rotating shaft 22a along the first rail 11a until the terminal body 21a extends outward out of the housing 1 a.
3. As shown in fig. 17, when the rotating shaft 22a abuts against the closed end 111 of the first rail 11, the terminal body 21a is in the reversed position, and the output end 41 can continue to move downward along the second rail 12a under the action of the electric driving force of the driving assembly 4 a. Because the rotating shaft 22a can rotate at the closed end 111a, the rotating shaft 22a rotates around the closed end 111a, and then the rotating shaft 22a drives the terminal body 21a to turn over, the terminal body 21a is exposed out of the housing 1a, so that the terminal 2a is easy to find and convenient to butt joint by a user, and the terminal body 21a is butt jointed under the supporting force of the driving assembly 4a and the connecting rod 3a, so that the terminal body 21a does not need to be supported by hands.
The embodiment of the present invention further provides a display device 100, which includes any of the terminal structures 130, please refer to the above embodiment for specific description, and the description will not be repeated here.
While the present invention has been described with reference to several exemplary embodiments, it is understood that the terminology used is intended to be in the nature of words of description and illustration, rather than of limitation. As the present invention may be embodied in several forms without departing from the spirit or essential characteristics thereof, it should also be understood that the above-described embodiments are not limited by any of the details of the foregoing description, but rather should be construed broadly within its spirit and scope as defined in the appended claims, and therefore all changes and modifications that fall within the meets and bounds of the claims, or equivalences of such meets and bounds are therefore intended to be embraced by the appended claims.

Claims (10)

1. A terminal structure, comprising:
the device comprises a shell, a first guide rail and a second guide rail, wherein the shell is provided with a first rail extending in a straight line, and one end of the first rail is a closed end;
a terminal including a terminal body and a rotation shaft protruding from the terminal body; the terminal body is movable along the first track; when the terminal body moves to the closed end, the terminal body extends out of the shell, and the rotating shaft is in rotating fit with the shell, so that the terminal body can turn over relative to the shell;
one end of the connecting rod is connected with the terminal body, and a gap is formed between the connecting position and the rotating axis of the rotating shaft; and
a driving assembly having an output end capable of moving along a straight line; the output end is connected with the other end of the connecting rod and drives the terminal body to move and turn over through the connecting rod.
2. The terminal structure according to claim 1, wherein the housing is further provided with a first slider; the first slider is slidably disposed in the first track;
the rotating shaft is hinged to the first sliding block, so that the terminal body is driven to move along the first track along with the sliding of the first sliding block, and when the first sliding block abuts against the closed end of the first track, the rotating shaft can rotate around the first sliding block to drive the terminal body to turn.
3. The terminal structure according to claim 2, wherein the first slider includes a first slider body and a connecting arm protruding outward from the first slider body, the connecting arm being hinged to the rotating shaft.
4. The terminal structure of claim 1, wherein the rotating shaft is slidably disposed in the first track so as to move the terminal body along the first track, and the rotating shaft is capable of rotating around the closed end when abutting against the closed end.
5. The terminal structure according to any one of claims 1 to 4, wherein the housing is further provided with a second rail extending straight, the second rail being parallel to the first rail; the output end is slidably disposed in the second track.
6. The terminal structure according to claim 5, wherein the housing is further provided with a shutter; the driving assembly further comprises a spring, one end of the spring is abutted to the baffle, and the other end of the spring is abutted to the output end, so that the output end slides along the second rail under the elastic force of the spring.
7. The terminal structure according to claim 6, wherein a side of the shutter adjacent to the spring is provided with a catch; the output end is provided with an elastic locking piece which can be clamped or separated from the buckle.
8. The terminal structure according to claim 7, wherein one end of the clip is provided with a first engaging portion; the elastic locking sheet comprises a prepressing part and a second clamping part connected to the prepressing part, when the first clamping part abuts against the prepressing part, the second clamping part elastically contracts towards one side of the first clamping part, so that the second clamping part is buckled with the first clamping part, and the elastic locking sheet is buckled with the buckle.
9. The terminal structure of claim 5, wherein the drive assembly further comprises a drive motor and a lead screw connected to an output shaft of the drive motor, the lead screw rotating as the output shaft of the drive motor rotates; the output end is screwed on the screw rod so as to slide linearly along the second track along with the rotation of the screw rod.
10. A display device comprising a terminal structure according to any one of claims 1 to 9.
CN201920855972.7U 2019-06-06 2019-06-06 Display device and terminal structure thereof Active CN210040734U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920855972.7U CN210040734U (en) 2019-06-06 2019-06-06 Display device and terminal structure thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920855972.7U CN210040734U (en) 2019-06-06 2019-06-06 Display device and terminal structure thereof

Publications (1)

Publication Number Publication Date
CN210040734U true CN210040734U (en) 2020-02-07

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920855972.7U Active CN210040734U (en) 2019-06-06 2019-06-06 Display device and terminal structure thereof

Country Status (1)

Country Link
CN (1) CN210040734U (en)

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Address after: 266555 Qingdao economic and Technological Development Zone, Shandong, Hong Kong Road, No. 218

Patentee after: Hisense Video Technology Co., Ltd

Address before: 266555 Qingdao economic and Technological Development Zone, Shandong, Hong Kong Road, No. 218

Patentee before: HISENSE ELECTRIC Co.,Ltd.