WO2020098259A1 - 一种视讯通话装置 - Google Patents
一种视讯通话装置 Download PDFInfo
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- WO2020098259A1 WO2020098259A1 PCT/CN2019/089443 CN2019089443W WO2020098259A1 WO 2020098259 A1 WO2020098259 A1 WO 2020098259A1 CN 2019089443 W CN2019089443 W CN 2019089443W WO 2020098259 A1 WO2020098259 A1 WO 2020098259A1
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- WIPO (PCT)
- Prior art keywords
- display
- rotating shaft
- connector
- magnetic rotating
- video call
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N7/00—Television systems
- H04N7/14—Systems for two-way working
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N7/00—Television systems
- H04N7/14—Systems for two-way working
- H04N7/15—Conference systems
Definitions
- This application relates to the field of display technology, and in particular to a video call device.
- the video device used in the video call conference usually divides a large screen into multiple video areas, and the video areas cannot be freely combined or split, which is inconvenient to carry and move, and thus cannot meet multiple video calls Different needs of the scene.
- the present application provides a video call device to solve the technical problem that the video call device in the prior art cannot meet the different needs of multiple video call scenarios.
- an embodiment of the present application provides a video calling device, including: two display components, each of which has a display screen formed on it; at least two opposite ends of the two display components are detachable Rotating the connection mechanism to connect, so that the display screens on the two display components are arranged facing away or adjacently; wherein, the two display components have a structured matching surface so that the adjacently arranged display The screen forms a splicing screen.
- the detachable rotation connection mechanism includes a first connection member and a second connection member detachably and rotatably connected to the first connection member.
- the detachable rotating connection mechanism further includes: a holding portion and a groove, the holding portion and the groove are detachably and rotatably connected, so that the two display components The rotation angle between them is greater than or equal to 0 ° and less than or equal to 180 °;
- the first connecting member is provided with a mounting groove for mounting the clamping portion, and is disposed in the mounting groove and is in contact with the clamping portion An elastic portion abutting on one end, the elastic portion controls the stroke displacement of the clamping portion;
- the clamping groove is provided in the second connector.
- the end of the clamping portion away from the elastic portion is provided with an arc-shaped convex surface;
- the structure of the clamping groove is an arc-shaped concave structure that cooperates with the arc-shaped convex surface, so that The clamping portion with an arc-shaped convex surface is rotatably connected in the clamping groove with the arc-shaped concave.
- the first connecting member includes a first transition portion, and the first transition portion has an arc-shaped surface connected to the clamping portion;
- the second connecting member includes a second transition portion , The second transition portion has an arc-shaped surface connected with the clamping slot.
- both the first connector and the second connector are cylindrical, and the stroke of the clamping portion is changed by the second transition portion to realize the first connector A mated state or a separated state with the second connecting member; when the first connecting member and the second connecting member are in the engaged state, the holding portion and the locking groove may surround the cylindrical Rotate in the axial direction.
- the first connecting member includes a magnetic rotating shaft
- the second connecting member includes a magnetic rotating shaft sleeve detachably and rotatably connected to the outside of the magnetic rotating shaft
- the magnetic rotating shaft is cylindrical, and the cross-sectional shape perpendicular to the magnetic rotating shaft of the portion where the magnetic rotating shaft is embedded in the display assembly is a fan shape with a central angle of 90 °; the magnetic rotating shaft sleeve The cross-sectional shape perpendicular to the magnetic rotation axis is a fan shape with a center angle of 90 °.
- the magnetic rotating shaft sleeve includes a plurality of protrusions arranged along the axial direction of the magnetic rotating shaft; the position of the display assembly for embedding the magnetic rotating shaft includes a plurality of A groove adapted to the plurality of extensions; in a direction perpendicular to the magnetic rotating shaft, the maximum cross-sectional shape of the magnetic rotating shaft sleeve is less than 1/2 circle.
- a portion of the display assembly for embedding the magnetic rotation shaft includes a plurality of stop portions, the plurality of stop portions are arranged along the direction of the magnetic rotation shaft, and extend with the plurality of extensions Set the interval.
- the first connecting member is provided on at least two ends of one display assembly, and the second connecting member is provided on at least two ends of another display assembly.
- the display assembly includes a mounting housing, the mounting housing includes a back plate opposite to the display screen, and a plurality of connected between the back plate and the display screen Side plate; the first connection piece or the second connection piece is provided at the connection of the back plate and the side plate.
- a mounting surface for mounting the first connector or the second connector is formed between the back plate and the side panel; the mounting surface is perpendicular to the first connector or
- the cross-sectional shape of the second connector in the axial direction is a fan-shaped structure with a center angle of 90 °.
- the first connector or the second connector is installed at opposite ends of the display assembly.
- the surface of the mounting board away from the display screen is a flat surface.
- the two side surfaces connected to the first connector or the second connector in the mounting housing have different heights in a direction perpendicular to the direction of the backplane; two of the display components The opposite end of the first and second connecting members are detachably connected by rotation; the two display components, one of the display components of the mounting shell connecting the side of the first connecting component and the other display component mounting shell The side of the body connected to the second connecting member is arranged in mirror symmetry with respect to the detachable rotating connecting mechanism.
- the display screens on the two display components are arranged mirror-symmetrically with respect to the bonding surface.
- the two display components are arranged mirror-symmetrically with respect to the bonding surface.
- each of the display components includes at least one curved display screen and / or at least one flat display screen; wherein, each display screen independently drives the display, or the display screen is located on the same display component Drive the display together.
- a video call device includes two display components, each of which has a display screen formed thereon; at least two opposite ends of the two display components are detachably connected so that the two display components are located
- the display screen on the component faces away from or adjacent to the setting. Both ends of the two display components can be detached and connected, which is convenient for the two display components to be detachable and detachable in a variety of ways, and through the detachable connection of the display component, the display screen can be placed facing away, adjacent to the plane and adjacent It is placed at a preset angle to meet the needs of different video call scenarios for sharing the screen with the person on the opposite side, sharing the screen with the neighboring person, and sharing the screen with one person.
- FIG. 1 is a schematic structural diagram of a video call device provided by an embodiment of the present application.
- FIG. 2 is a schematic structural diagram of a video call device provided by another embodiment of this application.
- FIG. 3 is a schematic structural diagram of a detachable rotating connection mechanism in a video call device provided by an embodiment of the present application
- FIG. 4 is a schematic structural diagram of a detachable rotating connection mechanism in a video call device when a first connector and a second connector are in an assembled position according to an embodiment of the present application;
- FIG. 5 is a cross-sectional view of a detachable rotating connection mechanism in a video call device when a first connector and a second connector are in an assembled position according to an embodiment of this application;
- FIG. 6 is a schematic structural diagram of a video call device provided by another embodiment of the present application.
- FIG. 7 is a schematic structural diagram of a video call device provided by an embodiment of the present application.
- FIG. 8 is a schematic structural diagram of a video call device provided by another embodiment of this application.
- FIG. 9 is a schematic structural diagram of a video call device provided by an embodiment of the present application.
- FIG. 10 is a schematic structural diagram of a video call device provided by another embodiment of this application.
- FIG. 11 is a schematic structural diagram of a video call device provided by an embodiment of the present application.
- FIG. 12 is a schematic structural diagram of a video call device provided by another embodiment of this application.
- FIG. 13 is a schematic structural diagram of two display components in a video call device before and after rotation provided by an embodiment of the present application;
- FIG. 14 is a schematic structural diagram of a video call device provided by another embodiment of the present application.
- FIG. 1 shows a video call device provided by an embodiment of the present application. As shown in FIG. 1, it includes two display components 3, wherein each display component 3 is formed with a display screen 31 and two display components 3 At least two opposite ends of the are connected by a detachable rotating connection mechanism 1, so that the display screens on the two display assemblies are located away from or adjacent to each other.
- a rotary connection device provided by an embodiment of the present application includes two display components, each of which has a display screen formed on it; at least two opposite ends of the two display components are detachably connected so that the two display components are located
- the display screen on the component faces away from or adjacent to the setting. Both ends of the two display components can be detached and connected, which is convenient for disassembling the two display components and the disassembly methods are diverse, and because the two display components can be folded together, it is convenient to move and carry.
- the display screens can be placed back-to-back, the adjacent screens can be placed in a plane, and placed at a preset angle to the adjacent screens.
- the needs of different video call scenarios such as screens.
- the two display components 3 have matching surfaces 33 with matching structures so that the adjacent display screens 31 form a splicing screen.
- the display screens 31 of the two display components can also be spliced to form a splicing screen that is smoothly connected, reducing human visual fatigue.
- each display component 3 includes at least one curved display screen and / or at least one flat display screen, each display screen 31 is independently driven for display, or multiple display screens 31 located on the same display component Drive the display together.
- each display screen 31 is independently driven for display, or multiple display screens 31 located on the same display component Drive the display together.
- a plurality of display screens 31 located on the same display component 3 display different contents.
- one display screen 31 displays the speech of the counterpart spokesperson, and the other display screen 31 can display the video or picture involved in the speech of the counterpart spokesperson, which improves the user experience.
- the number of flat display screens and curved display screens included in the display component 3 and whether each display screen has an independent drive display can be selected according to actual needs, for example, it can include only one curved display screen; It includes a flat display screen; it can also include a curved display screen and a flat display screen, where the flat display screen and the curved display screen are respectively located on the two parallel sides of the display assembly 3, so the display assembly 3
- the number of flat display screens and curved display screens included and whether each display screen has an independent drive display is not limited.
- the display surface in the display assembly 3 is a wavy curved surface, and the display surfaces of two adjacent display assemblies 3 are arranged in mirror symmetry.
- the display surface in the display assembly 3 is S-shaped.
- the display surfaces of the two adjacent display components 3 are arranged in a mirror image symmetry, which can make the wave-shaped curved surfaces of the two display components connect smoothly, and the participants can have a wider field of view when viewing the display device.
- the curved display device is closer to the curvature of the eyeball of a person, which can reduce the visual fatigue of the person.
- each display component 3 further includes an imaging device 6 disposed on the non-display surface of the display component 3, as shown in FIG. 1.
- the video call device is used for a video conference, even if the camera device 6 does not rotate, it can still collect and transmit real-time video images at different locations in the conference room to the video call partner.
- the camera device 6 is installed on the display surface of each display component 3.
- the camera device 6 can be turned on as needed. If the camera device 6 does not need to be turned on, then The position of the camera 6 can be displayed normally, reflecting the display function.
- the location of the camera device 6 may not be displayed, that is, the camera function is reflected. Therefore, no matter whether the camera device 6 needs to be turned on or not, the display function of the display component is not affected, and the full-screen display of the display component can be realized.
- the imaging device 6 is a telescopic imaging device.
- the imaging device can be hidden to protect the imaging device from dust in the environment.
- the camera device 6 is a rotatable camera device, and the rotatable camera device can capture a wider range of images, which further enables images at the location of the participants at any angle in the conference room to be collected .
- the detachable rotating connection structure 1 includes a holding portion 112 and a detachable and rotatably connected slot 211 with the holding portion 112, as shown in FIG. 3, so that the two display components 3 It can rotate and the rotation angle is between 0-180 °.
- the embodiment of the present application connects two adjacent display components 3 by using a detachable rotating connection structure 1, so that the two adjacent display components 3 can rotate and be detachable from each other.
- the video call device for video conference it can be based on Participants in different positions in the conference room can adjust the relative positions between multiple display components so that participants in different positions in the conference room can all see the content displayed on the display components.
- the detachable rotation connection structure 1 further includes a first connection member 11 and a second connection member 21 detachably and rotatably connected to the first connection member 11.
- the first connector 11 is provided with a mounting groove for mounting the clamping portion 112 and an elastic portion 111 disposed in the mounting groove and abutting one end of the clamping portion 112, wherein the elastic portion 111 controls the stroke displacement of the clamping portion 112.
- the second connector 21 is provided with a locking slot 211 that cooperates with the holding portion, as shown in FIG. 3.
- the detachable connection between the first connector 11 and the second connector 21 may be: when the first connector 11 and the second connector 21 are connected, only the card in the first connector 11 needs to be connected
- the holding portion 112 is assembled in the locking groove 211 in the second connecting member 21, wherein the holding portion 112 can be detachably connected to the locking groove 211, and the locking portion 112 can rotate in the locking groove 211, thereby driving the second connecting member 21 and the first connector 11 rotate with each other, so as to realize a quick detachable connection between the two display assemblies 3.
- the end of the holding portion 112 away from the elastic portion 111 is provided with an arc-shaped convex surface;
- the structure of the clamping groove 211 is an arc-shaped concave structure that cooperates with the arc-shaped convex surface, so that a card with an arc-shaped convex surface
- the holding portion 112 is rotatably connected in the locking groove 211 having an arc-shaped recess, as shown in FIG. 3. Thereby, the first connection member 11 and the second connection member 21 are rotatably connected.
- the second connector 21 touches the arc-shaped convex surface in the holding portion 112 of the first connector 11 to hold After the portion 112 is squeezed, a squeezing force is applied to the elastic member 111, and then the elastic member 111 is elastically deformed. The elastic member 111 pops into the slot 211 of the second connector 21 under the action of the elastic member 111, that is, the assembly connection between the first connector 11 and the second connector 21 is completed.
- the first connector 11 and the second connector 21 need to be disassembled, only the second connector 21 needs to be given an upward force, and the first connector can be removed by the elastic member 111 and the clamping portion 112 11 is separated from the second connector 21.
- the number of the first connection members 11 and the number of the second connection members 21 included in the detachable rotation connection mechanism 1 may be the case shown in FIG. 4, that is, the detachable rotation connection mechanism 1 includes two first connections Piece 11 and three second connecting pieces 21, of which a second connecting piece 21 is assembled between two adjacent first connecting pieces 11 and a first connecting piece is assembled between two adjacent second connecting pieces 21 ⁇ ⁇ ⁇ 1 ⁇ One connector 1.
- the embodiment of the present application is not limited to this.
- the detachable rotating connection mechanism 1 includes a first connection member 11 and two second connection members 21, wherein the first connection member 11 is assembled between the two second connection members 21
- the detachable rotating connection mechanism 1 includes two first connection members 11 and a second connection member 21, wherein the second connection member 21 is assembled between the two first connection members 11. Therefore, as long as the first connecting member 11 and the second connecting member 21 can realize the mutually rotating connection, the embodiment of the present application does not make any number of the first connecting members 11 and the second connecting members 21 included in the detachable rotating connecting mechanism 1 limited.
- the detachable connection between the first connection member 11 and the second connection member 21 is through the clamping portion-elastic member structure
- the first connecting member 11 is provided with an elastic member 111 and a holding portion 112, and a slot 211 is provided at the end of the second connecting member 21 connected to the first connecting member 11, when the first connecting member 11 is connected to the first
- the holding portion 112 is located in the locking groove 211.
- the assembly structure only shows the connection method of the two connecting members at the connecting part, and the embodiment of the present application is not limited to this.
- the elastic member 111 and the holding portion 112 may be provided in the second connecting member 21, and the locking slot 211 is provided At the end of the first connecting member 11 that needs to be connected to the second connecting member 21, when the first connecting member 11 is assembled with the second connecting member 21, the first connecting member 11 touches the holding portion 112, and the holding portion 112 Under the action of squeezing, a squeezing force is applied to the elastic member 111, and then the elastic member 111 is elastically deformed. Under the action of the elastic member 111, it pops into the card slot 211 of the first connector 11, that is, the assembly connection between the first connector 11 and the second connector 21 is completed.
- the two connecting pieces are assembled and disassembled by using the elastic force. Without the aid of tools, the two connecting pieces can be quickly assembled and disassembled, thereby achieving the rapidity of the two display components 3 Assembly and disassembly.
- the first connecting member 11 further includes a first transition portion 113
- the second connecting member 21 further includes a second transition portion 213, wherein the first transition portion 113 has an arc shape connected to the holding portion 112 Surface, the second transition portion 213 has an arc-shaped surface connected to the clamping slot 211, as shown in FIG. 5, when the first connector 11 and the second connector 21 are disassembled, due to the second The second transition portion 213 is an arc-shaped surface, and the first transition portion 113 in the first connector 11 will also be arc-shaped.
- the second connector 21 can smoothly pass through the card
- the curved convex surface of the holding portion 112 can smoothly separate the second connector 21 from the first connector 11.
- the first connecting member 11 and the second connecting member 21 are both cylindrical structures, and the stroke displacement of the holding portion 112 is changed by the second transition portion 213 of the second connecting member 21 having an arc surface It is possible to realize the fitted state or the separated state of the first connecting member 11 and the second connecting member 21.
- the clamping portion and the clamping groove can be rotatably connected around the cylindrical axial direction.
- the detachable rotation connection mechanism 1 includes a first connection member 11 and a second connection member 21 detachably and rotatably connected to the first connection member 11, wherein the first connection member 11 includes a magnetic rotating shaft 110 120, the second connecting member 21 includes magnetic rotating shaft sleeves 210, 220 detachably connected to the outer sides of the magnetic rotating shafts 110, 120, as shown in FIG.
- the magnetic rotating shafts 110 and 120 and the magnetic rotating shaft sleeves 210 and 220 only need to be sleeved by magnetic attraction, and the specific magnetic poles are not limited in the embodiments of the present application.
- the magnetic rotating shafts 110 and 120 and the magnetic rotating shaft sleeves 210 and 220 only need to have a structure capable of being sleeved, and the specific sleeve shape is not specifically limited in the embodiments of the present application.
- magnetic suction sleeve connection can not only ensure the firmness and stability of the connection, but also reduce the friction between the magnetic rotating shaft and the magnetic rotating shaft sleeve, reduce the rotation resistance, and make the rotation smooth.
- the magnetic rotating shafts 110 and 120 and / or the magnetic rotating shaft sleeves 210 and 220 are electromagnetic. Electromagnetism is the property of having magnetism after being energized, and can be magnetically adsorbed. The embodiments of the present application do not specifically limit the specific implementation manner and material of the magnetization after energization.
- the magnetic rotating shaft and the magnetic rotating shaft sleeve are set to be electromagnetic, and when the power is turned off, the magnetism disappears, the shaft sleeve and the rotating shaft can be separated more conveniently, and the separation is convenient and fast.
- the detachable rotating connection mechanism further includes a first controller 410 and a second controller 420.
- the first controller 410 is used to control the electromagnetic shafts 110 and 120 to be powered on or off; the second controller 420 is used to control the electromagnetic shafts 210 and 220 to be powered on or off.
- the shaft sleeve and the rotating shaft can be separated more conveniently, and the separation is convenient, fast and controllable.
- the magnetic rotating shafts 110 and 120 are cylindrical, wherein the cross-sectional shape of the portion of the magnetic rotating shafts 110 and 120 perpendicular to the magnetic rotating shafts 110 and 120 embedded in the display assembly is a fan shape with a central angle of 90 °;
- the cross-sectional shape perpendicular to the magnetic axis of rotation of 220 is a sector with a center angle of 90 °.
- the cross-sectional shape is set in a fan shape with a center angle of 90 ° in order to make the display screens on the two display components facing away or adjacent to each other. There is no misalignment between the two display components and the interface is flat.
- FIG. 7 is a schematic structural diagram of a video calling device according to an embodiment of the present application.
- the magnetic rotating shafts 110 and 120 are cylindrical; the magnetic rotating shaft sleeves 210 and 220 include a plurality of protrusions 2101 and 2201 arranged along the axial direction of the magnetic rotating shafts 110 and 120.
- the position of the display assembly 3 for embedding the magnetic rotating shafts 110 and 120 includes a plurality of grooves 1101 and 1201 for fitting with the plurality of protrusions 2101 and 2201 respectively.
- the grooves 1101, 1201 and the protrusions 2101, 2201 need only be cross-fitted, and the specific fitting shape is not limited in the embodiments of the present application.
- the provision of multiple extensions not only increases the adsorption area of the magnetic shaft sleeve and the magnetic shaft, improves the stability of magnetic adsorption, but also significantly improves the mechanical strength of the magnetic shaft sleeve.
- the maximum cross-sectional shape of the magnetic rotating shaft sleeves 210 and 220 perpendicular to the magnetic rotating shafts 110 and 120 is less than 1/2 circle.
- the maximum cross-sectional shape is greater than 1/2 circle, the operation space left for disassembly is quite limited, which increases the difficulty for the separation of the magnetic shaft and the magnetic shaft sleeve.
- Setting the maximum cross-sectional shape to less than 1/2 circular ring is advantageous for the splitting of the magnetic rotating shaft and the magnetic rotating shaft sleeve, and can flexibly realize the splitting of the display assembly.
- FIG. 8 is a schematic structural diagram of a video call device according to an embodiment of the present application.
- a portion of the display assembly 3 for embedding the magnetic rotating shafts 110 and 120 includes stop portions 1102 and 1202 arranged along the direction of the magnetic rotating shafts 110 and 120 and spaced apart from the plurality of extending portions 2101 and 2201.
- the setting of the stopper part can ensure the axial cooperation of the magnetic rotating shaft sleeve and the magnetic rotating shaft, and can stop the axial deviation of the magnetic rotating shaft sleeve along the magnetic rotating shaft to realize a more reliable connection.
- At least two ends of one display assembly are provided with magnetic rotating shafts, and at least two ends of the other display assembly are provided with magnetic rotating sleeves.
- both display components 3 include a display screen 31, one of the display components 3 includes a first magnetic shaft 110 and a second magnetic shaft 120; the other display component 3 includes a first magnetic shaft sleeve 210 and a second magnetic Rotary sleeve 220.
- the first magnetic rotating shaft 110 and the second magnetic rotating shaft 120 are cylindrical.
- the first magnetic rotating shaft sleeve 210 includes a plurality of first protrusions 2101 arranged along the direction of the first magnetic rotating shaft 110.
- the second magnetic rotating shaft sleeve 220 includes a plurality of second protrusions 2201 arranged along the direction of the second magnetic rotating shaft 120.
- the portion of the display assembly 3 for embedding the first magnetic rotating sleeve 210 includes a plurality of first grooves 1101 that are adapted to the plurality of first protrusions 2101.
- the portion of the display assembly 3 for embedding the second magnetic rotating shaft 120 includes a plurality of second grooves 1201 adapted to the plurality of second protrusions 2201.
- FIG. 9 is a schematic structural diagram of a video call device according to an embodiment of the present application.
- 10 is a schematic structural diagram of a video call device according to another embodiment of the present application.
- FIG. 11 is a schematic structural diagram of a video call device according to another embodiment of the present application.
- the two display components include a first display component 301 and a In the second display component 302, the non-display surface of the first display component 301 and the non-display surface of the second display component 302 are attached to meet the needs of the scene sharing the screen with the participants on the opposite side.
- the second electromagnetic rotating shaft 120 and the second magnetic rotating shaft sleeve 220 are magnetically separated, and the first display assembly 301 rotates relative to the second display assembly 302 To 180 °, to meet the needs of the scene of the neighboring participants sharing the screen.
- the first electromagnetic rotating shaft 110 is separated from the first magnetic rotating shaft sleeve 210
- the second electromagnetic rotating shaft 120 is magnetically connected to the second magnetic rotating shaft sleeve 220
- the second display assembly 302 rotates relative to the first display assembly 301 Up to 180 °, to meet the needs of a person to enjoy a large screen clear picture, complete vision.
- the detachable rotation connection mechanism includes a first connection member and a second connection member detachably and rotatably connected to the first connection member
- the display assembly 3 includes a mounting housing 32
- the mounting housing 32 includes a back plate 321 opposite to the display screen 31, and a plurality of side plates 322 connected between the back plate 321 and the display screen 31; wherein the first connection piece or the second in the rotatably connected connection mechanism
- the connecting member is provided at the connection between the back plate 321 and the side plate 322, wherein a mounting surface for mounting the first connecting piece or the second connecting piece is formed between the back plate 321 and the side plate 322.
- the first connector 11 and the second connector 21 are required to be connected.
- the first connector 11 and the second connector 21 are in the assembled position, that is, in the connected state, the first connector 11 is connected to the first mounting surface 101 in one of the two display assemblies 3,
- a second connector 21 is connected to the second mounting surface 102, and the second connector 21 is located on the first mounting surface 101 and can rotate within the first mounting surface 101; the first connector 11 is located
- the second mounting surface 102 can be rotated within the second mounting surface 102, so that a rotatable and detachable connection of the two display components is achieved.
- the first mounting surface 101 is arc-shaped, the first connector 11 is cylindrical, and the side surface of the first connector 11 is fixed in the concave surface of the first mounting surface 101
- the cross-sectional shape of the first mounting surface 101 perpendicular to the axis of the first connector 11 is a first sector with a center angle of 90 °; and / or, the second mounting surface 102 is arc-shaped and the second connector 21 is a cylinder Shape, the side surface of the second connecting member 21 is fixed in the concave surface of the second mounting surface 102; the cross-sectional shape of the second mounting surface 102 perpendicular to the axis of the second connecting member 21 is a second sector with a center angle of 90 °;
- the radius of the first sector and the second sector are the same, that is, the first sector and the second sector are a quarter of the same circle.
- both the first mounting surface 101 and the second mounting surface 102 are arc-shaped, and the first connector 11 and the second connector 21 are both cylindrical, when the first connector 11 and the second connector 21 are in the assembled position
- the first connector 11 is located on the concave surface of the second mounting surface 102
- the second connector 21 is located on the concave surface of the first mounting surface 101.
- the arc of the first mounting surface 101 and the arc of the second mounting surface 102 are a quarter of the same circle .
- the first display component 3 fixed to the first mounting surface 101 rotates 180 ° relative to the second display component 3 fixed to the second mounting surface 102
- the other end of the first display component and the second display component The other end will not be misaligned, so the other end of the first display assembly and the other end of the second display assembly can also be rotated and detachably connected.
- the surface of the back plate 321 of the mounting housing 32 away from the display screen 31 is a flat surface, and the two side surfaces of the mounting housing 32 connected to the connection component are perpendicular to the back The height in the direction of the plate 321 is different.
- the opposite ends of the two display assemblies 3 are detachably and rotationally connected to the second connection member 21 through the first connection member 11.
- the side of the first connection member 11 is connected to the side 33 of the installation housing of one display assembly
- the side surface 33 connecting the second connector 21 in the mounting housing of another display assembly is arranged mirror-symmetrically with respect to the detachable rotating connection mechanism, wherein the side surface 33 intersects the arc-shaped mounting surface, and the arc-shaped mounting surface intersects the side plate 322 ,
- the part where the side plate 322 intersects the arc-shaped mounting surface is arc-shaped, and the part where the side surface 33 intersects the arc-shaped mounting surface is a straight line parallel to the axial direction of the first connector or the second connector and is parallel to the side panel 322 and The arcs where the curved mounting surfaces intersect intersect.
- the side surfaces of the two opposite ends of the two display components are mirror-symmetrically arranged with respect to the detachable rotating connection mechanism, when the two display components 3 are connected together and are in the expanded position, they are located in the two display components
- the display screen above can form a splicing screen, as shown in Figure 12.
- the thickness of the entire video call device is only the sum of the thicknesses of the two display components, thereby reducing the thickness of the entire video call device and being easy to carry.
- the two sides of the mounting housing 32 connected to the connecting component have different heights in the direction perpendicular to the back plate 321, that is, the display screen 31 is curved.
- the curved display device is opposite to the flat display device. In other words, the curved display device is closer to the curvature of human eyeballs, which can reduce human visual fatigue.
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Abstract
本申请实施例提供的一种视讯通话装置,包括两个显示组件,每一显示组件上形成有显示屏幕;两个显示组件的至少两个相对端通过可拆卸转动连接机构连接,以使得位于两个显示组件上的显示屏幕背对设置或相邻设置。通过显示组件的可拆卸连接可实现显示屏幕背对放置、相邻平面放置以及与相邻呈预设角度放置,满足与对面人员共享屏幕、与邻座人员共享屏幕以及一人共享屏幕的不同视讯通话场景的需求。
Description
本申请涉及显示技术领域,具体涉及一种视讯通话装置。
现有技术中,视讯通话会议所使用的视频装置,通常将一个大屏幕分成多块视频区域,视频区域之间无法自由组合或拆分,从而不方便携带以及移动,因而不能满足多种视讯通话场景的不同需求。
发明内容
有鉴于此,本申请提供一种视讯通话装置,解决现有技术中视讯通话装置不能满足多种视讯通话场景的不同需求的技术问题。
根据本申请的一个方面,本申请实施例提供一种视讯通话装置,包括:两个显示组件,每一显示组件上形成有显示屏幕;两个所述显示组件的至少两个相对端通过可拆卸转动连接机构连接,以使得位于两个所述显示组件上的显示屏幕背对设置或相邻设置;其中,两个所述显示组件具有结构匹配的贴合面以使得相邻设置的所述显示屏幕形成拼接屏。
在本发明一实施例中,所述可拆卸转动连接机构包括第一连接件和与所述第一连接件可拆卸且可转动连接的第二连接件。
在本发明一实施例中,所述可拆卸转动连接机构还包括:卡持部和卡槽,所述卡持部和所述卡槽可拆卸且可转动连接,以使得两个所述显示组件之间的转动角度大于或等于0°,小于或等于180°;所述第一连接件设有安装所述卡持部的安装槽,以及设置于所述安装槽内且与所述卡持部一端抵接的弹性部,所述弹性部控制所述卡持部的行程位移;所述卡槽设置于所述第二连接件中。
在本申请一实施例中,所述卡持部远离所述弹性部的一端设有弧形凸面;所述卡槽的结构为与所述弧形凸面配合的弧形内凹结构,以使所述具有弧形凸面的卡持部在具有所述弧形内凹的卡槽内转动连接。
在本申请一实施例中,所述第一连接件包括第一过渡部,所述第一过渡部具有与所述卡持部连接的弧形面;所述第二连接件包括第二过渡部,所述第二过渡部具有与所述卡槽连接的弧形面。
在本申请一实施例中,所述第一连接件与所述第二连接件均为圆柱形,通 过所述第二过渡部改变所述卡持部的行程位移,实现所述第一连接件与所述第二连接件的配合状态或分离状态;当所述第一连接件与所述第二连接件处于配合状态时,所述卡持部与所述卡槽可围绕所述圆柱形的轴向方向转动。
在本申请一实施例中,所述第一连接件包括磁性转轴,所述第二连接件包括可拆卸且可转动连接在所述磁性转轴外侧的磁性转轴套。
在本申请一实施例中,所述磁性转轴为圆柱形,所述磁性转轴嵌入所述显示组件的部分的垂直于所述磁性转轴的截面形状为圆心角90°的扇形;所述磁性转轴套的垂直于所述磁性转轴的截面形状为圆心角90°的扇形。
在本申请一实施例中,所述磁性转轴套包括沿所述磁性转轴的轴向排列的多个伸出部;所述显示组件用于嵌入所述磁性转轴的部位包括多个分别用于与所述多个伸出部适配的凹槽;在垂直于所述磁性转轴的方向上,所述磁性转轴套的最大截面形状小于1/2圆环。
在本申请一实施例中,所述显示组件用于嵌入所述磁性转轴的部位包括多个止挡部,所述多个止挡部沿所述磁性转轴方向排列,与所述多个伸出部间隔设置。
在本申请一实施例中,所述第一连接件设置于其中一个显示组件的至少两个端部,所述第二连接件设置于另一个显示组件的至少两个端部。
在本申请一实施例中,所述显示组件包括安装壳体,所述安装壳体包括与所述显示屏幕相对的背板,以及连接在所述背板和所述显示屏幕之间的多个侧板;所述第一连接件或第二连接件设置在所述背板和所述侧板的连接处。
在本申请一实施例中,所述背板和所述侧板之间形成有安装所述第一连接件或第二连接件的安装面;所述安装面垂直于所述第一连接件或第二连接件的轴向方向的截面形状为圆心角为90°的扇形结构。
在本申请一实施例中,所述第一连接件或第二连接件安装在所述显示组件相对设置的两端。
在本申请一实施例中,所述安装壳体中背板远离所述显示屏幕的表面为平坦面。
在本申请一实施例中,所述安装壳体中与所述第一连接件或第二连接件连接的两个侧面在垂直于所述背板方向上的高度不同;两个所述显示组件的相对端通过第一连接件与第二连接件实现可拆卸转动连接;两个所述显示组件中,一个显示组件的安装壳体中连接第一连接件的侧面与另一个显示组件的安装壳体中连接第二连接件的侧面相对于所述可拆卸转动连接机构呈镜像对称设置。
在本申请一实施例中,两个所述显示组件上的显示屏幕相对于所述贴合面呈镜像对称设置。
在本申请一实施例中,两个所述显示组件相对于所述贴合面呈镜像对称设 置。
在本申请一实施例中,每一个所述显示组件均包括至少一个曲面显示屏幕和/或至少一个平面显示屏幕;其中,每一显示屏幕均独立驱动显示,或位于同一显示组件上的显示屏幕共同驱动显示。
本申请实施例提供的一种视讯通话装置,包括两个显示组件,每一显示组件上形成有显示屏幕;两个显示组件的至少两个相对端可拆卸连接,以使得位于两个所述显示组件上的显示屏幕背对设置或相邻设置。两个显示组件的两端均可以拆卸连接,便于将两个显示组件可拆卸且拆卸方式多样,且,通过显示组件的可拆卸连接可实现显示屏幕背对放置、相邻平面放置以及与相邻呈预设角度放置,满足与对面人员共享屏幕、与邻座人员共享屏幕以及一人共享屏幕的不同视讯通话场景的需求。
附图简要说明
图1所示为本申请一实施例提供的一种视讯通话装置的结构示意图;
图2所示为本申请另一实施例提供的一种视讯通话装置的结构示意图;
图3所示为本申请一实施例提供的一种视讯通话装置中的可拆卸转动连接机构的结构示意图;
图4所示为本申请一实施例提供的一种视讯通话装置中的可拆卸转动连接机构中第一连接件与第二连接件处于装配位置时的结构示意图;
图5所示为本申请一实施例提供的一种视讯通话装置中的可拆卸转动连接机构中第一连接件与第二连接件处于装配位置时的剖视图;
图6所示为本申请另一实施例提供的一种视讯通话装置的结构示意图;
图7所示为本申请一实施例提供的一种视讯通话装置的结构示意图;
图8所示为本申请另一实施例提供的一种视讯通话装置的结构示意图;
图9所示为本申请一实施例提供的一种视讯通话装置的结构示意图;
图10所示为本申请另一实施例提供的一种视讯通话装置的结构示意图;
图11所示为本申请一实施例提供的一种视讯通话装置的结构示意图;
图12所示为本申请另一实施例提供的一种视讯通话装置的结构示意图;
图13所示为本申请一实施例提供的一种视讯通话装置中的两个显示组件转动前后的结构示意图;
图14所示为本申请另一实施例提供的一种视讯通话装置的结构示意图。
下面将结合附图,对本申请的技术方案进行清楚、完整地描述。显然,所 描述的实施例仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域技术人员在没有付出创造性劳动前提下获得的所有其它实施例,都属于本申请保护的范围。
图1所示为本申请一实施例提供的一种视讯通话装置,如图1所示,包括两个显示组件3,其中,每一个显示组件3上形成有显示屏幕31,两个显示组件3的至少两个相对端通过可拆卸转动连接机构1连接,以使得位于两个显示组件上的显示屏幕背对设置或相邻设置。
本申请实施例提供的一种转动连接装置,包括两个显示组件,每一显示组件上形成有显示屏幕;两个显示组件的至少两个相对端可拆卸连接,以使得位于两个所述显示组件上的显示屏幕背对设置或相邻设置。两个显示组件的两端均可以拆卸连接,便于将两个显示组件拆卸且拆卸方式多样,且由于两个显示组件可以通过折叠合在一起,移动、携带方便。通过显示组件的可拆卸连接可实现显示屏幕背对放置、相邻屏幕在一个平面内放置以及与相邻屏幕呈预设角度放置,满足与对面人员共享屏幕、与邻座人员共享屏幕以及一人共享屏幕等不同视讯通话场景的需求。
在本申请一实施例中,如图2所示,两个显示组件3具有结构匹配的贴合面33以使得相邻设置的显示屏幕31形成拼接屏。当两个显示组件连接在一起时,两个显示组件中的显示屏幕31还可以拼接形成一个衔接流畅的拼接屏,减少人的视觉疲劳。
在本申请一实施例中,每一个显示组件3包括至少一个曲面显示屏幕和/或至少一个平面显示屏幕,每一个显示屏幕31均独立驱动显示,或位于同一个显示组件的多个显示屏幕31共同驱动显示。当视讯通话装置应用在视频会议时,并且当一个显示组件3中的多个显示屏幕31均有独立的驱动显示时,位于同一个显示组件3上的多个显示屏幕31显示不同的内容。例如一个显示屏幕31显示对方发言人的讲稿,另一个显示屏幕31可以显示对方发言人在讲稿的过程中涉及到的视频或者图片,提升了用户的体验。
应当理解,显示组件3中包括的平面显示屏幕、曲面显示屏幕的数量以及每个显示屏幕是否具有独立的驱动显示,可以根据实际需要来进行选择,例如可以只包括一个曲面显示屏幕;也可以只包括一个平面显示屏幕;还可以包括一个曲面显示屏幕和一个平面显示屏幕,其中平面显示屏幕和曲面显示屏幕分别位于显示组件3中的互相平行的两侧面上,因此本申请实施例对显示组件3中包括的平面显示屏幕和曲面显示屏幕的数量以及每个显示屏幕是否具有独立的驱动显示不作限定。
在本申请一实施例中,显示组件3中的显示表面呈波浪形曲面,其中相邻两个显示组件3的显示表面呈镜像对称设置。当该视讯通话装置应用在视频会 议时,在与显示组件呈0-90°范围之内的不同位置的参会人员能够看到更广阔的视野,相对完整的看到显示装置中显示页面的显示内容。
优选的,显示组件3中的显示表面呈S型。另外,相邻两个显示组件3的显示表面呈镜像对称设置能够使得两个显示组件中的波浪形曲面衔接流畅,参会人员在看显示装置时也会拥有更广阔的视野。且相对平面显示装置而言,曲面显示装置更接近人的眼球弧度,能够减少人的视觉疲劳。
在本申请一实施例中,每个显示组件3还包括设置在显示组件3非显示面上的摄像装置6,如图1所示。当使用该视讯通话装置进行视频会议时,即使摄像装置6不旋转,依然可以采集并将本会议室内不同位置的实时视频影像传送给视讯通话的对方。
在本申请另一实施例中,摄像装置6安装在每个显示组件3的显示面上,当显示组件正处于显示状态时,可以根据需要开启摄像装置6,若不需要开启摄像装置6,则摄像装置6的位置可正常显示,体现显示的功能。当需要开启摄像装置6时,摄像装置6的位置可不显示,即体现摄像功能。因此,无论是否需要开启摄像装6,均不影响显示组件的显示功能,并且能够实现显示组件的全屏显示。
在本申请一实施例中,摄像装置6为伸缩式摄像装置,当不使用摄像装置时,可以将摄像装置进行隐藏,保护摄像装置不被环境中的灰尘影响。
在本申请另一实施例中,摄像装置6为可旋转式的摄像装置,可旋转的摄像装置能够摄像的范围更广,进一步使得会议室内任何角度的参会人员位置处的影像均可以被采集。
在本申请一实施例中,可拆卸转动连接结构1包括卡持部112和与卡持部112可拆卸且可转动连接的卡槽211,如图3所示,以使得两个显示组件3之间能够转动且转动的角度在0-180°之间。本申请实施例通过采用可拆卸转动连接结构1来连接相邻两个显示组件3,使得相邻两个显示组件3能够互相转动且可以拆卸,当使用该视讯通话装置进行视频会议时,可以根据会议室内不同位置的参会人员来调节多个显示组件之间的相对位置,以满足会议室内不同位置的参会人员均可以看到显示组件上显示的内容。
在本申请一实施例中,可拆卸转动连接结构1还包括第一连接件11和与第一连接件11可拆卸且转动连接的第二连接件21。第一连接件11设有安装卡持部112的安装槽,以及设置于安装槽内且与卡持部112一端抵接的弹性部111,其中弹性部111控制卡持部112的行程位移。第二连接件21设有与卡持部配合的卡槽211,如图3所示。第一连接件11与第二连接件21之间的可拆卸连接的方式可以为:当将第一连接件11与第二连接件21进行连接时,只需要将第一连接件11中的卡持部112装配在第二连接件21中的卡槽211内,其 中卡持部112可与卡槽211可拆卸连接,且卡持部112可以在卡槽211内转动,从而带动第二连接件21与第一连接件11相互转动,从而实现两个显示组件3之间的快速可拆卸连接。
在本申请一实施例中,卡持部112远离弹性部111的一端设有弧形凸面;卡槽211的结构为与弧形凸面配合的弧形内凹结构,以使具有弧形凸面的卡持部112在具有弧形内凹的卡槽211内转动连接,如图3所示。从而实现第一连接件11与第二连接件21的可转动连接。本实施例的视讯通话装置,当第一连接件11与第二连接件21进行装配时,第二连接件21碰触第一连接件11中的卡持部112中的弧形凸面,卡持部112被挤压后,将挤压力施加给弹性部件111,然后弹性部件111发生弹性变形,卡持部112在弹性部件111的带动下给予第二连接件21装配空间,卡持部112在弹性部件111的作用下弹出进入第二连接件21的卡槽211内,即完成了第一连接件11与第二连接件21的装配连接。当需要将第一连接件11与第二连接21进行拆开时,只需要给予第二连接件21一个向上的力,即可在弹性部件111以及卡持部112的作用下将第一连接件11与第二连接件21分离。
应当理解,可拆卸转动连接机构1中包括的第一连接件11的数量以及第二连接件21的数量,可以为图4所示的情况,即可拆卸转动连接机构1包括两个第一连接件11以及三个第二连接件21,其中两个相邻的第一连接件11之间装配有一个第二连接件21,并且两个相邻的第二连接件21之间装配有一个第一连接件1。但是本申请实施例并不限于此,例如可拆卸转动连接机构1包括一个第一连接件11以及两个第二连接件21,其中,第一连接件11装配在两个第二连接件21之间;还例如:可拆卸转动连接机构1包括两个第一连接件11以及一个第二连接件21,其中,第二连接件21装配在两个第一连接件11之间。因此只要第一连接件11与第二连接件21能够实现互相转动的连接,本申请实施例对于可拆卸转动连接机构1中包括的第一连接件11的数量以及第二连接件21的数量不作限定。
应当理解,第一连接件11与第二连接21之间进行可拆卸连接时,在第一连接件11与第二连接件21两者可拆卸连接的部分,是通过卡持部-弹性部件结构进行连接,即第一连接件11中设置有弹性部件111以及卡持部112,在第二连接件21与第一连接件11连接的一端设有卡槽211,当第一连接件11与第二连接件21处于装配状态时,卡持部112位于卡槽211内。但是该装配结构仅表示两个连接件在连接部分的连接方式,本申请实施例并不限于此,例如,弹性部件111以及卡持部112可以设置在第二连接件21内,卡槽211设置在第一连接件11的需要和第二连接件21连接的一端,当第一连接件11与第二连接件21进行装配时,第一连接件11碰触卡持部112,卡持部112在挤 压的作用下,将挤压力施加给弹性部件111,然后弹性部件111发生弹性变形,卡持部112在弹性部件111的带动下给予第一连接件11进入的空间,卡持部112在弹性部件111的作用下弹出进入第一连接件11的卡槽211内,即完成了第一连接件11与第二连接件21的装配连接。因此,本申请实施例对弹性部件111以及卡持部112设置在第一连接件11内还是第二连接件21内以及卡槽211设置在第二连接件21的一端还是第一连接件11的一端不作限定,只要第一连接件11与第二连接件21能够通过卡持部-弹性部件结构进行可拆卸连接即可。
本申请实施例的视讯通话装置,两个连接件利用弹力实现装配与拆卸,在不需要借助工具的情况下,可以实现两个连接件的快速装配与拆卸,进而实现两个显示组件3的快速装配与拆卸。
在本申请一实施例中,第一连接件11还包括第一过渡部113,第二连接件21还包括第二过渡部213,其中第一过渡部113具有与卡持部112连接的弧形面,第二过渡部213具有与卡槽211连接的弧形面,如图5所示,当第一连接件11与第二连接件21进行拆装时,由于第二连接件21内的第二过渡部213是弧形面,第一连接件11内的第一过渡部113也会弧形面,当对第二连接件21施加一个向上的力时,第二连接件21能够顺利通过卡持部112的弧形凸面,从而能够顺利的将第二连接件21与第一连接件11分离。
在本申请一实施例中,第一连接件11与第二连接件21均为圆柱形结构,通过具有弧形面的第二连接件21的第二过渡部213改变卡持部112的行程位移可实现第一连接件11与第二连接件21的配合状态或分离状态。当所述第一连接件与所述第二连接件处于配合状态时,所述卡持部与所述卡槽可围绕圆柱形的轴向方向转动连接。
在本申请一实施例中,可拆卸转动连接机构1包括第一连接件11和与第一连接件11可拆卸且可转动连接的第二连接件21,其中第一连接件11包括磁性转轴110、120,第二连接件21包括可拆卸连接在磁性转轴110、120外侧的磁性转轴套210、220,如图6所示。
磁性转轴110、120与磁性转轴套210、220只要利用磁性吸附套接即可,本申请实施例对具体磁极不做限定。磁性转轴110、120与磁性转轴套210、220只要是能套接的结构即可,本申请实施例对具体套接形状不做具体限定。
利用磁性吸附套接,不仅可以保证连接的牢固性、稳定性,而且能够减少磁性转轴与磁性转轴套之间的摩擦力,减少转动阻力,使转动流畅。
在一个实施例中,磁性转轴110、120和/或磁性转轴套210、220为电磁性。电磁性是通电后具有磁性,可以磁性吸附的性质,本申请实施例对通电后具有磁性的具体实现方式以及具体实现材料不做具体限定。
将磁性转轴与磁性转轴套设置为电磁性的,当断电后磁性消失,可以更方便的将轴套与转轴分离,实现分离的方便、快捷。
在一个实施例中,如图6所示,可拆卸转动连接机构还包括第一控制器410与第二控制器420。第一控制器410用于控制电磁性转轴110、120通电或断电;第二控制器420用于控制电磁性转轴套210、220通电或断电。
通过控制器控制磁性转轴与磁性转轴套的通电或断电,可以更方便的将轴套与转轴分离,实现分离的方便、快捷与可控。
在进一步实施例中,磁性转轴110、120为圆柱形,其中,磁性转轴110、120嵌入显示组件的部分的垂直于磁性转轴110、120的截面形状为圆心角90°的扇形;磁性转轴套210、220的垂直于磁性转轴的截面形状为圆心角90°的扇形。截面形状为圆心角90°的扇形的设置是为了使得位于两个显示组件上的显示屏幕背对设置或相邻设置时,两个显示组件的连接之间没有错位,接口是平整的。
在进一步实施例中,图7所示为根据本申请一个实施例的视讯通话装置的结构示意图。参照图7所示,磁性转轴110、120为圆柱形;磁性转轴套210、220包括沿磁性转轴110、120的轴向排列的多个伸出部2101、2201。显示组件3用于嵌入磁性转轴110、120的部位包括多个分别用于与多个伸出部2101、2201适配的凹槽1101、1201。凹槽1101、1201与伸出部2101、2201只要可以交叉适配即可,本申请实施例对具体配合形状不做限定。多个伸出部的设置,不仅使磁性转轴套与磁性转轴的吸附面积增大,提高磁性吸附的稳定性,而且显著提高了磁性转轴套的机械强度。
在一个实施例中,磁性转轴套210、220的垂直于磁性转轴110、120的最大截面形状小于1/2圆环。
当最大截形状大于1/2圆环时,给拆卸留有的操作空间相当有限,为磁性转轴与磁性转轴套的拆分增加难度。将最大截面形状设置为小于1/2圆环,有利于磁性转轴与磁性转轴套拆分,可以灵活实现显示组件的拆分。
在一个实施例中,图8所示为根据本申请一个实施例的视讯通话装置的结构示意图。参照图8所示,显示组件3用于嵌入磁性转轴110、120的部位包括沿磁性转轴110、120方向排列的与多个伸出部2101、2201间隔设置的止挡部1102、1202。
止挡部的设置可以保证磁性转轴套与磁性转轴的轴向配合,可以止挡磁性转轴套沿磁性转轴的轴向偏移,实现更可靠地连接。
在一个实施例中,两个显示组件中,其中一个显示组件的至少两个端部设置有磁性转轴,而另一个显示组件的至少两个端部设置有磁性转动套。
此实施例中,两个显示组件3均包括显示屏幕31,其中一个显示组件3包括 第一磁性转轴110与第二磁性转轴120;另一显示组件3包括第一磁性转轴套210与第二磁性转轴套220。其中,第一磁性转轴110与第二磁性转轴120为圆柱形。第一磁性转轴套210包括沿第一磁性转轴110方向排列的多个第一伸出部2101。第二磁性转轴套220包括沿第二磁性转轴120方向排列的多个第二伸出部2201。显示组件3用于嵌入第一磁性转轴套210的部分包括多个与多个第一伸出部2101适配的第一凹槽1101。显示组件3用于嵌入第二磁性转轴120的部分包括多个与多个第二伸出部2201适配的第二凹槽1201。
图9所示为根据本申请一个实施例的视讯通话装置的结构示意图。图10所示为根据本申请另一个实施例的视讯通话装置的结构示意图。图11所示为根据本申请又一个实施例的视讯通话装置的结构示意图。参照图9所示,当第一电磁转轴110与第一磁性转轴套210吸附连接,第二电磁转轴120与第二磁性转轴套220磁性吸附连接,两个显示组件包括第一显示组件301以及第二显示组件302,第一显示组件301的非显示面与第二显示组件302的非显示面贴合,满足与对面与会人员共享屏幕的场景的需求。参照图10所示,当第一电磁转轴110与第一磁性转轴套210吸附连接,第二电磁转轴120与第二磁性转轴套220磁性分离,第一显示组件301相对于第二显示组件302旋转至180°,满足邻座与会人员共享屏幕的场景的需求。参照图11所示,当第一电磁转轴110与第一磁性转轴套210分离,第二电磁转轴120与第二磁性转轴套220磁性吸附连接,第二显示组件302相对于第一显示组件301旋转至180°,满足一个人独享大屏清晰画面、完整视野的需求。
在本申请一实施例中,如图12所示,可拆卸转动连接机构包括第一连接件和与第一连接件可拆卸且可转动连接的第二连接件,显示组件3包括安装壳体32,安装壳体32包括与显示屏幕31相对的背板321,以及连接在背板321和显示屏幕31之间的多个侧板322;其中可拆卸转动连接机构中的第一连接件或者第二连接件设置在背板321与侧板322的连接处,其中背板321和侧板322之间形成有安装第一连接件或第二连接件的安装面。
如图2所示,当两个显示组件3进行安装时,需要第一连接件11与第二连接件21进行连接。当第一连接件11与第二连接件21处于装配的位置时,即处于连接状态时,两个显示组件3中的一个显示组件中的第一安装面101上连接有第一连接件11,另一个显示组件中的第二安装面102上连接有第二连接件21,第二连接件21位于第一安装面101上,且可以在第一安装面101内转动;第一连接件11位于第二安装面102上,且可以在第二安装面102内转动,从而实现了两个显示组件的可转动且可拆卸的连接。
在本申请一实施例中,如图13所示,第一安装面101为弧形,第一连接件11为圆柱形,第一连接件11的侧面固定在第一安装面101的凹面内,第一 安装面101垂直于所述第一连接件11的轴线的截面形状为圆心角为90°的第一扇形;和/或,第二安装面102为弧形,第二连接件21为圆柱形,第二连接件21的侧面固定在第二安装面102的凹面内;第二安装面102垂直于第二连接件21的轴线的截面形状为圆心角为90°的第二扇形;其中,所述第一扇形与所述第二扇形的半径相同,即第一扇形与第二扇形为同一个圆的四分之一。在第一安装面101和第二安装面102均为弧形,第一连接件11和第二连接件21均为圆柱形时,当第一连接件11与第二连接件21处于装配位置时,第一连接件11位于第二安装面102的凹面上,第二连接件21位于第一安装面101的凹面上。当两个显示组件顺时针转动时,当第一安装面101旋转180°时,第一安装面101的一端与第二安装面102的一端相抵,此时,第一安装面101不能相对于第二安装面102顺时针再进行更大角度的旋转,因此第一安装面101相对于第二安装面102能够转动的角度为0-180°,从而可实现第一连接件11相对于第二连接件21能够转动的角度为0-180°,进而实现两个显示组件3能够转动的角度为0-180°。另外,当第一安装面101旋转180°后与第二安装面102的一端相抵后,因为第一安装面101的弧形与第二安装面102的弧形为同一个圆的四分之一,当与第一安装面101固定的第一个显示组件3相对于第二安装面102固定的第二个显示组件3旋转180°时,第一显示组件的另一端与第二个显示组件的另一端不会错位,因此第一个显示组件的另一端与第二个显示组件的另一端也能够实现转动且可拆卸的连接。
在本申请一实施例中,如图14所示,安装壳体32中背板321远离显示屏幕31的表面为平坦面,且安装壳体32中与连接组件连接的两个侧面在垂直于背板321方向上的高度不同。两个显示组件3的相对端通过第一连接件11与第二连接件21实现可拆卸转动连接,两个显示组件3中,一个显示组件的安装壳体中连接第一连接件11的侧面33与另一个显示组件的安装壳体中连接第二连接件21的侧面33相对于可拆卸转动连接机构呈镜像对称设置,其中侧面33与弧形安装面相交,弧形安装面与侧板322相交,侧板322与弧形安装面相交的部分为弧形,且侧面33与弧形安装面相交部分为与第一连接件或第二连接件的轴向方向平行的直线且与侧板322和弧形安装面相交的弧形相交。
本申请实施例由于两个显示组件中相连接的两个相对端的侧面相对于可拆卸转动连接机构呈镜像对称设置,当两个显示组件3连接在一起且处于展开位置时,位于两个显示组件上的显示屏幕能够形成拼接屏,如图12所示。通过将安装壳体32中背板321远离显示屏幕31的表面为平坦面,当两个显示组件3的显示屏幕背对着的时候,两个显示组件中的两端均可以实现转动且可拆卸的连接,且折叠后两个显示组件之间没有空隙,整个视讯通话装置的厚度仅为两个显示组件的厚度之和,从而降低了整个视讯通话装置的厚度,便于携带。 安装壳体32中与连接组件连接的两个侧面在垂直于背板321方向上的高度不同,即显示屏幕31呈曲面,当使用视讯通话装置进行视频会议时,曲面显示装置相对平面显示装置而言,曲面显示装置更接近人的眼球弧度,能够减少人的视觉疲劳。
以上所述仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内,所作的任何修改、等同替换等,均应包含在本申请的保护范围之内。
Claims (19)
- 一种视讯通话装置,包括两个显示组件,每一显示组件上设置有显示屏幕;两个所述显示组件的至少两个相对端通过可拆卸转动连接机构连接,以使得位于两个所述显示组件上的所述显示屏幕背对设置或相邻设置;其中,两个所述显示组件具有结构匹配的贴合面以使得相邻设置的所述显示屏幕形成拼接屏。
- 根据权利要求1所述的视讯通话装置,其中,所述可拆卸转动连接机构包括第一连接件和与所述第一连接件可拆卸且可转动连接的第二连接件。
- 根据权利要求2所述的视讯通话装置,其中,所述可拆卸转动连接机构还包括:卡持部和卡槽,所述卡持部和所述卡槽可拆卸且可转动连接,以使得两个所述显示组件之间的转动角度大于或等于0°,小于或等于180°;所述第一连接件设有安装所述卡持部的安装槽,以及设置于所述安装槽内且与所述卡持部一端抵接的弹性部,所述弹性部控制所述卡持部的行程位移;所述卡槽设置于所述第二连接件中。
- 根据权利要求3所述的视讯通话装置,其中,所述卡持部远离所述弹性部的一端设有弧形凸面;所述卡槽的结构为与所述弧形凸面配合的弧形内凹结构,以使所述具有弧形凸面的卡持部与具有所述弧形内凹的卡槽转动连接。
- 根据权利要求4所述的视讯通话装置,其中,所述第一连接件包括第一过渡部,所述第一过渡部具有与所述卡持部连接的弧形面;所述第二连接件包括第二过渡部,所述第二过渡部具有与所述卡槽连接的弧形面。
- 根据权利要5所述的视讯通话装置,其中,所述第一连接件与所述第二连接件均为圆柱形,通过所述第二过渡部改变所述卡持部的行程位移,实现所述第一连接件与所述第二连接件的配合状态或分离状态;当所述第一连接件与所述第二连接件处于配合状态时,所述卡持部与所述卡槽可围绕所述圆柱形的轴向方向转动。
- 根据权利要求2所述的视讯通话装置,其中,所述第一连接件包括磁性转轴,所述第二连接件包括可拆卸且可转动连接在所述磁性转轴外侧的磁性转轴套。
- 根据权利要求7所述的视讯通话装置,其中,所述磁性转轴为圆柱形,所述磁性转轴嵌入所述显示组件的部分的垂直于所述磁性转轴的截面形状为圆心角90°的扇形;所述磁性转轴套的垂直于所述磁性转轴的截面形状为圆心角90°的扇形。
- 根据权利要求8所述的视讯通话装置,其中,所述磁性转轴套包括沿所述 磁性转轴的轴向排列的多个伸出部;所述显示组件用于嵌入所述磁性转轴的部位包括多个分别用于与所述多个伸出部适配的凹槽;在垂直于所述磁性转轴的方向上,所述磁性转轴套的最大截面形状小于1/2圆环。
- 根据权利要求9所述的视讯通话装置,其中,所述显示组件用于嵌入所述磁性转轴的部位包括多个止挡部,所述多个止挡部沿所述磁性转轴方向排列,与所述多个伸出部间隔设置。
- 根据权利要求2所述的视讯通话装置,其中,所述第一连接件设置于其中一个显示组件的至少两个端部,所述第二连接件设置于另一个显示组件的至少两个端部。
- 根据权利要2所述的视讯通话装置,其中,所述显示组件包括安装壳体,所述安装壳体包括与所述显示屏幕相对的背板,以及连接在所述背板和所述显示屏幕之间的多个侧板;所述第一连接件或第二连接件设置在所述背板和所述侧板的连接处。
- 根据权利要求12所述的视讯通话装置,其中,所述背板和所述侧板之间形成有安装所述第一连接件或第二连接件的安装面;所述安装面垂直于所述第一连接件或第二连接件的轴向方向的截面形状为圆心角为90°的扇形结构。
- 根据权利要求12所述的视讯通话装置,其中,所述第一连接件或第二连接件安装在所述显示组件相对设置的两端。
- 根据权利要求12所述的视讯通话装置,其中,所述安装壳体中背板远离所述显示屏幕的表面为平坦面。
- 根据权利要求12所述的视讯通话装置,其中,所述安装壳体中与所述第一连接件或第二连接件连接的两个侧面在垂直于所述背板方向上的高度不同;两个所述显示组件的相对端通过第一连接件与第二连接件实现可拆卸转动连接;两个所述显示组件中,一个显示组件的安装壳体中连接第一连接件的侧面与另一个显示组件的安装壳体中连接第二连接件的侧面相对于所述可拆卸转动连接机构呈镜像对称设置。
- 根据权利要求1-17中任意一项所述的视讯通话装置,其中,两个所述显示组件上的显示屏幕相对于所述贴合面呈镜像对称设置。
- 根据权利要求17所述的视讯通话装置,其中,两个所述显示组件相对于所述贴合面呈镜像对称设置。
- 根据权利要求1-16中任意一项所述的视讯通话装置,其中,每一个所述显示组件均包括至少一个曲面显示屏幕和/或至少一个平面显示屏幕;其 中,每一显示屏幕均独立驱动显示,或位于同一显示组件上的显示屏幕共同驱动显示。
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| CN201811348212.3 | 2018-11-13 | ||
| CN201811349059.6A CN109120878A (zh) | 2018-11-13 | 2018-11-13 | 一种视讯通话装置 |
| CN201811348212.3A CN109246382A (zh) | 2018-11-13 | 2018-11-13 | 一种视讯通话装置 |
| CN201811349059.6 | 2018-11-13 |
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Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107623758A (zh) * | 2016-07-14 | 2018-01-23 | 中兴通讯股份有限公司 | 转轴连接器及具有其的移动终端设备 |
| CN207049186U (zh) * | 2017-07-14 | 2018-02-27 | 联想(北京)有限公司 | 转轴结构和平板笔记本电脑 |
| CN108470520A (zh) * | 2018-03-13 | 2018-08-31 | 京东方科技集团股份有限公司 | 显示装置及其使用方法 |
| CN109120878A (zh) * | 2018-11-13 | 2019-01-01 | 云谷(固安)科技有限公司 | 一种视讯通话装置 |
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Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107623758A (zh) * | 2016-07-14 | 2018-01-23 | 中兴通讯股份有限公司 | 转轴连接器及具有其的移动终端设备 |
| CN207049186U (zh) * | 2017-07-14 | 2018-02-27 | 联想(北京)有限公司 | 转轴结构和平板笔记本电脑 |
| CN108470520A (zh) * | 2018-03-13 | 2018-08-31 | 京东方科技集团股份有限公司 | 显示装置及其使用方法 |
| CN109120878A (zh) * | 2018-11-13 | 2019-01-01 | 云谷(固安)科技有限公司 | 一种视讯通话装置 |
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