Display Device with Adjustable Angle of View
20190174041 ยท 2019-06-06
Inventors
Cpc classification
H04N23/54
ELECTRICITY
F16M2200/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H04N23/53
ELECTRICITY
F16M11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M13/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Disclosed is a display device with an adjustable angle of view, comprising a base portion, wherein a multi-linkage device at one end is disposed on the base portion and the display device is disposed on the other end. The problem of ageing of a flexible conduit and the problem of suitably matching the storage position of an external placed box after the use of the multi-linkage device are solved by using the multi-linkage device and by folding multiple linkages. In addition, the cooperation of the coarse and fine adjustments of the display device is achieved by the connection relationship between the various linkages and a user can quickly and conveniently adjust the display device to be at any angle by the structure. With an adjustment mechanism with a damping or post-adjustment locking mechanism, the display device can be positioned in an adjustment position convenient for viewing.
Claims
1. A display device with adjustable viewing angle, comprising a base portion, one end of a multi-link mechanism is disposed on the base portion, and the other end is disposed with a display device.
2. The display device with adjustable viewing angle according to claim 1, wherein a first adjusting device is disposed between the multi-link mechanism and the base portion.
3. The display device with adjustable viewing angle according to claim 2, wherein a second adjusting device is disposed between the display module and the multi-link mechanism.
4. The display device with adjustable viewing angle according to claim 3, wherein the multi-link mechanism comprises a head link and a tail link, one end of the head link is disposed on the base portion by a first adjusting device, and the other end of the head link is movably connected to one end of the tail link, and the other end of the tail link is provided with the display device by a second adjusting device.
5. The display device with adjustable viewing angle according to claim 4, wherein the other end of the first adjusting device or the head link is connected to one end of the tail link by a hinge structure.
6. The display device with adjustable viewing angle according to claim 3, wherein the second adjusting device adopts a ball shaft structure.
7. The display device with adjustable viewing angle according to claim 6, wherein the ball shaft structure is a universal ball shaft structure.
8. The display device with adjustable viewing angle according to claim 4, wherein the head link is connected with the tail link through a link or a link group.
9. The display device with adjustable viewing angle according to claim 1, wherein a control button is disposed at the multi-link mechanism or at the display device.
10. The display device with adjustable viewing angle according to claim 3, wherein the device further comprises a thermal imager, and the base portion is disposed at the thermal imager.
11. The display device with adjustable viewing angle according to claim 3, wherein the device further comprises a spectacle frame, and the base portion is disposed at the spectacle frame.
12. The display device with adjustable viewing angle according to claim 3, wherein the base portion is provided with a snapping port.
13. The display device with adjustable viewing angle according to claim 10, wherein the base portion is connected to the thermal imager or the spectrum frame through a snap structure.
14. The display device with adjustable viewing angle according to claim 3, wherein the device further comprises an accommodating unit, and the base portion is disposed in the accommodating unit.
15. The display device with adjustable viewing angle according to claim 14, wherein the accommodating unit comprises an accommodating box, a baffle assembly disposed in the accommodating box, the baffle assembly comprises a top bead spring and a latching top bead disposed at the top of the top bead spring, and the multi-link mechanism cooperated therewith is provided with a card slot, and when accommodating, the latching top bead is snapped into the card slot.
16. The display device with adjustable viewing angle according to claim 15, wherein the accommodating unit further comprises a dialing component disposed on one side of the accommodating box, the dialing component comprises a dialing hand, a recovering spring, and a thimble, and the accommodating box is provided with a hole through which the thimble can pass, when dialing the dialing hand, the thimble passes through the hole of the accommodating box and then withstands the multi-link mechanism, so that the multi-link mechanism overcomes the elastic force of the latching top bead and then slides the latching top bead out of the card slot; after releasing the dialing hand, the recovering spring returns the dialing hand.
17. The display device with adjustable viewing angle according to claim 4, wherein a friction layer is provided on the surface of the tail link.
18. The display device with adjustable viewing angle according to claim 14, wherein a buffering component is disposed inside the accommodating unit.
19. The display device with adjustable viewing angle according to claim 4, wherein the device further comprises an accommodating groove, and the multi-link mechanism is accommodated in the accommodating groove.
20. The display device with adjustable viewing angle according to claim 14, wherein the accommodating unit is provided with a snap structure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0077] The present invention is further described in combination with drawings and specific embodiments.
Example 1
[0078] As shown in
[0079] The second adjusting device 12 is used to achieve fine adjustment of the angle of the display device 13, and preferably, the second adjusting device 12 employs an adjustment mechanism with damping, such as a universal ball shaft device with damping. Preferably, a universal ball shaft device with a rotation limit can be used to avoid damage to the internal wires caused by excessive rotation. The video data cables of the display device 13 are placed inside the multi-link mechanism so that it is not exposed outside, so that it is beautiful and prevents accidental damage to the data cables. In other embodiments, the data cables can also be placed outside of the linkage.
[0080] In this embodiment, the multi-link mechanism is a two-link structure. The head link 9 of the two-link structure is in an arc design, and the arc curvature can be designed to match the curvature of the surface of the helmet or headband. The head link 9 adopts a snap-type structure, with hollow inside, to pass the data cables or power cables; the snap-type structure also facilitates to open the data cables of the head link 9 when the function module is subsequently repaired or expanded. One end of the head link 9 of the two-link structure is disposed on the base portion 19 by a first adjusting device; the tail link 11 has a concave design, and the other end of the head link 9 of the two-link structure is connected with one end of the tail link 11 through a rotating shaft structure, for example, a vertically damped shaped rotating shaft structure 20. At this time, the joint is disposed in the concave portion of the tail link 11, by adjusting the shaped shaft structure 20, the display device 13 can be adjusted back and forth. The other end of the tail link 11 is provided with the display device 13 through the universal ball shaft, to facilitate fine adjustment of the display device 13.
[0081] In order to facilitate users to adjust the multi-link mechanism, a friction layer is arranged on the surface of the tail link 11. Users can link the head link 9 of two-link structure to achieve the adjustment of the display device 13 up and down, back and forth as long as they hold the tail link 11.
[0082] The base portion 19 is not a separate independent component. When the multi-link mechanism is disposed in an external device by a first adjusting device, for example, a helmet or a headband or other headset devices, a portion of the contact area for disposing the first adjusting device in the helmet or headband may be a base portion 19, at this time, the helmet or headband surface is integrally formed with the base portion 19 or separately formed but combined and assembled.
Example 2
[0083] As shown in
Example 3
[0084] As shown in
Example 4
[0085] As shown in
[0086] The display device of the link structure comprises a multi-link type base portion 14, and one end of the multi-link mechanism is disposed on the multi-link type base portion 14 by a first adjusting device 7, and the first adjusting device 7 adopts a rotating shaft structure, preferably an adjusting mechanism with damping, for example, a damped shaped rotating shaft structure disposed vertically. The first adjusting device 7 can be used for the fast adjustment of the display module leftwards and rightwards. The other end of the multi-link mechanism is provided with a display device 13 as a display module by the second adjusting device 12. The display device 13 adopts a micro-projection display device for the convenience of carrying and light design. Preferably, the adjusting device adopts an adjusting mechanism with a damping or rear locking adjusting mechanism, to position the display device in an adjustable position for easy observation.
[0087] The second adjusting device 12 is used to achieve the fine adjustment of the angle of the display device 13, preferably, the second adjusting device 12 adopts a universal ball shaft device. The video data cables of the display device 13 are placed inside the multi-link mechanism so that they are not exposed outside, and they are aesthetic and prevent accidental damage to the data cables.
[0088] As shown in
[0089] In order to facilitate users to adjust the multi-link mechanism, a friction layer is arranged on the surface of the tail link 11. Users can link the head link 8 and intermediate link 91 of the three-link structure by holding the tail link 11 or the display device 13, to achieve the quick adjustment leftwards and rightwards, up and down, and back and forth.
[0090] As shown in
[0091] By analogy of the first embodiment and the fourth embodiment, those skilled in the art can understand that the multi-link mechanism can also adopt more link assembly modes, for example, the intermediate link can be a single-link or a multi-link mechanism, to achieve the technical problems to be solved in the present invention.
Example 5
[0092] As shown in
[0093] As shown in
[0094] As shown in
[0095] In order to facilitate the release of the multi-link mechanism, the accommodating unit further comprises a dialing component 17 disposed on one side of the accommodating box, the dialing component comprises a dialing hand 15, a recovering spring 16 and a thimble 18, and the accommodating box is provided with a hole through which the thimble can pass, when dialing the dialing hand 15, the thimble 18 passes through the hole of the accommodating box and then withstands the multi-link mechanism, so that the multi-link mechanism overcomes the elastic force of the latching top bead 4 and then slides the latching top bead out of the card slot; after releasing the dialing hand, the recovering spring 16 returns the dialing hand 15.
[0096] Similarly, the link type base portion 14 is not a separate independent component. When the link device is directly disposed in the accommodating unit by the first adjusting device, the contact area of the first adjusting device on the inner surface of the accommodating unit can be a link type base portion 14, at this time, the inner surface of the accommodating unit is integrally formed with the link type base portion 14 or separately formed but combined and assembled.
Example 6
[0097] As shown in
Example 7
[0098] As shown in
[0099] At this time, the head link 8 of the three-link structure is directly mounted on the inner wall of the accommodating unit. In fact, the multi-link type base portion 14 and the inner wall of the accommodating unit are integrated, and the first adjusting device of the head link 8 of the three-link structure is in the contact area of the inner wall of the accommodating unit, actually it is a multi-link type base portion 14.
Example 8
[0100] As shown in
[0101] Users can link the head link 8 and intermediate link 91 of the three-link structure by holding the tail link 11 or the display device 13, to achieve the quick adjustment leftwards and rightwards, up and down, and back and forth.
[0102] As shown in
[0103] In addition, in
Example 9
[0104] As shown in
Example 10
[0105] In order to realize the convenient disconnection of the accommodating unit 3 and the external device, the accommodating unit 3 and the external device can be connected through a snapping device, as shown in
Example 11
[0106] As shown in
Example 12
[0107] As shown in
[0108] An accommodating groove 31 is embedded in the headband, and the intermediate link 91 and the tail link 11 are both provided with a certain degree of curvature. The curvature of the accommodating groove 31 matches the curvature of the intermediate link 91 and the tail link 11. A notch is provided at one side of the accommodating groove, which is used to dispose a multi-link type base portion 14.
[0109] The multi-link mechanism is a three-link structure. The head link 8 of the three-link structure adopts a concave design. One end of the head link 8 of the three-link structure is disposed on the multi-link type base portion 14 by the first adjusting device 7. The other end of the head link 8 of the three-link structure is connected to one end of the intermediate link 91 via a lateral damped shaped rotating shaft structure. Through adjusting the shaped shaft structure, the display device 13 is quickly adjusted up and down. The intermediate link 91 adopts an arc design, with an arc curvature matching with that of the accommodating groove 31. The intermediate link 91 adopts a snap-type structure. The structure is hollow inside and is used to pass the data cables or power cables. The snap-type structure also facilitates to open the data cables of the intermediate link 91 when the function module is subsequently repaired or expanded. The other end of the intermediate link 91 is connected with one end of the tail link 11 through a vertically damped shaped rotating shaft structure. The damped shaped rotating shaft structure is used for adjusting the display device 13 quickly back and forth. The other end of the tail link 11 is disposed with a display device 13 by a second adjusting device 12. The second adjusting device 12 is used to achieve the fine adjustment of the angle of the display device 13, preferably, the second adjusting device 12 adopts a universal ball shaft device.
Example 13
[0110] As shown in
[0111] The difference from the twelfth embodiment in this embodiment is that the multi-link mechanism is a two-link structure, the second link 92 has a certain curvature, and the curvature of the accommodating groove 31 is matched with the curvature of the second link 92. A notch is provided at one side of the accommodating groove, which is used to dispose the multi-link type base portion 14.
[0112] The head link 8 of the two-link structure adopts a concave design. One end of the head link 8 is disposed on the multi-link type base portion 14 by the first adjusting device 7. The other end of the head link 8 is connected to one end of the second link 92 via a lateral damped shaped rotating shaft structure. Through adjusting the shaped shaft structure, the display device 13 is quickly adjusted up and down. The second link 92 adopts an arc design, with an arc curvature consistent with that of the accommodating groove 31. The second link 92 adopts a snap-type structure. The structure is hollow inside and is used to pass the data cables or power cables. The snap-type structure also facilitates to open the data cables of the second link 92 when the function module is subsequently repaired or expanded. The other end of the second link 92 is disposed on the display device 13 by a second adjusting device 12. The second adjusting device 12 is used to achieve the fine adjustment of the angle of the display device 13, preferably, the second adjusting device 12 adopts a universal ball shaft device.
Example 14
[0113] As shown in
Example 15
[0114] As shown in
[0115] The other end of the head link 8 of the three-link structure is connected to the intermediate link 94 by a lateral damped shaped rotating shaft structure. Through adjusting the shaped shaft structure, the display device 13 is quickly adjusted up and down. The intermediate link 94 adopts a snap-type structure. The structure is hollow inside and is used to pass the data cables or power cables; the snap-type structure also facilitates to open the data cables of the intermediate link 94 when the function module is subsequently repaired or expanded. The other end of the intermediate link 94 is connected with one end of the tail link 93 through a vertical rotating shaft structure. The damped rotating shaft structure is used for adjusting the display device 13 quickly back and forth. The other end of the tail link 93 is disposed with a display device 13 by a second adjusting device 12. The second adjusting device 12 is used to achieve the fine adjustment of the angle of the display device 13, preferably, the second adjusting device 12 adopts a universal ball shaft device. In this embodiment, the tail link 93 and the second adjusting device 12 are also provided with a rotating shaft.
[0116] Further, in the foregoing embodiment, a single link in the multi-link mechanism may be replaced with another component such as a serpentine tube; in addition, a single link in the multi-link mechanism and the connected adjusting device may be replaced with a deformable part.
[0117] The foregoing description is only a preferred embodiment of the present invention. It should be noted that the definitions of the various component nouns in the present invention are merely for convenience of explanation. In actual cases, there are cases where the functions and structures are the same or similar, but the names are inconsistent. It will be apparent to those skilled in the art that various modifications and improvements can be made without departing from the concept of the invention, and those modifications and improvements shall fall within the scope of protection of the present invention.