CN210924101U - VR glasses of optical module structure - Google Patents

VR glasses of optical module structure Download PDF

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Publication number
CN210924101U
CN210924101U CN201921510244.9U CN201921510244U CN210924101U CN 210924101 U CN210924101 U CN 210924101U CN 201921510244 U CN201921510244 U CN 201921510244U CN 210924101 U CN210924101 U CN 210924101U
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China
Prior art keywords
sliding
lens ring
sleeved
glasses
shell
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CN201921510244.9U
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Chinese (zh)
Inventor
毛建根
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Hainan Haidou Digital Technology Co ltd
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Hainan Noyteng Marine Science And Technology Research Institute Co ltd
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Priority to CN201921510244.9U priority Critical patent/CN210924101U/en
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Abstract

The utility model provides VR glasses with an optical module structure, which comprises a shell, a side chute and an adjusting block; the mounting cover is hinged at the front end of the shell, and the fixing plate and the mounting cover are integrally designed; the pressing plate is sleeved on the fixing plate through the telescopic rod, and the sliding block is sleeved in the mounting cover and the sliding groove on the pressing plate; the adjusting blocks of the sliding sleeve are fixed in the openings at the two sides of the shell, and the sliding sleeve is sleeved in the shell through the side sliding grooves; the installation cover has been cup jointed between lens ring and the sliding sleeve, and link through the connecting rod interconnect between the lens ring to the adjust knob on lens ring top cup joints inside the top spout on sliding tray top, and the inner wall of installation cover is provided with many places half slots, and the lens ring can cup joint and slide in the inside half slot of installation cover, shows under the angle problem at some cell-phones, comes to correspond the relative angle of cell-phone display through the angle that makes inside lens ring to adjust knob, reaches better visual experience.

Description

VR glasses of optical module structure
Technical Field
The utility model belongs to the technical field of the VR equipment, more specifically say, in particular to VR glasses of optical module structure.
Background
VR equipment, VR head-mounted display, virtual reality wear-type display device promptly. Since this concept was not seen clearly in the early days, there was no professional call for VR glasses, VR eyecups, VR helmets, etc. according to appearance. The VR head display utilizes the head-mounted display device to seal the vision and the hearing of people to the outside and guide a user to generate a feeling of being in a virtual environment. The display principle is that the left and right eye screens respectively display images of left and right eyes, and human eyes generate stereoscopic impression in the brain after acquiring the information with difference, but the structure of the existing general VR stereo glasses is single, only one group of lenses is formed, and the position and size of the lenses are adjusted, so that the VR stereo glasses cannot exert owned effects.
Application No.: in the patent of CN201720125970.3, the utility model discloses a VR glasses, including the casing that has the sight channel, the panel that erects in the sight channel, be provided with the VR eyepiece that supplies the human sight to pass through on the panel, still include the splint that fixedly connects with the casing and can overturn for the casing, the one end that the sight channel is located VR eyepiece incident end is image incident end, the splint inboard has the image display clamp to locate the clamping position between image incident end port and the splint to and make image incident end port be in the open position of open mode; and a connecting piece for keeping the clamping plate at the clamping position is arranged between the shell and the clamping plate. Be in the open position with splint, then lay the cell-phone between image incident end port and splint, the splint of upset for splint are in the centre gripping position, and it is fixed with splint and casing through the connecting piece at last, then through the image incident end relative the other end see through the VR eyepiece watch can, the utility model discloses convenient to use, manufacturing cost is lower moreover. (ESM) the same invention creation has been patented on the same day.
Based on the above, however, the structure of the existing general VR glasses is single, only one set of lenses is formed, and there is a certain limitation in adjusting the positions and sizes of the lenses, which may cause the VR glasses to fail to exert their own effects.
Therefore, in view of the above, research and improvement are made on the existing structure and defects, and a VR glasses with an optical module structure is provided to achieve the purpose of higher practical value.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a VR glasses of optical module structure to solve current VR glasses function singleness, the position size that can adjust the lens also is the problem that has certain limitation.
The utility model discloses the purpose and the efficiency of the VR glasses of optical module structure are reached by following concrete technical means:
VR glasses with an optical module structure comprise a shell, an opening, a mounting cover, a telescopic rod, a pressing plate, a sliding groove, a sliding block, a fixing plate, a mounting sleeve, a lens ring, an adjusting knob, a connecting rod, a sliding sleeve, a top sliding groove, a side sliding groove and an adjusting block; the mounting cover is hinged at the front end of the shell, and the fixing plate and the mounting cover are integrally designed; the pressing plate is sleeved on the fixing plate through the telescopic rod, and the sliding block is sleeved in the mounting cover and the sliding groove on the pressing plate; the adjusting blocks of the sliding sleeve are fixed in the openings at the two sides of the shell, and the sliding sleeve is sleeved in the shell through the side sliding grooves; the lens ring is sleeved with the mounting sleeve, the lens rings are mutually linked through the connecting rod, and the adjusting knob at the top end of the lens ring is sleeved inside the top sliding groove at the top end of the side sliding groove.
Furthermore, the sliding blocks are arranged in the sliding grooves formed in the lowest end of the mounting cover and the sliding grooves formed in the pressing plate, the sliding blocks in the sliding grooves are arranged in multiple positions, and the sliding blocks can slide randomly in the sliding grooves.
Further, the fixed side sliding groove that cup joints each other between sliding sleeve and the casing is provided with many places, sets up all to set up on the outer wall of sliding sleeve at the side sliding groove of sliding sleeve.
Furthermore, the mutual connection department between the installation cover is inside and the lens ring is provided with the half slot, and cup joints the half slot of fixed lens ring and is provided with everywhere.
Furthermore, two lens rings are arranged in the mounting sleeve, the front lens ring and the rear lens ring are hinged and connected through a connecting rod, and an adjusting knob is arranged at the top end of each lens ring.
Furthermore, the telescopic rods which are mutually sleeved between the pressing plate and the fixing plate are provided with three positions.
Compared with the prior art, the utility model discloses following beneficial effect has:
the setting of sliding sleeve, the inside interactive cover of current VR equipment is comparatively crude, can take place crooked card pause phenomenon when sliding along the casing, causes main card pause and crooked phenomenon's main factor to do, the sliding sleeve of current general glasses inside does not set up the sideslip groove that cup joints each other with the casing fixed, the sideslip groove that this device sliding sleeve outer wall was seted up is provided with the multiple department, messenger's sliding sleeve that can be more stable slides inside the casing, can not make the sliding sleeve take place crooked phenomenon when sliding.
The setting of lens ring, lens ring cup joints inside the installation cover, and connect through connecting rod looks mutual hinge between the two lens rings, constitute parallelogram structure between two lens rings and the connecting rod of interlinkage around, can make two lens ring synchronous motion around the messenger, the inner wall of installation cover is provided with many places half slots, the lens ring can cup joint and slide in the inside half slot of installation cover inside, under some cell-phone demonstration angle problems, come to correspond the relative angle of cell-phone display through the angle to the inside lens ring of adjustment knob messenger, reach better visual experience.
The setting of installation lid, link through the telescopic link between inside clamp plate of installation lid and the fixed plate, and the telescopic link is provided with the three, the telescopic link of three can be better fixed with the clamp plate, it can be more stable to go up and down through the telescopic link at the clamp plate, the spout has all been seted up with the lower extreme department of installation lid in clamp plate department, and the slider can slide wantonly in the spout is inside, general cell-phone is because the position of button such as volume key is inconsistent, the clamp plate that general chucking cell-phone used can directly block to cell-phone volume key, can cause certain inconvenience, install the slidable slider with clamp plate department in this device, can adjust the relative position of slider under the effect of different cell-phones, accomplish the state that arbitrary cell-phones homoenergetic used.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the opening structure of the mounting cover of the present invention.
Fig. 3 is a schematic top view of the present invention.
Fig. 4 is a schematic diagram of the internal structure of the present invention.
Fig. 5 is a schematic view of the sliding sleeve structure of the present invention.
Fig. 6 is a schematic diagram of a partially enlarged structure at a.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
1. a housing; 101. opening a hole; 2. installing a cover; 201. a telescopic rod; 202. pressing a plate; 203. a chute; 204. A slider; 205. a fixing plate; 3. installing a sleeve; 4. a lens ring; 401. adjusting a knob; 402. a connecting rod; 5. a sliding sleeve; 501. a top chute; 502. a side chute; 503. an adjusting block;
Detailed Description
Example (b):
as shown in figures 1 to 6:
the utility model provides VR glasses with an optical module structure, which comprises a shell 1, an opening 101, an installation cover 2, a telescopic rod 201, a pressing plate 202, a chute 203, a sliding block 204, a fixing plate 205, an installation sleeve 3, a lens ring 4, an adjusting knob 401, a connecting rod 402, a sliding sleeve 5, a top chute 501, a side chute 502 and an adjusting block 503; the mounting cover 2 is hinged at the front end of the housing 1, and the fixing plate 205 and the mounting cover 2 are integrally designed; the pressure plate 202 is sleeved on the fixing plate 205 through the telescopic rod 201, and the sliding block 204 is sleeved in the sliding groove 203 on the installation cover 2 and the pressure plate 202; the adjusting blocks 503 of the sliding sleeve 5 are fixed in the openings 101 at the two sides of the shell 1, and the sliding sleeve 5 is sleeved in the shell 1 through the side sliding grooves 502; the installation sleeve 3 is sleeved between the lens ring 4 and the sliding sleeve 5, the lens ring 4 is connected with each other through the connecting rod 402, and the adjusting knob 401 at the top end of the lens ring 4 is sleeved inside the top sliding groove 501 at the top end of the side sliding groove 502.
The sliding blocks 204 are arranged in the sliding grooves 203 arranged at the lowest end of the mounting cover 2 and in the sliding grooves 203 arranged at the pressing plate 202, the sliding blocks 204 in the sliding grooves 203 are arranged at multiple positions, the sliding blocks 204 can slide freely in the sliding grooves 203, the positions of keys such as volume keys of general mobile phones are not consistent, the pressing plate 202 used by the general clamping mobile phones can be directly clamped to the volume keys of the mobile phones, certain inconvenience can be caused, the sliding blocks 204 capable of sliding are arranged at the pressing plate 202 in the device, the relative positions of the sliding blocks 204 can be adjusted under the action of different mobile phones, and the use state of any mobile phone can be achieved.
Wherein, the side spout 502 that cup joints each other fixedly between sliding sleeve 5 and the casing 1 is provided with the multiple department, sets up all to set up on the outer wall of sliding sleeve 5 at the sideslip groove 502 of sliding sleeve 5, and the sideslip groove 502 that the outer wall of sliding sleeve 5 was seted up is provided with the multiple department, and messenger's sliding sleeve 5 that can be more stable slides in casing 1 is inside, can not make sliding sleeve 5 take place crooked phenomenon when sliding.
Wherein, the interconnect department is provided with the half slot between the inside and lens ring 4 of installation cover 3, and cup joints the half slot of fixed lens ring 4 and be provided with everywhere, and the inside half slot of installation cover 3 mainly is the effect of fixed lens ring 4, and lens ring 4 can carry out miniature horizontal hunting along the half slot, and the half slot can keep the position of lens ring 4 when lens ring 4 swings.
Wherein, the setting is provided with two places at the inside lens ring 4 of sliding sleeve 5, and connects through connecting rod 402 mutual hinge between two lens rings 4 around and, and the top department of its lens ring 4 is provided with an adjust knob 401, and lens ring 4 can cup joint and slide in the inside half slot of installation cover 3, shows under the angle problem at some cell-phones, comes to correspond the relative angle of cell-phone display through the angle that makes inside lens ring 4 to adjust knob 401, reaches better visual experience.
The telescopic rods 201 sleeved with each other between the pressing plate and the fixing plate 205 are provided with three positions, the pressing plate 202 can be better fixed by the telescopic rods 201 at the three positions, and the pressing plate 202 can be more stable when lifted through the telescopic rods 201.
The specific use mode and function of the embodiment are as follows:
in the utility model, the internal interactive sleeve of the prior VR equipment is simple and crude, the skew blocking phenomenon can occur when sliding along the shell 1, and the main factor causing the main blocking and skew phenomena is that the sliding sleeve 5 in the prior general glasses is not provided with the side sliding groove 502 which is mutually sleeved with the shell 1 for fixation, the side sliding groove 502 arranged on the outer wall of the sliding sleeve 5 of the device is provided with a plurality of positions, the sliding sleeve 5 can slide in the shell 1 more stably, the skew phenomenon can not occur when the sliding sleeve 5 slides, the lens ring 4 is sleeved in the mounting sleeve 3, and the two lens rings 4 are mutually hinged and connected through the connecting rod 402, the front and the back lens rings 4 and the connecting rod 402 which are mutually linked form a parallel four-side structure, the front and the back lens rings 4 can move synchronously, the inner wall of the mounting sleeve 3 is provided with a plurality of semicircular grooves, the lens ring 4 can be sleeved in the semicircular groove inside the mounting sleeve 3 for sliding, under the problem of displaying angles of some mobile phones, the angle of the lens ring 4 inside the mounting cover 2 is adjusted by the adjusting knob 401 to correspond to the relative angle of the mobile phone display, so as to achieve better visual experience, the pressing plate 202 inside the mounting cover 2 is connected with the fixing plate 205 through the telescopic rod 201, the telescopic rod 201 is provided with three positions, the three telescopic rods 201 can better fix the pressing plate 202, the pressing plate 202 can be lifted and lowered through the telescopic rod 201 to be more stable, the sliding grooves 203 are respectively formed at the pressing plate 202 and the lower end of the mounting cover 2, the sliding block 204 can slide freely inside the sliding groove 203, the general mobile phone has different positions of keys such as a volume key, the pressing plate 202 used for clamping the general mobile phone can be directly clamped to the volume key of the mobile phone, so that certain inconvenience is caused, the sliding block 204 capable of sliding is mounted at the pressing plate 202 in the device, so that the relative position of the sliding block 204 can be adjusted, so as to achieve the state that any mobile phone can be used.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (6)

1. The utility model provides a VR glasses of optical module structure which characterized in that: the VR glasses with the optical module structure comprise a shell (1), an opening (101), a mounting cover (2), an expansion link (201), a pressing plate (202), a sliding groove (203), a sliding block (204), a fixing plate (205), a mounting sleeve (3), a lens ring (4), an adjusting knob (401), a connecting rod (402), a sliding sleeve (5), a top sliding groove (501), a side sliding groove (502) and an adjusting block (503); the mounting cover (2) is hinged to the front end of the shell (1), and the fixing plate (205) and the mounting cover (2) are integrally designed; the pressing plate (202) is sleeved on the fixing plate (205) through the telescopic rod (201), and the sliding block (204) is sleeved in the mounting cover (2) and a sliding groove (203) on the pressing plate (202); the adjusting blocks (503) of the sliding sleeve (5) are fixed in the openings (101) on the two sides of the shell (1), and the sliding sleeve (5) is sleeved in the shell (1) through the side sliding grooves (502); the installation sleeve (3) is sleeved between the lens ring (4) and the sliding sleeve (5), the lens ring (4) is mutually linked through a connecting rod (402), and an adjusting knob (401) at the top end of the lens ring (4) is sleeved inside a top sliding groove (501) at the top end of a side sliding groove (502).
2. The VR glasses in an optical module configuration of claim 1, wherein: the mounting cover is characterized in that sliding blocks (204) are arranged in sliding grooves (203) formed in the lowest end of the mounting cover (2) and in the sliding grooves (203) formed in the pressing plate (202), the sliding blocks (204) in the sliding grooves (203) are arranged in multiple positions, and the sliding blocks (204) can slide in the sliding grooves (203) at will.
3. The VR glasses in an optical module configuration of claim 1, wherein: the side sliding groove (502) which is mutually sleeved and fixed between the sliding sleeve (5) and the shell (1) is provided with a plurality of positions, and the side sliding groove (502) arranged on the sliding sleeve (5) is arranged on the outer wall of the sliding sleeve (5).
4. The VR glasses in an optical module configuration of claim 1, wherein: the mutual connection department between the inside of installation cover (3) and lens ring (4) is provided with the half slot, and cup joints the half slot of fixed lens ring (4) and is provided with everywhere.
5. The VR glasses in an optical module configuration of claim 1, wherein: the lens ring (4) arranged inside the sliding sleeve (5) is provided with two positions, the front lens ring and the rear lens ring (4) are hinged and connected with each other through a connecting rod (402), and the top end of the lens ring (4) is provided with an adjusting knob (401).
6. The VR glasses in an optical module configuration of claim 1, wherein: the telescopic rods (201) which are sleeved with each other between the pressing plate and the fixing plate (205) are provided with three positions.
CN201921510244.9U 2019-09-11 2019-09-11 VR glasses of optical module structure Active CN210924101U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921510244.9U CN210924101U (en) 2019-09-11 2019-09-11 VR glasses of optical module structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921510244.9U CN210924101U (en) 2019-09-11 2019-09-11 VR glasses of optical module structure

Publications (1)

Publication Number Publication Date
CN210924101U true CN210924101U (en) 2020-07-03

Family

ID=71345650

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921510244.9U Active CN210924101U (en) 2019-09-11 2019-09-11 VR glasses of optical module structure

Country Status (1)

Country Link
CN (1) CN210924101U (en)

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Address after: 572000 room 1004, scientific research complex building, No. 28, Luhuitou Road, Jiyang District, Sanya City, Hainan Province

Patentee after: Hainan Haidou Digital Technology Co.,Ltd.

Address before: 572000 room 1004, scientific research complex building, No. 28, Luhuitou Road, Jiyang District, Sanya City, Hainan Province

Patentee before: Hainan Noyteng Marine Science and Technology Research Institute Co.,Ltd.