WO2017120758A1 - 一种基于vr眼镜的pcb安装架及vr眼镜 - Google Patents

一种基于vr眼镜的pcb安装架及vr眼镜 Download PDF

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Publication number
WO2017120758A1
WO2017120758A1 PCT/CN2016/070659 CN2016070659W WO2017120758A1 WO 2017120758 A1 WO2017120758 A1 WO 2017120758A1 CN 2016070659 W CN2016070659 W CN 2016070659W WO 2017120758 A1 WO2017120758 A1 WO 2017120758A1
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pcb
mounting
main
hole
main pcb
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PCT/CN2016/070659
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English (en)
French (fr)
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李刚
张丰学
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深圳多哚新技术有限责任公司
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Priority to PCT/CN2016/070659 priority Critical patent/WO2017120758A1/zh
Publication of WO2017120758A1 publication Critical patent/WO2017120758A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays

Definitions

  • the invention relates to the technical field of VR glasses manufacturing, and in particular to a PCB mounting frame and VR glasses based on VR glasses.
  • Virtual Reality is also used as Virtual Reality (VR).
  • VR is also called Vision Technology or Artificial Environment. It is a virtual world that uses computer simulation to generate a three-dimensional space, providing users with simulations of visual, auditory, tactile and other senses. To allow users to observe things in the three-dimensional space in a timely and unrestricted manner as if they were immersed in the situation. When the user moves the position, the computer can perform complex calculations immediately, and the accurate 3D world video is transmitted back to produce a sense of presence.
  • the technology integrates the latest developments in computer graphics, computer simulation, artificial intelligence, sensing, display and network parallel processing. It is a high-tech simulation system generated by computer technology.
  • VR glasses can also be referred to as virtual reality glasses, which provide the wearer with a 360-degree immersive visual experience.
  • VR glasses face the problem of inconvenient installation of printed circuit boards and messy connections.
  • the invention provides a PCB mounting frame and VR glasses based on VR glasses, which effectively solves the problems of inconvenient installation and messy connection.
  • a PCB mounting frame based on VR glasses in the invention includes:
  • the L-shaped mounting body 10 for accommodating the PCB 20 the main PCB mounting groove 11 is disposed on the L long arm, and the sub PCB mounting groove 12 is disposed on the L short arm;
  • the main PCB mounting slot 11 is elongated, and is provided with a main PCB first guiding pillar 112 and a main PCB second guiding pillar 113 disposed diagonally thereto;
  • the first PCB first screw hole 111 is disposed near the first lead pillar 112 of the main PCB, and the main PCB is second.
  • a main PCB second screw hole 114 is disposed near the guide post 113;
  • the main PCB first pillar hole 212 disposed on the main PCB 21 passes through the main PCB first pillar 112, and the main PCB second pillar hole 213 disposed on the main PCB 21 passes through the main PCB second pillar 113; the main PCB 21 is disposed
  • the main PCB first mounting holes 211 are aligned with the first PCB first screw holes 111 and are connected by screws;
  • the main PCB second mounting holes 214 provided on the main PCB 21 are aligned with the main PCB second screw holes 114, and are connected by screws;
  • the sub PCB mounting slot 12 is provided with a sub PCB first guide post 121 and a sub PCB second guide post 124 disposed diagonally opposite thereto;
  • a secondary PCB first screw hole 122 is disposed adjacent to the first PCB guide pillar 121, and a secondary PCB second screw hole 123 is disposed adjacent to the secondary PCB second guide pillar 124;
  • the sub-PCB first pillar hole 222 disposed on the sub-PCB 22 passes through the sub-PCB first pillar 121, and the sub-PCB second pillar hole 224 disposed on the sub-PCB 22 passes through the sub-PCB second pillar 124;
  • the secondary PCB first mounting holes 221 are aligned with the secondary PCB first screw holes 122 and are connected by screws;
  • the secondary PCB second mounting holes 223 provided on the secondary PCB 22 are aligned with the secondary PCB second screw holes 123 and are connected by screws.
  • the girth mounting groove 13 is provided at the long arm end of the L-shaped mounting body 10, and the gyroscope mounting groove 13 is used for mounting the gyroscope PCB 23; the gyroscope mounting groove 13 is disposed perpendicular to the main PCB mounting groove 11 and the sub PCB mounting groove 12; The gyroscope PCB is mounted in a limit frame.
  • the VR glasses-based PCB mount further includes a pressing piece 40 having a pressing piece first guiding post hole 41 and a pressing piece second guiding post hole 44 disposed opposite thereto, and the pressing piece first guiding post hole 41 a first mounting hole 42 is disposed nearby, and a second mounting hole 43 is disposed adjacent to the second guiding post hole 44 of the pressing piece;
  • the tablet is covered by the main PCB 21, the first pillar hole 41 of the tablet passes through the first lead pillar 112 of the main PCB, and the first mounting hole 42 of the tablet passes through the second pillar 113 of the main PCB;
  • the first mounting hole 42 of the tablet is aligned with the first screw hole 111 of the main PCB, and is connected by screws, and the second mounting hole 43 of the tablet is aligned with the second screw hole 114 of the main PCB and connected by screws.
  • the end of the pressing piece 40 adjacent to the gyroscope mounting groove 13 is provided with a bayonet 45 into which the gyroscope PCB 23 can be inserted.
  • the L-shaped mounting body 10 has a tablet mounting card 14 thereon;
  • the pressing piece has a buckle 46 matched with the mounting card 14;
  • a notch 47 is formed in the pressing piece 40, and a projection formed by the element on the main PCB 21 can be embedded in the notch 47.
  • the mounting body 10 also has a mounting clip that cooperates with the VR spectacle frame for embedding the mounting card of the VR spectacle frame.
  • the VR glasses-based PCB mount further includes a light-shielding silicone 50 mounted on the main PCB mounting groove 11.
  • the PCBs 20 are connected to each other through the FPC 30.
  • the present invention also provides a VR glasses mounted with the above-described VR glasses-based PCB mount.
  • the VR glasses-based PCB mount in the present invention includes:
  • the L-shaped mounting body 10 for accommodating the PCB 20 the main PCB mounting groove 11 is disposed on the L long arm, and the sub PCB mounting groove 12 is disposed on the L short arm;
  • the main PCB mounting slot 11 is elongated, and is provided with a main PCB first guiding pillar 112 and a main PCB second guiding pillar 113 disposed diagonally thereto;
  • a main PCB first screw hole 111 is disposed in the vicinity of the main PCB first guiding pillar 112, and a main PCB second screw hole 114 is disposed in the vicinity of the main PCB second guiding pillar 113;
  • the main PCB first pillar hole 212 disposed on the main PCB 21 passes through the main PCB first pillar 112, and the main PCB second pillar hole 213 disposed on the main PCB 21 passes through the main PCB second pillar 113; the main PCB 21 is disposed
  • the main PCB first mounting holes 211 are aligned with the first PCB first screw holes 111 and are connected by screws;
  • the main PCB second mounting holes 214 provided on the main PCB 21 are aligned with the main PCB second screw holes 114, and are connected by screws;
  • the sub-PCB mounting groove 12 is provided with a sub-PCB first guide post 121 and a pair disposed diagonally opposite thereto PCB second guide post 124;
  • a secondary PCB first screw hole 122 is disposed adjacent to the first PCB guide pillar 121, and a secondary PCB second screw hole 123 is disposed adjacent to the secondary PCB second guide pillar 124;
  • the sub-PCB first pillar hole 222 disposed on the sub-PCB 22 passes through the sub-PCB first pillar 121, and the sub-PCB second pillar hole 224 disposed on the sub-PCB 22 passes through the sub-PCB second pillar 124;
  • the secondary PCB first mounting holes 221 are aligned with the secondary PCB first screw holes 122 and are connected by screws;
  • the secondary PCB second mounting holes 223 provided on the secondary PCB 22 are aligned with the secondary PCB second screw holes 123 and are connected by screws.
  • the main PCB and the sub-PCB are mounted on a PCB mounting frame and the spacing is compact, the two PCBs are integrated, and the PCB mounting frame is installed in the VR glasses frame, thereby making installation and disassembly more convenient. Due to the tight spacing between the PCBs, the connection is simpler.
  • FIG. 1 is an exploded view of a PCB mounting frame based on VR glasses according to the present invention
  • FIG. 2 is a structural view of a mounting body 10 in a PCB mounting frame based on VR glasses according to the present invention
  • FIG. 3 is a structural diagram of a main PCB in a PCB mounting frame based on VR glasses according to the present invention
  • FIG. 4 is a structural diagram of a secondary PCB in a PCB mounting frame based on VR glasses according to the present invention
  • FIG. 5 is a structural diagram of a pressing piece in a PCB mounting frame based on VR glasses according to the present invention.
  • the mounting frame body 11, the main PCB mounting slot; 111, the first PCB first screw hole; 112, the main PCB first guiding column; 113, the main PCB second guiding column; 114, the main PCB second screw Hole; 12, sub PCB mounting slot; 121, sub-PCB first guide post; 122, sub-PCB first screw hole; 123, sub-PCB second screw hole; 124, sub-PCB second guide post; 13, gyroscope installation Slot; 14, mounting card position; 20, PCB; 21, main PCB; 211, main PCB first mounting hole; 212, main PCB first guide post hole; 213, main PCB second guide post hole; 214, main PCB a second mounting hole; 22, a sub-PCB; 221, a first mounting hole of the sub-PCB; 222, a first guiding post hole of the sub-PCB; 223, a second mounting hole of the sub-PCB; 224, a second guiding post hole of the sub-PCB; Gyro
  • the invention provides a PCB mounting frame and VR glasses based on VR glasses, which effectively solves the problems of inconvenient installation and messy connection.
  • a PCB mounting frame based on VR glasses includes:
  • the L-shaped mounting body 10 for accommodating the PCB 20 the main PCB mounting groove 11 is disposed on the L long arm, and the sub PCB mounting groove 12 is disposed on the L short arm;
  • the main PCB mounting slot 11 is elongated, and is provided with a main PCB first guiding pillar 112 and a main PCB second guiding pillar 113 disposed diagonally thereto;
  • a main PCB first screw hole 111 is disposed in the vicinity of the main PCB first guiding pillar 112, and a main PCB second screw hole 114 is disposed in the vicinity of the main PCB second guiding pillar 113;
  • the main PCB first pillar hole 212 disposed on the main PCB 21 passes through the main PCB first pillar 112, and the main PCB second pillar hole 213 disposed on the main PCB 21 passes through the main PCB second pillar 113; the main PCB 21 is disposed
  • the main PCB first mounting holes 211 are aligned with the first PCB first screw holes 111 and are connected by screws;
  • the main PCB second mounting holes 214 provided on the main PCB 21 are aligned with the main PCB second screw holes 114, and are connected by screws;
  • the sub PCB mounting slot 12 is provided with a sub PCB first guide post 121 and a sub PCB second guide post 124 disposed diagonally opposite thereto;
  • a secondary PCB first screw hole 122 is disposed adjacent to the first PCB guide pillar 121, and a secondary PCB second screw hole 123 is disposed adjacent to the secondary PCB second guide pillar 124;
  • the sub-PCB first pillar hole 222 disposed on the sub-PCB 22 passes through the sub-PCB first pillar 121, and the sub-PCB second pillar hole 224 disposed on the sub-PCB 22 passes through the sub-PCB second pillar 124;
  • the secondary PCB first mounting holes 221 are aligned with the secondary PCB first screw holes 122 and are connected by screws;
  • the secondary PCB second mounting holes 223 provided on the secondary PCB 22 are aligned with the secondary PCB second screw holes 123 and are connected by screws.
  • a PCB mounting frame based on VR glasses includes:
  • the main PCB second screw hole 114 is disposed nearby; the main PCB first pillar hole 212 disposed on the main PCB 21 passes through the main PCB first pillar 112, and the main PCB second pillar hole 213 disposed on the main PCB 21 passes through the main PCB The second guiding pillar 113; the main PCB first mounting hole 211 disposed on the main PCB 21 is aligned with the first PCB first screw hole
  • the main PCB 21 and the sub-PCB 22 are both mounted on a PCB mounting body 10 and the spacing is compact, the two PCBs are integrated, and the PCB mounting frame is installed in the VR eyeglass frame, thereby facilitating installation and disassembly. . Due to the tight spacing between the PCBs, the connection is simpler.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the girth mounting groove 13 is provided at the long arm end of the L-shaped mounting body 10, and the gyroscope mounting groove 13 is used for mounting the gyroscope PCB 23; the gyroscope mounting groove 13 is disposed perpendicular to the main PCB mounting groove 11 and the sub PCB mounting groove 12; The gyroscope PCB23 is mounted in the limit frame.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the VR glasses-based PCB mount further includes a pressing piece 40 having a pressing piece first guiding post hole 41 and a pressing piece second guiding post hole 44 disposed opposite thereto, and the pressing piece first guiding post hole 41 a first mounting hole 42 is disposed nearby, and a second mounting hole 43 is disposed adjacent to the second guiding post hole 44 of the pressing piece;
  • the tablet 40 is over the main PCB 21, the first pillar hole 41 of the tablet passes through the main PCB first pillar 112, and the first mounting hole 42 of the tablet passes through the second pillar 113 of the main PCB;
  • the first mounting hole 42 of the tablet is aligned with the first screw hole 111 of the main PCB, and is connected by screws, and the second mounting hole 43 of the tablet is aligned with the second screw hole 114 of the main PCB and connected by screws.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the end of the pressing piece 40 adjacent to the gyroscope mounting groove 13 is provided with a bayonet 45 into which the gyroscope PCB 23 can be inserted.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the L-shaped mounting frame body 10 has a pressing piece 40 mounted with a card position 14;
  • the pressing piece 40 has a buckle 46 matched with the mounting card 14;
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • a notch 47 is formed in the pressing piece 40, and a projection formed by the element on the main PCB 21 can be embedded in the notch 47.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the mounting body 10 also has a mounting clip that mates with the VR spectacle frame for embedding the mounting bay 14 of the VR spectacle frame.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the VR glasses-based PCB mount further includes a light-shielding silicone 50 mounted on the main PCB mounting groove 11.
  • a PCB mounting frame based on VR glasses in the present invention further includes:
  • the PCBs 20 are connected to each other through the FPC 30.
  • the present invention also provides a VR glasses mounted with the above-described VR glasses-based PCB mount.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Eyeglasses (AREA)

Abstract

一种基于VR眼镜的PCB安装架及VR眼镜,该PCB安装架包括用于收纳主PCB(21)和副PCB(22)的L形的安装架本体(10),L长臂上设置主PCB安装槽(11),L短臂上设置副PCB安装槽(12);主PCB安装槽上设置有主PCB第一导柱(112)和与之对角设置的主PCB第二导柱(113),主PCB第一导柱附近设置主PCB第一螺钉孔(111),主PCB第二导柱附近设置主PCB第二螺钉孔(114),副PCB安装槽上设置有副PCB第一导柱(121)和与之对角设置的副PCB第二导柱(124),副PCB第一导柱附近设置副PCB第一螺钉孔(122),副PCB第二导柱附近设置副PCB第二螺钉孔(123),利用主PCB和副PCB上设置的导柱孔穿过所述导柱,安装孔与所述螺钉孔对齐,并通过螺钉连接,以将主PCB和副PCB固定在一个安装架本体上;由于两块PCB均安装在一块PCB安装架上,且间距紧凑,使两块PCB成为一体后,再将该PCB安装架安装在VR眼镜框内,从而使得安装和拆卸更加方便,并且PCB之间的连线也更简单。

Description

一种基于VR眼镜的PCB安装架及VR眼镜 技术领域
本发明涉及VR眼镜制造技术领域,尤其涉及一种基于VR眼镜的PCB安装架及VR眼镜。
背景技术
虚拟现实亦作虚拟实境(Virtual Reality),简称VR技术,VR也称灵境技术或人工环境,是利用电脑模拟产生一个三度空间的虚拟世界,提供用户关于视觉、听觉、触觉等感官的模拟,让用户如同身历其境一般,可以及时、没有限制地观察三度空间内的事物。用户进行位置移动时,电脑可以立即进行复杂的运算,将精确的三维世界视频传回产生临场感。该技术集成了计算机图形、计算机仿真、人工智能、传感、显示及网络并行处理等技术的最新发展成果,是一种由计算机技术辅助生成的高技术模拟***。
VR眼镜也可以被称作虚拟现实眼镜,它可以给佩戴者提供360度的沉浸式视觉体验。为了满足轻薄的设计要求,VR眼镜面临电路印刷板安装不便及连线杂乱的问题。
亟待提供一种基于VR眼镜的PCB安装架,有效解决安装不便及连线杂乱的问题。
发明内容
本发明提供一种基于VR眼镜的PCB安装架及VR眼镜,有效解决安装不便及连线杂乱的问题。
本发明中一种基于VR眼镜的PCB安装架,包括:
用于收纳PCB20的L形的安装架本体10,L长臂上设置主PCB安装槽11,L短臂上设置副PCB安装槽12;
主PCB安装槽11呈长条状,其上设置有主PCB第一导柱112和与之对角设置的主PCB第二导柱113;
主PCB第一导柱112附近设置主PCB第一螺钉孔111,主PCB第二 导柱113附近设置主PCB第二螺钉孔114;
主PCB21上设置的主PCB第一导柱孔212穿过主PCB第一导柱112,主PCB21上设置的主PCB第二导柱孔213穿过主PCB第二导柱113;主PCB21上设置的主PCB第一安装孔211与主PCB第一螺钉孔111对齐,并通过螺钉连接;主PCB21上设置的主PCB第二安装孔214与主PCB第二螺钉孔114对齐,并通过螺钉连接;
副PCB安装槽12上设置有副PCB第一导柱121和与之对角设置的副PCB第二导柱124;
副PCB第一导柱121附近设置副PCB第一螺钉孔122,副PCB第二导柱124附近设置副PCB第二螺钉孔123;
副PCB22上设置的副PCB第一导柱孔222穿过副PCB第一导柱121,副PCB22上设置的副PCB第二导柱孔224穿过副PCB第二导柱124;副PCB22上设置的副PCB第一安装孔221与副PCB第一螺钉孔122对齐,并通过螺钉连接;副PCB22上设置的副PCB第二安装孔223与副PCB第二螺钉孔123对齐,并通过螺钉连接。
可选的,
L形的安装架本体10的长臂端部设置陀螺仪安装槽13,陀螺仪安装槽13用于安装陀螺仪PCB23;陀螺仪安装槽13垂直主PCB安装槽11和副PCB安装槽12设置;陀螺仪PCB安装在限位框内。
可选的,
该基于VR眼镜的PCB安装架还包括压片40,压片40具有压片第一导柱孔41和与之对角设置的压片第二导柱孔44,压片第一导柱孔41附近设置压片第一安装孔42,压片第二导柱孔44附近设置压片第二安装孔43;
压片覆盖在主PCB21上方,压片第一导柱孔41穿过主PCB第一导柱112,压片第一安装孔42穿过主PCB第二导柱113;
压片第一安装孔42与主PCB第一螺钉孔111对齐,并通过螺钉连接,压片第二安装孔43与主PCB第二螺钉孔114对齐,并通过螺钉连接。
可选的,
压片40靠近陀螺仪安装槽13的一端设有卡口45,陀螺仪PCB23能够嵌入所述卡口45内。
可选的,
L形的安装架本体10上具有压片安装卡位14;
压片上具有与安装卡位14相配合的卡扣46;
可选的,
压片40上开设缺口47,主PCB21上的元件形成的凸起能够嵌入该缺口47。
可选的,
安装架本体10还具有与VR眼镜架相配合的安装卡扣,用于嵌入VR眼镜架的安装卡位。
可选的,
该基于VR眼镜的PCB安装架还包括隔光硅胶50,该隔光硅胶50安装在主PCB安装槽11上。
可选的,
PCB20通过FPC30彼此连接。
本发明还提供了一种VR眼镜,安装有上述基于VR眼镜的PCB安装架。
从以上技术方案可以看出,本发明实施例具有以下优点:
本发明中的基于VR眼镜的PCB安装架,包括:
用于收纳PCB20的L形的安装架本体10,L长臂上设置主PCB安装槽11,L短臂上设置副PCB安装槽12;
主PCB安装槽11呈长条状,其上设置有主PCB第一导柱112和与之对角设置的主PCB第二导柱113;
主PCB第一导柱112附近设置主PCB第一螺钉孔111,主PCB第二导柱113附近设置主PCB第二螺钉孔114;
主PCB21上设置的主PCB第一导柱孔212穿过主PCB第一导柱112,主PCB21上设置的主PCB第二导柱孔213穿过主PCB第二导柱113;主PCB21上设置的主PCB第一安装孔211与主PCB第一螺钉孔111对齐,并通过螺钉连接;主PCB21上设置的主PCB第二安装孔214与主PCB第二螺钉孔114对齐,并通过螺钉连接;
副PCB安装槽12上设置有副PCB第一导柱121和与之对角设置的副 PCB第二导柱124;
副PCB第一导柱121附近设置副PCB第一螺钉孔122,副PCB第二导柱124附近设置副PCB第二螺钉孔123;
副PCB22上设置的副PCB第一导柱孔222穿过副PCB第一导柱121,副PCB22上设置的副PCB第二导柱孔224穿过副PCB第二导柱124;副PCB22上设置的副PCB第一安装孔221与副PCB第一螺钉孔122对齐,并通过螺钉连接;副PCB22上设置的副PCB第二安装孔223与副PCB第二螺钉孔123对齐,并通过螺钉连接。
由于将主PCB和副PCB均安装在一块PCB安装架上,且间距紧凑,使两块PCB成为一体后,再将该PCB安装架安装在VR眼镜框内,从而使安装和拆卸更加方便。由于PCB之间间距紧凑,使连接更简单。
附图说明
图1为本发明中一种基于VR眼镜的PCB安装架***图;
图2为本发明中一种基于VR眼镜的PCB安装架中安装架本体10结构图;
图3为本发明中一种基于VR眼镜的PCB安装架中主PCB结构图;
图4为本发明中一种基于VR眼镜的PCB安装架中副PCB结构图;
图5为本发明中一种基于VR眼镜的PCB安装架中压片结构图;
图中,10、安装架本体;11、主PCB安装槽;111、主PCB第一螺钉孔;112、主PCB第一导柱;113、主PCB第二导柱;114、主PCB第二螺钉孔;12、副PCB安装槽;121、副PCB第一导柱;122、副PCB第一螺钉孔;123、副PCB第二螺钉孔;124、副PCB第二导柱;13、陀螺仪安装槽;14、安装卡位;20、PCB;21、主PCB;211、主PCB第一安装孔;212、主PCB第一导柱孔;213、主PCB第二导柱孔;214、主PCB第二安装孔;22、副PCB;221、副PCB第一安装孔;222、副PCB第一导柱孔;223、副PCB第二安装孔;224、副PCB第二导柱孔;23、陀螺仪PCB;30、FPC;40、压片;41、压片第一导柱孔;42、压片第一安装孔;43、压片第二安装孔;44、压片第二导柱孔;45、卡口;46、卡扣;47、缺口;50、隔光硅胶。
具体实施方式
本发明提供一种基于VR眼镜的PCB安装架及VR眼镜,有效解决安装不便及连线杂乱的问题。
下面请参阅图1至图5,本发明中一种基于VR眼镜的PCB安装架,包括:
用于收纳PCB20的L形的安装架本体10,L长臂上设置主PCB安装槽11,L短臂上设置副PCB安装槽12;
主PCB安装槽11呈长条状,其上设置有主PCB第一导柱112和与之对角设置的主PCB第二导柱113;
主PCB第一导柱112附近设置主PCB第一螺钉孔111,主PCB第二导柱113附近设置主PCB第二螺钉孔114;
主PCB21上设置的主PCB第一导柱孔212穿过主PCB第一导柱112,主PCB21上设置的主PCB第二导柱孔213穿过主PCB第二导柱113;主PCB21上设置的主PCB第一安装孔211与主PCB第一螺钉孔111对齐,并通过螺钉连接;主PCB21上设置的主PCB第二安装孔214与主PCB第二螺钉孔114对齐,并通过螺钉连接;
副PCB安装槽12上设置有副PCB第一导柱121和与之对角设置的副PCB第二导柱124;
副PCB第一导柱121附近设置副PCB第一螺钉孔122,副PCB第二导柱124附近设置副PCB第二螺钉孔123;
副PCB22上设置的副PCB第一导柱孔222穿过副PCB第一导柱121,副PCB22上设置的副PCB第二导柱孔224穿过副PCB第二导柱124;副PCB22上设置的副PCB第一安装孔221与副PCB第一螺钉孔122对齐,并通过螺钉连接;副PCB22上设置的副PCB第二安装孔223与副PCB第二螺钉孔123对齐,并通过螺钉连接。
本发明中,基于VR眼镜的PCB安装架,包括:
用于收纳PCB20的L形的安装架本体10,L长臂上设置主PCB安装槽11,L短臂上设置副PCB安装槽12;主PCB安装槽11呈长条状,其上设置有主PCB第一导柱112和与之对角设置的主PCB第二导柱113;主PCB第一导柱112附近设置主PCB第一螺钉孔111,主PCB第二导柱113 附近设置主PCB第二螺钉孔114;主PCB21上设置的主PCB第一导柱孔212穿过主PCB第一导柱112,主PCB21上设置的主PCB第二导柱孔213穿过主PCB第二导柱113;主PCB21上设置的主PCB第一安装孔211与主PCB第一螺钉孔111对齐,并通过螺钉连接;主PCB21上设置的主PCB第二安装孔214与主PCB第二螺钉孔114对齐,并通过螺钉连接;副PCB安装槽12上设置有副PCB第一导柱121和与之对角设置的副PCB第二导柱124;副PCB第一导柱121附近设置副PCB第一螺钉孔122,副PCB第二导柱124附近设置副PCB第二螺钉孔123;副PCB22上设置的副PCB第一导柱孔222穿过副PCB第一导柱121,副PCB22上设置的副PCB第二导柱孔224穿过副PCB第二导柱124;副PCB22上设置的副PCB第一安装孔221与副PCB第一螺钉孔122对齐,并通过螺钉连接;副PCB22上设置的副PCB第二安装孔223与副PCB第二螺钉孔123对齐,并通过螺钉连接。
由于将主PCB21和副PCB22均安装在一块PCB安装架本体10上,且间距紧凑,使两块PCB成为一体后,再将该PCB安装架安装在VR眼镜框内,从而使安装和拆卸更加方便。由于PCB之间间距紧凑,使连接更简单。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
L形的安装架本体10的长臂端部设置陀螺仪安装槽13,陀螺仪安装槽13用于安装陀螺仪PCB23;陀螺仪安装槽13垂直主PCB安装槽11和副PCB安装槽12设置;陀螺仪PCB23安装在限位框内。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
该基于VR眼镜的PCB安装架还包括压片40,压片40具有压片第一导柱孔41和与之对角设置的压片第二导柱孔44,压片第一导柱孔41附近设置压片第一安装孔42,压片第二导柱孔44附近设置压片第二安装孔43;
压片40覆盖在主PCB21上方,压片第一导柱孔41穿过主PCB第一导柱112,压片第一安装孔42穿过主PCB第二导柱113;
压片第一安装孔42与主PCB第一螺钉孔111对齐,并通过螺钉连接,压片第二安装孔43与主PCB第二螺钉孔114对齐,并通过螺钉连接。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
压片40靠近陀螺仪安装槽13的一端设有卡口45,陀螺仪PCB23能够嵌入所述卡口45内。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
L形的安装架本体10上具有压片40安装卡位14;
压片40上具有与安装卡位14相配合的卡扣46;
本发明中一种基于VR眼镜的PCB安装架进一步包括:
压片40上开设缺口47,主PCB21上的元件形成的凸起能够嵌入该缺口47。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
安装架本体10还具有与VR眼镜架相配合的安装卡扣,用于嵌入VR眼镜架的安装卡位14。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
该基于VR眼镜的PCB安装架还包括隔光硅胶50,该隔光硅胶50安装在主PCB安装槽11上。
本发明中一种基于VR眼镜的PCB安装架进一步包括:
PCB20通过FPC30彼此连接。
本发明还提供了一种VR眼镜,安装有上述基于VR眼镜的PCB安装架。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的装置的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。在本申请所提供的几个实施例中,应该理解到,所揭露的装置可以通过其它的方式实现。
以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims (10)

  1. 一种基于VR眼镜的PCB安装架,其特征在于,包括:
    用于收纳PCB(20)的L形的安装架本体(10),L长臂上设置主PCB安装槽(11),L短臂上设置副PCB安装槽(12);
    所述主PCB安装槽(11)呈长条状,其上设置有主PCB第一导柱(112)和与之对角设置的主PCB第二导柱(113);
    所述主PCB第一导柱(112)附近设置主PCB第一螺钉孔(111),所述主PCB第二导柱(113)附近设置主PCB第二螺钉孔(114);
    主PCB(21)上设置的主PCB第一导柱孔(212)穿过所述主PCB第一导柱(112),主PCB(21)上设置的主PCB第二导柱孔(213)穿过所述主PCB第二导柱(113);主PCB(21)上设置的主PCB第一安装孔(211)与所述主PCB第一螺钉孔(111)对齐,并通过螺钉连接;主PCB(21)上设置的主PCB第二安装孔(214)所述主PCB第二螺钉孔(114)对齐,并通过螺钉连接;
    所述副PCB安装槽(12)上设置有副PCB第一导柱(121)和与之对角设置的副PCB第二导柱(124);
    所述副PCB第一导柱(121)附近设置副PCB第一螺钉孔(122),所述副PCB第二导柱(124)附近设置副PCB第二螺钉孔(123);
    副PCB(22)上设置的副PCB第一导柱孔(222)穿过所述副PCB第一导柱(121),副PCB(22)上设置的副PCB第二导柱孔(224)穿过所述副PCB第二导柱(124);副PCB(22)上设置的副PCB第一安装孔(221)与所述副PCB第一螺钉孔(122)对齐,并通过螺钉连接;副PCB(22)上设置的副PCB第二安装孔(223)与副PCB第二螺钉孔(123)对齐,并通过螺钉连接。
  2. 根据权利要求1所述的基于VR眼镜的PCB安装架,其特征在于,
    所述L形的安装架本体10的长臂端部设置陀螺仪安装槽(13),所述陀螺仪安装槽(13)用于安装陀螺仪PCB(23);所述陀螺仪安装槽(13)垂直所述主PCB安装槽(11)和副PCB安装槽(12)设置;所述陀螺仪 PCB安装在限位框内。
  3. 根据权利要求1所述的基于VR眼镜的PCB安装架,其特征在于,
    所述基于VR眼镜的PCB安装架还包括压片(40),所述压片(40)具有压片第一导柱孔(41)和与之对角设置的压片第二导柱孔(44),所述压片第一导柱孔(41)附近设置压片第一安装孔(42),所述压片第二导柱孔(44)附近设置压片第二安装孔(43);
    所述压片(40)覆盖在所述主PCB(21)上方,所述压片第一导柱孔(41)穿过所述主PCB第一导柱(112),所述压片第一安装孔(42)穿过所述主PCB第二导柱(113);
    所述压片第一安装孔(42)与主PCB第一螺钉孔(111)对齐,并通过螺钉连接,所述压片第二安装孔(43)与所述主PCB第二螺钉孔(114)对齐,并通过螺钉连接。
  4. 根据权利要求3所述的基于VR眼镜的PCB安装架,其特征在于,
    所述压片(40)靠近所述陀螺仪安装槽(13)的一端设有卡口(45),陀螺仪PCB(23)能够嵌入所述卡口(45)内。
  5. 根据权利要求3所述的基于VR眼镜的PCB安装架,其特征在于
    所述L形的安装架本体(10)上具有压片安装卡位(14);
    所述压片上具有与所述安装卡位(14)相配合的卡扣(46);
  6. 根据权利要求3至5中任一项所述的基于VR眼镜的PCB安装架,其特征在于,
    所述压片(40)上开设缺口(47),主PCB(21)上的元件形成的凸起能够嵌入所述缺口(47)。
  7. 根据权利要求1所述的基于VR眼镜的PCB安装架,其特征在于,
    所述安装架本体(10)还具有与VR眼镜架相配合的安装卡扣,用于嵌入VR眼镜架的安装卡位。
  8. 根据权利要求1所述的基于VR眼镜的PCB安装架,其特征在于,
    所述基于VR眼镜的PCB安装架还包括隔光硅胶(50),所述隔光硅胶(50)安装在所述主PCB安装槽(11)上。
  9. 根据权利要求1所述的基于VR眼镜的PCB安装架,其特征在于,
    所述PCB(20)通过FPC(30)彼此连接。
  10. 一种VR眼镜,其特征在于,安装有如权利要求1至7的基于VR眼镜的PCB安装架。
PCT/CN2016/070659 2016-01-12 2016-01-12 一种基于vr眼镜的pcb安装架及vr眼镜 WO2017120758A1 (zh)

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