WO2016202248A1 - 一种可调节的显示装置 - Google Patents

一种可调节的显示装置 Download PDF

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Publication number
WO2016202248A1
WO2016202248A1 PCT/CN2016/085766 CN2016085766W WO2016202248A1 WO 2016202248 A1 WO2016202248 A1 WO 2016202248A1 CN 2016085766 W CN2016085766 W CN 2016085766W WO 2016202248 A1 WO2016202248 A1 WO 2016202248A1
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WO
WIPO (PCT)
Prior art keywords
display device
bracket
adjustable display
disposed
base
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Application number
PCT/CN2016/085766
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English (en)
French (fr)
Inventor
王浩
Original Assignee
王浩
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Publication date
Application filed by 王浩 filed Critical 王浩
Publication of WO2016202248A1 publication Critical patent/WO2016202248A1/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
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B3/00Helmets; Helmet covers ; Other protective head coverings
    • A42B3/04Parts, details or accessories of helmets
    • A42B3/0406Accessories for helmets
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B3/00Helmets; Helmet covers ; Other protective head coverings
    • A42B3/04Parts, details or accessories of helmets
    • A42B3/0406Accessories for helmets
    • A42B3/0433Detecting, signalling or lighting devices
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B3/00Helmets; Helmet covers ; Other protective head coverings
    • A42B3/04Parts, details or accessories of helmets
    • A42B3/0406Accessories for helmets
    • A42B3/0433Detecting, signalling or lighting devices
    • A42B3/0453Signalling devices, e.g. auxiliary brake or indicator lights

Definitions

  • the present invention relates to a helmet with a built-in display device.
  • the display device and the head-mounted device are assembled into a non-detachable unit, and the display device is disposed outside the head-mounted device and is not adjustable.
  • the display device tends to block the line of sight of a part of the user, and the user can be viewed for a long time. Visual fatigue.
  • the display device is disposed outside the head-mounted device, and in a complicated scene that is difficult to distinguish by fire and the like, the display device is easily touched with an external object, thereby damaging the display device.
  • the present invention proposes a helmet with a built-in display device.
  • An adjustable display device includes a display device and a bracket, and a first adjusting device is disposed between the display device and the bracket.
  • bracket is disposed inside the head mounted device, and a second adjusting device is disposed between the headset and the head mounted device.
  • bracket is a telescopic device.
  • the display device is disposed inside the head mounted device by the telescopic device.
  • the telescopic device includes a telescopic rod, and the telescopic rod is provided with a fastening component, and the head-mounted device is provided with a storage slot for accommodating the telescopic rod, and the storage slot is provided There are snap devices for the snap telescopic rods.
  • control connection line of the display device is built in through the first adjusting device and the telescopic device
  • the second adjusting device is disposed.
  • the snap component is a snap groove;
  • the snap device includes an elastic component, and a bead disposed at one end of the elastic component.
  • the bead latches the card on the telescopic bar under the action of the elastic component. Buckle.
  • the second adjusting device comprises a steering seat and a rotating shaft disposed on the steering base; the rotating shaft passes through the bracket, and the steering seat is disposed at a base of the head mounted device.
  • the steering base surrounds both sides of the bracket to wrap the rotating shaft within the range of the steering seat and the bracket.
  • a third adjusting device is further included between the steering base and the base.
  • the third adjusting device includes a rotating shaft, and the steering base and the base are adjusted by a rotating shaft.
  • the head mounted device is provided with a receiving groove for accommodating a bracket or a display device.
  • the base is disposed inside the head mounted device, and the base is provided with a receiving groove for accommodating the bracket or the display device.
  • the base is provided with a mounting groove on a side of the receiving groove, the steering seat is disposed in the mounting groove, and the rotating shaft is disposed inside the mounting groove
  • the storage slots of the bracket and the base are respectively provided with magnets, and the brackets are stabilized by the magnets during the storage of the brackets to stabilize the brackets in the storage slots.
  • first adjusting device or the second adjusting device is a cardan shaft structure.
  • the ball shaft of the cardan shaft structure is provided with a steering limit structure.
  • the steering limit structure includes a limiting groove disposed on the surface of the ball shaft, and a screw corresponding to the limiting groove on the inner side of the ball bushing.
  • control connection line of the display device is internally connected through the first adjustment device and connected to the control device in the storage slot.
  • the display device is a micro-projection display device.
  • a human-machine interaction device such as a button for controlling the display device, is disposed at the bracket or the display device.
  • the invention has the beneficial effects that the first adjusting device and the second adjusting device are disposed between the display device and the bracket, and the operator of the wearing device is particularly suitable for autonomous adjustment according to the respective viewing angles, thereby preventing the display device from obstructing the line of sight or long-term viewing. Causes visual fatigue.
  • the display device is installed in the inner side of the wearable device, and the bracket is telescopically designed.
  • a storage slot is designed in the wearable device, and the connecting lines of the display device are all disposed in the adjusting device and the bracket, and when used in a complicated scene,
  • the display device of the compact wearable device can be protected by an external wearable device such as a helmet, thereby expanding the use range of the wearable device, protecting the display device, and the built-in connecting cable also avoids the connection of the display device to the external environment. Line interference.
  • FIG. 1 is an exploded view of an embodiment of a helmet structure of a built-in display device
  • FIG. 2 is an assembled view of the helmet structure of the built-in display device of FIG. 1;
  • Figure 3 is a state diagram of the helmet structure of the built-in display device of Figure 1;
  • FIG. 4 is an exploded view of the second embodiment of the helmet structure of the built-in display device
  • Figure 5 is a flow chart showing the use of the helmet structure of the built-in display device
  • FIG. 6 is a cross-sectional view showing a first adjusting device and a second adjusting device of the third embodiment of the helmet structure of the built-in display device with the thermal image capturing device;
  • Figure 7 is a front elevational view of Figure 6;
  • Figure 8 is a side view of Figure 6;
  • Figure 9 is a diagram showing the realization of a word axis crossing inside the connecting line of the device.
  • Figure 10 is a cross-sectional view of a cardan shaft structure with a finite area
  • Figure 11 is a view showing the actual use state of the product of the present invention.
  • Figure 12 is a diagram showing the actual use state of the product of the present invention.
  • the external wearable device is described by taking a helmet as an example.
  • the wearable device contains many varieties of products, and is not limited to the helmet.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • an adjustable display device includes a micro-projection display device 1 and a holder 11 which is disposed inside the external wearable device helmet 10 via a bracket 11.
  • the bracket 11 is a telescopic device, and a cardan shaft structure 2 is disposed between the micro-projection device 1 and the telescopic device as a first adjusting device.
  • the communication connecting line 18 of the micro-projection device 1 passes through the cardan shaft from the inside.
  • the structure 2 and the telescopic device extend into the storage slot 15 and are in communication with the control device built into the helmet.
  • the micro-projection display device 1 is completely surrounded by a protective case which is opened with a window, and the window is embedded with a single layer or double glazing.
  • the heat insulating material is filled between the protective case and the micro-projection display device 1, so that the micro-projection display device 1 can be used for a bad scene such as fire fighting.
  • the cardan shaft structure 2 includes a ball sleeve 19 and a ball shaft 20 embedded in the ball sleeve 19, and a finite groove area 23 is formed on the surface of the ball shaft 20, and the ball corresponding to the area is provided.
  • the sleeve is provided with a limiting member that cooperates with the limiting groove region 23, and the limiting member is like a screw 22, and one end of the screw 22 extends into the limiting groove region 23, thereby realizing the limitation of the movement adjustment range of the ball shaft 20.
  • the limit groove area Within the scope of 23.
  • the telescopic device includes a telescopic rod, and a bottom of the telescopic rod is provided with a locking groove 16 , and a matching groove 15 for accommodating the telescopic rod is disposed in the helmet.
  • a snap device is provided in the 15th.
  • the snap device includes a spring baffle 14 disposed on an inner wall of the receiving groove 15, a spring 13 is disposed at the spring baffle 14, and a steel ball 12 is disposed on the top of the spring 13. At the time of storage, the steel ball 12 is engaged with the snap groove 16 on the telescopic rod 11 by the action of the spring 13.
  • the telescopic rod can be spliced by a single rod or a plurality of rods as needed. In the case of preferential multi-bar splicing, the connection between the rod and the rod can be made more stable by providing a clamping or locking structure.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • an adjustable display device includes a micro-projection display device 1 and a holder 4, and the micro-projection display device 1 is disposed inside the external wearable device helmet 10 via a bracket 4.
  • a human-machine interaction device is disposed at the bracket 4 or the micro-projection display device.
  • a control button 11 is provided, and the micro-projection display device 1 and the bracket 4 are disposed between
  • the cardan shaft structure 2 serves as a first adjusting device, and a base 7 is disposed inside the wearable device helmet 10 via a fixing base 8.
  • a steering seat is disposed between the bracket 4 and the base 7, and the steering seat is provided with a shaft with damping 5.
  • the bracket 4 and the steering base form a hinge structure through the rotating shaft 5 to form a second adjusting device, thereby adjusting the micro-projection display device 1 in the X-axis direction; preferably, the rotating shaft 5 is a damped one-turn shaft.
  • the communication connecting line 18 of the micro-projection display device 1 passes through the cardan shaft structure 2, the bracket 4, and the steering seat into the base 7 from the inside, communicates with the control device built in the helmet 10, or directly forms an electric inside the helmet 10. interface.
  • the portion of the micro-projection display device 1 other than the Mirror is surrounded by the protective case 24, and the user can observe the image.
  • Transparent mirrors also reduce occlusion of the eyes;
  • the outside of the micro-projection display device 1 is surrounded by a protective cover 24, and the protective cover 24 encloses the mirror and opens on the side of the micro-projection device 1 at the viewing angle of the mirror, thereby preventing external light from colliding with the mirror
  • the image inside causes interference and protects the mirror.
  • the steering base has an L shape as a whole, and includes left and right steering seat covers (6, 9).
  • One end of the bracket 4 connected to the steering base is provided with a cavity 26 for accommodating the rotating shaft 5, and the rotating shaft 5 passes through the cavity 26 of the bracket 4.
  • the left and right steering seat covers (6, 9) are provided, and the cavity 26 of the bracket 4 and the left and right steering seat covers (6, 9) surround the rotating shaft 5.
  • the steering seat is disposed on the opposite side of the rotating shaft 5, and is provided with a damped rotating shaft structure 21, and the Y-axis direction is adjusted between the steering base and the base 7 through the rotating shaft structure 21; preferably, the rotating shaft 21 adopts a damped one-axis rotating shaft structure.
  • the base 7 is provided with a receiving groove 25 for accommodating a bracket or a display device, and a securing mechanism 3 is disposed in the inside of the receiving groove 25 or inside the bracket, and the bracket is stabilized in the receiving groove 25 by the securing mechanism 3 during storage;
  • the mechanism 3, for example, the magnet 3, is held in the housing groove 25 by suction of the magnet 3 during storage.
  • a mounting groove 27 is provided on the side of the housing groove, and the steering seat is disposed in the mounting groove 27, and the damper type rotating shaft structure 21 is disposed inside the mounting groove 27.
  • the cardan shaft structure 2 includes a ball bushing 19 and a ball shaft 20 embedded in the ball bushing 19.
  • the cardan shaft structure 2 can be limited.
  • the bit area for example, defines a finite groove area 23 on the surface of the ball shaft 20, and a screw 22 is disposed at a corresponding ball sleeve of the area, and one end of the screw 22 extends into the limit groove area 23, thereby realizing the ball 20
  • the range of motion adjustment of the shaft is limited to the extent of the limit recess area 23.
  • the display device When in use, the display device is in front of the operator's eye, due to the use of a micro-projection display device, the overall comparison It is lightweight and does not easily obstruct the operator's line of sight. When not in use, the display device can be telescoped or folded up to protect the display device. Moreover, due to the multi-directional adjustable structure, the display device has a certain angle of view adjustment range, which can be adjusted to the front of the eye, or the human eye can rotate the eye to observe the image on the side, upper and lower parts of the eye. Reduce occlusion of the eyes.
  • the inside of the headset including all areas covered by the inside of the headset, is not limited to the inside of the headset, and may be disposed, for example, on the inside of the helmet cap.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • an adjustable display device includes a thermal image capturing device 17, a micro-projection display device 1 and a bracket 4, and in order to facilitate the operator to control the micro-projection display device 1, the bracket 4 or micro
  • a human-machine interaction device such as a control button 11, is disposed at the display device, and a cardan shaft structure 2 is disposed between the micro-projection device 1 and the bracket 4 as a first adjustment device, and a base is disposed inside the external wearable device helmet 10. 7.
  • a steering seat is disposed between the bracket 4 and the base 7, and the steering seat is provided with a cardan shaft structure 2 as a second adjusting device.
  • the steering seat is disposed on the opposite side of the cardan shaft structure, and the damper type rotating shaft structure 21 is disposed, and the Y-axis direction is adjusted between the steering base and the base 7 through the rotating shaft structure.
  • the shaft structure 21 adopts a one-axis structure.
  • the base 28 is provided with a storage groove for accommodating a bracket or a display device, and a magnet is disposed in the storage groove or inside the bracket, and the bracket is stabilized in the housing groove by magnet attraction during storage.
  • a mounting groove is disposed on one side of the receiving groove, the steering seat is disposed in the mounting groove, and the damper type rotating shaft structure is disposed inside the mounting groove.
  • the communication connecting line 18 of the micro-projection display device 1 passes through the cardan shaft structure 2, the bracket 4, and the steering seat into the base 7 from the inside, and is communicably connected with the built-in control device of the helmet.
  • the connecting line 18 bypasses the center of the ball shaft 20 of the cardan shaft structure, thereby avoiding interference of the shaft structure 21 with the connecting line.
  • the cardan shaft structure 2 includes a ball bushing 19 and a ball shaft 20 embedded in the ball bushing, and a finite groove is formed on the surface of the ball shaft, and is disposed at a corresponding ball bushing of the area.
  • the operator wears a state diagram of the product of the present invention, and the display device is disposed inside the helmet to protect the fragile electronic product such as the micro-projection display device by the helmet.
  • the micro-projection display device is in front of the operator's eye. Due to the micro-projection display device, the overall light weight is not easy to block the operator's line of sight.
  • the micro-projection display device can also be telescoped or folded. The micro-projection display device is protected.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Helmets And Other Head Coverings (AREA)

Abstract

一种可调节的显示装置,包括微投显示装置(1)和支架(4),显示装置(1)和支架(4)之间设置有第一调节装置,通过在显示装置(1)与支架(4)之间设置第一调节装置及第二调节装置,特别适用穿戴设备的操作者根据各自的视角进行自主调节,防止显示装置遮挡视线或长期观看从而导致视觉疲劳。

Description

一种可调节的显示装置 技术领域
本发明涉及一种内置显示装置的头盔。
背景技术
现有技术中显示装置与头戴式装备组装成不可拆卸的整体,显示装置设置在头戴式装备外侧且不可调整,显示装置往往会遮挡部分使用者的视线,且长期观看从而导致使用者的视觉疲劳。而且,显示装置设置在头戴式装备外侧,在消防等肉眼不易分辨的复杂场景下,显示装置容易与外界物体进行触碰,从而损坏显示装置。
发明内容
针对上述技术缺陷,本发明提出一种内置显示装置的头盔。
为了解决上述技术问题,本发明的技术方案如下:
一种可调节的显示装置,包括显示装置和支架,所述显示装置与支架之间设置有第一调节装置。
进一步的,所述支架设置于头戴式设备内侧,且与头戴式设备之间设置第二调节装置。
进一步的,所述支架为伸缩装置。
进一步的,所述显示装置通过伸缩装置设置于头戴式设备内侧。
进一步的,所述伸缩装置包括伸缩杆,所述伸缩杆处设置有卡扣部件,与之配合的,所述头戴式设备内设置有可收纳伸缩杆的收纳槽,所述收纳槽内设置有用于卡扣伸缩杆的卡扣装置。
进一步的,所述显示装置的控制连接线内置的穿过第一调节装置、伸缩装 置及第二调节装置。
进一步的,所述卡扣部件为卡扣槽;所述卡扣装置包括弹性部件,设置在弹性部件一端的珠子,收纳时,所述珠子在弹性部件的作用下卡扣住伸缩杆上的卡扣槽。
进一步的,所述第二调节装置包括转向座和和设置于转向座的转轴;所述转轴穿过所述支架,转向座设置在头戴式设备的底座处。
进一步的,转向座将支架的两侧进行包围,从而将转轴包裹在转向座及支架的范围内。
进一步的,转向座与底座之间还包括第三调节装置。
进一步的,所述第三调节装置包括转轴,转向座与底座之间通过转轴进行调节。
进一步的,所述头戴式设备内设置有可收纳支架或显示装置的收纳槽。
进一步的,所述底座设置在头戴式设备内侧,所述底座设置有可收纳支架或显示装置的收纳槽。
进一步的,所述底座在收纳槽一侧设置有安装槽,所述转向座设置在安装槽内,所述转轴设置在安装槽内侧
进一步的,所述支架和底座的收纳槽均设有磁铁,支架收纳时通过磁铁相吸将支架稳固在收纳槽内。
进一步的,所述第一调节装置或第二调节装置为万向轴结构。
进一步的,所述万向轴结构的球轴设置有转向限位结构。
进一步的,所述转向限位结构包括设置在球轴表面的限位凹槽,及球轴套内侧与限位凹槽对应的螺钉。
进一步的,所述显示装置的控制连接线内置穿过第一调节装置、后与收纳槽内的控制装置连接。
进一步的,所述显示装置为微投显示装置。
进一步的,所述支架或显示装置处设置有人机交互装置,如控制显示装置的按键。
本发明的有益效果在于,通过将显示装置与支架之间设置第一调节装置及第二调节装置,特别适用穿戴设备的操作者根据各自的视角进行自主调节,防止显示装置遮挡视线或长期观看从而导致视觉疲劳。显示装置安装在穿戴设备内侧中,对支架进行伸缩设计,与之配合的,在穿戴设备内设计有收纳槽,将显示装置的连接线均设置在调节装置以及支架内部,在复杂场景使用时,这种紧凑型穿戴设备的显示装置可以由头盔等外置穿戴设备进行保护,从而扩大了穿戴设备的使用范围,保护了显示装置,同时内置的连接线的也避免了外界环境的对显示装置连接线的干扰。
附图说明
图1为内置显示装置头盔结构实施例一爆炸图;
图2为图1内置显示装置头盔结构的组装图;
图3为图1内置显示装置头盔结构收纳时的状态图;
图4为内置显示装置头盔结构实施例二的爆炸图;
图5为内置显示装置头盔结构使用流程图;
图6为带有热像拍摄装置的内置显示装置头盔结构实施例三第一调节装置、第二调节装置的剖面图;
图7为图6的正视图;
图8为图6的侧面图;
图9为显示装置连接线内部一字轴过线实现图;
图10为带有限位区域的万向轴结构剖面图;
图11为本发明产品的实际使用状态图;
图12为本发明产品的实际使用状态图。
具体实施方式
下面将结合附图和具体实施例对本发明做进一步的说明。
下面实施例中,外接穿戴设备均以头盔为例进行说明,但是,本领域普通技术人员应当得知,穿戴设备包含很多品种的产品,并不仅仅限定于头盔。
实施例一:
如图1~图3和图9所示,一种可调节的显示装置,包括微投显示装置1和支架11,微投显示装置1通过支架11设置在外接穿戴设备头盔10内部。所述支架11采用伸缩装置,所述微投显示装置1与伸缩装置之间设置有万向轴结构2作为第一调节装置,微投显示装置1的通讯连接线18从内侧穿过万向轴结构2及伸缩装置,伸入收纳槽15内,与头盔内置的控制装置进行通讯连接。
微投显示装置1被保护壳全包围,所述保护壳开有视窗,所述视窗嵌入有单层或者双层玻璃。保护壳与微投显示装置1之间填充有隔热材料,使得微投显示装置1可用于消防等恶劣的场景。
如图10所示,万向轴结构2包括球轴套19和嵌入在球轴套19内的球轴20,在球轴20表面开设有限位凹槽区域23,同时在该区域所对应的球轴套处设置有与限位凹槽区域23配合的限位部件,所述限位部件如螺钉22,螺钉22一端伸入限位凹槽区域23内,从而实现球轴20的活动调节范围限定在限位凹槽区域 23范围之内。
如图1所示,所述伸缩装置包括伸缩杆,所述伸缩杆底部设置有卡扣槽16,与之配合的,所述头盔内设置有可收纳伸缩杆的收纳槽15,所述收纳槽15内设置有卡扣装置。所述卡扣装置包括设置在收纳槽15内壁的弹簧挡板14,弹簧挡板14处设置有弹簧13,在弹簧13顶部设置钢珠12。收纳时,所述钢珠12在弹簧13的作用下卡扣住伸缩杆11上的卡扣槽16。所述伸缩杆根据需要可采用单杆或者多杆拼接而成,优先的,多杆拼接时,杆与杆的连接处可以通过设有卡紧或锁紧结构使得伸缩杆更加稳定。
实施例二:
如图4、图5、图9和图10所示,一种可调节的显示装置,包括微投显示装置1和支架4,微投显示装置1通过支架4设置在外接穿戴设备头盔10内部。
为了方便操作者控制微投显示装置1,在该支架4或微投显示装置处设置人机交互装置,本例中设置了控制按键11,所述微投显示装置1与支架4之间设置有万向轴结构2作为第一调节装置,在穿戴设备头盔10内部通过固定座8设置有底座7,所述支架4与底座7之间设置有转向座,所述转向座设置有带阻尼的转轴5,所述支架4与转向座通过转轴5组成了铰接结构形成第二调节装置,从而在X轴方向对微投显示装置1进行调节;优选的,转轴5采用阻尼式一字转轴。
微投显示装置1的通讯连接线18从内侧穿过万向轴结构2、支架4、转向座伸入底座7内,与头盔10内置的控制装置进行通讯连接,或直接在头盔10内侧形成电气接口。
微投显示装置1的凌镜之外的部分包围有保护壳24,用户即可以观察图像, 透明的凌镜,也可减少对眼睛的遮挡;
在另一个实施方式中,微投显示装置1外侧包围有保护壳24,所述保护壳24包裹凌镜并在微投显示装置1在凌镜针对视角一侧开口,从而防止外界光线对凌镜内的图像造成干扰,并可对凌镜起到保护作用。
所述转向座整体呈L形状,包括左右转向座套(6,9),所述支架4与转向座连接的一端设置有一容纳转轴5的空腔26,转轴5穿过支架4的空腔26且设在左右转向座套(6,9)处,支架4的空腔26、左右转向座套(6,9)将转轴5进行包围状。
优先的,所述转向座在转轴5相对侧,设置有阻尼式转轴结构21,转向座与底座7之间通过该转轴结构21进行Y轴方向调节;优选的,转轴21采用阻尼式一字转轴结构。
所述底座7设置有可收纳支架或显示装置的收纳槽25,在该收纳槽25内或支架内部设置有稳固机构3,收纳时通过稳固机构3将支架稳固在收纳槽25内;所述稳固机构3例如磁铁3,收纳时通过磁铁3相吸将支架稳固在收纳槽25内。在该收纳槽一侧设置有安装槽27,所述转向座设置在安装槽27内,所述阻尼式转轴结构21设置在安装槽27内侧。
如图10所示,万向轴结构2包括球轴套19和嵌入在球轴套19内的球轴20,为了快速的调整微投显示装置1的角度,可在万向轴结构2设置有限位区域,例如在球轴20表面开设有限位凹槽区域23,同时在该区域所对应的球轴套处设置有螺钉22,螺钉22一端伸入限位凹槽区域23内,从而实现球20轴的活动调节范围限定在限位凹槽区域23范围之内。
使用时,显示装置处于操作者视眼之前,由于采用微投显示装置,整体较 为轻巧,且不容易遮挡操作者的视线,不用时,同样可以将显示装置伸缩或者折叠收起,保护了显示装置。并且,由于采用了多向可调节的结构,所述显示装置具有一定的视角调节范围,可调节至眼睛的正面,或人眼可转动眼睛观察图像的位于眼睛侧面、上部、下部的位置,可减少对眼睛的遮挡。
本例中,头戴设备内侧,包括头戴设备内侧所涵盖的所有区域,并不限定于头戴设备内部,例如也可设置在头盔帽檐内侧。
实施例三:
如图6~图10所示,一种可调节的显示装置,包括热像拍摄装置17、微投显示装置1和支架4,为了方便操作者控制微投显示装置1,在该支架4或微投显示装置处设置人机交互装置,如控制按键11,所述微投显示装置1与支架4之间设置有万向轴结构2作为第一调节装置,在外接穿戴设备头盔10内部设置有底座7,所述支架4与底座7之间设置有转向座,所述转向座设置有万向轴结构2作为第二调节装置。
优先的,所述转向座在万向轴结构相对侧,设置有阻尼式转轴结构21,转向座与底座7之间通过该转轴结构进行Y轴方向调节。优选的,转轴结构21采用一字轴结构。
所述底座28设置有可收纳支架或显示装置的收纳槽,在该收纳槽内或支架内部设置有磁铁,收纳时通过磁铁相吸将支架稳固在收纳槽内。在该收纳槽一侧设置有安装槽,所述转向座设置在安装槽内,所述阻尼式转轴结构设置在安装槽内侧。
如图9所示,微投显示装置1的通讯连接线18从内侧穿过万向轴结构2、支架4、转向座伸入底座7内,与头盔内置的控制装置进行通讯连接,在转向座 处,连接线18通过绕过万向轴结构的球轴20圆心,避免了转轴结构21对连接线的干扰。
如图10所示,万向轴结构2包括球轴套19和嵌入在球轴套内的球轴20,在球轴表面开设有限位凹槽,同时在该区域所对应的球轴套处设置有螺钉22,螺钉22一端伸入限位凹槽区域23内,从而实现球轴的活动调节范围限定在限位凹槽区域范围23之内。
如图11~图12所示,操作者头戴本发明的产品的状态图,显示装置设置在头盔内侧,通过头盔保护了微投显示装置这类脆弱的电子产品。使用时,微投显示装置处于操作者视眼之前,由于采用微投显示装置,整体较为轻巧,且不容易遮挡操作者的视线,不用时,同样可以将微投显示装置伸缩或者折叠收起,保护了微投显示装置。
以上所述仅是本发明的优选实施方式,应当指出,本实施例采用的名称,例如支架、转向座、伸缩装置等仅仅是为了方便描述本发明,而不是对本发明的限制,本技术领域的普通技术人员应当明白,这些部件存在相同功能但名称存在不一致的情况,在不脱离本发明构思的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明保护范围内。

Claims (22)

  1. 一种可调节的显示装置,其特征在于,包括显示装置和支架,所述显示装置与支架之间设置有第一调节装置。
  2. 根据权利要求1所述的一种可调节的显示装置,其特征在于,所述支架设置于头戴式设备内侧,且与头戴式设备之间设置第二调节装置。
  3. 根据权利要求2所述的一种可调节的显示装置,其特征在于,所述支架为伸缩装置。
  4. 根据权利要求3所述的一种可调节的显示装置,其特征在于,所述显示装置通过伸缩装置设置于头戴式设备内侧。
  5. 根据权利要求3所述的一种可调节的显示装置,其特征在于,所述伸缩装置包括伸缩杆,所述伸缩杆处设置有卡扣部件,与之配合的,所述头戴式设备内设置有可收纳伸缩杆的收纳槽,所述收纳槽内设置有用于卡扣伸缩杆的卡扣装置。
  6. 根据权利要求5所述的一种可调节的显示装置,其特征在于,所述显示装置的控制连接线内置的穿过第一调节装置、伸缩装置及第二调节装置。
  7. 根据权利要求5所述的一种可调节的显示装置,其特征在于,所述卡扣部件为卡扣槽;所述卡扣装置包括弹性部件,设置在弹性部件一端的珠子,收纳时,所述珠子在弹性部件的作用下卡扣住伸缩杆上的卡扣槽。
  8. 根据权利要求2所述的一种可调节的显示装置,其特征在于,所述第二调节装置包括转向座和设置于转向座的转轴;所述转轴穿过所述支架,转向座设置在头戴式设备的底座处。
  9. 根据权利要求8所述的一种可调节的显示装置,其特征在于,转向座将支架的两侧进行包围,从而将转轴包裹在转向座及支架的范围内。
  10. 根据权利要求8所述的一种可调节的显示装置,其特征在于,转向座与底座之间还包括第三调节装置。
  11. 根据权利要求10所述的一种可调节的显示装置,其特征在于,所述第三调节装置包括转轴,转向座与底座之间通过转轴进行调节。
  12. 根据权利要求2所述的一种可调节的显示装置,其特征在于,所述头戴式设备内设置有可收纳支架或显示装置的收纳槽。
  13. 根据权利要求8所述的一种可调节的显示装置,其特征在于,所述底座设置在头戴式设备内侧,所述底座设置有可收纳支架或显示装置的收纳槽。
  14. 根据权利要求13所述的一种可调节的显示装置,其特征在于,所述底座在收纳槽一侧设置有安装槽,所述转向座设置在安装槽内,所述转轴设置在安装槽内侧。
  15. 根据权利要求8所述的一种可调节的显示装置,其特征在于,所述支架或底座的收纳槽设有磁铁,支架收纳时通过磁铁相吸将支架稳固在收纳槽内。
  16. 根据权利要求2~13任意一项所述的一种可调节的显示装置,其特征在于,所述第一调节装置或第二调节装置为万向轴结构。
  17. 根据权利要求14所述的一种可调节的显示装置,其特征在于,所述万向轴结构的球轴设置有转向限位结构。
  18. 根据权利要求17所述的一种可调节的显示装置,其特征在于,所述转向限位结构包括设置在球轴表面的限位凹槽,及球轴套内侧与限位凹槽对应的螺钉。
  19. 根据权利要求2~14任意一项所述的一种可调节的显示装置,其特征在于,所述显示装置的控制连接线内置穿过第一调节装置、后与收纳槽内的控制装置连接。
  20. 根据权利要求1~14任意一项所述的一种可调节的显示装置,其特征在于,所述显示装置为微投显示装置。
  21. 根据权利要求1~14任意一项所述的一种可调节的显示装置,其特征在于,所述支架或显示装置处设置有人机交互装置。
  22. 根据权利要求8,11,14任意一项所述的一种可调节的显示装置,其特征在于,所述转轴带有阻尼。
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