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CN2496048Y - A kind of multifunctional three-dimensional glasses - Google Patents

A kind of multifunctional three-dimensional glasses Download PDF

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Publication number
CN2496048Y
CN2496048Y CN01223836U CN01223836U CN2496048Y CN 2496048 Y CN2496048 Y CN 2496048Y CN 01223836 U CN01223836 U CN 01223836U CN 01223836 U CN01223836 U CN 01223836U CN 2496048 Y CN2496048 Y CN 2496048Y
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liquid crystal
connector
glasses
electronic liquid
frame
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林明彦
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Aipaike Science And Technology Co ltd
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Aipaike Science And Technology Co ltd
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  • Testing, Inspecting, Measuring Of Stereoscopic Televisions And Televisions (AREA)

Abstract

A multifunctional three-dimensional (3D) glasses is composed of a glasses frame, two electronic liquid crystal polarized lenses, a polarizer and a light filter, and the effects of 3D electronic liquid crystal shutter glasses and 3D electronic liquid crystal polarized glasses can be achieved simultaneously by replacing the polarizer and the light filter, so that the application range of the 3D glasses is widened.

Description

一种多功能立体眼镜A kind of multifunctional three-dimensional glasses

本实用新型涉及一种多功能立体(3D)眼镜,其是由一眼镜框架、二电子液晶偏光透镜、一偏光片及一滤光片所组成,通过不同光学组件的组合与使用,使得只需使用同一支3D眼镜,即可同时达到一般已用3D电子液晶快门眼镜与3D电子液晶偏光眼镜的双重功效。The utility model relates to a multifunctional three-dimensional (3D) glasses, which are composed of a glasses frame, two electronic liquid crystal polarizing lenses, a polarizer and a filter. Using the same 3D glasses, you can simultaneously achieve the dual effects of the commonly used 3D electronic liquid crystal shutter glasses and 3D electronic liquid crystal polarized glasses.

最近,利用3D眼镜观赏立体影像的应用已逐渐普及,一般已用的3D眼镜可分为3D电子液晶快门眼镜与3D电子液晶偏光眼镜等二种。图1为一般已用的3D电子液晶快门眼镜的外观示意图,该眼镜是由一眼镜框架1与二电子液晶快门透镜2所组成,而该电子液晶快门透镜2的光学结构则由二偏光片3。二透明导电玻璃4及一液晶分子层5所组成,通过外部电压的驱动,该二电子液晶快门透镜2对于入射的自然光,可达到遮光与透光的快门功效。另外,图2是为一般已用的3D电子液晶偏光眼镜的外观示意图,该眼镜是由一眼镜框架11与二电子液晶偏光透镜12所组成,而该电子液晶偏光透镜12的光学结构则由一偏光片13、二透明导电玻璃14及一液晶分子层15所组成,通过外部电压的驱动,该电子液晶偏光透镜12对于已极化偏光的入射光,可达到遮光与透光的快门功效。Recently, the application of using 3D glasses to watch stereoscopic images has gradually become popular. Generally, the 3D glasses used can be divided into two types: 3D electronic liquid crystal shutter glasses and 3D electronic liquid crystal polarized glasses. Figure 1 is a schematic diagram of the appearance of commonly used 3D electronic liquid crystal shutter glasses, the glasses are composed of a spectacle frame 1 and two electronic liquid crystal shutter lenses 2, and the optical structure of the electronic liquid crystal shutter lens 2 is composed of two polarizers 3 . Composed of two transparent conductive glasses 4 and a liquid crystal molecular layer 5, driven by an external voltage, the two electronic liquid crystal shutter lenses 2 can achieve the shutter effect of shading and transmitting light for incident natural light. In addition, FIG. 2 is a schematic diagram of the appearance of commonly used 3D electronic liquid crystal polarizing glasses, the glasses are composed of a spectacle frame 11 and two electronic liquid crystal polarizing lenses 12, and the optical structure of the electronic liquid crystal polarizing lens 12 consists of a Composed of a polarizer 13, two transparent conductive glasses 14 and a liquid crystal molecular layer 15, driven by an external voltage, the electronic liquid crystal polarizing lens 12 can achieve the shutter function of shading and transmitting light for polarized incident light.

本实用新型的目的在于提供一种多功能立体眼镜,其由一眼镜框架、二电子液晶偏光透镜、一偏光片及一滤光片所组成,通过不同光学组件的组合与使用,使得使用同一支3D眼镜,即可同时达到一般已有3D电子液晶快门眼镜与3D电子液晶偏光眼镜的双重功效,提高3D眼镜的应用范围。The purpose of this utility model is to provide a kind of multifunctional three-dimensional glasses, which is composed of a glasses frame, two electronic liquid crystal polarizing lenses, a polarizer and a filter, through the combination and use of different optical components, it is possible to use the same The 3D glasses can achieve the dual effects of the conventional 3D electronic liquid crystal shutter glasses and 3D electronic liquid crystal polarized glasses at the same time, and increase the application range of the 3D glasses.

为实现本实用新型的目的,我们提出一种多功能3D眼镜,其包括有:In order to realize the purpose of this utility model, we propose a kind of multifunctional 3D glasses, and it comprises:

一眼镜框架,该眼镜框架的适当处设置有一连接器,可与该偏光片或该滤光片连结;A spectacle frame, a connector is provided at an appropriate place of the spectacle frame, which can be connected with the polarizer or the filter;

二电子液晶偏光透镜,该电子液晶偏光透镜的光学结构是由一偏光片、二透明导电玻璃及一液晶分子层所组成,该电子液晶偏光透镜安装在该眼镜框架之内;Two electronic liquid crystal polarizing lenses. The optical structure of the electronic liquid crystal polarizing lens is composed of a polarizer, two transparent conductive glasses and a liquid crystal molecule layer. The electronic liquid crystal polarizing lens is installed in the spectacle frame;

一偏光片,其将入射光做一极化偏光处理后输出,该偏光片的适当处设置有连接器,用于与该眼镜框架连结;A polarizer, which outputs the incident light after a polarized polarization process, and a connector is provided at an appropriate position of the polarizer for connecting with the spectacle frame;

一滤光片,其将入射光做一亮度衰减处理后输出,该滤光片的适当处设置有连接器,用于与该眼镜框架连结。A light filter is used to output the incident light after a brightness attenuation process, and a connector is arranged at a suitable place of the light filter for connecting with the spectacle frame.

通过上述的组成,更换使用该偏光片及该滤光片,可使同一眼镜同时达到3D电子液晶快门眼镜及3D电子液晶偏光眼镜的功效,提高3D眼镜的应用范围Through the above composition, the polarizer and the filter can be replaced, so that the same glasses can achieve the effects of 3D electronic liquid crystal shutter glasses and 3D electronic liquid crystal polarized glasses at the same time, and the application range of 3D glasses can be improved.

所述的一种多功能立体眼镜,其中该眼镜框架所设置的连接器可为一杆状的连接器,而该偏光片与该滤光片所设置的连接器则为一槽状的连接器,该槽状的连接器可连结于该杆状的连接器,并以该杆状的连接器为轴心可做一旋转的动作。Said multi-functional three-dimensional glasses, wherein the connector provided on the spectacle frame can be a rod-shaped connector, and the connector provided on the polarizer and the optical filter is a slot-shaped connector , the groove-shaped connector can be connected to the rod-shaped connector, and the rod-shaped connector can be used as an axis to rotate.

本实用新型的另一种多功能立体眼镜的方案使,其包括有:The scheme of another kind of multifunctional three-dimensional glasses of the present utility model makes, and it comprises:

一眼镜框架,该眼镜框架的适当处设置有一适当大小的槽状受容装置,允许该偏光片或该滤光片的插入与抽离;A spectacle frame, a groove-shaped receiving device of a suitable size is arranged at an appropriate place of the spectacle frame, allowing insertion and removal of the polarizer or the filter;

二电子液晶偏光透镜,该电子液晶偏光透镜的光学结构是由一偏光片、二透明导电玻璃及一液晶分子层所组成,该电子液晶偏光透镜安装在该眼镜框架之内;Two electronic liquid crystal polarizing lenses. The optical structure of the electronic liquid crystal polarizing lens is composed of a polarizer, two transparent conductive glasses and a liquid crystal molecule layer. The electronic liquid crystal polarizing lens is installed in the spectacle frame;

一偏光片,其将入射光做一极化偏光处理后输出,该偏光片可插入或抽离该槽状容纳装置;A polarizer, which outputs the incident light after a polarized polarization process, and the polarizer can be inserted into or pulled out of the groove-shaped receiving device;

一滤光片,其将入射光做一亮度衰减处理后输出,该滤光片可插入或抽离该槽状容纳装置。A light filter is used to output the incident light after a brightness attenuation process, and the light filter can be inserted into or withdrawn from the groove-shaped containing device.

通过更换使用该偏光片及该滤光片,可使同一眼镜同时达到3D电子液晶快门眼镜及3D电子液晶偏光眼镜的功效,提高3D眼镜的应用范围。By replacing and using the polarizer and the filter, the same glasses can simultaneously achieve the effects of 3D electronic liquid crystal shutter glasses and 3D electronic liquid crystal polarized glasses, thereby improving the application range of the 3D glasses.

为进一步对本实用新型有更深入的说明,下面结合附图就本实用新型的较佳实施例详细说明如下:In order to further explain the utility model further, the preferred embodiments of the utility model are described in detail below in conjunction with the accompanying drawings:

图1是一般已用的3D电子液晶快门眼镜的外观示意图。FIG. 1 is a schematic diagram of the appearance of commonly used 3D electronic liquid crystal shutter glasses.

图2是一般已用的3D电子液晶偏光眼镜的外观示意图。FIG. 2 is a schematic diagram of the appearance of commonly used 3D electronic liquid crystal polarized glasses.

图3是为本实用新型实施例一的示意图。Fig. 3 is a schematic diagram of Embodiment 1 of the present utility model.

图4是为本实用新型实施例二的示意图。Fig. 4 is a schematic diagram of Embodiment 2 of the present utility model.

本实用新型提供一种多功能3D眼镜,其是由一眼镜框架、二电子液晶偏光透镜、一偏光片及一滤光片所组成,通过该二电子液晶偏光透镜,以下分二个实施例详细说明本实用新型。The utility model provides a kind of multifunctional 3D glasses, which is composed of a glasses frame, two electronic liquid crystal polarizing lenses, a polarizer and a filter, through the two electronic liquid crystal polarizing lenses, the following two embodiments are detailed The utility model is described.

实施例一:Embodiment one:

图3是本实用新型实施例一的示意图,本实施例包括有一眼镜框架21与二电子液晶偏光透镜22、一偏光片23及一滤光片24所组成,而该电子液晶偏光透镜22的光学结构则由一偏光片221、二透明导电玻璃222及一液晶分子层223所组成,该电子液晶偏光透镜22装置在该眼镜框架21之内,在该眼镜框架21适当的地方,设置有一杆状的连接器211可与该偏光片23或该滤光片24连结。该偏光片23可将入射光变做一极化偏光处理后输出,而该滤光片24则可将入射光做一亮度衰减处理后输出,该偏光片23与该滤光片24上亦各自设置有一槽状的连接器25,该槽状的连接器25可连结于眼镜框架21的杆状连揍器211,并以该杆状连接器211为轴心做一向上翻转的动作。该眼镜框架21与偏光片23连结时,可达到一般3D电子快门眼镜的功效,而与滤光片24连结时,则可达到一般3D电子液晶偏光眼镜的功效。Fig. 3 is the schematic diagram of embodiment one of the utility model, and present embodiment comprises a spectacle frame 21 and two electronic liquid crystal polarizing lenses 22, a polarizer 23 and a filter 24 and forms, and the optics of this electronic liquid crystal polarizing lens 22 The structure is then made up of a polarizer 221, two transparent conductive glasses 222 and a liquid crystal molecular layer 223, and the electronic liquid crystal polarizing lens 22 is installed in the spectacle frame 21, and a rod-shaped The connector 211 can be connected with the polarizer 23 or the filter 24 . The polarizer 23 can change the incident light into a polarized light and then output it, and the filter 24 can output the incident light after a brightness attenuation process. The polarizer 23 and the filter 24 are also respectively A groove-shaped connector 25 is provided, and the groove-shaped connector 25 can be connected to the rod-shaped connector 211 of the spectacle frame 21, and the rod-shaped connector 211 is used as the axis to perform an upward turning action. When the spectacle frame 21 is connected with the polarizer 23, it can achieve the effect of general 3D electronic shutter glasses, and when connected with the filter 24, it can achieve the effect of general 3D electronic liquid crystal polarized glasses.

实施例二Embodiment two

图4是本实用新型实施例二的示意图,本实施例是包括有一眼镜框架31与二电子液晶偏光透镜32、一偏光片33及一滤光片34所组成,而该电子液晶偏光透镜32的光学结构则由一偏光片321。二透明导电玻璃322及一液晶分子层323所组成,该电子液晶偏光透镜32是装置在该眼镜框架31之内,在该眼镜框架31适当的地方,设置有一适当大小的槽状容纳装置35,允许该偏光片33或该滤光片34插入与抽离。该偏光片33可将入射光变做一极化偏光处理后输出,而该滤光片34则可将入射光做一亮度衰减处理后输出,该偏光片33在插入槽状容纳装置35时,可使该眼镜达到一般3D电子快门眼镜的功效,而当该滤光片34在插入槽状容纳装置35时,则可使该眼镜达到一般3D电子液晶偏光眼镜的功效。Fig. 4 is the schematic diagram of the second embodiment of the utility model, and the present embodiment is composed of a spectacle frame 31 and two electronic liquid crystal polarizing lenses 32, a polarizer 33 and a filter 34, and the electronic liquid crystal polarizing lens 32 The optical structure consists of a polarizer 321 . Composed of two transparent conductive glasses 322 and a liquid crystal molecular layer 323, the electronic liquid crystal polarizing lens 32 is installed in the spectacle frame 31, and at a suitable place of the spectacle frame 31, a groove-shaped accommodation device 35 of an appropriate size is arranged, Allow the polarizer 33 or the filter 34 to be inserted and removed. The polarizer 33 can change the incident light into a polarized light and then output it, while the filter 34 can output the incident light after a brightness attenuation process. When the polarizer 33 is inserted into the groove-shaped receiving device 35, The glasses can achieve the effect of general 3D electronic shutter glasses, and when the optical filter 34 is inserted into the groove-shaped receiving device 35, the glasses can achieve the effect of general 3D electronic liquid crystal polarized glasses.

以上所述,仅为本实用新型的较佳实施例而已,当不能用来限定本实用新型所实施的范围,凡根据本实用新型权利要求所作的均等变化与修饰,皆应仍属于本实用新型权利要求的保护范围内。The above is only a preferred embodiment of the utility model, and should not be used to limit the scope of implementation of the utility model, and all equal changes and modifications made according to the claims of the utility model should still belong to the utility model within the scope of the claims.

Claims (3)

1. multifunctional stereo glasses is characterized in that it includes:
One frame, the appropriate location of this frame is provided with a connector, can link with this polaroid or this optical filter;
Two electronic liquid crystal spreadlight lenses, the optical texture of this electronic liquid crystal spreadlight lens is made up of a polaroid, two transparent conducting glass and a layer of liquid crystal molecule, and this electronic liquid crystal spreadlight lens is installed within this frame;
One polaroid, it is done a polarization polarisation with incident light and handles back output, and the appropriate location of this polaroid is provided with connector, is used for linking with this frame;
One optical filter, it is done a brightness decay with incident light and handles back output, and the appropriate location of this optical filter is provided with connector, is used for linking with this frame.
2. a kind of multifunctional stereo glasses according to claim 1, it is characterized in that, the set connector of this frame can be a shaft-like connector, the set connector of this polaroid and this optical filter then is the connector of a groove shape, the connector of this groove shape can be linked to this shaft-like connector, and with this shaft-like connector be the axle center can do one the rotation action.
3. multifunctional stereo glasses is characterized in that it includes:
One frame, the appropriate location of this frame be provided with one suitably the groove shape of size be subjected to capacitance device, the insertion that allows this polaroid or this optical filter with detach;
Two electronic liquid crystal spreadlight lenses, the optical texture of this electronic liquid crystal spreadlight lens is made up of a polaroid, two transparent conducting glass and a layer of liquid crystal molecule, and this electronic liquid crystal spreadlight lens is installed within this frame;
One polaroid, it is done a polarization polarisation with incident light and handles back output, and this polaroid can insert or detach this groove shape storing apparatus;
One optical filter, it is done a brightness decay with incident light and handles back output, and this optical filter can insert or detach this groove shape storing apparatus.
CN01223836U 2001-05-16 2001-05-16 A kind of multifunctional three-dimensional glasses Expired - Fee Related CN2496048Y (en)

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Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101444106A (en) * 2006-04-05 2009-05-27 伯斯有限公司 Forming spectral filters for anaglyph glasses
WO2009121942A1 (en) * 2008-04-02 2009-10-08 Groupe Des Ecoles Des Telecommunications / Ecole Nationale Superieure Des Telecommunications De Bretagne Eyeglass for three-dimensional viewing of digital video contents, and corresponding protective shell
CN101881905A (en) * 2010-06-13 2010-11-10 东南大学 Three-dimensional liquid crystal display device
CN102004351A (en) * 2010-09-13 2011-04-06 信利半导体有限公司 Production method of 3D liquid crystal glasses
CN102269890A (en) * 2010-06-04 2011-12-07 索尼公司 Shutter eyeglasses
CN102375246A (en) * 2010-08-09 2012-03-14 精工爱普生株式会社 Stereoscopic vision glasses and stereoscopic vision electronic apparatus
CN102402010A (en) * 2010-09-09 2012-04-04 精工爱普生株式会社 Glasses for viewing video and image display system
CN102466890A (en) * 2010-11-11 2012-05-23 宏碁股份有限公司 Stereo glasses
CN101874223B (en) * 2007-10-04 2012-07-04 日本电气株式会社 Liquid crystal shutter glasses
WO2012089114A1 (en) * 2010-12-31 2012-07-05 浙江亿思达显示科技有限公司 Lens for shutter glasses, shutter glasses, and three-dimensional imaging system
CN104360497A (en) * 2014-11-19 2015-02-18 合肥鑫晟光电科技有限公司 Wearable device as well as working method and detection system thereof
CN106371220A (en) * 2016-11-17 2017-02-01 上海翊视皓瞳信息科技有限公司 Smart glasses for stereo imaging and vision enhancement
CN107589545A (en) * 2017-09-29 2018-01-16 芜湖威灵数码科技有限公司 A kind of intelligent VR glasses
CN107632395A (en) * 2017-09-29 2018-01-26 芜湖威灵数码科技有限公司 A kind of VR eyeglasses
CN111323936A (en) * 2018-11-29 2020-06-23 成都理想境界科技有限公司 Projection display system, 3D glasses and projection method

Cited By (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101444106A (en) * 2006-04-05 2009-05-27 伯斯有限公司 Forming spectral filters for anaglyph glasses
CN101874223B (en) * 2007-10-04 2012-07-04 日本电气株式会社 Liquid crystal shutter glasses
WO2009121942A1 (en) * 2008-04-02 2009-10-08 Groupe Des Ecoles Des Telecommunications / Ecole Nationale Superieure Des Telecommunications De Bretagne Eyeglass for three-dimensional viewing of digital video contents, and corresponding protective shell
FR2929719A1 (en) * 2008-04-02 2009-10-09 Get Enst Bretagne Groupe Des E THREE-DIMENSIONAL VISUALIZATION GLASS OF DIGITAL VIDEO CONTENT, CORRESPONDING ASSEMBLY PROTECTION SHELL.
CN102269890A (en) * 2010-06-04 2011-12-07 索尼公司 Shutter eyeglasses
CN101881905A (en) * 2010-06-13 2010-11-10 东南大学 Three-dimensional liquid crystal display device
CN102375246A (en) * 2010-08-09 2012-03-14 精工爱普生株式会社 Stereoscopic vision glasses and stereoscopic vision electronic apparatus
CN102402010B (en) * 2010-09-09 2014-10-15 精工爱普生株式会社 Video image viewing glasses and image display system
CN102402010A (en) * 2010-09-09 2012-04-04 精工爱普生株式会社 Glasses for viewing video and image display system
CN102004351A (en) * 2010-09-13 2011-04-06 信利半导体有限公司 Production method of 3D liquid crystal glasses
CN102004351B (en) * 2010-09-13 2012-12-05 信利半导体有限公司 Production method of 3D liquid crystal glasses
CN102466890A (en) * 2010-11-11 2012-05-23 宏碁股份有限公司 Stereo glasses
WO2012089114A1 (en) * 2010-12-31 2012-07-05 浙江亿思达显示科技有限公司 Lens for shutter glasses, shutter glasses, and three-dimensional imaging system
CN104360497A (en) * 2014-11-19 2015-02-18 合肥鑫晟光电科技有限公司 Wearable device as well as working method and detection system thereof
US9581837B2 (en) 2014-11-19 2017-02-28 Boe Technology Group Co., Ltd. Wearable apparatus, detection system and detection method
CN106371220A (en) * 2016-11-17 2017-02-01 上海翊视皓瞳信息科技有限公司 Smart glasses for stereo imaging and vision enhancement
CN107589545A (en) * 2017-09-29 2018-01-16 芜湖威灵数码科技有限公司 A kind of intelligent VR glasses
CN107632395A (en) * 2017-09-29 2018-01-26 芜湖威灵数码科技有限公司 A kind of VR eyeglasses
CN111323936A (en) * 2018-11-29 2020-06-23 成都理想境界科技有限公司 Projection display system, 3D glasses and projection method
CN111323936B (en) * 2018-11-29 2022-03-08 成都理想境界科技有限公司 Projection display system, 3D glasses and projection method

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