CN102621699A - 3D glasses - Google Patents

3D glasses Download PDF

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Publication number
CN102621699A
CN102621699A CN2011100349964A CN201110034996A CN102621699A CN 102621699 A CN102621699 A CN 102621699A CN 2011100349964 A CN2011100349964 A CN 2011100349964A CN 201110034996 A CN201110034996 A CN 201110034996A CN 102621699 A CN102621699 A CN 102621699A
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CN
China
Prior art keywords
magnetic
pivot end
conductor
monitoring switch
slowdown monitoring
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN2011100349964A
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Chinese (zh)
Inventor
黄宇翔
林明政
陈嘉铭
蔡世康
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Coretronic Corp
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Coretronic Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Coretronic Corp filed Critical Coretronic Corp
Priority to CN2011100349964A priority Critical patent/CN102621699A/en
Publication of CN102621699A publication Critical patent/CN102621699A/en
Pending legal-status Critical Current

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Abstract

A pair of 3D glasses is disclosed. The 3D glasses comprise a glass frame, glass legs, a magnetic sensing switch and a magnetic element. The glass frame has first pin joint terminals. The glass legs have second pin joint terminals. The first pin joint terminals are pivoted on the second pin joint terminals. The glass legs pivot on the second pin joint terminals with the first pin joint terminals to unfold from the glass frame or fold relative to the glass frame. The magnetic sensing switch is configured at one of the first pin joint terminals and the second pin joint terminals and is electrically connected to the glass frame. The magnetic element is configured to another one of the first pin joint terminals and the second pin joint terminals. When the glass legs unfold relative to the glass frame, the magnetic sensing switch approaches the magnetic element, thus the magnetic force of the magnetic element is started. When the glass legs fold relative to the glass frame, the magnetic sensing switch goes far from the magnetic element and is closed.

Description

A kind of 3D glasses
[technical field]
The invention relates to a kind of 3D glasses, and particularly relevant for a kind of active 3D glasses.
[background technology]
Along with the development of display technique, and 3D (three-dimension, 3D) display has day by day general trend, and its principle of operation is to let user's left eye see different images respectively with right eye, and in brain, synthesizes stereopsis.Desire to reach this effect, in some 3D display mechanisms, the user need wear the 3D glasses, and it can be divided into active 3D glasses and passive type 3D glasses.
With active 3D glasses, it can receive the sync signal from the 3D display.When the 3D display showed left-eye images, active 3D glasses just covered the right eye eyeglass, let the user only have left eye can watch the displaying contents of 3D display.Likewise, when the 3D display showed right-eye image, active 3D glasses just covered left eyeglass lens, let the user only have right eye can watch the displaying contents of 3D display by this, so, just can let the user experience the 3D image.
Generally speaking, the 3D glasses can be provided with switch, supply the user to open the 3D glasses, make the 3D glasses carry out above-mentioned reception sync signal and cover left eyeglass lens or the function of right eye eyeglass.Yet after use finishing, the user may forget the switch of closing the 3D glasses, makes the 3D glasses continue power consumption and causes the waste of the energy.
TaiWan, China publication TW200819817 discloses a kind of electrooptics eyeglasses assembly, by the relative start of picture frame and mirror pin control circuit and electric power supply is conducted.TaiWan, China patent TWM280486 discloses a kind of eyeglass device, by the relative start of picture frame and mirror pin laser generator and power-supply unit is conducted.
[summary of the invention]
The present invention proposes a kind of 3D glasses, and its magnetic strength slowdown monitoring switch can be opened along with the opening entire of relative picture frame of mirror pin or close.
Other purposes of the present invention and advantage can further be understood from the technical characterictic that the present invention disclosed.
For reaching above-mentioned one or part or whole purposes or other purposes, one embodiment of the invention provide a kind of 3D glasses, comprise picture frame, mirror pin, magnetic strength slowdown monitoring switch and magnetic element.Picture frame has first pivot end.The mirror pin has second pivot end.First pivot end is articulated in second pivot end.The mirror pin is by first pivot end and second being pivoted relative to each other of pivot end and launch or close entire in picture frame.The magnetic strength slowdown monitoring switch be disposed at first pivot end and second pivot end one of them and be electrically connected at picture frame.Magnetic element configurations is in wherein another of first pivot end and second pivot end.When the mirror pin launched with respect to this picture frame, the magnetic strength slowdown monitoring switch was unlocked near magnetic element and by the magnetic force of magnetic element.When the mirror pin closes when entire with respect to this picture frame, the magnetic strength slowdown monitoring switch is closed away from magnetic element.
Described 3D glasses, wherein, this magnetic strength slowdown monitoring switch comprises a Hall sensor.
Described 3D glasses, wherein, this magnetic strength slowdown monitoring switch comprises:
One first magnetic conduction electric-conductor; And
One second magnetic conduction electric-conductor, contiguous this first magnetic conduction electric-conductor, wherein when this mirror pin launched with respect to this picture frame, the magnetic force of this magnetic element drove this first magnetic conduction electric-conductor and contacts and conducting with this second magnetic conduction electric-conductor, to open this magnetic strength slowdown monitoring switch.
Described 3D glasses; Wherein, This first magnetic conduction electric-conductor and this second magnetic conduction electric-conductor are metal spring leaf, and when the magneticaction of this magnetic element during in this first magnetic conduction electric-conductor and this second magnetic conduction electric-conductor, this first magnetic conduction electric-conductor produces elastic deformation with this second magnetic conduction electric-conductor and contacts.
Described 3D glasses, wherein, this magnetic element is a permanent magnet.
Described 3D glasses; Wherein, this first pivot end has a first surface, and this second pivot end has a second surface; This magnetic strength slowdown monitoring switch is disposed at inner and contiguous this first surface of this first pivot end; This magnetic element configurations is inner and this second surface of vicinity in this second pivot end, when this mirror pin launches with respect to this picture frame, and this this second surface of first surface breasting.
Described 3D glasses; Wherein, this first pivot end has a first surface, and this second pivot end has a second surface; This magnetic element configurations is in inner and contiguous this first surface of this first pivot end; This magnetic strength slowdown monitoring switch is disposed at inner and contiguous this second surface of this second pivot end, when this mirror pin launches with respect to this picture frame, and this this second surface of first surface breasting.
Based on above-mentioned; In the above embodiment of the present invention; The magnetic strength slowdown monitoring switch can be along with the expansion of the relative picture frame of mirror pin near magnetic element; The magnetic strength slowdown monitoring switch is unlocked by the magnetic force of magnetic element, and the magnetic strength slowdown monitoring switch can away from magnetic element, be closed the magnetic strength slowdown monitoring switch along with the closing entire of relative picture frame of mirror pin.By this,, can in the lump the magnetic strength slowdown monitoring switch be closed, and can avoid the 3D glasses to continue to be in opening and the waste that causes the energy when the user finishes the use of 3D glasses and the mirror pin is closed when entire with respect to this picture frame.
[description of drawings]
Fig. 1 is the stereographic map of the 3D glasses of one embodiment of the invention.
Fig. 2 is deployed in the stereographic map of picture frame for the mirror pin of Fig. 1.
Fig. 3 is the synoptic diagram of the magnetic strength slowdown monitoring switch of Fig. 1 near magnetic element.
Fig. 4 is the synoptic diagram of the magnetic strength slowdown monitoring switch of Fig. 1 away from magnetic element.
Fig. 5 is the magnetic strength slowdown monitoring switch of another embodiment of the present invention and the synoptic diagram of magnetic element.
Fig. 6 is the synoptic diagram of the magnetic element of Fig. 5 near the magnetic strength slowdown monitoring switch.
Fig. 7 is the stereographic map of the 3D glasses of another embodiment of the present invention.
Fig. 8 is deployed in the stereographic map of picture frame for the mirror pin of Fig. 7.
100,300:3D glasses
110,310: picture frame
112,312: the first pivot ends
112a, 312a: first surface
120,320: the mirror pin
122,322: the second pivot ends
122a, 322a: second surface
130,230,330: the magnetic strength slowdown monitoring switch
132: Hall sensor
140,240,340: magnetic element
232: the first magnetic conduction electric-conductors
234: the second magnetic conduction electric-conductors
For letting the above-mentioned feature and advantage of the present invention can be more obviously understandable, hereinafter is special lifts a plurality of embodiment, and cooperates appended graphicly, elaborates as follows.
[embodiment]
About aforementioned and other technology contents, characteristics and effect of the present invention, in the following detailed description that cooperates with reference to graphic a plurality of embodiment, can clearly appear.The direction term of being mentioned in following examples, for example " on ", D score, " preceding ", " back ", " left side ", " right side " etc., only be direction with reference to annexed drawings.Therefore, the direction term of use is to be used for explanation, but not is used for limiting the present invention.
Fig. 1 is the stereographic map of the 3D glasses of one embodiment of the invention.Fig. 2 is deployed in the stereographic map of picture frame for the mirror pin of Fig. 1.Please refer to Fig. 1 and Fig. 2, the 3D glasses 100 of present embodiment comprise picture frame 110, mirror pin 120, magnetic strength slowdown monitoring switch 130 and magnetic element 140.Picture frame 110 has first pivot end 112, and mirror pin 120 has second pivot end 122, and first pivot end 112 is articulated in second pivot end 122.Mirror pin 120 closes entire (as shown in Figure 1) or mirror pin 120 launches (as shown in Figure 2) with respect to this picture frame 110 by first pivot end 112 and being pivoted relative to each other of second pivot end 122 with respect to this picture frame 110.
Magnetic strength slowdown monitoring switch 130 is disposed at first pivot end 112 and is electrically connected at picture frame 110, and magnetic element 140 is disposed at second pivot end 122.When mirror pin 120 is as shown in Figure 2 when launching with respect to this picture frame 110, magnetic strength slowdown monitoring switch 130 can be unlocked near magnetic element 140 and by the magnetic force of magnetic element 140.When mirror pin 120 is as shown in Figure 1 when launching with respect to this picture frame 110, magnetic strength slowdown monitoring switch 130 can be closed away from magnetic element 140.By this,, can in the lump magnetic strength slowdown monitoring switch 130 be closed, and can avoid 3D glasses 100 to continue to be in opening and the waste that causes the energy when the user finishes the use of 3D glasses 100 and mirror pin 120 is closed when entire with respect to this picture frame 110.
Please refer to Fig. 1, in detail, first pivot end 112 has first surface 112a, and second pivot end 122 has second surface 122a.Magnetic strength slowdown monitoring switch 130 is disposed at first pivot end, 112 inner and contiguous first surface 112a, and magnetic element 140 is disposed at second pivot end, 122 inner and contiguous second surface 122a.When mirror pin 120 is as shown in Figure 2 when launching with respect to this picture frame 110, first surface 112a can be bearing on second surface 122a, makes magnetic strength slowdown monitoring switch 130 near magnetic element 140.
Fig. 3 is the synoptic diagram of the magnetic strength slowdown monitoring switch of Fig. 1 near magnetic element.Fig. 4 is the synoptic diagram of the magnetic strength slowdown monitoring switch of Fig. 1 away from magnetic element.Please refer to Fig. 3 and Fig. 4, the magnetic strength slowdown monitoring switch 130 of present embodiment comprises Hall sensor 132, and magnetic element 140 for example is a permanent magnet.When mirror pin 120 is as shown in Figure 2 when launching with respect to this picture frame 110; The magnetic element 140 meetings Hall sensor 132 near magnetic strength slowdown monitoring switch 130 as shown in Figure 3; Make the magnetic force of magnetic element 140 order about Hall sensor 132 outputting drive voltages, to open magnetic strength slowdown monitoring switch 130.Close when entire with respect to this picture frame 110 when mirror pin 120 is as shown in Figure 1; The magnetic element 140 meetings Hall sensor 132 away from magnetic strength slowdown monitoring switch 130 as shown in Figure 4; Hall sensor 132 no longer receives the magneticaction of magnetic element 140 and stops outputting drive voltage, to close magnetic strength slowdown monitoring switch 130.The present invention does not limit the form of magnetic strength slowdown monitoring switch 130, below illustrates the magnetic strength slowdown monitoring switch of other kind by Fig. 5 and Fig. 6.
Fig. 5 is the magnetic strength slowdown monitoring switch of another embodiment of the present invention and the synoptic diagram of magnetic element.Fig. 6 is the synoptic diagram of the magnetic element of Fig. 5 near the magnetic strength slowdown monitoring switch.Please refer to Fig. 5 and Fig. 6, the magnetic element 240 of present embodiment for example is a permanent magnet, and magnetic strength slowdown monitoring switch 230 comprises the second magnetic conduction electric-conductor 234 of the first magnetic conduction electric-conductor 232 and the contiguous first magnetic conduction electric-conductor 232.When magnetic element 240 the first magnetic conduction electric-conductor 232 and the second magnetic conduction electric-conductor 234 near magnetic strength slowdown monitoring switch 230 as shown in Figure 6; The magnetic force of magnetic element 240 can drive the first magnetic conduction electric-conductor 232 and contact and conducting with the second magnetic conduction electric-conductor 234, to open magnetic strength slowdown monitoring switch 230.When magnetic element 240 the first magnetic conduction electric-conductor 232 and the second magnetic conduction electric-conductor 234 away from magnetic strength slowdown monitoring switch 230 as shown in Figure 5; The first magnetic conduction electric-conductor 232 and the second magnetic conduction electric-conductor 234 no longer receive the magneticaction of magnetic element 240, thereby no longer contact to close magnetic strength slowdown monitoring switch 230.
More detailed, the first magnetic conduction electric-conductor 232 and the second magnetic conduction electric-conductor 234 for example are all metal spring leaf.When the magneticaction of magnetic element 240 during in the first magnetic conduction electric-conductor 232 and the second magnetic conduction electric-conductor 234, the first magnetic conduction electric-conductor 232 produces elastic deformations with the second magnetic conduction electric-conductor 234 and contacts, to carry out conducting.In other embodiments, magnetic strength slowdown monitoring switch 230 more can be other suitable form, and the present invention does not limit this.
Fig. 7 is the stereographic map of the 3D glasses of another embodiment of the present invention.Fig. 8 is deployed in the stereographic map of picture frame for the mirror pin of Fig. 7.Please refer to Fig. 7 and Fig. 8, the 3D glasses 300 of present embodiment comprise picture frame 310, mirror pin 320, magnetic strength slowdown monitoring switch 330 and magnetic element 340.Picture frame 310 has first pivot end 312, and mirror pin 320 has second pivot end 322, and first pivot end 312 is articulated in second pivot end 322.Mirror pin 320 closes entire (as shown in Figure 7) or launches (as shown in Figure 8) in picture frame 310 by first pivot end 312 and being pivoted relative to each other of second pivot end 322.
In the present embodiment; Magnetic strength slowdown monitoring switch 330 is not first pivot end 112 that is disposed at picture frame 110 as the magnetic strength slowdown monitoring switch 130 of Fig. 1 and Fig. 2; But be disposed at second pivot end 322 of mirror pin 320; And magnetic element 340 is not to be disposed at second pivot end 122 of mirror pin 120 as the magnetic element 140 of Fig. 1 and Fig. 2, but is disposed at first pivot end 312 of picture frame 310.When mirror pin 320 is as shown in Figure 8 when launching with respect to this picture frame 310, magnetic strength slowdown monitoring switch 330 can be unlocked near magnetic element 340 and by the magnetic force of magnetic element 340.Close when entire with respect to this picture frame 310 when mirror pin 320 is as shown in Figure 7, magnetic strength slowdown monitoring switch 330 can be closed away from magnetic element 340.By this,, can in the lump magnetic strength slowdown monitoring switch 330 be closed, and can avoid 3D glasses 300 to continue to be in opening and the waste that causes the energy when the user finishes the use of 3D glasses 300 and mirror pin 320 closed entire during in picture frame 310.
The magnetic strength slowdown monitoring switch 330 of Fig. 7 and Fig. 8 and magnetic element 340 can be Fig. 3 and form, Fig. 5 and form or other suitable form shown in Figure 6 shown in Figure 4, and the present invention does not limit this.
Please refer to Fig. 7, in detail, first pivot end 312 has first surface 312a, and second pivot end 322 has second surface 322a.Magnetic strength slowdown monitoring switch 330 is disposed at second pivot end, 322 inner and contiguous second surface 322a, and magnetic element 340 is disposed at first pivot end, 312 inner and contiguous first surface 312a.When mirror pin 320 is as shown in Figure 8 when launching with respect to this picture frame 310, first surface 312a can be bearing on second surface 322a, makes magnetic strength slowdown monitoring switch 330 near magnetic element 340.
In sum; In the above embodiment of the present invention; The magnetic strength slowdown monitoring switch can along with the mirror pin with respect to the expansion of picture frame and near magnetic element; The magnetic strength slowdown monitoring switch is unlocked by the magnetic force of magnetic element, and the magnetic strength slowdown monitoring switch can be entire and away from magnetic element, the magnetic strength slowdown monitoring switch is closed with respect to closing of picture frame along with the mirror pin.By this,, can in the lump the magnetic strength slowdown monitoring switch be closed, thereby avoid the 3D glasses to continue to be in opening and the waste that causes the energy when the user finishes the use of 3D glasses and the mirror pin closed entire during in picture frame.
The above; Be merely preferred embodiment of the present invention; When not limiting the scope that the present invention implements with this, the simple equivalent of promptly doing according to claim of the present invention and invention description generally changes and modifies, and all still belongs in the scope that patent of the present invention contains.In addition, arbitrary embodiment of the present invention or claim must not reached whole purposes or advantage or the characteristics that the present invention discloses.Moreover the first surface of mentioning in the instructions, second surface, first pivot end and second pivot end etc. in order to the title of expression element, are not to be used for the quantitative upper limit of limiting element or lower limit only.

Claims (7)

1. 3D glasses comprise:
One picture frame has one first pivot end;
One mirror pin has one second pivot end, and wherein this first pivot end is articulated in this second pivot end, and this mirror pin is by this first pivot end and this second being pivoted relative to each other of pivot end and launch or close entire in this picture frame;
One magnetic strength slowdown monitoring switch, be disposed at this first pivot end and this second pivot end one of them and be electrically connected on this picture frame; And
One magnetic element; Be disposed at wherein another of this first pivot end and this second pivot end; Wherein when this mirror pin launches with respect to this picture frame; This magnetic strength slowdown monitoring switch is unlocked near this magnetic element and by the magnetic force of this magnetic element, and when this mirror pin closes when entire with respect to this picture frame, this magnetic strength slowdown monitoring switch is closed away from this magnetic element.
2. 3D glasses as claimed in claim 1, wherein, this magnetic strength slowdown monitoring switch comprises a Hall sensor.
3. 3D glasses as claimed in claim 1, wherein, this magnetic strength slowdown monitoring switch comprises:
One first magnetic conduction electric-conductor; And
One second magnetic conduction electric-conductor, contiguous this first magnetic conduction electric-conductor, wherein when this mirror pin launched with respect to this picture frame, the magnetic force of this magnetic element drove this first magnetic conduction electric-conductor and contacts and conducting with this second magnetic conduction electric-conductor, to open this magnetic strength slowdown monitoring switch.
4. 3D glasses as claimed in claim 3; Wherein, This first magnetic conduction electric-conductor and this second magnetic conduction electric-conductor are metal spring leaf; When the magneticaction of this magnetic element during in this first magnetic conduction electric-conductor and this second magnetic conduction electric-conductor, this first magnetic conduction electric-conductor produces elastic deformation with this second magnetic conduction electric-conductor and contacts.
5. 3D glasses as claimed in claim 1, wherein, this magnetic element is a permanent magnet.
6. 3D glasses as claimed in claim 1; Wherein, this first pivot end has a first surface, and this second pivot end has a second surface; This magnetic strength slowdown monitoring switch is disposed at inner and contiguous this first surface of this first pivot end; This magnetic element configurations is inner and this second surface of vicinity in this second pivot end, when this mirror pin launches with respect to this picture frame, and this this second surface of first surface breasting.
7. 3D glasses as claimed in claim 1; Wherein, this first pivot end has a first surface, and this second pivot end has a second surface; This magnetic element configurations is in inner and contiguous this first surface of this first pivot end; This magnetic strength slowdown monitoring switch is disposed at inner and contiguous this second surface of this second pivot end, when this mirror pin launches with respect to this picture frame, and this this second surface of first surface breasting.
CN2011100349964A 2011-01-28 2011-01-28 3D glasses Pending CN102621699A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103268019A (en) * 2013-06-06 2013-08-28 青岛海信电器股份有限公司 Novel 3D (Three-Dimensional) eyeglasses
CN105652473A (en) * 2016-04-14 2016-06-08 上海理工大学 Intelligent glasses framework
WO2022062040A1 (en) * 2020-09-23 2022-03-31 深圳市深科创投科技有限公司 Audio glasses with hall switches

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040145887A1 (en) * 2003-01-24 2004-07-29 Gem Optical Co., Ltd. Headband with magnifying lens and detachable light
US20080013039A1 (en) * 2003-10-02 2008-01-17 Ira Lerner Interchangeable eyewear assembly
CN201348682Y (en) * 2008-12-15 2009-11-18 苏州市职业大学 Stereo eyeglasses
CN201600501U (en) * 2009-08-28 2010-10-06 中国科技开发院威海分院 Wireless stereoscopic video glasses

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040145887A1 (en) * 2003-01-24 2004-07-29 Gem Optical Co., Ltd. Headband with magnifying lens and detachable light
US20080013039A1 (en) * 2003-10-02 2008-01-17 Ira Lerner Interchangeable eyewear assembly
CN201348682Y (en) * 2008-12-15 2009-11-18 苏州市职业大学 Stereo eyeglasses
CN201600501U (en) * 2009-08-28 2010-10-06 中国科技开发院威海分院 Wireless stereoscopic video glasses

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103268019A (en) * 2013-06-06 2013-08-28 青岛海信电器股份有限公司 Novel 3D (Three-Dimensional) eyeglasses
CN103268019B (en) * 2013-06-06 2015-11-25 青岛海信电器股份有限公司 A kind of 3D glasses
CN105652473A (en) * 2016-04-14 2016-06-08 上海理工大学 Intelligent glasses framework
WO2022062040A1 (en) * 2020-09-23 2022-03-31 深圳市深科创投科技有限公司 Audio glasses with hall switches

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