CN103278930A - 3D glasses - Google Patents
3D glasses Download PDFInfo
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- CN103278930A CN103278930A CN2013102210565A CN201310221056A CN103278930A CN 103278930 A CN103278930 A CN 103278930A CN 2013102210565 A CN2013102210565 A CN 2013102210565A CN 201310221056 A CN201310221056 A CN 201310221056A CN 103278930 A CN103278930 A CN 103278930A
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Abstract
The invention discloses a pair of 3D glasses which comprises a glasses frame, a battery, glasses lenses, a power source detecting circuit, a main control MCU and a communication circuit, wherein the power source detecting circuit is electrically connected with a power source and is electrically connected to the main control MCU, the power source detecting circuit is used for detecting the electric quantity of the power source and transmitting the electric quantity to the main control MCU. The main control MCU is electrically connected with a glasses lens driving circuit which is electrically connected to the glasses lenses, and a touch switch, an electric quantity displaying unit and a clock displaying unit are placed on the glasses lenses. The communication circuit is communicated with the main control MCU and is wirelessly communicated with a 3D displaying device, and the communication circuit is used by the 3D glasses for receiving a synchronous signal of the 3D displaying device, sending the synchronous signal to the main control MCU and emitting a communication signal to the 3D displaying device. The pair of 3D glasses is light in weight and has the functions of displaying the electric quantity and timing.
Description
Technical field
The present invention relates to 3D and watch technical field of tools, specifically, relate to a kind of 3D glasses.
Background technology
The 3D display device makes the image on the screen more true to nature owing to can make the people produce stereoscopic visual effect, more and more is subjected to people's favor in recent years.At present, for the 3D display device, people still need to wear the 3D glasses, just can watch the 3D image.
And present 3D glasses, switch of its control 3D glasses switching on and shutting down is generally the common key-press switch, and the common key-press switch is arranged on the frame position of 3D glasses mostly, makes 3D glasses weight bigger, and relatively heavier, it is uncomfortable to cause the user to wear.In addition, present 3D glasses do not have electric quantity display function and clock to show, can't understand the dump energy of 3D glasses easily when the user is worn, and can't use the timing watching of 3D glasses.Because using the 3D glasses to watch in the process of 3D display device, constantly switch eyeglass and reach the stereos copic viewing effect, the situation of eye fatigue can appear in the switching of eyeglass when making the user use the 3D glasses to watch the 3D display device time oversize.But present 3D glasses do not have the regularly function of prompting.
Summary of the invention
Technical matters to be solved by this invention is: provide a kind of in light weight and have that electric weight shows and the 3D glasses of timing function.
For solving the problems of the technologies described above, technical scheme of the present invention is:
A kind of 3D glasses comprise frame, battery and eyeglass, also comprise:
Power sense circuit, described power sense circuit is electrically connected with described power supply, and is electrically connected to the main control MCU of the following stated, and described power sense circuit is for detection of the electric weight of described power supply and send it to described main control MCU;
Main control MCU, described main control MCU is electrically connected with the eyeglass driving circuit, and described eyeglass driving circuit is electrically connected with described eyeglass, and described eyeglass is provided with soft-touch control, electric weight display unit and clock display unit;
Telecommunication circuit, described telecommunication circuit and described main control MCU communicate to connect, and be connected with 3D display device radio communication, described telecommunication circuit is used for the 3D glasses and receives the synchronizing signal of 3D display device and send it to described main control MCU, and to 3D display device emission signal of communication.
Preferably, described soft-touch control is capacitor type touch switch.
Preferably, described main control MCU also is electrically connected with the PIR identification circuit.
Preferably, described PIR identification circuit comprises PIR infrared assembly, operational amplification circuit and filtering circuit.
Preferably, described telecommunication circuit is bluetooth communication circuit.
Preferably, described power supply is button cell; Perhaps described power supply is rechargeable battery, and described rechargeable battery is electrically connected with the USB charging inlet.
After having adopted technique scheme, the invention has the beneficial effects as follows:
1. because the 3D glasses of this invention comprise power sense circuit, main control MCU, telecommunication circuit, and main control MCU is electrically connected with the eyeglass driving circuit, and the eyeglass driving circuit is electrically connected to eyeglass, eyeglass is provided with soft-touch control, electric weight display unit and clock display unit.3D glasses of the present invention will be controlled 3D glasses switching on and shutting down and be realized that the common key-press switch of other function replaces with soft-touch control, and it is arranged on the eyeglass, make the weight saving of 3D glasses, and structure is light and handy, and it is more comfortable that the user is worn.Prevented that original use is arranged on the problem that keyswitch on the frame causes 3D glasses heaviness.In addition, power sense circuit can detect the dump energy of 3D glasses easily, and dump energy is shown at eyeglass, is convenient to the user and observes use.And the clock display unit can read clock, and when the 3D glasses of wearing this invention as the user are watched the 3D display device, set by soft-touch control, can use its time clock feature to carry out timing watching, prevent that the situation of eye fatigue from can appear in the user when using the 3D glasses to watch the 3D display device time oversize.
2. because main control MCU also is electrically connected with the PIR identification circuit.People can utilize the PIR technology to carry out the replacing of 3D display device channel by the identification gesture motion easily, make the user save the time that the 3D display device need match and repeat to press button when switching the 3D display device, make the user easy to operate.
Description of drawings
The invention will be further described below in conjunction with drawings and Examples:
Fig. 1 is the structural representation of 3D glasses of the present invention;
Among the figure: 1, power supply; 2, power sense circuit; 3, main control MCU; 4, PIR identification circuit; 5, bluetooth communication circuit; 6, eyeglass driving circuit; 7, eyeglass; 71, left eyeglass; 72, right eyeglass; 73, soft-touch control; 74, electric weight display unit; 75, clock display unit.
Embodiment
Fig. 1 is the structural representation of 3D glasses of the present invention, and with reference to Fig. 1,3D glasses of the present invention comprise frame, power supply 1 and eyeglass 7, also comprise power sense circuit 2, main control MCU 3 and telecommunication circuit.Eyeglass 7 comprises left eyeglass 71 and right eyeglass 72.Power supply 1 is button cell; Perhaps power supply 1 is rechargeable battery, and when power supply 1 was rechargeable battery, rechargeable battery was electrically connected with the USB charging inlet.
Main control MCU 3 is electrically connected with eyeglass driving circuit 6, and eyeglass driving circuit 6 is electrically connected with left eyeglass 71 and right eyeglass 72 respectively, and left eyeglass 71 or right eyeglass 72 also are provided with soft-touch control 73, electric weight display unit 74 and clock display unit 75.Soft-touch control 73 is capacitor type touch switch, under touch situation artificially, the electric capacity of soft-touch control 73 begins charging, charge voltage range is 5V to 10V, and soft-touch control 73 is under situation about not touching artificially, and its color is identical with the color of eyeglass 7, make eyeglass 7 better appearance, along with the increase of charging voltage, the color of soft-touch control 73 is more and more darker, more and more shows clear.Eyeglass driving circuit 6 is used for receiving the driving signal that main control MCU 3 is sent, the line level of going forward side by side conversion, and generation can drive the signal of left eyeglass 71 and right eyeglass 72.
Telecommunication circuit and main control MCU 3 communicate to connect, and are connected with 3D display device radio communication, and in the present embodiment, telecommunication circuit is bluetooth communication circuit 5.Bluetooth communication circuit 5 is used for the 3D glasses and receives the bluetooth synchronizing signal of 3D display device and send it to main control MCU 3, and to 3D display device emission signal of communication.Main control MCU 3 is core devices of total system, for the treatment of receiving the electric quantity of power supply signal that sends from power sense circuit 2, and the bluetooth synchronizing signal that sends from bluetooth communication circuit 5, and to eyeglass driving circuit 6 output eyeglasses driving signals, and outwards export clock control signal.
3D glasses of the present invention will be controlled 3D glasses switching on and shutting down and be realized that the common key-press switch of other function replaces with soft-touch control 73, and it is arranged on the eyeglass 7, make the weight saving of 3D glasses, and structure is light and handy, and it is more comfortable that the user is worn.Prevented that original use is arranged on the problem that keyswitch on the frame causes 3D glasses heaviness.In addition, power sense circuit can detect the dump energy of 3D glasses easily, and dump energy is shown at eyeglass, is convenient to the user and observes use.And the clock display unit can read clock, and when the 3D glasses of wearing this invention as the user are watched the 3D display device, set by soft-touch control 73, can use its time clock feature to carry out timing watching, prevent that the situation of eye fatigue from can appear in the user when using the 3D glasses to watch the 3D display device time oversize.
In the present embodiment, main control MCU 3 also is electrically connected with PIR(Pyroelectric Infrared Sensor human body pyroelectricity infrared technique) identification circuit 4, PIR identification circuit 4 comprises PIR infrared assembly, operational amplification circuit and filtering circuit (not shown).People can utilize the PIR technology to carry out the replacing of 3D display device channel by the identification gesture motion easily, make the user save the time that the 3D display device need match and repeat to press button when switching the 3D display device, make the user easy to operate.
The above is giving an example of best mode for carrying out the invention, and the part of wherein not addressing in detail is those of ordinary skills' common practise.Protection scope of the present invention is as the criterion with the content of claim, and any equivalent transformation that carries out based on technology enlightenment of the present invention is also within protection scope of the present invention.
Claims (6)
1. 3D glasses comprise frame, power supply and eyeglass, it is characterized in that, also comprise:
Power sense circuit, described power sense circuit is electrically connected with described power supply, and is electrically connected to the main control MCU of the following stated, and described power sense circuit is for detection of the electric weight of described power supply and send it to described main control MCU;
Main control MCU, described main control MCU is electrically connected with the eyeglass driving circuit, and described eyeglass driving circuit is electrically connected with described eyeglass, and described eyeglass is provided with soft-touch control, electric weight display unit and clock display unit;
Telecommunication circuit, described telecommunication circuit and described main control MCU communicate to connect, and be connected with 3D display device radio communication, described telecommunication circuit is used for the 3D glasses and receives the synchronizing signal of 3D display device and send it to described main control MCU, and to 3D display device emission signal of communication.
2. 3D glasses as claimed in claim 1, it is characterized in that: described soft-touch control is capacitor type touch switch.
3. 3D glasses as claimed in claim 1, it is characterized in that: described main control MCU also is electrically connected with the PIR identification circuit.
4. 3D glasses as claimed in claim 3, it is characterized in that: described PIR identification circuit comprises PIR infrared assembly, operational amplification circuit and filtering circuit.
5. 3D glasses as claimed in claim 4, it is characterized in that: described telecommunication circuit is bluetooth communication circuit.
6. as each described 3D glasses of claim 1 to 5, it is characterized in that: described power supply is button cell; Perhaps described power supply is rechargeable battery, and described rechargeable battery is electrically connected with the USB charging inlet.
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CN201310221056.5A CN103278930B (en) | 2013-06-05 | 2013-06-05 | A kind of 3D glasses |
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CN201310221056.5A CN103278930B (en) | 2013-06-05 | 2013-06-05 | A kind of 3D glasses |
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CN103278930B CN103278930B (en) | 2016-01-20 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105510841A (en) * | 2015-12-30 | 2016-04-20 | 中国科学院深海科学与工程研究所 | System for online monitoring and managing electric quantity of underwater equipment power supply |
CN109782654A (en) * | 2018-12-23 | 2019-05-21 | 上海幻维数码创意科技有限公司 | Precise orbit positioning system for virtual reality experience roller-coaster equipment |
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US20100202046A1 (en) * | 2009-02-10 | 2010-08-12 | Sony Corporation And Sony Electronics Inc. | Distinguishing 3d tv glasses |
CN201828714U (en) * | 2010-09-17 | 2011-05-11 | 康佳集团股份有限公司 | 3d glasses |
CN201945752U (en) * | 2011-02-25 | 2011-08-24 | 深圳市晶盛科技有限公司 | Three-dimensional glasses with power-volume-display device |
US20120120190A1 (en) * | 2010-11-16 | 2012-05-17 | Hung-Chia Lee | Display device for use in a frame sequential 3d display system and related 3d display system |
CN202399457U (en) * | 2011-12-29 | 2012-08-29 | 湖北三环汽车工程塑料有限公司 | Internal cutting device for leakage-proof core-pulling die |
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2013
- 2013-06-05 CN CN201310221056.5A patent/CN103278930B/en active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
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US20100202046A1 (en) * | 2009-02-10 | 2010-08-12 | Sony Corporation And Sony Electronics Inc. | Distinguishing 3d tv glasses |
CN201828714U (en) * | 2010-09-17 | 2011-05-11 | 康佳集团股份有限公司 | 3d glasses |
US20120120190A1 (en) * | 2010-11-16 | 2012-05-17 | Hung-Chia Lee | Display device for use in a frame sequential 3d display system and related 3d display system |
CN201945752U (en) * | 2011-02-25 | 2011-08-24 | 深圳市晶盛科技有限公司 | Three-dimensional glasses with power-volume-display device |
CN202399457U (en) * | 2011-12-29 | 2012-08-29 | 湖北三环汽车工程塑料有限公司 | Internal cutting device for leakage-proof core-pulling die |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105510841A (en) * | 2015-12-30 | 2016-04-20 | 中国科学院深海科学与工程研究所 | System for online monitoring and managing electric quantity of underwater equipment power supply |
CN109782654A (en) * | 2018-12-23 | 2019-05-21 | 上海幻维数码创意科技有限公司 | Precise orbit positioning system for virtual reality experience roller-coaster equipment |
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CN103278930B (en) | 2016-01-20 |
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Address after: 261031 Dongfang Road, Weifang high tech Industrial Development Zone, Shandong, China, No. 268 Patentee after: Goertek Inc. Address before: 261031 Dongfang Road, Weifang high tech Industrial Development Zone, Shandong, China, No. 268 Patentee before: Goertek Inc. |