CN201352308Y - Opto-electrical standby device, opto-electrical standby digital television set-top box and computer - Google Patents
Opto-electrical standby device, opto-electrical standby digital television set-top box and computer Download PDFInfo
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- CN201352308Y CN201352308Y CNU2008202136078U CN200820213607U CN201352308Y CN 201352308 Y CN201352308 Y CN 201352308Y CN U2008202136078 U CNU2008202136078 U CN U2008202136078U CN 200820213607 U CN200820213607 U CN 200820213607U CN 201352308 Y CN201352308 Y CN 201352308Y
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- standby
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- photoelectricity
- electronic switch
- power supply
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Abstract
The utility model provides an opto-electrical standby device, which comprises a host machine unit, a standby microprocessing unit, a power supplying unit, an opto-electrical energy storage unit and an electronic switch, wherein the host machine unit is used for normal operation, the standby microprocessing unit is used for standby operation, and the power supplying unit is connected with the host machine unit. The opto-electrical energy storage unit is connected with the standby microprocessing unit to supply power for the same, the standby microprocessing unit is connected with the electronic switch to control the state of the same, and commercial power is transmitted to the power supplying unit after passing through the electronic switch. The opto-electrical standby device has the advantages of utilizing the opto-electrical energy storage unit to supply power for the standby microprocessing unit operated in a standby mode and completely saving commercial power consumption in the standby mode, thereby effectively utilizing solar energy and saving electric energy.
Description
[technical field]
The utility model relates to household electrical appliance technical field, particularly a kind of photoelectricity apparatus ' of standby and photoelectricity standby digital TV set-top box, computing machine.
[background technology]
Existing household electrical appliance, as televisor, computing machine, it also is provided with standby mode except normal mode of operation, because standby mode can Fast starting, receives praises from customers.But, electrical equipment and utilization not yet in effect under the standby mode, and need to power for the standby microprocessing unit in order to keep this standby mode always.Household electrical appliances are that articles for use are popularized in life, the customer volume of the relative radix super large of its standby power consumption amount, and the electric energy that is consumed is immeasurable, this is a kind of great waste to electric energy.At present, the energy saving standby method that is adopted is the power consumption components and parts amount that as far as possible reduces under the holding state, reduces the consumption of civil power with this.
[utility model content]
In order to solve existing technical matters, the utility model provides a kind of photoelectricity apparatus ' of standby and photoelectricity standby digital TV set-top box, computing machine, and it adopts the photoelectricity energy-storage units that the standby microprocessing unit is powered, to realize standby mode city's electrical zero consumption down.
The utility model solves existing technical matters, and a kind of photoelectricity apparatus ' of standby is provided, and it comprises the main computer unit that is used for operate as normal; The standby microprocessing unit that is used for stand-by operation; And the power supply unit that links to each other with described main computer unit; Also comprise photoelectricity energy-storage units and electronic switch; Described photoelectricity energy-storage units links to each other to its power supply with described standby microprocessing unit, and described standby microprocessing unit is connected in described electronic switch and controls its state; Civil power behind described electronic switch to described power supply unit.
The utility model further improves, and described photoelectricity energy-storage units comprises solar panels, charging circuit and rechargeable battery; Luminous energy is through described solar panels conversion, be stored in the described rechargeable battery behind described charging circuit again.
The utility model further improves, and described standby microprocessing unit comprises readiness control circuit, decoding scheme, Timer, RTC and electronic switch control circuit.
The utility model further improves, and described power supply unit is the AC/DC AC-DC converter.
The utility model further improves, and described decoding scheme is infrared decoding scheme.
The utility model solves existing technical matters, and a kind of photoelectricity standby digital TV set-top box is provided, and it comprises the main computer unit that is used for operate as normal; The standby microprocessing unit that is used for stand-by operation; And the power supply unit that links to each other with described main computer unit; Also comprise photoelectricity energy-storage units and electronic switch; Described photoelectricity energy-storage units links to each other to its power supply with described standby microprocessing unit, describedly treats that existing microprocessing unit is connected in described electronic switch and controls its state; Civil power behind described electronic switch to described power supply unit.
The utility model solves existing technical matters, and a kind of photoelectricity standby computing machine is provided, and it comprises the main computer unit that is used for operate as normal; The standby microprocessing unit that is used for stand-by operation; And the power supply unit that links to each other with described main computer unit; Also comprise photoelectricity energy-storage units and electronic switch; Described photoelectricity energy-storage units links to each other to its power supply with described standby microprocessing unit, describedly treats that existing microprocessing unit is connected in described electronic switch and controls its state; Civil power behind described electronic switch to described power supply unit.
Compared to prior art, the beneficial effects of the utility model are: adopt the photoelectricity energy-storage units that the standby microprocessing unit under the standby mode work is powered, save the city's electric consumption under the standby mode fully, thereby effectively utilize sun power, saves energy.
[description of drawings]
Fig. 1 is the principle schematic of the utility model photoelectricity apparatus ' of standby.
[embodiment]
Below in conjunction with description of drawings and embodiment the utility model one is gone on foot explanation.
As shown in Figure 1, a kind of photoelectricity apparatus ' of standby, it comprises photoelectricity energy-storage units 4, standby microprocessing unit 5, electronic switch 1, power supply unit 2 and main computer unit 3, the normal operating conditions of described main computer unit 3 control household electrical appliance, the stand-by operation state of described standby microprocessing unit 5 control household electrical appliance, photoelectricity energy-storage units 4 becomes electric energy with conversion of solar energy and stores.Photoelectricity energy-storage units 4 directly links to each other with standby microprocessing unit 5, and it is powered, and is implemented in the household electrical appliance city electrical zero consumption under the standby mode.Civil power is powered to main computer unit 3 behind an electronic switch 1 and a power supply unit 2, and standby microprocessing unit 5 links to each other with electronic switch 1 and controls its on off state.Principle of work of the present utility model is: when the user sets household electrical appliance and is standby mode, standby microprocessing unit 5 is started working by 4 power supplies of photoelectricity energy-storage units, simultaneously, these standby microprocessing unit 5 control electronic switches are closed condition, cut off the power supply of civil power to main computer unit 3.
Described photoelectricity energy-storage units 4 comprises solar panels, charging circuit and rechargeable battery; Luminous energy is through described solar panels conversion, be stored in the described rechargeable battery behind described charging circuit again.
Described standby microprocessing unit 5 comprises readiness control circuit, decoding scheme, Timer (timer), RTC (Real-Time Clock, real-time timepiece chip) and electronic switch control circuit.This decoding scheme is infrared decoding scheme.
Described power supply unit 2 is the AC/DC AC-DC converter, will exchange the city and convert direct current to for main computer unit work.
The utility model provides a kind of photoelectricity standby digital TV set-top box, and it comprises the main computer unit 3 that is used for operate as normal; The standby microprocessing unit 5 that is used for stand-by operation; And the power supply unit 2 that links to each other with described main computer unit 3; Also comprise photoelectricity energy-storage units 4 and electronic switch 1; Described photoelectricity energy-storage units 4 links to each other to its power supply with described standby microprocessing unit 5, describedly treats that existing microprocessing unit 5 is connected in described electronic switch 1 and controls its state; Civil power behind described electronic switch 1 to described power supply unit 2.
The utility model provides a kind of photoelectricity standby computing machine, and it comprises the main computer unit 3 that is used for operate as normal; The standby microprocessing unit 5 that is used for stand-by operation; And the power supply unit 2 that links to each other with described main computer unit 3; Also comprise photoelectricity energy-storage units 4 and electronic switch 1; Described photoelectricity energy-storage units 4 links to each other to its power supply with described standby microprocessing unit 5, describedly treats that existing microprocessing unit 5 is connected in described electronic switch 1 and controls its state; Civil power behind described electronic switch 1 to described power supply unit 2.
The utility model adopts the photoelectricity energy-storage units that the standby microprocessing unit under the standby mode work is powered, and saves the city's electric consumption under the standby mode fully, thereby effectively utilizes sun power, saves energy.
Above content be in conjunction with concrete preferred implementation to further describing that the utility model is done, can not assert that concrete enforcement of the present utility model is confined to these explanations.For the utility model person of an ordinary skill in the technical field, under the prerequisite that does not break away from the utility model design, can also make some simple deduction or replace, all should be considered as belonging to protection domain of the present utility model.
Claims (7)
1. photoelectricity apparatus ' of standby, it comprises
The main computer unit that is used for operate as normal;
The standby microprocessing unit that is used for stand-by operation;
And the power supply unit that links to each other with described main computer unit;
It is characterized in that:
Also comprise photoelectricity energy-storage units and electronic switch;
Described photoelectricity energy-storage units links to each other to its power supply with described standby microprocessing unit, and described standby microprocessing unit is connected in described electronic switch and controls its state; Civil power behind described electronic switch to described power supply unit.
2. photoelectricity apparatus ' of standby according to claim 1 is characterized in that: described photoelectricity energy-storage units comprises solar panels, charging circuit and rechargeable battery; Luminous energy is through described solar panels conversion, be stored in the described rechargeable battery behind described charging circuit again.
3. photoelectricity apparatus ' of standby according to claim 1 and 2 is characterized in that: described standby microprocessing unit comprises readiness control circuit, decoding scheme, Timer, RTC and electronic switch control circuit.
4. photoelectricity apparatus ' of standby according to claim 3 is characterized in that: described power supply unit is the AC/DC AC-DC converter.
5. photoelectricity apparatus ' of standby according to claim 3 is characterized in that: described decoding scheme is infrared decoding scheme.
6. photoelectricity standby digital TV set-top box, it comprises
The main computer unit that is used for operate as normal;
The standby microprocessing unit that is used for stand-by operation;
And the power supply unit that links to each other with described main computer unit;
It is characterized in that:
Also comprise photoelectricity energy-storage units and electronic switch;
Described photoelectricity energy-storage units links to each other to its power supply with described standby microprocessing unit, and described standby microprocessing unit is connected in described electronic switch and controls its state; Civil power behind described electronic switch to described power supply unit.
7. photoelectricity standby computing machine, it comprises
The main computer unit that is used for operate as normal;
The standby microprocessing unit that is used for stand-by operation;
And the power supply unit that links to each other with described main computer unit;
It is characterized in that:
Also comprise photoelectricity energy-storage units and electronic switch;
Described photoelectricity energy-storage units links to each other to its power supply with described standby microprocessing unit, and described standby microprocessing unit is connected in described electronic switch and controls its state; Civil power behind described electronic switch to described power supply unit.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2008202136078U CN201352308Y (en) | 2008-11-14 | 2008-11-14 | Opto-electrical standby device, opto-electrical standby digital television set-top box and computer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2008202136078U CN201352308Y (en) | 2008-11-14 | 2008-11-14 | Opto-electrical standby device, opto-electrical standby digital television set-top box and computer |
Publications (1)
Publication Number | Publication Date |
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CN201352308Y true CN201352308Y (en) | 2009-11-25 |
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CNU2008202136078U Expired - Fee Related CN201352308Y (en) | 2008-11-14 | 2008-11-14 | Opto-electrical standby device, opto-electrical standby digital television set-top box and computer |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101771839A (en) * | 2009-12-18 | 2010-07-07 | 康佳集团股份有限公司 | Circuit for lowering liquid crystal display (LCD) TV standby power consumption |
-
2008
- 2008-11-14 CN CNU2008202136078U patent/CN201352308Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101771839A (en) * | 2009-12-18 | 2010-07-07 | 康佳集团股份有限公司 | Circuit for lowering liquid crystal display (LCD) TV standby power consumption |
CN101771839B (en) * | 2009-12-18 | 2015-04-15 | 康佳集团股份有限公司 | Circuit for lowering liquid crystal display (LCD) TV standby power consumption |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20091125 Termination date: 20111114 |