CN201226452Y - Wireless operation controller - Google Patents

Wireless operation controller Download PDF

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Publication number
CN201226452Y
CN201226452Y CNU2008201266430U CN200820126643U CN201226452Y CN 201226452 Y CN201226452 Y CN 201226452Y CN U2008201266430 U CNU2008201266430 U CN U2008201266430U CN 200820126643 U CN200820126643 U CN 200820126643U CN 201226452 Y CN201226452 Y CN 201226452Y
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CN
China
Prior art keywords
linkage unit
unit
energy
signal receiver
control device
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.)
Expired - Fee Related
Application number
CNU2008201266430U
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Chinese (zh)
Inventor
李祖楠
刘志岷
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.)
KYE Systems Corp
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KYE Systems Corp
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Filing date
Publication date
Application filed by KYE Systems Corp filed Critical KYE Systems Corp
Priority to CNU2008201266430U priority Critical patent/CN201226452Y/en
Application granted granted Critical
Publication of CN201226452Y publication Critical patent/CN201226452Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • Y02E10/56Power conversion systems, e.g. maximum power point trackers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E70/00Other energy conversion or management systems reducing GHG emissions
    • Y02E70/30Systems combining energy storage with energy generation of non-fossil origin

Abstract

The utility model provides a wireless controller used for executing the functions of an electronic device. The wireless controller comprises a signal receiver and an operation controller. The signal receiver comprises a first connecting unit, a solar battery, a voltage detection unit, a second connecting unit, a power switching unit and a third connecting unit. The operation controller comprises a fourth connecting unit, a first energy storage unit and a fifth connecting unit. The operation controller is connected with the third connecting unit through the fifth connecting unit, and the first energy storage unit is charged through the solar battery or an outer power supply. By switching the charging paths of the solar battery and outer power supply, both energy and power can be saved, and the environment exerts no influence.

Description

Wireless actuation means
Technical field
The utility model relates to a kind of wireless actuation means, particularly a kind of wireless actuation means with solar cell.
Background technology
The wireless actuation means of general electronic installation in use, often signal receiver (for example: Bluetooth Receiver, infrared receiver etc.) is connected on the electronic installation, power by the power supply of electronic installation on the one hand and operate to signal receiver, then carry out the required signal of this functional operation with this electronic installation communication on the other hand, running control device (for example: blue-tooth radio-mouse, blue teeth wireless keyboard, infrared and radio mouse and infrared and radio keyboard etc.) then is the powered battery running of utilization itself.
But because the running control device is the powered battery running of utilization itself, often operate a period of time after because the battery electric quantity deficiency of inside can't operate and cause.Needs are changed the battery of running control device inside or the running control device are charged.
Part manufacturer can be provided with solar cell on the control device in running and replaced existing battery in the past, supplied with the required electric power of running control device to utilize solar energy.But,, therefore also limited the environment and the geographical position that can effectively utilize solar energy, for example: need could effectively utilize in sun-drenched place etc. because solar energy is the illumination that utilizes natural phenomena.Simultaneously, solar cell is set on the control device, when operation running control device, has tended to cover the required illumination of solar cell converting electrical energy, and then cause wireless actuation means that the not enough and problem that can't use of electric weight takes place easily in running.
Summary of the invention
The utility model provides a kind of wireless actuation means, in order to avoid operating the problem that control device can't effectively utilize solar cell for supplying power, for example: on the running control device, solar cell is set and is subjected to environmental impact easily, or when operation running control device, can cover the required illumination of solar cell converting electrical energy, and then cause problems such as wireless actuation means can't use.
According to the disclosed a kind of wireless actuation means of the utility model, in order to carry out the functional operation of response one electronic installation.Wireless actuation means comprises: signal receiver and running control device.Signal receiver comprises: first linkage unit, solar cell, voltage detection unit, second linkage unit, power supply switch unit and the 3rd linkage unit.The running control device comprises: the 4th linkage unit, first energy-storage units and the 5th linkage unit.
First linkage unit receives second electric energy from electronic installation in order to wired connection electronic installation and selectivity.Solar cell is in order to receiving solar energy, and the conversion of solar energy that receives is become first electric energy.Voltage detection unit connects solar cell, in order to detect first electric energy of solar cell.Second linkage unit and solar cell form first charge path exporting first electric energy, and form second charge path to export second electric energy with first linkage unit.The power supply switch unit switches between first charge path and second charge path in order to the testing result according to voltage detection unit.The 3rd linkage unit connects first linkage unit.
The 4th linkage unit is in order to wireless connections the 3rd linkage unit, to carry out the required signal of functional operation via the 3rd linkage unit and first linkage unit and electronic installation communication.First energy-storage units is in order to supply the running of the 4th linkage unit required electric power.The 5th linkage unit electrically connects first energy-storage units, in order to electrically connect second linkage unit.
Wherein, when second linkage unit of the 5th linkage unit and the signal receiver of running control device electrically connected, signal receiver one of utilized in first electric energy and second electric energy via first energy-storage units that operates control device being charged one of in first charge path and second charge path.When the detected voltage of voltage detection unit was higher than a setting voltage value, the power supply switch unit switched to first charge path.When the detected voltage of voltage detection unit was lower than a setting voltage value, the power supply switch unit switched to second charge path.
According to the disclosed a kind of wireless actuation means of the utility model,, utilize illumination that conversion of solar energy is become electrical power storage by solar cell is set in signal receiver.When operating the undertension of control device internal cell, be electrically connected to signal receiver, running control device internal cell is charged by the solar cell on the signal receiver.Make solar cell electric weight deficiency for fear of the illumination deficiency, detect solar voltage at signal receiver built-in voltage detecting unit, when solar array voltage is not enough, automatically switch to by the electronic installation that connects signal receiver to come to the charging of running control device internal cell.Charge path by solar cell and external power source switches, and can reach the effect of energy saving on the one hand, and the while power supply supplies would not be affected by environment.Moreover, when operation running control device, also can not produce the required illumination of solar cell converting electrical energy, and cause power shortage, and then cause wireless actuation means to use.
Below in conjunction with the drawings and specific embodiments the utility model is described in detail, but not as to qualification of the present utility model.
Description of drawings
Fig. 1 is a wireless actuation means schematic diagram of the present utility model;
Fig. 2 A is the signal receiver of the utility model first embodiment and the wireless connections schematic diagram of running control device;
Fig. 2 B is the signal receiver of the utility model first embodiment and the schematic diagram that charges that is connected of running control device;
Fig. 3 A is the signal receiver of the utility model second embodiment and the wireless connections schematic diagram of running control device; And
Fig. 3 B is the signal receiver of the utility model second embodiment and the schematic diagram that charges that is connected of running control device.
Wherein, Reference numeral
10 first linkage units
20 solar cells
21 photoelectric conversion units
22 second energy-storage units
30 voltage detection units
40 second linkage units
50 power supply switch units
60 the 3rd linkage units
70 the 4th linkage units
80 first energy-storage units
90 the 5th linkage units
100 signal receivers
200 running control devices
300 electronic installations
Embodiment
Please refer to Fig. 1, Fig. 1 is a wireless actuation means schematic diagram of the present utility model.Wireless actuation means is in order to carry out the functional operation of response one electronic installation 300.Wireless actuation means comprises: signal receiver 100 and running control device 200.
Signal receiver 100 comprises: first linkage unit 10, solar cell 20, voltage detection unit 30, second linkage unit 40, power supply switch unit 50 and the 3rd linkage unit 60.
First linkage unit 10 is wiredly connected on the electronic installation 300.First linkage unit 10 can selectivity receives second electric energy from electronic installation 300.
Solar cell 20 comprises the photoelectric conversion unit 21 and second energy-storage units 22.Photoelectric conversion unit 21 is in order to receiving solar energy, and the conversion of solar energy that receives is become first electric energy.Second energy-storage units 22 connects photoelectric conversion unit 21.Second energy-storage units 22 is in order to store first electric energy.
Voltage detection unit 30 is connected in second energy-storage units 22 of solar cell 20.Voltage detection unit 30 is in order to detect first electric energy of solar cell 20.
Second linkage unit 40 and solar cell 20 form first charge path exporting first electric energy, and second linkage unit 40 can also form second charge path to export second electric energy with first linkage unit 10.
Power supply switch unit 50 switches between first charge path and second charge path in order to the testing result according to voltage detection unit 30.When voltage detection unit 30 detected voltages were higher than a setting voltage value, power supply switch unit 50 switched to first charge path.When voltage detection unit 30 detected voltages were lower than a setting voltage value, power supply switch unit 50 switched to second charge path.
The 3rd linkage unit 60 connects first linkage unit 10.The 3rd linkage unit 60 is in order to sending and receiving one wireless signal.
Running control device 200 comprises: the 4th linkage unit 70, first energy-storage units 80 and the 5th linkage unit 90.This running control device 200 is including, but not limited to can be a wireless computer peripheral apparatus, for example a mouse, keyboard, game console, wireless headset ... .. or the like.Or can be a wireless home remote controller, video game controller .... or the like.
The 4th linkage unit 70 is in order to wireless connections the 3rd linkage unit 60.The 4th linkage unit 70 and the 3rd linkage unit 60 can be mutual corresponding wireless signal transmitting-receiving subassembly.The 4th linkage unit 70 is to carry out the required signal of functional operation via the 3rd linkage unit 60 and first linkage unit 10 with electronic installation 300 communications.
First energy-storage units 80 is in order to supply 70 runnings of the 4th linkage unit required electric power.
The 5th linkage unit 90 electrically connects first energy-storage units 80.When the power shortage of first energy-storage units 80, will operate control device 200 and electrically connect signal receivers 100.In this, the 5th linkage unit 90 is electrically connected second linkage unit 40, and charge via first energy-storage units 80 of second charge path to first energy-storage units, 80 chargings of running control device 200 or by electronic installation 300 (it provides external power source) via first charge path running control device 200 by solar cell 20.
Electronic installation 300 can be personal computer, mobile computer or palmtop computer etc.
Signal receiver 100 can be wireless mouse receiver or Wireless Keyboard receiver etc.
Running control device 200 can be wireless mouse or Wireless Keyboard etc.
First linkage unit 10 can pass through USB (Universal Serial Bus, USB) or communication interface such as IEEE1394 be wiredly connected to electronic installation 300.
Solar cell 20 can be single crystal silicon solar cell (SINGLECRYSTAL), polycrystal silicon solar cell (POLYCRYSTAL) and amorphous silicon solar cell (AMORPHOUS) etc.
Second energy-storage units 22 is a charging capacitor, but or the energy storage device of other fast charging and discharging etc.
Power supply switch unit 50 is a power change-over switch.
Second linkage unit 40 is a connecting interface, in order to be connected with external device.Second linkage unit 40 can for USB (Universal Serial Bus, USB) or connecting interface such as IEEE1394.
The 3rd linkage unit 60 and the 4th linkage unit 70 are mutual corresponding wireless signal transmitting-receiving subassembly.
The 3rd linkage unit 60 can be bluetooth receiving element, infrared ray receiving element or laser pick-off unit etc.
The 4th linkage unit 70 can be bluetooth transmitting element, infrared ray transmitting element or laser transmitting element etc.
First energy-storage units 80 is a charging capacitor, or the energy storage device of other quickly-chargeable etc.
The 5th linkage unit 90 can be mutual corresponding connecting interface with second linkage unit 40, and contact electrically connects between the 5th linkage unit 90 and second linkage unit 40.
According to the disclosed a kind of wireless actuation means of the utility model, comprise signal receiver 100 and running control device 200.Wherein, an end and the electronic installation 300 of signal receiver 100 join, and its other end must join with running control device 200.Signal receiver 100 has photoelectric conversion unit 21 and second charging capacitor (being the second above-mentioned energy-storage units 22).Second charging capacitor (being the second above-mentioned energy-storage units 22) is in order to store the electric power that photoelectric conversion unit 21 is changed.Running control device 200 has first charging capacitor (being the first above-mentioned energy-storage units 80).First charging capacitor (being the first above-mentioned energy-storage units 80) is in order to receive the electric power that second charging capacitor (being the second above-mentioned energy-storage units 22) is stored.
Wherein, also has power supply switch unit 50 between second charging capacitor of signal receiver 100 (being the second above-mentioned energy-storage units 22) and the electronic installation 300.First charging capacitor (being the first above-mentioned energy-storage units 80) of running control device 200 is in order to second charging capacitor (being the second above-mentioned energy-storage units 22) electric power that is stored or the existing electric power of electronic installation 300 of received signal receiver 100.
In other words, according to the disclosed a kind of wireless actuation means of the utility model,, utilize illumination that conversion of solar energy is become electrical power storage by solar cell 20 is set in signal receiver 100.When the undertension of second energy-storage units 22 of running control device 200 inside, be electrically connected to signal receiver 100, to charge by 20 pairs of runnings of the solar cell on the signal receiver 100 control device, 200 internal cells.Make second energy-storage units, 22 electric weight deficiencies for fear of the illumination deficiency, detect second energy-storage units, 22 voltages at signal receiver 100 built-in voltage detecting units 30, when second energy-storage units, 22 undertensions, automatically switch to by the existing electric power in the electronic installation 300, come 80 chargings of running control device 200 inner first energy-storage units.Charge path by solar cell and external power source switches, can reach the effect of energy saving on the one hand, simultaneously power supply is for would not be affected by environment or when the operation running control device, covered the required illumination of converting electrical energy with to rechargeable solar battery, and cause power shortage, and then cause wireless actuation means to use.
Please refer to Fig. 2 A and Fig. 2 B.Fig. 2 A is the signal receiver of the utility model first embodiment and the wireless connections schematic diagram of running control device.Fig. 2 B is the signal receiver of the utility model first embodiment and the schematic diagram that charges that is connected of running control device.In present embodiment, its operation principle is identical with Fig. 1.Wherein, electronic installation 300 is a personal computer.Signal receiver 100 is a Bluetooth Receiver, and running control device 200 is a bluetooth mouse.
Please refer to Fig. 3 A and Fig. 3 B.Fig. 3 A is the signal receiver of the utility model second embodiment and the wireless connections schematic diagram of running control device.Fig. 3 B is the signal receiver of the utility model second embodiment and the schematic diagram that charges that is connected of running control device.In present embodiment, its operation principle is identical with Fig. 1.Wherein, electronic installation 300 is a personal computer.Signal receiver 100 is an infrared receiver, and running control device 200 is an infrared keyboard.
Certainly; the utility model also can have other various embodiments; under the situation that does not deviate from the utility model spirit and essence thereof; those of ordinary skill in the art work as can make various corresponding changes and distortion according to the utility model, but these corresponding changes and distortion all should belong to the protection range of the appended claim of the utility model.

Claims (11)

1, a kind of wireless actuation means in order to carry out the functional operation of response one electronic installation, is characterized in that this wireless actuation means comprises:
One signal receiver comprises:
One first linkage unit receives one second electric energy from this electronic installation in order to this electronic installation of wired connection and selectivity;
One solar cell, in order to receiving a solar energy, and this conversion of solar energy that will receive becomes one first electric energy;
One voltage detection unit connects this solar cell, in order to detect this first electric energy of this solar cell;
One second linkage unit forms one first charge path exporting this first electric energy with this solar cell, and forms one second charge path to export this second electric energy with this first linkage unit;
One power supply switch unit switches between this first charge path and this second charge path in order to the testing result according to this voltage detection unit; And
One the 3rd linkage unit connects this first linkage unit; And
One running control device comprises:
One the 4th linkage unit, in order to wireless connections the 3rd linkage unit to carry out the required signal of this functional operation via the 3rd linkage unit and this first linkage unit and this electronic installation communication;
One first energy-storage units is in order to supply the running of the 4th linkage unit required electric power; And
One the 5th linkage unit electrically connects this first energy-storage units, in order to electrically connect this second linkage unit;
Wherein, when this second linkage unit of the 5th linkage unit and this signal receiver of this running control device electrically connected, this signal receiver one of utilized in this first electric energy and this second electric energy via this first energy-storage units to this running control device one of in this first charge path and this second charge path and charges.
2, wireless actuation means according to claim 1 is characterized in that, this first linkage unit is wiredly connected to this electronic installation by USB.
3, wireless actuation means according to claim 1 is characterized in that, this solar cell comprises:
One photoelectric conversion unit, in order to receiving this solar energy, and this conversion of solar energy that will receive becomes this first electric energy; And
One second energy-storage units connects this photoelectric conversion unit, in order to store this first electric energy.
4, wireless actuation means according to claim 1 is characterized in that, when the detected voltage of this voltage detection unit was higher than a setting voltage value, this power supply switch unit switched to this first charge path.
5, wireless actuation means according to claim 1 is characterized in that, when the detected voltage of this voltage detection unit was lower than a setting voltage value, this power supply switch unit switched to this second charge path.
6, wireless actuation means according to claim 1 is characterized in that, the 3rd linkage unit is in bluetooth receiving element, infrared ray receiving element and the laser pick-off unit one of them; And wherein the 4th linkage unit and the 3rd linkage unit are mutual corresponding wireless signal transmitting-receiving subassembly.
7, wireless actuation means according to claim 1 is characterized in that, this first energy-storage units is a charging capacitor.
8, wireless actuation means according to claim 1 is characterized in that, the 5th linkage unit of this running control device and this second linkage unit contact of this signal receiver electrically connect.
9, wireless actuation means according to claim 3 is characterized in that, this second energy-storage units is a charging capacitor.
10, a kind of wireless actuation means is characterized in that, comprises a signal receiver and a running control device;
Wherein, this signal receiver has a photoelectric conversion unit and one second charging capacitor; This second charging capacitor stores the electric power that this photoelectric conversion unit is changed;
Wherein, an end and an electronic installation of this signal receiver join, and its other end must operate control device with this and join;
Wherein, this running control device has one first charging capacitor, the electric power that is stored with this second charging capacitor that receives this signal receiver.
11, wireless actuation means according to claim 10, it is characterized in that, also has a power supply switch unit between this second charging capacitor in this signal receiver and this electronic installation, this first charging capacitor of this running control device receives the electric power that this second charging capacitor of this signal receiver is stored, or the existing electric power of this electronic installation.
CNU2008201266430U 2008-06-27 2008-06-27 Wireless operation controller Expired - Fee Related CN201226452Y (en)

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Application Number Priority Date Filing Date Title
CNU2008201266430U CN201226452Y (en) 2008-06-27 2008-06-27 Wireless operation controller

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Application Number Priority Date Filing Date Title
CNU2008201266430U CN201226452Y (en) 2008-06-27 2008-06-27 Wireless operation controller

Publications (1)

Publication Number Publication Date
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CNU2008201266430U Expired - Fee Related CN201226452Y (en) 2008-06-27 2008-06-27 Wireless operation controller

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102694426A (en) * 2011-03-25 2012-09-26 阿自倍尔株式会社 Electronic operation termianl and network systerm of electronic operation termianl
CN102969724A (en) * 2011-09-01 2013-03-13 阿自倍尔株式会社 Wirelessly-powered electrically-operated device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102694426A (en) * 2011-03-25 2012-09-26 阿自倍尔株式会社 Electronic operation termianl and network systerm of electronic operation termianl
CN102694426B (en) * 2011-03-25 2015-04-15 阿自倍尔株式会社 Electric operation terminal and network system of electric operation terminal
CN102969724A (en) * 2011-09-01 2013-03-13 阿自倍尔株式会社 Wirelessly-powered electrically-operated device
CN102969724B (en) * 2011-09-01 2014-10-22 阿自倍尔株式会社 Wirelessly-powered electrically-operated device

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090422

Termination date: 20140627

EXPY Termination of patent right or utility model