CN102474676A - Remote controller - Google Patents

Remote controller Download PDF

Info

Publication number
CN102474676A
CN102474676A CN2010800366709A CN201080036670A CN102474676A CN 102474676 A CN102474676 A CN 102474676A CN 2010800366709 A CN2010800366709 A CN 2010800366709A CN 201080036670 A CN201080036670 A CN 201080036670A CN 102474676 A CN102474676 A CN 102474676A
Authority
CN
China
Prior art keywords
mentioned
battery
remote controller
primary cell
solar cell
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.)
Granted
Application number
CN2010800366709A
Other languages
Chinese (zh)
Other versions
CN102474676B (en
Inventor
上田贵郎
寺内英树
吉田幸男
桥本浩之
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.)
Hitachi Johnson Controls Air Conditioning Inc
Hitachi Global Life Solutions Inc
Original Assignee
Hitachi Appliances Inc
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 Hitachi Appliances Inc filed Critical Hitachi Appliances Inc
Publication of CN102474676A publication Critical patent/CN102474676A/en
Application granted granted Critical
Publication of CN102474676B publication Critical patent/CN102474676B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/34Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
    • H02J7/35Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q9/00Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/10Power supply of remote control devices

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Power Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Selective Calling Equipment (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

At the time of using a general-purpose cell (33), in a cell changing switch (20) provided in a remote controller, a terminal (a) and a terminal (b) are connected to each other, and a terminal (d) and a terminal (e) are connected to each other by means of a slider switch (20a). A microcomputer (30) can be supplied with power from the general-purpose cell (33) by having the terminal (d) and the terminal (e) connected to each other. At that time, by having the terminal (a) and the terminal (b) connected to each other, a solar cell (12) is not connected to the microcomputer (30), and the lithium primary cell (32) is not connected to the microcomputer (30), either, with a terminal (f) not connected to the lithium primary cell. As a result, the connection between the solar cell (12) and the microcomputer (30) and that between the lithium primary cell (32) and the microcomputer are completely interrupted.

Description

Remote controller
Technical field
The present invention relates to the remote controller of the wireless mode of operating electronic equipment.
Background technology
In recent years, for operating electronic equipment, use the remote controller of wireless mode mostly.
In the employed battery of this remote controller, as the method that is used to prolong effective life, once proposed not use the universal battery of alkaline manganese battery etc., and be to use desirable must be than the scheme of the lithium primary battery of high current capacity.And lift-launch solar panel (solar cell) has been proposed, solar energy is transformed into electric energy carries out the auxiliary technology of electric power.
Following technology is disclosed: under the situation of having carried the battery that as lithium primary battery, is difficult to change; Availability reduces or user's convenience reduces in order to suppress; Can also replace using the technology (for example, patent documentation 1, patent documentation 2) of the universal battery of alkaline manganese battery etc.
Patent documentation 1 discloses following technology: in portable phone, carry the supply that chargeable secondary cell carries out electric power, but under the environment that is difficult to charge, through alkaline primary battery is carried the use of on private jack, just can meeting an urgent need.And, alkaline primary battery is provided for preventing the diode from the adverse current of the electric current of secondary cell.
Patent documentation 2 discloses following technology about electronic equipment: the secondary cell that will utilize rechargeable solar battery is as main driving power; Occur at secondary cell under the situation of battery supply interruption (cutting れ) as this main driving power; Assemble removably external cell, can use as the process auxiliary drive source.
In recent years because the raising of environmental consciousness, require the employed battery of remote controller lift-launch the high product of availability of function of the effective life that prolongs.
In patent documentation 1, carry chargeable secondary cell, under the environment that can not charge, can carry alkaline primary battery, thereby have the function about the environment that is not used.But the charging times of secondary cell has boundary, under the situation of the boundary that has reached charging times, must change secondary cell.In addition, with regard to the adverse current method that prevents of having used diode,, might surpass the allowance of charging current when therefore using with this state for a long time owing to there is not the diode that does not leak fully.
In patent documentation 2; Consider the following state of affairs: when causing that by the secondary cell overdischarge of rechargeable solar battery battery supply interrupts; Load external cell, use switch that external cell is connected emergent use the on the circuit, but owing on main driving power, use the secondary cell by rechargeable solar battery; Therefore must exist overdischarge, the so-called battery supply of secondary cell of the situation of the energy output that can't fully obtain solar cell to interrupt, can not use equipment continually.This occasion is used although the enough external cells of ability are emergent, must connect external cell continually.
In addition; Under the many situation of the usage frequency of electronic equipment, under the such indoor conditions of the energy output that can't fully obtain using solar cell, go back the always not enough occasion of energy output of dynamical mean sun ability battery; This occasion; From at first to the end, promptly in whole uses of electronic equipment, change universal battery repeatedly and use.When making troubles to the user thus, also become the disadvantageous state of affairs of environment.In addition, secondary cell is because therefore storage effect and to discharge and recharge the guarantee of number of times shorter, along with the use of equipment, can encourage the increase of the usage frequency of external cell.
Have again, few at the usage frequency of electronic equipment in patent documentation 2, under the sufficient situation of the energy output of solar cell, though need in the long time, not load external cell, the situation that existence uses the frequency of diverter switch also to tail off.This situation; Though depend on the environment for use of electronic equipment; But the possibility below having considered: for example many, especially in the many areas of salinities such as coastal area at moisture, in a single day get rusty easily, when wanting to load external cell and use auxiliaryly; Contact is bad because of the contact that gets rusty, and can not use electronic equipment.
The prior art document
Patent documentation
Patent documentation 1: No. 3642769 communique of patent
Patent documentation 2: japanese kokai publication hei 4-325840 communique
Summary of the invention
Invent problem to be solved
As stated, in the employed battery of remote controller,, has the built-in method that obtains than universal batteries such as the lithium primary battery alkaline battery of high current capacity rather than built-in alkaline manganese batteries in order to prolong effective life.
But have following problem: the situation of built-in lithium primary battery is difficult to change as stated, need to realize the long-term of effective life, and needs can to replace using the mechanism of the universal battery that the convenience that is used to suppress the user descends.
The invention solves above-mentioned existing problem, the object of the present invention is to provide the long-term of a kind of effective life of realizing built-in primary cell, and the remote controller of mechanism is used in the replacement that possesses universal battery.
Be used to solve the method for problem
In order to solve above-mentioned problem, the present invention is at built-in primary cell, possesses in the remote controller with the solar cell of this primary cell and usefulness, it is characterized in that possessing: universal battery is inserted into the insertion mechanism in the above-mentioned remote controller; And the battery switching mechanism that above-mentioned primary cell and above-mentioned solar cell is switched to above-mentioned universal battery.
In addition, the present invention is at built-in primary cell, possesses in the remote controller with the solar cell of this primary cell and usefulness, it is characterized in that possessing: the indication mechanism that shows the content of operation of above-mentioned remote controller; And controlling organization, this controlling organization above-mentioned remote controller predetermined during under the untapped situation, carry out the control that changes to standby mode, when being converted to this standby mode, stop the control of the demonstration of above-mentioned indication mechanism.
In addition; The present invention is at built-in primary cell, possesses in the remote controller with the solar cell of this primary cell and usefulness, it is characterized in that; Possess universal battery is inserted into the insertion mechanism in the above-mentioned remote controller; During above-mentioned primary cell overdischarge, cut off second power supply circuit that first power supply circuit that above-mentioned primary cell connects is connected with above-mentioned solar cell, connect the 3rd power supply circuit that universal battery connected that is inserted in the above-mentioned insertion mechanism.
According to the present invention, possess the insertion mechanism that inserts universal battery, the built-in primary cell that replacement is difficult to change, thus can avoid state because of battery supply interruption becoming akinesia, improve availability.
In addition, when standby mode, stop the demonstration of indication mechanism, thereby can alleviate the load current of built-in primary cell, realize effective life long-term of primary cell.
In addition, when primary cell and solar cell switch to universal battery,, can prevent to flow to the charging current of universal battery through cutting off being connected of primary cell and solar cell.
Effect of the present invention is following.
The present invention can provide the effective life of realizing built-in primary cell long-term, and possesses the remote controller of the replacement use mechanism of universal battery.
Description of drawings
Fig. 1 is the figure of surface structure of the air conditioner controlled of remote controller of this execution mode of expression.
Fig. 2 is the front view of the outward appearance of expression remote controller.
Fig. 3 is the rearview of the outward appearance of expression remote controller.
Fig. 4 is the end view of the outward appearance of expression remote controller.
Fig. 5 is the sectional view of expression remote controller.
Fig. 6 is the figure of the battery socket of expression remote controller.
Fig. 7 is the figure of structure of the transmission acceptance division of expression remote controller.
Fig. 8 is the circuit diagram of expression control of remote controller structure.
Fig. 9 is the figure of the expression battery diverter switch and the circuit structure of periphery.
Figure 10 is the figure of the expression battery diverter switch and the circuit structure of periphery.
Figure 11 is the figure of expression as the circuit structure of comparative example.
Embodiment
Followingly be elaborated with reference to the remote controller of accompanying drawing to execution mode of the present invention.
Fig. 1 is the figure of surface structure of the air conditioner controlled of remote controller of this execution mode of expression.Air conditioner 1 is to connect indoor sets 2 by connecting pipings 4 to constitute with off-premises station 3, carries out air conditioning to indoor.Bottom right-hand member on the figure of indoor set 2 shown in the bottom right is provided with the indoor transmission acceptance division 7 of reception from the ultrared operation signal of the remote controller 5 of split.Promptly, remote controller 5 can carry out the operation of air conditioner 1 through the indoor transmission acceptance division 7 that is arranged on the indoor set 2.
< explanation of remote controller >
Secondly, use Fig. 2 to Fig. 7 that the overall structure of the remote controller 5 of this execution mode is described.Fig. 2 is the front view of the outward appearance of expression remote controller 5.Fig. 3 is the rearview of the outward appearance of expression remote controller 5.Fig. 4 is the end view of the outward appearance of expression remote controller 5.Fig. 5 is the sectional view of remote controller 5.Fig. 6 is the figure of the battery socket of expression remote controller 5.Fig. 7 is the figure of structure of the transmission acceptance division of expression remote controller 5.
As shown in Figure 2, remote controller 5 possesses: the action button 10 that is used to operate indication; The liquid crystal display picture of display operation content (LCD module) 11; Solar cell (solar panel) 12; And send acceptance division 13 by the remote controller that covered by light shield 13a with indoor transmission acceptance division 7 carries out that twocouese communicates by letter.
As shown in Figure 3, possess battery socket lid 14 at the back side of remote controller 5.
As shown in Figure 4, remote controller 5 substantial middle overleaf partly possesses the finger of holding 34.
As shown in Figure 5, remote controller 5 is built-in with the lithium primary battery 32 as the battery that is difficult to change.In addition, remote controller 5 possesses the battery socket 15 and attention label 35 that inserts universal battery in the inside that is covered by battery socket lid 14.
Fig. 6 representes to pull down the state after battery socket covers 14 (with reference to Fig. 3), in above-mentioned battery socket 15, is provided with cell connection terminal 16,17,18,19, makes the structure that the user can change battery simply.In this battery socket 15, insert universal battery, for example alkaline manganese dry cell, thereby can supply with as the power supply of remote controller 5.In addition, universal battery is that for example single three dry cells or single four dry cells etc. generally can be at the batteries of purchases such as convenience store.
In addition, near battery socket 15, possesses battery diverter switch 20.
In addition, attention label 35 shown in Figure 5 is configured in the battery socket 15, so that cover and let the user read at 14 o'clock opening battery socket.The purpose that this attention label 35 is set is to impel the user to notice: the method for using of the battery diverter switch 20 when in battery socket 15, inserting universal battery and lithium primary battery 32 are that spendable state does not insert universal battery (impelling the user to note using the mechanism of the method for using of universal battery).
Fig. 7 is that the remote controller of expression remote controller 5 sends the figure of the structure of acceptance division 13.Fig. 7 is the figure that observes remote controller 5 from arrow A direction shown in Figure 2.Remote controller sends acceptance division 13 and possesses infrared ray photo detector 21 and infrared light-emitting diode 22.In addition, remote controller send acceptance division 13 near be equipped with the room temperature thermistor 23 that detects room temperature so that room temperature that can detection at any time remote controller 5 peripheries.
Fig. 8 is the circuit diagram of the control structure of expression remote controller 5.Remote controller 5 possesses the whole microcomputer 30 of control.Attended operation button 10, liquid crystal display picture (LCD module) 11 and transtation mission circuit 31 on microcomputer 30.
From lithium primary battery 32 and 12 pairs of microcomputer 30 supply capabilities of solar cell.The diode 43 that lithium primary battery 32 is connected in parallel through battery diverter switch 20, diode 41, booster circuit 42, with booster circuit 42 and diode 44 is connected with microcomputer 30 and to microcomputer 30 supply capabilities (first power supply circuit).
In addition, because the big electric current that transtation mission circuit 31 flows about 500mA, therefore by lithium primary battery 32 direct supply capabilities.The influence that descends for the voltage that does not receive the lithium primary battery 32 that transtation mission circuit 31 brings, with first power supply circuit that microcomputer 30 is connected on use booster circuit 42.
Solar cell 12 is connected with microcomputer 30 through capacitor 51, adjuster 52, battery diverter switch 20, the diode 53 of charging usefulness, and to microcomputer 30 supply capabilities (second power supply circuit).Constitute diode OR circuit (ダ イ オ one De オ ア loop) 50 by diode 44 and diode 53, from a high direction microcomputer 30 supply capabilities of the service voltage of lithium primary battery 32 or solar cell 12.
Battery diverter switch 20 has six terminal a, b, c, d, e, f, each terminal and and the slide switch 20a of each termination contact between be effective antirust golden contact, become and can switch double circuit structure (double circuit two point) simultaneously.
Shown in Figure 8 " usually; Do not place universal battery " state under, battery diverter switch 20 is by slide switch 20a splicing ear b and terminal c, and splicing ear e and terminal f.Promptly, to microcomputer 30 because terminal b is connected with terminal c, can supply with electric power from solar cell 12, owing to terminal e is connected with terminal f, can supply with electric power from lithium primary battery 32.
As shown in Figure 8, being used to make the electric power of remote controller 5 work is main power source with lithium primary battery 32, and and supplies with solar cell 12 ground.In addition, as shown in Figure 8 usually, battery socket 15 is empty state.
The effect of this structure is following: high in 5 the indoor illumination of using a teleswitch; Can fully guarantee under the situation of energy output of solar cell 12; The load current of the microcomputer 30 the when part of solar cell 12 burden load currents, for example standby mode; Do not supply with electric power, to prolong the battery life of lithium primary battery 32 from lithium primary battery 32.
And in order to prolong the battery life of lithium primary battery 32, microcomputer 30 is controlled as follows: do not use a teleswitch 5 o'clock, when being standby mode, stop the demonstration of liquid crystal display picture 11, alleviate load current.
At this, with regard to the setting that changes to standby mode, thereby the situation through for example detecting the input that did not have action button 10 at three hours etc., unused state changes to standby mode.In addition, the setting that changes to standby mode is not limited to three hours, also can by sky units such as a day, two days, three days hour or a minute unit set, in a word,, and change energy saver mode into and get final product as long as guarantee user's convenience.
In addition, also can be with the variation of the static capacity that can detect remote controller 5, just can detect the transformation that have or not come setting standby mode of mode whether staff contacts with remote controller 5 through detecting.In addition, also can on remote controller 5, lid be set, utilize the transformation of the switching setting standby mode of lid.
In addition; Make with lithium primary battery 32 be main power source and and the energy output of, solar cell 12 low in the illumination of supposing the room not under very the situation with the structure of solar cell 12; Can not cause restriction, thereby realize user's convenience to greatest extent because of remote controller 5 can't use the use to air conditioner 1.
In addition, usually,,,, therefore need reduce charging current as far as possible because restriction is arranged although allow a spot of charging current about lithium primary battery.Therefore, the structure of the circuit shown in Figure 8 of this execution mode is: also with lithium primary battery 32 and solar cell 12 time, charging current does not flow to lithium primary battery 32 from solar cell 12.
< situation of using universal battery is described >
As stated, even use the big lithium primary battery 32 of current capacities, also must there be battery useful life by the remote controller 5 of lithium primary battery 32 and solar cell 12 supply capabilities.Under the situation of imagination, in the life span of air conditioner 1, suppose lithium primary battery 32 overdischarge at usage frequency.
Yet, generally, need more special technology owing to be built in the battery altering of the lithium primary battery 32 in the remote controller 5, therefore need avoid general user to carry out battery altering.
Therefore, in this execution mode, make the structure of the universal battery that can carry alkaline manganese battery etc.Promptly, as shown in Figure 6, make the structure that can on battery socket 15, insert universal batteries such as alkaline manganese battery.When inserting universal battery, switch the switch of battery diverter switch 20, switch connecting circuit, will supply with the electric power that switches to from universal battery from the electric power of lithium primary battery 32 and solar cell 12 and supply with.
Fig. 9 and Figure 10 are the figure that expression is inserted into universal battery 33 15 o'clock circuit structure of battery socket.
Fig. 9 representes the state of the battery diverter switch 20 that lithium primary battery 32 and solar cell 12 are connected with microcomputer 30.
Figure 10 representes the state of the battery diverter switch 20 that universal battery 33 is connected with microcomputer 30.
Under the state of " when placing universal battery " shown in Figure 9, battery diverter switch 20 is by slide switch 20a splicing ear b and terminal c, and splicing ear e and terminal f.Promptly, to microcomputer 30 because terminal b is connected with terminal c, can supply with electric power from solar cell 12, owing to terminal e is connected with terminal f, can supply with electric power from lithium primary battery 32.
Under the state of " when using universal battery " shown in Figure 10, battery diverter switch 20 is through slide switch 20a splicing ear a and terminal b after switching, and splicing ear d and terminal e.Promptly, since terminal d be connected with terminal e, can only supply with electric power (the 3rd power supply circuit) to microcomputer 30 from universal battery 33.Just, this occasion, because terminal a is connected with terminal b, solar cell 12 becomes the state that is not connected with microcomputer 30, terminal f becomes unconnected state, so lithium primary battery 32 also becomes the state that is not connected with microcomputer 30.
Its result, solar cell 12 and the be connected to become state that fully cut off of lithium primary battery 32 to microcomputer 30.
In addition, also can battery diverter switch 20 be configured to: when in battery socket 15, inserting universal battery 33, automatically switch to the universal battery 33 of insertion from solar cell 12 and lithium primary battery 32.In this case, can further improve user's convenience.
In addition, universal batteries such as alkaline manganese battery 33 are different with lithium primary battery 32, do not allow charging current fully.Therefore, promptly use diode etc. to prevent that electric current from leaking and to prevent leakage current fully.Therefore, in this execution mode, when using universal battery 33, cut off the circuit of lithium primary battery 32 and solar cell 12 fully, thereby can prevent that charging current from flowing in universal battery 33 through using battery diverter switch 20.
In addition, battery diverter switch 20 is made and is switched double circuit structure simultaneously, and makes the double circuit structure of switching circuit that is connected with lithium primary battery 32 and the circuit that is connected with solar cell 12 simultaneously, thereby can prevent misoperation.
In addition; When lithium primary battery 32 has surplus common, with regard to the lithium primary battery in being built in remote controller 5 32, because by the part of solar cell 12 burden loads; And when standby mode, stop the demonstration of liquid crystal display picture 11; Suppress current sinking lower, thereby can overdischarge at long time, spendable state can be kept.Therefore, insert chance that universal battery 33 uses for having passed through after the long time.
In addition, usually, diverter switch is because docking point carries out switch; Thereby regenerate, in this execution mode, as stated mechanically, electric; Can realize the long lifetime of lithium primary battery 32, use the frequency of battery diverter switch 20 extremely low, the moment of use also is after having passed through long time; Can't expect that contact opens and closes the contact regeneration that obtains, and might cause contact bad because of contact gets rusty.This contact in air salinity many coastal areas of swimming of getting rusty are even more serious, in this execution mode, on battery diverter switch 20, use rustless golden contact to realize antirust.
In addition, why to use lithium primary battery 32 be in order can to realize high capacity, can to alleviate user's financial burden less expensively to being built in primary cell in the remote controller 5.In addition, about suitable selection, even use the primary cell beyond the lithium also can obtain same effect to built-in primary cell.
In addition; When using universal battery 33; Through in advance in battery socket 15 folding and unfolding put down in writing the attention label 35 of the method for using of the battery diverter switch 20 of switching power supply circuit; Thereby, misplug situation for lithium primary battery 3 spendable states into universal battery although can prevent to user's method for using of correctly passing on.And, when after lithium primary battery 32 overdischarge, using universal battery, owing to noticing that record on the label 35 is used to switch the method for using of the battery diverter switch 20 of battery, can promote correctly to operate in advance.
Figure 11 representes not insert as comparative example the structure of power change-over switch 20 and the battery socket 15 that inserts universal battery 33.
According to this execution mode, even the built-in primary cell that is difficult to change can be changed the structure of battery (universal battery) simply through additional user; Thereby can improve availability; And can continue to use a teleswitch result, effective life long-term that can realize air conditioner.
In addition, can constitute the long-term of the effective life of realizing being built in the primary cell in the remote controller, and can change battery, improve availability and consider the remote controller of earth environment.
Symbol description
The 1-air conditioner, 2-indoor set, 3-off-premises station, 4-connecting pipings, 5-remote controller; The indoor transmission acceptance division of 7-, the 10-action button, the 11-liquid crystal display picture (the LCD module: indication mechanism), 12-solar cell (solar panel), the 13-remote controller sends acceptance division; 15-battery socket (insert mechanism), 16,17,18, the 19-cell connection terminal, 20-battery diverter switch (switching mechanism), 21-infrared ray photo detector; The 22-infrared light-emitting diode, 23-room temperature thermistor, 30-microcomputer (controlling organization), 31-transtation mission circuit; The 32-lithium primary battery, the 33-universal battery, 35-notes label, 41,43,44, the 53-diode; The 42-booster circuit, 50-diode OR circuit, 51-capacitor, 52-adjuster.

Claims (12)

1. remote controller, built-in primary cell possesses the solar cell with this primary cell and usefulness, it is characterized in that possessing:
Universal battery is inserted into the insertion mechanism in the above-mentioned remote controller, and
Above-mentioned primary cell and above-mentioned solar cell are switched to the battery switching mechanism of above-mentioned universal battery.
2. remote controller according to claim 1 is characterized in that,
Above-mentioned insertion mechanism is the battery socket that can insert above-mentioned universal battery.
3. remote controller according to claim 1 is characterized in that,
Above-mentioned battery switching mechanism is the switch that above-mentioned primary cell and above-mentioned solar cell is switched to above-mentioned universal battery.
4. remote controller according to claim 1 is characterized in that,
Above-mentioned battery switching mechanism is the switch that second power supply circuit that first power supply circuit that above-mentioned primary cell is connected is connected with solar cell switches to the 3rd power supply circuit that above-mentioned universal battery connects.
5. remote controller according to claim 1 is characterized in that,
Above-mentioned battery switching mechanism is the double circuit double contact switch of second power supply circuit that is connected with above-mentioned solar cell of first power supply circuit that cuts off above-mentioned primary cell simultaneously and connected.
6. remote controller according to claim 1 is characterized in that,
Near above-mentioned battery socket, be provided with above-mentioned switch.
7. remote controller according to claim 1 is characterized in that,
When above-mentioned battery switching mechanism is inserted in the above-mentioned insertion mechanism at universal battery, above-mentioned primary cell and above-mentioned solar cell are switched to above-mentioned universal battery.
8. remote controller according to claim 7 is characterized in that,
When above-mentioned battery switching mechanism is inserted in the above-mentioned insertion mechanism at universal battery, above-mentioned primary cell and above-mentioned solar cell are forcibly switched to above-mentioned universal battery.
9. remote controller according to claim 1 is characterized in that,
Be provided with when above-mentioned universal battery is inserted in the above-mentioned insertion mechanism mechanism that impels the method for using when noting using universal battery.
10. remote controller, built-in primary cell possesses the solar cell with this primary cell and usefulness, it is characterized in that possessing:
The indication mechanism that shows the content of operation of above-mentioned remote controller; And
Controlling organization, this controlling organization above-mentioned remote controller predetermined during under the untapped situation, carry out the control that changes to standby mode, when being converted to this standby mode, stop the control of the demonstration of above-mentioned indication mechanism.
11. according to each described remote controller in the claim 3~6, it is characterized in that,
The contact of above-mentioned switch uses golden contact.
12. a remote controller, built-in primary cell possesses the solar cell with this primary cell and usefulness, it is characterized in that,
Possess universal battery be inserted into the insertion mechanism in the above-mentioned remote controller,
During above-mentioned primary cell overdischarge; Cut off second power supply circuit that first power supply circuit that above-mentioned primary cell connects is connected with above-mentioned solar cell, connect the 3rd power supply circuit that universal battery connected that is inserted in the above-mentioned insertion mechanism.
CN201080036670.9A 2009-09-09 2010-02-19 Remote controller Active CN102474676B (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP2009-208565 2009-09-09
JP2009208565A JP5135309B2 (en) 2009-09-09 2009-09-09 Remote controller
PCT/JP2010/052529 WO2011030574A1 (en) 2009-09-09 2010-02-19 Remote controller

Publications (2)

Publication Number Publication Date
CN102474676A true CN102474676A (en) 2012-05-23
CN102474676B CN102474676B (en) 2015-10-14

Family

ID=43732251

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201080036670.9A Active CN102474676B (en) 2009-09-09 2010-02-19 Remote controller

Country Status (5)

Country Link
JP (1) JP5135309B2 (en)
KR (1) KR101396757B1 (en)
CN (1) CN102474676B (en)
TW (1) TWI459682B (en)
WO (1) WO2011030574A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110621277A (en) * 2017-05-26 2019-12-27 八乐梦床业株式会社 Control device and electric furniture

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012125026A (en) * 2010-12-07 2012-06-28 Rhythm Watch Co Ltd Power supply device employing solar battery
JP2013243463A (en) * 2012-05-18 2013-12-05 Daikin Ind Ltd Wireless remote controller
JP6982502B2 (en) * 2018-01-11 2021-12-17 Fdk株式会社 Terminal structure

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2100109U (en) * 1990-09-08 1992-04-01 王兆荣 Double-power driven fan-type sunshade hat
CN2535728Y (en) * 2002-03-28 2003-02-12 徐跃进 Solar telecontroller
US7111967B2 (en) * 2004-08-26 2006-09-26 Terry Dennis T Hub light
CN101106286A (en) * 2006-09-20 2008-01-16 梁月华 Remote controller for solar charging appliance
CN201017333Y (en) * 2006-12-27 2008-02-06 白世藻 Solar long distance RF IC card
CN201117102Y (en) * 2007-11-14 2008-09-17 中国华录集团有限公司 Remote controller employing solar energy to supplying power

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS60135039U (en) * 1984-02-17 1985-09-07 株式会社東芝 power supply
JP2627300B2 (en) * 1988-03-14 1997-07-02 三洋電機株式会社 Power supply circuit
JPH04325840A (en) * 1991-04-26 1992-11-16 Sharp Corp Battery driven electronic appliance
JPH0511750U (en) * 1991-07-22 1993-02-12 ソニー株式会社 Electronic equipment
US5387858A (en) * 1992-02-27 1995-02-07 Academy Of Applied Science Energy-conserving multiple power source and method for battery-operated products
KR930021016A (en) * 1992-03-17 1993-10-20 이헌조 Remote control position detection circuit by differentiation of illuminance
JP3156404B2 (en) * 1992-12-14 2001-04-16 松下電器産業株式会社 Transceiver
JPH07240968A (en) * 1994-02-25 1995-09-12 Matsushita Electric Ind Co Ltd Wireless remote controller
KR19980026910A (en) * 1996-10-12 1998-07-15 석은숙 Remote control power supply
KR20000003258A (en) * 1998-06-26 2000-01-15 전주범 Remote controller having inner charging device
KR20050123278A (en) * 2004-06-24 2005-12-29 공상혁 Remote control of used a solar battery

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2100109U (en) * 1990-09-08 1992-04-01 王兆荣 Double-power driven fan-type sunshade hat
CN2535728Y (en) * 2002-03-28 2003-02-12 徐跃进 Solar telecontroller
US7111967B2 (en) * 2004-08-26 2006-09-26 Terry Dennis T Hub light
CN101106286A (en) * 2006-09-20 2008-01-16 梁月华 Remote controller for solar charging appliance
CN201017333Y (en) * 2006-12-27 2008-02-06 白世藻 Solar long distance RF IC card
CN201117102Y (en) * 2007-11-14 2008-09-17 中国华录集团有限公司 Remote controller employing solar energy to supplying power

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110621277A (en) * 2017-05-26 2019-12-27 八乐梦床业株式会社 Control device and electric furniture

Also Published As

Publication number Publication date
CN102474676B (en) 2015-10-14
TWI459682B (en) 2014-11-01
JP5135309B2 (en) 2013-02-06
KR20120048637A (en) 2012-05-15
TW201119183A (en) 2011-06-01
WO2011030574A1 (en) 2011-03-17
JP2011061467A (en) 2011-03-24
KR101396757B1 (en) 2014-05-16

Similar Documents

Publication Publication Date Title
CN102113192B (en) Multipurpose portable storage and supply system
JP4845866B2 (en) Power supply for terminal network controller
WO2004031929A1 (en) Electronic apparatus having fuel cell with secondary battery, portable computer incorpating said electronic apparatus, and method of utilizing the same
US20090265570A1 (en) Battery structure of portable electronic device
EP3934055A1 (en) Intelligent portable energy storage system interlinked with uninterruptible power supply
JP6160383B2 (en) Power control system using secondary battery
CN102474676A (en) Remote controller
CN202602341U (en) Digital display portable power source
JP2009504124A (en) Apparatus and method for charging first battery with second battery
KR20190137246A (en) A DC-DC converter for photovoltaic linked energy storage system and control method thereof
KR101549172B1 (en) Battery management apparatus assembly and Battery management apparatus applied for the same
CN201742147U (en) Mobile backup power supply device with power supply management function
CN213817282U (en) Battery management system and battery pack
KR101826836B1 (en) Portable multi power supply apparatus
CN202616806U (en) Low voltage power supply system capable of realizing air-conditioning photovoltaic system power supply standby
CN201742144U (en) Mobile standby power supply unit
KR20120042080A (en) Bag having solar battery for charging mobile device
CN114285128A (en) Outdoor equipment power supply control circuit, outdoor equipment power supply system and outdoor equipment
CN101022623A (en) Hand electronic device power supply device
CN202261105U (en) Solar power generation device and waiting station including same
CN201584795U (en) Portable device with super-capacitor
JP2007267469A (en) Portable tool for emergency/disaster
CN214543750U (en) Novel precious equipment that charges
CN104977843A (en) Watch
CN219627946U (en) Solar lighting device powered by double batteries

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: Tokyo, Japan, Japan

Patentee after: Hitachi Global Living Program Co., Ltd.

Address before: Tokyo, Japan, Japan

Patentee before: Hitachi Household Electric Appliance Co.

CP01 Change in the name or title of a patent holder
TR01 Transfer of patent right

Effective date of registration: 20211025

Address after: Tokyo, Japan

Patentee after: HITACHI-JOHNSON CONTROLS AIR CONDITIONING, Inc.

Patentee after: Hitachi Global Living Program Co.,Ltd.

Address before: Tokyo, Japan

Patentee before: Hitachi Global Living Program Co.,Ltd.

TR01 Transfer of patent right