WO2014192324A1 - Chargeur pour téléphone mobile - Google Patents

Chargeur pour téléphone mobile Download PDF

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Publication number
WO2014192324A1
WO2014192324A1 PCT/JP2014/051069 JP2014051069W WO2014192324A1 WO 2014192324 A1 WO2014192324 A1 WO 2014192324A1 JP 2014051069 W JP2014051069 W JP 2014051069W WO 2014192324 A1 WO2014192324 A1 WO 2014192324A1
Authority
WO
WIPO (PCT)
Prior art keywords
storage battery
power
circuit
rectifier
charger
Prior art date
Application number
PCT/JP2014/051069
Other languages
English (en)
Japanese (ja)
Inventor
光典 歌田
昌弘 大橋
Original Assignee
株式会社西日本エイテック
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 株式会社西日本エイテック filed Critical 株式会社西日本エイテック
Publication of WO2014192324A1 publication Critical patent/WO2014192324A1/fr

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J9/00Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting
    • H02J9/04Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source
    • H02J9/06Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems
    • H02J9/062Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems for AC powered loads
    • 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
    • H02J7/342The other DC source being a battery actively interacting with the first one, i.e. battery to battery charging

Definitions

  • the present invention relates to a mobile phone charging device that is installed at an evacuation site in the event of a disaster and can charge a mobile phone even in the event of a power failure.
  • a power plug inserted into a commercial AC power outlet provided in an evacuation site and a commercial AC power supplied from the power plug are set to a predetermined DC voltage.
  • a power supply device for a mobile phone comprising: a plurality of external connection lines for taking out the output to the outside; and a male connector provided at the tip of each of the plurality of external connection lines and inserted into a signal power supply connector of the mobile phone Is disclosed.
  • Patent Document 2 a casing that can be installed outdoors and a solar cell panel that receives sunlight and generates DC power are provided separately.
  • a battery for storing the DC power of the panel via the charge control means and an inverter for converting the DC power of the battery into AC power are provided, and a plurality of different types of mobile phones are connected to the mobile phone charger connected to the inverter.
  • An independent charging power source is disclosed in which a telephone connection connector is led outside the casing.
  • Patent Document 1 or Patent Document 2 uses a commercial AC power source, a wind power generator, or a solar panel as a power source, a power failure occurs due to a disaster such as an earthquake, and the mobile phone is turned off at night. There was a problem that it could not be used as a charging facility.
  • the present invention was devised in view of these problems, and a mobile phone charging device that can charge a mobile phone even during a power outage, no wind, at night in a public evacuation site at the time of disaster, and is easily noticed by the refugee even in the dark.
  • the issue is to provide.
  • the mobile phone charging device 1 includes a housing 3 installed in a park or building as an evacuation site and used as a facility tool, a power cord 6 having a plug connected to a commercial AC power source, A rectifier 7 provided in the housing 3 for converting commercial AC power from the commercial AC power source into DC power, a power failure detection unit 8 for detecting power reception or power failure of the commercial AC power source, and the housing 3
  • a storage battery 2 which is installed inside and is connected to a circuit with the rectifier 7 when receiving a commercial AC power supply and charged by the commercial AC power supply, and which is disconnected from the circuit with the rectifier 7 in the event of a power failure;
  • a lighting fixture 5 which is disposed on the outer wall surface and is turned off by turning off the circuit with the storage battery 2 when receiving a commercial AC power supply, and is turned on by a discharge from the storage battery 2 by being connected to the circuit with the storage battery 2 at the time of a power failure.
  • the circuit is arranged on the wall surface, connected to the circuit with the rectifier 7 when receiving a commercial AC power source, and connected to the circuit with the storage battery 2 in the event of a power outage by energizing the commercial AC power source through the rectifier 7.
  • the battery 4 that charges the battery of the mobile phone 20 during power reception and power outage due to discharge from the storage battery 2, and the circuit between the rectifier 7 and the battery 2 when power reception is detected by the power reception detection unit 8.
  • the circuit between the lighting fixture 5 and the storage battery 2 is cut off, or when the power failure detection of the power failure detection unit 8 is detected, the circuit between the rectifier 7 and the storage battery 2 is cut off and the lighting fixture 5 and the
  • the first switching means 9 for connecting the circuit with the storage battery 2 and the circuit for the charger 4 and the rectifier 7 are connected when the power reception detection of the power failure detection unit 8 is detected, and the charger 4 and the storage battery 2 are connected.
  • the mobile phone charging device 1 according to claim 2 is characterized in that, in claim 1, the storage battery 2 is a used storage battery 2.
  • the mobile phone charging apparatus 1 connects the storage battery 2 side terminal to the rectifier 7 side terminal or the charger 4.
  • the form which consists of the 1st changeover switch 11 switched by the said lighting fixture 5 side terminal, or the 1st on-off switch 13 which turns on and off the connection between the said storage battery 2 side terminal and the said rectifier 7 side terminal, and the said storage battery 2 side terminal and the said The second on / off switch 14 is used to turn on / off the connection between the lighting equipment side terminals, and the second switching means 10 connects the charger 4 side terminal to the rectifier 7 side terminal or the storage battery 2. It is the form of the 2nd changeover switch 12 switched by a side terminal.
  • the mobile phone charging device 1 according to claim 4 is the mobile phone charging device 1 according to any one of claims 1 to 3, wherein the casing 3 is a public place such as a park, a hospital waiting room, an accommodation facility, a large retail store, or a school. It is a bench or sofa, or a counter in an accommodation or hospital.
  • the casing 3 is a public place such as a park, a hospital waiting room, an accommodation facility, a large retail store, or a school. It is a bench or sofa, or a counter in an accommodation or hospital.
  • the mobile phone charging device 1 can charge the mobile phone 20 at the time of receiving power, at the time of disaster, power outage, no wind, and at night, and a plurality of chargers 4 can be installed. Thus, it is possible to charge the plurality of mobile phones 20 even during a power failure, no wind, or at night.
  • the mobile phone charging device 1 according to claim 2 has the same effect as that of claim 1, and uses a storage battery that is no longer suitable for use as a storage battery 2 installed in the mobile phone charging device 1 due to deterioration. Since it is used for a new application as a power source of the mobile phone charging device 1 according to the present invention, there is an effect that the used storage battery 2 that is normally discarded is reused. There is an effect that the installation cost is reduced compared to the installation.
  • the mobile phone charging device 1 according to claim 3 has the same effect as that of claim 1 or 2.
  • the mobile phone charging device 1 according to claim 4 has the same effects as any one of claims 1 to 3, and is used daily as a bench or sofa in a park, a waiting room of a hospital, an accommodation facility, a commercial facility, or a school. Or, since it is used as an accommodation facility or a hospital counter, a space as a charging facility for the mobile phone 20 is not ensured, and an effect of effective use of the space is obtained.
  • the mobile phone 20 can be charged even when receiving power, some evacuees remember where the mobile phone 20 can be charged by using the power, and the evacuees settle down and charge the mobile phone 20. The effect of being able to do.
  • FIG. 1 is a schematic diagram of a mobile phone charging device according to the present invention using a housing as a bench. It is explanatory drawing of the circuit of a mobile telephone charging device, Comprising: (a) is the time of receiving commercial alternating current power, (b) is explanatory drawing which shows the time of a power failure of commercial alternating current power. It is explanatory drawing of the circuit of a mobile telephone charging device, Comprising: (a) is the time of receiving commercial alternating current power, (b) is explanatory drawing which shows the time of a power failure of commercial alternating current power.
  • the mobile phone charging device 1 of the present invention is a public place such as a park, a hospital waiting room, an accommodation facility, a large retail store or a school, which serves as an evacuation site in the event of a disaster. Installed inside the counter.
  • the mobile phone charging device 1 of the present invention includes a housing 3 installed in a park or building as an evacuation site and used as a facility tool, a power cord 6 having a plug connected to a commercial AC power source, and the housing 3, a rectifier 7 that converts commercial AC power from the commercial AC power source into DC power, a power failure detection unit 8 that detects power reception or power failure of the commercial AC power source, A storage battery 2 that is connected to a circuit with the rectifier 7 at the time of receiving a commercial AC power supply and charged by the commercial AC power supply, and is disconnected from the circuit with the rectifier 7 at the time of a power failure;
  • the lighting fixture 5 that is disposed and shuts off the circuit with the storage battery 2 when receiving a commercial alternating-current power supply, is connected to the circuit with the storage battery 2 at the time of a power failure, and is turned on by discharge from the storage battery 2;
  • the outer wall surface of the housing 3 The circuit is connected to the rectifier 7 when the commercial AC power is received, and the circuit is connected to the storage
  • the charger 4 that charges the battery of the mobile phone 20 during power reception and power outage due to discharge from the battery, and when the power reception detection of the power reception detection unit 8 is detected, the circuit of the rectifier 7 and the storage battery 2 is connected and The circuit between the luminaire 5 and the storage battery 2 is cut off, or the circuit between the rectifier 7 and the storage battery 2 is cut off and the luminaire 5 and the storage battery 2 are cut off when the power failure detection unit 8 detects a power failure.
  • the first switching means 9 for connecting the circuit and the power receiving detection of the power failure detection unit 8 are connected to the circuit of the charger 4 and the rectifier 7 and between the charger 4 and the storage battery 2 Shut off the circuit or detect the power failure When the 8 power failure detection and a second switching means 10 for connecting the circuit of said blocking circuit the charger 4 and the rectifier 7 and with the charger 4 and the battery 2.
  • the power cord 6 extends from the inside of the casing 3 such as a bench or a counter to the outside, and the rectifier 7, the storage battery 2, the power failure detection unit 8, the first switching means 9, and the second switching means 10 are included in the casing 3.
  • the lighting fixture 5 and the charger 4 are disposed on the outer wall of the housing 3.
  • One end of the power cord 6 is connected by inserting a plug into an outlet that is a commercial AC power source installed in a building or the like, and the other end is connected to a rectifier 7 in the housing 3.
  • a commercial AC power source installed in a building or the like
  • commercial AC power can be applied to the rectifier 7 provided in the housing 3.
  • the rectifier 7 is a power converter that converts commercial AC power into DC power.
  • the rectifier 7, the storage battery 2 and the charger 4 are connected to each other, and the commercial AC power is interrupted.
  • the circuit of the rectifier 7, the storage battery 2 and the charger 4 is cut off.
  • the storage battery 2 is installed in the housing 3, and either a new storage battery 2 or a used storage battery 2 may be used. When the used storage battery 2 is used, the installation cost and the like can be reduced. it can.
  • the storage battery 2 is charged by, for example, floating charging from commercial AC power through the rectifier 7 when receiving power, and is discharged at the time of a power failure due to a disaster or the like, and becomes a power source for the mobile phone 20 or the lighting fixture 5.
  • the charger 4 is an instrument for charging the battery of the mobile phone 20 installed on the outer surface of the housing 3 such as a bench, a sofa, or a counter, and when receiving power, by energizing the commercial AC power through the rectifier 7, At the time of a power outage such as a disaster, the mobile phone 20 can be charged by the discharge from the storage battery 2 regardless of whether it is a power outage or during a disaster, day or night. Further, for example, 10 to 80 chargers 4 can be installed depending on the size of the housing 3 such as a bench, and it is easy to cope with the influx of those who want to charge the mobile phone 20. .
  • the lighting device 5 is installed on the outer surface of the housing 3 such as a bench, a sofa, or a counter, and does not light up when receiving power, but lights up due to discharge from the storage battery 2 during a power failure such as a disaster, and at the time of power failure and at night Even if it exists, the presence of the housing 3 such as a bench can be easily seen, and the surrounding darkness is brightened.
  • the light source of the luminaire 5 is not limited to the type of the light source as long as it is turned on by the discharge of the storage battery 2. For example, there are a light emitting diode, an organic EL, a fluorescent lamp, an incandescent lamp, and the like.
  • the power failure detection unit 8 is a means for detecting whether the mobile phone charging device 1 is receiving commercial AC power or whether the commercial AC power is a power failure. This is transmitted to the second switching means 10 by a control device or the like.
  • the first switching means 9 is connected between the rectifier 7 and the storage battery 2 and connected between the storage battery 2 and the lighting fixture 5 when receiving power from the commercial AC power source to the rectifier 7 in the mobile phone charger 1.
  • the first switch 11 shown in FIG. 2 or the combination of the first on / off switch 13 and the second on / off switch 14 shown in FIG. 3 may be used.
  • the second switching means 10 is connected to the rectifier 7 and the charger 4 and cuts off between the rectifier 7 and the storage battery 2 when receiving power from the commercial AC power source to the rectifier 7 in the mobile phone charger 1. And a circuit in which the storage battery 2 and the charger 4 are connected and the rectifier 7 and the charger 4 are disconnected during a power failure when the rectifier 7 is not energized from the commercial AC power source.
  • the second changeover switch 12 as shown in FIGS.
  • the first switching means 9 When power reception is detected by the power failure detection unit 8, as shown in FIG. 2 (a) or FIG. 3 (a), in the first switching means 9, the first switching with one end connected to the storage battery 2 side terminal.
  • the connection destination of the other end of the switch 11 is switched from the charger 4 and lighting fixture 5 side terminal side to the rectifier 7 side terminal side, or the first on / off switch 13 is turned on to connect the rectifier 7 and the storage battery 2.
  • the state between the rectifier 7 and the storage battery 2 can be energized.
  • the second switching means 10 the second changeover switch 12 is connected between the rectifier 7 and the charger 4 so that the rectifier 7 and the charger 4 can be energized.
  • the charger 4 can be energized from the storage battery 2 by switching the second switch 12 to connect the charger 4 and the storage battery 2. .
  • the charger 4 can charge the mobile phone 20 by discharging from the storage battery 2.
  • the charger 4 can charge the mobile phone 20 even in the event of a power failure due to a disaster or the like, and the charger 4 can maintain the chargeable state of the mobile phone 20 at all times for 24 hours, both during power reception and during a power failure.
  • the lighting device 5 can be energized between the storage battery 2 and the lighting device 5, or the power failure.
  • the storage battery 2 and the luminaire 5 are not energized.
  • the power failure detection unit 8 When power reception is detected by the power failure detection unit 8, for example, by switching the circuit between the storage battery 2 and the luminaire 5 to the cutoff state as shown in FIG.
  • the circuit between the lighting fixture 5 and the storage battery 2 as a power source is cut off so that the light source of the lighting fixture 5 is not turned on.
  • the surroundings of the housing 3 such as a bench, a sofa, or a counter are brightly lit by an outside light, a room light, etc., so that the lighting fixture 5 installed in the housing 3 is turned on. It is not necessary.
  • the first changeover switch 11 switches the circuit between the storage battery 2 and the lighting fixture 5 to the energized state, or FIG.
  • the second on / off switch 14 By turning on the second on / off switch 14 as shown in (b), the circuit between the luminaire 5 and the storage battery 2 is connected, and the light source of the luminaire 5 is turned on.
  • the surroundings of the housing 3 such as the bench can be brightened, and the presence of the charger 4 of the mobile phone 20 can be easily noticed. Can ease the fear of evacuees coming from the dark.
  • a plurality of the lighting fixtures 5 can be installed.
  • the lighting fixture 5 can be installed to brighten the periphery of the charger 4 or to brighten the vicinity of the feet such as a bench.

Abstract

La présente invention concerne un chargeur pour téléphone mobile, comprenant : un logement, utilisé comme outil d'établissement dans une zone d'évacuation ; un cordon d'alimentation électrique ; un redresseur ; un détecteur d'état de distribution d'énergie électrique ; une batterie de stockage ; un outil d'éclairage ; un chargeur ; un premier moyen de commutation servant à connecter un circuit entre le redresseur et la batterie de stockage et à couper un circuit entre l'outil d'éclairage et la batterie de stockage lorsque le détecteur d'état de distribution d'énergie électrique détecte la distribution d'énergie électrique, ou à couper le circuit entre l'outil d'éclairage et la batterie de stockage et à connecter le circuit entre l'outil d'éclairage et la batterie de stockage lorsque le détecteur d'état de distribution d'énergie électrique détecte une panne de courant ; et un second moyen de commutation servant à connecter un circuit entre le chargeur et le redresseur et à couper un circuit entre le chargeur et la batterie de stockage lorsque le détecteur d'état de distribution d'énergie électrique détecte la distribution d'énergie électrique, ou à couper le circuit entre le chargeur et le redresseur et à connecter le circuit entre le chargeur et la batterie de stockage lorsque le détecteur d'état de distribution d'énergie électrique détecte une panne de courant.
PCT/JP2014/051069 2013-05-29 2014-01-21 Chargeur pour téléphone mobile WO2014192324A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2013112753A JP2014233143A (ja) 2013-05-29 2013-05-29 携帯電話充電装置
JP2013-112753 2013-05-29

Publications (1)

Publication Number Publication Date
WO2014192324A1 true WO2014192324A1 (fr) 2014-12-04

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PCT/JP2014/051069 WO2014192324A1 (fr) 2013-05-29 2014-01-21 Chargeur pour téléphone mobile

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JP (1) JP2014233143A (fr)
WO (1) WO2014192324A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017217401A (ja) * 2016-06-10 2017-12-14 株式会社岡村製作所 椅子
JP2017217400A (ja) * 2016-06-10 2017-12-14 株式会社岡村製作所 椅子

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6397304U (fr) * 1986-12-16 1988-06-23
JP3033138U (ja) * 1996-07-03 1997-01-21 クレオ工業株式会社 非常灯付き家具及び非常灯付き机
JP2007043802A (ja) * 2005-08-02 2007-02-15 Tokyo Electric Power Co Inc:The 無停電電源装置及び分電盤
JP3171131U (ja) * 2011-08-04 2011-10-13 株式会社ドウシシャ 無停電源機能付モバイルバッテリー
JP2012109260A (ja) * 2005-11-14 2012-06-07 Hitachi Vehicle Energy Ltd 二次電池システム

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6397304U (fr) * 1986-12-16 1988-06-23
JP3033138U (ja) * 1996-07-03 1997-01-21 クレオ工業株式会社 非常灯付き家具及び非常灯付き机
JP2007043802A (ja) * 2005-08-02 2007-02-15 Tokyo Electric Power Co Inc:The 無停電電源装置及び分電盤
JP2012109260A (ja) * 2005-11-14 2012-06-07 Hitachi Vehicle Energy Ltd 二次電池システム
JP3171131U (ja) * 2011-08-04 2011-10-13 株式会社ドウシシャ 無停電源機能付モバイルバッテリー

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