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    • 2. 发明专利
    • Power conversion system
    • 电力转换系统
    • JP2014183603A
    • 2014-09-29
    • JP2013054607
    • 2013-03-18
    • Sanyo Electric Co Ltd三洋電機株式会社
    • MIYAUCHI HIROSHIANDO TAKASHIMORITA ISAOTAKADA HAJIME
    • H02M3/155G05F1/67H02M7/48
    • PROBLEM TO BE SOLVED: To make it possible to suppress current flowing from a power collection device to a power conversion device while performing MPPT operation of a booster circuit in the power collection device.SOLUTION: A power conversion system comprises: a power collection device 2 for collecting output of a plurality of DC power supplies 1 to output the collected output; and a power conversion device 3 for converting DC power output from the power collection device 2 to AC power to output the AC power. The power conversion device 3 includes a switch 31 on the input side. The power collection device 2 includes booster circuits 21, each of which is connected to output of the DC power supply 1 and each of whose output sides is connected to output of the power collection device 2 through a capacitor C and a switch SW2, where a resistor R is connected in parallel with at least one of switches SW2. The power collection device 2 makes electric charge in the capacitor C flow to the power conversion device 3 through the resistor R when the switch SW2 is cut off and the switch 31 is closed. The switch SW2 is in a conduction state when the power conversion device 3 is during conversion operation; and the booster circuit 21 performs boosting operation when the switch SW2 is in the conduction state.
    • 要解决的问题:在电力采集装置中执行升压电路的MPPT操作的同时,可以抑制从集电装置流向电力转换装置的电流。解决方案:电力转换系统包括:集电装置2 用于收集多个DC电源1的输出以输出所收集的输出; 以及用于将从电力收集装置2输出的直流电力转换为交流电力的电力转换装置3,以输出交流电力。 电力转换装置3包括输入侧的开关31。 集电装置2包括升压电路21,其各自与直流电源1的输出连接,其输出侧通过电容器C和开关SW2与集电装置2的输出连接,其中, 电阻器R与开关SW2中的至少一个并联连接。 当开关SW2被切断并且开关31闭合时,电力收集装置2使电容器C中的电荷通过电阻R流向电力转换装置3。 当电力转换装置3处于转换操作期间,开关SW2处于导通状态; 并且升压电路21在开关SW2处于导通状态时进行升压动作。
    • 5. 发明专利
    • AIR CONDITIONER
    • JP2000121127A
    • 2000-04-28
    • JP29711598
    • 1998-10-19
    • SANYO ELECTRIC CO
    • SARUHASHI KOICHIMIYAUCHI HIROSHI
    • F24F7/10F24F11/02
    • PROBLEM TO BE SOLVED: To provide an air conditioner which can perform the ventilation of a dressing room even in the case that the dressing room is not provided with a fan. SOLUTION: A warm water air conditioner 10 is composed of an indoor machine which consists of indoor units 16 and 18 arranged in an attic space of a bathroom 100 and a dressing room 102 for performing heating, drying, and ventilation, an outdoor machine 14 which is installed outdoors, a main remote controller 104M which is installed at the inwall face within the dressing room 102, a sub remote controller 104S which is installed in the separated place of a kitchen or the like, and others. In the case of performing the ventilation of the dressing room 102, the ventilation of a bathroom 100 is performed, and also the air within the dressing room 102 is circulated. Therefore, the air within the dressing room 102 flows in the direction of an arrow B in the figure, and this air is exhausted from a duct 82 for ventilation, so that interior of the dressing room 102 is ventilated.
    • 6. 发明专利
    • AIR CONDITIONER
    • JPH11193938A
    • 1999-07-21
    • JP36694697
    • 1997-12-26
    • SANYO ELECTRIC CO
    • MIYAUCHI HIROSHISARUHASHI KOICHITAKASHIMA TOSHIOIWASAKA TOSHIHIKO
    • F24F1/00
    • PROBLEM TO BE SOLVED: To provide an air conditioner which can be operated efficiently for both heating and dehumidification. SOLUTION: An auxiliary suction port 50 is formed through the side wall of an enclosure, on the side where arranging interval between a refrigerant-side heat exchanger 11 and a hot water-side heat exchanger 12 is larger by arranging the heat exchangers 11 and 12 in parallel with each other, so that the interval between their upper ends may appropriately become wider. The port 50 is constituted of an opening 55 which communicates indoor unit and outdoor unit of an air conditioner with each other, a flap 54 which opens and closes the opening 55, and a motor 53 which turns the flap 54. When the air conditioner is operated for cooling a room, the air in the room is sucked through a suction port 51 by completely closing the opening 55 and, when operated for heating, the air in the room is suctioned through the auxiliary suction port 50 by fully opening the opening 55. When the air conditioner is operated for dehumidification, the air in the room is sucked through the ports 51 and 50 by opening the opening 55 by a prescribed amount.
    • 7. 发明专利
    • AIR CONDITIONER
    • JPH1073300A
    • 1998-03-17
    • JP22857696
    • 1996-08-29
    • SANYO ELECTRIC CO
    • MIYAUCHI HIROSHIHOSODA SEIICHI
    • F24F11/02
    • PROBLEM TO BE SOLVED: To perform an air conditioning operation to attain a desired set temperature without making any rapid variation of an indoor air temperature. SOLUTION: As a time control mode is selected, a temperature/time gradient, an indoor temperature and a set temperature are read in, a correction target temperature corresponding to the temperature gradient is calculated and set with this correction target temperature being applied as a target temperature (steps 200 to 210). After this operation, the indoor temperature is measured for every predetermined time and as the indoor temperature reaches the target temperature, a new correction target temperature is set (steps 212 to 216). In addition, as this correction target temperature exceeds the set temperature, the set temperature is set to the target temperature to perform an indoor air conditioning operation, and as the indoor air temperature reaches the set temperature, the time control mode is released to complete the operation (steps 218 to 226).
    • 8. 发明专利
    • HEATING APPARATUS
    • JPH09318084A
    • 1997-12-12
    • JP13922796
    • 1996-05-31
    • SANYO ELECTRIC CO
    • SATOU TAKUMASAMIYAUCHI HIROSHI
    • F24D3/00F24D19/10
    • PROBLEM TO BE SOLVED: To realize energy saving by providing a control means for controlling a heating medium according to presence or absence of a human being detected by a detector for detecting presence or absence of the human being on a heating apparatus. SOLUTION: A heating apparatus 1 comprises hot water mats (floor heating apparatus) 4A, 4B, an indoor unit 3 and an outdoor unit 2, and the outdoor unit 2 comprises a heat source device 2A and an air conditioner outdoor unit 2B. Room air is heated by a heat exchanger 21 and a room is heated from a floor by means of the hot water mats 4A, 4B. When floor heating is started opening, a human-detector 41 is operated. If absence of the human being on the hot water 4A is detected, valve travel of a thermal valve 38 for allowing hot water to flow to the hot water mat 4A becomes small to reduce supply of the hot water. If presence of the human being is detected, supply of the hot water to the hot water mat 4A is continued. Then, presence or absence of the human being on the hot water mat 4A is detected to effect the same control. Thus, because supply of the hot water is controlled according to presence or absence of the human being on the hot water mat, heat of the floor heating apparatus can be saved.
    • 9. 发明专利
    • Power storage system
    • 电力储存系统
    • JP2014011875A
    • 2014-01-20
    • JP2012146476
    • 2012-06-29
    • Sanyo Electric Co Ltd三洋電機株式会社
    • ANDO TAKASHIHIRATA TOSHIYUKITAKADA HAJIMEMIYAUCHI HIROSHIFUNAKOSHI TOMOHIDESEKINE TSUYOSHI
    • H02J3/32H02J3/46H02J7/35
    • Y02E70/30
    • PROBLEM TO BE SOLVED: To provide a power storage system for suppressing interruption of power supply from an inverter device to a load while the inverter device is in autonomous operation.SOLUTION: A power storage system 3 having a storage battery 30 connected to a power transmission line 7 for connecting a DC power supply 1 for outputting DC power and an inverter device 2 for converting the DC power to AC power and superimposing the AC power on a system 5 has: a first mode in which charging the storage battery 30 through the power transmission line 7 is possible when the DC power is output from the DC power supply 1, while the inverter device 2 is superimposing the AC power on the system 5; and a second mode in which charging the storage battery 30 is inhibited, while the inverter device 2 does not superimpose the AC power on the system 5 and is supplying the AC power to a load 6.
    • 要解决的问题:提供一种用于在逆变器装置处于自主操作中时抑制从逆变器装置到负载的电力供应中断的蓄电系统。解决方案:具有连接到电力传输的蓄电池30的蓄电系统3 用于连接用于输出DC电力的DC电源1的线路7和用于将DC电力转换为AC电力并将AC电力叠加在系统5上的逆变器装置2具有:通过电力对蓄电池30充电的第一模式 当直流电源从直流电源1输出,而逆变器装置2将AC电力叠加在系统5上时,传输线7是可能的; 并且在逆变器装置2没有将AC电力叠加在系统5上并且向负载6供给AC电力的同时禁止对蓄电池30充电的第二模式。
    • 10. 发明专利
    • Photovoltaic generating set
    • 光伏发电机组
    • JP2005261082A
    • 2005-09-22
    • JP2004069245
    • 2004-03-11
    • Sanyo Air Conditioners KkSanyo Electric Co Ltd三洋エアコンディショナーズ株式会社三洋電機株式会社
    • MIYAUCHI HIROSHITAKADA HAJIME
    • H01L31/04H02H11/00H02M3/155
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To surely protect a converter from miswirings, when connecting a solar panel to the converter. SOLUTION: A protection circuit 124 is arranged at the converter to which the solar panel is connected. When DC power is inputted so that an input terminal 126A is negative and an input terminal 126B is positive in terms of poles, a photocoupler 132 is turned on and a relay coil 134A is excited, whereby the protection circuit 124 performs polarity conversion by using a diode bridge 130. When the DC power is inputted at the proper polarity of the protection circuit 124, the photocoupler is turned on. By this, since the DC power is outputted not through the diode bridge, unnecessary power consumption and heat generation are surely prevented. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:当将太阳能电池板连接到转换器时,确保保护转换器不受歧视。

      解决方案:保护电路124布置在太阳能电池板连接到的转换器处。 当输入直流电源使得输入端子126A为负极,并且输入端子126B为极点时,光电耦合器132导通,并且继电器线圈134A被激励,由此保护电路124通过使用 二极管电桥130.当以保护电路124的适当极性输入直流电力时,光电耦合器被接通。 由此,由于不是通过二极管桥输出直流电力,所以可以防止不必要的电力消耗和发热。 版权所有(C)2005,JPO&NCIPI