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    • 7. 发明授权
    • Air conditioning apparatus
    • 空调设备
    • US5704219A
    • 1998-01-06
    • US681837
    • 1996-07-29
    • Takahisa SuzukiMitsuo InagakiSadahisa OnimaruYukikatu OzakiToshihiro Nagata
    • Takahisa SuzukiMitsuo InagakiSadahisa OnimaruYukikatu OzakiToshihiro Nagata
    • B60H1/00F25B13/00G05D23/00F25B41/04
    • B60H1/00907B60H2001/00935F25B13/00F25B2400/13F25B2400/23
    • In an air conditioning apparatus employing a heat pump system in which a cooling evaporator and a heating condenser are disposed inside the compartment. A compressor is provided with a gas injection port, a fixed throttle for reducing pressure of refrigerant on high pressure side in a refrigerating cycle to middle pressure, and a gas-liquid separator for separating the middle pressure refrigerant of which pressure is reduced by the fixed throttle. The gaseous refrigerant separated by the gas-liquid separator is introduced into the gas injection port. In a heating operation, the refrigerant circulates through the compressor, the condenser, the fixed throttle, the gas-liquid separator, an expansion valve, an outdoor heat exchanger, and the compressor as a closed circuit, while the gaseous refrigerant separated by the gas-liquid separator is injected into the compressor through the gas injection port. As a result, when the outside air temperature is low, the heating capacity is improved.
    • 在采用其中冷却蒸发器和加热冷凝器设置在隔间内的热泵系统的空调装置中。 压缩机设置有气体注入口,用于将制冷循环至中压的高压侧的制冷剂的压力降低的固定节气门,以及将压力降低了固定的中压制冷剂分离的气液分离器 风门。 由气液分离器分离出的气体制冷剂被引入气体注入口。 在加热运转中,制冷剂作为闭路循环通过压缩机,冷凝器,固定节流阀,气液分离器,膨胀阀,室外热交换器和压缩机,而由气体分离的气体制冷剂 液体分离器通过气体注入口注入压缩机。 结果,当外部空气温度低时,加热能力提高。
    • 8. 发明授权
    • Battery power monitoring apparatus for vehicle
    • 车载电池电量监控装置
    • US5652069A
    • 1997-07-29
    • US566662
    • 1995-12-04
    • Shoji SakaiMitsuo InagakiSadahisa OnimaruHironori Asa
    • Shoji SakaiMitsuo InagakiSadahisa OnimaruHironori Asa
    • G01R31/36B60L3/00B60L11/18G01R31/00H01M10/48H02J7/00
    • G01R31/3648G01R31/006G01R31/3624Y10S320/21
    • A battery power monitoring apparatus for use in an electric automobile is provided. The battery power monitoring apparatus determines the amount of available reserve electric power remaining in a storage battery based on electric power discharged from the storage battery to an electric motor and a battery characteristic stored in a memory, representing a relation between a voltage level at which a given level of current flows from the storage battery and the then discharged electric power. The battery characteristic is updated based on the latest detected voltage of the storage battery and current flowing from the storage battery. The battery power monitoring apparatus determines that charge polarization has occurred when a voltage level of the storage battery from which the given level of current flows is increased, and prohibits the updating of the battery characteristic. With this operation, the amount of available electric power is calculated correctly even under the influence of charge polarization.
    • 提供了一种用于电动汽车的电池电力监视装置。 电池电力监视装置基于从蓄电池放电到电动机的电力和存储在存储器中的电池特性,确定蓄电池中剩余的可用备用电力的量,其表示电池电压 给定电流从蓄电池流出的电流和随后的放电电力。 基于蓄电池的最新检测电压和从蓄电池流出的电流来更新电池特性。 电池电力监视装置确定当给定电流流过的蓄电池的电压电平增加时,发生充电极化,并且禁止更新电池特性。 通过这种操作,即使在充电极化的影响下也可以正确地计算可用电力的量。