AIR CONDITIONER
    43.
    发明申请
    AIR CONDITIONER 有权
    冷气机

    公开(公告)号:US20110232308A1

    公开(公告)日:2011-09-29

    申请号:US13132092

    申请日:2009-01-15

    IPC分类号: F25B49/00 F25B13/00 F25D21/06

    摘要: An air conditioner that can perform defrosting efficiently while heating or the like is continued even if the air conditioner is configured by one outdoor unit is obtained. In an air conditioner in which an outdoor unit having a compressor that pressurizes and discharges a refrigerant, a plurality of outdoor heat exchangers that exchange heat between outside air and the refrigerant, and a four-way valve that switches a channel on the basis of an operation form and a plurality of indoor units, each having an indoor heat exchanger that exchanges heat between the air in a space to be air-conditioned and the refrigerant and an indoor throttle device are connected by a pipeline so as to configure a refrigerant circuit, a bypass pipeline that divides the refrigerant discharged from the compressor so as to allow the refrigerant to flow into each of the outdoor heat exchangers connected in parallel by a pipeline, a plurality of outdoor third opening/closing valves that pass or shut off the refrigerant from the bypass pipeline to each of the outdoor heat exchangers, and a plurality of outdoor second opening/closing valves that pass or shut off the refrigerant from the indoor unit to each of the outdoor heat exchangers are disposed in the outdoor unit.

    摘要翻译: 即使空调器由一个室外机构成,也能够在加热等时能够有效地进行除霜的空调机。 在具有对制冷剂进行加压和排出的压缩机的室外机的空调机中,在外部空气与制冷剂之间进行热交换的多个室外热交换器,以及基于 操作形式和多个室内单元,每个具有室内热交换器,其在被空调空气中的空气与制冷剂之间进行热交换,室内热交换器通过管道连接以构成制冷剂回路, 将从压缩机排出的制冷剂分流的旁通管道,以使制冷剂流入由管路并联连接的各室外热交换器;多个室外第三开闭阀,通过或关闭制冷剂 对每个室外热交换器的旁路管路,以及多个通过或关闭制冷剂的室外第二开闭阀 室外单元中设置有室内单元。

    HARNESS ROUTING STRUCTURE FOR VEHICLE
    47.
    发明申请
    HARNESS ROUTING STRUCTURE FOR VEHICLE 有权
    车辆的线束路由结构

    公开(公告)号:US20070119637A1

    公开(公告)日:2007-05-31

    申请号:US11558233

    申请日:2006-11-09

    IPC分类号: B60K1/00

    摘要: A high-voltage harness routing structure includes: a subframe; a driving power unit; an electric power distribution unit; an electrical auxiliary unit arranged to cause the driving power unit to be sandwiched between the electric power distribution unit and the electrical auxiliary unit; and a high voltage harness connecting the electric power distribution unit with the electrical auxiliary unit in a routing path. In this routing path, the high voltage harness drops from the electric power distribution unit toward the subframe and then extends along the subframe in a vehicle-width direction. The high-voltage harness routing structure further includes a driving power unit mount including a mount main body arranged apart from the subframe to form a space between the mount main body and the subframe; and a protector that covers at least a high-voltage harness's portion extending along the subframe in the vehicle-width direction and interfering with the driving power unit mount. The high voltage harness covered by the protector is passed through the space.

    摘要翻译: 高压线束路由结构包括:子帧; 一个驱动动力单元; 电力分配单元; 电气辅助单元,其布置成使得所述驱动力单元被夹在所述配电单元和所述电气辅助单元之间; 以及将配电单元与电气辅助单元连接在路由路径中的高压线束。 在该路由路径中,高压线束从配电单元朝向子帧落下,然后沿车辆宽度方向沿着子框架延伸。 高压线束布线结构还包括驱动功率单元座,其包括与子框架分开设置的安装主体,以在安装主体和子框架之间形成空间; 以及保护器,其至少覆盖沿着车辆宽度方向沿着副车架延伸的高压线束部,并与驱动动力单元安装件相干涉。 由保护器覆盖的高压线束通过该空间。

    Method for complementing personal lost memory information with communication, and communication system, and information recording medium thereof
    48.
    发明授权
    Method for complementing personal lost memory information with communication, and communication system, and information recording medium thereof 失效
    用于通过通信与通信系统及其信息记录介质来补充个人丢失的存储器信息的方法

    公开(公告)号:US06950026B2

    公开(公告)日:2005-09-27

    申请号:US10615190

    申请日:2003-07-09

    CPC分类号: G06Q10/10

    摘要: The present invention enables appropriate behavior of an individual who has problems with memory, and behavior support thereof with certainty. The individual who has problems with memory always carries the portable communication terminal and loads and collects various types of information along with an ID through the communication network as behavior monitoring information. Also various types of provided information (e.g. map information) are collected. When a specific status information (e.g. forgetting the road to take) of the individual who carries the portable communication terminal is loaded, memory support information (behavior support information) is generated by conversation, text and image, so that the specific status where the individual who lost memory cannot take an action to be performed next can be individually dispelled on the spot based on the information collected in the past and various types of provided information, and this memory support information is transferred to the individual carrying the portable communication terminal. In this way, information for dispelling a specific status where an individual who lost memory cannot take an action to be performed next on the spot can be implemented by inference, personally and instantaneously.

    摘要翻译: 本发明使得具有记忆问题的个人的适当行为和确定性地支持其行为。 具有存储器问题的个人总是携带便携式通信终端,并通过通信网络作为行为监视信息加载和收集各种类型的信息以及ID。 还收集各种类型的提供的信息(例如地图信息)。 当携带携带便携式通信终端的个人的特定状态信息(例如忘记携带通路)被加载时,通过对话,文本和图像产生存储器支持信息(行为支持信息),以便个体 丢失存储器的无法执行的动作可以基于过去收集的信息和各种提供的信息在现场单独消除,并且该存储器支持信息被传送到携带便携式通信终端的个人。 以这种方式,可以通过推断,个人和瞬间来实现用于消除丢失记忆的个人的特定状态的信息不能采取下一步执行的动作。

    Memory circuit having block address switching function

    公开(公告)号:US06625071B2

    公开(公告)日:2003-09-23

    申请号:US10085065

    申请日:2002-03-01

    IPC分类号: G11C700

    CPC分类号: G11C29/76 G11C29/88

    摘要: A memory circuit capable of salvaging defective cells, comprises a plurality of memory blocks each having a plurality of memory cells, a region which stores a block address of defective memory block that has defective cell, and a comparator circuit which compares the block address that is an object of access with the block address of the defective memory block, and detects access to the defective memory block, wherein in case where the comparator circuit detects access to the defective memory block, this defective memory block is replaced by the memory block that has the uppermost address (or lowermost address) among the plurality of memory blocks. In case where a plurality of defective memory blocks are present, the defective memory blocks are replaced with substitutive memory blocks having block addresses in order from the uppermost bit (or lowermost bit).