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    • 1. 发明授权
    • Air conditioning apparatus and control method thereof
    • 空调装置及其控制方法
    • US4724680A
    • 1988-02-16
    • US932340
    • 1986-11-19
    • Nobuo Kawai
    • Nobuo Kawai
    • F24F11/02F04B49/06F04C28/06F24F11/00F25B1/00F25B29/00F25B49/02G05D23/20
    • F24F11/0009F25B49/025G05D23/1917G05D23/20F24F11/0012F24F2011/0046F25B2500/26F25B2600/021F25B2700/151Y02B30/741
    • An air conditioning apparatus includes a variable frequency power source device for providing an AC electric power with a variable frequency, a variable capacity compressor driven by the AC electric ipower and a starting detector for detecting a starting state of the compressor a predetermined time after the compressor is energized. When the starting detector detects the starting failure of the compressor, the variable frequency power source device feeds the compressor with a starting frequency voltage until the starting detector detects changes in the level of the input current to the compressor within a predetermined time to heat refrigerant in the compressor, and then feeds the compressor with a driving frequency voltage corresponding to the required air conditioning load. When no change in the level of the input current is detected within the predetermined time, the variable frequency power source device supplys the compressor with the driving frequency voltage immediately after the predetermined time elapsed.
    • 一种空调装置,包括用于提供可变频率的交流电力的变频电源装置,由交流电动机驱动的可变容量的压缩机,以及用于在压缩机之后的预定时间内检测压缩机的起动状态的起动检测器 被激活。 当启动检测器检测到压缩机的启动故障时,变频电源装置向压缩机供给起始频率电压,直到起动检测器检测到在预定时间内对压缩机的输入电流的电平的变化以加热制冷剂 压缩机,然后将压缩机供给对应于所需空调负载的驱动频率电压。 当在预定时间内没有检测到输入电流的电平变化时,变频电源装置在经过预定时间之后立即向压缩机提供驱动频率电压。
    • 2. 发明授权
    • Gas component detecting plug
    • 气体成分检测塞
    • US4596132A
    • 1986-06-24
    • US665359
    • 1984-10-26
    • Akio TakamiToshitaka MatsuuraNobuo KawaiToshihiko Kimura
    • Akio TakamiToshitaka MatsuuraNobuo KawaiToshihiko Kimura
    • G01N27/00G01N27/04G01N27/12G01N27/409
    • G01N27/12
    • A gas component detecting plug including a gas component-sensitive element, lead wires connected to the gas component-sensitive element, a tubular or board-like insulator which supports both the gas component-sensitive element and the lead wires, and an enclosure, the insulator being sealed to the enclosure so that the gas component-sensitive element is positioned on a leg portion side, characterized in that a spacer is disposed and retained in a gap formed between the insulator and the enclosure, in that a space on a head portion side formed by the insulator, enclosure, spacer and electrode wires is filled with glass and in that a rubbery elastic member having an insulating property is inserted in the head portion side. The gas component detecting plug is superior in water-proofness, gas-tightness, heat insulating property and productivity.
    • 一种气体成分检测塞,包括气体成分敏感元件,连接到气体成分敏感元件的引线,支撑气体成分敏感元件和引线的管状或板状绝缘体以及外壳, 绝缘体被密封到外壳,使得气体成分敏感元件位于腿部侧,其特征在于,间隔件设置并保持在形成在绝缘体和外壳之间的间隙中,其中头部上的空间 由绝缘体,外壳,间隔物和电极线形成的侧面填充有玻璃,并且具有绝缘性的橡胶弹性构件插入头部侧。 气体成分检测塞的防水性,气密性,隔热性和生产率优异。
    • 6. 发明授权
    • Gas sensor having protector and protection cap
    • 气体传感器具有保护和保护盖
    • US06606900B2
    • 2003-08-19
    • US09745804
    • 2000-12-26
    • Masaaki MuraseNobuo KawaiHiroshi Miyata
    • Masaaki MuraseNobuo KawaiHiroshi Miyata
    • G01N700
    • G01N27/4077
    • A gas sensor including an element 4 for measuring the concentration of a gas to be detected which is contained in a gas under measurement; a protector 2 provided to cover a tip end of the element 4 in the axial direction; and a protection cap 1 removably attached to the gas sensor. The protection cap 1 includes a tubular portion 106 which surrounds a side surface 202 of the protector 2, support portions 102 which project from an inner surface 161 of the tubular portion 106 and reach the side surface 202 of the protector 2 without axially partitioning the space between the inner surface 161 of the tubular portion 106 and the side surface 202 of the protector 2, and an air-outlet hole 103 for establishing communication between the interior and exterior of the protection cap 1.
    • 一种气体传感器,包括用于测量被测气体中包含的待检测气体的浓度的元件4; 设置成在轴向上覆盖元件4的前端的保护器2; 以及可移除地附接到气体传感器的保护帽1。 保护盖1包括围绕保护器2的侧表面202的管状部分106,支撑部分102从管状部分106的内表面161伸出并到达保护器2的侧表面202,而不轴向地划分空间 在管状部分106的内表面161和保护器2的侧表面202之间,以及用于建立保护帽1的内部和外部之间的连通的出气孔103。
    • 9. 发明申请
    • MOBILE ELECTRONIC DEVICE AND INPUT METHOD
    • 移动电子设备和输入方法
    • US20120299854A1
    • 2012-11-29
    • US13481094
    • 2012-05-25
    • Nobuo Kawai
    • Nobuo Kawai
    • G06F3/041
    • G06F3/0488G06F3/0418
    • An object of the present invention is to provide a mobile electronic device and an input method thereof, all of which are capable of canceling a restricting feature for preventing erroneous operations, and capable of quickly executing a desired feature. In a restricted state, in a case in which a control unit determines that a touch detected by a detecting unit is a first touching operation, the control unit cancels the restricted state, and causes a display unit to display a screen that was displayed before the restricted state, and in a case in which the control unit determines that the touch thus detected is a second touching operation, the control unit cancels the restricted state, and executes a predetermined function.
    • 本发明的一个目的是提供一种移动电子装置及其输入方法,它们都能够消除用于防止错误操作的限制特征,并且能够快速执行期望的特征。 在限制状态下,在控制单元确定由检测单元检测到的触摸是第一次触摸操作的情况下,控制单元取消受限状态,并使显示单元显示在 并且在控制单元判断出这样检测到的触摸是第二触摸操作的情况下,控制单元取消限制状态,并执行预定功能。
    • 10. 发明授权
    • Air conditioner with automatic selection and re-selection function for
operating modes
    • 空调具有自动选择和重新选择功能,适用于运行模式
    • US4869073A
    • 1989-09-26
    • US195626
    • 1988-05-18
    • Nobuo KawaiSatoshi Miwa
    • Nobuo KawaiSatoshi Miwa
    • F24F11/02F24F11/00F25B13/00G05D23/19
    • G05D23/1917F24F11/0009F25B13/00F24F11/0012F24F11/0015F24F2011/0064
    • A heat-pump type refrigeration cycle includes at least a compressor capable of switching between cooling and heating modes. A first memory stores first reference temperature data for the cooling mode, and second reference temperature data for the heating mode. A second memory stores first set data for setting a cooling temperature and second set data for setting a heating temperature. A mode selector compares room temperature detection data with the first and second reference temperature data, in accordance with an automatic operation instruction, and outputs a first signal for selecting the cooling mode or a second signal for selecting the heating mode. A controller sets the heat-pump type refrigeration cycle in the cooling or heating mode, in accordance with the first or second signal, and controls the compressor in a drive state or a stop state, so that a comparison difference between the first or second set data and the room temperature detection data becomes zero. A monitor is connected to monitor the stop state of the compressor, and, when the stop state continues for a predetermined period of time or longer, to provide a re-selection instruction equivalent to the automatic operaiton instruction to the mode selector.
    • 热泵式制冷循环至少包括能够在冷却和加热模式之间切换的压缩机。 第一存储器存储用于冷却模式的第一参考温度数据和用于加热模式的第二参考温度数据。 第二存储器存储用于设置冷却温度的第一设定数据和用于设定加热温度的第二设定数据。 模式选择器根据自动操作指令将室温检测数据与第一和第二参考温度数据进行比较,并输出用于选择冷却模式的第一信号或用于选择加热模式的第二信号。 控制器根据第一或第二信号在制冷或加热模式下设置热泵式制冷循环,并将压缩机控制在驱动状态或停止状态,使得第一或第二组之间的比较差 数据和室温检测数据变为零。 连接监视器以监视压缩机的停止状态,并且当停止状态持续预定时间段或更长时间时,向模式选择器提供等效于自动操作指令的重新选择指令。