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    • 2. 发明申请
    • Vacuum heat insulator, hot insulating device using vacuum heat insulator, and electric water heater
    • 真空绝热器,使用真空绝热器的热绝缘装置和电热水器
    • US20060141205A1
    • 2006-06-29
    • US11357271
    • 2006-02-21
    • Takayuki UrataMitsuhiro SanoAkihiro UmedaKiyoyoshi Takada
    • Takayuki UrataMitsuhiro SanoAkihiro UmedaKiyoyoshi Takada
    • B32B27/32B32B1/04
    • B32B1/04B32B15/08B32B15/18B32B15/20B32B27/08B32B27/36Y10T428/13Y10T428/1334Y10T428/231
    • In this vacuum heat insulator, an excellent heat insulating performance is obtained even at high temperature, and this excellent heat insulating performance is maintained for a long period. The hot insulating device and electric water heater using this vacuum heat insulator exhibit an excellent hot insulating performance, and are decreased in the power consumption for hot insulation. The vacuum heat insulator includes a laminate bag, and an insulating core placed in the laminate bag, and the inside of the laminate bag is evacuated in a vacuum state. The laminate bag is made of a laminate film. The laminate film includes a support layer, a deposition layer evaporated on the surface of the support layer, a protective layer placed at the surface side of the deposition layer, and a seal layer placed at the back side of the deposition layer. The deposition layer is formed of at least one material of metal and metal oxide. In this laminate film, (i) the support layer has a plastic film having a glass transition point of 87° C. or higher, (ii) the protective layer has a plastic film having a glass transition point of 87° C. or higher, (iii) the deposition layer has a property of transmitting high frequency magnetic field or (iv) the laminate bag has a seal portion formed by junction of the seal layer, and the laminate film further as a metal f oil placed at a position excluding the seal portion.
    • 在该真空绝热体中,即使在高温下也能获得良好的隔热性能,并且能够长期保持这种优异的隔热性能。 使用该真空绝热体的热绝缘装置和电热水器表现出优异的绝热性能,并且热绝缘的功耗降低。 真空热绝缘体包括叠层袋和放置在层叠袋中的绝缘芯,层压袋的内部在真空状态下抽真空。 层压袋由层压膜制成。 层叠膜包括支撑层,在支撑层的表面上蒸发的沉积层,设置在沉积层的表面侧的保护层和设置在沉积层的背面的密封层。 沉积层由金属和金属氧化物的至少一种材料形成。 在该层叠膜中,(i)支撑层具有玻璃化转变点为87℃以上的塑料膜,(ii)保护层具有玻璃化转变点为87℃以上的塑料膜 ,(iii)沉积层具有传输高频磁场的性质,或(iv)层压袋具有通过密封层的接合形成的密封部分,并且层压膜进一步作为位于不包括的位置的金属f油 密封部分。
    • 3. 发明授权
    • Vacuum heat insulator, hot insulating device using vacuum heat insulator, and electric water heater
    • 真空绝热器,使用真空绝热器的热绝缘装置和电热水器
    • US06931204B2
    • 2005-08-16
    • US10345378
    • 2003-01-16
    • Takayuki UrataMitsuhiro SanoAkihiro UmedaKiyoyoshi TakadaIzuo Hirota
    • Takayuki UrataMitsuhiro SanoAkihiro UmedaKiyoyoshi TakadaIzuo Hirota
    • B32B20060101B32B1/04B32B5/00B32B15/08B32B15/18B32B15/20B32B27/08B32B27/34B32B27/36F16L20060101F16L59/065A47J27/00
    • B32B1/04B32B15/08B32B15/18B32B15/20B32B27/08B32B27/36Y10T428/13Y10T428/1334Y10T428/231
    • In this vacuum heat insulator, an excellent heat insulating performance is obtained even at high temperature, and this excellent heat insulating performance is maintained for a long period. The hot insulating device and electric water heater using this vacuum heat insulator exhibit an excellent hot insulating performance, and are decreased in the power consumption for hot insulation. The vacuum heat insulator includes a laminate bag, and an insulating core placed in the laminate bag, and the inside of the laminate bag is evacuated in a vacuum state. The laminate bag is made of a laminate film. The laminate film includes a support layer, a deposition layer evaporated on the surface of the support layer, a protective layer placed at the surface side of the deposition layer, and a seal layer placed at the back side of the deposition layer. The deposition layer is formed of at least one material of metal and metal oxide. In this laminate film, (i) the support layer has a plastic film having a glass transition point of 87° C. or higher, (ii) the protective layer has a plastic film having a glass transition point of 87° C. or higher, (iii) the deposition layer has a property of transmitting high frequency magnetic field, or (iv) the laminate bag has a seal portion formed by junction of the seal layer, and the laminate film further as a metal foil placed at a position excluding the seal portion.
    • 在该真空绝热体中,即使在高温下也能获得良好的隔热性能,并且能够长期保持这种优异的隔热性能。 使用该真空绝热体的热绝缘装置和电热水器表现出优异的绝热性能,并且热绝缘的功耗降低。 真空热绝缘体包括叠层袋和放置在层叠袋中的绝缘芯,层压袋的内部在真空状态下抽真空。 层压袋由层压膜制成。 层叠膜包括支撑层,在支撑层的表面上蒸发的沉积层,设置在沉积层的表面侧的保护层和设置在沉积层的背面的密封层。 沉积层由金属和金属氧化物的至少一种材料形成。 在该层叠膜中,(i)支撑层具有玻璃化转变点为87℃以上的塑料膜,(ii)保护层具有玻璃化转变点为87℃以上的塑料膜 ,(iii)沉积层具有传输高频磁场的性质,或(iv)层压袋具有通过密封层的接合而形成的密封部分,并且层压膜进一步作为放置在不包括的位置的金属箔 密封部分。
    • 5. 发明授权
    • Cooling controller for internal-combustion engine
    • 内燃机冷却控制器
    • US06481387B1
    • 2002-11-19
    • US09787026
    • 2001-03-13
    • Mitsuhiro Sano
    • Mitsuhiro Sano
    • F01P714
    • B60H1/00735F01P7/08F01P9/06F01P11/16F01P2007/146F01P2025/32F01P2031/20F01P2060/14
    • The present invention relates to a cooling controller for cooling an internal-combustion engine such as an internal-combustion engine for an automobile, comprising a temperature detector for detecting the temperature of the cooling medium placed in a first or second circulation channel, and a flow control for controlling the flow of the cooling medium placed in the first or second circulation channel. The first circulation channel passes through the engine and the radiator as in a conventional cooling system. The second circulation channel, which is used in case of a detected failure of the radiator or thermostat valve, includes the heat exchanger of the automobile's air-conditioning system. When the failure is detected an air conditioner controller maximizes the amount of heat radiated from the air conditioning exchanger to prevent overheating.
    • 本发明涉及一种用于冷却诸如汽车内燃机的内燃机的冷却控制器,其包括用于检测置于第一或第二循环通道中的冷却介质的温度的温度检测器和流动 用于控制放置在第一或第二循环通道中的冷却介质的流动的控制。第一循环通道如常规冷却系统一样通过发动机和散热器。 在散热器或恒温阀检测到故障的情况下使用的第二循环通道包括汽车空调系统的热交换器。 当检测到故障时,空调控制器使从空调交换器辐射的热量最大化,以防止过热。
    • 6. 发明授权
    • Start-up method for mobile transceivers, mobile transceivers and fixed
transceivers thereof
    • 移动收发器,移动收发器和固定收发器的启动方法
    • US5682603A
    • 1997-10-28
    • US504119
    • 1995-07-19
    • Mitsuhiro Sano
    • Mitsuhiro Sano
    • G01S13/74G06K7/00G07B15/00G08G1/017H04B7/26H04W52/00H04W52/02H04W88/02H04Q7/18
    • G07B15/063G06K7/0008G08G1/017
    • To provide a communications system to accurately detect when a mobile transceiver has entered an area where communication with a fixed transceiver is possible, and to start-up the internal circuitry of the mobile transceiver, a communications system transmits a start-up pilot signal of a prescribed period from a transponder mounted in a fixed station to a transponder mounted in a vehicle. In the transponder, the received signal upon being received by an antenna is detected in a detector and amplified in an amplifier. When this signal is greater than a reference voltage, a pulse is output from a level discriminator. This pulse signal is converted into a pulse of constant pulse width in a discriminator pulse generator and integrated in an integrator. When the integrated value exceeds a reference voltage, a start-up discriminator sends a drive signal to actuate the internal circuitry of the mobile transceiver. As a consequence, mistaken start-up of the internal circuitry due to noise input is prevented and the internal circuitry is started only when necessary.
    • 为了提供通信系统来准确地检测移动收发机何时进入与固定收发器进行通信的区域,并且启动移动收发器的内部电路,通信系统发送一个启动导频信号 从安装在固定站中的转发器到安装在车辆中的应答器的规定时间段。 在应答器中,由天线接收的接收信号在检测器中被检测并在放大器中放大。 当该信号大于参考电压时,从电平鉴别器输出脉冲。 该脉冲信号在鉴频器脉冲发生器中被转换为恒定脉冲宽度的脉冲并集成在积分器中。 当积分值超过参考电压时,启动鉴别器发送驱动信号以启动移动收发器的内部电路。 因此,防止由于噪声输入引起的内部电路的启动错误,并且仅在必要时启动内部电路。
    • 7. 发明申请
    • SWITCHED CAPACITOR CIRCUIT AND PIPELINE A/D CONVERTER
    • 开关电容电路和管线A / D转换器
    • US20100045495A1
    • 2010-02-25
    • US12605770
    • 2009-10-26
    • Mitsuhiro SANO
    • Mitsuhiro SANO
    • H03M1/02G11C27/02
    • H03F3/005G11C27/026H03F3/45475H03F2203/45138H03F2203/45514H03M1/164H03M1/442
    • There is provided a switched capacitor circuit and a pipeline A/D converter which are capable of suppressing electric power from being increased by utilizing a level-shift capacitor, even in a case where the switched capacitor circuit and the pipeline A/D converter are configured by utilizing a CLS technique. In the estimate phase, the capacitor Cc1 (level shift capacitor) is connected between the output terminal of the operational amplifier AMP2 and the inverting input terminal of the operational amplifier AMP2, so as to sample the output from the operational amplifier AMP2, and also to compensate the phase of the operational amplifier AMP2. Additionally, in the level shift phase, the capacitor Cc1 is connected between the output terminal of the operational amplifier 4 and the output terminal Vb, so as to be used to level-shift the output of the operational amplifier AMP2. Thereby, the load (the capacitance of the capacitors Cc1 and Cc2) on the operational amplifier AMP2 is reduced, thereby reducing the electric power of the switched capacitor circuit 200.
    • 提供了一种开关电容器电路和流水线A / D转换器,其即使在开关电容器电路和流水线A / D转换器被配置的情况下也能够通过利用电平移位电容器来抑制电力的增加 通过利用CLS技术。 在估计阶段,电容器Cc1(电平移位电容器)连接在运算放大器AMP2的输出端和运算放大器AMP2的反相输入端之间,以便对运算放大器AMP2的输出进行采样,并且还 补偿运算放大器AMP2的相位。 此外,在电平移位阶段,电容器Cc1连接在运算放大器4的输出端和输出端子Vb之间,以便用于对运算放大器AMP2的输出进行电平移位。 由此,运算放大器AMP2的负载(电容器Cc1,Cc2的电容)减小,从而降低开关电容器电路200的电力。
    • 8. 发明授权
    • Cooling control system and cooling control method for engine
    • 发动机冷却控制系统及冷却控制方法
    • US06223700B1
    • 2001-05-01
    • US09104006
    • 1998-06-24
    • Mitsuhiro SanoHiroshi Morozumi
    • Mitsuhiro SanoHiroshi Morozumi
    • F01P716
    • F01P7/167F01P7/048F01P2007/146F01P2023/00F01P2025/62F01P2025/64F01P2070/04
    • A system is provided wherein temperature conduction upon the changing of temperature of cooling water in an engine is forecast, and achievement of a cooling control system with an improved life and reliability and a reduction in cost results therefrom. A butterfly valve for regulating the flow of cooling water is rotatably controlled through a DC motor, a clutch mechanism 33 and a deceleration mechanism 33 so as to cool the engine at an appropriate temperature. A PWM signal generated by a quick response control and a PI control on the basis of at least load information of the engine is supplied to the DC motor 31 from ECU, whereby the butterfly valve 34b is rotatably controlled. A butterfly valve adjusting the flow of cooling water is controlled with the degree of valve opening by a thermo-element enclosing a thermal expansive body such as wax. A PTC heater is placed in proximity with the thermo-element, and supplied with current for heating on the basis of operation parameters of an engine to control the cooling efficiency of the cooling water. As a consequence, the characteristics of the butterfly valve which is capable of extremely decreasing rotation torque for adjusting the flow of the cooling water is used, so that mechanical stress can be reduced, resulting in improved life and reliability.
    • 提供一种系统,其中预测发动机中冷却水温度变化时的温度传导,并且实现具有改善的寿命和可靠性以及降低成本的冷却控制系统。 用于调节冷却水流量的蝶形阀通过直流电动机,离合器机构33和减速机构33可旋转地控制,以便在合适的温度下冷却发动机。 至少基于发动机的负荷信息通过快速响应控制和PI控制产生的PWM信号从ECU提供给DC电动机31,由此可旋转地控制蝶阀34b。 调节冷却水流量的蝶阀通过封闭热膨胀体(例如蜡)的热电元件的阀开度来控制。 将PTC加热器放置在热电偶附近,并根据发动机的操作参数提供用于加热的电流,以控制冷却水的冷却效率。 因此,使用能够极大地降低用于调节冷却水的流量的旋转扭矩的蝶阀的特性,从而可以降低机械应力,从而提高寿命和可靠性。
    • 10. 发明授权
    • Switched capacitor circuit and pipeline A/D converter
    • 开关电容电路和流水线A / D转换器
    • US07924206B2
    • 2011-04-12
    • US12605770
    • 2009-10-26
    • Mitsuhiro Sano
    • Mitsuhiro Sano
    • H03M1/34
    • H03F3/005G11C27/026H03F3/45475H03F2203/45138H03F2203/45514H03M1/164H03M1/442
    • There is provided a switched capacitor circuit and a pipeline A/D converter which are capable of suppressing electric power from being increased by utilizing a level-shift capacitor, even in a case where the switched capacitor circuit and the pipeline A/D converter are configured by utilizing a CLS technique. In the estimate phase, the capacitor Cc1 (level shift capacitor) is connected between the output terminal of the operational amplifier AMP2 and the inverting input terminal of the operational amplifier AMP2, so as to sample the output from the operational amplifier AMP2, and also to compensate the phase of the operational amplifier AMP2. Additionally, in the level shift phase, the capacitor Cc1 is connected between the output terminal of the operational amplifier 4 and the output terminal Vb, so as to be used to level-shift the output of the operational amplifier AMP2. Thereby, the load (the capacitance of the capacitors Cc1 and Cc2) on the operational amplifier AMP2 is reduced, thereby reducing the electric power of the switched capacitor circuit 200.
    • 提供了一种开关电容器电路和流水线A / D转换器,其即使在开关电容器电路和流水线A / D转换器被配置的情况下也能够通过利用电平移位电容器来抑制电力的增加 通过利用CLS技术。 在估计阶段,电容器Cc1(电平移位电容器)连接在运算放大器AMP2的输出端和运算放大器AMP2的反相输入端之间,以便对运算放大器AMP2的输出进行采样,并且还 补偿运算放大器AMP2的相位。 此外,在电平移位阶段,电容器Cc1连接在运算放大器4的输出端和输出端子Vb之间,以便用于对运算放大器AMP2的输出进行电平移位。 由此,运算放大器AMP2的负载(电容器Cc1,Cc2的电容)减小,从而降低开关电容器电路200的电力。