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    • 51. 发明申请
    • METHOD AND APPARATUS FOR PROVIDING UNINTERRUPTIBLE POWER
    • 提供不间断电源的方法和装置
    • US20100295374A1
    • 2010-11-25
    • US12767268
    • 2010-04-26
    • Henning Roar NielsenRanganathan GurunathanPothapragada Pavana KumarDamir Klikic
    • Henning Roar NielsenRanganathan GurunathanPothapragada Pavana KumarDamir Klikic
    • H02J9/00H02J7/02
    • H02J9/062H02J2009/063H02M1/10Y10T307/625
    • At least one aspect is directed to an uninterruptible power supply that includes a first input having an input line connection and an input neutral connection to receive a first input voltage from a first voltage source, a second input to receive a second input voltage from a second voltage source, and a boost circuit configured to provide a positive output DC voltage with respect to the input neutral connection and a negative output DC voltage with respect to the input neutral connection in both a line mode of operation and a backup mode of operation. The power supply also includes a first connection circuit to couple the first input to the boost circuit in the line mode of operation, and a second connection circuit to couple the second input to the boost circuit in the backup mode of operation, the second connection circuit being configured to isolate the second voltage source from the input neutral connection in the line mode of operation.
    • 至少一个方面涉及一种不间断电源,其包括具有输入线连接的第一输入和用于从第一电压源接收第一输入电压的输入中性点连接,第二输入以从第二输入端接收来自第二电压的第二输入电压 电压源和升压电路,其被配置为在线路操作模式和备用操作模式中相对于输入中性点连接提供正输出直流电压和相对于输入中性点连接的负输出DC电压。 电源还包括在线路工作模式下将第一输入耦合到升压电路的第一连接电路和在备用操作模式下将第二输入耦合到升压电路的第二连接电路,第二连接电路 被配置为在线路操作模式下将第二电压源与输入中性点连接隔离。
    • 55. 发明申请
    • METHOD AND SYSTEM FOR DETECTING AIR PRESSURE NEUTRALITY IN AIR CONTAINMENT ZONES
    • 用于检测空气容纳区中的空气压力中性的方法和系统
    • US20100186517A1
    • 2010-07-29
    • US12361055
    • 2009-01-28
    • John H. Bean, JR.
    • John H. Bean, JR.
    • G01F1/34G01L9/04
    • G01P13/0026G01F1/28H05K7/20836
    • An airflow detecting system includes a tubular structure having an inner surface defining an interior of the tubular structure, one open end and an opposite open end. The tubular structure is configured to receive and expel air through both the one end and the opposite end. The system further includes a flap connected to the inner surface of the tubular structure by a hinge. The flap is configured to impede airflow within the interior of the tubular structure upon the application of differential pressure across the two ends of the tubular structure. The system further includes a device attached to the flap in a position in which the device spans the hinge. The device is configured to measure a parameter associated with the movement of the flap in response to airflow within the interior of the tubular structure. Other embodiments and methods are further disclosed.
    • 气流检测系统包括管状结构,其具有限定管状结构内部的内表面,一个开口端和相对的开口端。 管状结构被构造成通过一端和相对端接收和排出空气。 该系统还包括通过铰链连接到管状结构的内表面的翼片。 翼片构造成在跨过管状结构的两端施加压差时阻碍管状结构内部的气流。 系统还包括附接到翼片的装置,其中装置跨越铰链。 该装置被配置成响应于管状结构内部的气流来测量与瓣片运动有关的参数。 进一步公开了其他实施例和方法。
    • 56. 发明申请
    • ICE THERMAL STORAGE
    • ICE热存储
    • US20100154438A1
    • 2010-06-24
    • US12719292
    • 2010-03-08
    • John H. Bean, JR.
    • John H. Bean, JR.
    • F25B21/02F25C5/18F25C1/00F25B41/00
    • F25D16/00F25B21/02F25B2400/0411F25B2400/24H05K7/20818
    • A system, configured to be disposed in a information technology equipment rack for providing ice thermal storage, includes a tank configured to hold water, a heat exchanger disposed in water in the tank and configured to convey a two-phase liquid and vapor refrigerant and to transfer heat between the water and the refrigerant, a first valve connected to a liquid and a vapor refrigerant line and configured to selectively connect the liquid refrigerant line to a first port and the vapor refrigerant line to a second port in a first mode and to connect the liquid refrigerant line to the second port and the vapor refrigerant line to the first port in a second mode, a thermostatic expansion valve connected to an inlet of the heat exchanger, and a liquid/vapor pump connected to an outlet of the heat exchanger and to the second port of the first valve.
    • 一种被配置为设置在用于提供冰蓄热的信息技术设备机架中的系统,包括构造成保持水的箱,设置在水箱中的热交换器,并且构造成输送两相液体和蒸气制冷剂,并且 在水和制冷剂之间传递热量,连接到液体的第一阀和蒸汽制冷剂管线,并且被配置为以第一模式将液体制冷剂管线选择性地连接到第一端口和蒸气制冷剂管线到第二端口并连接 到第二端口的液体制冷剂管线和到第一端口的蒸汽制冷剂管线,连接到热交换器的入口的恒温膨胀阀和连接到热交换器的出口的液体/蒸气泵,以及 到第一个阀的第二个端口。
    • 57. 发明授权
    • Method and apparatus for providing uninterruptible power
    • 提供不间断电源的方法和装置
    • US07705489B2
    • 2010-04-27
    • US11518388
    • 2006-09-08
    • Henning Roar NielsenRanganathan GurunathanPothapragada Pavana KumarDamir Klikic
    • Henning Roar NielsenRanganathan GurunathanPothapragada Pavana KumarDamir Klikic
    • H02J7/00H02J9/00
    • H02J9/062H02J2009/063H02M1/10Y10T307/625
    • At least one aspect is directed to an uninterruptible power supply that includes a first input having an input line connection and an input neutral connection to receive a first input voltage from a first voltage source, a second input to receive a second input voltage from a second voltage source, and a boost circuit configured to provide a positive output DC voltage with respect to the input neutral connection and a negative output DC voltage with respect to the input neutral connection in both a line mode of operation and a backup mode of operation. The power supply also includes a first connection circuit to couple the first input to the boost circuit in the line mode of operation, and a second connection circuit to couple the second input to the boost circuit in the backup mode of operation, the second connection circuit being configured to isolate the second voltage source from the input neutral connection in the line mode of operation.
    • 至少一个方面涉及一种不间断电源,其包括具有输入线连接的第一输入和用于从第一电压源接收第一输入电压的输入中性点连接,第二输入以从第二输入端接收来自第二电压的第二输入电压 电压源和升压电路,其被配置为在线路操作模式和备用操作模式中相对于输入中性点连接提供正输出直流电压和相对于输入中性点连接的负输出DC电压。 电源还包括在线路工作模式下将第一输入耦合到升压电路的第一连接电路和在备用操作模式下将第二输入耦合到升压电路的第二连接电路,第二连接电路 被配置为在线路操作模式下将第二电压源与输入中性点连接隔离。
    • 59. 发明授权
    • Ice thermal storage
    • 冰蓄热
    • US07681410B1
    • 2010-03-23
    • US11355043
    • 2006-02-14
    • John H. Bean, Jr.
    • John H. Bean, Jr.
    • F25D23/12
    • F25D16/00F25B21/02F25B2400/0411F25B2400/24H05K7/20818
    • A system, configured to be disposed in a information technology equipment rack for providing ice thermal storage, includes a tank configured to hold water, a heat exchanger disposed in water in the tank and configured to convey a two-phase liquid and vapor refrigerant and to transfer heat between the water and the refrigerant, a first valve connected to a liquid and a vapor refrigerant line and configured to selectively connect the liquid refrigerant line to a first port and the vapor refrigerant line to a second port in a first mode and to connect the liquid refrigerant line to the second port and the vapor refrigerant line to the first port in a second mode, a thermostatic expansion valve connected to an inlet of the heat exchanger, and a liquid/vapor pump connected to an outlet of the heat exchanger and to the second port of the first valve.
    • 一种被配置为设置在用于提供冰蓄热的信息技术设备机架中的系统,包括构造成保持水的箱,设置在水箱中的热交换器,并且构造成输送两相液体和蒸气制冷剂,并且 在水和制冷剂之间传递热量,连接到液体的第一阀和蒸汽制冷剂管线,并且被配置为以第一模式将液体制冷剂管线选择性地连接到第一端口和蒸气制冷剂管线到第二端口并连接 到第二端口的液体制冷剂管线和到第一端口的蒸汽制冷剂管线,连接到热交换器的入口的恒温膨胀阀和连接到热交换器的出口的液体/蒸气泵,以及 到第一个阀的第二个端口。