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    • 2. 发明授权
    • Method for controlling multiple refrigeration units
    • 多制冷机组控制方法
    • US06698218B2
    • 2004-03-02
    • US10384857
    • 2003-03-10
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • F25B4900
    • H05K7/20381F25B49/025F25B2400/06F25B2500/26F25B2600/021F25B2600/025F25B2600/2501F25B2700/02Y02B30/741
    • A refrigeration system for cooling a logic module includes an evaporator housing including an evaporator block in thermal communication with the logic module. The evaporator housing includes a humidity sensor for detecting a humidity within the evaporator housing. The system further comprises a controller for controlling a refrigeration unit supplying cold refrigerant to the evaporator block in response to the operating conditions of the logic module and the temperature of the evaporator block. In another aspect of the invention, two modular refrigeration units are independently operable to cool the evaporator block, and each refrigeration unit is controllable in various modes of operation including an enabled mode in which it is ready to cool the evaporator and an on mode in which it is actively cooling the evaporator. In another aspect of the invention, the evaporator block and a heater on a reverse side of the circuit board are particularly controlled during concurrent repair operations. In another aspect of the invention, faulty sensors are recognized as such and an appropriate response is made. In another aspect of the invention, the system is shut down in a manner allowing rapid access to the logic module.
    • 用于冷却逻辑模块的制冷系统包括蒸发器壳体,其包括与逻辑模块热连通的蒸发器块。 蒸发器壳体包括用于检测蒸发器壳体内的湿度的湿度传感器。 该系统还包括控制器,用于响应于逻辑模块的操作条件和蒸发器块的温度,控制向蒸发器块供应冷制冷剂的制冷单元。 在本发明的另一方面,两个模块化制冷单元可独立操作以冷却蒸发器块,并且每个制冷单元可在各种操作模式中控制,包括其中准备冷却蒸发器的启用模式和其中 它主动冷却蒸发器。 在本发明的另一方面,在并行修复操作期间,特别地控制电路板背面的蒸发器块和加热器。 在本发明的另一方面,错误的传感器被这样识别并作出适当的响应。 在本发明的另一方面,系统以允许快速访问逻辑模块的方式关闭。
    • 3. 发明授权
    • Logic module refrigeration system with condensation control
    • 具有冷凝控制功能的逻辑模块制冷系统
    • US06564563B2
    • 2003-05-20
    • US09896610
    • 2001-06-29
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • H05K720
    • H05K7/20381F25B49/025F25B2400/06F25B2500/26F25B2600/021F25B2600/025F25B2600/2501F25B2700/02Y02B30/741
    • A refrigeration system for cooling a logic module includes an evaporator housing including an evaporator block in thermal communication with the logic module. The evaporator housing includes a humidity sensor for detecting a humidity within the evaporator housing. The system further comprises a controller for controlling a refrigeration unit supplying cold refrigerant to the evaporator block in response to the operating conditions of the logic module and the temperature of the evaporator block. In another aspect of the invention, two modular refrigeration units are independently operable to cool the evaporator block, and each refrigeration unit is controllable in various modes of operation including an enabled mode in which it is ready to cool the evaporator and an on mode in which it is actively cooling the evaporator. In another aspect of the invention, the evaporator block and a heater on a reverse side of the circuit board are particularly controlled during concurrent repair operations. In another aspect of the invention, faulty sensors are recognized as such and an appropriate response is made. In another aspect of the invention, the system is shut down in a manner allowing rapid access to the logic module.
    • 用于冷却逻辑模块的制冷系统包括蒸发器壳体,其包括与逻辑模块热连通的蒸发器块。 蒸发器壳体包括用于检测蒸发器壳体内的湿度的湿度传感器。 该系统还包括控制器,用于响应于逻辑模块的操作条件和蒸发器块的温度,控制向蒸发器块供应冷制冷剂的制冷单元。 在本发明的另一方面,两个模块化制冷单元可独立操作以冷却蒸发器块,并且每个制冷单元可在各种操作模式中控制,包括其中准备冷却蒸发器的启用模式和其中 它主动冷却蒸发器。 在本发明的另一方面,在并行修复操作期间,特别地控制电路板背面的蒸发器块和加热器。 在本发明的另一方面,错误的传感器被这样识别并作出适当的响应。 在本发明的另一方面,系统以允许快速访问逻辑模块的方式关闭。
    • 4. 发明授权
    • Logic module refrigeration system with condensation control
    • 具有冷凝控制功能的逻辑模块制冷系统
    • US06446447B1
    • 2002-09-10
    • US09896310
    • 2001-06-29
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert MakowickiJohn Loparco
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert MakowickiJohn Loparco
    • F25B4900
    • H05K7/20381F25B41/04F25B47/006F25B49/025F25B2400/06F25B2500/26F25B2600/0253F25B2600/2501Y02B30/741
    • A refrigeration system includes an evaporator housing sealed to a first side of a circuit board containing a logic module, the evaporator housing including an evaporator block in thermal communication with the logic module. The evaporator housing further includes at least a humidity sensor for detecting a humidity within the evaporator housing. In another aspect of the invention, the refrigeration system includes a heater on a second side of the circuit board opposite the evaporator housing, the heater being in thermal communication with plated through-holes of the circuit board to maintain the circuit board above local ambient temperature. In another aspect of the invention, a source of dry pressurized air is provided into the sealed evaporator housing through a though-hole drilled directly under the logic module. In another aspect of the invention, a portion of the warm air exiting the processor cage is recirculated and caused to pass over the evaporator housing, thereby ensuring that the exterior surface of the evaporator housing is warming to above local dew point. In another aspect of the invention, two or more modular, interchangeable refrigeration units are concurrently connected to the evaporator and are controlled independently, providing backup capability to ensure the reliability of the system.
    • 制冷系统包括密封到包含逻辑模块的电路板的第一侧的蒸发器壳体,蒸发器壳体包括与逻辑模块热连通的蒸发器块。 蒸发器壳体还包括至少一个用于检测蒸发器壳体内的湿度的湿度传感器。 在本发明的另一方面,制冷系统包括在电路板的与蒸发器壳体相对的第二侧的加热器,加热器与电路板的电镀通孔热连接,以将电路板保持在局部环境温度以上 。 在本发明的另一方面,干式加压空气源通过直接在逻辑模块下方钻出的通孔提供到密封的蒸发器壳体中。 在本发明的另一方面,一部分离开处理器保持架的暖空气被再循环并且使其经过蒸发器壳体,从而确保蒸发器壳体的外表面变暖到高于局部露点。 在本发明的另一方面,两个或多个模块化的可互换的制冷单元同时连接到蒸发器并且被独立地控制,提供备用能力以确保系统的可靠性。
    • 5. 发明授权
    • Method for controlling a refrigeration unit for evaporator maintenance
    • 用于控制用于蒸发器维护的制冷单元的方法
    • US06698216B2
    • 2004-03-02
    • US10384975
    • 2003-03-10
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • F25D2102
    • H05K7/20381F25B49/025F25B2400/06F25B2500/26F25B2600/021F25B2600/025F25B2600/2501F25B2700/02Y02B30/741
    • A refrigeration system for cooling a logic module includes an evaporator housing including an evaporator block in thermal communication with the logic module. The evaporator housing includes a humidity sensor for detecting a humidity within the evaporator housing. The system further comprises a controller for controlling a refrigeration unit supplying cold refrigerant to the evaporator block in response to the operating conditions of the logic module and the temperature of the evaporator block. In another aspect of the invention, two modular refrigeration units are independently operable to cool the evaporator block, and each refrigeration unit is controllable in various modes of operation including an enabled mode in which it is ready to cool the evaporator and an on mode in which it is actively cooling the evaporator. In another aspect of the invention, the evaporator block and a heater on a reverse side of the circuit board are particularly controlled during concurrent repair operations. In another aspect of the invention, faulty sensors are recognized as such and an appropriate response is made. In another aspect of the invention, the system is shut down in a manner allowing rapid access to the logic module.
    • 用于冷却逻辑模块的制冷系统包括蒸发器壳体,其包括与逻辑模块热连通的蒸发器块。 蒸发器壳体包括用于检测蒸发器壳体内的湿度的湿度传感器。 该系统还包括控制器,用于响应于逻辑模块的操作条件和蒸发器块的温度,控制向蒸发器块供应冷制冷剂的制冷单元。 在本发明的另一方面,两个模块化制冷单元可独立操作以冷却蒸发器块,并且每个制冷单元可在各种操作模式中控制,包括其中准备冷却蒸发器的启用模式和其中 它主动冷却蒸发器。 在本发明的另一方面,在并行修复操作期间,特别地控制电路板背面的蒸发器块和加热器。 在本发明的另一方面,错误的传感器被这样识别并作出适当的响应。 在本发明的另一方面,系统以允许快速访问逻辑模块的方式关闭。
    • 7. 发明授权
    • Method for shutting down a refrigerating unit
    • 关闭制冷机组的方法
    • US06644048B2
    • 2003-11-11
    • US10385258
    • 2003-03-10
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • F25D2100
    • H05K7/20381F25B49/025F25B2400/06F25B2500/26F25B2600/021F25B2600/025F25B2600/2501F25B2700/02Y02B30/741
    • A refrigeration system for cooling a logic module includes an evaporator housing including an evaporator block in thermal communication with the logic module. The evaporator housing includes a humidity sensor for detecting a humidity within the evaporator housing. The system further comprises a controller for controlling a refrigeration unit supplying cold refrigerant to the evaporator block in response to the operating conditions of the logic module and the temperature of the evaporator block. In another aspect of the invention, two modular refrigeration units are independently operable to cool the evaporator block, and each refrigeration unit is controllable in various modes of operation including an enabled mode in which it is ready to cool the evaporator and an on mode in which it is actively cooling the evaporator. In another aspect of the invention, the evaporator block and a heater on a reverse side of the circuit board are particularly controlled during concurrent repair operations. In another aspect of the invention, faulty sensors are recognized as such and an appropriate response is made. In another aspect of the invention, the system is shut down in a manner allowing rapid access to the logic module.
    • 用于冷却逻辑模块的制冷系统包括蒸发器壳体,其包括与逻辑模块热连通的蒸发器块。 蒸发器壳体包括用于检测蒸发器壳体内的湿度的湿度传感器。 该系统还包括控制器,用于响应于逻辑模块的操作条件和蒸发器块的温度,控制向蒸发器块供应冷制冷剂的制冷单元。 在本发明的另一方面,两个模块化制冷单元可独立操作以冷却蒸发器块,并且每个制冷单元可在各种操作模式中控制,包括其中准备冷却蒸发器的启用模式和其中 它主动冷却蒸发器。 在本发明的另一方面,在并行修复操作期间,特别地控制电路板背面的蒸发器块和加热器。 在本发明的另一方面,错误的传感器被这样识别并作出适当的响应。 在本发明的另一方面,系统以允许快速访问逻辑模块的方式关闭。
    • 9. 发明授权
    • Method of controlling a refrigeration unit
    • 控制制冷机组的方法
    • US06644056B2
    • 2003-11-11
    • US10385259
    • 2003-03-10
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • Gary F. GothJody A. HickeyDaniel J. KearneyRobert Makowicki
    • F25B4902
    • H05K7/20381F25B49/025F25B2400/06F25B2500/26F25B2600/021F25B2600/025F25B2600/2501F25B2700/02Y02B30/741
    • A refrigeration system for cooling a logic module includes an evaporator housing including an evaporator block in thermal communication with the logic module. The evaporator housing includes a humidity sensor for detecting a humidity within the evaporator housing. The system further comprises a controller for controlling a refrigeration unit supplying cold refrigerant to the evaporator block in response to the operating conditions of the logic module and the temperature of the evaporator block. In another aspect of the invention, two modular refrigeration units are independently operable to cool the evaporator block, and each refrigeration unit is controllable in various modes of operation including an enabled mode in which it is ready to cool the evaporator and an on mode in which it is actively cooling the evaporator. In another aspect of the invention, the evaporator block and a heater on a reverse side of the circuit board are particularly controlled during concurrent repair operations. In another aspect of the invention, faulty sensors are recognized as such and an appropriate response is made. In another aspect of the invention, the system is shut down in a manner allowing rapid access to the logic module.
    • 用于冷却逻辑模块的制冷系统包括蒸发器壳体,其包括与逻辑模块热连通的蒸发器块。 蒸发器壳体包括用于检测蒸发器壳体内的湿度的湿度传感器。 该系统还包括控制器,用于响应于逻辑模块的操作条件和蒸发器块的温度,控制向蒸发器块供应冷制冷剂的制冷单元。 在本发明的另一方面,两个模块化制冷单元可独立操作以冷却蒸发器块,并且每个制冷单元可在各种操作模式中控制,包括其中准备冷却蒸发器的启用模式和其中 它主动冷却蒸发器。 在本发明的另一方面,在并行修复操作期间,特别地控制电路板背面的蒸发器块和加热器。 在本发明的另一方面,错误的传感器被这样识别并作出适当的响应。 在本发明的另一方面,系统以允许快速访问逻辑模块的方式关闭。