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    • 2. 发明授权
    • Pump and fan control concepts in a cooling system
    • 冷却系统中的泵和风扇控制概念
    • US08602092B2
    • 2013-12-10
    • US11400347
    • 2006-04-06
    • Daniel J. LenehanKenneth GoodsonThomas W. KennyMark MunchSaroj Sahu
    • Daniel J. LenehanKenneth GoodsonThomas W. KennyMark MunchSaroj Sahu
    • F24F11/06
    • H01L23/473H01L23/34H01L23/467H01L2924/0002H01L2924/00
    • A closed loop cooling system and apparatus for controlling a fluid flow rate through the closed loop cooling system, the apparatus comprising a heat exchanger coupled to at least one heat generating device for removing waste heat from the heat generating device, at least one pump for circulating the fluid, a heat rejector for receiving the fluid, at least one fan for removing waste heat from the heat rejector, at least one temperature sensor coupled to the heat generating device to measure the temperature value of the at least one heat generating device, and a controller electrically coupled to the at least one pump, the at least one fan, and the at least one temperature sensor for receiving the temperature value to selectively control the fluid flow rate and the air flow rate, based on the temperature value.
    • 一种用于控制通过闭环冷却系统的流体流速的闭环冷却系统和装置,该装置包括耦合到至少一个用于从发热装置排出废热的至少一个发热装置的热交换器,至少一个用于循环的泵 所述流体,用于接收流体的热排出器,用于从所述热排出器去除废热的至少一个风扇,耦合到所述发热装置的至少一个温度传感器以测量所述至少一个发热装置的温度值;以及 电耦合到所述至少一个泵,所述至少一个风扇和所述至少一个温度传感器的控制器,用于接收所述温度值,以基于所述温度值选择性地控制所述流体流速和所述空气流速。
    • 3. 发明授权
    • Pump and fan control concepts in a cooling system
    • 冷却系统中的泵和风扇控制概念
    • US07591302B1
    • 2009-09-22
    • US10731674
    • 2003-12-08
    • Daniel J. LenehanKenneth GoodsonThomas W. KennyMark MunchSaroj Sahu
    • Daniel J. LenehanKenneth GoodsonThomas W. KennyMark MunchSaroj Sahu
    • F24F11/06
    • H01L23/473H01L23/34H01L23/467H01L2924/0002H01L2924/00
    • A method of and apparatus for cooling heat-generating devices in a cooling system is disclosed. The apparatus includes various sensors, control schemes and thermal models, to control pump flow rates and fan flow rates to minimize power consumption, fan noise, and noise transients. The apparatus further includes at least one heat-generating device, at least one heat exchanger, and at least one heat rejector. The apparatus can also include many pumps and fans. The method includes controlling a fluid flow rate of at least one pump and an air flow rate of at least one fan, in a cooling system for cooling at least one device. The method comprises the steps of: providing at least one temperature sensor coupled to measure a temperature value of each device; receiving the temperature value from each temperature sensor; and providing a controller to selectively control the fluid flow rate and the air flow rate, based on each temperature value. The method can further include the step of filling at least a portion of a heat exchanger with a thermal capacitance medium for maintaining the temperature value of the device below a maximum allowable temperature during thermal transients, wherein the heat exchanger is thermally coupled to the device.
    • 公开了一种用于冷却冷却系统中的发热装置的方法和装置。 该设备包括各种传感器,控制方案和热模型,以控制泵流量和风扇流量,以最小化功耗,风扇噪声和噪声瞬变。 该装置还包括至少一个发热装置,至少一个热交换器和至少一个热排出器。 该设备还可以包括许多泵和风扇。 该方法包括在用于冷却至少一个装置的冷却系统中控制至少一个泵的流体流速和至少一个风扇的空气流量。 该方法包括以下步骤:提供耦合以测量每个装置的温度值的至少一个温度传感器; 从每个温度传感器接收温度值; 并且基于每个温度值提供控制器来选择性地控制流体流速和空气流速。 该方法还可以包括用热容器介质填充热交换器的至少一部分的步骤,用于在热瞬变期间将器件的温度值保持在最大允许温度以下,其中热交换器热耦合到器件。