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    • 41. 发明申请
    • Method and apparatus for producing purified or ozone enriched air to remove contaminants from fluids
    • 用于生产纯化或富含臭氧的空气以从流体中除去污染物的方法和设备
    • US20050175498A1
    • 2005-08-11
    • US10629628
    • 2003-07-30
    • Jerry NelsonCraig Andrews
    • Jerry NelsonCraig Andrews
    • A61L2/10A61L2/20A61L9/015A61L9/20
    • A61L9/015A61L2/10A61L2/20A61L2/202A61L9/20B01D2251/104C02F2201/328
    • A method and apparatus for producing purified or ozone enriched air to remove contaminants from fluids is accomplished by exposing an air stream from a surrounding area to ozone generating ultra-violet (UV) radiation to generate ozone in a system ozone chamber. The ozone chamber is configured to reduce through-flow velocity and provide time for the ozone to mix with the air and oxidize contaminants. The air stream subsequently enters a germicidal chamber and is exposed to germicidal UV radiation to destroy bacteria and ozone in the air stream resulting in sterilized air. The radiation source may include an end-cap that interfaces guiding mechanisms to align the end-cap for power connections, and/or controls emission of ozone generating radiation to control production of ozone. Further, the system may include an additional germicidal chamber that exposes an air stream to germicidal radiation prior to treatment within the ozone chamber. Moreover, the system may be configured to include a baffling arrangement to control air through-flow velocity, or may be implemented by a cartridge arrangement, whereby a cartridge housing the chambers and radiation sources is periodically replaced. The system may further be configured for installation within a wall or ceiling, or may be utilized to remove contaminants from and/or ozonate liquids. In addition, the air sterilization systems may be utilized within air treatment systems to remove contaminants from an air stream within these systems.
    • 通过将来自周围区域的空气流暴露于产生臭氧的紫外线(UV)辐射以在系统臭氧室中产生臭氧来实现用于产生纯化或富臭氧的空气以从流体中除去污染物的方法和装置。 臭氧室配置成减少通流速度,并为臭氧与空气混合和氧化污染物提供时间。 空气流随后进入杀菌室并暴露于杀菌的紫外线辐射以破坏空气流中的细菌和臭氧,导致无菌空气。 辐射源可以包括接头引导机构以对准用于电源连接的端盖,和/或控制臭氧产生辐射的发射以控制臭氧的产生。 此外,该系统可以包括在臭氧室内处理之前将空气流暴露于杀菌辐射的另外的杀菌室。 此外,该系统可以被配置为包括挡板装置以控制空气通过流速,或者可以通过盒装置来实现,由此周期性地更换容纳室和辐射源的盒。 该系统还可以被配置为安装在墙壁或天花板内,或者可以用于从和/或臭化液体中去除污染物。 此外,空气灭菌系统可以在空气处理系统内使用以从这些系统内的空气流中去除污染物。
    • 49. 发明授权
    • Reconfigurable power control for a mobile terminal
    • 移动终端的可重新配置的功率控制
    • US07167054B1
    • 2007-01-23
    • US11002473
    • 2004-12-02
    • David DeningCraig AndrewsMichael R. KayJackie JohnsonUlrik Riis Madsen
    • David DeningCraig AndrewsMichael R. KayJackie JohnsonUlrik Riis Madsen
    • H03F3/04
    • H03F1/0227H02M3/156H02M2001/0045H03F1/025H03F2200/372
    • Power control circuitry that is configurable as either a Low Dropout (LDO) voltage regulator or a switching DC—DC converter for controlling a variable supply voltage provided to a power amplifier of a mobile terminal is provided. The power control circuitry includes an output stage including first and second output transistors, an analog control system, and a digital control system. When in LDO voltage regulator mode, the analog control system provides an analog control signal to the first transistor based on an adjustable power control signal and a feedback signal indicative of the variable supply voltage, and the digital control system operates to disable the second output transistor. When in DC—DC converter mode, an output stage of the analog control system is disabled, and the digital control system provides binary control signals to the first and second transistors based on the adjustable power control signal and the feedback signal.
    • 提供了可配置为低压差(LDO)电压调节器或用于控制提供给移动终端的功率放大器的可变电源电压的开关DC-DC转换器的功率控制电路。 功率控制电路包括包括第一和第二输出晶体管的输出级,模拟控制系统和数字控制系统。 当处于LDO稳压器模式时,模拟控制系统基于可调节功率控制信号和指示可变电源电压的反馈信号向第一晶体管提供模拟控制信号,并且数字控制系统操作以禁用第二输出晶体管 。 当处于DC-DC转换器模式时,模拟控制系统的输出级被禁止,并且数字控制系统基于可调功率控制信号和反馈信号向第一和第二晶体管提供二进制控制信号。
    • 50. 发明申请
    • Heat and humidity exchanger
    • 热交换器
    • US20060147773A1
    • 2006-07-06
    • US11030600
    • 2005-01-06
    • Jeremy SteinshniderCraig AndrewsJeffrey Parkey
    • Jeremy SteinshniderCraig AndrewsJeffrey Parkey
    • H01M8/04F24F3/14
    • H01M8/04149H01M8/04014H01M8/04029H01M8/04134H01M2008/1095
    • A heat and humidity exchanger stack formed by stacking at least one reactant gas source half-cell and at least one reactant gas exhaust half-cell, with each half-cell comprising a porous flowfield, wherein each pair of adjacent half-cells of the stacked heat and humidity exchanger are separated by a member selected from a water permeable/heat conducting member, a water impermeable/heat conducting member, or a water impermeable/heat insulating member and wherein at least one of the members is a water permeable/heat conducting member separating a reactant gas supply half-cell from an adjacent reactant gas exhaust half-cell. The stack may further comprise at least one thermal management fluid cell and/or a heat sink cell separated from the adjacent half-cells in the stack with one of the heat conducting or heat insulating members.
    • 通过堆叠至少一个反应气体源半电池和至少一个反应气体排出半电池而形成的热和湿度交换器叠层,每个半电池包括多孔流场,其中堆叠的每对相邻的半电池 热交换器和热交换器由选自透水/导热构件,不透水/导热构件或不透水/绝热构件的构件分开,并且其中至少一个构件是透水/导热的 将反应气体供应半电池与相邻反应气体排气半电池分离的部件。 堆叠还可以包括至少一个热管理流体池和/或与堆叠中的相邻半单元与导热或隔热构件之一分离的散热室。