会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • System and method for protecting transient-suppressing elements against over-voltage conditions
    • 用于保护瞬态抑制元件免受过电压条件的系统和方法
    • US20070195474A1
    • 2007-08-23
    • US11357226
    • 2006-02-17
    • Thomas HartmanBryan MarsicanoW. MauneyJames WiseMichael King
    • Thomas HartmanBryan MarsicanoW. MauneyJames WiseMichael King
    • H02H9/04
    • H02H9/042
    • An over-voltage protection system including a phase bus connected to a phase conductor of an electrical system and one or more transient-suppressing lines connected to the phase bus. Each of the transient-suppressing lines includes a contactor and a transient-suppressing element. The contactor of each transient-suppressing line is selectively opened and closed by a processor, thereby protecting the transient suppressing element from excessive currents. Also a method of protecting at least one transient-suppressing element from over-voltage conditions including providing a transient-suppressing line including the at least one transient-suppressing element in parallel with a load, measuring at least one of a voltage signal representative of a voltage on the transient-suppressing line and a current signal representative of a current on the transient suppressing line, and selectively placing the transient-suppressin line in either an open condition or a closed condition based on at least one of the voltage signal and the current signal.
    • 一种过电压保护系统,包括连接到电气系统的相导体的相位总线和连接到相位总线的一个或多个瞬态抑制线路。 每个瞬态抑制线包括接触器和瞬态抑制元件。 每个瞬态抑制线的接触器由处理器选择性地打开和关闭,从而保护瞬变抑制元件免受过大电流的影响。 还有一种保护至少一个瞬态抑制元件免受过电压条件的方法,包括提供包括与负载并联的至少一个瞬态抑制元件的瞬态抑制线,测量代表一个 瞬态抑制线上的电压和表示瞬态抑制线上的电流的电流信号,以及基于电压信号和电流中的至少一个选择性地将瞬态抑制线路置于开路状态或闭合状态 信号。
    • 5. 发明授权
    • Method of control of cooling system condenser fans and cooling tower fans and pumps
    • 冷却系统冷凝器风扇和冷却塔风扇和泵的控制方法
    • US06257007B1
    • 2001-07-10
    • US09196382
    • 1998-11-19
    • Thomas Hartman
    • Thomas Hartman
    • F25B3904
    • F25B49/027F25B49/025F25B2600/0253F25B2600/111Y02B30/741Y02B30/743
    • A variable capacity compression type cooling system improves operating efficiency by modulating speed of the condenser pump motor and/or a cooling tower fan motor, in response to the loading level on the cooling apparatus. In contrast to known control strategies that rely on refrigerant gas pressure or temperature changes, the present system controls the heat rejection components in direct response to the current loading level on the cooling system. Cooling system loading is indicated, e.g,. by the current power ratio (percent of maximum) being utilized by the air conditioning compressor. The new strategy sets operation of the heat rejection components at a power setting that is a fixed ratio of the cooling system current power ratio (subject to limits). For a cooling tower, the control is applied to both the cooling tower fan(s) and the condenser pump(s). For small systems, a single variable-speed drive can be used for both the refrigerant compression device and the heat rejection component(s). The invention provides significant improvements in efficiency by reducing power consumed in operation of the various components of the system, particularly under reduced-loading conditions.
    • 可变容量压缩式冷却系统响应于冷却装置上的装载水平,通过调节冷凝器泵马达和/或冷却塔风扇马达的速度来提高运行效率。 与依赖于制冷剂气体压力或温度变化的已知控制策略相反,本系统直接响应于冷却系统上的当前负载水平来控制散热部件。 指示冷却系统负载,例如 通过空调压缩机利用的当前功率比(最大值的百分比)。 新的策略将冷却系统电流功率比(受限)的固定比例设定在功率设定下的散热部件的运行。 对于冷却塔,控制应用于冷却塔风扇和冷凝器泵。 对于小型系统,单个变速驱动器可用于制冷剂压缩装置和排热部件。 本发明通过减少在系统的各种部件的操作中消耗的功率,特别是在减载条件下,可以显着提高效率。
    • 8. 发明申请
    • Valve Seal and Method of Installing a Valve Seal
    • 阀门密封件和安装阀门密封件的方法
    • US20070145320A1
    • 2007-06-28
    • US11679572
    • 2007-02-27
    • Brian HartmanThomas Hartman
    • Brian HartmanThomas Hartman
    • F16K1/22
    • F16K1/2263Y10T137/0491Y10T137/0525Y10T137/6052
    • An assembly comprises a valve, a valve seal, and a piece of epoxy. The valve comprises a valve gate, a housing, and a plurality of screws. The housing comprises a fluid passageway and a groove that extends into the housing from the fluid passageway. Each of the screws extends into the groove of the housing. The valve gate is movable relative to the housing between an opened and closed position. The valve seal is positioned at least partially within the groove. The piece of epoxy surrounds at least a portion of each of the screws and has a geometry that is interlocked with the valve seal and with each of the screws in a manner securing the valve seal to each of the screws and in a manner such that the valve seal is positioned to compress against the valve gate when the valve gate is in the closed position.
    • 组件包括阀,阀密封件和环氧树脂片。 该阀包括阀门,壳体和多个螺钉。 壳体包括流体通道和从流体通道延伸到壳体中的凹槽。 每个螺钉延伸到壳体的凹槽中。 阀门可在打开和关闭位置之间相对于壳体移动。 阀密封件至少部分地定位在凹槽内。 环氧树脂围绕每个螺钉的至少一部分,并且具有与阀密封件互锁的几何形状,并且以每种螺钉将阀密封件固定到每个螺钉上并且以这样的方式使得: 当阀门处于关闭位置时,阀密封件定位成压靠阀门。
    • 9. 发明申请
    • VALVE SEAL AND METHOD OF INSTALLING A VALVE SEAL
    • 阀密封和安装阀密封的方法
    • US20070138427A1
    • 2007-06-21
    • US11304245
    • 2005-12-15
    • Brian HartmanThomas Hartman
    • Brian HartmanThomas Hartman
    • F16K1/22
    • F16K1/2263Y10T137/0491Y10T137/0525Y10T137/6052
    • An assembly comprises a valve, a valve seal, and a piece of epoxy. The valve comprises a valve gate, a housing, and a plurality of screws. The housing comprises a fluid passageway and a groove that extends into the housing from the fluid passageway. Each of the screws extends into the groove of the housing. The valve gate is movable relative to the housing between an opened and closed position. The valve seal is positioned at least partially within the groove. The piece of epoxy surrounds at least a portion of each of the screws and has a geometry that is interlocked with the valve seal and with each of the screws in a manner securing the valve seal to each of the screws and in a manner such that the valve seal is positioned to compress against the valve gate when the valve gate is in the closed position.
    • 组件包括阀,阀密封件和环氧树脂片。 该阀包括阀门,壳体和多个螺钉。 壳体包括流体通道和从流体通道延伸到壳体中的凹槽。 每个螺钉延伸到壳体的凹槽中。 阀门可在打开和关闭位置之间相对于壳体移动。 阀密封件至少部分地定位在凹槽内。 环氧树脂围绕每个螺钉的至少一部分,并且具有与阀密封件互锁的几何形状,并且以每种螺钉将阀密封件固定到每个螺钉上并且以这样的方式使得: 当阀门处于关闭位置时,阀密封件定位成压靠阀门。