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    • 1. 发明授权
    • Fuel system safety device for run-dry conditions
    • 用于运行干燥条件的燃油系统安全装置
    • US07342763B2
    • 2008-03-11
    • US11048645
    • 2005-01-31
    • John E. MladenikDavid L. EvansJose M. BarbaDaniel E. FishGerald BenchAndrew Wagner
    • John E. MladenikDavid L. EvansJose M. BarbaDaniel E. FishGerald BenchAndrew Wagner
    • H02H7/00
    • H02H3/00H01H2071/006H02H3/042
    • Systems, methods, and apparatus for fault detection and interruption in power lines are provided. Circuitry is implemented via software and hardware that is configured to sense an operational aspect of a power line, such as current levels in a three-phase power line, and apply signal processing to the sensed operational aspect to detect faults including different types of faults such as transient and steady state faults and can also be configured to identify the type of fault. Information on the fault and the identification of the type of fault can be displayed, stored, or some other output operation can be implemented. Circuitry can be implemented to provide digital signal processing and analog signal processing to, for example, independently and in parallel (e.g., redundant operation) detect faults and respond to faults as they occur (i.e., in real time).
    • 提供了用于故障检测和电源线中断的系统,方法和装置。 电路通过被配置为感测电力线的操作方面(例如三相电力线中的电流水平)的软件和硬件来实现,并且对感测的操作方面应用信号处理以检测包括不同类型的故障的故障,例如 作为瞬态和稳态故障,也可以配置为识别故障类型。 关于故障信息和故障类型的识别可以进行显示,存储或其他一些输出操作的实现。 可以实现电路以提供数字信号处理和模拟信号处理,以例如独立地并行地(例如,冗余操作)检测故障并且在发生故障时(即实时地)响应故障)。
    • 2. 发明授权
    • Method of detecting run-dry conditions in fuel systems
    • 检测燃油系统运行干燥条件的方法
    • US07352550B2
    • 2008-04-01
    • US11049278
    • 2005-02-01
    • John E. MladenikDavid L. EvansJose M. BarbaDaniel E. FishGerald BenchAndrew Wagner
    • John E. MladenikDavid L. EvansJose M. BarbaDaniel E. FishGerald BenchAndrew Wagner
    • H02H7/00
    • H02H3/00
    • Systems, methods, and apparatus for fault detection and interruption in power lines are provided. Circuitry is implemented via software and hardware that is configured to sense an operational aspect of a power line, such as current levels in a three-phase power line, and apply signal processing to the sensed operational aspect to detect faults including different types of faults such as transient and steady state faults and can also be configured to identify the type of fault. Information on the fault and the identification of the type of fault can be displayed, stored, or some other output operation can be implemented. Circuitry can be implemented to provide digital signal processing and analog signal processing to, for example, independently and in parallel (e.g., redundant operation) detect faults and respond to faults as they occur (i.e., in real time).
    • 提供了用于故障检测和电源线中断的系统,方法和装置。 电路通过被配置为感测电力线的操作方面(例如三相电力线中的电流水平)的软件和硬件来实现,并且对感测的操作方面应用信号处理以检测包括不同类型的故障的故障,例如 作为瞬态和稳态故障,也可以配置为识别故障类型。 关于故障信息和故障类型的识别可以进行显示,存储或其他一些输出操作的实现。 可以实现电路以提供数字信号处理和模拟信号处理,以例如独立地并行地(例如,冗余操作)检测故障并且在发生故障时(即实时地)响应故障)。
    • 3. 发明申请
    • Fuel system safety device for run-dry conditions
    • 用于运行干燥条件的燃油系统安全装置
    • US20060072270A1
    • 2006-04-06
    • US11048645
    • 2005-01-31
    • John MladenikDavid EvansJose BarbaDaniel FishGerald BenchAndrew Wagner
    • John MladenikDavid EvansJose BarbaDaniel FishGerald BenchAndrew Wagner
    • H02H9/02H02H3/08
    • H02H3/00H01H2071/006H02H3/042
    • Systems, methods, and apparatus for fault detection and interruption in power lines are provided. Circuitry is implemented via software and hardware that is configured to sense an operational aspect of a power line, such as current levels in a three-phase power line, and apply signal processing to the sensed operational aspect to detect faults including different types of faults such as transient and steady state faults and can also be configured to identify the type of fault. Information on the fault and the identification of the type of fault can be displayed, stored, or some other output operation can be implemented. Circuitry can be implemented to provide digital signal processing and analog signal processing to, for example, independently and in parallel (e.g., redundant operation) detect faults and respond to faults as they occur (i.e., in real time).
    • 提供了用于故障检测和电源线中断的系统,方法和装置。 电路通过被配置为感测电力线的操作方面(例如三相电力线中的电流水平)的软件和硬件来实现,并且对感测的操作方面应用信号处理以检测包括不同类型的故障的故障,例如 作为瞬态和稳态故障,也可以配置为识别故障类型。 关于故障信息和故障类型的识别可以进行显示,存储或其他一些输出操作的实现。 可以实现电路以提供数字信号处理和模拟信号处理,以例如独立地并行地(例如,冗余操作)检测故障并且在发生故障时(即实时地)响应故障)。
    • 4. 发明申请
    • Method of detecting run-dry conditions in fuel systems
    • 检测燃油系统运行干燥条件的方法
    • US20050195545A1
    • 2005-09-08
    • US11049278
    • 2005-02-01
    • John MladenikDavid EvansJose BarbaDaniel FishGerald BenchAndrew Wagner
    • John MladenikDavid EvansJose BarbaDaniel FishGerald BenchAndrew Wagner
    • H02H3/00H02H3/08
    • H02H3/00
    • Systems, methods, and apparatus for fault detection and interruption in power lines are provided. Circuitry is implemented via software and hardware that is configured to sense an operational aspect of a power line, such as current levels in a three-phase power line, and apply signal processing to the sensed operational aspect to detect faults including different types of faults such as transient and steady state faults and can also be configured to identify the type of fault. Information on the fault and the identification of the type of fault can be displayed, stored, or some other output operation can be implemented. Circuitry can be implemented to provide digital signal processing and analog signal processing to, for example, independently and in parallel (e.g., redundant operation) detect faults and respond to faults as they occur (i.e., in real time).
    • 提供了用于故障检测和电源线中断的系统,方法和装置。 电路通过被配置为感测电力线的操作方面(例如三相电力线中的电流水平)的软件和硬件来实现,并且对感测的操作方面应用信号处理以检测包括不同类型的故障的故障,例如 作为瞬态和稳态故障,也可以配置为识别故障类型。 关于故障信息和故障类型的识别可以进行显示,存储或其他一些输出操作的实现。 可以实现电路以提供数字信号处理和模拟信号处理,以例如独立地并行地(例如,冗余操作)检测故障并且在发生故障时(即实时地)响应故障)。
    • 10. 发明申请
    • Coated substrate with improved solar control properties
    • 涂层基材具有改进的太阳能控制性能
    • US20070116965A1
    • 2007-05-24
    • US11517958
    • 2006-09-08
    • Paul MedwickAndrew Wagner
    • Paul MedwickAndrew Wagner
    • B32B17/06B05D3/02B05D1/36
    • C03C17/3639C03C17/36C03C17/3644C03C17/3649C03C17/3652C03C17/366C03C17/3681
    • A coated substrate is disclosed. The coated substrate includes a substrate; a first dielectric layer overlying the substrate having a total thickness greater than 290 Å; a first infrared-reflective metal layer having a thickness ranging from 100 Å to 130 Å overlying the first dielectric layer; a first primer layer having a thickness ranging from 0.5 Å to 60 Å overlying the first infrared-reflective metal layer; a second dielectric layer overlying the first primer layer having a total thickness ranging from 680 Å to 870 Å; a second infrared-reflective metal layer having a thickness ranging from 115 Å to 150 Å overlying the second dielectric layer; a second primer layer having a thickness ranging from 0.5 Å to 60 Å overlying the second dielectric layer; and a third dielectric layer having a total thickness ranging from 190 Å to 380 Å overlying the second primer layer.
    • 公开了涂覆的基材。 被覆基板包括基板; 覆盖基板的第一电介质层,总厚度大于290; 覆盖在第一电介质层上的厚度范围从100埃到130埃的第一红外反射金属层; 覆盖在第一红外线反射金属层上的厚度范围为从零到60埃的第一底漆层; 覆盖第一底漆层的第二电介质层,其厚度范围为680至870; 覆盖在第二介电层上的第二红外线反射金属层,其厚度范围从115埃到150埃; 第二底漆层,覆盖在第二介电层上; 以及覆盖第二底层的总厚度为范围从190埃到380埃的第三电介质层。