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    • 1. 发明申请
    • SYSTEM FOR ASSEMBLING AND UTILIZING SENSORS IN CONTAINERS
    • 在集装箱中组装和使用传感器的系统
    • WO2008127429A2
    • 2008-10-23
    • PCT/US2007085199
    • 2007-11-20
    • GE HEALTHCARE BIO SCIENCESWANG HUAPOTYRAILO RADISLAV ARICE STEVEN TPIZZI VINCENT F
    • WANG HUAPOTYRAILO RADISLAV ARICE STEVEN TPIZZI VINCENT F
    • G01N27/02
    • B01L3/5457B01L3/50853B01L3/5453B01L2200/143B01L2300/022B01L2300/046B01L2300/0627B01L2300/0887G01N27/021Y10T156/10
    • A system for measuring parameters in a container is disclosed. A container has a solution. A protective layer is deposited over at least one sensor and at least one wall of the container, where the protective layer is attached to the wall of the container to form a seal between the container and the at least one sensor. The at least one sensor is configured to have an operable electromagnetic field based on a thickness of the container and the protective layer. The at least one sensor in conjunction with a tag is in proximity to an impedance analyzer and a reader that constitute a measurement device. The at least one sensor is configured to determine at least one parameter of the solution. The tag is configured to provide a digital ID associated with the at least one sensor, where the container is in proximity to the reader and an impedance analyzer. The impedance analyzer is configured to receive a given range of frequencies from the at least one sensor based on the measured complex impedance over the given range of frequencies.
    • 公开了一种用于测量容器中的参数的系统。 容器有一个解决方案。 保护层沉积在容器的至少一个传感器和至少一个壁上,其中保护层附接到容器的壁,以在容器和至少一个传感器之间形成密封。 至少一个传感器被配置为具有基于容器和保护层的厚度的可操作的电磁场。 结合标签的至少一个传感器位于构成测量装置的阻抗分析器和读取器附近。 所述至少一个传感器被配置为确定所述解的至少一个参数。 标签被配置为提供与至少一个传感器相关联的数字ID,其中容器位于读取器附近以及阻抗分析器。 阻抗分析器被配置为基于在给定频率范围内的测量的复阻抗从至少一个传感器接收给定的频率范围。
    • 2. 发明申请
    • A SPRING ASSEMBLY WITH SPRING MEMBERS BIASING AND CAPACITIVELY COUPLING JACK CONTACTS
    • 带有弹簧构件偏置和电容耦合插座接点的弹簧组件
    • WO2011063142A3
    • 2011-09-22
    • PCT/US2010057269
    • 2010-11-18
    • LEVITON MANUFACTURING COWANG HUA
    • WANG HUA
    • H01R24/58H01R13/646
    • H01R13/6466H01R13/6467H01R13/6658H01R24/64
    • A spring assembly for a communications jack configured to receive a communications plug having a plurality of plug contacts. The jack includes first, second, third, and fourth jack contacts. The first and second jack contacts are configured to carry a first differential signal. The third and fourth jack contacts are configured to carry a second differential signal. Each jack contact is electrically connected to a corresponding one of the plug contacts when the plug is received by the jack. The spring assembly has a conductive spring member for each jack contact. Each spring member is electrically connected to a corresponding jack contact and biases that jack contact against a corresponding plug contact. To reduce crosstalk, the spring member connected to the first jack contact is capacitively coupled to the third jack contact and the spring member connected to the fourth jack contact is capacitively coupled to the second jack contact.
    • 一种用于通信插座的弹簧组件,所述通信插座被构造成接收具有多个插头触点的通信插头。 插孔包括第一,第二,第三和第四插孔触点。 第一插座触点和第二插座触点构造为承载第一差分信号。 第三和第四插孔触点被配置为传送第二差分信号。 当插头被插座接收时,每个插座触点电连接到相应的一个插头触点。 弹簧组件具有用于每个插座触点的导电弹簧构件。 每个弹簧部件电连接到相应的插孔触点并且将该插孔触点偏压到相应的插头触点。 为了减少串扰,连接到第一插孔触点的弹簧构件电容性地耦合到第三插孔触点,并且连接到第四插孔触点的弹簧构件电容性地耦合到第二插孔触点。
    • 5. 发明申请
    • A SPRING ASSEMBLY WITH SPRING MEMBERS BIASING AND CAPACITIVELY COUPLING JACK CONTACTS
    • 带有弹簧构件偏置和电容耦合插座接点的弹簧组件
    • WO2012106199A3
    • 2012-12-27
    • PCT/US2012022892
    • 2012-01-27
    • LEVITON MANUFACTURING COERICKSON JASONWANG HUABILY ADAM
    • ERICKSON JASONWANG HUABILY ADAM
    • H01R24/58H01R12/71
    • H01R24/64H01R13/6464H01R2201/04Y10T29/49208
    • A spring assembly for a communications jack including a plurality of jack contacts each electrically connectable to a corresponding plug contact of a communications plug. First and second jack contacts carry a first differential signal. Fifth and sixth jack contacts carry a second differential signal. The jack contacts carrying the first differential signal are adjacent a third jack contract and the jack contacts carrying the second differential signal are adjacent a fourth jack contract. For each jack contact, the assembly has a conductive spring member electrically connected to the jack contact that biases the jack contact against a corresponding plug contact. To reduce crosstalk, the spring members connected to the first and second jack contacts are each capacitively coupled to the fourth jack contact, and the spring members connected to the fifth and sixth jack contacts are each capacitively coupled to the third jack contact.
    • 一种用于通信插座的弹簧组件,其包括多个插座触头,每个插座触头可电连接到通信插头的对应插头触头。 第一和第二插孔触点携带第一差分信号。 第五和第六插孔触点携带第二差分信号。 承载第一差分信号的插孔触点与第三插孔触点相邻,携带第二差分信号的插孔触点与第四插孔触点相邻。 对于每个插座触点,该组件具有电连接到插座触点的导电弹簧构件,其将插座触点偏压到相应的插头触点。 为了减少串扰,连接到第一和第二插孔触点的弹簧构件各自电容性地耦合到第四插孔触点,并且连接到第五和第六插孔触点的弹簧构件各自电容性地耦合到第三插孔触点。
    • 7. 发明申请
    • ELECTRONIC SELF-HEALING METHODS FOR RADIO-FREQUENCY RECEIVERS
    • 无线电频率接收机的电子自治方法
    • WO2011028248A3
    • 2011-08-11
    • PCT/US2010002322
    • 2010-08-24
    • CALIFORNIA INST OF TECHNBOHN FLORIANHAJIMIRI SEYED ALIWANG HUAWANG YU-JIU
    • BOHN FLORIANHAJIMIRI SEYED ALIWANG HUAWANG YU-JIU
    • H03L7/00H04B7/08
    • H04B1/40H04B17/0085
    • Systems and methods for providing self-healing integrated circuits. The method is characterized in that the behavior of a circuit or a device in response to an input signal is observed. One or more operational parameters or characteristics of the circuit or the device are derived. A corrective action to bring the operational parameters or characteristics of the circuit or device within a desired range is deduced, if needed. The corrective action can be the application of a correction signal or a modification of one or more parameters or characteristics of an element in the circuit. The calculated corrective action, if needed, is applied to bring the operational parameters or characteristics of the circuit or device within the desired range. Optionally, the operational parameters or characteristics of the circuit or the device after the correction is effectuated can be checked.
    • 提供自愈式集成电路的系统和方法。 该方法的特征在于,观察到响应于输入信号的电路或设备的行为。 导出电路或器件的一个或多个操作参数或特性。 如果需要,可以推导出将电路或设备的操作参数或特性置于所需范围内的纠正措施。 校正动作可以是在电路中应用校正信号或修改元件的一个或多个参数或特性。 如果需要,应用计算的校正动作将电路或设备的操作参数或特性置于所需范围内。 可选地,可以检查校正后的电路或设备的操作参数或特性。
    • 9. 发明申请
    • FULLY INTEGRATED TEMPERATURE REGULATOR FOR BIOCHEMICAL APPLICATIONS
    • 全面综合温度调节器用于生物化学应用
    • WO2009148664A3
    • 2010-02-25
    • PCT/US2009036288
    • 2009-03-06
    • CALIFORNIA INST OF TECHNWANG HUAHAJIMIRI SEYED ALI
    • WANG HUAHAJIMIRI SEYED ALI
    • H01L21/00H01L21/02H01L21/66
    • G05D23/24G05D23/1906G05D23/22G05D23/27
    • The invention is an integrated temperature regulator that can be fabricated using conventional semiconductor processing technology. The integrated temperature regulator can include a reaction chamber, for example fabricated from PDMS, in which chemical or biochemical reactions of interest can be carried out. The temperature regular can also be used to regulate the temperature of some circuits, e.g. an effective-inductance-change based magnetic particle sensor, to achieve a stable operation performance, such as an improved sensitivity. The integrated temperature regulator includes as subcomponents a temperature sensing circuit that receives a thermal signal from the vicinity of the reaction chamber, a temperature reference circuit, and a temperature control circuit that controls a heater based at least in part on the difference between the sensed temperature and the reference temperature. The various subcomponents can be programmable.
    • 本发明是可以使用常规半导体处理技术制造的集成温度调节器。 集成温度调节器可以包括例如由PDMS制造的反应室,其中可以进行感兴趣的化学或生物化学反应。 温度常数也可用于调节某些电路的温度,例如 基于有效电感变化的磁性粒子传感器,以实现稳定的操作性能,例如提高的灵敏度。 集成温度调节器包括作为子部件的温度感测电路,其接收来自反应室附近的热信号,温度参考电路和温度控制电路,其至少部分地基于感测温度之间的差异来控制加热器 和参考温度。 各个子部件可以编程。