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    • 1. 发明申请
    • TECHNIQUES FOR APPROXIMATING A DIFFERENCE BETWEEN TWO CAPACITANCES
    • 对两个容量之间的差异进行估计的技术
    • WO2012015501A1
    • 2012-02-02
    • PCT/US2011/033926
    • 2011-04-26
    • MEDTRONICS, INC.WU, Jin, YongTYLER, Larry, E.
    • WU, Jin, YongTYLER, Larry, E.
    • G01P15/125G01D5/24G01R27/26
    • G01P15/125A61N1/36542A61N1/36578G01D5/24G01R27/2605
    • A system includes a capacitance adjustment module and a control module. The capacitance adjustment module is configured to connect one or more of N capacitors in parallel with one of a first and second capacitance. The control module identifies the smaller of the first and second capacitances and identifies the larger of the first and second capacitances. Subsequently, the control module, during each of M iterations, instructs the capacitance adjustment module to connect at least one of the N capacitors across a set of nodes in parallel with the smaller identified capacitance, and determines whether the capacitance associated with the set of nodes is greater than the larger identified capacitance. After the M iterations, the control module approximates the difference between the first and second capacitances based on which of the N capacitors are connected across the nodes. M and N are integers greater than or equal to 1.
    • 系统包括电容调整模块和控制模块。 电容调整模块被配置为将N个电容器中的一个或多个并联连接到第一和第二电容中的一个。 控制模块识别第一和第二电容中较小的一个,并识别第一和第二电容中较大的一个。 随后,控制模块在每次M次迭代期间指示电容调整模块将跨越一组节点的N个电容器中的至少一个与较小的识别电容并联,并且确定与该组节点相关联的电容 大于较大的识别电容。 在M次迭代之后,控制模块基于N个电容器中的哪一个在节点之间连接来近似第一和第二电容之间的差异。 M和N是大于或等于1的整数。
    • 3. 发明申请
    • TECHNIQUES FOR APPROXIMATING A DIFFERENCE BETWEEN TWO CAPACITANCES
    • 对两个容量之间的差异进行估计的技术
    • WO2012015501A8
    • 2013-01-10
    • PCT/US2011033926
    • 2011-04-26
    • MEDTRONIC INCWU JIN YONGTYLER LARRY E
    • WU JIN YONGTYLER LARRY E
    • G01P15/125G01D5/24G01R27/26
    • G01P15/125A61N1/36542A61N1/36578G01D5/24G01R27/2605
    • A system includes a capacitance adjustment module and a control module. The capacitance adjustment module is configured to connect one or more of N capacitors in parallel with one of a first and second capacitance. The control module identifies the smaller of the first and second capacitances and identifies the larger of the first and second capacitances. Subsequently, the control module, during each of M iterations, instructs the capacitance adjustment module to connect at least one of the N capacitors across a set of nodes in parallel with the smaller identified capacitance, and determines whether the capacitance associated with the set of nodes is greater than the larger identified capacitance. After the M iterations, the control module approximates the difference between the first and second capacitances based on which of the N capacitors are connected across the nodes. M and N are integers greater than or equal to 1.
    • 系统包括电容调整模块和控制模块。 电容调整模块被配置为将N个电容器中的一个或多个并联连接到第一和第二电容中的一个。 控制模块识别第一和第二电容中较小的一个,并识别第一和第二电容中较大的一个。 随后,控制模块在每次M次迭代期间指示电容调整模块将跨越一组节点的N个电容器中的至少一个与较小的识别电容并联,并且确定与该组节点相关联的电容 大于较大的识别电容。 在M次迭代之后,控制模块基于N个电容器中的哪一个在节点之间连接来近似第一和第二电容之间的差异。 M和N是大于或等于1的整数。
    • 6. 发明申请
    • DESTRUCTIVE ELECTRICAL TRANSIENT PROTECTION
    • 破坏性电气瞬态保护
    • WO2004073040A2
    • 2004-08-26
    • PCT/US2004004211
    • 2004-02-12
    • MEDTRONIC INCMAY JAMES TTYLER LARRY E
    • MAY JAMES TTYLER LARRY E
    • H01L27/02H01L
    • H01L27/0266
    • A protection for ICs against ESD transients includes a circuit with a master circuit driving a slave circuit. The master circuit responds to ESD voltage V(t). The slave circuit comprises parallel shunt devices having common inputs. The output of the master circuit is coupled to the common inputs. As V(t) increases the master circuit applies a portion of V(t) to the input of the slave circuit shunt devices. The threshold voltage Vt1 at which the slave circuit shunt devices would otherwise turn on to a lower value Vt1' closer to the holding voltage Vh of the shunt devices. All of the slave circuit devices turn on substantially simultaneously at about Vt1' close to Vh, thereby shunting the ESD transient to ground at a lower value of V(t). The master and slave circuits are inactive during normal IC operation.
    • 针对ESD瞬变的IC的保护包括具有驱动从电路的主电路的电路。 主电路响应ESD电压V(t)。 从电路包括具有公共输入的并行分流装置。 主电路的输出耦合到公共输入端。 当V(t)增加时,主电路将V(t)的一部分施加到从电路并联装置的输入端。 从电路分流器件的阈值电压Vt1否则将导通到更接近分流器件的保持电压Vh的较低值Vt1'。 所有从电路器件大致同时接近Vt1'接近Vh,从而以较低的V(t)值将ESD瞬变分流到地。 主电路和从电路在正常IC操作期间不起作用。