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    • 1. 发明授权
    • Microcontroller device, microcontroller debugging device, method of debugging a microcontroller device, microcontroller kit
    • 微控制器器件,微控制器调试器件,微控制器器件调试方法,微控制器套件
    • US08464098B2
    • 2013-06-11
    • US12934279
    • 2008-04-15
    • Ray MarshallThomas MacDonaldAndrew Stephen Mihalik, Jr.
    • Ray MarshallThomas MacDonaldAndrew Stephen Mihalik, Jr.
    • G06F11/00
    • G06F11/006
    • A microcontroller device comprising a receiver component configured to receive a one or more reset signals for the microcontroller device; an identification component configured to identify a source of the or each reset signals received by the receiver component; a time interval determining component configured to determine a length of a time interval in accordance with the identified source of the or each reset signals received by the receiver component; a voltage setting component configured to set a voltage of an output of the microcontroller device to a first value on receipt of a reset signal by the receiver component; and a control component configured to maintain the voltage of the output at the first value for the duration of the determined length of the time interval; and set the voltage of the output to a second value on substantial completion of the determined length of the time interval.
    • 一种微控制器装置,包括被配置为接收用于微控制器装置的一个或多个复位信号的接收器部件; 识别组件,其被配置为识别由所述接收器组件接收的所述或每个复位信号的源; 时间间隔确定部件,被配置为根据由所述接收器部件接收的所述或每个复位信号的识别源确定时间间隔的长度; 电压设定部件,被配置为在所述接收器部件接收到复位信号时将所述微控制器设备的输出的电压设定为第一值; 以及控制部件,被配置为将所述输出的电压在所述时间间隔的所确定的长度的持续时间内保持在所述第一值; 并且在确定的时间间隔长度的实质完成时将输出的电压设置为第二值。
    • 2. 发明申请
    • MICROCONTROLLER DEVICE, MICROCONTROLLER DEBUGGING DEVICE, METHOD OF DEBUGGING A MICROCONTROLLER DEVICE, MICROCONTROLLER KIT
    • MICROCONTROLLER器件,微控制器调试器件,调制微控制器器件的方法,微控制器套件
    • US20110022897A1
    • 2011-01-27
    • US12934279
    • 2008-04-15
    • Ray MarshallThomas MacdonaldAndrew Stephen Mihalik
    • Ray MarshallThomas MacdonaldAndrew Stephen Mihalik
    • G06F11/26G06F9/24
    • G06F11/006
    • A microcontroller device comprising a receiver component configured to receive a one or more reset signals for the microcontroller device; an identification component configured to identify a source of the or each reset signals received by the receiver component; a time interval determining component configured to determine a length of a time interval in accordance with the identified source of the or each reset signals received by the receiver component; a voltage setting component configured to set a voltage of an output of the microcontroller device to a first value on receipt of a reset signal by the receiver component; and a control component configured to maintain the voltage of the output at the first value for the duration of the determined length of the time interval; and set the voltage of the output to a second value on substantial completion of the determined length of the time interval.
    • 一种微控制器装置,包括被配置为接收用于微控制器装置的一个或多个复位信号的接收器部件; 识别组件,其被配置为识别由所述接收器组件接收的所述或每个复位信号的源; 时间间隔确定部件,被配置为根据由所述接收器部件接收的所述或每个复位信号的识别源确定时间间隔的长度; 电压设定部件,被配置为在所述接收器部件接收到复位信号时将所述微控制器设备的输出的电压设置为第一值; 以及控制部件,被配置为将所述输出的电压在所述时间间隔的所确定的长度的持续时间内保持在所述第一值; 并且在确定的时间间隔长度的实质完成时将输出的电压设置为第二值。
    • 3. 发明授权
    • Relating to diagnostics of a capacitive sensor
    • 关于电容传感器的诊断
    • US08629682B2
    • 2014-01-14
    • US12594229
    • 2007-04-06
    • Mike GarrardRay MarshallStefano Pietri
    • Mike GarrardRay MarshallStefano Pietri
    • G01R27/26
    • G01L23/225G01L27/007
    • A detector circuit for detecting the presence of a remote capacitive sensor having at least two terminals connected via a protection circuit that includes one or more capacitors, the detector circuit comprising: a current supply for changing the charge on the sensor and the protection circuit, a detector for measuring the voltage on one or more of the terminals; wherein the presence of the sensor is determined by changing the charge on the capacitive sensor and the one or more capacitors of the protection circuit in a predetermined manner such that the voltage measurement on the one or more terminals when the sensor is present is significantly different than when the sensor is absent.
    • 一种用于检测具有通过包括一个或多个电容器的保护电路连接的至少两个端子的远程电容传感器的存在的检测器电路,所述检测器电路包括:用于改变传感器和保护电路上的电荷的电流源, 用于测量一个或多个端子上的电压的检测器; 其中通过以预定的方式改变电容传感器和保护电路的一个或多个电容器的电荷来确定传感器的存在,使得当存在传感器时在一个或多个端子上的电压测量显着不同于 当传感器不存在时。
    • 8. 发明申请
    • RELATING TO DIAGNOSTICS OF A CAPACITIVE SENSOR
    • 与电容式传感器的诊断相关
    • US20100043531A1
    • 2010-02-25
    • US12594229
    • 2007-04-06
    • Mike GarrardRay MarshallStefano Pietri
    • Mike GarrardRay MarshallStefano Pietri
    • G01L23/22
    • G01L23/225G01L27/007
    • A detector circuit for detecting the presence of a remote capacitive sensor having at least two terminals connected via a protection circuit that includes one or more capacitors, the detector circuit comprising: a current supply for changing the charge on the sensor and the protection circuit, a detector for measuring the voltage on one or more of the terminals; wherein the presence of the sensor is determined by changing the charge on the capacitive sensor and the one or more capacitors of the protection circuit in a predetermined manner such that the voltage measurement on the one or more terminals when the sensor is present is significantly different than when the sensor is absent.
    • 一种用于检测具有通过包括一个或多个电容器的保护电路连接的至少两个端子的远程电容传感器的存在的检测器电路,所述检测器电路包括:用于改变传感器和保护电路上的电荷的电流源, 用于测量一个或多个端子上的电压的检测器; 其中通过以预定的方式改变电容传感器和保护电路的一个或多个电容器的电荷来确定传感器的存在,使得当存在传感器时在一个或多个端子上的电压测量显着不同于 当传感器不存在时。
    • 9. 发明申请
    • Non-intrusive address mapping having a modified address space identifier and circuitry therefor
    • 非侵入式地址映射具有修改的地址空间标识符及其电路
    • US20070198805A1
    • 2007-08-23
    • US11413430
    • 2006-04-28
    • Richard SojaWilliam MoyerRay Marshall
    • Richard SojaWilliam MoyerRay Marshall
    • G06F12/00
    • G06F12/1027G06F12/0292
    • A method includes providing an effective address, providing an address space identifier which identifies a currently executing process, providing a mapping modifier to form a modified address space identifier where the mapping modifier is based on at least one external signal generated outside the processor, using the effective address and the modified address space identifier to form a logical address, and providing a physical address corresponding to the logical address. When the effective address has a first effective address value, the address space identifier has a first address space identifier value, and the mapping modifier has a first mapping value, the physical address has a first physical address value. When the effective address has the first effective address value, the address space identifier has the first address space identifier value, and the mapping modifier has a second mapping value, the physical address has a second physical address value.
    • 一种方法包括提供有效地址,提供标识当前执行过程的地址空间标识符,提供映射修饰符以形成修改的地址空间标识符,其中映射修饰符基于在处理器外部生成的至少一个外部信号,使用 有效地址和修改的地址空间标识符以形成逻辑地址,并提供对应于逻辑地址的物理地址。 当有效地址具有第一有效地址值时,地址空间标识符具有第一地址空间标识符值,并且映射修饰符具有第一映射值,物理地址具有第一物理地址值。 当有效地址具有第一有效地址值时,地址空间标识符具有第一地址空间标识符值,并且映射修饰符具有第二映射值,物理地址具有第二物理地址值。
    • 10. 发明授权
    • Memory management in a data processing system
    • 数据处理系统中的内存管理
    • US06925542B2
    • 2005-08-02
    • US10393592
    • 2003-03-21
    • William C. MoyerRay Marshall
    • William C. MoyerRay Marshall
    • G06F12/02G06F12/06G06F12/00
    • G06F12/0292G06F12/0692Y02D10/13
    • Memory management in a data processing system (10) is achieved by using one or more timing bits (54) to specify a timing parameter of a memory (18, 19, 34). To implement this in some embodiments of the present invention, a memory array (32, 33, 42) is multiple-mapped in the physical memory map (70) of processor (12) and the address bits (54) associated with the multiple-mapping are used to directly control timing parameters of the memory arrays (32, 33, 42). This allows for flexible timing specifications to be derived quickly on an access by access basis without requiring any additional control storage overhead.
    • 通过使用一个或多个定时位(54)来指定存储器(18,19,34)的定时参数来实现数据处理系统(10)中的存储器管理。 为了在本发明的一些实施例中实现这一点,存储器阵列(32,33,42)被多映射在处理器(12)的物理存储器映射(70)中,并且与多重映射相关联的地址位(54) 映射用于直接控制存储器阵列(32,33,42)的定时参数。 这允许在访问基础上快速导出灵活的时序规范,而不需要任何额外的控制存储开销。