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    • 1. 发明授权
    • Method and system for a full GNSS capable multi-standard single chip
    • 具有全GNSS能力的多标准单芯片的方法和系统
    • US08912954B2
    • 2014-12-16
    • US13620458
    • 2012-09-14
    • John WalleyCharles AbrahamEvan McCarthyKambiz Shoarinejad
    • John WalleyCharles AbrahamEvan McCarthyKambiz Shoarinejad
    • G01S19/45G01S19/35G01S19/25G01S19/09
    • G01S19/35G01S19/09G01S19/25
    • A multi-standard single chip integrated within a multi-standard mobile device concurrently receives multi-standard radio frequency signals by corresponding two or more integrated radios. The multi-standard single chip generates full GNSS measurement comprising pseudo-range information using the received radio frequency signals. The multi-standard single chip comprises a GNSS radio and multiple non-GNSS radios such as Bluetooth. The full GNSS measurement is generated using GNSS radio frequency signals received by the integrated GNSS radio and communicated over, for example, Bluetooth radio. GNSS satellite reference information embedded in radio frequency signals received by the integrated non-GNSS radios is extracted to assist the full GNSS measurement. A full GNSS navigation solution for the multi-standard mobile device is generated internally to and/or externally to the multi-standard single chip depending on the location of a navigation engine. The generation of the full GNSS measurement is independent of a host processor within the multi-standard mobile device.
    • 集成在多标准移动设备内的多标准单芯片同时通过相应的两个或多个集成无线电接收多标准射频信号。 多标准单芯片使用所接收的射频信号产生包括伪距信息的全GNSS测量。 多标准单芯片包括GNSS无线电和诸如蓝牙的多个非GNSS无线电。 使用由集成的GNSS无线电接收的GNSS射频信号并通过例如蓝牙无线电来传送完整GNSS测量。 嵌入在由集成的非GNSS无线电接收的射频信号中的GNSS卫星参考信息被提取以协助完整的GNSS测量。 根据导航引擎的位置,多标准移动设备的完整GNSS导航解决方案在多标准单芯片内部和/或外部生成。 完整GNSS测量的生成与多标准移动设备内的主机处理器无关。
    • 2. 发明授权
    • Method and system for a full GNSS capable multi-standard single chip
    • 具有全GNSS能力的多标准单芯片的方法和系统
    • US08339311B2
    • 2012-12-25
    • US12509418
    • 2009-07-24
    • John WalleyCharles AbrahamEvan McCarthyKambiz Shoarinejad
    • John WalleyCharles AbrahamEvan McCarthyKambiz Shoarinejad
    • G01S19/45
    • G01S19/35G01S19/09G01S19/25
    • A multi-standard single chip integrated within a multi-standard mobile device concurrently receives multi-standard radio frequency signals by corresponding two or more integrated radios. The multi-standard single chip generates full GNSS measurement comprising pseudo-range information using the received radio frequency signals. The multi-standard single chip comprises a GNSS radio and multiple non-GNSS radios such as Bluetooth. The full GNSS measurement is generated using GNSS radio frequency signals received by the integrated GNSS radio and communicated over, for example, Bluetooth radio. GNSS satellite reference information embedded in radio frequency signals received by the integrated non-GNSS radios is extracted to assist the full GNSS measurement. A full GNSS navigation solution for the multi-standard mobile device is generated internally to and/or externally to the multi-standard single chip depending on the location of a navigation engine. The generation of the full GNSS measurement is independent of a host processor within the multi-standard mobile device.
    • 集成在多标准移动设备内的多标准单芯片同时通过相应的两个或多个集成无线电接收多标准射频信号。 多标准单芯片使用所接收的射频信号产生包括伪距信息的全GNSS测量。 多标准单芯片包括GNSS无线电和诸如蓝牙的多个非GNSS无线电。 使用由集成的GNSS无线电接收的GNSS射频信号并通过例如蓝牙无线电来传送完整GNSS测量。 嵌入在由集成的非GNSS无线电接收的射频信号中的GNSS卫星参考信息被提取以协助完整的GNSS测量。 根据导航引擎的位置,多标准移动设备的完整GNSS导航解决方案在多标准单芯片内部和/或外部生成。 完整GNSS测量的生成与多标准移动设备内的主机处理器无关。
    • 3. 发明申请
    • METHOD AND SYSTEM FOR A FULL GNSS CAPABLE MULTI-STANDARD SINGLE CHIP
    • 用于全GNSS可多标准单芯片的方法和系统
    • US20110018761A1
    • 2011-01-27
    • US12509418
    • 2009-07-24
    • John WalleyCharles AbrahamEvan McCarthyKambiz Shoarinejad
    • John WalleyCharles AbrahamEvan McCarthyKambiz Shoarinejad
    • G01S19/45
    • G01S19/35G01S19/09G01S19/25
    • A multi-standard single chip integrated within a multi-standard mobile device concurrently receives multi-standard radio frequency signals by corresponding two or more integrated radios. The multi-standard single chip generates full GNSS measurement comprising pseudo-range information using the received radio frequency signals. The multi-standard single chip comprises a GNSS radio and multiple non-GNSS radios such as Bluetooth. The full GNSS measurement is generated using GNSS radio frequency signals received by the integrated GNSS radio and communicated over, for example, Bluetooth radio. GNSS satellite reference information embedded in radio frequency signals received by the integrated non-GNSS radios is extracted to assist the full GNSS measurement. A full GNSS navigation solution for the multi-standard mobile device is generated internally to and/or externally to the multi-standard single chip depending on the location of a navigation engine. The generation of the full GNSS measurement is independent of a host processor within the multi-standard mobile device.
    • 集成在多标准移动设备内的多标准单芯片同时通过相应的两个或多个集成无线电接收多标准射频信号。 多标准单芯片使用所接收的射频信号产生包括伪距信息的全GNSS测量。 多标准单芯片包括GNSS无线电和诸如蓝牙的多个非GNSS无线电。 使用由集成的GNSS无线电接收的GNSS射频信号并通过例如蓝牙无线电来传送完整GNSS测量。 嵌入在由集成的非GNSS无线电接收的射频信号中的GNSS卫星参考信息被提取以协助完整的GNSS测量。 根据导航引擎的位置,多标准移动设备的完整GNSS导航解决方案在多标准单芯片内部和/或外部生成。 完整GNSS测量的生成与多标准移动设备内的主机处理器无关。
    • 4. 发明授权
    • Method and system for an energy efficient temperature sensing crystal integrated circuit
    • 一种节能温度感应晶体集成电路的方法和系统
    • US08174330B2
    • 2012-05-08
    • US12364095
    • 2009-02-02
    • Evan McCarthyJohn Walley
    • Evan McCarthyJohn Walley
    • H03B5/32
    • G01R19/2506G01K7/32
    • Aspects of a method and system for an energy efficient temperature sensing crystal integrated circuit (TSCIC) are provided. In this regard, one or more circuits in a temperature sensing crystal integrated circuit (TSCIC) may be configured to control power consumption of the TSCIC. The one or more circuits in the TSCIC may comprise a memory and a crystal. The one or more circuits in the TSCIC may be operable to generate an indication of temperature of the crystal. The one or more circuits in the TSCIC may be configured to control a current supplied to the crystal within the TSCIC, wherein the configuring is based on phase noise requirements of a signal generated by the crystal. Generation of the temperature indication may be enabled or disabled. The enabling or disabling may occur based on a rate of change of a temperature in the TSCIC.
    • 提供了一种节能温度感应晶体集成电路(TSCIC)的方法和系统。 在这方面,温度感测晶体集成电路(TSCIC)中的一个或多个电路可以被配置为控制TSCIC的功耗。 TSCIC中的一个或多个电路可以包括存储器和晶体。 TSCIC中的一个或多个电路可以用于产生晶体温度的指示。 TSCIC中的一个或多个电路可以被配置为控制提供给TSCIC内的晶体的电流,其中该配置基于由晶体产生的信号的相位噪声要求。 可以启用或禁用生成温度指示。 启用或禁用可以基于TSCIC中的温度变化率来进行。
    • 5. 发明授权
    • Method and system for integrated FM recording
    • 集成FM录音的方法和系统
    • US08611810B2
    • 2013-12-17
    • US12055809
    • 2008-03-26
    • John WalleyEvan McCarthy
    • John WalleyEvan McCarthy
    • H04H40/00
    • H04H60/27H04H60/46H04H60/47H04H60/74
    • Aspects of a method and system for integrated FM recording are provided. A multimedia device with various integrated systems such as an integrated FM radio may provide content-based multimedia content recording, recorded content retrieval, and playback of desired or potentially relevant contents. The multimedia device may receive multimedia content along with information identifying the received multimedia content via the various integrated systems. A segment of the received multimedia content may be recorded selectively by comparing the corresponding content information with a favorite content list. The favorite content list may be generated and updated based on the multimedia content and/or program selection data. The multimedia device may have access to additional related stored multimedia contents to retrieve and render the stored segment of the received multimedia content. Device power consumption may be reduced by utilizing the local stored contents without access to the integrated systems' archives of broadcast program contents.
    • 提供了用于集成FM记录的方法和系统的方面。 具有诸如集成FM收音机的各种集成系统的多媒体设备可以提供基于内容的多媒体内容记录,记录的内容检索和期望的或可能相关的内容的回放。 多媒体设备可以经由各种集成系统接收多媒体内容以及标识所接收的多媒体内容的信息。 可以通过将相应的内容信息与喜欢的内容列表进行比较来选择性地记录所接收的多媒体内容的片段。 可以基于多媒体内容和/或节目选择数据来生成和更新喜好的内容列表。 多媒体设备可以访问附加的相关存储的多媒体内容以检索和呈现所接收的多媒体内容的所存储的段。 可以通过利用本地存储的内容而不访问集成系统的广播节目内容的归档来减少设备功耗。
    • 6. 发明申请
    • Method and System for an Energy Efficient Temperature Sensing Crystal Integrated Circuit
    • 高效温度感应晶体集成电路的方法与系统
    • US20090196323A1
    • 2009-08-06
    • US12364095
    • 2009-02-02
    • Evan McCarthyJohn Walley
    • Evan McCarthyJohn Walley
    • G01K1/00G01K11/00
    • G01R19/2506G01K7/32
    • Aspects of a method and system for an energy efficient temperature sensing crystal integrated circuit (TSCIC) are provided. In this regard, one or more circuits in a temperature sensing crystal integrated circuit (TSCIC) may be configured to control power consumption of the TSCIC. The one or more circuits in the TSCIC may comprise a memory and a crystal. The one or more circuits in the TSCIC may be operable to generate an indication of temperature of the crystal. The one or more circuits in the TSCIC may be configured to control a current supplied to the crystal within the TSCIC, wherein the configuring is based on phase noise requirements of a signal generated by the crystal. Generation of the temperature indication may be enabled or disabled. The enabling or disabling may occur based on a rate of change of a temperature in the TSCIC.
    • 提供了一种节能温度感应晶体集成电路(TSCIC)的方法和系统。 在这方面,温度感测晶体集成电路(TSCIC)中的一个或多个电路可以被配置为控制TSCIC的功耗。 TSCIC中的一个或多个电路可以包括存储器和晶体。 TSCIC中的一个或多个电路可以用于产生晶体温度的指示。 TSCIC中的一个或多个电路可以被配置为控制提供给TSCIC内的晶体的电流,其中该配置基于由晶体产生的信号的相位噪声要求。 可以启用或禁用生成温度指示。 启用或禁用可以基于TSCIC中的温度变化率来进行。
    • 7. 发明申请
    • Method and System for a Temperature Sensing Crystal Integrated Circuit with Digital Temperature Output
    • 具有数字温度输出的温度感应晶体集成电路的方法和系统
    • US20090196322A1
    • 2009-08-06
    • US12364064
    • 2009-02-02
    • Evan McCarthyJohn Walley
    • Evan McCarthyJohn Walley
    • G01K7/00G01K11/00
    • G01R19/2506G01K7/32
    • Aspects of a method and system for a temperature sensing crystal Integrated circuit with digital temperature output are provided. In this regard, an indication of temperature may be generated in an integrated circuit (IC) comprising a memory, a crystal or crystal oscillator, and at least a portion of an analog-to-digital converter. The temperature indication may be digitized via the analog-to-digital converter. Operation of one or more circuits may be controlled based on the digital temperature indication. The digital temperature indication may be communicated over a communication bus. An analog portion of the analog-to-digital converter may be integrated in the IC and may comprise, for example, a delta-sigma modulator. A digital portion of the analog-to-digital converter may be external to the IC and may comprise, for example, a digital filter.
    • 提供了一种温度感应晶体的方法和系统。具有数字温度输出的集成电路。 在这方面,可以在包括存储器,晶体或晶体振荡器的集成电路(IC)以及模数转换器的至少一部分中产生温度指示。 温度指示可以通过模拟 - 数字转换器进行数字化。 可以基于数字温度指示来控制一个或多个电路的操作。 数字温度指示可以通过通信总线传送。 模数转换器的模拟部分可以集成在IC中,并且可以包括例如Δ-Σ调制器。 模数转换器的数字部分可以在IC的外部,并且可以包括例如数字滤波器。
    • 9. 发明申请
    • Method And System For Integrated FM Recording
    • 集成FM录音的方法和系统
    • US20090247096A1
    • 2009-10-01
    • US12055809
    • 2008-03-26
    • John WalleyEvan McCarthy
    • John WalleyEvan McCarthy
    • H03D5/00
    • H04H60/27H04H60/46H04H60/47H04H60/74
    • Aspects of a method and system for integrated FM recording are provided. A multimedia device with various integrated systems such as an integrated FM radio may provide content-based multimedia content recording, recorded content retrieval, and playback of desired or potentially relevant contents. The multimedia device may receive multimedia content along with information identifying the received multimedia content via the various integrated systems. A segment of the received multimedia content may be recorded selectively by comparing the corresponding content information with a favorite content list. The favorite content list may be generated and updated based on the multimedia content and/or program selection data. The multimedia device may have access to additional related stored multimedia contents to retrieve and render the stored segment of the received multimedia content. Device power consumption may be reduced by utilizing the local stored contents without access to the integrated systems' archives of broadcast program contents.
    • 提供了用于集成FM记录的方法和系统的方面。 具有诸如集成FM收音机的各种集成系统的多媒体设备可以提供基于内容的多媒体内容记录,记录的内容检索和期望的或可能相关的内容的回放。 多媒体设备可以经由各种集成系统接收多媒体内容以及标识所接收的多媒体内容的信息。 可以通过将相应的内容信息与喜欢的内容列表进行比较来选择性地记录所接收的多媒体内容的片段。 可以基于多媒体内容和/或节目选择数据来生成和更新喜好的内容列表。 多媒体设备可以访问附加的相关存储的多媒体内容以检索和呈现所接收的多媒体内容的所存储的段。 可以通过利用本地存储的内容而不访问集成系统的广播节目内容的归档来减少设备功耗。
    • 10. 发明申请
    • Method and System for Compensating Temperature Readings from a Temperature Sensing Crystal Integrated Circuit
    • 从温度感应晶体集成电路补偿温度读数的方法和系统
    • US20090198469A1
    • 2009-08-06
    • US12364117
    • 2009-02-02
    • Evan McCarthyJohn Walley
    • Evan McCarthyJohn Walley
    • G06F19/00
    • G01R19/2506G01K7/32
    • Aspects of a method and system for compensating temperature readings from a temperature sensing crystal integrated circuit are provided. In this regard, a temperature indication and calibration voltages from a temperature sensing crystal integrated circuit (TSCIC) may be digitized and the digital signals may be utilized to calculate a compensated temperature indication. Data derived from a memory integrated within the TSCIC may be retrieved based on the compensated temperature indication. The retrieved data may be utilized to control operation of one or more circuits. The compensated temperature indication may be calculated by removing a gain error and/or offset error from the digitized temperature indication. The compensated temperature indication may be utilized as an index for a data table. The compensated temperature indication may be a normalized compensated temperature indication. The calibration voltages may comprise a minimum voltage and/or a maximum voltage that the TSCIC is operable to output.
    • 提供了用于补偿来自温度感测晶体集成电路的温度读数的方法和系统的方面。 在这方面,来自温度感测晶体集成电路(TSCIC)的温度指示和校准电压可以被数字化,并且数字信号可以用于计算补偿温度指示。 可以基于补偿温度指示来检索从集成在TSCIC内的存储器得到的数据。 所检索的数据可用于控制一个或多个电路的操作。 可以通过从数字化温度指示中移除增益误差和/或偏移误差来计算补偿温度指示。 补偿温度指示可以用作数据表的索引。 补偿温度指示可以是归一化的补偿温度指示。 校准电压可以包括TSCIC可操作以输出的最小电压和/或最大电压。