Radio frequency integrated circuit having frequency dependent noise mitigation with spectrum spreading
    4.
    发明申请
    Radio frequency integrated circuit having frequency dependent noise mitigation with spectrum spreading 有权
    射频集成电路具有频谱扩展的频率相关噪声抑制

    公开(公告)号:US20080024339A1

    公开(公告)日:2008-01-31

    申请号:US11641562

    申请日:2006-12-18

    IPC分类号: H03M1/00

    CPC分类号: H04B15/06

    摘要: A radio frequency integrated circuit (RFIC) includes a low noise amplifier that amplifies an inbound radio frequency (RF) signal to produce an amplified RF signal. A down conversion module converts the amplified RF signal to a down converted signal based on a local oscillation. An analog to digital conversion (ADC) module coupled to convert the down converted signal into a digital signal. A baseband processing module converts the digital signal into inbound data, wherein at least one function of the baseband processing module is clocked by a plurality of baseband clock signals A clock module produces the plurality of baseband clock signals, wherein the clock module detects an interference condition when frequency dependent noise components associated with at least one of the plurality of baseband clock signals are inside a frequency band associated with the inbound RF signal, and spreads the spectrum of the at least one of the plurality of baseband clock signals when the interference condition is detected.

    摘要翻译: 射频集成电路(RFIC)包括放大入射射频(RF)信号以产生放大的RF信号的低噪声放大器。 降频转换模块基于本地振荡将放大的RF信号转换为下变频信号。 模数转换(ADC)模块耦合以将下变频信号转换为数字信号。 基带处理模块将数字信号转换为入站数据,其中基带处理模块的至少一个功能由多个基带时钟信号A计时。时钟模块产生多个基带时钟信号,其中时钟模块检测干扰条件 当与所述多个基带时钟信号中的至少一个相关联的频率相关噪声分量在与所述入站RF信号相关联的频带内时,并且当所述干扰条件是所述干扰条件是时,扩展所述多个基带时钟信号中的至少一个的频谱 检测到。

    Separate power island for high performance processor that reboots to second boot sector
    5.
    发明授权
    Separate power island for high performance processor that reboots to second boot sector 有权
    用于高性能处理器的独立电源岛,重新启动到第二引导扇区

    公开(公告)号:US08886922B2

    公开(公告)日:2014-11-11

    申请号:US13051402

    申请日:2011-03-18

    摘要: Separate power island for high performance processor. A multi-processor design is presented in which each of the processors is implemented in separately powered portions of a circuitry (e.g., an integrated circuit). One of the processors can be a main application processor, and another of the processors can be a baseband processor. In addition, the each of the processors can be implemented using different types of circuitry (e.g., one of the processors [such as the main application processor] is implemented using higher performance/higher leakage circuitry that another of the processors [such as the baseband processor]). One of the processors (e.g., main application processor) can be powered down when not needed thereby providing energy/power conservation which can be vital is handheld communication device applications such as wireless handheld communication devices.

    摘要翻译: 独立的功率岛用于高性能处理器。 呈现多处理器设计,其中每个处理器在电路(例如,集成电路)的单独供电部分中实现。 其中一个处理器可以是主应用处理器,另一个处理器可以是基带处理器。 此外,可以使用不同类型的电路来实现每个处理器(例如,处理器[例如主应用处理器]中的一个使用较高性能/较高漏电电路来实现,另一个处理器[例如基带 处理器])。 处理器(例如,主应用处理器)中的一个可以在不需要时被断电,从而提供能量/功率节约,这对于诸如无线手持通信设备的手持通信设备应用是至关重要的。

    SEPARATE POWER ISLAND FOR HIGH PERFORMANCE PROCESSOR
    6.
    发明申请
    SEPARATE POWER ISLAND FOR HIGH PERFORMANCE PROCESSOR 有权
    独立的功率岛用于高性能处理器

    公开(公告)号:US20090187753A1

    公开(公告)日:2009-07-23

    申请号:US12015681

    申请日:2008-01-17

    IPC分类号: G06F9/00

    摘要: Separate power island for high performance processor. A multi-processor design is presented in which each of the processors is implemented in separately powered portions of a circuitry (e.g., an integrated circuit). One of the processors can be a main application processor, and another of the processors can be a baseband processor. In addition, the each of the processors can be implemented using different types of circuitry (e.g., one of the processors [such as the main application processor] is implemented using higher performance/higher leakage circuitry that another of the processors [such as the baseband processor]). One of the processors (e.g., main application processor) can be powered down when not needed thereby providing energy/power conservation which can be vital is handheld communication device applications such as wireless handheld communication devices.

    摘要翻译: 独立的功率岛用于高性能处理器。 呈现多处理器设计,其中每个处理器在电路(例如,集成电路)的单独供电部分中实现。 其中一个处理器可以是主应用处理器,另一个处理器可以是基带处理器。 此外,可以使用不同类型的电路来实现每个处理器(例如,处理器[例如主应用处理器]中的一个使用较高性能/较高漏电电路来实现,另一个处理器[例如基带 处理器])。 处理器(例如,主应用处理器)中的一个可以在不需要时被断电,从而提供能量/功率节约,这对于诸如无线手持通信设备的手持通信设备应用是至关重要的。

    Separate power island for high performance processor that reboots to second boot sector

    公开(公告)号:US20110167252A1

    公开(公告)日:2011-07-07

    申请号:US13051402

    申请日:2011-03-18

    IPC分类号: G06F15/177

    摘要: Separate power island for high performance processor. A multi-processor design is presented in which each of the processors is implemented in separately powered portions of a circuitry (e.g., an integrated circuit). One of the processors can be a main application processor, and another of the processors can be a baseband processor. In addition, the each of the processors can be implemented using different types of circuitry (e.g., one of the processors [such as the main application processor] is implemented using higher performance/higher leakage circuitry that another of the processors [such as the baseband processor]). One of the processors (e.g., main application processor) can be powered down when not needed thereby providing energy/power conservation which can be vital is handheld communication device applications such as wireless handheld communication devices.

    Separate power island for high performance processor that reboots to second boot sector
    8.
    发明授权
    Separate power island for high performance processor that reboots to second boot sector 有权
    用于高性能处理器的独立电源岛,重新启动到第二引导扇区

    公开(公告)号:US07917790B2

    公开(公告)日:2011-03-29

    申请号:US12015681

    申请日:2008-01-17

    IPC分类号: G06F1/32

    摘要: Separate power island for high performance processor. A multi-processor design is presented in which each of the processors is implemented in separately powered portions of a circuitry (e.g., an integrated circuit). One of the processors can be a main application processor, and another of the processors can be a baseband processor. In addition, the each of the processors can be implemented using different types of circuitry (e.g., one of the processors [such as the main application processor] is implemented using higher performance/higher leakage circuitry that another of the processors [such as the baseband processor]). One of the processors (e.g., main application processor) can be powered down when not needed thereby providing energy/power conservation which can be vital is handheld communication device applications such as wireless handheld communication devices.

    摘要翻译: 独立的功率岛用于高性能处理器。 呈现多处理器设计,其中每个处理器在电路(例如,集成电路)的单独供电部分中实现。 其中一个处理器可以是主应用处理器,另一个处理器可以是基带处理器。 此外,可以使用不同类型的电路来实现每个处理器(例如,处理器[例如主应用处理器]中的一个使用较高性能/较高漏电电路来实现,另一个处理器[例如基带 处理器])。 处理器(例如,主应用处理器)中的一个可以在不需要时被断电,从而提供能量/功率节约,这对于诸如无线手持通信设备的手持通信设备应用是至关重要的。

    Head up display mechanism
    10.
    发明授权
    Head up display mechanism 失效
    抬头显示机制

    公开(公告)号:US07570429B2

    公开(公告)日:2009-08-04

    申请号:US11595501

    申请日:2006-11-09

    IPC分类号: G02B27/14

    CPC分类号: G02B27/0149 G02B2027/0156

    摘要: A Head up display (HUD) calibration assembly is designed for coupling a HUD system with the inner walls of a vehicle, and adjusting the orientation of the HUD system. The HUD calibration assembly includes a mounting tray for coupling with a HUD projector and with a HUD combiner deployment mechanism. The mounting tray includes a plurality of adjustment interface planes, each of which includes a locking screw opening, and a plurality of adjustment assemblies, each coupled with the vehicle in a respective separate anchoring location, locking the mounting tray at the desired position and orientation.

    摘要翻译: 抬头显示(HUD)校准组件设计用于将HUD系统与车辆内壁相连,并调整HUD系统的方向。 HUD校准组件包括用于与HUD投影仪和HUD组合器部署机构耦合的安装托盘。 安装托盘包括多个调节接口平面,每个调整接口平面包括锁定螺钉开口和多个调节组件,每个调节组件在相应的单独的锚固位置中与车辆联接,将安装托盘锁定在期望的位置和方向。