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    • 7. 发明授权
    • Circuit and method for rake training during acquisition
    • 采集期间耙训练的电路和方法
    • US07376177B2
    • 2008-05-20
    • US11045362
    • 2005-01-31
    • Timothy R. Miller
    • Timothy R. Miller
    • H04B1/00
    • H04B1/712
    • A method is provided for training a rake finger (200). In this method the rake finger receives a data signal including a plurality of signal components having a plurality of signal phase values, respectively. (620). The rake finger then sets a current acquisition phase for a locally-generated signal (620) and then calculates a value of an autocorrelation function for the received data signal with the locally-generated signal at the current acquisition phase. (630). The rake finger determines when the autocorrelation function is at a peak value (640), saving the peak value in a storage device (290) when the autocorrelation function is at the peak value (650). The rake finger can then set a finger weight (W) for the rake finger based on the peak value stored in the storage device. This method can be performed at least in part during an acquisition process for the rake finger.
    • 提供了一种用于训练耙指(200)的方法。 在该方法中,耙指分别接收包括具有多个信号相位值的多个信号分量的数据信号。 (620)。 然后,耙指针对本地产生的信号(620)设置当前获取阶段,然后在当前采集阶段用本地产生的信号计算接收数据信号的自相关函数的值。 (630)。 耙指确定何时自相关函数处于峰值(640),当自相关函数处于峰值(650)时,将峰值保存在存储装置(290)中。 然后,耙指可以基于存储在存储装置中的峰值来设定耙指的手指重量(W)。 该方法可以至少部分地在耙指的获取过程中进行。
    • 8. 发明授权
    • Pan unit
    • 平底锅
    • US4736916A
    • 1988-04-12
    • US898029
    • 1986-08-19
    • Timothy R. MillerRobert E. Miller
    • Timothy R. MillerRobert E. Miller
    • F16M11/06F16M11/08F16M11/12
    • F16M11/18
    • In a pan unit for a fluid tripod head, the pan unit includes a cylinder upon which a camera or other piece of equipment is to be mounted, and a piston slidably received within said cylinder. The piston is to be mounted on said tripod head, said piston and cylinder co-operating to provide a first working space within which a viscous liquid is to be located to damp relative movement between said piston and cylinder about the longitudinal axis thereof, the volume of said first working space being variable in order to adjust the viscous drag between said piston and cylinder.
    • 在用于流体三脚架头的摇摄单元中,所述摇摄单元包括一个圆筒,一个相机或其它设备将被安装在该圆筒上,一个可滑动地容纳在所述圆筒内的活塞。 活塞将安装在所述三脚架头上,所述活塞和气缸协同工作以提供第一工作空间,在所述第一工作空间内将存在粘性液体以阻止所述活塞和气缸围绕其纵向轴线相对运动, 所述第一工作空间是可变的,以便调节所述活塞和气缸之间的粘性阻力。
    • 10. 发明授权
    • System and method for calibrating an analog signal path in an ultra wideband receiver
    • 用于在超宽带接收机中校准模拟信号路径的系统和方法
    • US07512171B2
    • 2009-03-31
    • US11214736
    • 2005-08-31
    • Bobby L. BarnesTimothy R. Miller
    • Bobby L. BarnesTimothy R. Miller
    • H04B1/00
    • H04L27/08H04B1/0003H04B1/28H04B1/71637
    • A system (500) and method (400) are presented for calibrating an analog signal path (200) associated with an Ultra Wideband (UWB) receiver (103). The analog signal path includes a plurality of analog gain stages (210, 212-214, 216), a local oscillator mixer stage (211), a compensation stage (218), and a converter stage (219). A frequency offset of 4 Mhz is applied to a local oscillator signal to reduce a correlation between a received signal and the local oscillator signal. One of the analog gain stages is activated and an offset obtained at the converter stage is stored as a compensation value (243). The compensation value is retrieved whenever the analog gain stages is activated during normal processing and the compensation value applied at the compensation stage to reduce the offset.
    • 提出了一种用于校准与超宽带(UWB)接收机(103)相关联的模拟信号路径(200)的系统(500)和方法(400)。 模拟信号路径包括多个模拟增益级(210,212-214,216),本地振荡器混频器级(211),补偿级(218)和转换级(219)。 4MHz的频率偏移被施加到本地振荡器信号以减小接收信号与本地振荡器信号之间的相关性。 模拟增益级之一被激活,并且在转换器级获得的偏移被存储为补偿值(243)。 在正常处理期间模拟增益级被激活并且在补偿级施加的补偿值减小偏移量时,检索补偿值。