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    • 1. 发明申请
    • Method for performing frequency selective control channel scheduling in networks using an OFDM spectrum, a base station, a mobile terminal and a network therefor
    • 在使用OFDM频谱的网络中执行频率选择性控制信道调度的方法,基站,移动终端及其网络
    • US20070153929A1
    • 2007-07-05
    • US11640286
    • 2006-12-18
    • Ralph BallentinStephen KaminskiHajo BakkerChan ZhouGerhard Wunder
    • Ralph BallentinStephen KaminskiHajo BakkerChan ZhouGerhard Wunder
    • H04K1/10
    • H04L5/0053H04L5/0007H04L5/0048
    • The invention concerns a method for performing frequency selective control channel scheduling in networks using an OFDM spectrum, whereby a base station (BS1-BS8) broadcasts on at least one predefined subcarrier which is known to all mobile terminals (T1-T4) a signaling information common to all mobile terminals (T1-T4) indicating the position of at least one subcarrier of at least one frequency selective shared control channel and at least one identification of at least one addressed mobile terminal, the base station (BS1-BS8) sends signaling information for said at least one addressed mobile terminal at the indicated position of said at least one subcarrier of said at least one frequency selective shared control channel, and at least one mobile terminal (T1-T4) measures at least one subcarrier of said at least one frequency selective shared control channel for channel quality estimation, a base station (BS1-BS8), a mobile terminal (T1-T4) and a network (CN) therefor.
    • 本发明涉及一种在使用OFDM频谱的网络中执行频率选择性控制信道调度的方法,由此基站(BS 1 -BS 8)在所有移动终端(T 1 -T 4)已知的至少一个预定子载波上广播 )指示所有移动终端(T 1 -T 4)公共的信令信息,其指示至少一个频率选择性共享控制信道的至少一个子载波的位置和至少一个寻址的移动终端的至少一个标识,所述基站 BS 1 -BS 8)在所述至少一个频率选择性共享控制信道的所述至少一个子载波的指示位置向所述至少一个寻址移动终端发送信令信息,以及至少一个移动终端(T 1 -T 4 测量用于信道质量估计的所述至少一个频率选择共享控制信道的至少一个子载波,基站(BS 1 -BS 8),移动终端(T 1 -T 4)和网络(CN )因此。
    • 2. 发明授权
    • Method for performing frequency selective control channel scheduling in networks using an OFDM spectrum, a base station, a mobile terminal and a network therefor
    • 在使用OFDM频谱的网络中执行频率选择性控制信道调度的方法,基站,移动终端及其网络
    • US08081689B2
    • 2011-12-20
    • US11640286
    • 2006-12-18
    • Ralph BallentinStephen KaminskiHajo BakkerChan ZhouGerhard Wunder
    • Ralph BallentinStephen KaminskiHajo BakkerChan ZhouGerhard Wunder
    • H04K1/10
    • H04L5/0053H04L5/0007H04L5/0048
    • The invention concerns a method for performing frequency selective control channel scheduling in networks using an OFDM spectrum, whereby a base station (BS1-BS8) broadcasts on at least one predefined subcarrier which is known to all mobile terminals (T1-T4) a signaling information common to all mobile terminals (T1-T4) indicating the position of at least one subcarrier of at least one frequency selective shared control channel and at least one identification of at least one addressed mobile terminal, the base station (BS1-BS8) sends signaling information for said at least one addressed mobile terminal at the indicated position of said at least one subcarrier of said at least one frequency selective shared control channel, and at least one mobile terminal (T1-T4) measures at least one subcarrier of said at least one frequency selective shared control channel for channel quality estimation, a base station (BS1-BS8), a mobile terminal (T1-T4) and a network (CN) therefor.
    • 本发明涉及一种用于在使用OFDM频谱的网络中执行频率选择性控制信道调度的方法,由此基站(BS1-BS8)在所有移动终端(T1-T4)已知的至少一个预定义子载波上广播信令信息 指示至少一个频率选择性共享控制信道的至少一个子载波的位置的所有移动终端(T1-T4)和至少一个寻址的移动终端的至少一个标识的所有移动终端(BS-BS8)共同发送信令 用于所述至少一个寻址移动终端在所述至少一个频率选择性共享控制信道的所述至少一个子载波的指示位置的信息,以及至少一个移动终端(T1-T4)测量所述至少一个子载波的至少一个子载波 用于信道质量估计的一个频率选择共享控制信道,基站(BS1-BS8),移动终端(T1-T4)和其网络(CN)。
    • 6. 发明授权
    • Fast sample-and-hold peak detector circuit
    • 快速采样和保持峰值检测电路
    • US06788115B2
    • 2004-09-07
    • US10601865
    • 2003-06-24
    • Ralph BallentinFrank Ilchmann
    • Ralph BallentinFrank Ilchmann
    • G11C2702
    • G11C27/024G11C27/026
    • This invention relates to circuitry for detecting peak levels of signals and particularly fast hold and sample peak detectors for analyzing signals of generally arbitrary wave shape and form having a high precision, high slew-rate, very short retention, and a low distortion. The circuitry comprising a comparator circuit comprising two signal inputs and a signal output, where the output signal depends from the difference between the input signals, a sample and hold circuit comprising switching means controlled by said signal output for sampling and holding means for holding the output signal, a compensation circuit for compensating residual currents comprising emulating means for emulating residual currents caused by said comparator circuit influencing the functionality of said sample and hold circuit, and an unload circuit comprising a clearing means for decreasing the output signal of said sample and hold circuit.
    • 本发明涉及用于检测信号的峰值电平的电路,特别是用于分析具有高精度,高转换速率,非常短的保持和低失真的大体上任意波形和形式的信号的快速保持和采样峰值检测器。 该电路包括一个包括两个信号输入和一个信号输出的比较器电路,其中输出信号取决于输入信号之间的差异,采样和保持电路包括由所述信号输出控制的开关装置,用于采样和保持装置, 信号,用于补偿剩余电流的补偿电路,包括用于仿真由影响所述采样和保持电路的功能的所述比较器电路引起的残余电流的仿真装置,以及卸载电路,其包括用于减小所述采样和保持电路的输出信号的清零装置 。
    • 7. 发明授权
    • LVDS driver in bipolar and MOS technology
    • 双极和MOS技术中的LVDS驱动器
    • US06791377B2
    • 2004-09-14
    • US10435389
    • 2003-05-12
    • Frank IlchmannDetlef RösenerRalph Ballentin
    • Frank IlchmannDetlef RösenerRalph Ballentin
    • H03B100
    • H03G3/3036H03F3/45502H03G1/0023
    • A circuit arrangement for an LVDS driver, which uses combined bipolar and MOSFET technology with at least two MOSFETs, is shown, wherein a multiplier circuit is connected to an output stage of the LVDS driver and the multiplier circuit is controlled by means of an automatic control circuit, which generates control signals for controlling a current source of the multiplier circuit and for controlling the amplification factor of differential input signals of the multiplier circuit. Advantages of the invention are that it enables said technology, in which semi-conductor components are used in bipolar techniques (e.g. NPN and/or PNP transistors) (as well as MOS technology), to take advantage of the high speed of the bipolar elements compared with MOS elements.
    • 示出了用于LVDS驱动器的电路装置,其使用具有至少两个MOSFET的组合双极和MOSFET技术,其中乘法器电路连接到LVDS驱动器的输出级,乘法器电路通过自动控制 电路,其产生用于控制乘法器电路的电流源并用于控制乘法器电路的差分输入信号的放大系数的控制信号。 本发明的优点在于它实现了半导体元件用于双极技术(例如NPN和/或PNP晶体管)(以及MOS技术)中的所有技术,以利用双极元件的高速度 与MOS元素相比。