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    • 1. 发明授权
    • Configuration for digital-analog conversion of high-frequency digital input signal into carrier-frequency analog output signal
    • 将高频数字输入信号数字模拟转换为载波频率模拟输出信号的配置
    • US07132969B2
    • 2006-11-07
    • US10525083
    • 2003-07-28
    • Armin FuchsBjörn JelonnekGunter Wolff
    • Armin FuchsBjörn JelonnekGunter Wolff
    • H03M1/66
    • H03M1/0626H03M1/66H03M1/74H03M3/396H03M3/41H03M3/504
    • A delay device has at least one first delay element and optional additional delay elements connected downstream from the first in a serially consecutive manner. The digital input signal is connected to an input of the first delay element and is connected to an input of a first D/A converter. The output of the first delay element is connected to an input of another D/A converter assigned thereto. The optional additional delay elements each have outputs connected to an input of another D/A converter assigned to the respective delay elements. All D/A converters are combined on the output side in a step-by-step manner so that output signals of all D/A converters form the analog output signal or the device. A specific coefficient is assigned to each D/A converter, and a specific delay time is assigned to each delay element for realizing a filter characteristic.
    • 延迟装置具有至少一个第一延迟元件和以连续的连续方式从第一延迟元件连接到下游的可选附加延迟元件。 数字输入信号连接到第一延迟元件的输入,并连接到第一D / A转换器的输入。 第一延迟元件的输出连接到分配给其的另一个D / A转换器的输入端。 可选的附加延迟元件各自具有连接到分配给各个延迟元件的另一个D / A转换器的输入的输出。 所有D / A转换器以一步一步的方式在输出端组合,使得所有D / A转换器的输出信号形成模拟输出信号或器件。 特定系数被分配给每个D / A转换器,并且为每个延迟元件分配特定的延迟时间以实现滤波器特性。
    • 2. 发明申请
    • CONFIGURATION FOR DIGITAL-ANALOG CONVERSION OF HIGH-FREQUENCY DIGITAL INPUT SIGNAL INTO CARRIER-FREQUENCY ANALOG OUTPUT SIGNAL
    • 高频数字输入信号数字模拟转换为载波频率模拟输出信号的配置
    • US20060164275A1
    • 2006-07-27
    • US10525083
    • 2003-07-28
    • Armin FuchsBjorn JelonnekGunter Wolff
    • Armin FuchsBjorn JelonnekGunter Wolff
    • H03M1/66
    • H03M1/0626H03M1/66H03M1/74H03M3/396H03M3/41H03M3/504
    • A delay device has at least one first delay element and optional additional delay elements connected downstream from the first in a serially consecutive manner. The digital input signal is connected to an input of the first delay element and is connected to an input of a first D/A converter. The output of the first delay element is connected to an input of another D/A converter assigned thereto. The optional additional delay elements each have outputs connected to an input of another D/A converter assigned to the respective delay elements. All D/A converters are combined on the output side in a step-by-step manner so that output signals of all D/A converters form the analog output signal or the device. A specific coefficient is assigned to each D/A converter, and a specific delay time is assigned to each delay element for realizing a filter characteristic.
    • 延迟装置具有至少一个第一延迟元件和以连续的连续方式从第一延迟元件连接到下游的可选附加延迟元件。 数字输入信号连接到第一延迟元件的输入,并连接到第一D / A转换器的输入。 第一延迟元件的输出连接到分配给其的另一个D / A转换器的输入端。 可选的附加延迟元件各自具有连接到分配给各个延迟元件的另一个D / A转换器的输入的输出。 所有D / A转换器在输出端以一步一步的方式组合,使得所有D / A转换器的输出信号形成模拟输出信号或器件。 特定系数被分配给每个D / A转换器,并且为每个延迟元件分配特定的延迟时间以实现滤波器特性。
    • 5. 发明申请
    • Method and system for clipping a baseband input signal
    • 用于削波基带输入信号的方法和系统
    • US20070036251A1
    • 2007-02-15
    • US11502446
    • 2006-08-11
    • Bjoern JelonnekGunter Wolff
    • Bjoern JelonnekGunter Wolff
    • H04B1/10
    • H03F1/32H03F1/3241H03F1/3258H04L27/2623
    • A method for clipping a baseband input signal filters the complex baseband input signal with a function H1 for forming a filtered first signal. To form a clipped signal in the baseband the filtered first signal is multiplied by a scaling factor. By a signal analysis of the filtered first signal signal overshoots are predicted from which the scaling factor is determined for the baseband clipping. The filter function H1 is calculated as the quotient from a frequency response HS of a transmission filter used one the one hand and from an error frequency response HF on the other hand, with the error frequency response HF being determined in such a way that the error spectrally shaped with HF, which arises for the limitation of the baseband signal, a frequency-dependent tolerance is not exceeded. Subsequently the clipped signal is filtered with the error frequency response HF for forming a filtered second signal.
    • 用于削波基带输入信号的方法用功能H 1 1滤波复基带输入信号,以形成滤波后的第一信号。 为了在基带中形成限幅信号,滤波后的第一信号乘以比例因子。 通过对经过滤波的第一信号信号的信号分析,预测基准限幅的比例因子。 滤波器功能H 1被计算为从一方使用的发送滤波器的频率响应H S S的商和从错误频率响应H F 另一方面,以错误频率响应H> F被确定为以H error error error rally the the the limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation limitation 的基带信号,不超过频率相关容差。 随后,用用于形成滤波后的第二信号的误差频率响应H滤波该限幅信号。
    • 7. 发明授权
    • Interengaging gear machine with compensating force on bearing members
    • 具有补偿力的联轴器齿轮机构
    • US4124335A
    • 1978-11-07
    • US775587
    • 1977-03-08
    • Claus JonsErich SchonherrGunter Wolff
    • Claus JonsErich SchonherrGunter Wolff
    • F04C15/00F01C19/08F01C21/02
    • F04C15/0026F04C15/0019F04C15/0042
    • A pair of mating gears are mounted for rotation about respective axes in a gear-type fluid displacing pump or motor. Each gear has a pair of shaft portions at opposite axial ends of the respective gear, and bearing members surround respective ones of the shaft portions for journalling the gears. Each bearing member of one of the gears is juxtaposed with a respective bearing member of the other of said gears and, during rotation of the gears, the juxtaposed bearing members are subjected to forces which urge the bearing members to move relative to each other, particularly in direction towards each other. An arrangement is provided to counteract such forces and to oppose such relative movement of the juxtaposed bearing members.
    • 一对配合齿轮被安装用于在齿轮式流体移动泵或马达中围绕相应的轴线旋转。 每个齿轮在相应齿轮的相对的轴向端部具有一对轴部分,并且轴承部件围绕相应的轴部分,用于支撑齿轮。 其中一个齿轮的每个轴承构件与所述齿轮中的另一个的相应轴承构件并置,并且在齿轮旋转期间,并置的轴承构件受到促使轴承构件相对于彼此移动的力,特别是 朝向彼此的方向。 提供了一种布置来抵消这种力并且抵抗并置的轴承构件的这种相对运动。