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    • 1. 发明授权
    • High resolution capacitor
    • 高分辨率电容
    • US08933751B1
    • 2015-01-13
    • US13475678
    • 2012-05-18
    • Wilson WongWeiqi DingShuxian ChenSimardeep MaangatAlbert Ratnakumar
    • Wilson WongWeiqi DingShuxian ChenSimardeep MaangatAlbert Ratnakumar
    • H03F3/45H01G4/40H03F1/56
    • H01G4/40H01G17/00H03F1/56
    • A first trimming capacitor having a first terminal and a second terminal is coupled in parallel between a first terminal and a second terminal of a first capacitor. The first trimming capacitor comprises a first plurality of switched capacitors having different capacitances coupled in parallel. Each of the switched capacitors comprises a switch capacitor and a switch coupled in series. In an illustrative application the first capacitor and the first trimming capacitor are coupled between an output terminal of an operational amplifier (op-amp) and an inverting input terminal of the op-amp. A second capacitor and a second trimming capacitor similar to the first capacitor and the first trimming capacitor are coupled between an input and the inverting input terminal of the op-amp.
    • 具有第一端子和第二端子的第一微调电容器并联耦合在第一电容器的第一端子和第二端子之间。 第一微调电容器包括具有并联耦合的不同电容的第一多个开关电容器。 每个开关电容器包括开关电容器和串联耦合的开关。 在说明性应用中,第一电容器和第一微调电容器耦合在运算放大器(运算放大器)的输出端和运算放大器的反相输入端之间。 类似于第一电容器和第一微调电容器的第二电容器和第二微调电容器耦合在运算放大器的输入端和反相输入端子之间。
    • 6. 发明授权
    • Programmable receiver equalization circuitry and methods
    • 可编程接收机均衡电路和方法
    • US07697600B2
    • 2010-04-13
    • US11182658
    • 2005-07-14
    • Simardeep MaangatSergey ShumarayevWilson WongThuNgoc Tran
    • Simardeep MaangatSergey ShumarayevWilson WongThuNgoc Tran
    • H03H7/30
    • H04L25/03885H04B3/04H04L25/03019
    • Data signals transmitted over transmission media suffer from attenuation caused by the transmission media. Equalization circuitry may be provided to compensate for attenuation caused by the transmission media. Equalization circuitry may include multiple stages arranged in series to allow the frequency responses of the stages to aggregate together. Each stage may be programmable to insert a zero, which causes the frequency response of the stage to increase in magnitude by 20 dB/decade. The frequency location of the zero may also be programmable to allow each stage to contribute a certain amount of gain for a specific frequency. Each stage may also be programmable to determine the location of poles for reduction of high frequency noise and cross-talk cancellation.
    • 通过传输介质传输的数据信号遭受由传输介质引起的衰减。 可以提供均衡电路以补偿由传输介质引起的衰减。 均衡电路可以包括串联布置的多个级,以允许级的频率响应聚合在一起。 每个级可以是可编程的,以插入一个零,这使得该级的频率响应在幅度上增加20dB /十倍。 零的频率位置也可以是可编程的,以允许每个级对特定频率贡献一定量的增益。 每个阶段也可以被编程以确定用于降低高频噪声和串扰取消的极点的位置。
    • 10. 发明授权
    • Programmable digital equalization control circuitry and methods
    • 可编程数字均衡控制电路和方法
    • US07760799B2
    • 2010-07-20
    • US11238365
    • 2005-09-28
    • Tin H. LaiSergey ShumarayevSimardeep MaangatWilson Wong
    • Tin H. LaiSergey ShumarayevSimardeep MaangatWilson Wong
    • H03H7/30H03H7/40H03K5/159
    • H03G3/3089H04L25/03885
    • Equalization circuitry may be used to compensate for the attenuation of a data signal caused by a transmission medium. The control circuitry for the equalization circuitry may generate control inputs for equalization stages that control the amount of gain provided to the data signal. A comparator may determine whether the gain from the equalization circuitry is less than or more than the desired amount of gain. A programmable up/down counter may adjust the counter value based on the output of the comparator. The counter value may be converted into one or more analog voltages using one or more digital-to-analog converters. These analog voltages may be provided to the equalization stages as control inputs. The control circuitry may also include hysteresis circuitry that prevents the counter value from being adjusted when the gain produced by the equalization stages is close to the desired amount of gain.
    • 均衡电路可用于补偿由传输介质引起的数据信号的衰减。 用于均衡电路的控制电路可以产生用于控制提供给数据信号的增益量的均衡级的控制输入。 比较器可以确定来自均衡电路的增益是否小于或大于期望的增益量。 可编程上/下计数器可以根据比较器的输出来调整计数器值。 可以使用一个或多个数模转换器将计数器值转换成一个或多个模拟电压。 这些模拟电压可以作为控制输入提供给均衡级。 控制电路还可以包括滞后电路,当由均衡级产生的增益接近期望的增益量时,阻止计数器值被调整。