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    • 1. 发明申请
    • LOW MINIMUM POWER SUPPLY VOLTAGE LEVEL SHIFTER
    • 低最低电源电压水平变换器
    • US20120019302A1
    • 2012-01-26
    • US12843479
    • 2010-07-26
    • Chan-Hong CHERNFu-Lung HSUEHMing-Chieh HUANGChih-Chang LIN
    • Chan-Hong CHERNFu-Lung HSUEHMing-Chieh HUANGChih-Chang LIN
    • H03L5/00
    • H03K19/018521
    • A level shifter includes one PMOS and two NMOS transistors. A source of the first NMOS transistor is coupled to a low power supply voltage. An input signal is coupled to a gate of the first NMOS transistor and a source of the second NMOS transistor. The input signal has a voltage level up to a first power supply voltage. A source of the PMOS transistor is coupled to a second power supply voltage, higher than the first power supply voltage. An output signal is coupled between the PMOS and the first NMOS transistors. The first NMOS transistor is arranged to pull down the output signal when the input signal is a logical 1, and the second NMOS transistor is arranged to enable the PMOS transistor to pull up the output signal to a logical 1 at the second power supply voltage when the input signal is a logical 0.
    • 电平移位器包括一个PMOS和两个NMOS晶体管。 第一NMOS晶体管的源极耦合到低电源电压。 输入信号耦合到第一NMOS晶体管的栅极和第二NMOS晶体管的源极。 输入信号具有高达第一电源电压的电压电平。 PMOS晶体管的源极耦合到高于第一电源电压的第二电源电压。 输出信号耦合在PMOS和第一NMOS晶体管之间。 第一NMOS晶体管被布置为当输入信号为逻辑1时下拉输出信号,并且第二NMOS晶体管被布置为使得PMOS晶体管能够以第二电源电压将输出信号上拉至逻辑1, 输入信号为逻辑0。
    • 4. 发明申请
    • LEVEL SHIFTERS FOR IO INTERFACES
    • IO接口的水平移位器
    • US20120044008A1
    • 2012-02-23
    • US12859456
    • 2010-08-19
    • Chan-Hong CHERNFu-Lung HSUEHChih-Chang LINYuwen SWEIMing-Chieh HUANG
    • Chan-Hong CHERNFu-Lung HSUEHChih-Chang LINYuwen SWEIMing-Chieh HUANG
    • H03L5/00
    • H03K3/02H03K19/018521H03K19/018528
    • A level shifter includes an input node, an output node, a pull-up transistor, a pull-down transistor, and at least one diode-connected device coupled between the pull-up transistor and the pull-down transistor. The level shifter is arranged to be coupled to a high power supply voltage, to receive an input signal having a first voltage level at the input node, and to supply an output signal having a second voltage level at the output node. The high power supply voltage is higher than the first voltage level. The at least one diode-connected device allows the output signal to be pulled up to about a first diode voltage drop below the high power supply voltage and/or to be pulled down to about a second diode voltage drop above ground. The first diode voltage drop and the second diode voltage drop are from the at least one diode-connected device.
    • 电平移位器包括输入节点,输出节点,上拉晶体管,下拉晶体管以及耦合在上拉晶体管和下拉晶体管之间的至少一个二极管连接器件。 电平移位器被布置为耦合到高电源电压,以在输入节点处接收具有第一电压电平的输入信号,并且在输出节点处提供具有第二电压电平的输出信号。 高电源电压高于第一电压电平。 所述至少一个二极管连接的装置允许输出信号被上拉到大约低于高电源电压的第一二极管电压降和/或被下拉到大约地面上的第二二极管电压降。 第一二极管电压降和第二二极管压降来自至少一个二极管连接的器件。
    • 7. 发明申请
    • VOL UP-SHIFTING LEVEL SHIFTERS
    • US20120050930A1
    • 2012-03-01
    • US12871343
    • 2010-08-30
    • Chan-Hong CHERNFu-Lung HSUEHYuwen SWEIChih-Chang LIN
    • Chan-Hong CHERNFu-Lung HSUEHYuwen SWEIChih-Chang LIN
    • H02H9/04H03L5/00
    • H03K19/0941H03K3/356182H03K19/018514
    • A representative level-shifter comprises a dynamically biased current source circuit that receives a first voltage, a first and a second unidirectional current-conducting devices, a first and a second pull-down devices, and a pull-up device. The first and second unidirectional current-conducting devices are coupled to the dynamically biased current source circuit. A voltage output of the level-shifter is located at a first node that is located between the current-constant circuit and the second unidirectional current-conducting device. The first and second pull-down devices are coupled to the first and second unidirectional current-conducting devices, respectively. The pull-up device receives a second voltage and is coupled to the dynamically biased current source circuit and the first unidirectional current-conducting device. The pull-up device is configured to dynamically bias the dynamically biased current source circuit such that a voltage drop of the second unidirectional current-conducting device is output at the voltage output responsive to the pull-up device outputting the second voltage to the dynamically biased current source circuit, the first pull-down device being non-conducting and the second pull-down device being conducting.
    • 代表性的电平转换器包括接收第一电压,第一和第二单向导流器件,第一和第二下拉器件以及上拉器件的动态偏置电流源电路。 第一和第二单向导流器件耦合到动态偏置电流源电路。 电平移位器的电压输出位于位于电流恒定电路和第二单向导流器件之间的第一节点处。 第一和第二下拉装置分别耦合到第一和第二单向导流装置。 上拉装置接收第二电压并耦合到动态偏置电流源电路和第一单向导流装置。 上拉装置被配置为动态地偏置动态偏置的电流源电路,使得第二单向导流装置的电压降在电压输出处被输出,响应于上拉装置将第二电压输出到动态偏置 电流源电路,第一下拉装置不导通,第二下拉装置导通。
    • 9. 发明申请
    • PHASE INTERPOLATOR FOR CLOCK DATA RECOVERY CIRCUIT WITH ACTIVE WAVE SHAPING INTEGRATORS
    • 用于具有主动波形整合器的时钟数据恢复电路的相位插值器
    • US20140037035A1
    • 2014-02-06
    • US13564758
    • 2012-08-02
    • Tao Wen CHUNGChan-Hong CHERNMing-Chieh HUANGChih-Chang LINYuwen SWEI
    • Tao Wen CHUNGChan-Hong CHERNMing-Chieh HUANGChih-Chang LINYuwen SWEI
    • H03D3/24
    • H03K5/135H03H11/20H03K2005/00052H04L7/0029
    • A phase interpolator for a CDR circuit produces an output clock having level transitions between the level transitions on two input clocks. The input clocks drive cross-coupled differential amplifiers with an output that can be varied in phase by variable current throttling or steering, according to an input control value. The differential amplifiers produce an output signal with a transition spanning a time between the start of a transition on the leading input clock up to the end of the transition on the lagging input clock. The output clock is linear so long as the transitions on the two input clocks overlap. Active integrators each having an amplifier with a series resistance and capacitive feedback path are coupled to each input to the cross-coupled differential amplifiers, which enhances overlap of the input clock rise times and improves the linearity of the interpolated output signal.
    • 用于CDR电路的相位插值器产生具有在两个输入时钟上的电平转换之间的电平转换的输出时钟。 输入时钟驱动交叉耦合差分放大器,输出可根据输入控制值通过可变电流节流或转向相位变化。 差分放大器产生一个输出信号,该输出信号跨越在引导输入时钟之间的转换开始到延迟输入时钟转换结束之间的时间。 输出时钟是线性的,只要两个输入时钟的转换重叠即可。 每个具有串联电阻和电容反馈路径的放大器的积分器耦合到交叉耦合差分放大器的每个输入,这增强了输入时钟上升时间的重叠,并提高了内插输出信号的线性度。