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    • 3. 发明申请
    • CURRENT MIRROR WITH LOW HEADROOM AND LINEAR RESPONSE
    • 具有低电平和线性响应的电流镜
    • US20110148525A1
    • 2011-06-23
    • US13042057
    • 2011-03-07
    • Sandro HERRERA
    • Sandro HERRERA
    • H03F3/45
    • G05F3/16H03F3/343
    • A current mirror circuit provided in an emitter follower configuration achieves linearly output over a range of input currents by operating in response to a bias current that is a replica of the input current. The current mirror may include a pair of transistors and a pair of resistors, in which: a first resistor and a base of a first transistor are coupled to a first input terminal for a first input current, an emitter of the first transistor and a base of the second transistor are coupled to a second input terminal for a second input current, the first and second input currents being replicas of each other, an emitter of the second transistor being coupled to the second resistor, a collector of the second transistor being coupled to an output terminal of the current mirror, and a collector of the first transistor and the two resistors are coupled to a common node.
    • 设置在射极跟随器配置中的电流镜电路通过响应于作为输入电流的复制品的偏置电流而工作来实现输入电流范围上的线性输出。 电流镜可以包括一对晶体管和一对电阻器,其中:第一晶体管的第一电阻器和基极耦合到用于第一输入电流的第一输入端子,第一晶体管的发射极和基极 所述第二晶体管的耦合到第二输入端的第二输入电流,所述第一和第二输入电流是彼此的复制品,所述第二晶体管的发射极耦合到所述第二电阻器,所述第二晶体管的集电极被耦合 耦合到电流镜的输出端,并且第一晶体管和两个电阻器的集电极耦合到公共节点。
    • 4. 发明授权
    • Current mirror with low headroom and linear response
    • 电流反射镜具有低余量和线性响应
    • US07907012B2
    • 2011-03-15
    • US12255326
    • 2008-10-21
    • Sandro Herrera
    • Sandro Herrera
    • H03F3/45
    • G05F3/16H03F3/343
    • A current mirror circuit provided in an emitter follower configuration achieves linear output currents over a range of input currents by operating in response to a bias current that is a replica of the input current. The current mirror may include a pair of transistors and a pair of resistors, in which: a first resistor and a base of a first transistor are coupled to a first input terminal for a first input current, an emitter of the first transistor and a base of the second transistor are coupled to a second input terminal for a second input current, the first and second input currents being replicas of each other, an emitter of the second transistor being coupled to the second resistor, a collector of the second transistor being coupled to an output terminal of the current mirror, and a collector of the first transistor and the two resistors are coupled to a common node.
    • 设置在射极跟随器配置中的电流镜电路通过响应于作为输入电流的复制品的偏置电流而工作来实现输入电流范围上的线性输出电流。 电流镜可以包括一对晶体管和一对电阻器,其中:第一晶体管的第一电阻器和基极耦合到用于第一输入电流的第一输入端子,第一晶体管的发射极和基极 所述第二晶体管的耦合到第二输入端的第二输入电流,所述第一和第二输入电流是彼此的复制品,所述第二晶体管的发射极耦合到所述第二电阻器,所述第二晶体管的集电极被耦合 耦合到电流镜的输出端,并且第一晶体管和两个电阻器的集电极耦合到公共节点。
    • 5. 发明申请
    • Comparative Signal Strength Detection
    • 比较信号强度检测
    • US20100156390A1
    • 2010-06-24
    • US12721014
    • 2010-03-10
    • Matthew D. FelderMichael R. May
    • Matthew D. FelderMichael R. May
    • H03H7/00
    • H04L27/14H03F3/189H03F3/343H03G3/3068
    • A method for signal strength detection begins by comparing a signal strength representation of a signal with a signal strength representation of a reference signal. The method continues by adjusting, when the signal strength representation of the signal compares unfavorably with the signal strength representation of the reference signal, at least one of the signal strength representation of the signal and the signal strength representation of the reference signal until the signal strength representation of the signal compares favorably with the signal strength representation of the reference signal. The method continues by determining signal strength of the signal based on the adjusting of the signal strength representation of the signal and signal strength of the reference signal.
    • 用于信号强度检测的方法开始于将信号的信号强度表示与参考信号的信号强度表示进行比较。 该方法通过调节信号的信号强度表示与参考信号的信号强度表示不利地相比较,信号的信号强度表示和参考信号的信号强度表示中的至少一个直到信号强度 信号的表示与参考信号的信号强度表示相当。 该方法通过基于信号的信号强度表示和参考信号的信号强度的调整来确定信号的信号强度来继续。