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    • 3. 发明公开
    • MULTI-CASCODE AMPLIFIER BIAS TECHNIQUES
    • 多编码放大器偏置技术
    • EP2883305A1
    • 2015-06-17
    • EP13750611.9
    • 2013-08-08
    • Qualcomm Incorporated
    • SU, WenjunNARATHONG, ChiewcharnYIN, GuangmingHADJICHRISTOS, Aristotele
    • H03F1/22H03F3/193
    • H03F1/223H03F3/193
    • Techniques for generating bias voltages for a multi-cascode amplifier. In an aspect, a multi-cascode bias network is provided, each transistor in the bias network being a replica of a corresponding transistor in the multi-cascode amplifier, enabling accurate biasing of the transistors in the multi-cascode amplifier. In another aspect, a voltage supply for the multi-cascode amplifier is provided separately from a voltage supply for the replica bias network, to advantageously decouple variations in the amplifier voltage supply from the bias network voltage supply. In yet another aspect, the bias voltages of transistors in the multi-cascode amplifier may be configured by adjusting the impedance of resistive voltage dividers coupled to the transistor gate biases. As the gain of the amplifier depends on the bias voltages of the cascode amplifiers, the gain of the amplifier may be adjusted in this manner without introducing a variable gain element directly in the amplifier signal path.
    • 用于为多级共源共栅放大器生成偏置电压的技术。 在一个方面中,提供了多级共射共基放大器偏置网络,偏置网络中的每个晶体管是多级共射共基放大器中的对应晶体管的复制品,其实现了多级共射共基放大器中的晶体管的精确偏置。 在进一步的方面中,用于多级共射共基放大器的电压供应与用于复制品偏置网络的电压供应分离地提供,以有利地将放大器电压供应中的变化与偏置网络电压供应去耦。 在又一方面,多级共射共基放大器中的晶体管的偏置电压可以通过调整耦合到晶体管栅极偏置的电阻分压器的阻抗来配置。 由于放大器的增益取决于共源共栅放大器的偏置电压,所以放大器的增益可以以这种方式有利地被调整,而不会直接在放大器信号路径中引入可变增益元件。
    • 10. 发明申请
    • LOW-POWER MODULUS DIVIDER STAGE
    • 低功率模块分频器级
    • WO2008002968A1
    • 2008-01-03
    • PCT/US2007/072215
    • 2007-06-27
    • QUALCOMM IncorporatedNARATHONG, ChiewcharnSU, Wenjun
    • NARATHONG, ChiewcharnSU, Wenjun
    • H03K23/00
    • H03K23/54
    • A modulus divider stage (MDS) includes first and second stages. The MDS receives a modulus divisor control signal S that determines whether the MDS stage operates in a divide-by-two mode or a divide-by-three mode. The MDS stage also receives a feedback modulus control signal from another MDS. When in the divide-by-two mode, the MDS divides by two regardless of the feedback modulus control signal. To conserve power, the first stage is unpowered when the MDS stage operates in the divide-by-two mode. When in the divide-by-three mode, the MDS stage either divides by two or by three depending on the feedback modulus control signal. To further reduce power consumption, the first stage is unpowered when the MDS stage is in the divide-by-three mode but is nonetheless performing a divide-by-two operation. A power-down transistor holds the output of the first stage at the proper logic level when the first stage is unpowered.
    • 模数分频器级(MDS)包括第一级和第二级。 MDS接收模数除数控制信号S,其确定MDS级是以二分模式还是三分模式操作。 MDS级还接收来自另一MDS的反馈模数控制信号。 在二分模式下,无论反馈模数控制信号如何,MDS均除以二。 为了节省功率,当MDS阶段以二分模式运行时,第一级无功。 在三分频模式下,根据反馈模数控制信号,MDS级分为2或3。 为了进一步降低功耗,当MDS级处于三分频模式时,第一级没有动力,但仍然执行一个二分之一的操作。 当第一级无功时,掉电​​晶体管将第一级的输出保持在适当的逻辑电平。