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    • 1. 发明申请
    • LOW NOISE AND LOSS BIASING CIRCUIT
    • 低噪声和低频偏置电路
    • US20140120845A1
    • 2014-05-01
    • US14066527
    • 2013-10-29
    • ANAYAS360.COM, LLC
    • Joy Laskar
    • H04B1/40
    • G06F13/42G06F13/4068H03G3/3042H04B1/40H04B1/403Y02D10/14Y02D10/151
    • A bias circuit of a wireless data transceiver comprises a first transistor, a second transistor, a third transistor, a fourth transistor, and a low pass filter. A gate of the first transistor received an input signal. A gate of the second transistor is coupled to a gate of the third transistor and a drain of the first transistor. A source of the second transistor and a source of the third transistor are coupled to a supply voltage. A drain of the third transistor and a drain and a gate of the fourth transistor are coupled to the low pass filter. An output of the low pass filter is an output signal. The bias circuit is configured to reduce an amount of noise injected into an analog or digital device when measuring characteristics of the analog or digital device.
    • 无线数据收发器的偏置电路包括第一晶体管,第二晶体管,第三晶体管,第四晶体管和低通滤波器。 第一晶体管的栅极接收输入信号。 第二晶体管的栅极耦合到第三晶体管的栅极和第一晶体管的漏极。 第二晶体管的源极和第三晶体管的源极耦合到电源电压。 第三晶体管的漏极和第四晶体管的漏极和栅极耦合到低通滤波器。 低通滤波器的输出是输出信号。 偏置电路被配置为当测量模拟或数字设备的特性时,减少注入到模拟或数字设备中的噪声量。
    • 2. 发明申请
    • ADDRESS BASED SERIAL COMMUNICATION INTERFACE FOR CONTROL AND MONITORING OF SYSTEM-ON-CHIP IMPLEMENTATIONS
    • 基于地址的串行通信接口,用于控制和监控系统级芯片实现
    • US20140122756A1
    • 2014-05-01
    • US14066514
    • 2013-10-29
    • ANAYAS360.COM, LLC
    • Joy Laskar
    • G06F13/42
    • G06F13/42G06F13/4068H03G3/3042H04B1/40H04B1/403Y02D10/14Y02D10/151
    • A wireless data transceiver comprises a data bus, a first slave device and a second slave device. The first slave device and the second slave device are coupled to the data bus such that both devices can detect transmitted data packets. The transceiver further comprises an interface device coupled to the data bus. The interface device is configured to convert data formatted according to a first protocol to a second protocol, and vice-versa. The transceiver further comprises a first master controller and a second master controller coupled to the interface device. The first master controller receives first data formatted according to the second protocol and outputs data packets having a first slave address corresponding to the first slave device. The second master controller receives second data formatted according to the second protocol and outputs data packets having a second slave address corresponding to the second slave device.
    • 无线数据收发器包括数据总线,第一从设备和第二从设备。 第一从设备和第二从设备耦合到数据总线,使得两个设备都可以检测发送的数据分组。 收发器还包括耦合到数据总线的接口装置。 接口设备被配置为将根据第一协议格式化的数据转换为第二协议,反之亦然。 收发器还包括耦合到接口装置的第一主控制器和第二主控制器。 第一主控制器接收根据第二协议格式化的第一数据,并输出具有对应于第一从设备的第一从地址的数据包。 第二主控制器接收根据第二协议格式化的第二数据,并输出具有与第二从设备相对应的第二从地址的数据包。
    • 5. 发明申请
    • ON-CHIP CALIBRATION AND BUILT-IN-SELF-TEST FOR SOC MILLIMETER-WAVE INTEGRATED DIGITAL RADIO AND MODEM
    • 嵌入式数字无线电和调制解调器的芯片校准和内置自检
    • US20140162568A1
    • 2014-06-12
    • US14099593
    • 2013-12-06
    • ANAYAS360.COM, LLC
    • Joy Laskar
    • H04B17/00
    • H04B1/40H01L28/75H04B17/11H04B17/13H04B17/14H04B17/19H04B17/318Y02D70/10Y02D70/14
    • A method for calibrating a wireless data transceiver package can include transmitting, by a testing device, a first control sequence to a wireless data transceiver. The transceiver can include a receiver and a transmitter. The first control sequence can include instructions for setting input parameters of the transmitter. The method can further include transmitting, by the testing device, a second control sequence to the transceiver that can include instructions for setting input parameters of the receiver. The method can further include receiving, from the transceiver, a third control sequence that can include output parameters of the transceiver. The method can further include determining a coupling between the receiver and the transmitter based on the output parameters. The method can further include determining a bit error rate of the transceiver based on the coupling. The method can further include calibrating a second transceiver based on the bit error rate.
    • 用于校准无线数据收发器封装的方法可以包括由测试设备将第一控制序列发送到无线数据收发器。 收发器可以包括接收器和发射器。 第一控制序列可以包括用于设置发射机的输入参数的指令。 该方法还可以包括由测试设备向收发机发送可包括用于设置接收机的输入参数的指令的第二控制序列。 该方法还可以包括从收发器接收可包括收发器的输出参数的第三控制序列。 该方法还可以包括基于输出参数来确定接收器和发射器之间的耦合。 该方法还可以包括基于耦合来确定收发信机的误码率。 该方法还可以包括基于误码率来校准第二收发器。
    • 7. 发明申请
    • MILLIMETER-WAVE MIXED-SIGNAL AUTOMATIC GAIN CONTROL
    • 米勒混合信号自动增益控制
    • US20140120853A1
    • 2014-05-01
    • US14066508
    • 2013-10-29
    • ANAYAS360.COM, LLC
    • Joy Laskar
    • H03G3/30
    • G06F13/42G06F13/4068H03G3/3042H04B1/40H04B1/403Y02D10/14Y02D10/151
    • A wireless data transceiver comprises a voltage controlled oscillator configured to generate a first time-varying signal. The transceiver further comprises an antenna configured to receive a signal wirelessly over a network. The transceiver further comprises an amplifier configured to amplify the signal. The transceiver further comprises a frequency mixer coupled to the voltage controlled oscillator and the amplifier. The frequency mixer is configured to generate a second time-varying signal based on the first time-varying signal and the amplified signal. The transceiver further comprises a power detector configured to measure a characteristic of the second time-varying signal. The transceiver further comprises an automatic gain control circuit coupled to the power detector and the amplifier. The automatic gain control circuit is configured to adjust operation of the amplifier based on the measured characteristic, a minimum power setting, and a maximum power setting.
    • 无线数据收发器包括经配置以产​​生第一时变信号的压控振荡器。 收发器还包括配置成通过网络无线地接收信号的天线。 收发器还包括被配置为放大信号的放大器。 收发器还包括耦合到压控振荡器和放大器的混频器。 混频器被配置为基于第一时变信号和放大信号产生第二时变信号。 收发器还包括被配置为测量第二时变信号的特性的功率检测器。 收发器还包括耦合到功率检测器和放大器的自动增益控制电路。 自动增益控制电路被配置为基于测量的特性,最小功率设置和最大功率设置来调节放大器的操作。
    • 8. 发明申请
    • COMPACT AND LOW-POWER MILLIMETER-WAVE INTEGRATED VCO-UP/DOWN-CONVERTER WITH GAIN-BOOSTING
    • 紧凑型和低功率微波整合式VCO升/降转换器,具有增益
    • US20140120848A1
    • 2014-05-01
    • US14066553
    • 2013-10-29
    • ANAYAS360.COM, LLC
    • Joy Laskar
    • H04B1/40
    • G06F13/42G06F13/4068H03G3/3042H04B1/40H04B1/403Y02D10/14Y02D10/151
    • A wireless data transceiver comprises a local oscillator configured to generate a first time-varying signal of a first frequency at an output of the local oscillator. The transceiver further comprises a local oscillator interface circuit coupled to the local oscillator. The local oscillator interface circuit is configured to generate a second time-varying signal of the first frequency with negative conductance at an output of the local oscillator interface circuit. The negative conductance is generated based on capacitive degeneration. The transceiver further comprises a frequency mixer coupled to the output of the local oscillator interface circuit. The frequency mixer is configured to generate a third time-varying signal of a second frequency based on the second time-varying signal.
    • 无线数据收发器包括被配置为在本地振荡器的输出处产生第一频率的第一时变信号的本地振荡器。 收发器还包括耦合到本地振荡器的本地振荡器接口电路。 本地振荡器接口电路被配置为在本地振荡器接口电路的输出处产生具有负电导的第一频率的第二时变信号。 负电导是基于电容变性产生的。 收发器还包括耦合到本地振荡器接口电路的输出的混频器。 混频器被配置为基于第二时变信号产生第二频率的第三时变信号。