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    • 1. 发明授权
    • Radio frequency module having an isolation mode between transmission mode and power saving mode
    • 射频模块在传输模式和省电模式之间具有隔离模式
    • US08649741B2
    • 2014-02-11
    • US13204400
    • 2011-08-05
    • Masanori IijimaYoshiaki Harasawa
    • Masanori IijimaYoshiaki Harasawa
    • H04B1/44
    • H03K17/6221
    • A radio frequency module is configured to enter a power saving mode with high reliability. The radio frequency module includes, e.g., a first switch transistor for coupling a transmission node to an antenna, a second switch transistor for shunting the transmission node to a ground voltage, and a level shift circuit for performing on-off control of the first and second switch transistors by positive and negative power supply voltages. The level shift circuit, upon receiving a sleep instruction while the module is in a transmission operation mode in which the first switch transistor for coupling a transmission node to an antenna is turned on and the second switch transistor for shunting the transmission node to a ground voltage is turned off, first transitions to an isolation operation mode in which the first switch transistor for coupling a transmission node to an antenna is turned off and the second switch transistor for shunting the transmission node to a ground voltage is turned on for a first period of time, and then transitions to a sleep mode in which the positive and negative power supply voltages are deactivated.
    • 射频模块被配置为以高可靠性进入省电模式。 射频模块包括例如用于将发送节点耦合到天线的第一开关晶体管,用于将发送节点分流到接地电压的第二开关晶体管,以及用于执行第一和第二开关晶体管的开关控制的电平移位电路, 第二开关晶体管由正和负电源电压。 电平移位电路在模块处于用于将发送节点耦合到天线的第一开关晶体管接通的传输操作模式下接收到休眠指令时,以及用于将发送节点分流到接地电压的第二开关晶体管 关闭,首先转换到隔离操作模式,其中用于将传输节点耦合到天线的第一开关晶体管被截止,并且用于将发送节点分流到接地电压的第二开关晶体管接通第一周期 时间,然后转换到休眠模式,其中正和负电源电压被去激活。
    • 2. 发明申请
    • Radio Frequency Module Having an Isolation Mode Between Transmission Mode and Power Saving Mode
    • 射频模块在传输模式和省电模式之间具有隔离模式
    • US20120064952A1
    • 2012-03-15
    • US13204400
    • 2011-08-05
    • Masanori IijimaYoshiaki Harasawa
    • Masanori IijimaYoshiaki Harasawa
    • H04W52/02H04W88/02
    • H03K17/6221
    • A radio frequency module is configured to enter a power saving mode with high reliability. The radio frequency module includes, e.g., a first switch transistor for coupling a transmission node to an antenna, a second switch transistor for shunting the transmission node to a ground voltage, and a level shift circuit for performing on-off control of the first and second switch transistors by positive and negative power supply voltages. The level shift circuit, upon receiving a sleep instruction while the module is in a transmission operation mode in which the first switch transistor for coupling a transmission node to an antenna is turned on and the second switch transistor for shunting the transmission node to a ground voltage is turned off, first transitions to an isolation operation mode in which the first switch transistor for coupling a transmission node to an antenna is turned off and the second switch transistor for shunting the transmission node to a ground voltage is turned on for a first period of time, and then transitions to a sleep mode in which the positive and negative power supply voltages are deactivated.
    • 射频模块被配置为以高可靠性进入省电模式。 射频模块包括例如用于将发送节点耦合到天线的第一开关晶体管,用于将发送节点分流到接地电压的第二开关晶体管,以及用于执行第一和第二开关晶体管的开关控制的电平移位电路, 第二开关晶体管由正和负电源电压。 电平移位电路在模块处于用于将发送节点耦合到天线的第一开关晶体管接通的传输操作模式下接收到休眠指令时,以及用于将发送节点分流到接地电压的第二开关晶体管 关闭,首先转换到隔离操作模式,其中用于将传输节点耦合到天线的第一开关晶体管被截止,并且用于将发送节点分流到接地电压的第二开关晶体管接通第一周期 时间,然后转换到休眠模式,其中正和负电源电压被去激活。
    • 3. 发明授权
    • Semiconductor device and radio communication device
    • 半导体器件和无线电通信设备
    • US08633618B2
    • 2014-01-21
    • US13651731
    • 2012-10-15
    • Masanori IijimaYoshiaki Harasawa
    • Masanori IijimaYoshiaki Harasawa
    • H02M3/06
    • H03K17/693H02M3/07H03K17/063H03K17/162
    • To provide a fast charge means for a capacitor in a negative bias generation circuit. A capacitor is present in a down converter in a negative bias generation circuit. In order to perform fast charge, the capacitance of the capacitor is reduced and a necessary amount of charge is minimized. On the other hand, an external capacitance provided separately from the capacitor in the down converter is coupled directly to a power supply voltage and charged. After the capacitor in the down converter is charged, the external capacitance and the capacitor in the down converter are coupled in parallel. Due to this, it is made possible to aim at both the increase in charge speed and the improvement of resistance to ripple noise.
    • 为负偏压发生电路中的电容器提供快速充电装置。 在负偏压发生电路中的下变频器中存在电容器。 为了执行快速充电,电容器的电容减小并且必需的电荷量被最小化。 另一方面,与下变频器​​中的电容器分开设置的外部电容直接耦合到电源电压并且被充电。 在下变频器中的电容器被充电之后,下变频器中的外部电容和电容器并联耦合。 因此,可以瞄准充电速度的提高和抗纹波噪声的提高。
    • 4. 发明授权
    • Semiconductor device and radio communication device
    • 半导体器件和无线电通信设备
    • US08324760B2
    • 2012-12-04
    • US12835280
    • 2010-07-13
    • Masanori IijimaYoshiaki Harasawa
    • Masanori IijimaYoshiaki Harasawa
    • H02M3/06
    • H03K17/693H02M3/07H03K17/063H03K17/162
    • To provide a fast charge means for a capacitor in a negative bias generation circuit. A capacitor is present in a down converter in a negative bias generation circuit. In order to perform fast charge, the capacitance of the capacitor is reduced and a necessary amount of charge is minimized. On the other hand, an external capacitance provided separately from the capacitor in the down converter is coupled directly to a power supply voltage and charged. After the capacitor in the down converter is charged, the external capacitance and the capacitor in the down converter are coupled in parallel. Due to this, it is made possible to aim at both the increase in charge speed and the improvement of resistance to ripple noise.
    • 为负偏压发生电路中的电容器提供快速充电装置。 在负偏压发生电路中的下变频器中存在电容器。 为了执行快速充电,电容器的电容减小并且必需的电荷量被最小化。 另一方面,与下变频器​​中的电容器分开设置的外部电容直接耦合到电源电压并且被充电。 在下变频器中的电容器被充电之后,下变频器中的外部电容和电容器并联耦合。 因此,可以瞄准充电速度的提高和抗纹波噪声的提高。
    • 5. 发明授权
    • Transmitter and mobile communication terminal using the same
    • 发射机和移动通信终端使用相同
    • US07519337B2
    • 2009-04-14
    • US11304914
    • 2005-12-16
    • Masahiro ItoTaizo YamawakiYoshiaki Harasawa
    • Masahiro ItoTaizo YamawakiYoshiaki Harasawa
    • H01Q11/12
    • H04B1/0475H03F1/0205H03F1/0261H03F2200/294
    • A transmitter employing variable gain amplifiers and operating with both constant and nonconstant envelope modulation systems is contrived to suppress variation in the transmitting power when constant envelope modulation is performed. The transmitter comprises a PM loop, an AM loop, and a variable gain amplifier which is shared by the PM loop and the AM loop and combines phase information that the PM loop outputs and envelope information that the AM loop outputs by gain control. The variable gain amplifier comprises a variable gain amplifier body having a supply voltage terminal and a bias current detection terminal for extracting a bias current corresponding to a gain, wherein the gain changes with a change in the potential of the supply voltage terminal, and a bias control block connected to the supply voltage terminal and the bias current detection terminal. Thereby, a bias control loop is formed to control the bias current so that the gain in the case of constant envelope modulation becomes a predetermined value.
    • 采用可变增益放大器并且使用恒定和非恒定包络调制系统进行操作的发射机被设计成在执行恒定包络调制时抑制发射功率的变化。 发射机包括由PM环路和AM环路共享的PM环路,AM环路和可变增益放大器,并组合PM环路输出的相位信息和AM环路通过增益控制输出的包络信息。 可变增益放大器包括具有电源电压端子的可变增益放大器体和用于提取与增益相对应的偏置电流的偏置电流检测端子,其中增益随着电源电压端子的电位变化而变化,偏置 控制块连接到电源电压端子和偏置电流检测端子。 由此,形成偏置控制环以控制偏置电流,使得在恒定包络调制的情况下的增益变为预定值。
    • 8. 发明申请
    • Semiconductor device and module having a transceiver with a built-in regulator
    • 具有具有内置调节器的收发器的半导体器件和模块
    • US20060084399A1
    • 2006-04-20
    • US11246253
    • 2005-10-11
    • Taizo YamawakiYoshiaki Harasawa
    • Taizo YamawakiYoshiaki Harasawa
    • H04B1/04
    • H04B1/1607H04B1/38
    • An object of the present invention is to provide a transmitter-receiver RF-IC having a built-in regulator, which can reduce a minimum value of an input voltage of the regulator without increasing its area, the input voltage being supplied from a battery, the transmitter-receiver RF-IC being capable of normal operation with the input voltage, whereby the operating time of a mobile terminal can be improved as compared with the prior art. According to the present invention, in order to achieve the above object, an output end of a regulator built into a RF-IC is first led to the outside of the RF-IC. Then, the output end is led to an area in proximity to the circuit block by use of wiring on a mobile terminal substrate whose resistance is low, or by use of wiring on a module whose resistance is low, thereby shortening the wiring length inside the RF-IC.
    • 本发明的目的是提供一种具有内置调节器的发射器 - 接收器RF-IC,其可以减小调节器的输入电压的最小值而不增加其面积,从电池供应的输入电压, 发射机 - 接收机RF-IC能够利用输入电压进行正常操作,由此与现有技术相比可以提高移动终端的操作时间。 根据本发明,为了实现上述目的,首先将内置于RF-IC中的调节器的输出端引导到RF-IC的外部。 然后,通过使用电阻较低的移动终端基板上的布线,或者通过使用电阻较低的模块上的布线,将输出端导向靠近电路块的区域,从而缩短电路内部的布线长度 RF-IC。
    • 9. 发明授权
    • Receiving system and semiconductor integrated circuit device for processing wireless communication signal
    • 接收系统和半导体集成电路设备,用于处理无线通信信号
    • US07340232B2
    • 2008-03-04
    • US10842445
    • 2004-05-11
    • Motoki MurakamiYutaka IgarashiAkio YamamotoIsao IkutaYoshiaki Harasawa
    • Motoki MurakamiYutaka IgarashiAkio YamamotoIsao IkutaYoshiaki Harasawa
    • H04B1/16
    • H04B1/30
    • The invention provides a receiving system and a transmitting system capable of decreasing an offset between differential signals and between quadrature signals and improving a manufacturing yield and a semiconductor integrated circuit device for processing a wireless communication signal having therein the systems. A receiving system includes: a local oscillator for generating an oscillation signal in a desired frequency; a 90-degree phase-shifting circuit for generating a signal by shifting a phase of the oscillation signal output from the local oscillator by 90 degrees; a first mixer for mixing one of differential reception signals with an output signal of the first 90-degree phase-shifting circuit and outputting frequency-converted differential signals; and a second mixer for mixing another one of the differential reception signals with an output signal of the local oscillator and outputting frequency-converted differential signals.
    • 本发明提供一种能够减少差分信号与正交信号之间的偏移并提高制造成品率的接收系统和发送系统,以及用于处理其中具有系统的无线通信信号的半导体集成电路装置。 接收系统包括:本地振荡器,用于产生期望频率的振荡信号; 用于通过将从本地振荡器输出的振荡信号的相位相移90度来产生信号的90度相移电路; 第一混频器,用于将差分接收信号中的一个与第一90度移相电路的输出信号混频并输出经频率转换的差分信号; 以及第二混频器,用于将另一个差分接收信号与本地振荡器的输出信号混频并输出经变频的差分信号。