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1.
本文描述了在27.5~30.0GHz下工作的噪声系数为4.6dB、频带中心转换增益为17dB的GaAsFET接收机。为此接收机研制了一个FET三级放大器(噪声系数4.4dB,增益17.5dB),一个25GHzFET振荡器(输出功率10mW)和双栅FET混频器(转换增益3dB,噪声系数10dB)。  相似文献   

2.
本文给出一种应用于无线传感器网络射频前端低噪声放大器的设计,采用SMIC0.18μmCMOS工艺模型。在CadenceSpectre仿真环境下的仿真结果表明:该低噪声放大器满足射频前端的系统要求,在2.45GHz的中心频率下增益可调,高增益时,噪声系数为2.9dB,输入P1dB压缩点为-19.8dBm,增益为20.5dB;中增益时,噪声系数为3.6dB,输入P1dB压缩点为-15.8dBm,增益为12.5dB;低增益时,噪声系数为6.0dB,输入P1dB压缩点为-16.4dB,增益为2.2dB。电路的输入输出匹配良好,在电源电压1.8V条件下,工作电流约为6mA。  相似文献   

3.
本文介绍了C波段GaAs微波单片集成低噪声放大器的设计,给出了电路拓扑与版图设计.在3.7~4.2GHz下,研制成的两级放大器噪声系数为1~3.5dB,增益为20dB左右;三级放大器噪声系数为1.6~3.5dB,增益大于30dB.  相似文献   

4.
文章主要介绍应用于集群接收机系统的350MHz~470MHz低噪声放大器,采用0.6μm CMOS工艺。探讨了优化低噪声放大器的噪声系数、增益与线性度的设计方法,同时对宽带输入输出匹配进行了分析。这种宽带低噪声放大器的工作带宽350MHz~470MHz,噪声系数小于3dB,增益为24dB,增益平坦度为±1dB,输入1dB压缩点大于-15dBm。  相似文献   

5.
采用电子束曝光技术刻制栅电极及减小源栅寄生电阻的方法,发展了0.25μm 栅低噪声 GaAsFET。18GHz 下,噪声系数为1.9dB,相应增益为7dB(漏电流为10mA 时),最大有用增益为11dB(漏电流为30mA 时)。30GHz 下,噪声系数为4dB,相应增益为5dB,最大有用增益为8dB。测得的噪声系数是迄今所报导的最好值。本工作证明,GaAsMESFET 能够在毫米波范围工作。  相似文献   

6.
本文采用二维直流传输特性和s、y参数分析双栅MESFET的性能,介绍了器件设计和实验结果.得到的最佳性能为:在1GHz下噪声系数0.7dB,相关增益22.4dB;在1.9GHz下,噪声系数0.9dB,相关增益15.5dB.  相似文献   

7.
微波低噪声SiGe HBT的研制   总被引:6,自引:2,他引:4  
利用3μm工艺条件制得SiGeHBT(HeterojunctionBipolarTransistor),器件的特征频率达到8GHz.600MHz工作频率下的最小噪声系数为1.04dB,相关功率增益为12.6dB,1GHz工作频率下的最小噪声系数为1.9dB,相关功率增益为9dB,器件在微波无线通信领域具有很大的应用前景  相似文献   

8.
S波段低噪声放大器设计   总被引:1,自引:0,他引:1  
首先分析了低噪声放大电路的稳定性,功率增益及噪声系数的影响因素及改进方法;然后设计了一个中心频率为2.45 GHz,工作带宽为100MHz的S波段低噪声放大器.仿真结果表明,该放大器的噪声系数小于1 dB,功率增益大于28 dB,增益平坦度小于1 dB,输入/输出驻波比小于2:1.通过传统的电路板制作工艺实际制作了放大器电路,测试结果和仿真结果较一致.  相似文献   

9.
研制了5.3~5.9GHzGaAsFET低噪声集成放大器。小批量生产后达到的指标是:典型值:增益=22dB;噪声系数<3.5dB;带内增益起伏<±0.75dB;最佳值:增益=24dB,噪声系数≤2.94dB(噪声系数值均含外接隔离器约0.3dB的插入损耗),带内增益起伏<±0.5dB。测量了高电平射频脉冲信号对GaAsFET放大器的影响,为放大器用于收发公用天线的系统中对防护器件的要求提供了初步依据。  相似文献   

10.
闵丹  马晓华  刘果果  王语晨 《半导体技术》2019,44(8):590-594,622
为满足宽带系统中低噪声放大器(LNA)宽带的要求,采用0.15μm GaAs赝配高电子迁移率晶体管(PHEMT)工艺,设计了两款1 MHz^40 GHz的超宽带LNA,分别采用均匀分布式放大器结构及渐变分布式放大器结构,电路面积分别为1.8 mm×0.85 mm和1.8 mm×0.8 mm。电磁场仿真结果表明,1 MHz^40 GHz频率范围内,均匀分布式LNA增益为15.3 dB,增益平坦度为2 dB,噪声系数小于5.1 dB;渐变分布式LNA增益为14.16 dB,增益平坦度为1.74 dB,噪声系数小于3.9 dB。渐变分布式LNA较均匀分布式LNA,显著地改善了增益平坦度、噪声性能和群延时特性。  相似文献   

11.
《Electronics letters》2009,45(10):509-510
A V-band down-converter integrating a LNA and mixer in 0.13 mm CMOS technology is presented. The LNA has a current re-use topology for low power consumption. The transistor size of the LNA is optimised by the substrate noise for the low noise figure (NF) and fmax for high gain performance. The new resistive mixer for low LO power operation is proposed. The NF of the down-converter is 4.7 dB. The conversion gain and input P1dB are 0.67 dB and 212.5 dBm, respectively. The proposed circuit, consuming only 11.6 mW, shows the lowest NF and highest linearity among V-band down-converters.  相似文献   

12.
A BiCMOS transceiver intended for spread spectrum applications in the 2.4-2.5 GHz band is described. The IC contains a low-noise amplifier (LNA) with 14 dB gain and 2.2 dB NF in its high-gain mode, a downconversion mixer with 8 dB gain and 11 dB NF, and an upconversion mixer with 17 dB gain and P-1 dB of +3 dBm out. An on-chip local oscillator (LO) buffer accepts LO drive of -10 dBm with a half-frequency option allowed by an on-chip frequency doubler. Power consumption from a single 3-V supply is 34 mA in transmit mode, 21 mA in receive mode, and 1 μA in sleep mode  相似文献   

13.
Scaling of CMOS technologies has a great impact on analog design. The most severe consequence is the reduction of the voltage supply. In this paper, a low voltage, low power, AC-coupled folded-switching mixer with current-reuse is presented. The main advantages of the introduced mixer topology are: high voltage gain, moderate noise figure, moderate linearity, and operation at low supply voltages. Insight into the mixer operation is given by analyzing voltage gain, noise figure (NF), linearity (IIP3), and DC stability. The mixer is designed and implemented in 0.18-/spl mu/m CMOS technology with metal-insulator-metal (MIM) capacitors as an option. The active chip area is 160 /spl mu/m/spl times/200 /spl mu/m. At 2.4 GHz a single side band (SSB) noise figure of 13.9 dB, a voltage gain of 11.9 dB and an IIP3 of -3 dBm are measured at a supply voltage of 1 V and with a power consumption of only 3.2 mW. At a supply voltage of 1.8 V, an SSB noise figure of 12.9 dB, a voltage gain of 16 dB and an IIP3 of 1 dBm are measured at a power consumption of 8.1 mW.  相似文献   

14.
A 2.7-V 900-MHz CMOS LNA and mixer   总被引:4,自引:0,他引:4  
A CMOS low-noise amplifier (LNA) and a mixer for RF front-end applications are described. A current reuse technique is described that increases amplifier transconductance for the LNA and mixer without increasing power dissipation, compared to standard topologies. At 900 MHz, the LNA minimum noise figure (NF) is 1.9 dB, input third-order intercept point (IIP3) is -3.2 dBm and forward gain is 15.6 dB. With a 1-GHz local oscillator (LO) and a 900-MHz RF input, the mixer minimum double sideband noise figure (DSB NF) is 5.8 dB, IIP3 is -4.1 dBm, and power conversion gain is 8.8 dB. The LNA and mixer, respectively, consume 20 mW and 7 mW from a 2.7 V power supply. The active areas of the LNA and mixer are 0.7 mm×0.4 mm and 0.7 mm×0.2 mm, respectively. The prototypes were fabricated in a 0.5-μm CMOS process  相似文献   

15.
Maas  S.A. 《Electronics letters》1985,21(3):104-105
A low-noise 45 GHz mixer has been realised using a high electron mobility transistor (HEMT). This is the first reported active mixer above 30 GHz and the first reported HEMT mixer. The mixer exhibits 1.5 dB maximum gain at 4 dBm local oscillator (LO) power and 8.1 dB noise figure, including a 2.6 dB NF IF amplifier, at 2 dBm LO power.  相似文献   

16.
提出了采用0.18μm CMOS工艺,应用于802.11a协议的无线局域网接受机的低噪声放大器和改进的有源双平衡混频器的一些简单设计概念。通过在5.8 GHz上采用1.8 V供电所得到的仿真结果,低噪声放大器转换电压增益,输入反射系数,输出反射系数以及噪声系数分别为14.8 dB,-20.8 dB,-23.1 dB和1.38 dB。其功率损耗为26.3 mW。设计版图面积为0.9 mm&#215;0.67 mm。混频器的射频频率,本振频率和中频频率分别为5.8 GHz,4.6 GHz和1.2 GHz。在5.8 GHz上,混频器的传输增益,单边带噪声系数(SSB NF),1 dB压缩点,输入3阶截点(IIP3)以及功率损耗分别为-2.4 dB,12.1 dB,3.68 dBm,12.78 dBm和22.3 mW。设计版图面积为1.4 mm&#215;1.1 mm。  相似文献   

17.
设计实现了一种采用开关跨导型结构的低噪声高线性度上变频混频器,详细分析了电路的噪声特性和线性度等性能参数,本振频率为900 MHz。芯片采用0.18μm Mixed signal CMOS工艺实现。测试结果表明,混频器的转换增益约为8 dB,单边带噪声系数约为11 dB,输入参考三阶交调点(IIP3)约为10.5 dBm。芯片工作在1.8 V电源电压下,消耗的电流为10 mA,芯片总面积为0.63 mm×0.78 mm。  相似文献   

18.
A RF mixer with both low noise and high linearity is designed,operating at 2.45-GHz ISM band for RFID application.The designed mixer uses an optimal input matching network and the carefully chosen sizes of transistors,also with the appropriate bias point,to improve the noise figure(NF).Also,with a resonant LC loop as the current source and a parallel PMOS-resistor as the load,the mixer has a high linearity.The post simulation results show that the single side- band noise figure of 8.57 dB,conversion gain of 10.02 dB,input 1-dB compression point(P-1dB)of-8.33 dBm,and input third-order intercept point(IIP3)of 5.35 dBm.  相似文献   

19.
A 90–96 GHz down-conversion mixer for 94 GHz image radar sensors using standard 90 nm CMOS technology is reported. RF negative resistance compensation technique, i.e. NMOS LC-oscillator-based RF transconductance (GM) stage load, is used to increase the output impedance and suppress the feedback capacitance Cgd of RF GM stage. Hence, conversion gain (CG), noise figure (NF) and LO–RF isolation of the mixer can be enhanced. The mixer consumes 15 mW and achieves excellent RF-port input reflection coefficient of ?10 to ?36.4 dB for frequencies of 85–105 GHz. The corresponding -10 dB input matching bandwidth is 20 GHz. In addition, for frequencies of 90–96 GHz, the mixer achieves CG of 6.3–9 dB (the corresponding 3-dB CG bandwidth is greater than 6 GHz) and LO–RF isolation of 40–45.1 dB, one of the best CG and LO–RF isolation results ever reported for a down-conversion mixer with operation frequency around 94 GHz. Furthermore, the mixer achieves an excellent input third-order intercept point of 1 dBm at 94 GHz. These results demonstrate the proposed down-conversion mixer architecture is very promising for 94 GHz image radar sensors.  相似文献   

20.
This work describes a fully integrated active mixer designed in 0.18 $mu{rm m}$ CMOS technology for 2.4 GHz Industrial, Scientific and Medical (ISM) band applications. The mixer uses a source driven local oscillator (LO) to integrate the RF-LO buffering with the active mixer, and weakly inverted input MOSFETs to improve the gain and noise performance. The double-balanced quadrature mixer has a measured conversion gain of 32 dB with a double sideband (DSB) noise figure (NF) of 8.5 dB at 30 MHz intermediate frequency (IF) while consuming only 0.56 mA of current from a 1.8 V supply.   相似文献   

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