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1.
A fully integrated low power RF transmitter for a WiMedia 3.1-4.8 GHz multiband orthogonal frequency division multiplexing ultra-wideband system is presented. With a separate transconductance stage, the quadrature up-conversion modulator achieves high linearity with low supply voltage. The co-design of different resonant frequencies of the modulator and the differential to single (D2S) converter ensures in-band gain flatness. By means of a series inductor peaking technique, the D2S converter obtains 9 dB more gain without extra power consumption. A divided-by-2 divider is used for carrier signal generation. The measurement results show an output power between -10.7 and -3.1 dBm with 7.6 dB control range, an OIP3 up to 12 dBm, a sideband rejection of 35 dBc and a carrier rejection of 30 dBc. The ESD protected chip is fabricated in the Jazz 0.18/zm RF CMOS process with an area of 1.74 mm~2 and only consumes 32 mA current (at 1.8 V) including the test associated parts.  相似文献   

2.
正A 5-GHz CMOS programmable frequency divider whose modulus can be varied from 2403 to 2480 for 2.4-GHz ZigBee applications is presented.The divider based on a dual-modulus prescaler(DMP) and pulse-swallow counter is designed to reduce power consumption and chip area.Implemented in the 0.18-μm mixed-signal CMOS process,the divider operates over a wide range of 1-7.4 GHz with an input signal of 7.5 dBm;the programmable divider output phase noise is -125.3 dBc/Hz at an offset of 100 kHz.The core circuit without test buffer consumes 4.3 mA current from a 1.8 V power supply and occupies a chip area of approximately 0.015 mm~2.The experimental results indicate that the programmable divider works well for its application in frequency synthesizers.  相似文献   

3.
正A monolithic RF transceiver for an MB-OFDM UWB system in 3.1-4.8 GHz is presented.The transceiver adopts direct-conversion architecture and integrates all building blocks including a gain controllable wideband LNA,a I/Q merged quadrature mixer,a fifth-order Gm-C bi-quad Chebyshev LPF/VGA,a fast-settling frequency synthesizer with a poly-phase filter,a linear broadband up-conversion quadrature modulator,an active D2S converter and a variablegain power amplifier.The ESD protected transceiver is fabricated in Jazz Semiconductor's 0.18-μm RF CMOS with an area of 6.1 mm~2 and draws a total current of 221 mAfrom 1.8-V supply.The receiver achieves a maximum voltage gain of 68 dB with a control range of 42 dB in 6 dB/step,noise figures of 5.5-8.8 dB for three sub-bands,and an inband /out-band IIP_3 better than-4 dBm/+9 dBm.The transmitter achieves an output power ranging from-10.7 to-3 dBm with gain control,an output P_(1dB) better than-7.7 dBm,a sideband rejection about 32.4 dBc,and LO suppression of 31.1 dBc.The hopping time among sub-bands is less than 2.05 ns.  相似文献   

4.
郑仁亮  任俊彦  李巍  李宁 《半导体学报》2009,30(12):125003-8
本文介绍一种应用于3.1-4.8GHz 多频带正交频分复用超宽带系统的低功耗射频CMOS发射机芯片的设计和实现。发射机系统主要由电压电流跨导级、正交上变频调制器、有源双转单转换器、输出增益可控功率放大器以及产生正交差分LO信号的除2除法器等模块组成。使用上调制器,双转单及输出放大器分段谐振技术解决3.1-4.8GHz宽带增益平坦度问题;使用源级电阻负反馈镜像跨导解决系统低电压高线性度问题;使用无源电感谐振双转单电路及增益可控放大器进行低功耗设计。测试结果表明,芯片能够提供-10.7到-3.1dBm的功率输出,并且在子带增益平坦度低于3dB;输出三阶交调量最高可达12dBm;不低于30dBc的载波抑制和35dBc以上的边带抑制。芯片采用Jazz 0.18μm射频CMOS工艺流片,包括ESD防护PAD在内芯片总面积为1.74mm2。 在1.8V的电源电压下,芯片总电流为32mA。  相似文献   

5.
王春华  万求真 《半导体学报》2011,32(8):085002-6
本文基于特许0.18μm CMOS工艺,提出了一种新型的低复杂3.1~10.6GHz超宽带LNA电路,它由两级简单的放大器通过级间电感连接构成。第一级放大器使用电阻电流复用结构和双电感退化技术来达到宽带输入匹配和低噪声性能,第二级放大器使用带电感峰值技术的共源级放大器来同时达到高平坦增益和好的宽带性能。测试结果表明,在3.1~10.6GHz频段内,提出的超宽带LNA的最大功率增益为15.6dB,S12为-45dB,输入输出隔离度小于-10dB,噪声系数NF为2.8~4.7dB,在6GHz时的输入三阶交调点IIP3为-7.1dBm。芯片在1.5V电源电压下,消耗的功率为14.1mW,芯片总面积为0.8mm0.9mm。  相似文献   

6.
A monolithic RF transceiver for an MB-OFDM UWB system in 3.1-4.8 GHz is presented.The transceiver adopts direct-conversion architecture and integrates all building blocks including a gain controllable wideband LNA,a I/Q merged quadrature mixer,a fifth-order Gm-C bi-quad Chebyshev LPF/VGA,a fast-settling frequency synthesizer with a poly-phase filter,a linear broadband up-conversion quadrature modulator,an active D2S converter and a variablegain power amplifier.The ESD protected transceiver is fabricated in Jazz Semiconductor's 0.18-μm RF CMOS with an area of 6.1 mm2 and draws a total current of 221 mA from 1.8-V supply.The receiver achieves a maximum voltage gain of 68 dB with a control range of 42 dB in 6 dB/Step,noise figures of 5.5-8.8 dB for three sub-bands,and an inband/out-band IIP3 better than-4 dBm/+9 dBm.The transmitter achieves an output power ranging from-10.7 to-3dBm with gain control,an output P1dB better than-7.7 dBm,a sideband rejection about 32.4 dBc,and LO suppression of 31.1 dBc.The hopping time among sub-bands is less than 2.05 ns.  相似文献   

7.
This paper presents a transmitter IC with BPSK modulation for an ultra-wide band system.It is based on up-conversion with a high linearity passive mixer.Unlike the traditional BPSK modulation scheme,the local oscillator (LO) is modulated by the baseband data instead of the pulse.The chip is designed and fabricated by standard 0.18μm CMOS technology.The transmitter achieves a high data rate up to 400 Mbps.The amplitude of the pulse can be adjusted by the amplitude of the LO and the bias current of the dri...  相似文献   

8.
A new,low complexity,ultra-wideband 3.1-10.6 GHz low noise amplifier(LNA),designed in a chartered 0.18μm RFCMOS technology,is presented.The ultra-wideband LNA consists of only two simple amplifiers with an inter-stage inductor connected.The first stage utilizing a resistive current reuse and dual inductive degeneration technique is used to attain a wideband input matching and low noise figure.A common source amplifier with an inductive peaking technique as the second stage achieves high flat gain and wide -3 dB bandwidth of the overall amplifier simultaneously.The implemented ultra-wideband LNA presents a maximum power gain of 15.6 dB,and a high reverse isolation of—45 dB,and good input/output return losses are better than -10 dB in the frequency range of 3.1-10.6 GHz.An excellent noise figure(NF) of 2.8-4.7 dB was obtained in the required band with a power dissipation of 14.1 mW under a supply voltage of 1.5 V.An input-referred third-order intercept point(IIP3) is -7.1 dBm at 6 GHz.The chip area,including testing pads,is only 0.8×0.9 mm2.  相似文献   

9.
A 3-5 GHz broadband flat gain differential low noise amplifier(LNA) is designed for the impulse radio ultra-wideband(IR-UWB) system.The gain-flatten technique is adopted in this UWB LNA.Serial and shunt peaking techniques are used to achieve broadband input matching and large gain-bandwidth product(GBW).Feedback networks are introduced to further extend the bandwidth and diminish the gain fluctuations.The prototype is fabricated in the SMIC 0.18μm RF CMOS process.Measurement results show a 3-dB gain band...  相似文献   

10.
正A radio frequency(RF) receiver frontend for single-carrier ultra-wideband(SC-UWB) is presented. The front end employs direct-conversion architecture,and consists of a differential low noise amplifier(LNA),a quadrature mixer,and two intermediate frequency(IF) amplifiers.The proposed LNA employs source inductively degenerated topology.First,the expression of input impedance matching bandwidth in terms of gate-source capacitance, resonant frequency and target S_(11) is given.Then,a noise figure optimization strategy under gain and power constraints is proposed,with consideration of the integrated gate inductor,the bond-wire inductance,and its variation.The LNA utilizes two stages with different resonant frequencies to acquire flat gain over the 7.1-8.1 GHz frequency band,and has two gain modes to obtain a higher receiver dynamic range.The mixer uses a double balanced Gilbert structure.The front end is fabricated in a TSMC 0.18-/im RF CMOS process and occupies an area of 1.43 mm~2.In high and low gain modes,the measured maximum conversion gain are 42 dB and 22 dB,input 1 dB compression points are -40 dBm and -20 dBm,and S_(11) is better than -18 dB and -14.5 dB.The 3 dB IF bandwidth is more than 500 MHz.The double sideband noise figure is 4.7 dB in high gain mode.The total power consumption is 65 mW from a 1.8 V supply.  相似文献   

11.
Based on the devised system-level design methodology,a 2.5-Gb/s monolithic bang-bang phase-locked clock and data recovery(CDR) circuit has been designed and fabricated in SMIC's 0.18-μm CMOS technology.The Pottb(a|¨)cker phase frequency detector and a differential 4-stage inductorless ring VCO are adopted,where an additional current source is added to the VCO cell to improve the linearity of the VCO characteristic.The CDR has an active area of 340×440μm~2,and consumes a power of only about 60 mW from a 1...  相似文献   

12.
提出一种新的超宽带频率合成器结构.该频率合成器可以产生MB-OFDM UWB系统定义的所有14个UWB子带的中心频率.分析了MB-OFDM UWB频率合成器中的杂散频率,提出一种新的Q值增强滤波网络,以抑制其输出信号中的杂散.ADS仿真表明,在TSMC 0.18 μm RF CMOS工艺下,该频率合成器的杂散频率抑制能力超过30 dBc;在1.8 V电源电压下,电路的电流消耗为65 mA.  相似文献   

13.
A fast-hopping 3-band (mode 1) multi-band orthogonal frequency division multiplexing ultra-wideband frequency synthesizer is presented. This synthesizer uses two phase-locked loops for generating steady frequencies and one quadrature single-sideband mixer for frequency shifting and quadrature frequency generation. The generated carriers can hop among 3432 MHz, 3960 MHz, and 4488 MHz. Implemented in a 0.13 μm CMOS process, this fully integrated synthesizer consumes 27 mA current from a 1.2 V supply. Measurement shows that the out-of-band spurious tones are below -50 dBc, while the in-band spurious tones are below -34 dBc. The measured hopping time is below 2 ns. The core die area is 1.0 ×1.8 mm^2.  相似文献   

14.
A 4224 MHz phase-locked loop(PLL) is implemented in 0.13μm CMOS technology.A dynamic phase frequency detector is employed to shorten the delay reset time so as to minimize the noise introduced by the charge pump.Dynamic mismatch of charge pump is considered.By balancing the switch signals of the charge pump,a good dynamic matching characteristic is achieved.A high-speed digital frequency divider with balanced input load is also designed to improve in-band phase noise performance.The 4224 MHz PLL achieves...  相似文献   

15.
16.
本文介绍一种应用于3.1-4.8GHz 多频带正交频分复用超宽带系统的全集成全差分CMOS接收机芯片。在接收机射频前端中应用了一种增益可变的低噪声放大器和合并结构的正交混频器。在I/Q中频通路中则集成了5阶Gm-C结构的有源低通滤波器以及可变增益放大器。芯片通过Jazz 0.18μm RF CMOS工艺流片,含ESD保护电路。该接收机最大电压增益为65dB,增益可调范围为45dB,步长6dB;接收机在3个频段的平均噪声系数为6.4-8.8dB,带内输入三阶交调量(IIP3)为-5.1dBm。芯片面积为2.3平方毫米,在1.8V电压下,包括测试缓冲电路和数字模块在内的总电流为110mA。  相似文献   

17.
A low power 3-5 GHz CMOS UWB receiver front-end   总被引:1,自引:0,他引:1  
A novel low power RF receiver front-end for 3-5 GHz UWB is presented. Designed in the 0.13μm CMOS process, the direct conversion receiver features a wideband balun-coupled noise cancelling transconductance input stage, followed by quadrature passive mixers and transimpedance loading amplifiers. Measurement results show that the receiver achieves an input return loss below -8.5 dB across the 3.1-4.7 GHz frequency range, maximum voltage conversion gain of 27 dB, minimum noise figure of 4 dB, IIP3 of -11.5 dBm, and IIP2 of 33 dBm. Working under 1.2 V supply voltage, the receiver consumes total current of 18 mA including 10 mA by on-chip quadrature LO signal generation and buffer circuits. The chip area with pads is 1.1 × 1.5 mm^2.  相似文献   

18.
This paper presents a millimeter wave (mm-wave) oscillator that generates signal at 36.56 GHz. The ram-wave oscillator is realized in a UMC 0.18 μm CMOS process. The linear superposition (LS) technique breaks through the limit of cut-off frequency (JET), and realizes a much higher oscillation than Jr. Measurement results show that the LS oscillator produces a calibrated 37.17 dBm output power when biased at 1.8 V; the output power of fundamental signal is -10.85 dBm after calibration. The measured phase noise at 1 MHz frequency offset is -112.54 dBc/Hz at the frequency of 9.14 GHz. This circuit can be properly applied to mm-wave communication systems with advantages of low cost and high integration density.  相似文献   

19.
本论文设计了一个超宽带频率综合器。该频率综合器通过采用两个锁相环和一个单边带混频器产生了6至9GHz内的五个频带中心频率,频带之间的跳频时间小于3纳秒。文中提出了一个高线性度的二选一多路选择器,一个宽带的单边带混频器和一个正交压控振荡器。此外,版图也做了一些特殊考虑。该频率综合器采用0.18微米CMOS工艺实现,在1.5V至1.8V电源电压下消耗40mA电流,测试结果显示10MHz频偏处的相位噪声为-128dBc/Hz,在7.656GHz频带处的边带抑制为-22dBc。  相似文献   

20.
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