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1.
设计了一款应用于卫星电视天线电路中低功耗、低相噪的宽带单片集成压控振荡器。该振荡器利用PMOS尾电流源和MIM电容阵列结构。在保证调谐范围的前提下,有效地降低了相位噪声。使得该压控振荡器实现了3.384~4.022 GHz频段的覆盖,在中心频率为3.7 GHz时,100 Hz和1 MHz频偏处的相位噪声分别为-90.4 dBc/Hz和-119.1 dBc/Hz,工作电压下为1.8 V,功耗仅为2.5 mW。  相似文献   

2.
采用0.18µm 1P6M CMOS工艺实现了一种应用于多频接收机的整数分频频率综合器。该频率综合器为接收机提供频率分别为2.57GHz, 2.52GHz, 2.4GHz 和 2.25GHz的本振信号。为了覆盖要求的频点,其宽带压控振荡器同时采用了可变电容阵列和可变电感阵列。经测试,压控振荡器的频率调谐范围为1.76GHz~2.59GHz。对于频率为2.57GHz, 2.52GHz, 2.4GHz 和 2.25GHz的载波,在1MHz频偏处,相位噪声分别为-122.13dBc/Hz、-122.19dBc/Hz、-121.8dBc/Hz和-121.05dBc/Hz。其带内相位噪声分别为-80.09dBc/Hz、-80.29dBc/Hz、-83.05dBc/Hz 和-86.38dBc/Hz。包括驱动电路在内的芯片功耗约为70mW。芯片面积为1.5mm×1mm。  相似文献   

3.
随着通信技术对射频收发机性能要求的提高,高性能压控振荡器已成为模拟集成电路设计、生产和实现的关键环节.针对压控振荡器设计过程中存在相位噪声这一核心问题,采用STMC 0.18μm CMOS工艺,提出了一种1.115GHz的电感电容压控振荡器电路,利用Cadence中的SpectreRF对电路进行仿真.仿真结果表明:在4~6V的电压调节范围内,压控振荡器的输出频率范围为1.114 69~1.115 38GHz,振荡频率为1.115GHz时,在偏离中心频率10kHz处、100kHz处以及1MHz处的相位噪声分别为-90.9dBc/Hz,-118.6dBc/Hz,-141.3dBc/Hz,以较窄的频率调节范围换取较好的相位噪声抑制,从而提高了压控振荡器的噪声性能.  相似文献   

4.
基于65nmCMOS工艺实现了60GHz推—推压控振荡器(VCO)设计。采用互补交叉耦合去尾电流源结构以降低相位噪声。压控振荡器输出包含两级缓冲放大器,第二级缓冲放大器偏置在截止区附近以增大二次谐波的输出功率。在1.2/0.8V电源电压下,压控振荡器核心和缓冲放大器分别消耗2.43mW和2.95mW。在偏离中心频率1MHz处相位噪声为-90.7dBc/Hz。输出功率为-2.92dBm。特别的,压控振荡器的调谐范围达到9.2GHz(15.3%),与调谐范围相关的性能指标FOMT为-182.7dBc/Hz。该压控振荡器可应用于57GHz~64GHz开放频段超高速短距离无线通信。  相似文献   

5.
采用集总元件变容二极管和超高频三极管设计900 MHz压控振荡器,根据ADS2006A软件仿真确定了压控振荡器的电路参数,并对相关指标如相位噪声、调谐带宽、稳定系数、输出功率和谐波电平等进行了仿真,通过调整电路参数,优化电路结构,实现了工作频率为1 GHz、调谐带宽为90 MHz的压控振荡器,其相位噪声在偏移中心频率10 kHz处为-105 dBc/Hz,在100 kHz处为-120 dBc/Hz,该设计大大降低了系统成本.  相似文献   

6.
李振荣  庄奕琪  李兵  靳刚  靳钊 《半导体学报》2010,31(7):075005-6
实现了一个基于标准0.18µm CMOS工艺的2.4GHz高线性低噪声交叉耦合LC压控振荡器。基于三段分布式偏置的开关容抗管电路和差分开关电容电路,提出了一种调谐灵敏度补偿结构,减小了压控振荡器的增益变化,获得了高线性度和良好的相位噪声性能。与传统结构的压控振荡器相比,本文提出的压控振荡器在整个频率调谐范围内具有更加恒定的增益。当载波频率为2.42GHz 时,在100kHz和1MHz的频偏处相位噪声分别为-100.96dBc/Hz和-122.63dBc/Hz。工作电压为1.8V时,电路功耗为2.5mW。该压控振荡器面积为500×810 µm2。  相似文献   

7.
提出一种新的低压正交压控振荡器(QVCO)结构,该结构由两个完全相同的低压压控振荡器经过背栅耦合方式实现.背栅耦合方式使压控振荡器实现正交的输出时钟并且降低了功耗和输出相位噪声.该设计中的QVCO电路采用中芯国际0.13μm 1P8M标准CMOS工艺,可以工作在0.35V的电源电压下,总的功耗为1.75mW,输出时钟频率为5.34GHz,偏离主频1MHz处的相位噪声为-110.5dBc/Hz,对应该相位噪声的FOM(FigureOf-Merit)为-182.62dBc/Hz,频率调谐范围为4.92~5.34GHz.该QVCO可以在更低的电源电压下实现低的相位噪声,且拥有较高的FOM值.  相似文献   

8.
2.5 GHz低相位噪声LC压控振荡器   总被引:3,自引:1,他引:3  
韩斌  吴建辉 《微电子学》2008,38(3):424-427
在0.35 μm SiGe BiCMOS工艺条件下,设计了一个全集成的低相位噪声LC压控振荡器(VCO).该VCO采用尾电阻结构替代传统的尾电流源结构实现电流控制,以减小尾电流源产生的噪声.该VCO的调谐范围为480 MHz,可以覆盖2.32~2.8 GHz.当振荡频率为2.5 GHz时,100 kHz和1 MHz频偏处的相位噪声分别为-104.3 dBc/Hz和-124.3 dBc/Hz.振荡器工作电压为5 V,尾电流为5 mA.工作在2.5 GHz时,其100 kHz频偏处的性能系数为-178 dBc/Hz.  相似文献   

9.
薛兵  高博  路小龙  龚敏  陈昶 《微电子学》2015,45(1):23-25, 31
基于65 nm CMOS标准工艺库,设计了一个工作频率在10 GHz的具有低相位噪声的CMOS电感电容型压控振荡器。该压控振荡器选用CMOS互补交叉耦合型电路结构,采用威尔逊型尾电流源负反馈技术来降低相位噪声。仿真结果表明,此压控振荡器工作频率覆盖范围为9.9~11.2 GHz,调谐范围为12.3%,中心频率为10.5 GHz,在频率偏移中心频率1 MHz下的相位噪声为-113.3 dBc/Hz,核心功耗为2.25 mW。  相似文献   

10.
基于802.11a/b/g WLAN接收机前端的射频集成压控振荡器设计   总被引:2,自引:2,他引:0  
为了满足WLAN接收机前端要求,设计了一种基于IEEE 802.11 a/b/g协议的RF零中频接收机第一本振3.846GHz压控振荡器.该振荡器采用TSMC0.25μm RFCMOS工艺实现,利用Hajimiri相位噪声模型对结构进行了优化,具有低相位噪声的特性.通过Cadence Spectre仿真,结果表明文中设计的3.846GHz压控振荡器功耗为10mW,1MHz和3MHz载频处的相位噪声分别为-120dBc/Hz和-131dBc/Hz,调谐电压Vtune在0~2.5V之间变化时,频率可调范围为600MHz,其性能完全符合IEEE 802.11 a/b/g协议的要求.  相似文献   

11.
This letter presents a novel Hartley low phase noise differential CMOS voltage-controlled oscillator (VCO). The low noise CMOS VCO has been implemented with the TSMC 0.18-mum 1P6M CMOS technology and adopts full PMOS to achieve a better phase noise performance. The VCO operates from 4.02 to 4.5GHz with 11.3% tuning range. The measured phase noise at 1-MHz offset is about -119dBc/Hz at 4.02GHz and 122dBc/Hz at 4.5GHz. The power consumption of the VCO core is 6.75mW  相似文献   

12.
A silicon bipolar voltage-controlled oscillator (VCO) for 17-GHz applications is presented. The VCO is composed of a core oscillating at 9GHz followed by a frequency doubler. It adopts a transformer-based topology to obtain both wide tuning range and low noise performance. The VCO exhibits a tuning range of 4.1GHz from 16.4 to 20.5GHz and a phase noise as low as -109dBc/Hz at a 1-MHz frequency offset from a carrier of 18.5GHz.  相似文献   

13.
A 5-GHz low phase noise differential colpitts CMOS VCO   总被引:1,自引:0,他引:1  
A low noise 5-GHz differential Colpitts CMOS voltage-controlled oscillator (VCO) is proposed in this letter. The Colpitts VCO core adopts only PMOS in a 0.18-/spl mu/m CMOS technology to achieve a better phase noise performance since PMOS has lower 1/f noise than NMOS. The VCO operates from 4.61 to 5 GHz with 8.3% tuning range. The measured phase noise at 1-MHz offset is -120.42 dBc/Hz at 5 GHz and -120.99 dBc/Hz at 4.61 GHz. The power consumption of the VCO core is only 3 mW. To the authors' knowledge, this differential Colpitts CMOS VCO achieves the best figure of merit (FOM) of 189.6 dB at 5-GHz band.  相似文献   

14.
Catli  B. Hella  M. 《Electronics letters》2006,42(21):1215-1216
A dual-band wide-tuning range LC CMOS voltage controlled oscillator (VCO) topology is proposed. Dual-band operation is realised by employing a double-tuned double-driven transformer as a resonator. The proposed approach eliminates MOS switches, which are typically used in multi-standard oscillators, and thus improves phase noise and tuning range characteristics. The concept is demonstrated through the design of an LC VCO in a standard 0.18 mum CMOS process. Two frequency bands are realised (2.4 and 6 GHz) with 740 MHz tuning range in the first band and 1.56 GHz tuning range in the second band. Operating from a 1.8 V supply, the VCO has a simulated phase noise of -119 dBc/Hz in the 2.4 GHz band and -110 dBc/Hz in the 6 GHz band at 600 KHz offset from the carrier  相似文献   

15.
将对称噪声滤波技术应用到4.8GHz LC全集成VCO设计中.该VCO具有很低的相位噪声以及716MHz的调节范围,在SMIC 0.25μm单层多晶、五层金属、n阱 RF CMOS工艺上实现,在2.5V电源电压下工作电流仅为6mA,与常规VCO比较,在相同条件下,噪声性能改善了6dBc/Hz.芯片测试结果表明,在偏离4.8GHz载波1MHz的地方相位噪声为-123.66dBc/Hz,该设计在锁相环及其他消费类电子产品中有广泛应用.  相似文献   

16.
A low phase noise Ka-band CMOS voltage-controlled oscillator is proposed in this paper. A new complementary Colpitts structure was adopted in a 0.18-μm CMOS process to achieve differential-ended outputs, low phase-noise performance, and low-power consumption. The designed VCO oscillates from 29.8 to 30 GHz with 200 MHz tuning range. The measured phase noise at 1-MHz offset is −109 dBc/Hz at 30 GHz and −105.5 dBc/Hz at 29.8 GHz. The power consumption of VCO is only 27 mW. In addition, compared with the published papers, the proposed CMOS VCO achieves the best figure of merit (FOM) of −185 dB at 29.95-GHz band.  相似文献   

17.
This letter presents a fully integrated low-power low-voltage multiband switched-resonator differential cross-coupled voltage controlled oscillator (VCO) implemented in 0.18 SiGe-BiCMOS technology. The VCO operates with a supply voltage as low as 0.29 V, owing to the low knee-voltage provided by the technology, and consumes a total power of 580 muW. Utilizing a switched-resonator, the VCO covers a wide switched frequency range of 1.83-2.97 GHz and 4.36-6.17 GHz with measured phase noise of around 112.2 dBc/Hz with 0.29 V supply and 119.7 dBc/Hz with 1 V supply at 1 MHz offset. Since high-frequency bands experience higher phase noise than the low frequency bands, high- short microstrip line inductors have been used for the high-frequency bands. To the best of the authors' knowledge, the reported VCO achieves the widest switched frequency tuning range with lowest core supply voltage.  相似文献   

18.
A low power VCO with a wide tuning range and low phase noise has been designed and realized in a standard 90 nm CMOS technology. A newly proposed current-reuse cross-connected pair is utilized as a negative conductance generator to compensate the energy loss of the resonator. The supply current is reduced by half compared to that of the conventional LC-VCO. An improved inversion-mode MOSFET(IMOS) varactor is introduced to extend the capacitance tuning range from 32.8% to 66%. A detailed analysis of the proposed varactor is provided. The VCO achieves a tuning range of 27–32.5 GHz, exhibiting a frequency tuning range(FTR) of 18.4%and a phase noise of –101.38 d Bc/Hz at 1 MHz offset from a 30 GHz carrier, and shows an excellent FOM of –185d Bc/Hz. With the voltage supply of 1.5 V, the core circuit of VCO draws only 2.1 m A DC current.  相似文献   

19.
Design of wide-band CMOS VCO for multiband wireless LAN applications   总被引:4,自引:0,他引:4  
In this paper, a general design methodology of low-voltage wide-band voltage-controlled oscillator (VCO) suitable for wireless LAN (WLAN) application is described. The applications of high-quality passives for the resonator are introduced: 1) a single-loop horseshoe inductor with Q > 20 between 2 and 5 GHz for good phase noise performance; and 2) accumulation MOS (AMOS) varactors with C/sub max//C/sub min/ ratio of 6 to provide wide-band tuning capability at low-voltage supply. The adverse effect of AMOS varactors due to high sensitivity is examined. Amendment using bandswitching topology is suggested, and a phase noise improvement of 7 dB is measured to prove the concept. The measured VCO operates on a 1-V supply with a wide tuning range of 58.7% between 3.0 and 5.6 GHz when tuned between /spl plusmn/0.7 V. The phase noise is -120 dBc/Hz at 3.0 GHz, and -114.5 dBc/Hz at 5.6 GHz, with the nominal power dissipation between 2 and 3 mW across the whole tuning range. The best phase noise at 1-MHz offset is -124 dBc/Hz at the frequency of 3 GHz, a supply voltage of 1.4 V, and power dissipation of 8.4 mW. When the supply is reduced to 0.83 V, the VCO dissipates less than 1 mW at 5.6 GHz. Using this design methodology, the feasibility of generating two local oscillator frequencies (2.4-GHz ISM and 5-GHz U-NII) for WLAN transceiver using a single VCO with only one monolithic inductor is demonstrated. The VCO is fabricated in a 0.13-/spl mu/m partially depleted silicon-on-insulator CMOS process.  相似文献   

20.
A balanced Colpitts voltage-controlled oscillator (VCO) is designed and fabricated in a commercially available 0.25-/spl mu/m SiGe BiCMOS process. It has the characteristics of the push-push VCO, i.e., the VCO has simultaneously a differential output at a fundamental frequency of 21.5 GHz and a single-ended output at the second harmonic frequency of 43 GHz. A differential tuning technique is applied to reduce the phase noise. The measured phase noise at 1-MHz offset is -113 dBc/Hz at 21.5 GHz and -107 dBc/Hz at 43 GHz. The corresponding output power is about -6 and -17 dBm, respectively, with a 5% tuning range and a 130-mW dc power consumption.  相似文献   

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