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1.
本文设计了一种拓扑结构为开环,基于栅压自举开关技术的S/H电路。在Cadence Spectre环境下进行仿真,在1.6GSPS的采样速率下,当输入信号为775MHz,1Vpp的正弦波时,该采样/保持电路的SFDR达到55.63dB,THD为-53.93dB。  相似文献   

2.
本文提出了一种低压工作的高速1Obit Pipelined ADC。采用自举时钟采样和Cascode频率补偿等方法,该ADC可以在低电压下工作,并达到较高的带宽。该ADC在HJTC 0.18-μm CMOS数模混合工艺下进行了设计仿真和流片测试,结果表明:当供电电压为1.8V,采样频率为62.5MSample/s时,所设计的ADC对于1MHz的输入信号转换有效位数可以达到52.2dB SFDR、44.8dB SNR和44.3dB SNDR。  相似文献   

3.
本文提出了一种低压工作的高速1Obit Pipelined ADC。采用自举时钟采样和Cascode频率补偿等方法,该ADC可以在低电压下工作,并达到较高的带宽。该ADC在HJTC 0.18-μm CMOS数模混合工艺下进行了设计仿真和流片测试,结果表明:当供电电压为1.8V,采样频率为62.5MSample/s时,所设计的ADC对于1MHz的输入信号转换有效位数可以达到52.2dB SFDR、44.8dB SNR和44.3dB SNDR。  相似文献   

4.
给出了一种基于开关电容(SC)电路的10位80 MHz采样频率低功耗采样保持电路。它是为一个10位80 MS/s流水线结构A/D转换器的前端采样模块设计的。在TSMC 0.25μmCMOS工艺,2.5 V电源电压下,该电路的采样频率为80 MHz;在奈奎斯特频率采样时,无杂散动态范围(SFDR)为75.4 dB,SNDR为71.8 dB,ENOB为11.6,输入信号范围可达160 MHz(两倍采样频率),此时SFDR仍大于70 dB。该电路功耗为16.8 mW。  相似文献   

5.
采用TSMC0.18μm 1P6MCMOS工艺设计了一种高性能低功耗采样保持电路。该电路采用全差分折叠增益自举运算放大器和栅压自举开关实现。在3.3V电源电压下,该电路静态功耗仅为16.6mw。在100MHz采样频率时,输入信号在奈奎斯特频率下该电路能达到91dB的SFDR,其有效精度可以达到13位。  相似文献   

6.
一种用于高速高精度A/D转换器的自举采样电路   总被引:2,自引:0,他引:2  
介绍了一种新型的CMOS自举采样电路。该电路适用于12位100 MHz采样频率的A/D转换器。采用P型栅压自举开关补偿技术,可以有效地克服采样管导通电阻变化引入的非线性失真,提高采样精度。仿真结果表明,采样时钟频率为100 MHz时,输入10 MHz信号,可得信噪失真比(SNDR)为102 dB,无杂散动态范围(SFDR)为103 dB。信号频率达到采样频率时,仍有超过85 dB的SNDR和87 dB的SFDR,满足高速高精度流水线A/D转换器对采样开关线性度和输入带宽的要求。电路采用SMIC 0.18μm CMOS数模混合工艺库实现,电源电压为1.8 V。  相似文献   

7.
采用TSMC 0.18μm 1P6M工艺设计了一个12位50 MS/s流水线A/D转换器(ADC)。为了减小失真和降低功耗,该ADC利用余量增益放大电路(MDAC)内建的采样保持功能,去掉了传统的前端采样保持电路;采用时间常数匹配技术,保证输入高频信号时,ADC依然能有较好的线性度;利用数字校正电路降低了ADC对比较器失调的敏感性。使用Cadence Spectre对电路进行仿真。结果表明,输入耐奎斯特频率的信号时,电路SNDR达到72.19 dB,SFDR达到88.23 dB。当输入频率为50 MHz的信号时,SFDR依然有80.51 dB。使用1.8 V电源电压供电,在50 MHz采样率下,ADC功耗为128 mW。  相似文献   

8.
为满足接收机系统的应用需求,采用标准0.18μm CMOS工艺设计实现了一款16 bit高精度高速pipelined ADC,电源电压1.8 V,采样频率120 MHz。为了降低SHA-less结构带来的非线性问题,引入高线性输入缓冲器。测试结果表明,在不明显增加芯片功耗的同时能够实现较高的性能,有效位数达到13 bit。输入信号57 MHz,幅度-1 dBFS时,SNR、SNDR、SFDR分别达到78 dBFS、78 dBFS、88 dB;输入信号313 MHz、幅度-1 dBFS时,SNR、SNDR、SFDR分别达到70 dBFS、70 dBFS、78 dB。  相似文献   

9.
提出了一种两倍增益高线性、高速、高精度采样/保持电路。该采样/保持电路通过对输入信号实现两倍放大,改善了高频非线性失真;一种新型的消除衬底偏置效应的采样开关,有效地提高了采样的线性度;高增益和宽带宽的折叠共源共栅运算放大器保证了采样/保持电路的精度和速度。整个电路以0.35μm AMS Si CMOS模型库验证。模拟结果显示,在输入信号为49.21875MHz正弦波,采样频率为100 MHz时,增益误差为70.9μV,SFDR可达到84.5 dB。  相似文献   

10.
一种基于SiGe BiCMOS的高速采样/保持电路   总被引:1,自引:1,他引:0  
设计了一种基于BiCMOS工艺的高速采样/保持电路,该工艺提供了180 nm的CMOS和75 GHz fT的SiGe HBT.差分交换式射极跟随器和低下垂输出缓冲器的结合,使电路具有更好的性能.在Cadence Spectre环境下进行仿真,当输入信号为968.75 MHz、Vpp为1 V的正弦波,采样速率为2 GSPS时,该采样/保持电路的SFDR达到62.2 dB,THD达到-59.5 dB,分辨率达到9位;在3.3 V电源电压下,电路功耗为20 mW.  相似文献   

11.
DUV lithography, using the 248 nm wavelength, is a viable manufacturing option for devices with features at 130 nm and less. Given the low kl value of the lithography, integrated process development is a necessary method for achieving acceptable process latitude. The application of assist features for rule based OPC requires the simultaneous optimization of the mask, illumination optics and the resist.Described in this paper are the details involved in optimizing each of these aspects for line and space imaging.A reference pitch is first chosen to determine how the optics will be set. The ideal sigma setting is determined by a simple geometrically derived expression. The inner and outer machine settings are determined, in turn,with the simulation of a figure of merit. The maximum value of the response surface of this FOM occurs at the optimal sigma settings. Experimental confirmation of this is shown in the paper.Assist features are used to modify the aerial image of the more isolated images on the mask. The effect that the diffraction of the scattering bars (SBs) has on the image intensity distribution is explained. Rules for determining the size and placement of SBs are also given.Resist is optimized for use with off-axis illumination and assist features. A general explanation of the material' s effect is discussed along with the affect on the through-pitch bias. The paper culminates with the showing of the lithographic results from the fully optimized system.  相似文献   

12.
From its emergence in the late 1980s as a lower cost alternative to early EEPROM technologies, flash memory has evolved to higher densities and speedsand rapidly growing acceptance in mobile applications.In the process, flash memory devices have placed increased test requirements on manufacturers. Today, as flash device test grows in importance in China, manufacturers face growing pressure for reduced cost-oftest, increased throughput and greater return on investment for test equipment. At the same time, the move to integrated flash packages for contactless smart card applications adds a significant further challenge to manufacturers seeking rapid, low-cost test.  相似文献   

13.
The relation between the power of the Brillouin signal and the strain is one of the bases of the distributed fiber sensors of temperature and strain. The coefficient of the Bfillouin gain can be changed by the temperature and the strain that will affect the power of the Brillouin scattering. The relation between the change of the Brillouin gain coefficient and the strain is thought to be linear by many researchers. However, it is not always linear based on the theoretical analysis and numerical simulation. Therefore, errors will be caused if the relation between the change of the Brillouin gain coefficient and the strain is regarded as to be linear approximately for measuring the temperature and the strain. For this reason, the influence of the parameters on the Brillouin gain coefficient is proposed through theoretical analysis and numerical simulation.  相似文献   

14.
The parallel thinning algorithm with two subiterations is improved in this paper. By analyzing the notions of connected components and passes, a conclusion is drawn that the number of passes and the number of eight-connected components are equal. Then the expression of the number of eight-connected components is obtained which replaces the old one in the algorithm. And a reserving condition is proposed by experiments, which alleviates the excess deletion where a diagonal line and a beeline intersect. The experimental results demonstrate that the thinned curve is almost located in the middle of the original curve connectivelv with single pixel width and the processing speed is high.  相似文献   

15.
Today, micro-system technology and the development of new MEMS (Micro-Electro-Mechanical Systems) are emerging rapidly. In order for this development to become a success in the long run, measurement systems have to ensure product quality. Most often, MEMS have to be tested by means of functionality or destructive tests. One reason for this is that there are no suitable systems or sensing probes available which can be used for the measurement of quasi inaccessible features like small holes or cavities. We present a measurement system that could be used for these kinds of measurements. The system combines a fiber optical, miniaturized sensing probe with low-coherence interferometry, so that absolute distance measurements with nanometer accuracy are possible.  相似文献   

16.
Waveguide multilayer optical card (WMOC) is a novel storage device of three-dimensional optical information. An advanced readout system fitting for the WMOC is introduced in this paper. The hardware mainly consists of the light source for reading, WMOC, motorized stages addressing unit, microscope imaging unit, CCD detecting unit and PC controlling & processing unit. The movement of the precision motorized stage is controlled by the computer through Visual Basic (VB) language in software. A control panel is also designed to get the layer address and the page address through which the position of the motorized stages can be changed. The WMOC readout system is easy to manage and the readout result is directly displayed on computer monitor.  相似文献   

17.
This paper presents a new method to increase the waveguide coupling efficiency in hybrid silicon lasers. We find that the propagation constant of the InGaAsP emitting layer can be equal to that of the Si resonant layer through improving the design size of the InP waveguide. The coupling power achieves 42% of the total power in the hybrid lasers when the thickness of the bonding layer is 100 nm. Our result is very close to 50% of the total power reported by Intel when the thickness of the thin bonding layer is less than 5 nm. Therefore, our invariable coupling power technique is simpler than Intel's.  相似文献   

18.
The collinearly phase-matching condition of terahertz-wave generation via difference frequency mixed in GaAs and InP is theoretically studied. In collinear phase-matching, the optimum phase-matching wave hands of these two crystals are calculated. The optimum phase-matching wave bands in GaAs and lnP are 0.95-1.38μm and 0.7-0.96μm respectively. The influence of the wavelength choice of the pump wave on the coherent length in THz-wave tuning is also discussed. The influence of the temperature alteration on the phase-matching and the temperature tuning properties in GaAs crystal are calculated and analyzed. It can serve for the following experiments as a theoretical evidence and a reference as well.  相似文献   

19.
Composition dependence of bulk and surface phonon-polaritons in ternary mixed crystals are studied in the framework of the modified random-element-isodisplacement model and the Bom-Huang approximation. The numerical results for Several Ⅱ - Ⅵ and Ⅲ- Ⅴ compound systems are performed, and the polariton frequencies as functions of the compositions for ternary mixed crystals AlxGa1-xAs, GaPxAS1-x, ZnSxSe1-x, GaAsxSb1-x, GaxIn1-xP, and ZnxCd1-xS as examples are given and discussed. The results show that the dependence of the energies of two branches of bulk phonon-polaritons which have phonon-like characteristics, and surface phonon-polaritons on the compositions of ternary mixed crystals are nonlinear and different from those of the corresponding binary systems.  相似文献   

20.
An insert layer structure organic electroluminescent device(OLED) based on a new luminescent material (Zn(salen)) is fabricated. The configuration of the device is ITO/CuPc/NPD/Zn(salen)/Liq/LiF/A1/CuPc/NPD/Zn(salen)/Liq/LiF/A1. Effective insert electrode layers comprising LiF(1nm)/Al(5 nm) are used as a single semitransparent mirror, and bilayer cathode LiF(1 nm)/A1(100 nm) is used as a reflecting mirror. The two mirrors form a Fabry-Perot microcavity and two emissive units. The maximum brightness and luminous efficiency reach 674 cd/m^2 and 2.652 cd/A, respectively, which are 2.1 and 3.7 times higher than the conventional device, respectively. The superior brightness and luminous efficiency over conventional single-unit devices are attributed to microcavity effect.  相似文献   

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