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IEEE MTT-V053-I12 (2005-12)

Book information

Publisher
IEEE
Year
2005
Language
english
Format
PDF
Filesize
14 MB (14776458 bytes)
Series
Transactions On Microwave Theory And Techniques
Volume
53
Edition
12
Pages
228\228
Time added
2021-06-01 15:19:05

Description

010 - 01550014......Page 1 020 - 01550015......Page 3 II. M ULTILAYER CPS W ITH F INITE D IELECTRIC D IMENSIONS......Page 4 Fig.€3. Cross-sectional view in $\tau$ -plane after the transfor......Page 5 IV. N UMERICAL R ESULTS......Page 6 Fig.€12. Effective dielectric constant of ME CPS and MC CPS as a......Page 7 V. C ONCLUSION......Page 8 V. Fouad Hanna and D. Thebault, Analysis of asymmetrical coplana......Page 9 I. I NTRODUCTION......Page 10 Fig.€2. Plots of tau ( $\tau$ ) with various gamma ( $\gamma$ )......Page 11 Fig.€5. Schematic of PCM/phase-conjugation polarization modulato......Page 12 Fig.€7. Schematic of PSD.......Page 13 Fig.€10. Plotted minimum jammer attenuation level needed to prev......Page 14 Fig.€14. Demonstration of active polarization modulation by comp......Page 15 A. Full-Duplex Measurement......Page 16 B. Radiation Patterns......Page 17 Fig.€25. Monostatic RCS.......Page 18 D. M. Pozar, Microwave Engineering . New York: Wiley, 1998.......Page 19 II. A NTENNAS, A RRAYS, AND P HASE S HIFTERS......Page 20 TABLE II D IMENSIONS OF THE D ESIGNED P HASE S HIFTER......Page 21 III. 2 20-GHz MMIC-B ASED A MPLIFIERS......Page 22 Fig.€9. System block diagram illustrating the test setup for the......Page 23 Fig.€12. Measured beam-steering patterns at: (a) 8, (b) 16, and......Page 24 A. Hirata, T. Morimoto, and Z. Kawasaki, DOA estimation of ultra......Page 25 II. T HEORETICAL A NALYSIS......Page 27 A. Autocorrelation Function......Page 28 A. Frequency-Domain Measurements......Page 29 Fig. 6. PDFs of the noise at the output of amplifier #1. (a) Lin......Page 30 Fig. 10. Output noise spectral density $S _{yn} (f)$ of amplifie......Page 31 B. Convolution Products of the Noise......Page 32 R. Price, A useful theorem for nonlinear devices having Gaussian......Page 33 A. Geens and Y. Rolain, Noise figure measurements on nonlinear d......Page 34 I. I NTRODUCTION......Page 35 III. E XPERIMENTAL R ESULTS......Page 36 IV. T RANSISTOR M ODELING......Page 37 B. Instability Contour......Page 38 C. Analysis of the Self-Oscillating Mixer Regime......Page 39 D. Hysteresis Prediction......Page 40 Fig.€11. Expanded view of the experimental output power spectrum......Page 41 Fig.€13. Amplifier schematic with stabilization network. The sta......Page 42 Fig.€14. Stabilization action of the parallel resistance analyze......Page 43 D. Teeter, A. Platzker, and R. Bourque, A compact network for el......Page 44 E. de Cos, A. Suárez, and S. Sancho, Envelope transient analysis......Page 45 I. I NTRODUCTION......Page 46 B. Example......Page 47 C. Algorithm......Page 48 Fig.€4. Relationship between input load and: (a) throughput and......Page 49 Fig.€6. Relationship between input load and: (a) throughput and......Page 50 2) Throughput and Fairness Index Performances Versus Number of T......Page 51 3) Computational Complexity Comparison: Finally, we examine the......Page 52 M. Ishida et al., Development of gigabit millimeter-wave broad-b......Page 53 A. Simplified Scheme of the Instrument......Page 54 B. Analytic Description......Page 55 Fig.€3. Difference between individual phase measurements and the......Page 56 10 hints for making better network analyzer measurements, Agilen......Page 57 Fig.€1. Conventional wake-up system with a microprocessor.......Page 58 II. S YSTEM O VERVIEW......Page 59 Fig.€5. (a) Prototype. (b) Conversion-loss graph of up/down phas......Page 60 V. M EASUREMENT R ESULTS......Page 61 B. Adaptive Power-Management Performance......Page 62 Fig.€13. Prototype of the proposed system.......Page 63 C. Retrodirective Array Performance......Page 64 J. B. Hacker, J. Bergman, G. Nagy, G. Sullivan, C. Kadow, H.-K.......Page 65 N. Shinohara and H. Matsumoto, Dependence of DC output of a rect......Page 66 I. I NTRODUCTION......Page 67 Fig.€2. Frequency synthesizer in an MB-UWB transceiver.......Page 68 Fig.€3. Frequency tree diagram.......Page 69 III. F REQUENCY P LANNING......Page 70 IV. S YNTHESIZER A RCHITECTURE FOR C URRENT B AND P LAN......Page 71 V. A LTERNATE B AND P LAN AND S YNTHESIZER A RCHITECTURE......Page 72 Fig.€9. Sideband rejection with amplitude and phase error.......Page 73 VI. M ACROMODEL S IMULATION R ESULTS AND P ERFORMANCE A NALYSIS......Page 74 Fig.€12. Macromodel for the evaluation of the impact of the synt......Page 75 TABLE VII D IFFERENT E VALUATION S CENARIOS OF BER D EGRADATION......Page 76 VII. C ONCLUSIONS......Page 77 T. H. Lee, The Design of CMOS Radio-Frequency Integrated Circuit......Page 78 Fig.€2. Block diagram of the proposed BPSK demodulation scheme.......Page 80 II. ILOs......Page 81 1) Phase Locking: In this case, $f_{\rm lock}=f_{r}$ (i.e., $\th......Page 82 4) Unlocking: In this case, $ {4}\vert f_{r}-f_{\rm lock}\vert>f......Page 83 Fig.€12. Schematic representation of the evolution of angle $% \th......Page 84 B. Bit Rate Estimation......Page 85 C. Conversion Dynamics......Page 86 2) Cases $b$ and $c$: In these cases, we have to take into accou......Page 87 IV. C ONCLUSION......Page 88 F. Ramirez, M. E. de Cos, and A. Suárez, Nonlinear analysis tool......Page 89 Fig.€1. Capacitively coupled DAs for higher power handling using......Page 90 B. Capacitively Coupled Common-Source Stage Analysis......Page 91 C. Analysis of Common-Gate Output Impedance in the Capacitively......Page 92 IV. M ATLAB AND ADS I NVESTIGATION......Page 93 V. D ESIGN AND M EASUREMENTS......Page 94 Y. Ayasli, S. W. Miller, R. Mozzi, and L. K. Hanes, Capacitively......Page 95 J. Shohat, I. D. Robertson, and S. J. Nightingale, 10 Gb/s drive......Page 96 II. R EVIEW OF THE D ESIGN OF U NIFORM - AND S TEPPED -I MPEDANC......Page 97 III. D ESIGN OF N EW PCL F ILTERS......Page 98 Fig.€4. Exact circuit transformations. (a) Basic $S$ -plane sub-......Page 99 Fig.€5. (a) $S$ -plane bandpass prototype and (b) its correspond......Page 100 Fig.€6. Development of a seventh-order PCL filter. (a) Synthesiz......Page 101 V. R ESULTS AND D ISCUSSION......Page 102 M. C. Velazquez-Ahumada, J. Martel, and F. Medina, Parallel coup......Page 103 G. I. Zysman and A. K. Johnson, Coupled transmission line networ......Page 104 II. E XPERIMENTAL P ROCEDURE......Page 105 III. S YSTEM A NALYSIS......Page 106 IV. R ESULTS......Page 107 Fig.€6. Results displaying: (a) simulation of sideband behavior......Page 108 V. C ONCLUSION......Page 109 K. J. Williams, Electro-optical broad-band microwave frequency s......Page 110 I. I NTRODUCTION......Page 111 III. F OUR -P OLE P ARALLEL -C OUPLED F ILTER D ESIGN......Page 112 Fig.€5. Measured and simulated performance of the filter. (a) In......Page 113 TABLE€II D ESIGN P ARAMETERS OF THE SIR ON A S UBSTRATE OF D IE......Page 114 M. del Castillo Velázquez-Ahumada, J. Martel, and F. Medina, Par......Page 115 J. S. Hong and M. J. Lancaster, Microstrip Filter for RF/Microwa......Page 116 II. P RINCIPLES AND S IMULATION......Page 117 C. Analyzing Mode Purity......Page 118 B. Verifying Azimuthal Symmetry......Page 119 IV. C ONCLUSION......Page 120 T. H. Chang and C. F. Yu, Polarization controllable ${\rm TE}_{2......Page 121 I. I NTRODUCTION......Page 122 B. Numerical Results and Analysis......Page 123 Fig.€3. Simulated phase delay in the output wave with respect to......Page 124 B. Numerical Results......Page 125 IV. M EASUREMENT R ESULTS AND A NALYSIS......Page 126 D. M. Pozar, Microwave Engineering, 2nd ed. New York: Wiley, 199......Page 127 Fig.€1. Hartley phasing-type SSB modulator. The arrows indicate......Page 129 3) Monitor Circuit: A sample of the modulator's output signal is......Page 130 2) Limited Selectivity of Monitor Circuit: The selectivity of th......Page 131 V. T EST S ETUP......Page 132 1) Complementary Attenuator Control: The output voltage $V_{\rm......Page 133 E. Monitor Detectors......Page 134 1) Variation of LO Frequency: Measurement results obtained from......Page 135 D. Sensitivity to Operating Parameters......Page 136 VIII. C OMPARISON TO P REVIOUSLY P UBLISHED W ORKS......Page 137 3) Transmit Operation: When setting switch SW1 to TX, the SSB mo......Page 138 T. Brauner, R. Vogt, and W. Bächtold, A versatile calibration me......Page 139 II. R ECTANGULAR C AVITY R ESONATOR......Page 140 III. C AVITY F EEDING S TRUCTURE......Page 141 TABLE€I D ESIGN P ARAMETERS OF C AVITY R ESONATORS U SING O PEN......Page 142 IV. T HREE -P OLE F ILTER......Page 143 Fig. 8. (a) External $Q$ factor $({ Q}_{\rm ext})$ evaluated as......Page 144 M. J. Hill, R. W. Ziolkowski, and J. Papapolymerou, Simulated an......Page 145 J.-S. Hong and M. J. Lancaster, Microstrip Filters for RF/Microw......Page 146 A. Small-Signal Model......Page 148 C. Noise-Parameter Relationships......Page 149 Fig.€3. pHEMT noise equivalent-circuit models of CS, CG, and CD......Page 150 TABLE€IV N OISE P ARAMETER R ELATIONSHIPS B ETWEEN CS AND CD C......Page 151 Fig.€7. Comparison of modeled and measured noise parameter for t......Page 152 Fig.€10. Comparison of noise parameters in CS, CG, and CD config......Page 153 A. Cappy, Noise modeling and measurement techniques, IEEE Trans.......Page 154 I. I NTRODUCTION......Page 155 III. W AVEGUIDE C HARACTERISTICS AND T RANSITION D ESIGN......Page 156 B. Measured Results......Page 157 A. Design......Page 158 B. Measured Results......Page 159 G. Pringent, E. Rius, F. L. Pennec, S. L. Maguer, C. Quendo, G.......Page 160 Website......Page 162 240 - 01550037......Page 163 250 - 01550038......Page 164 260 - [email protected] 228

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