IEEE MTT-V053-I12 (2005-12)
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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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