Ladimer S. Nagurney, "A Multi-Emission Frequency Domain Modulator," 40th IEEE Vehicular Technology Conference, 6 May 1990, Orlando, Fla., pp. 71-74. |
Marketing Brochure, "Direct Digital Synthesis: 21 Questions and Answers for RF Engineers", QUALCOMM. Inc. 1990. |
R. C. Cumming, "The Serrodyne Frequency Translator", Proc. IRE, pp. 175-186 (Feb. 1957). |
H. T. Nicholas, III et al., "An Analysis of the Output Spectrum of Direct Digital Frequency Synthesizers in the Presence of Phase-Accumulator Truncation", 41st Annual Frequency Control Symposium pp. 495-501 (1987). |
G. Van Andrews et al., "A Monolithic Digital Chirp Synthesizer Chip with I and Q Channels", GaAs IC Symposium, pp. 19-22 (1991). |
Advertisement, "Phase Shifter is Doppler Simulator", Sciteq Electronics, Inc. |
R. C. Cumming, Serrodyne Performance and Design, (1965) pp. 83-87. |
G. Klein and L. Dubrowsky, IEEE Transactions on Microwave Theory and Techniques, vol. MMT-15:3 (1967). |
M. Greenbaum et al., IEEE Transactions on Aerospace and Electronic Systems, (Jul. 1974). |
Vadim Manassewitsch, Frequency Synthesizers Theory and Design, publication of Wiley & Sons, (1976). |
M. Topi, An Eight-Phase Broadband Serrodyne Modulator, IEEE MTT-S Digest (1983). |
H. Yuan et al., The Development of Heterojunction Integrated Injection Logic, IEEE Transactions on Electron Devices, 36:10, Oct. 1989. |
S. Mitchell et al., Wideband Serrodyne Frequency Translator, Applied Microwave, (1990). |
K. C. Wang et al., Diode-HBT-Logic Circuits Monolithically Integrable with ECL/CML Circuits, GaAs IC Symposium, (1991). |
D. Helms et al., Wideband Very Fast Set-on Receiver, GaAs IC Symposium (1990). |
Stanford Telecom, Products for Direct Digital Synthesis, Advertisement (1991). |
Stanform Telecom, 0-400 MHz GaAs Direct Digital Phase Modulated Synthesizer Hybrid STEL-2373, Marketing Brochure, 1991. |