Although microstrip transmission lines have been widely used in microwave integrated circuits, the discontinuity structures in the microstrip transmission lines such as a gap, an abruptly ended strip conductor, and so...
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A simple transmission cavity placed in the output transmission line of a CW Gunn oscillator can be adiusted to allow simple and cheap digital frequency modulation by bias modulation. Transition rates down to 10 ns hav...
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This paper interprets electrostatically coupled objects in circuit form, reduces the problem to Thevenin equivalents, and develops practical methods for computing such equivalents. Means for representing irregularly s...
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This paper presents a theoretical analysis of the distortion of the dial pulse waveform and its effects on the response characteristics of the pulse-receiving circuit in the telephone office. To derive expressions for...
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A transmission-line model is developed for computer-aided circuit design (CACD). The model is easily implemented using voltage- resistance sources in transient CACD programs. Analyses of a transmission line with and w...
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A transmission-line model is developed for computer-aided circuit design (CACD). The model is easily implemented using voltage- resistance sources in transient CACD programs. Analyses of a transmission line with and without a clamp-diode termination are presented. The model provides a straightforward means of including an accurate transmission-line model in any linear or nonlinear transient analysis routine.
A circuit mode chart has been developed for the interpretation of TRAPATT oscillator performance. Included are the periodic impulse response of the cavity, triggering effects and waveform clipping.
A circuit mode chart has been developed for the interpretation of TRAPATT oscillator performance. Included are the periodic impulse response of the cavity, triggering effects and waveform clipping.
A new transmission line for microwave integrated circuit applications at frequencies above X band is described. Although physically similar to microstrip, its principal mode of propagation is a quasi-TE 10 waveguide ...
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A new transmission line for microwave integrated circuit applications at frequencies above X band is described. Although physically similar to microstrip, its principal mode of propagation is a quasi-TE 10 waveguide type mode. Preliminary measurements indicate low loss and reduced coupling between adjacent lines.
This paper discusses some initial results which demonstrate the feasibility of hybrid M.I.C. designed for frequencies in the range 26 to 90 GHz. Practical single ended and balanced mixer circuits are described.
This paper discusses some initial results which demonstrate the feasibility of hybrid M.I.C. designed for frequencies in the range 26 to 90 GHz. Practical single ended and balanced mixer circuits are described.
The transmission line to be described uses a plated ceramic as the waveguide or coaxial medium and represents a practical circuit integration technique for frequencies from C-band through at least K A -band. Prelimina...
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The transmission line to be described uses a plated ceramic as the waveguide or coaxial medium and represents a practical circuit integration technique for frequencies from C-band through at least K A -band. Preliminary investigations indicate that fabrication techniques are commensurate with high level integration and low cost.
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