Dielectric resonator controlled planar IMPATT diode oscillator

Oscillators – Solid state active element oscillator – Significant distributed parameter resonator

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331117D, H03B 700

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active

045147078

ABSTRACT:
An IMPATT diode oscillator wherein the diode is coupled to a first transmission line in turn coupled to a bias port at one end and to a coupled line transformer formed with a second transmission line at the other. A stabilizing load is coupled to the first transmission line between the diode and the bias port. A first tunable resonator controlling the fundamental frequency of the oscillator and a second tunable resonator controlling the second harmonic frequency of the oscillator are coupled to the first transmission line between the diode and the stabilizing load so that independent control of the fundamental and the second harmonic is attained in a temperature stable device.

REFERENCES:
patent: 4054875 (1977-10-01), Cachier
patent: 4311970 (1982-01-01), Bert et al.
patent: 4331940 (1982-05-01), Uwano
Sullivan, W. H. et al., "Second Harmonic Tuning Effects on IMPATT Diode Oscillator Noise Characteristics", 1971, G-MTT Symposium Digest, pp. 92-93, (May 18, 1971).
Plourde, J. K. et al., "Application of Dielectric Resonators in Microwave Components", IEEE Transactions on Microwave Theory & Techniques, v. MTT-29, No. 8, pp. 754-770, (Aug. 81).
Satoh, G., "Stabilized Microstrip Resonator Using a Temperature-Stable Dielectric Resonator", 1974, IEEE International Solid-State Circuits Conference, pp. 184-185, (Feb. 15, 1974).
Cohen, J. et al., "Temperature Stability of an MIC Gunn-Effect Oscillator", IEEE Transactions on Microwave Theory & Techniques, v. MTT-27, No. 7, pp. 115-116, (Jul. 79).
Makino, T. et al., "A Highly Stabilized MIC Gunn Oscillator Using a Dielectric Resonator", IEEE Transactions on Microwave Theory & Techniques, v. MTT-27, No. 7, pp. 633-638, (Jul. 79).

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