1 Department of Electrical and Electronic Engineering, Canadian University of Bangladesh (CUB) Dhaka 1212, Bangladesh.
2 Department of Electrical and Electronic Engineering, Independent University, Dhaka 1212, Bangladesh.
International Journal of Science and Research Archive, 2026, 19(02), 224-230
Article DOI: 10.30574/ijsra.2026.19.2.0961
Received on 25 March 2026; revised on 04 May 2026; accepted on 07 May 2026
Microwave signals that have high spectral purity, and high frequency & frequency tunability, along with microwave generators that are lightweight, compact in size, energy-efficient, and inexpensive, are becoming increasingly in demand as a result of the swift enhancement of modern world communication applications, radar, and wireless systems. To address these expectations, integrated microwave photonics (IMWP) is being considered as a potential solution. The way this is done is by combining the chipβs photonics and microwave circuitry. In this work, we both describe and demonstrate an experimental implementation of an integrated optoelectronic oscillator (IOEO). All of the components that are required for the oscillation loop circuit are integrated on a chip monolithically that falls within the dimensions of 5Γ7 πππ in size. When the actual injection current is tuned to 45 milliamperes, the output frequency of the prospective IOEO is found to be 7.40 gigahertz, and the noise value of the phase is 92 decibels per hertz at one megahertz. The produced frequency can be altered to 8.9 GHz with a noise value of phase of 90 dBc/Hz@1MHz when the overall injection current is escalated to 65 mA. This is possible when the injection current is increased. Through the use of the injection current, it is possible to make modest adjustments to both of the oscillation frequencies within a range of 22 MHz around the centre oscillation frequency. An in-depth discussion of the approach that can be taken to enhance the performance of IOEO can be found in this article.
Integrated Optics; Optoelectronics; Integrated Op-Toelectronic Circuits
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Md. Ziad Hosain, Abdullah Al Niloy and Md. Siddik. High-frequency tunable integrated optoelectronic oscillator for advanced communication systems. International Journal of Science and Research Archive, 2026, 19(02), 224-230. Article DOI: https://doi.org/10.30574/ijsra.2026.19.2.0961.






