Mostafa Essawy

Mostafa Essawy

Oregon State University

H-index: 3

North America-United States

About Mostafa Essawy

Mostafa Essawy, With an exceptional h-index of 3 and a recent h-index of 3 (since 2020), a distinguished researcher at Oregon State University, specializes in the field of RFIC, Millimeter-wave, Full-Duplex, Radar, Integrated Circuits.

His recent articles reflect a diverse array of research interests and contributions to the field:

Full-Duplex Receiver With Wideband, High-Power RF Self-Interference Cancellation Based on Capacitor Stacking in Switched-Capacitor Delay Lines

A Frequency Doubler With Second Harmonic Feedback for Wideband, Efficient Frequency Multiplication at Millimeter-Wave

A Low-Noise Dual-Path Self-Interference Cancellation Architecture for Watt-Level TX Power Handling in Simultaneous Transmit and Receive

A Broadband LNA and Sub-Harmonic Mixer Based Multi-Mode RX in 22nm CMOS

A Frequency-Tunable Dual-Path Frequency-Translated Noise-Cancelling Self-Interference Canceller RX with> 16dBm SI Power-Handling in 65nm CMOS

A 47 GHz to 70 GHz Frequency Doubler Exploiting 2nd-Harmonic Feedback with 10.1 dBm Psat and ntotal of 22% in 65 nm CMOS

A mm-wave FMCW radar RX frontend in CMOS with modulated self-interference cancellation path

A Noise-Cancelling Self-Interference Canceller with +7 dBm Self-Interference Power Handling in 0.18 μm CMOS

Mostafa Essawy Information

University

Position

___

Citations(all)

33

Citations(since 2020)

30

Cited By

8

hIndex(all)

3

hIndex(since 2020)

3

i10Index(all)

1

i10Index(since 2020)

1

Email

University Profile Page

Google Scholar

Mostafa Essawy Skills & Research Interests

RFIC

Millimeter-wave

Full-Duplex

Radar

Integrated Circuits

Top articles of Mostafa Essawy

Full-Duplex Receiver With Wideband, High-Power RF Self-Interference Cancellation Based on Capacitor Stacking in Switched-Capacitor Delay Lines

IEEE Journal of Solid-State Circuits

2024/4/26

A Frequency Doubler With Second Harmonic Feedback for Wideband, Efficient Frequency Multiplication at Millimeter-Wave

IEEE Transactions on Microwave Theory and Techniques

2024/2/29

Amin Aghighi
Amin Aghighi

H-Index: 3

Mostafa Essawy
Mostafa Essawy

H-Index: 2

A Low-Noise Dual-Path Self-Interference Cancellation Architecture for Watt-Level TX Power Handling in Simultaneous Transmit and Receive

IEEE Journal of Solid-State Circuits

2024/2/8

Mostafa Essawy
Mostafa Essawy

H-Index: 2

Amin Aghighi
Amin Aghighi

H-Index: 3

A Broadband LNA and Sub-Harmonic Mixer Based Multi-Mode RX in 22nm CMOS

2023/9/18

A Frequency-Tunable Dual-Path Frequency-Translated Noise-Cancelling Self-Interference Canceller RX with> 16dBm SI Power-Handling in 65nm CMOS

2023/6/11

A 47 GHz to 70 GHz Frequency Doubler Exploiting 2nd-Harmonic Feedback with 10.1 dBm Psat and ntotal of 22% in 65 nm CMOS

2023/6/11

A mm-wave FMCW radar RX frontend in CMOS with modulated self-interference cancellation path

2022/1/16

A Noise-Cancelling Self-Interference Canceller with +7 dBm Self-Interference Power Handling in 0.18 μm CMOS

2021/6/7

6.6 Full-Duplex Receiver with Wideband Multi-Domain FIR Cancellation Based on Stacked-Capacitor, N-Path Switched-Capacitor Delay Lines Achieving> 54dB SIC Across 80MHz BW and …

2021/2/13

A reference frequency quadrupler for high performance frequency synthesizers

Microelectronics Journal

2020/7/1

Mostafa Essawy
Mostafa Essawy

H-Index: 2

Hesham Omran
Hesham Omran

H-Index: 14

See List of Professors in Mostafa Essawy University(Oregon State University)

Co-Authors

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