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- A Survey of Spoofer Detection Techniques Via Radio Frequency Fingerprinting with Focus on the GNSS Pre-Correlation Sampled Data
- An Analytic Circuit-Based Model for White and Flicker Phase Noise in LC Oscillators Jayanta Mukherjee, Patrick Roblin, Member, IEEE, and Siraj Akhtar, Member, IEEE
- An-815 Understanding Jitter Units
- Oscillator Phase Noise
- A Technical Tutorial on Digital Signal Synthesis
- Joint M.Tech. – Ph.D. Curriculum
- Measuring the Power Law Phase Noise of an RF Oscillator with a Novel Indirect Quantitative Scheme
- MT-008: Converting Oscillator Phase Noise to Time Jitter
- Phase Noise and Jitter in CMOS Ring Oscillators Asad A
- Characterization and Reduction of Local Oscillator Phase Noise Effects in Communications Systems
- Phase Noise in Oscillators
- EU Universities Master Programs Analysis
- Phase Noise Performance of CDCLVC1310
- Oscillator Phase Noise: a Tutorial Thomas H
- Training Rocket Scientists Since 1984
- Colored Noise in Oscillators. Phase-Amplitude Analysis and a Method to Avoid the Ito-Stratonovichˆ Dilemma Michele Bonnin, Fabio L
- Phase Noise Analysis for Mmwave Massive MIMO: a Design Framework for Scaling Via Tiled Architectures
- PLL Phase Noise & Jitter Modeling, for High Speed Serial Links
- Non-Linear Digital Self-Interference Cancellation for In-Band Full
- Microwave Oscillator with Phase Noise Reduction Using Nanoscale Technology for Wireless Systems M
- Jitter in Oscillators with 1/F Noise Sources and Application to True RNG for Cryptography by Chengxin Liu
- Relationship Between Jitter and Phase Noise
- UCLA Electronic Theses and Dissertations
- Deliverable D4.1 AI-Driven Communication & Computation Co-Design: Gap Analysis and Blueprint
- Close-In Phase Noise in Electrical Oscillators Reza Navid*A, Christoph Jungemannb, Thomas H
- Overview on Phase Noise and Jitter
- Phase Noise in Communication Systems Modeling, Compensation, and Performance Analysis
- Report of Contributions
- Analysis and Prediction of Phase Noise in Resonators
- Reducing Phase Noise Degradation Due to Vibration of Crystal Oscillators Cory Nelson Iowa State University
- Phase Noise Reduction in a Multiphase Oscillator
- Local Oscillator Phase Noise and Its Effect on Receiver Performance All Superheterodyne Receivers Use One Or Phase Noise, and Can Only Be Reduced by in Figure 1
- Section 5: High-Speed Reference Clock Considerations
- High Speed System Applications
- 12.2% 130,000 155M Top 1% 154 5,300
- Performance Analysis of Low Jitter High-Speed Photonic Analog-To-Digital Converters in Silicon Photonics
- Sustained Oscillators with Optical Transduction
- Supply Noise Effect on Oscillator Phase Noise Habeeb Ur Rahman Mohammed, Ph.D