A 26GHz Fractional-N Charge-Pump PLL Based on A Dual-DTC-Assisted Time-Amplifying-Phase-Frequency Detector Achieving 37.1fs and 45.6fs rms Jitter for Integer-N and Fractional-N Channels
Research article (2023 IEEE Custom Integrated Circuits Conference (CICC), 2023) · cited 13× · AI/ML
Press Enter · cited answer in seconds
0 sources
A 26GHz Fractional-N Charge-Pump PLL Based on A Dual-DTC-Assisted Time-Amplifying-Phase-Frequency Detector Achieving 37.1fs and 45.6fs rms Jitter for Integer-N and Fractional-N Channels
Summary
A 26GHz Fractional-N Charge-Pump PLL Based on A Dual-DTC-Assisted Time-Amplifying-Phase-Frequency Detector Achieving 37.1fs and 45.6fs rms Jitter for Integer-N and Fractional-N Channels is a scholarly article[1].
Key Facts
- A 26GHz Fractional-N Charge-Pump PLL Based on A Dual-DTC-Assisted Time-Amplifying-Phase-Frequency Detector Achieving 37.1fs and 45.6fs rms Jitter for Integer-N and Fractional-N Channels's instance of is recorded as scholarly article[2].