萨娜·易卜拉欣(RMS团队)论文答辩:基于时钟信号占空比与延迟控制的谐波抑制N路径混频器在低功耗接收机中的应用

Thesis defence of Sana Ibrahim (RMS team): Harmonic Rejection N-Path Mixers Based on the Control of Duty Cycle and Delay of Clock Signals for Low-Power Receivers Applications

TIMA Lab News Original
摘要
萨娜·易卜拉欣(RMS团队)的论文答辩主题为"基于时钟信号占空比与延迟控制的谐波抑制N路径混频器在低功耗接收器中的应用"。该研究聚焦于通过优化时钟信号参数来提升混频器性能,旨在降低接收器功耗并抑制谐波干扰,对无线通信设备的能效提升具有潜在技术影响。

该文章仅爬取到标题,未获取到正文内容。

查看原文
Summary
Sana Ibrahim from the RMS team defended her thesis on designing low-power radio receivers using harmonic rejection N-path mixers, focusing on optimizing clock signal duty cycle and delay to improve performance and energy efficiency.

Only the headline was crawled; full content was not available.

Read original
Résumé
Sana Ibrahim (équipe RMS) a soutenu sa thèse sur des mélangeurs N-Path à rejet harmonique basés sur le contrôle du cycle de service et du délai des signaux d'horloge, visant des applications de récepteurs basse consommation. Ce travail propose une nouvelle approche pour améliorer les performances des récepteurs radiofréquences tout en réduisant leur consommation d'énergie.

Seul le titre a été récupéré.

Lire l'original
AI Insight
Core Point

A researcher successfully defended a thesis on a novel, low-power radio frequency mixer design for receivers, which could improve energy efficiency in wireless communications.

Key Players

Sana Ibrahim (RMS team) — Researcher presenting a thesis on advanced RF mixer design, location unspecified.

Industry Impact
  • ICT: High — Enables more efficient, low-power wireless receivers.
  • Terminals/Consumer Electronics: Medium — Potential for longer battery life in mobile devices.
  • Computing/AI: Low — Indirect benefit for edge/IoT devices requiring efficient radios.
Tracking

Monitor — The academic research presents a promising technique for power-sensitive RF applications, but commercial adoption is uncertain.

Highlights
Local Research
Related Companies

No companies linked yet

Categories
半导体 科研
AI Processing
2026-04-14 23:10
deepseek / deepseek-chat