DRAM contract prices are likely to exit a bullish period that lasted three quarters and be on the downswing in 4Q21 at a…
搜尋「PMICs」,共 13 筆
Samsung Electronics announced the industry’s first integrated power management ICs (PMICs) — S2FPD01, S2FPD02 and S2FPC0…
TAIPEI, Taiwan - Owing to the impact of the COVID-19 pandemic, global smartphone production reached a mere 1.25 billion …
Samsung Introduces Industry’s First All-in-One Power ICs Optimized for Wireless Earbuds (2020.03.24)
Samsung Electronics today announced the industry’s first all-in-one power management integrated circuits (PMIC), MUA01 a…
The global demand for semiconductor components in the second half of the year will be noticeably stronger compared with …
Avnet Introduces Ultra96-V2 Development Board (2019.04.03)
Avnet has released the new Ultra96-V2 to power industrial-grade Artificial Intelligence (AI) and Internet of Things (IoT…
Dialog:手機產業推陳出新 電源管理也必須持續創新 (2019.02.27)
智慧手機功能不斷推陳出新,這使得電源設計更受到設計人員的重視。本刊專訪了Dialog Semiconductor技術行銷經理Sri Jandhyala,探討Dialog在手機電源設計上所做的努力。 問:近年來,Dialog的電源管理晶片獲得…
Automotive Has Become the Second Largest Application Market for Power Transistors, Says TrendForce (2017.06.07)
According to TrendForce’s analysis, the global average value of analog ICs and power transistors for power management wi…
Samsung Electronics today announced that it has begun mass production of Exynos 7 Quad 7570, the company’s newest mobile…
New AS3722 PMIC and AS3728 Power Stages Supply Tegra K1 Mobile Processor SoC in Jetson Design Kit (2014.12.15)
ams AG added to its family of power management ICs (PMICs) for mobile multi-core ARM processors with the AS3722, which p…
奧地利微電子新電源管理晶片適用於行動多核心ARM處理器 (2014.12.15)
奧地利微電子推出新款電源管理IC(PMICs)AS3722。AS3722將應用於行動多核心ARM處理器,為Nvidia Tegra K1行動片上系統(SoC)提供完整電源控制解決方案。除此之外,奧地利微電子還推出AS3728,為一款搭配AS…
滿足行動需求的切換模式USB電源管理 (2007.06.11)
行動裝置的數位內容隨著應用不斷增加,也驅使了各種IC零件與子電路對於不同電壓的需求急遽攀升。電子產品製造商試圖將更多功能裝進更小的電子裝置之中,這樣的趨勢使得對於擁有多樣化功能與電壓輸出的電源管理IC(PMICs)更為重要,需求也更為提高。…
多時域自適應電壓調節功能介紹 (2007.01.05)
在可攜式設備中,總能量的30%到50%會被數位處理器消耗掉。本文將介紹一種獲得電源效能,在可被接受的水準範圍內補充性的方法,也就是利用動態電壓,頻率調節(DVFS)和數位SoC的主動和被動漏電管理技術,這種方法在某些時候甚至是一種可供選擇的有效方案。本文將分析,如何透過先進電源控制程式(APC),在最新的SoC上實現先進的DVFS技術。…

