首页> 外文会议>IEEE International Solid- State Circuits Conference >20.5 A dual-symmetrical-output switched-capacitor converter with dynamic power cells and minimized cross regulation for application processors in 28nm CMOS
【24h】

20.5 A dual-symmetrical-output switched-capacitor converter with dynamic power cells and minimized cross regulation for application processors in 28nm CMOS

机译:20.5具有动态功率单元的双对称输出开关电容器转换器,并为28nm CMOS应用处理器提供最小的交叉调节

获取原文
获取外文期刊封面目录资料

摘要

Multicore application processors in smartphones/watches use power-saving techniques such as dynamic voltage and frequency scaling (DVFS) to extend battery cycle, and supply cores with different voltages [1]. High-efficiency fully integrated switched-capacitor (SC) power converters with no external components are promising candidates [2]. Typically, SC converters with different specifications are independently designed (Fig. 20.5.1), leading to a large area overhead, as each converter has to handle its peak output power. Recently, multi-output SC converters are reported to tackle this issue. In [3], an on-demand strategy is used to control two outputs, each with a different loading range, and the outputs are not interchangeable. In [4], the two output voltages are fixed with voltage conversion ratios (VCRs) of 2× and 3× only. In [5], the controller is integrated, but the three output voltages are still from three individual SC converters. Without reallocating the capacitors in the power stages, capacitor utilization is low, as margins have to be reserved to cater for each converter's peak output power. This paper presents a fully integrated dual-output SC converter with dynamic power-cell allocation for application processors. The power cells are shared and can be dynamically allocated according to load demands. A dual-path VCO that works independently of power-cell allocation is proposed to realize a fast and stable regulation loop. The converter can deliver a maximum current of 100mA: one output can be adjusted to deliver 100mA, while the other handles a very light load; or both outputs can be adjusted to deliver 50mA each with over 80% efficiency.
机译:智能手机/手表中的多核应用处理器使用诸如动态电压和频率缩放(DVFS)之类的节能技术来延长电池周期,并为内核提供不同的电压[1]。无需外部元件的高效全集成开关电容器(SC)电源转换器是有前途的候选技术[2]。通常,具有不同规格的SC转换器是独立设计的(图20.5.1),这会导致大面积的开销,因为每个转换器都必须处理其峰值输出功率。近来,据报道多输出SC转换器解决了这个问题。在[3]中,按需策略用于控制两个输出,每个输出具有不同的负载范围,并且这些输出不可互换。在[4]中,两个输出电压仅以2x和3x的电压转换比(VCR)固定。在[5]中,控制器已集成,但三个输出电压仍来自三个单独的SC转换器。在功率级中不重新分配电容器的情况下,电容器利用率很低,因为必须保留裕量来满足每个转换器的峰值输出功率。本文提出了一种完全集成的双输出SC转换器,具有针对应用处理器的动态功率单元分配。功率单元是共享的,可以根据负载需求进行动态分配。提出了一种独立于功率单元分配的双路VCO,以实现快速稳定的调节环路。该转换器可以提供最大100mA的电流:一个输出可以调节为提供100mA,而另一个则可以处理非常轻的负载。或两个输出均可调节以提供50mA的电流,效率超过80%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号