10.7带1周期APC的25MHz 4相SAW滞回DC-DC变换器,在96.7%的功率范围内实现190ns的4A负载暂态稳定和80%以上的效率

Bumkil Lee, Minkyu Song, A. Maity, D. Ma
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引用次数: 12

摘要

具有快速负载瞬态的开关电源转换器对于应用处理器(ap)来说至关重要,以实现高电流转换率的系统级功率适应性。虽然电流型迟滞控制因结构简单、工作鲁棒和瞬态响应快而被广泛应用于开关变换器中[1],但它仍然不足以满足现代ap所要求的前所未有的1A/ns电流转换率[2]。同时,通过将单相操作扩展到多相操作,可以提高电流转换率。然而,当变换器为轻负载供电时,增加的相位造成的功率损失会对效率产生不利影响。因此,提出了有源相数(APC),通过感知平均电感电流来明智地管理负载的有源相数[3,4]。然而,固有的传感延迟极大地减缓了相位加/降动作,降低了负载的瞬态响应。另一方面,相位子变流器之间的相电流不平衡会产生热点,影响系统的可靠性。在传统电流模式迟滞控制的基础上,提出了一种简单的同步自适应窗口(SAW)迟滞控制,该控制可自动调整迟滞窗口以加快暂态响应。固有的时钟同步使其自然适合多相操作,其中APC可以通过控制中的内部电流传感机制在一个开关周期内完成。
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10.7 A 25MHz 4-phase SAW hysteretic DC-DC converter with 1-cycle APC achieving 190ns tsettle to 4A load transient and above 80% efficiency in 96.7% of the power range
Switching power converters with fast load transients are crucial for application processors (APs) to facilitate system-level power adaptability with high current slew rate. While current-mode hysteretic control has been popularly employed in switching converters for simple structure, robust operation and fast transient response [1], it still does not suffice for the unprecedented 1A/ns current slew rate required by modern APs [2]. Meanwhile, current slew rate can be improved by extending single-phase to multiphase operation. However, when a converter powers light load, power loss caused by added phases adversely affects the efficiency. Active phase count (APC) was thus proposed to manage the number of active phases judiciously to load by sensing average inductor current [3,4]. However, the inherent sensing delay drastically slows down the phase adding/dropping actions and degrades load transient response. On the other hand, phase current imbalance among phase sub-converters could cause hot spots, jeopardizing system reliability. Upgrading from conventional current-mode hysteretic control, we propose a simple synchronized adaptive window (SAW) hysteretic control which automatically adjusts the hysteretic window to speed up the transient response. Inherent clock synchronization makes it a natural fit to multiphase operation, where APC can be accomplished within one switching cycle through an internal current sensing mechanism in the control.
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