← 返回 JSSC 论文列表JSSC 2015第12期Power Management0.35μm BCDBuck Converter
An Error-Based Controlled Single-Inductor 10-Output DC-DC Buck Converter With Hi
提出一种基于误差控制的单电感10输出DC-DC降压转换器,实现高效率和快速负载瞬态响应。
峰值效率88.7%,负载瞬态响应0.17 mV/mA,交叉调节0.1 mV/mA
DC-DC转换器单电感多输出误差控制负载瞬态响应BCD工艺
▸创新点1:误差控制方法 - 提出了一种基于误差的控制方法,能够在不同负载条件下维持高效率(峰值效率达88.7%),解决了传统SIMO转换器在动态负载下的效率下降问题。该方法通过实时误差反馈调整输出,显著提升了系统稳定性。
▸创新点2:单电感多输出(SIMO)结构 - 采用单电感实现10路独立稳压输出,突破了传统多电感设计的体积限制,同时通过优化时序控制避免了交叉干扰(实测交叉调节仅0.1mV/mA)。该结构在1mA-100mA负载范围内保持0.17mV/mA的瞬态响应。
▸创新点3:混合拓扑结构 - 创新性地结合开关转换器与线性稳压器,兼具开关模式的高效性和线性模式的快速瞬态响应(负载瞬态波形实测达标)。这种混合设计在432mA大电流输出时仍保持5mA小电流输出的精度。
▸创新点4:工艺集成 - 采用1P4M 0.35μm BCD工艺实现高集成度,将10路输出控制电路与功率器件单片集成,验证了复杂SIMO系统在成熟工艺下的可行性。
Abstract
An error-based control method is proposed for a
single-inductor multiple-output (SIMO) converter that maintains
high efficiency under various load conditions. A peak efficiency
of 88.7% was achieved with one output
of 5 mA, while the
other outputs are at 432 mA. A hybrid topology composed of a
switching converter and a linear regulator is also presented for
fast load transient response. The proposed SIMO buck converter
was fabricated with a 1P4M 0.35
m BCD process and has 10
independently regulate