一种低压宽频dram用带阻抗调节电路的混合模式降压变换器

T. Ooishi, Y. Komiya, K. Hamade, M. Asakura, K. Yasuda, K. Furutani, T. Kato, H. Hidaka, H. Ozaki
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引用次数: 2

摘要

在dram中,通过降压变换器(VDC)实现了工作电压的大幅度降低,从而实现了低功耗和高可靠性。然而,在低压和高频领域,这种技术将看到几个关键问题。此外,需要宽频操作(例如扩展数据输出和同步操作)和可变负载电流(例如可变刷新周期和可变数据输出)。本文提出了低压(小于2.5 V)、宽频和可变负载电流的直流电路技术。MM-VDC (mixed-mode VDC)通过模拟VDC (A-VDC)和数字VDC (D-VDC)提供适合负载电流的两种模式的电流。降低了直流电流的消耗,保证了系统的稳定运行。此外,阻抗调整电路(IAC)根据负载的工作频率控制直流直流的供电能力,使内部电源电平的反弹最小。MM-VDC适用于低压宽频dram。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A mixed-mode voltage-down converter with impedance adjustment circuitry for low-voltage wide-frequency DRAMs
In DRAMs a dramatic operation voltage reduction has been realized by the voltage-down converter (VDC) for a low power dissipation and high reliability. However, in the low-voltage and high-frequency domain this technique will see several crucial problems. Besides, the wide-frequency operation (e.g. an extended data output and a synchronous operation) and the variable-load current (e.g, a variable refresh cycle and a changeable data output) are required. This paper proposes VDC circuit techniques for the low-voltage (less than 2.5 V), wide-frequency, and the variable-load current. The mixed-mode VDC (MM-VDC) provides two-modes of current by the analog VDC (A-VDC) and the digital VDC (D-VDC) supply being suitable for the load current. It also reduces the current consumption in the VDC and guarantees stable operation. Moreover, the impedance adjustment circuitry (IAC) controls the current supply capability of the D-VDC according to the load operation frequency to minimize the bounce of the internal power supply level. The MM-VDC can be applicable to low-voltage wide-frequency DRAMs.
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