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OTP存储器位线负载对读出速度的影响 被引量:1
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作者 吴欣昱 张金旻 罗玉香 《微电子学》 CAS CSCD 北大核心 2015年第5期649-651,656,共4页
在OTP存储器设计中,随着存储器容量的不断加大,位线负载也相应变大,可能导致读机制失效。为了防止发生读机制失效,需增加灵敏放大器充电时间,但是延长充电时间会影响读取速度。在分析OTP存储器灵敏放大器工作原理的基础上,重点研究了位... 在OTP存储器设计中,随着存储器容量的不断加大,位线负载也相应变大,可能导致读机制失效。为了防止发生读机制失效,需增加灵敏放大器充电时间,但是延长充电时间会影响读取速度。在分析OTP存储器灵敏放大器工作原理的基础上,重点研究了位线负载对读出速度的影响。通过仿真,优化了OTP存储器的读出电路参数。 展开更多
关键词 一次性可编程存储器 位线 灵敏放大器 位线负载
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A Precision-Positioning Method for a High-Acceleration Low-Load Mechanism Based on Optimal Spatial and Temporal Distribution of Inertial Energy 被引量:5
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作者 Xin Chen Youdun Bai +2 位作者 Zhijun Yang Jian Gao Gongfa Chen 《Engineering》 SCIE EI 2015年第3期391-398,共8页
High-speed and precision positioning are fundamental requirements for high-acceleration low-load mechanisms in integrated circuit (IC) packaging equipment. In this paper, we derive the transient nonlinear dynamicres... High-speed and precision positioning are fundamental requirements for high-acceleration low-load mechanisms in integrated circuit (IC) packaging equipment. In this paper, we derive the transient nonlinear dynamicresponse equations of high-acceleration mechanisms, which reveal that stiffness, frequency, damping, and driving frequency are the primary factors. Therefore, we propose a new structural optimization and velocity-planning method for the precision positioning of a high-acceleration mechanism based on optimal spatial and temporal distribution of inertial energy. For structural optimization, we first reviewed the commonly flexible multibody dynamic optimization using equivalent static loads method (ESLM), and then we selected the modified ESLM for optimal spatial distribution of inertial energy; hence, not only the stiffness but also the inertia and frequency of the real modal shapes are considered. For velocity planning, we developed a new velocity-planning method based on nonlinear dynamic-response optimization with varying motion conditions. Our method was verified on a high-acceleration die bonder. The amplitude of residual vibration could be decreased by more than 20% via structural optimization and the positioning time could be reduced by more than 40% via asymmetric variable velocity planning. This method provides an effective theoretical support for the precision positioning of high-acceleration low-load mechanisms. 展开更多
关键词 high-acceleration low-load mechanism precision positioning spatial and temporal distribution inertial energy equivalent static loads method (ESLM) velocity planning
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