首页> 外文会议>Solid-state Circuits Conference, 1987. ESSCIRC '87 >The CMOS GATE FOREST: High Performance Semicustom ASIC's for Complex Logic and Memory
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The CMOS GATE FOREST: High Performance Semicustom ASIC's for Complex Logic and Memory

机译:CMOS GATE FOREST:用于复杂逻辑和存储器的高性能半定制ASIC

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As an extension of the existing sea of gates concept, the GATE FOREST concept will be presented, together with its implementation in CMOS technology. The GATE FOREST distinguishes itself from the older sea of gates concept in its different architecture, which is based on a hierarchical view of both complex logic and design approach. The micro architecture of the GATE FOREST is characterized by the use of both gate isolation and geometrical isolation, a high degree of connectivity and an optimal transparancy for route-through signals. The macro architecture is characterized by a channelless approach. The GATE FOREST (micro)architecture is specialized towards the implementation of dynamic logic. However static logic structures can also be efficiently implemented. The use of both static and dynamic logic is supported with two cell libraries. The dynamic cell library has three sub-libraries based on three different categories of dynamic logic: domino logic, cascode voltage switch logic (CVSL) and sample-set differential logic (SSDL). The GATE FOREST implementation is based on a scalable, lambda based design rule set, enabling easy conversion down to one micron CMOS technology. To demonstrate the effectiveness of the GATE FOREST approach, a number of basic logic functions and memory cells are evaluated, using the area per transistor ratio as characterization. A particular design example--a five input XOR- is used to compare a number of different implementation possibilities.
机译:作为现有“盖茨海洋”概念的扩展,将介绍GATE FOREST概念及其在CMOS技术中的实现。盖特森林(GATE FOREST)在复杂的逻辑和设计方法的分层视图的基础上,以其不同的体系结构与旧的盖茨海洋概念区分开来。 GATE FOREST的微架构的特点是同时使用了门隔离和几何隔离,高度的连通性以及通过信号的最佳透明度。宏体系结构的特征在于无通道方法。 GATE FOREST(微)体系结构专门用于实现动态逻辑。但是,静态逻辑结构也可以有效地实现。两个单元库支持同时使用静态和动态逻辑。动态单元库具有基于三个不同类别的动态逻辑的三个子库:多米诺逻辑,共源共栅电压开关逻辑(CVSL)和样本集差分逻辑(SSDL)。 GATE FOREST实现基于可扩展的基于lambda的设计规则集,可轻松转换为1微米CMOS技术。为了证明GATE FOREST方法的有效性,使用每晶体管的面积比作为表征,评估了许多基本逻辑功能和存储单元。一个特定的设计示例-五个输入XOR-用于比较许多不同的实现可能性。

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