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Gate-diffusion input (GDI): a power-efficient method for digital combinatorial circuits

机译:门扩散输入(GDI):一种用于数字组合电路的节能方法

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Gate diffusion input (GDI) - a new technique of low-power digital combinatorial circuit design - is described. This technique allows reducing power consumption, propagation delay, and area of digital circuits while maintaining low complexity of logic design. Performance comparison with traditional CMOS and various pass-transistor logic design techniques is presented. The different methods are compared with respect to the layout area, number of devices, delay, and power dissipation. Issues like technology compatibility, top-down design, and precomputing synthesis are discussed, showing advantages and drawbacks of GDI compared to other methods. Several logic circuits have been implemented in various design styles. Their properties are discussed, simulation results are reported, and measurements of a test chip are presented.
机译:栅极扩散输入(GDI)是一种低功耗数字组合电路设计的新技术。这种技术可以降低功耗,传播延迟和数字电路面积,同时保持逻辑设计的低复杂性。提出了与传统CMOS和各种传输晶体管逻辑设计技术的性能比较。比较了不同方法的布局面积,设备数量,延迟和功耗。讨论了诸如技术兼容性,自上而下的设计以及预计算综合之类的问题,这些问题显示出与其他方法相比,GDI的优缺点。已经以各种设计风格实现了几种逻辑电路。讨论了它们的特性,报告了仿真结果,并介绍了测试芯片的测量结果。

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