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来源:百度知道 编辑:UC知道 时间:2024/05/22 19:06:11
Microcontrollers go CMOS without slowing down
Long considered a low-speed, complex technology compared with NMOS is on the rise as it new, high-speed microprocessor applications. Using its HMO-II technology, Intel has developed high-performance CMOS(c-HMOS) logic and applied it to two standard NMOS microcontrollers, the 8094 and 8051.
the two new members of the MCS-48 and MCS-51 families - the 80C49 and 80C51, respectively-are CMOS devices while minimizing price differences and chip sizes compared with their n-channel counterparts .C-HMOS technology borrows many of the design and performance characteristics of high-performance MOS (HMOS).However, developing C-HMOS called for the creation of an n-well CMOS process, That had not been done previously because CMOS technology grew naturally out of the older p-channel transistor.
Because they retain the design rules of HMOS-II, C-HMOS devices realize the high speed and superior packing density of that process .In addit

微控制器运行在CMOS上,速度不降!
CMOS长期以来被认为与NMOS相比速度低,技术复杂,现在随着新型高速微处理器的应用CMOS的势头在上涨 。Inter公司使用它的HMO-II技术已经开发出了高性能的CMOS(C-HMOS)逻辑并把它应用到了两种标准的NMOS微控制器(8094、8051)上,80C49和80C51——MCS-48和MCS-51系列的两个新成员——就是CMOS设备,与它们的N通道竞争对手相比缩小了价格差异和芯片体积。 C-HMOS借鉴了许多高性能MOS(HMOS)的设计和性能特性。但是开发C-HMOS需要创造一种n-well CMOS程序,由于CMOS技术逐渐脱离了老式的P通道晶体管,所以这种程序以前没做过。
由于它们保持了HMOS-II的设计准则,C-HMOS设备实现了高速和高密度。此外C-HMOS,与CMOS类似,比其他半导体技术能耗更低。这种综合特性最好的一个应用就在必须使用低功率输入的微控制器上而且这种应用的数量在增长。它们包括电池供能设备以及失去正常交流电后还必须工作的系统。事实上,如果没有CMOS这类应用根本不会存在。

Microcontrollers go CMOS without slowing down

CMOS【互补金属氧化物半导体】微控制器处理速度丝毫不减。
Long considered a low-speed, complex technology compared with NMOS is on the rise as it new, high-speed microprocessor applications.
与NMOS技术相比,这项长期以来被认为是低速而复杂的技术因其在新型高速微处理器中的应用,而使得其越来越火。
Using its HMO-II technology, Intel has developed high-performance CMOS(c-HMOS) logic and applied it to two standard NMOS microcontrollers, the 8094 and 8051.
使用HMO-II技术,Intel开发出了高性能CMOS(c-HMOS)逻辑单元,并将之应