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An effective 6-bit flash ADC using low power CMOS technology

机译:使用低功耗CMOS技术的有效6位闪存ADC

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In present day communication technology, Digital communication plays a tremendous role in effective power utilization of resources. In many aspects of Digital communication, both wired and wireless communication technologies are covered. To implement a digital communication system, Analog to Digital Conversion is must as the source of many systems is analog in nature. The effectiveness of Digital communication systems relay on speed of ADC. For this, there exist many types of ADCs such as Counter type ADC, Successive approximation type ADC, Flash Type ADC and Wilkinson type ADC. Among them Flash Type ADC has high ADC rate but with a drawback of high power consumptions. This drawback of high power consumption for Flash Type ADC is over come in our proposed method where a new 6-bit Flash Type ADC with less complexity and a conversion rate of 1-GS/s is implemented which results in low power consumption using low power CMOS technology. Here we use tools such as Micro Wind and Digital Schematic.
机译:在当今的通信技术中,数字通信在有效地利用资源方面起着巨大的作用。在数字通信的许多方面,都涵盖了有线和无线通信技术。为了实现数字通信系统,必须进行模数转换,因为许多系统的来源本质上都是模拟的。数字通信系统的有效性取决于ADC的速度。为此,存在许多类型的ADC,例如计数器型ADC,逐次逼近型ADC,闪存型ADC和威尔金森型ADC。其中,闪存型ADC具有较高的ADC速率,但具有功耗高的缺点。我们建议的方法克服了闪存型ADC高功耗的缺点,在该方法中,实现了一种新的6位闪存型ADC,该ADC具有较低的复杂度和1-GS / s的转换速率,从而可在低功耗的情况下实现低功耗CMOS技术。在这里,我们使用诸如Micro Wind和Digital Schematic之类的工具。

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