tailieunhanh - THE INVERTERS

Inverter Technology variable power supply voltage and frequency adjustment can not be fixed, the power supply voltage and frequency are required to use energy. Advantages of this technology is microwave lighter, smaller but wider oven cavity, energy and cooking time, especially as a result of better food. | THE INVERTERS DIGITAL GATES Fundamental Parameters Functionality Reliability, Robustness Area Performance Speed (delay) Power Consumption Energy Digital Integrated Circuits © Prentice Hall 1995 Introduction Noise in Digital Integrated Circuits Digital Integrated Circuits © Prentice Hall 1995 Introduction DC Operation: Voltage Transfer Characteristic Digital Integrated Circuits © Prentice Hall 1995 Introduction Mapping between analog and digital signals Digital Integrated Circuits © Prentice Hall 1995 Introduction Definition of Noise Margins Digital Integrated Circuits © Prentice Hall 1995 Introduction The Regenerative Property Digital Integrated Circuits © Prentice Hall 1995 Introduction Fan-in and Fan-out Digital Integrated Circuits © Prentice Hall 1995 Introduction The Ideal Gate Digital Integrated Circuits © Prentice Hall 1995 Introduction VTC of Real Inverter Digital Integrated Circuits © Prentice Hall 1995 Introduction Delay Definitions Digital Integrated Circuits © Prentice . | THE INVERTERS DIGITAL GATES Fundamental Parameters Functionality Reliability, Robustness Area Performance Speed (delay) Power Consumption Energy Digital Integrated Circuits © Prentice Hall 1995 Introduction Noise in Digital Integrated Circuits Digital Integrated Circuits © Prentice Hall 1995 Introduction DC Operation: Voltage Transfer Characteristic Digital Integrated Circuits © Prentice Hall 1995 Introduction Mapping between analog and digital signals Digital Integrated Circuits © Prentice Hall 1995 Introduction Definition of Noise Margins Digital Integrated Circuits © Prentice Hall 1995 Introduction The Regenerative Property Digital Integrated Circuits © Prentice Hall 1995 Introduction Fan-in and Fan-out Digital Integrated Circuits © Prentice Hall 1995 Introduction The Ideal Gate Digital Integrated Circuits © Prentice Hall 1995 Introduction VTC of Real Inverter Digital Integrated Circuits © Prentice Hall 1995 Introduction Delay Definitions Digital Integrated Circuits © Prentice Hall 1995 Introduction Ring Oscillator Digital Integrated Circuits © Prentice Hall 1995 Introduction Power Dissipation Digital Integrated Circuits © Prentice Hall 1995 Introduction CMOS INVERTER Digital Integrated Circuits © Prentice Hall 1995 Introduction The CMOS Inverter: A First Glance Digital Integrated Circuits © Prentice Hall 1995 Introduction CMOS Inverters Polysilicon In Out Metal1 V DD GND PMOS NMOS m m =2l Digital Integrated Circuits © Prentice Hall 1995 Introduction Switch Model of CMOS Transistor Digital Integrated Circuits © Prentice Hall 1995 Introduction CMOS Inverter: Steady State Response Digital Integrated Circuits © Prentice Hall 1995 Introduction CMOS Inverter: Transient Response Digital Integrated Circuits © Prentice Hall 1995 Introduction CMOS Properties Full rail-to-rail swing Symmetrical VTC Propagation delay function of load capacitance and resistance of transistors No static power dissipation Direct path current during switching Digital Integrated Circuits

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