Tsung-Chu Huang. Department of Electronic Engineering National Changhua University of Education /10/4-5 TCH NCUE

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1 Digital IC Design Tsung-Chu Huang Department of Electronic Engineering National Changhua University of Education /10/4-5 Page 1

2 Circuit Simulation Tools 1. Switch Level: Verilog, VHDL, SILOS, Susie, etc. 2. Transistor Level (Linear & Exponential) Simulation PowerMill, TimeMill, Star-Sim 3. Time-Domain Star-HSPICE, SBTSPICE, Spectre (RF) 4. Frequency Domain ADS, Harmonica, Eldo (RF) 5. Other Approaches Matlab Page 2

3 Introduction to SPICE 1. Simulation Program with IC Emphasis 2. Originated by Prof. D. O. Pederson, UCB, 70s. 3. SPICE I, II, III Public Domain in the Internet. 4. HSPICE: MetaSoft Inc., CA. Avant! Inc., CA. 5. PSPICE: MicroSim Inc., CA. OrCAD Inc. Cadence Inc. 6. IS-SPICE: IntuSoft, Inc. Interactivity Emphasized. Page 3

4 A Story Braton: Espresso Pederson: SPICE PLA-Based Synthesizer Addressing to Espresso? Page 4

5 Basic Flow * Circuit R K C N.TRAN.END REPORT Power=... Time= Compiler Simulator Page 5

6 Node Ordering Bi-terminal Device Q1 C B E M Area M1 D G S B M W= L= Page 6

7 Circuitry Description Some Device with Prefix P Pname Pname V N001 John Out Page 7

8 Implied Model Basic Devices with Prime Characteristics Some Device with Prefix P Pname With prime characteristics value X Pname V N001 John Out X e.g., L, R, C, V, I, S, E, F, G, H Page 8

9 Example A Low-Pass 1st-Order RC Circuit Vs 3 0 9V R C P Page 9

10 SPICE Modeling Pname N1 N2 Mname X Options.MODEL Mname MType ( Parameter1=..., +Parameter2=..., Parameter3=...,... etc.) Page 10

11 Basics: Orders T Tera G Giga M Mega K Kilo m Mini µ Micro n Nano p Pico f Femto- T G MEG K M, m U N P F = 3.14E 7 =. 314u Page 11

12 Basics: Physical Units Physical Var. Time Voltage Current Frequency Resistance Conductance Capacitance Inductance Prefix, Symbol Time, t V I f R G C L Units Second, s Volt, V Amp, A Hz Ohm, Ω Mho F Henry Page 12

13 Basics: More Prefix Physical Var. Prefix, Symbol Device Prefix, Symbol Time Time, t Diode D Voltage V VCVS E Current I CCCS F Frequency f VCCS G Resistance R CCVS H Conductance G MOS M Capacitance C BJT Q Inductance L Switch S Sub-circuit X Page 13

14 Basic Analyses Signal Steady state AC DC 0 Trasient state time Page 14

15 Basic Analyses 3 Major Analyses Basic Command X-Axis (Variable) Basic Application t t Transient Analy..TRAN Ts Tf TIME (s) Delay Measurement Vin Vin DC Analysis.DC Vs B E V, I, etc Transfer Function f f AC Analysis.AC Dec R B E Frequency (Hz) Bode Plot Page 15

16 Extension Analyses 3 Major Analyses X-Axis (Variable) Extension Statistical t Transient Analy. TIME (s).monte Carlo Vin.OP DC Analysis V, I, etc.tf.sens f.parameter.temp AC Analysis Frequency (Hz).FOUR.Noise.PZ.DISTO Page 16

17 Basic SPICE Source * Circuit Name *Netlist M MN.Model MN NMOS... R3 0 IN 33K Cb Out 0 2.3nF... * Remark prefixed with a star sign TRAN 1ps 2us END Page 17

18 Source Function PieceWise Line, PWL(0 0 1u ) SIN( K) PULSE (L, H, D, R, F, W, P) Page 18

19 Homewrok #2 1. Familiarize any SPICE Tool. Manually or by a C- or Perl- Script, makeup or update SPICE programs to select CMOS inverters with Gate-Inversion Voltages at 1.5, 2.0, 2.5, 3.0, 3.5 Volts under a 5V technology. Customize the rest given conditions. Due to 10/19 (Tue.) Page 19

20 Quick Tutorial using HSPICE Open a SPICE File Edit a SPICE File Page 20

21 Basic Structure of a SPICE File Circuit name Netlist Remark initialized by * Transient analysis Use awaves to display high-resolution plots End of circuit file Page 21

22 Invoke Simulation Inspect the result or find the word error to read the error message. Page 22

23 Invoke AvanWaves Page 23

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