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Amplifier 的代码
p5-35.sp
*HSPICE SIMULATION FILE EX5-12
.OPTIONS POST=2 LIST
*SINGLE OUTPUT OP AMPLIFIER
.lib '.\Mm0355V.l' TT
M1 1 1 VDD VDD PCH W=22U L=2U
M2 OUT 1 VDD VDD PCH W=22U L=2U
M3 1 VIN1 2 2 NCH W=47U L
p5-13.sp
*file ampg.sp pz analysis of a g source amplifier (03-29-2003) *
* reference:charles a. desoer & ernests. kuh, "basic circuit theory",
* mcgraw-hill, 1969, page 613, example 3.
* t
p5-35.sp
*HSPICE SIMULATION FILE EX5-12
.OPTIONS POST=2 LIST
*SINGLE OUTPUT OP AMPLIFIER
.lib '.\Mm0355V.l' TT
M1 1 1 VDD VDD PCH W=22U L=2U
M2 OUT 1 VDD VDD PCH W=22U L=2U
M3 1 VIN1 2 2 NCH W=47U L
p5-13.sp
*file ampg.sp pz analysis of a g source amplifier (03-29-2003) *
* reference:charles a. desoer & ernests. kuh, "basic circuit theory",
* mcgraw-hill, 1969, page 613, example 3.
* t
prb3_14.cir
Prb3_14.CIR - CE amplifier
vS 1 0 SIN(0V 4V 10kHz)
RS 1 2 100kohm
CC1 2 3 100uF
Q 4 3 0 QNPN
RF 3 4 180kohm
RC 4 5 2kohm
VCC 5 0 12V
CC2 4 6 100uF
RL 6 0 2kohm
.MODEL QNPN NPN() ; Defa
power_supply_for_amplifiers_b.htm
power supply for amplifiers [b]
hpa.m
% HPA.m
% high power amplifier function
function [out2_ani,out2_pni]=HPA(out_ani,out_pni)
out2_ani=(2*out_ani)/(out_ani^2+1);
out2_pni=(pi/3)*(out_ani/(out_ani^2+1))+out_pni;
m11_port.txt
// File : m11_port.c
#include
void init_port()
{
//
// don't select adc channel
//
ADCSEL |= 0xF0;
ADCSELH = 0xFF;
//
// Push-pull output
//
P0TY
m21_port.txt
// File : m21_port.c
#include
void init_port()
{
//
// don't select adc channel
//
ADCSEL |= 0xF0;
ADCSELH = 0xFF;
ADCHH = 0xFF;
ADCHL = 0xFF;
//
//
op-amp.cir
* Operational Amplifier. AC Analysis.
* BSIM3 testing, 3/16/96.
*Operational Amplifier
M1 bias1 1 cm cm nmos w=10u l=1u
M2 bias2 in2 cm cm nmos w=10u l=1u
M3 vdd bias1 bias1 vdd pmos w=2u l=1u
M4