2007-12-13 Stefan Jahn <stefan@lkcc.org>

* mod_amp.cpp (mod_amp): Added new Modular OpAmp verilog device.
        Thanks to Mike Brinson!


git-svn-id: https://qucs.svn.sourceforge.net/svnroot/qucs/trunk@1379 b5b04e8c-4942-46c9-ab4f-83783d557d1c
This commit is contained in:
ela 2007-12-13 18:13:53 +00:00
parent 0d749e3f16
commit b00ddd8e64
27 changed files with 1361 additions and 6 deletions

3
NEWS
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@ -26,7 +26,8 @@ files.
Version 0.0.13
--------------
* new components: file based current and voltage sources
* new components: file based current and voltage sources, modular
opamp
Version 0.0.12
--------------

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@ -44,7 +44,7 @@ XPMS = ac_voltage.png arrow.png capacitor.png dc_current.png dc_voltage.png \
dflipflop.png jkflipflop.png coupler.png coaxial.png am_mod.png pm_mod.png \
vhdlfile.png subcircuit.png optimize.png tline_4port.png twistedpair.png \
bondwire.png npn_therm.png npnsub_therm.png iexp.png vexp.png edd.png \
vfile.png ifile.png
vfile.png ifile.png mod_amp.png
# toolbar pictures
PNGS = fileopen.png filesave.png editdelete.png editcut.png editcopy.png \

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@ -1,3 +1,8 @@
2007-12-13 Stefan Jahn <stefan@lkcc.org>
* mod_amp.cpp (mod_amp): Added new Modular OpAmp verilog device.
Thanks to Mike Brinson!
2007-10-23 Stefan Jahn <stefan@lkcc.org>
* ifile.cpp (iFile): Added new file based current source.

View File

@ -47,7 +47,7 @@ libcomponents_a_SOURCES = phaseshifter.cpp gyrator.cpp componentdialog.cpp \
switch.cpp relais.cpp am_modulator.cpp pm_modulator.cpp opt_sim.cpp \
optimizedialog.cpp tline_4port.cpp twistedpair.cpp bondwire.cpp \
hicumL2p1.cpp HBT_X.cpp verilogfile.cpp vexp.cpp iexp.cpp eqndefined.cpp \
vfile.cpp ifile.cpp
vfile.cpp ifile.cpp mod_amp.cpp
nodist_libcomponents_a_SOURCES = $(MOCFILES)
@ -67,7 +67,7 @@ noinst_HEADERS = $(MOCHEADERS) resistor.h components.h capacitor.h vccs.h \
coupler.h rs_flipflop.h d_flipflop.h jk_flipflop.h coaxialline.h vprobe.h \
switch.h relais.h am_modulator.h pm_modulator.h opt_sim.h tline_4port.h \
twistedpair.h bondwire.h hicumL2p1.h HBT_X.h verilogfile.h vexp.h iexp.h \
eqndefined.h vfile.h ifile.h
eqndefined.h vfile.h ifile.h mod_amp.h
INCLUDES = $(X11_INCLUDES) $(QT_INCLUDES) -I$(top_srcdir)/qucs

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@ -1571,6 +1571,8 @@ Component* getComponentFromName(QString& Line)
break;
case 'H' : if(cstr == "BT_X") c = new HBT_X();
break;
case 'm' : if(cstr == "od_amp") c = new mod_amp();
break;
}
if(!c) {
QMessageBox::critical(0, QObject::tr("Error"),

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@ -127,5 +127,6 @@
#include "hicumL2p1.h"
#include "HBT_X.h"
#include "mod_amp.h"
#endif

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@ -44,7 +44,7 @@ SOURCES = phaseshifter.cpp gyrator.cpp componentdialog.cpp \
switch.cpp relais.cpp am_modulator.cpp pm_modulator.cpp opt_sim.cpp \
optimizedialog.cpp tline_4port.cpp twistedpair.cpp bondwire.cpp \
hicumL2p1.cpp HBT_X.cpp verilogfile.cpp vexp.cpp iexp.cpp eqndefined.cpp \
vfile.cpp ifile.cpp
vfile.cpp ifile.cpp mod_amp.cpp
# List of special Qt files.
MOCHEADERS = componentdialog.h spicedialog.h optimizedialog.h spicefile.h

102
qucs/components/mod_amp.cpp Normal file
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@ -0,0 +1,102 @@
/*
* mod_amp.cpp - device implementations for mod_amp module
*
* This is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2, or (at your option)
* any later version.
*
*/
#include "mod_amp.h"
mod_amp::mod_amp()
{
Description = QObject::tr ("Modular Operational Amplifier verilog device");
Props.append (new Property ("GBP", "1e6", false,
QObject::tr ("Gain bandwidth product (Hz)")));
Props.append (new Property ("AOLDC", "106.0", false,
QObject::tr ("Open-loop differential gain at DC (dB)")));
Props.append (new Property ("FP2", "3e6", false,
QObject::tr ("Second pole frequency (Hz)")));
Props.append (new Property ("RO", "75", false,
QObject::tr ("Output resistance (Ohm)")));
Props.append (new Property ("CD", "1e-12", false,
QObject::tr ("Differential input capacitance (F)")));
Props.append (new Property ("RD", "2e6", false,
QObject::tr ("Differential input resistance (Ohm)")));
Props.append (new Property ("IOFF", "20e-9", false,
QObject::tr ("Input offset current (A)")));
Props.append (new Property ("IB", "80e-9", false,
QObject::tr ("Input bias current (A)")));
Props.append (new Property ("VOFF", "7e-4", false,
QObject::tr ("Input offset voltage (V)")));
Props.append (new Property ("CMRRDC", "90.0", false,
QObject::tr ("Common-mode rejection ratio at DC (dB)")));
Props.append (new Property ("FCM", "200.0", false,
QObject::tr ("Common-mode zero corner frequency (Hz)")));
Props.append (new Property ("PSRT", "5e5", false,
QObject::tr ("Positive slew rate (V/s)")));
Props.append (new Property ("NSRT", "5e5", false,
QObject::tr ("Negative slew rate (V/s)")));
Props.append (new Property ("VLIMP", "14", false,
QObject::tr ("Positive output voltage limit (V)")));
Props.append (new Property ("VLIMN", "-14", false,
QObject::tr ("Negative output voltage limit (V)")));
Props.append (new Property ("ILMAX", "35e-3", false,
QObject::tr ("Maximum DC output current (A)")));
Props.append (new Property ("CSCALE", "50", false,
QObject::tr ("Current limit scale factor")));
createSymbol ();
tx = x2 + 4;
ty = y1 + 4;
Model = "mod_amp";
Name = "OP";
}
Component * mod_amp::newOne()
{
mod_amp * p = new mod_amp();
p->Props.getFirst()->Value = Props.getFirst()->Value;
p->recreate(0);
return p;
}
Element * mod_amp::info(QString& Name, char * &BitmapFile, bool getNewOne)
{
Name = QObject::tr("Modular OpAmp");
BitmapFile = (char *) "mod_amp";
if(getNewOne) return new mod_amp();
return 0;
}
void mod_amp::createSymbol()
{
Lines.append(new Line(-30,-20,-20,-20,QPen(QPen::darkBlue,2)));
Lines.append(new Line(-30, 20,-20, 20,QPen(QPen::darkBlue,2)));
Lines.append(new Line( 30, 0, 40, 0,QPen(QPen::darkBlue,2)));
Lines.append(new Line(-20,-35,-20, 35,QPen(QPen::darkBlue,2)));
Lines.append(new Line(-20,-35, 30, 0,QPen(QPen::darkBlue,2)));
Lines.append(new Line(-20, 35, 30, 0,QPen(QPen::darkBlue,2)));
Lines.append(new Line(-16, 19, -9, 19,QPen(QPen::black,2)));
Lines.append(new Line(-16,-19, -9,-19,QPen(QPen::red,2)));
Lines.append(new Line(-13,-22,-13,-15,QPen(QPen::red,2)));
Lines.append(new Line(-10, -10, -10, 10,QPen(QPen::red,2)));
Lines.append(new Line(-10, -10, 0, 0,QPen(QPen::red,2)));
Lines.append(new Line( 0, 0, 10, -10,QPen(QPen::red,2)));
Lines.append(new Line( 10, -10, 10, 10,QPen(QPen::red,2)));
Ports.append(new Port(-30,-20));
Ports.append(new Port(-30, 20));
Ports.append(new Port( 40, 0));
x1 = -30; y1 = -38;
x2 = 30; y2 = 38;
}

27
qucs/components/mod_amp.h Normal file
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@ -0,0 +1,27 @@
/*
* mod_amp.h - device definitions for mod_amp module
*
* This is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2, or (at your option)
* any later version.
*
*/
#ifndef mod_amp_H
#define mod_amp_H
#include "component.h"
class mod_amp : public Component
{
public:
mod_amp();
~mod_amp() { };
Component* newOne();
static Element* info(QString&, char* &, bool getNewOne=false);
protected:
void createSymbol();
};
#endif /* mod_amp_H */

View File

@ -340,7 +340,8 @@ pInfoFunc nonlinearComps[] =
&BJTsub::info_pnp, &JFET::info, &JFET::info_p,
&MOSFET::info, &MOSFET::info_p, &MOSFET::info_depl,
&MOSFET_sub::info, &MOSFET_sub::info_p, &MOSFET_sub::info_depl,
&OpAmp::info, &hicumL2p1::info, &HBT_X::info, &EqnDefined::info};
&OpAmp::info, &hicumL2p1::info, &HBT_X::info, &EqnDefined::info,
&mod_amp::info, 0};
pInfoFunc digitalComps[] =
{&Digi_Source::info, &Logical_Inv::info, &Logical_OR::info,

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@ -5236,6 +5236,82 @@ Use: qucsedit [-r] fitxer
<source>File Based Current Source</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Maximum DC output current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Current limit scale factor</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular OpAmp</source>
<translation type="unfinished"></translation>
</message>
</context>
<context>
<name>QucsActions</name>

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@ -5454,6 +5454,82 @@ Použití: qucsedit [-r] soubor
<source>File Based Current Source</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Maximum DC output current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Current limit scale factor</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular OpAmp</source>
<translation type="unfinished"></translation>
</message>
</context>
<context>
<name>QucsActions</name>

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@ -5494,6 +5494,82 @@ Verwendung: qucsedit [-r] Datei
<source>File Based Current Source</source>
<translation>Dateibasierte Stromquelle</translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Maximum DC output current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Current limit scale factor</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular OpAmp</source>
<translation type="unfinished"></translation>
</message>
</context>
<context>
<name>QucsActions</name>

View File

@ -5239,6 +5239,82 @@ Use: qucsedit [-r] archivo
<source>File Based Current Source</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Maximum DC output current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Current limit scale factor</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular OpAmp</source>
<translation type="unfinished"></translation>
</message>
</context>
<context>
<name>QucsActions</name>

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@ -5264,6 +5264,82 @@ Invocation : qucsedit [-r] fichier
<source>File Based Current Source</source>
<translation>Fichier de courants</translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Maximum DC output current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Current limit scale factor</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular OpAmp</source>
<translation type="unfinished"></translation>
</message>
</context>
<context>
<name>QucsActions</name>

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@ -5111,6 +5111,82 @@ Usage: qucsedit [-r] file
<source>File Based Current Source</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative slew rate (V/s)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Positive output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Negative output voltage limit (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Maximum DC output current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Current limit scale factor</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular OpAmp</source>
<translation type="unfinished"></translation>
</message>
</context>
<context>
<name>QucsActions</name>

View File

@ -5234,6 +5234,82 @@ Digitális szimuláció</translation>
<source>File Based Current Source</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Modular Operational Amplifier verilog device</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Gain bandwidth product (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Open-loop differential gain at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Second pole frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Output resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input capacitance (F)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Differential input resistance (Ohm)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input bias current (A)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Input offset voltage (V)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode rejection ratio at DC (dB)</source>
<translation type="unfinished"></translation>
</message>
<message>
<source>Common-mode zero corner frequency (Hz)</source>
<translation type="unfinished"></translation>
</message>
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View File

@ -5406,6 +5406,82 @@ Usage: qucsedit [-r] file
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View File

@ -5189,6 +5189,82 @@ Usage: qucsedit [-r] file
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View File

@ -5296,6 +5296,82 @@ Stosowanie: qucsedit [-r] plik
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View File

@ -5119,6 +5119,82 @@ Usage: qucsedit [-r] file
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View File

@ -5195,6 +5195,82 @@ Folosire: qucsedit [-r] file
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View File

@ -5493,6 +5493,82 @@ Usage: qucsedit [-r] file
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View File

@ -5072,6 +5072,82 @@ Usage: qucsedit [-r] file
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View File

@ -5082,6 +5082,82 @@ Kullanım: qucsedit [-r] kütük
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View File

@ -5094,6 +5094,82 @@ Usage: qucsedit [-r] file
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