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ltspice/lib/sub/ADI1.lib
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jens 16b6516d55 Initial import
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2021-02-15 10:42:15 +00:00

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* AD549 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 5/30V, JFET, OP, Low Ib, Precision, 1X
* Developed by:
* Revision History: 08/10/2012 - Updated to new header style
* 1.1 ADSJ-HH 02/11 Changed some comment lines; delete spurious character on E3 line
* 1.0 ADSJ-HH 08/09
* Copyright 2009, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes: CAUTION!! To aid in convergence, most SPICE simulators
* add conductance.
* This is GMIN, and the default value is usually 1E-12. To properly
* simulate the low input bias current and low current noise, the
* Spice simulator options have to be set to the following:
* .OPTIONS GMIN=0.1f
* .OPTIONS ABSTOL=0.001pA
* In many simulations, .OPTIONS STEPGMIN may have to be used.
*
* Not Modeled:
*
* Parameters modeled include:
*This model simulates typical values at Vs=+/-15V and 25 C only.
* GBW & PM, Ibias, en, in, Ccm, Cdm, Isc, IVR
* Not simulated/implemented - performance over temp and supply voltage
*
* END Notes
*
* Node assignments
* Non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD549 1 2 99 50 30
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
RD1 4 50 4.621E+04
RD2 6 50 4.621E+04
Cdiff 1 2 5.400E-13; for 1pF total diff.
Cin1 1 50 0.830E-12
Cin2 2 50 0.830E-12
I1 99 8 1.300E-04
IOS 1 2 10.00E-15
EOS 7 1 POLY(3) (22, 98) (73, 98) (81, 0) 45E-6 1 1 1 1
V1 9a 8 DC 4.1
D1 9a 99 DX
J6 6 2 8 JX; D G S
J7 4 7 8 JX
Cph 4 5z 0.400E-13
Rph 6 5z 1.00E+03
GB2 7 50 POLY(3) (4, 7) (8, 7) (50, 7) 1.0E-14 -1E-16 -1E-16 -2E-16
*
EREF 98 0 24 0 1
*
* SECOND STAGE & POLE
*
R5 9 98 8.615E+06
C3 9 98 1.000E-08
G1 (9 98) (4 6) 4.500E-03
V103 132 98 12.3
D103 9 132 DX
V104 133 98 -12.5
D104 133 9 DX
*
* VOLTAGE NOISE GENERATOR
*
VN1 41 0 DC 2
DN1 41 81 DEN
DN2 81 43 DEN
VN2 0 43 DC 2
*
* COMMON-MODE GAIN NETWORK WITH ZERO
*
R10 72 73 4.421E+03
R20 73 98 1.592E-02
C10 72 73 1.000E-06
E3 72 98 POLY(2) (1, 98) (2, 98) 3.449E-00 3.449E-00
*
* PSRR WITH ZERO
*
EPSY 21 98 POLY(1) (50,99) -13.07E+00 1.332694E-01
RPS1 21 22 5.134E+03
RPS2 22 98 1.061E-01
CPS1 21 22 1.000E-06
*
* POLE
*
R13 18 98 1.000E+03
C9 18 98 1.100E-12
G5 98 18 (9 98) 1.000E-03
*
* OUTPUT STAGE
*
R14 24 99 500E3
R15 24 50 500E3
GSY 99 50 POLY(1) (99 50) 468.0E-6 -0.5E-06
R5a 29 99 200
R6a 29 50 200
L1 29 30 1E-09; 30 is output
G6 27 50 18 29 5.000E-03
G7 28 50 29 18 5.000E-03
G5a 29 99 99 18 5.000E-03
G6a 50 29 18 50 5.000E-03
*
V4 25 29 1.244
D5 18 25 DX
V5 29 26 1.244
D6 26 18 DX
F1 29 0 V4 1.00
F2 0 29 V5 1.00
*
D3 99 27 DX
D4 99 28 DX
D7 50 27 DY
D8 50 28 DY
*
* MODELS USED
*
.MODEL JX PJF(BETA=3.00E-04 VTO=-1.000 IS=2E-15 RD=1
+ RS=1 CGD=2E-13 CGS=2E-13)
.MODEL DX D(IS=1E-15 RS=0 CJO=1E-12)
.MODEL DY D(IS=1E-15 BV=50 RS=10 CJO=1E-12)
.MODEL DEN D(IS=1E-12 RS=134100, KF=2.423E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=12, KF=0 AF=1)
.ENDS AD549
*$
* AD712 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 10/30V, BIP, OP, Fast, Precision, 2X
* Developed by: JCB/JW/PMI
* Revision History: 08/10/2012 - Updated to new header style
* 2.0 (04/1992) - Convert model into ADSpice format
* Add noise generators
* Copyright 1990, 2012 by Analog Devices.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD712 1 2 99 50 30
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
R3 5 50 6.631
R4 6 50 6.631
CIN 1 2 5.5E-12
I1 99 4 100E-3
IOS 1 2 2.5E-12
EOS 60 1 POLY(1) 17 24 100E-6 1
EN 7 60 42 0 1
GN1 0 1 45 0 1E-6
GN2 0 2 48 0 1E-6
J1 5 2 4 JX
J2 6 7 4 JX
GB1 2 50 POLY(3) 4,2 5,2 50,2 0 1E-12 1E-12 1E-12
GB2 7 50 POLY(3) 4,7 6,7 50,7 0 1E-12 1E-12 1E-12
*
EREF 98 0 24 0 1
*
* VOLTAGE NOISE GENERATOR
*
VN1 41 0 DC 2
DN1 41 42 DEN
DN2 42 43 DEN
VN2 0 43 DC 2
*
* CURRENT NOISE GENERATOR
*
VN3 44 0 DC 2
DN3 44 45 DIN
DN4 45 46 DIN
VN4 0 46 DC 2
*
* CURRENT NOISE GENERATOR
*
VN5 47 0 DC 2
DN5 47 48 DIN
DN6 48 49 DIN
VN6 0 49 DC 2
*
* SECOND STAGE & POLE AT 12 HZ
*
R5 9 98 2.65E6
C3 9 98 5.00E-9
G1 98 9 5 6 1.51E-1
V2 99 8 1.3
V3 10 50 1.9
D1 9 8 DX
D2 10 9 DX
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 300 HZ
*
R11 16 17 1E6
C8 16 17 5.318E-10
R12 17 98 1
E3 16 98 POLY(2) 1 98 2 98 0 9.975 9.975
*
* POLE AT 15 MHZ
*
R13 18 98 1E3
C9 18 98 10.61E-12
G5 98 18 9 24 1E-3
*
* OUTPUT STAGE
*
R14 24 99 500E3
R15 24 50 500E3
CF 24 0 1E-6
ISY 99 50 -95E-3
R16 29 99 110
R17 29 50 110
L1 29 30 1E-8
G6 27 50 18 29 9.09E-3
G7 28 50 29 18 9.09E-3
G8 29 99 99 18 9.09E-3
G9 50 29 18 50 9.09E-3
V4 25 29 0.675
V5 29 26 0.675
D3 18 25 DX
D4 26 18 DX
D5 99 27 DX
D6 99 28 DX
D7 50 27 DY
D8 50 28 DY
F1 29 0 V4 1
F2 0 29 V5 1
*
* MODELS USED
*
.MODEL JX PJF(BETA=1.14E-1 VTO=-2.000 IS=20E-12 RD=0
+ RS=0 CGD=1E-12 CGS=1E-12)
.MODEL DX D(IS=1E-15 RS=0 CJO=1E-12)
.MODEL DY D(IS=1E-15 BV=50 RS=10 CJO=1E-12)
.MODEL DEN D(IS=1E-12 RS=30909 KF=2.651E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=12090 KF=0 AF=1)
.ENDS AD712
* AD713 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 10/30V, BIP, OP, Fast, Precision, 4X
* Developed by: JLW / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 2.0 (03/1991) - Corrected VOS to be 0.2mV
* Copyright 1991, 2012 by Analog Devices.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
* This version of the AD713 model simulates the typical
* parameters corresponding to those in the device data
* sheet.
*
* END Notes
*
* Node assignments
* connections: non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD713 13 15 12 16 14
*#ASSOC Category="Op-amps" symbol=opamp
*
VOS 15 8 DC 0.2E-3
EC 9 0 (14,0) 1
C1 6 7 .5E-12
RP 16 12 12E3
GB 11 0 (3,0) 1.67E3
RD1 6 16 16E3
RD2 7 16 16E3
ISS 12 1 DC 100E-6
CCI 3 11 150E-12
GCM 0 3 (0,1) 1.76E-9
GA 3 0 (7,6) 2.3E-3
RE 1 0 2.5E6
RGM 3 0 1.69E3
VC 12 2 DC 2.8
VE 10 16 DC 2.8
RO1 11 14 25
CE 1 0 2E-12
RO2 0 11 30
RS1 1 4 5.77E3
RS2 1 5 5.77E3
J1 6 13 4 FET
J2 7 8 5 FET
DC 14 2 DIODE
DE 10 14 DIODE
DP 16 12 DIODE
D1 9 11 DIODE
D2 11 9 DIODE
IOS 15 13 5E-12
.MODEL DIODE D()
.MODEL FET PJF(VTO=-1 BETA=1E-3 IS=40E-12)
.ENDS AD713
* AD746 SPICE Macro-model
* Description: Amplifier
* Generic Desc: Dual 500 ns Settling, BiFET Op Amp
* Developed by: JLW / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 2.0 (03/1991) - Corrected VOS to be 0.25mV
* Copyright 1991, 2012 by Analog Devices.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
* This version of the AD746 model simulates the typical
* parameters corresponding to those in the device data
* sheet.
*
* END Notes
*
* Node assignments
* connections: non-inverting input
* | inverting input
* | | positive power supply
* | | | negative power supply
* | | | | output
* | | | | |
.subckt AD746 11 14 10 16 13
*#ASSOC Category="Op-amps" symbol=opamp
*
VOS 14 7 DC 0.25E-3
EC 8 0 (13,0) 1
C1 5 6 0.33E-12
GB 12 0 (15,0) 1.67E3
RD1 5 16 16E3
RD2 6 16 16E3
ISS 10 1 DC 100E-6
GCM 0 15 (0,1) 1.76E-9
GA 15 0 (6,5) 1.75E-3
RE 1 0 2.5E6
RGM 15 0 1.76E3
VC 10 2 DC 2.8
VE 9 16 DC 2.8
RO1 12 13 25
CE 1 0 1E-12
RO2 0 12 30
RS1 1 3 5.77E3
RS2 1 4 5.77E3
CCI 15 12 40E-12
RP 16 10 8.5E3
J1 5 11 3 FET
J2 6 7 4 FET
DC 13 2 DIODE
DE 9 13 DIODE
DP 16 10 DIODE
D1 8 12 DIODE
D2 12 8 DIODE
.MODEL DIODE D()
.MODEL FET PJF(VTO=-1 BETA=1E-3 IS=110E-12)
.ENDS AD746
* AD795 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 8/30V, JFET, OP, Low Pwr, Low Noise, 1X
* Developed by: JOM / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (11/1994)
* Copyright 1990, 2012 by Analog Devices.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD795 1 2 99 50 30
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE & POLE AT 40 MHZ
*
R3 5 50 .719
R4 6 50 .719
CIN 1 2 2E-12
C2 5 6 1.383E-9
I1 99 4 100E-3
IOS 1 2 0.1E-12
EOS 65 1 POLY(1) 17 24 50E-6 1
J1 5 2 4 JX
J2 6 7 4 JX
EN 7 65 43 0 1
GN1 0 1 47 0 1E-6
GN2 0 2 61 0 1E-6
GB1 2 50 POLY(3) 4,2 5,2 50,2 0 1E-12 1E-12 1E-12
GB2 7 50 POLY(3) 4,7 6,7 50,7 0 1E-12 1E-12 1E-12
*
EREF 98 0 24 0 1
*
* VOLTAGE NOISE GENERATOR
*
VN1 41 0 DC 2
RS1 41 42 8E3
RS2 42 43 1.2E9
CS1 42 43 398E-11
RS3 43 44 1.2E9
CS2 43 44 398E-11
RS4 44 45 8E3
VN2 0 45 DC 2
*
* CURRENT NOISE GENERATOR
*
VN3 46 0 DC 2
RN5 46 47 41.5
RN6 47 48 41.5
VN4 0 48 DC 2
*
* CURRENT NOISE GENERATOR
*
VN5 60 0 DC 2
RN7 60 61 41.5
RN8 61 62 41.5
VN6 0 62 DC 2
*
* SECOND STAGE & POLE AT 2.213 HZ
*
R5 9 98 719203
C3 9 98 1.00E-7
G1 98 9 5 6 1.39
V2 99 8 3.025
V3 10 50 3.025
D1 9 8 DX
D2 10 9 DX
*
* NEGATIVE ZERO AT 15 MHZ
*
R6 11 12 1E6
R7 12 98 1
E2 11 98 9 24 1E6
VX1 84 0
EX1 83 0 11 12 1
FX1 11 12 VX1 -1
CX1 83 84 10.6E-15
*
* POLE AT 20 MHZ
*
R8 13 98 1E3
C5 13 98 7.96E-12
G2 98 13 12 24 1E-3
*
* POLE AT 20 MHZ
*
R9 14 98 1E3
C6 14 98 7.96E-12
G3 98 14 13 24 1E-3
*
* POLE AT 20 MHZ
*
R10 15 98 1E3
C7 15 98 7.96E-12
G4 98 15 14 24 1E-3
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 300 HZ
*
R11 16 17 1E6
C8 16 17 5.3E-10
R12 17 98 1
E3 16 98 POLY(2) 1 98 2 98 0 1.585 1.585
*
* POLE AT 20 MHZ
*
R13 18 98 1E3
C9 18 98 7.96E-12
G5 98 18 15 24 1E-3
*
* OUTPUT STAGE
*
R14 24 99 2000E3
R15 24 50 2000E3
FSY 99 50 POLY(2) V7 V8 -98.7E-3 1 1
R16 29 99 360
R17 29 50 360
L1 29 30 1E-8
G8 29 99 99 18 2.78E-3
G9 50 29 18 50 2.78E-3
V4 25 29 2.0
V5 29 26 2.0
D3 18 25 DX
D4 26 18 DX
F1 29 0 V4 1
F2 0 29 V5 1
G6 98 70 29 18 2.78E-3
D5 70 71 DX
D6 72 70 DX
V7 71 98 DC 0
V8 98 72 DC 0
*
* MODELS USED
*
.MODEL JX PJF(BETA=9.67 VTO=-2.000 IS=0.50E-12 RD=0.1
+ RS=0.1 CGD=1E-15 CGS=1E-15)
.MODEL DX D(IS=1E-15 RS=10 CJO=1E-15)
.ENDS AD795
* AD820 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 5/30V, JFET, OP, S SPLY, RRO, 1X
* Developed by: JCB / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (08/1991)
* Copyright 1993, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD820 1 2 99 50 25
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE & POLE AT 3 MHZ
*
R3 5 99 2456
R4 6 99 2456
CIN 1 2 5E-12
C2 5 6 10.8E-12
I1 4 50 108E-6
IOS 1 2 1E-12
EOS 7 1 POLY(1) (12,98) 100E-6 1
J1 4 2 5 JX
J2 4 7 6 JX
*
EREF 98 0 30 0 1
*
* GAIN STAGE & POLE AT 124 HZ
*
R5 9 98 2.46E6
C3 9 25 35E-12
G1 98 9 6 5 4.07E-4
V1 8 98 0
V2 98 10 -1
D1 9 10 DX
D2 8 9 DX
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1 KHZ
*
R21 11 12 1E6
R22 12 98 1
C14 11 12 159E-12
E13 11 98 POLY(2) (2,98) (1,98) 0 50 50
*
* POLE AT 10 MHZ
*
R23 18 98 1E6
C15 18 98 15.9E-15
G15 98 18 9 98 1E-6
*
* OUTPUT STAGE
*
ES 26 51 POLY(1) (18,98) 1.72 1
RS 26 22 500
V3 23 51 1.1
V4 21 23 1.36
C16 20 25 2E-12
C17 24 25 2E-12
RG1 20 97 1E8
RG2 24 97 1E8
Q1 20 20 97 PNP
Q2 20 21 22 NPN
Q3 24 23 22 PNP
Q4 24 24 51 NPN
Q5 25 20 97 PNP 20
Q6 25 24 51 NPN 20
VP 96 97 0
VN 51 52 0
EP 96 0 POLY(1) (99,0) 0.01 1
EN 52 0 POLY(1) (50,0) -0.015 1
*
R25 30 99 5E6
R26 30 50 5E6
FSY1 99 0 VP 1
FSY2 0 50 VN 1
*
* MODELS USED
*
.MODEL JX NJF(BETA=7.67E-4 VTO=-2.000 IS=1E-12)
.MODEL NPN NPN(BF=120 VAF=150 VAR=15 RB=2E3
+ RE=4 RC=200 IS=1E-16)
.MODEL PNP PNP(BF=80 VAF=150 VAR=15 RB=2E3
+ RE=4 RC=900 IS=1E-16)
.MODEL DX D(IS=1E-15)
.ENDS AD820
* AD822 SPICE Macro-model
* Description: Amplifier
* Generic Desc: J5/30V, JFET, OP, S SPLY, RRO, 2X
* Developed by: ARG / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (02/1995)
* Copyright 1995, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD822 1 2 99 50 25
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE & POLE AT 5 MHZ
*
R3 5 99 2456
R4 6 99 2456
CIN 1 2 5E-12
C2 5 6 6.48E-12
I1 4 50 108E-6
IOS 1 2 1E-12
EOS 7 1 POLY(1) (12,98) 100E-6 1
J1 5 2 4 JX
J2 6 7 4 JX
GB1 50 2 POLY(3) (2,4) (2,5) (2,50) 0 1E-12 1E-12 1E-12
GB2 50 7 POLY(3) (7,4) (7,5) (7,50) 0 1E-12 1E-12 1E-12
*
* GAIN STAGE & POLE AT 13.4 HZ
*
EREF 98 0 (30,0) 1
R5 9 98 2.313E6
C3 9 25 32E-12
G1 98 9 (6,5) 4.07E-4
V1 8 98 0
V2 98 10 -1
D1 9 10 DX
D2 8 9 DX
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1 KHZ
*
R21 11 12 1E6
R22 12 98 100
C14 11 12 159E-12
E13 11 98 POLY(2) (2,98) (1,98) 0 0.5 0.5
*
* POLE AT 10 MHZ
*
R23 18 98 1E6
C15 18 98 15.9E-15
G15 98 18 (9,98) 1E-6
*
* OUTPUT STAGE
*
ES 26 51 POLY(1) (18,98) 1.72 1
RS 26 22 500
V3 23 51 1.03951
V4 21 23 1.36
C16 20 25 2E-12
C17 24 25 2E-12
RG1 20 97 1E8
RG2 24 97 1E8
Q1 20 20 97 PNP
Q2 20 21 22 NPN
Q3 24 23 22 PNP
Q4 24 24 51 NPN
Q5 25 20 97 PNP 20
Q6 25 24 51 NPN 20
VP 96 97 0
VN 51 52 0
EP 96 0 POLY(1) (99,0) 0.01 1
EN 52 0 POLY(1) (50,0) -0.015 1
R25 30 99 63.5E3
R26 30 50 63.5E3
FSY1 99 0 VP 1
FSY2 0 50 VN 1
*
* MODELS USED
*
.MODEL JX NJF(BETA=7.67E-4 VTO=-2.000 IS=1E-12)
.MODEL NPN NPN(BF=120 VAF=150 VAR=15 RB=2E3 RE=4 RC=200)
.MODEL PNP PNP(BF=120 VAF=150 VAR=15 RB=2E3 RE=4 RC=900)
.MODEL DX D(IS=1E-15)
.ENDS AD822
* AD823 Spice Macro-model
* Description: Amplifier
* Generic Desc: Dual 16MHz FET amplifier
* Developed by: SMR
* Revision History: 08/10/2012 - Updated to new header style
* 4.0 (04/1997)
* Copyright 1996, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement.
* Use of this model indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
* Distortion is not characterized
*
* Parameters modeled include:
* open loop gain and phase vs frequency
* output clamping voltage and current input common mode range
* CMRR vs freq
* I bias vs Vcm in
* Slew rate
* Output currents are reflected to V supplies
* Voltage and current noise density are accurate for the entire bandwidth of the AD823
* Vos is static and will not vary with Vcm input
* Step response is modeled at unity gain w/1k load
* This model of the AD823 works at 3.3v
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD823 1 2 99 50 11
*#ASSOC Category="Op-amps" symbol=opamp
***** Input Stage/pole at 50mhz
R1 1 13 5e12
R2 13 2 5e12
fn1 98 1 vn2 1
fn2 98 2 vn2 1
cin1 1 98 1.8e-12
cin2 2 98 1.8e-12
J1 24 1 25 jx
J2 24 14 26 jx
R3 99 25 708
R4 99 26 708
Cp 25 26 0.65pf
Ibt 24 50 0.62ma
Ib1 1 98 5p
Ib2 2 98 5p
Eos 2 12 poly(1) 34 98 0.2e-3 1
Enoise 12 14 36 98 1
***** Input V noise source
dn1 35 98 dn1
rn1 35 98 6.5e-5
vn1 35 98 0
hn1 36 98 vn1 1
rn2 36 98 1
***** Input I noise source
rn3 37 98 1.6e10
vn2 37 98 0
hn2 38 98 vn2 1
rn4 38 98 1
***** Gain Stage & Pole @ 300Hz
*Vd1 99 3 0.91
*Vd2 4 50 0.91
Vd1 99 3 0.61
Vd2 4 50 0.64
Gg1 99 5 (26,25) 1.413e-3
Gg2 5 50 (25,26) 1.413e-3
D1 5 3 dx
D2 4 5 dx
Rg1 99 5 21.23e6
Rg2 50 5 21.23e6
Cdp1 99 5 25pf
Cdp2 50 5 25pf
***** Internal Reference
Eref1 98 0 poly(2) (99,0) (50,0) 0 0.5 0.5
Eref2 97 0 poly(2) (1,0) (2,0) 0 0.5 0.5
***** Common Mode Gain Network/Pole at 10khz
Gacm1 15 98 98 97 1.4
Lacm2 15 29 10e-9
Racm2 29 98 1e-3
***** Common Mode Gain Network/Zero at 300hz
Ecm1 30 98 15 98 70e-3
Racm3 30 31 1.67e3
Racm4 31 32 100e-3
Lacm3 32 98 53e-6
***** Common Mode Gain Network/Pole at 5mhz
Ecm2 33 98 31 98 1
Lacm4 33 34 31.8u
Racm 34 98 1k
***** Zero/Pole Stages (20MHz/50MHz))
ezp 16 98 5 98 2.5
rzp1 16 17 188
rzp2 17 18 126
lzp 18 98 1u
***** Buffer to output stage
gbuf 98 19 17 98 1e-4
Rbuf 19 98 10k
***** Output Stage
fo1 98 90 vcd 1
Do1 90 91 dx
Do2 92 90 dx
vi1 91 98 0
vi2 98 92 0
*fsy 99 50 poly(2) vi1 vi2 5.7e-3 1 1
Isy 99 50 5.7e-3
Eref 96 0 11 0 1
fsy1 99 96 poly(2) vi1 vcd 0 1 -.5
fsy2 96 50 poly(2) vi2 vcd 0 1 0.5
Go3 10 99 99 19 50m
Go4 50 10 19 50 50m
Ro3 99 10 20
Ro4 10 50 20
vcd 10 95 0
lo1 95 11 1e-10
ro 11 98 1e6
Do5 19 20 dx
Do6 21 19 dx
Vo1 20 10 -0.3
Vo2 10 21 -0.4
.model dx d(IS=1e-15)
.model dn1 d(is=1e-15 af=0 kf=1e-12)
.model jx njf(beta=3e-3 vto=-1 Is=1e-12)
.ends AD823
* AD823A Spice Macro-model
* Description: Amplifier
* Generic Desc:
* Developed by: SMR
* Revision History:
* 1.0 (4/2012) Updated to new header style
* Copyright 2012 by Analog Devices, Inc.
*
* Refer to
* http://www.analog.com/Analog_Root/static/techSupport/designTools/
* spiceModels/license/spice_general.html for License Statement.
* Use of this model indicates your acceptance with the terms and
* provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
* Distortion
*
*
* Parameters modeled include:
* open loop gain and phase vs frequency
* output clamping voltage and current
* input common mode range
* CMRR vs freq
* I bias vs Vcm in
* Slew rate
* Output currents are reflected to V supplies
* Voltage and current noise density are accurate for the entire bandwidth of the AD823A
* Vos is static and will not vary with Vcm input
* Step response is modeled at unity gain w/1k load
* This model of the AD823A works at 3.3v
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD823A 1 2 99 50 11
*#ASSOC Category="Op-amps" symbol=opamp
***** Input Stage/pole at 50mhz
R1 1 13 5e12
R2 13 2 5e12
fn1 98 1 vn2 1
fn2 98 2 vn2 1
cin1 1 98 1.8e-12
cin2 2 98 1.8e-12
J1 24 1 25 jx
J2 24 14 26 jx
R3 99 25 708
R4 99 26 708
Cp 25 26 0.65pf
Ibt 24 50 0.62ma
Ib1 1 98 5p
Ib2 2 98 5p
Eos 2 12 poly(1) 34 98 0.2e-3 1
Enoise 12 14 36 98 1
***** Input V noise source
dn1 35 98 dn1
rn1 35 98 6.5e-5
vn1 35 98 0
hn1 36 98 vn1 1
rn2 36 98 1
***** Input I noise source
rn3 37 98 1.6e10
vn2 37 98 0
hn2 38 98 vn2 1
rn4 38 98 1
***** Gain Stage & Pole @ 300Hz
*Vd1 99 3 0.91
*Vd2 4 50 0.91
Vd1 99 3 0.61
Vd2 4 50 0.64
Gg1 99 5 (26,25) 1.413e-3
Gg2 5 50 (25,26) 1.413e-3
D1 5 3 dx
D2 4 5 dx
Rg1 99 5 21.23e6
Rg2 50 5 21.23e6
Cdp1 99 5 25pf
Cdp2 50 5 25pf
***** Internal Reference
Eref1 98 0 poly(2) (99,0) (50,0) 0 0.5 0.5
Eref2 97 0 poly(2) (1,0) (2,0) 0 0.5 0.5
***** Common Mode Gain Network/Pole at 10khz
Gacm1 15 98 98 97 1.4
Lacm2 15 29 10e-9
Racm2 29 98 1e-3
***** Common Mode Gain Network/Zero at 300hz
Ecm1 30 98 15 98 70e-3
Racm3 30 31 1.67e3
Racm4 31 32 100e-3
Lacm3 32 98 53e-6
***** Common Mode Gain Network/Pole at 5mhz
Ecm2 33 98 31 98 1
Lacm4 33 34 31.8u
Racm 34 98 1k
***** Zero/Pole Stages (20MHz/50MHz))
ezp 16 98 5 98 2.5
rzp1 16 17 188
rzp2 17 18 126
lzp 18 98 1u
***** Buffer to output stage
gbuf 98 19 17 98 1e-4
Rbuf 19 98 10k
***** Output Stage
fo1 98 90 vcd 1
Do1 90 91 dx
Do2 92 90 dx
vi1 91 98 0
vi2 98 92 0
*fsy 99 50 poly(2) vi1 vi2 5.7e-3 1 1
Isy 99 50 5.7e-3
Eref 96 0 11 0 1
fsy1 99 96 poly(2) vi1 vcd 0 1 -.5
fsy2 96 50 poly(2) vi2 vcd 0 1 0.5
Go3 10 99 99 19 50m
Go4 50 10 19 50 50m
Ro3 99 10 20
Ro4 10 50 20
vcd 10 95 0
lo1 95 11 1e-10
ro 11 98 1e6
Do5 19 20 dx
Do6 21 19 dx
Vo1 20 10 -0.3
Vo2 10 21 -0.4
.model dx d(IS=1e-15)
.model dn1 d(is=1e-15 af=0 kf=1e-12)
.model jx njf(beta=3e-3 vto=-1 Is=1e-12)
.ends AD823A
* AD824 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 5/30V, JFET, OP, S SPLY, RRO, 4X
* Developed by: ARG / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (09/1994)
* Copyright 1993, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD824 1 2 99 50 25
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE & POLE AT 3.1MHZ
*
R3 5 99 1.193E3
R4 6 99 1.193E3
CIN 1 2 4E-12
C2 5 6 19.229E-12
I1 4 50 108E-6
IOS 1 2 1E-12
EOS 7 1 POLY(1) (12,98) 100E-6 1
J1 4 2 5 JX
J2 4 7 6 JX
*
* GAIN STAGE & DOMINANT POLE
*
EREF 98 0 (30,0) 1
R5 9 98 2.205E6
C3 9 25 54E-12
G1 98 9 (6,5) 0.838E-3
V1 8 98 -1
V2 98 10 -1
D1 9 10 DX
D2 8 9 DX
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1KHZ
*
R21 11 12 1E6
R22 12 98 100
C14 11 12 159E-12
E13 11 98 POLY(2) (2,98) (1,98) 0 0.5 0.5
*
* POLE AT 10MHZ
*
R23 18 98 1E6
C15 18 98 15.9E-15
G15 98 18 (9,98) 1E-6
*
* OUTPUT STAGE
*
ES 26 98 (18,98) 1
RS 26 22 500
IB1 98 21 2.404E-3
IB2 23 98 2.404E-3
D10 21 98 DY
D11 98 23 DY
C16 20 25 2E-12
C17 24 25 2E-12
DQ1 97 20 DQ
Q2 20 21 22 NPN
Q3 24 23 22 PNP
DQ2 24 51 DQ
Q5 25 20 97 PNP 20
Q6 25 24 51 NPN 20
VP 96 97 0
VN 51 52 0
EP 96 0 (99,0) 1
EN 52 0 (50,0) 1
R25 30 99 5E6
R26 30 50 5E6
FSY1 99 0 VP 1
FSY2 0 50 VN 1
DC1 25 99 DX
DC2 50 25 DX
*
* MODELS USED
*
.MODEL JX NJF(BETA=3.2526E-3 VTO=-2.000 IS=2E-12)
.MODEL NPN NPN(BF=120 VAF=150 VAR=15 RB=2E3
+ RE=4 RC=550 IS=1E-16)
.MODEL PNP PNP(BF=120 VAF=150 VAR=15 RB=2E3
+ RE=4 RC=750 IS=1E-16)
.MODEL DX D(IS=1E-15)
.MODEL DY D()
.MODEL DQ D(IS=1E-16)
.ENDS AD824
*AD8682 Macro-model
*Function:Amplifier
*
*Revision History:
*Rev.1 Nov 2016-ZZ
*Copyright 2016 by Analog Devices
*
*Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spicemodels/license
*for License Statement. Use of this model indicates your acceptance
*of the terms and provisions in the License Staement.
*
*Tested on MultSIm, SiMetrix(NGSpice), PSpice
*
*Not modeled: Distortion, PSRR, Overload Recovery,
* Shutdown Turn On/Turn Off time
*
*Parameters modeled include:
* Vos, Ibias, Input CM limits and Typ output voltge swing over full supply range,
* Open Loop Gain & Phase, Slew Rate, Output current limits, Voltage & Current Noise over temp,
* Capacitive load drive, Quiescent and dynamic supply currents,
* Shut Down pin functionality where applicable,
* Single supply & offset supply functionality.
*
*Node Assignments
* Non-Inverting Input
* | Inverting Input
* | | Positive supply
* | | | Negative supply
* | | | | Output
* | | | | |
.Subckt AD8682 100 101 102 103 104
*
***Power Supplies***
Rz1 102 1020 Rideal 1e-6
Rz2 103 1030 Rideal 1e-6
Ibias 1020 1030 dc 0.44e-3
DzPS 98 1020 diode
Iquies 1020 98 dc 3.96e-3
S1 98 1030 106 113 Switch
R1 1020 99 Rideal 1e7
R2 99 1030 Rideal 1e7
e1 111 110 1020 110 1
e2 110 112 110 1030 1
e3 110 0 99 0 1
*
*
***Inputs***
S2 1 100 106 113 Switch
S3 9 101 106 113 Switch
VOS 1 2 dc 2.5e-3
IbiasP 110 2 dc 2e-12
IbiasN 110 9 dc 2e-12
RinCMP 110 2 Rideal 2000e6
RinCMN 9 110 Rideal 2000e6
CinCMP 110 2 2.2e-12
CinCMN 9 110 2.2e-12
IOS 9 2 1e-15
RinDiff 9 2 Rideal 10000e3
CinDiff 9 2 0.8e-12
*
*
***Non-Inverting Input with Clamp***
g1 3 110 110 2 0.001
RInP 3 110 Rideal 1e3
RX1 40 3 Rideal 0.001
DInP 40 41 diode
DInN 42 40 diode
VinP 111 41 dc 0.46
VinN 42 112 dc 4.46
*
*
***Vnoise***
hVn 6 5 Vmeas1 707.10678
Vmeas1 20 110 DC 0
Vvn 21 110 dc 0.65
Dvn 21 20 DVnoisy
hVn1 6 7 Vmeas2 707.10678
Vmeas2 22 110 dc 0
Vvn1 23 110 dc 0.65
Dvn1 23 22 DVnoisy
*
*
***Inoise***
FnIN 9 110 Vmeas3 0.7071068
Vmeas3 51 110 dc 0
VnIN 50 110 dc 0.65
DnIN 50 51 DINnoisy
FnIN1 110 9 Vmeas4 0.7071068
Vmeas4 53 110 dc 0
VnIN1 52 110 dc 0.65
DnIN1 52 53 DINnoisy
*
FnIP 2 110 Vmeas5 0.7071068
Vmeas5 31 110 dc 0
VnIP 30 110 dc 0.65
DnIP 30 31 DIPnoisy
FnIP1 110 2 Vmeas6 0.7071068
Vmeas6 33 110 dc 0
VnIP1 32 110 dc 0.65
DnIP1 32 33 DIPnoisy
*
*
***CMRR***
RcmrrP 3 10 Rideal 1e12
RcmrrN 10 9 Rideal 1e12
g10 11 110 10 110 -6.325e-9
Lcmrr 11 12 15.9e-3
Rcmrr 12 110 Rideal 1e3
e4 5 3 11 110 1
*
*
***Power Down***
VPD 111 80 dc 2
VPD1 81 0 dc 1.5
RPD 111 106 Rideal 1e6
ePD 80 113 82 0 1
RDP1 82 0 Rideal 1e3
CPD 82 0 1e-10
S5 81 82 83 113 Switch
CDP1 83 0 1e-12
RPD2 106 83 1e6
*
*
***Feedback Pin***
*RF 105 104 Rideal 0.001
*
*
***VFB Stage***
g200 200 110 7 9 1
R200 200 110 Rideal 250
DzSlewP 201 200 DzSlewP
DzSlewN 201 110 DzSlewN
*
*
***Dominant Pole at 0.08 Hz***
g210 210 110 200 110 0.0636e-6
R210 210 110 Rideal 1989.43e6
C210 210 110 1e-012
*
*
***Output Voltage Clamp-1***
RX2 60 210 Rideal 0.001
DzVoutP 61 60 DzVoutP
DzVoutN 60 62 DzVoutN
DVoutP 61 63 diode
DVoutN 64 62 diode
VoutP 65 63 dc 6.095
VoutN 64 66 dc 6.095
e60 65 110 111 110 1
e61 66 110 112 110 1
*
*
***Pole at 12MHz***
g220 220 110 210 110 0.001
R220 220 110 Rideal 1000
C220 220 110 13.2629e-12
*
***Pole at 12MHz***
g230 230 110 220 110 0.001
R230 230 110 Rideal 1000
C230 230 110 13.2629e-12
*
***Pole at 12MHz***
g240 240 110 230 110 0.001
R240 240 110 Rideal 1000
C240 240 110 13.2629e-12
*
***Pole at 50MHz***
g245 245 110 240 110 0.001
R245 245 110 Rideal 1000
C245 245 110 3.1831e-12
*
***Pole at 50MHz***
g250 250 110 245 110 0.001
R250 250 110 Rideal 1000
C250 250 110 3.1831e-12
*
***Pole at 50MHz***
g255 255 110 250 110 0.001
R255 255 110 Rideal 1000
C255 255 110 3.1831e-12
*
***Pole at 50MHz***
g260 260 110 255 110 0.001
R260 260 110 Rideal 1000
C260 260 110 3.1831e-12
*
***Pole at 50MHz***
g265 265 110 260 110 0.001
R265 265 110 Rideal 1000
C265 265 110 3.1831e-12
*
***Buffer***
g270 270 110 265 110 0.001
R270 270 110 Rideal 1000
*
***Buffer***
e280 280 110 270 110 1
R280 280 285 Rideal 10
*
***Peak: f=50MHz, Zeta=0.7, Gain=0.2dB***
e290 290 110 285 110 1
R290 290 292 Rideal 10
L290 290 291 22.736e-9
C290 291 292 445.633e-12
R291 292 110 Rideal 429.314
e295 295 110 292 110 1.0233
*
*
***Output Stage***
g300 300 110 295 110 0.001
R300 300 110 Rideal 1000
e301 301 110 300 110 1
Rout 302 303 Rideal .3
Lout 303 310 1e-9
Cout 310 110 1e-12
*
*
***Output Current Limit***
H1 301 304 Vsense1 100
Vsense1 301 302 dc 0
VIoutP 305 304 dc -0.364
VIoutN 304 306 dc 0.136
DIoutP 307 305 diode
DIoutN 306 307 diode
Rx3 307 300 Rideal 0.001
*
*
***Output Clamp-2***
VoutP1 111 73 dc 1.785
VoutN1 74 112 dc 1.785
DVoutP1 75 73 diode
DVoutN1 74 75 diode
RX4 75 310 Rideal 0.001
*
*
***Supply Currents***
FIoVcc 314 110 Vmeas8 1
Vmeas8 310 311 dc 0
R314 110 314 Rideal 1e9
DzOVcc 110 314 diode
DOVcc 102 314 diode
RX5 311 312 Rideal 0.001
FIoVee 315 110 Vmeas9 1
Vmeas9 312 313 dc 0
R315 315 110 Rideal 1e9
DzOVee 315 110 diode
DOVee 315 103 diode
*
*
***Output Switch***
S4 104 313 106 113 Switch
*
*
*** Common Models ***
.model diode d(bv=100)
.model Switch vswitch(Von=1.505,Voff=1.495,ron=0.001,roff=1e6)
.model DzVoutP D(BV=4.3)
.model DzVoutN D(BV=4.3)
.model DzSlewP D(BV=142.026)
.model DzSlewN D(BV=142.026)
.model DVnoisy D(IS=4.90e-14 KF=3.04e-18)
.model DINnoisy D(IS=3.81e-21 KF=0.00e0)
.model DIPnoisy D(IS=3.81e-21 KF=0.00e0)
.model Rideal res(T_ABS=-273)
*
.ends
*AD8684 Macro-model
*Function:Amplifier
*
*Revision History:
*Rev.1 Nov 2016-ZZ
*Copyright 2016 by Analog Devices
*
*Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spicemodels/license
*for License Statement. Use of this model indicates your acceptance
*of the terms and provisions in the License Staement.
*
*Tested on MultSIm, SiMetrix(NGSpice), PSpice
*
*Not modeled: Distortion, PSRR, Overload Recovery,
* Shutdown Turn On/Turn Off time
*
*Parameters modeled include:
* Vos, Ibias, Input CM limits and Typ output voltge swing over full supply range,
* Open Loop Gain & Phase, Slew Rate, Output current limits, Voltage & Current Noise over temp,
* Quiescent and dynamic supply currents,
* Single supply & offset supply functionality.
*
*Node Assignments
* Non-Inverting Input
* | Inverting Input
* | | Positive supply
* | | | Negative supply
* | | | | Output
* | | | | |
.Subckt AD8684 100 101 102 103 104
*#ASSOC Category="Op-amps" symbol=opamp
*
***Power Supplies***
Rz1 102 1020 Rideal 1e-6
Rz2 103 1030 Rideal 1e-6
Ibias 1020 1030 dc 0.44e-3
DzPS 98 1020 diode
Iquies 1020 98 dc 3.96e-3
S1 98 1030 106 113 Switch
R1 1020 99 Rideal 1e7
R2 99 1030 Rideal 1e7
e1 111 110 1020 110 1
e2 110 112 110 1030 1
e3 110 0 99 0 1
*
*
***Inputs***
S2 1 100 106 113 Switch
S3 9 101 106 113 Switch
VOS 1 2 dc 3.5e-3
IbiasP 110 2 dc 5e-12
IbiasN 110 9 dc 5e-12
RinCMP 110 2 Rideal 2000e6
RinCMN 9 110 Rideal 2000e6
CinCMP 110 2 2.2e-12
CinCMN 9 110 2.2e-12
IOS 9 2 10e-15
RinDiff 9 2 Rideal 10000e3
CinDiff 9 2 0.8e-12
*
*
***Non-Inverting Input with Clamp***
g1 3 110 110 2 0.001
RInP 3 110 Rideal 1e3
RX1 40 3 Rideal 0.001
DInP 40 41 diode
DInN 42 40 diode
VinP 111 41 dc 0.46
VinN 42 112 dc 4.46
*
*
***Vnoise***
hVn 6 5 Vmeas1 707.10678
Vmeas1 20 110 DC 0
Vvn 21 110 dc 0.65
Dvn 21 20 DVnoisy
hVn1 6 7 Vmeas2 707.10678
Vmeas2 22 110 dc 0
Vvn1 23 110 dc 0.65
Dvn1 23 22 DVnoisy
*
*
***Inoise***
FnIN 9 110 Vmeas3 0.7071068
Vmeas3 51 110 dc 0
VnIN 50 110 dc 0.65
DnIN 50 51 DINnoisy
FnIN1 110 9 Vmeas4 0.7071068
Vmeas4 53 110 dc 0
VnIN1 52 110 dc 0.65
DnIN1 52 53 DINnoisy
*
FnIP 2 110 Vmeas5 0.7071068
Vmeas5 31 110 dc 0
VnIP 30 110 dc 0.65
DnIP 30 31 DIPnoisy
FnIP1 110 2 Vmeas6 0.7071068
Vmeas6 33 110 dc 0
VnIP1 32 110 dc 0.65
DnIP1 32 33 DIPnoisy
*
*
***CMRR***
RcmrrP 3 10 Rideal 1e12
RcmrrN 10 9 Rideal 1e12
g10 11 110 10 110 -6.325e-9
Lcmrr 11 12 22.59e-3
Rcmrr 12 110 Rideal 5e3
e4 5 3 11 110 1
*
*
***Power Down***
VPD 111 80 dc 2
VPD1 81 0 dc 1.5
RPD 111 106 Rideal 1e6
ePD 80 113 82 0 1
RDP1 82 0 Rideal 1e3
CPD 82 0 1e-10
S5 81 82 83 113 Switch
CDP1 83 0 1e-12
RPD2 106 83 1e6
*
*
***Feedback Pin***
*RF 105 104 Rideal 0.001
*
*
***VFB Stage***
g200 200 110 7 9 1
R200 200 110 Rideal 250
DzSlewP 201 200 DzSlewP
DzSlewN 201 110 DzSlewN
*
*
***Dominant Pole at 0.08 Hz***
g210 210 110 200 110 0.0636e-6
R210 210 110 Rideal 1989.43e6
C210 210 110 1e-012
*
*
***Output Voltage Clamp-1***
RX2 60 210 Rideal 0.001
DzVoutP 61 60 DzVoutP
DzVoutN 60 62 DzVoutN
DVoutP 61 63 diode
DVoutN 64 62 diode
VoutP 65 63 dc 6.095
VoutN 64 66 dc 6.095
e60 65 110 111 110 1
e61 66 110 112 110 1
*
*
***Pole at 12MHz***
g220 220 110 210 110 0.001
R220 220 110 Rideal 1000
C220 220 110 13.2629e-12
*
***Pole at 12MHz***
g230 230 110 220 110 0.001
R230 230 110 Rideal 1000
C230 230 110 13.2629e-12
*
***Pole at 12MHz***
g240 240 110 230 110 0.001
R240 240 110 Rideal 1000
C240 240 110 13.2629e-12
*
***Pole at 50MHz***
g245 245 110 240 110 0.001
R245 245 110 Rideal 1000
C245 245 110 3.1831e-12
*
***Pole at 50MHz***
g250 250 110 245 110 0.001
R250 250 110 Rideal 1000
C250 250 110 3.1831e-12
*
***Pole at 50MHz***
g255 255 110 250 110 0.001
R255 255 110 Rideal 1000
C255 255 110 3.1831e-12
*
***Pole at 50MHz***
g260 260 110 255 110 0.001
R260 260 110 Rideal 1000
C260 260 110 3.1831e-12
*
***Pole at 50MHz***
g265 265 110 260 110 0.001
R265 265 110 Rideal 1000
C265 265 110 3.1831e-12
*
***Buffer***
g270 270 110 265 110 0.001
R270 270 110 Rideal 1000
*
***Buffer***
e280 280 110 270 110 1
R280 280 285 Rideal 10
*
***Peak: f=50MHz, Zeta=0.7, Gain=0.2dB***
e290 290 110 285 110 1
R290 290 292 Rideal 10
L290 290 291 22.736e-9
C290 291 292 445.633e-12
R291 292 110 Rideal 429.314
e295 295 110 292 110 1.0233
*
*
***Output Stage***
g300 300 110 295 110 0.001
R300 300 110 Rideal 1000
e301 301 110 300 110 1
Rout 302 303 Rideal .3
Lout 303 310 1e-9
Cout 310 110 1e-12
*
*
***Output Current Limit***
H1 301 304 Vsense1 100
Vsense1 301 302 dc 0
VIoutP 305 304 dc -0.364
VIoutN 304 306 dc 0.136
DIoutP 307 305 diode
DIoutN 306 307 diode
Rx3 307 300 Rideal 0.001
*
*
***Output Clamp-2***
VoutP1 111 73 dc 1.785
VoutN1 74 112 dc 1.785
DVoutP1 75 73 diode
DVoutN1 74 75 diode
RX4 75 310 Rideal 0.001
*
*
***Supply Currents***
FIoVcc 314 110 Vmeas8 1
Vmeas8 310 311 dc 0
R314 110 314 Rideal 1e9
DzOVcc 110 314 diode
DOVcc 102 314 diode
RX5 311 312 Rideal 0.001
FIoVee 315 110 Vmeas9 1
Vmeas9 312 313 dc 0
R315 315 110 Rideal 1e9
DzOVee 315 110 diode
DOVee 315 103 diode
*
*
***Output Switch***
S4 104 313 106 113 Switch
*
*
*** Common Models ***
.model diode d(bv=100)
.model Switch vswitch(Von=1.505,Voff=1.495,ron=0.001,roff=1e6)
.model DzVoutP D(BV=4.3)
.model DzVoutN D(BV=4.3)
.model DzSlewP D(BV=142.026)
.model DzSlewN D(BV=142.026)
.model DVnoisy D(IS=4.90e-14 KF=3.04e-18)
.model DINnoisy D(IS=3.81e-21 KF=0.00e0)
.model DIPnoisy D(IS=3.81e-21 KF=0.00e0)
.model Rideal res(T_ABS=-273)
*
.ends AD8684* ADA4091 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 2.7/30V, BIP, OP, Low Pwr, RRIO, 2X
* Developed by: HH / AD-SJ
* Revision History: 08/10/2012 - Updated to new header style
* 05/14/2014 - ported to Simplis (JSW)
* 0.0 (04/2009)
* Copyright 2008, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT ADA4091 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
I1 99 7 8.00E-06
Q1 6 4 7A QP
Q2 5 3 7B QP
RE1 7A 7 7.774E+02
RE2 7B 7 7.774E+02
D1 3 99 DX
D2 4 99 DX
D3 50 3 DX
D4 50 4 DX
D5 3 4 DX
D6 4 3 DX
R1 3 8 5E+03
R2 4 2 5E+03
R3 5 50 7.500E4;
R4 6 50 7.500E4;
Cph 5 5A 0.235E-12
Rph 5A 6 300
EOS 8 1 POLY(4) (73,98) (22,98) (81,98) (83,98) -400E-9 1 1 1 1
IOS 3 4 -50E-12
CDiff 1 2 2.5E-12
Cin1 1 50 2E-12
Cin2 2 50 2E-12
*
* INPUT PROTECTION NETWORK
*
X_in1 1 50 Diac1
X_in2 2 50 Diac1
X_in3 1 99 Diac1
X_in4 2 99 Diac1
*
*
RS1 99 39 400.0E3
RS2 39 50 400.0E3
EREF 98 0 (39,0) 1
*
* 1ST GAIN STAGE
*
G1 9 98 (6,5) 1.0E-06
R7 9 98 1E6
*
* 2ND GAIN STAGE AND DOMINANT POLE
*
R8 12 98 1.094E+08
G2 12 98 (98,9) 3.881E-06
D7 12 13 DX
D8 14 12 DX
V1 13 98 +0.2; source
V2 14 98 -0.2; sink
*
* Provision for second pole
*
G3 18 98 (98,12) 1E-05
R11 18 98 1E5
*
* CMRR=90dB, Pole at 1100 Hz
*
ECM 21 98 POLY(2) (1,98) (2,98) 0 1.318E-01 1.318E-01
R10 21 22 1.326E+05
R20 22 98 1.592E+01
C10 21 22 1E-9
*
* PSRR=85dB, POLE AT 300 Hz
*
EPSY 72 98 POLY(1) (99,50) +0.1E-1 1.770E+01
RPS1 72 73 7.958E+02
RPS2 73 98 3.183E-03
CPS1 72 73 1.00E-06
*
* VOLTAGE NOISE REFERENCE OF 24nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 96.300E-3
HN 81 98 VN1 2.397E+01
RN2 81 98 1
*
* FLICKER NOISE CORNER = 300 Hz
*
DFN 82 98 DNOISE
VFN 82 98 DC 0.6551
HFN 83 98 POLY(1) VFN 1.00E-03 1.00E+00
RFN 83 98 1
*
* OUTPUT STAGE
*
Q3 451 41 99 POUT
RB1 40 41 1.5E+03
EB1 99 40 POLY(1) (98,18) 6.190E-01 1E-0;
Q4 451 43 50 NOUT
RB2 42 43 2.0E+03
EB2 42 50 POLY(1) (18,98) 6.155E-01 1E-0;
Lout 45 451 10E-10
RZ 45 453 100
CZ 453 12 4.67E-12
*
GSY 99 50 POLY(1) (99 50) 106.2E-6 -0.89E-06
*
* MODELS
*
.MODEL QP PNP(BF=80, IS=1.00E-16, VA=130)
.MODEL POUT PNP (BF=80,IS=2.8E-15,VA=130,IK=6E+00,BR=15,VAR=14.4, RC=30)
.MODEL NOUT NPN (BF=120,IS=3.2E-15,VA=250,IK=11E+00,BR=30, VAR=20.0, RC=7)
.MODEL DW D(IS=1E-18)
.MODEL DX D()
.MODEL DY D(IS=1E-9)
.MODEL DZ D(IS=1E-6)
.MODEL DNOISE D(IS=1E-14,RS=0,KF=8.640E-12)
*
.SUBCKT Diac1 1 2
Done 1 3 DZ42hh
Dtwo 2 3 DZ42hh
.MODEL DZ42hh D(IS=3.3179E-6, N=2.0, RS=1.0000E-3, CJO=10.00E-12, M=.31349, VJ=.3905, ISR=2.9061E-9, BV=42.0, IBV=5.0E-03, TT=300.0E-9)
.ENDS Diac1
*
*
.ENDS ADA4091
*
* ADA4092 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 2.7/30V, BIP, OP, Low Pwr, RRIO, 4X
* Developed by: HH / AD-SJ
* Revision History: 08/10/2012 - Updated to new header style
* 05/14/2014 - Ported to Simplis (JSW)
* 0.0 (12/2010)
* Copyright 2010, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT ADA4092 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
Q1 6 4 7A QP
Q2 5 3 7B QP
RE1 7A 7 5.656E+02
RE2 7B 7 5.656E+02
I1 99 7 8.00E-06
D1 3 99 DX
D2 4 99 DX
D3 50 3 DX
D4 50 4 DX
D5 3 4 DX
D6 4 3 DX
R1 3 8 5E+03
R2 4 2 5E+03
R3 5 50 7.500E4;
R4 6 50 7.500E4;
Cph 5 5A 0.23E-12
Rph 5A 6 300
EOS 8 1 POLY(4) (73,98) (22,98) (81,98) (83,98) -1.4E-03 1 1 1 1
IOS 3 4 -2.0E-09
CDiff 1 2 2.5E-12
Cin1 1 50 2E-12
Cin2 2 50 2E-12
*
* INPUT PROTECTION NETWORK
*
X_in1 1 50 Diac1
X_in2 2 50 Diac1
X_in3 1 99 Diac1
X_in4 2 99 Diac1
*
*
RS1 99 39 400.0E3
RS2 39 50 400.0E3
EREF 98 0 (39,0) 1
*
* 1ST GAIN STAGE
*
R7 9 98 3.266E+08
G1 9 98 (6,5) 4.303E-06
D7 9 13 DX
D8 14 9 DX
V1 13 98 0.37; sink
V2 14 98 +0.017; source
*
* 2ND GAIN STAGE AND DOMINANT POLE
*
R8 12 98 1.0E+06
G2 12 98 (98,9) 1.0E-06
*
* Provision for second pole
*
G3 18 98 (98,12) 1E-05
R11 18 98 1E5
*
* CMRR
*
ECM 21 98 POLY(2) (1,98) (2,98) 0 7.813E-02 7.813E-02
R10 21 22 2.487E+04
R20 22 98 1.592E+01
C10 21 22 1E-9
*
* PSRR
*
EPSY 72 98 POLY(1) (99,50) +0.1E-6 1.485E+01
RPS1 72 73 5.305E+02
RPS2 73 98 3.183E-03
CPS1 72 73 1.00E-06
*
* VOLTAGE NOISE REFERENCE OF 30nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 25.5E-3
HN 81 98 VN1 3.0E+01
RN2 81 98 1
*
* FLICKER NOISE CORNER
*
DFN 82 98 DNOISE
VFN 82 98 DC 0.6551
HFN 83 98 POLY(1) VFN 1.00E-03 1.00E+00
RFN 83 98 1
*
* OUTPUT STAGE
*
Q3 451 41 99 POUT
RB1 40 41 1.5E+03
EB1 99 40 POLY(1) (98,18) 6.190E-01 1E-0;
Q4 451 43 50 NOUT
RB2 42 43 2.0E+03
EB2 42 50 POLY(1) (18,98) 6.155E-01 1E-0;
Lout 45 451 6.2E-12
RZ 451 453 100
CZ 453 9 4.6E-12
*
GSY 99 50 POLY(1) (99 50) 79.9E-6 -1.04E-06
*
* MODELS
*
.MODEL QP PNP(BF=80, IS=1.00E-16, VA=130)
.MODEL POUT PNP (BF=80,IS=2.8E-15,VA=130, BR=3,VAR=15, RC=38);
.MODEL NOUT NPN (BF=120,IS=3.2E-15,VA=250, BR=7, VAR=20, RC=8);
.MODEL DW D(IS=1E-18)
.MODEL DX D()
.MODEL DY D(IS=1E-9)
.MODEL DZ D(IS=1E-6)
.MODEL DNOISE D(IS=1E-14,RS=0,KF=1.15E-12)
*
.SUBCKT Diac1 1 2
Done 1 3 DZ42hh
Dtwo 2 3 DZ42hh
.MODEL DZ42hh D(IS=3.3179E-6, N=2.0, RS=1.0000E-3, CJO=10.00E-12, M=.31349, VJ=.3905, ISR=2.9061E-9, BV=42.0, IBV=5.0E-03, TT=300.0E-9)
.ENDS Diac1
.ENDS ADA4092
*
*
* ADA4096 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 3/30V, BIP, OP, OVP, RRIO, 2X
* Developed by: HH / AD-SJ
* Revision History: 08/10/2012 - Updated to new header style
* 0.0 (07/2011)
* Copyright 2011, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT ADA4096 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
I1 99 7 8.00E-06
RE1 7 7A 3.714E+03
RE2 7 7B 3.714E+03
Q1 6 4 7A QP
Q2 5 3 7B QP
D1 3 99 DX
D2 4 99 DX
D3 50 3 DX
D4 50 4 DX
D5 3 4 DX
D6 4 3 DX
R1 202 8 5E-03
R2 204 4 5E-03
R3 5 50 7.500E4;
R4 6 50 7.500E4;
Cph 5 5A 6.3E-13
Rph 5A 6 400
EOS 8 3 POLY(4) (73,98) (22,98) (81,98) (83,98) -250E-06 1 1 1 1
IOS 3 4 -1.0E-09
CDiff 1 2 6.35E-12
Cin1 1 50 0.67E-12
Cin2 2 50 0.67E-12
*
* INPUT PROTECTION NETWORK
*
J1 1 201 202 JXB ;
J2 201 201 202 JXL ;
J3 2 203 204 JXB ;
J4 203 203 204 JXL
*
* 1ST GAIN STAGE
*
G1 9 98 (6,5) 1.0E-06
R7 9 98 1E6
*
* 2ND GAIN STAGE AND DOMINANT POLE
*
G2 12 98 (98,9) 3.375E-06
R8 12 98 3.4E+08
D7 12 13 DX
D8 14 12 DX
V1 13 98 +0.5;
V2 14 98 -0.2;
*
* Provision for second pole
*
G3 18 98 (98,12) 1E-05
R11 18 98 1E5
C11x 18 98 1E-14
*
* CMRR
*
ECM 21 98 POLY(2) (1,98) (2,98) 0 2.635E-01 2.635E-01
R10 21 22 1.326E+05
R20 22 98 7.958E+00
C10 21 22 1E-9
*
* PSRR
*
EPSY 72 98 POLY(1) (99,50) -1.514E+3 5.048E+01
RPS1 72 73 1.592E+03
RPS2 73 98 1.989E-03
CPS1 72 73 1.00E-06
*
* VOLTAGE NOISE REFERENCE
*
VN1 80 98 0
RN1 80 98 96.300E-3
HN 81 98 VN1 2.397E+01
RN2 81 98 1
*
* FLICKER NOISE CORNER
*
DFN 82 98 DNOISE 1000
IFN 98 82 DC 1E-03
DFN2 182 98 DY
IFN2 98 182 DC 1E-06
GFN 83 98 POLY(1) (182,82) 1.00E-13 1.00E-01
RFN 83 98 1
*
* Current Noise
D60 60 98 DN1 1000
I60 98 60 1E-03
D61 61 98 DN4
I61 98 61 1E-06
G60 1 50 61 60 1.23E-05
G61 2 50 61 60 1.33E-05
*
RS1 99 39 400.0E3
RS2 39 50 400.0E3
EREF 98 0 (39,0) 1
*
GSY 99 50 POLY(1) (99 50) -23.8E-6 -1.109E-06
*
* OUTPUT STAGE
*
Q3 451 41 99 POUT
RB1 40 41 4.37E+03
EB1 99 40 POLY(1) (98,18) 6.218E-01 1E-0;
Q4 451 43 50 NOUT
RB2 42 43 10E+03
EB2 42 50 POLY(1) (18,98) 6.170E-01 1E-0;
Lout 45 451 10E-10
EZ 453 98 (45 98) 1
CZ 453 12 4.94E-12
R99T 201 202 450k
*
* MODELS
*
.MODEL QP PNP(BF=300, IS=1.00E-16, VA=130)
.MODEL POUT PNP (BF=80,IS=2.8E-15,VA=130,BR=4.3,VAR=20, RC=75);
.MODEL NOUT NPN (BF=120,IS=3.2E-15,VA=250,BR=9.5, VAR=18, RC=42);
.MODEL DN1 D IS=1E-16
.MODEL DN4 D IS=1E-16 AF=1 KF=4.35E-17
.MODEL DW D(IS=1E-18)
.MODEL DX D(IS=1E-16)
.MODEL DY D(IS=1E-16,RS=0.1)
.MODEL DZ D(IS=1E-6)
.MODEL DNOISE D(IS=1E-16,RS=0,KF=2.6E-13)
.MODEL JXL PJF(BETA=4E-05 VTO=-2.0 IS=1E-18 LAMBDA=0.008 RD=1E-1
+ RS=5E1 CGD=1E-12 CGS=1E-12)
.MODEL JXB PJF(BETA=10E-05 VTO=-1.6 IS=1E-19 LAMBDA=0.005 RD=1E-1 RS=1.41E3)
.ENDS ADA4096
*
*
*ADA4177 SPICE DMod model Typical values
* Description: Amplifier
* Generic Desc: 30V, BIP, OP, Low Noise, Low THD, Non-RRin, RRout
* Developed by: DB ADSJ/ KF ADGT
* Revision History: draft
* 0.0 (02/2015)
* Copyright 2015 by Analog Devices
*
* Refer to "README.DOC" file for License Statement. Use of this
* model indicates your acceptance of the terms and provisions in
* the License Statement.
*
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT ADA4177 1 2 99 50 45
*
*INPUT STAGE
*
Q1 15 7 60 NIX
Q2 6 2 61 NIX
IOS 1 2 1.75E-10
I1 5 50 77e-6
EOS 7 1 POLY(4) (14,98) (73,98) (81,98) (70,98) 20E-6 1 1 1 1
ROS 7 1 1E-3; for debugging
RC1 11 15 2.6E4
RC2 11 6 2.6E4
RE1 60 5 0.896E2
RE2 61 5 0.896E2
C1 15 6 4.25E-13
D1 50 9 DX
V1 5 9 DC 1.8
D10 99 10 DX
V6 10 11 1.3
*
*
* CMRR
*
ECM 13 98 POLY(2) (1,50) (2,50) 0 7.192E-4 7.192E-4
RCM1 13 14 2.15E4
RCM2 14 98 5.31E-3
CCM1 13 14 7.4E-10
*
* PSRR
*
EPSY 72 98 POLY(1) (99,50) -1.683 0.056
CPS3 72 73 1E-6
RPS3 72 73 7.9577E+1
RPS4 73 98 6.5915E-4
*
* EXTRA POLE AND ZERO
*
G1 21 98 (6,15) 26E-6
R1 21 98 9.8E4
R2 21 22 9E6
C2 22 98 1.7614E-12
D3 21 99 DX
D4 50 21 DX
*
* VOLTAGE NOISE
*
VN1 80 98 0
RN1 80 98 16.45E-3
HN 81 98 VN1 9.3
RN2 81 98 1
*
* FLICKER NOISE
*
D5 69 98 DNOISE
VSN 69 98 DC .60551
H1 70 98 VSN 30.85
RN 70 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 .5 .5
GSY 99 50 POLY(1) (99,50) 240E-6 1.7495E-10
*
* GAIN STAGE
*
G2 98 25 (21,98) 1E-6
R5 25 98 9.9E7
CF 45 25 3.59E-12
V4 25 33 0.35
D7 51 33 DX
EVN 51 98 POLY(1) (50,99) 0 0.5
V3 32 25 0.35
D6 32 97 DX
EVP 97 98 POLY(1) (99,50) 0 0.5
*
* OUTPUT STAGE
*
Q3 45 41 99 POUT
Q4 45 43 50 NOUT
RB1 40 41 6.25E4
RB2 42 43 6.25E4
EB1 99 40 POLY(1) (98,25) 0.9153 1
EB2 42 50 POLY(1) (25,98) 0.9153 1
*
* MODELS
*
.MODEL NIX NPN (BF=71429,IS=1E-16)
.MODEL POUT PNP (BF=200,VAF=50,BR=2,IS=1E-15,RC=10.00)
.MODEL NOUT NPN (BF=200,VAF=100,BR=2,IS=1E-15,RC=8)
.MODEL DX D(IS=1E-16, RS=5, KF=1E-15)
.MODEL DNOISE D(IS=1E-16,RS=0,KF=1.095E-14)
.ENDS ADA4177
*$
* ADA4522-4 SPICE Macro-model
* Description: Amplifier
* Generic Desc: HV, ZD, Low Noise, Non-RRin, RRout
* Developed by: JG ADGT / VW ADSJ
* Revision History:
* 05/18/2015 - initial release for dual
* 10/27/2015 - initial release for quad
* 0.0 (05/2015)
* Copyright 2015 by Analog Devices
* T=25C
*
* Refer to "README.DOC" file for License Statement. Use of this
* model indicates your acceptance of the terms and provisions in
* the License Statement.
*
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT ADA4522 1 2 99 50 45
*#ASSOC Category=Op-amp symbol=opamp
*
* INPUT STAGE
*
M1 4 7 8 8 PIX L=1E-6 W=1.18E-04
M2 6 2 8 8 PIX L=1E-6 W=1.18E-04
M3 14 7 18 18 NIX L=1E-6 W=1.18E-04
M4 16 2 18 18 NIX L=1E-6 W=1.18E-04
RD1 4 50 1.33E+04
RD2 6 50 1.33E+04
RD3 99 14 1.33E+04
RD4 99 16 1.33E+04
C1 4 6 6.7E-13
C2 14 16 6.7E-13
I1 99 8 3.00E-05
I2 18 50 3.00E-05
V1 99 9 2.113E+00
V2 19 50 1.203E-01
D1 8 9 DX
D2 19 18 DX
EOS 7 1 POLY(4) (73,98) (22,98) (81,98) (83,98) -9.1E-06 0.1 0.1 0.1 0.1
IOS 1 2 100E-12
V5 99 3 2.2
D5 1 3 DX
D6 50 1 DX
V6 99 100 2.2
D7 2 100 DX
D8 50 2 DX
Ccm1 1 50 35E-12
Ccm2 2 50 35E-12
Cdm 1 2 7.0E-12
*
*CMRR
*
E1 72 98 POLY(2) (1,98) (2,98) 0 5.25E-03 5.25E-03
R10 72 73 1.89E+02
R20 73 98 4.8E-01
C10 72 73 1.00E-06
*
* PSRR
*
EPSY 21 98 POLY(1) (99,50) -2.712E-00 2.4
RPS1 21 22 1.59E+05
RPS2 22 98 3.18E-01
CPS1 21 22 1.00E-06
*
*
* VOLTAGE NOISE REFERENCE
*
VN1 80 98 0
RN1 80 98 265E-05
HN 81 98 VN1 6.6E0
RNHH1 81 183 5.3
CHH1 183 98 1E-012
*
*BPF
*
EV5 83 98 VALUE = { V(203,98)+V(205,98) }
R94 204 98 300
L92 200 210 6.0e-006
C92 210 204 9e-011
R93 200 204 5.5E03
EV4 205 98 204 98 10.5
EV3 203 98 202 98 5.5
R92 202 98 200
L91 200 201 3.0e-005
C91 201 202 10e-010
R91 200 202 1E03
EV1 200 98 81 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 0.5 0.5
GSY 99 50 POLY(1) (99,50) 805.1E-06 -1.55E-9
*
* GAIN STAGE
*
G1 98 30 POLY(2) (4,6) (14,16) 0 7.103E-03 7.103E-03
R1 30 98 1.00E+06
RZ 455 31 0.195E+00
CF 30 31 4.05E-9
EZ 455 98 (45,98) 1
V3 32 30 -7.5E-04
V4 30 33 -4.9E-04
D3 32 98 DX
D4 98 33 DX
*
* OUTPUT STAGE
*
M5 45 46 99 99 POX L=3E-6 W=20E-04
M6 45 47 50 50 NOX L=3E-6 W=40E-04
EG1 99 46 POLY(1) (98,30) 8.523E-01 1
EG2 47 50 POLY(1) (30,98) 8.523E-01 1
*EG1 99 46 POLY(1) (98,30) 8.523E-01 1
*EG2 47 50 POLY(1) (30,98) 8.523E-01 1
*
* MODELS
*
.MODEL POX PMOS (LEVEL=2,KP=4.00E-05,VTO=-0.83,LAMBDA=0.047,RD=7)
.MODEL NOX NMOS (LEVEL=2,KP=4.00E-05,VTO=+0.83,LAMBDA=0.047,RD=38)
.MODEL PIX PMOS (LEVEL=2,KP=1.50E-05,VTO=-0.5,LAMBDA=0.047)
.MODEL NIX NMOS (LEVEL=2,KP=4.00E-05,VTO=0.5,LAMBDA=0.022)
.MODEL DX D(IS=1E-14,RS=0.1)
*
*
.ENDS ADA4522
*
*$
*ADA4610 Macro-model
*Function:Amplifier
*
*Revision History:
*Rev.2.1 Feb 2016-ZZ
*Copyright 2016 by Analog Devices
*
*Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spicemodels/license
*for License Statement. Use of this model indicates your acceptance
*of the terms and provisions in the License Staement.
*
*Tested on MultSIm, SiMetrix(NGSpice), PSpice
*
*Not modeled: Distortion, PSRR, Overload Recovery,
* Shutdown Turn On/Turn Off time
*
*Parameters modeled include:
* Vos, Ibias, Input CM limits and Typ output voltge swing over full supply range,
* Open Loop Gain & Phase, Slew Rate, Output current limits, Voltage & Current Noise over temp,
* Capacitive load drive, Quiescent and dynamic supply currents,
* Shut Down pin functionality where applicable,
* Single supply & offset supply functionality.
*
*Node Assignments
* Non-Inverting Input
* | Inverting Input
* | | Positive supply
* | | | Negative supply
* | | | | Output
* | | | | |
.Subckt ADA4610 100 101 102 103 104
*#ASSOC Category="Op-Amps" symbol=opamp
***Power Supplies***
Rz1 102 1020 Rideal 1e-6
Rz2 103 1030 Rideal 1e-6
Ibias 1020 1030 dc 0.33e-3
DzPS 98 1020 diode
Iquies 1020 98 dc 2.97e-3
S1 98 1030 106 113 Switch
R1 1020 99 Rideal 1e7
R2 99 1030 Rideal 1e7
e1 111 110 1020 110 1
e2 110 112 110 1030 1
e3 110 0 99 0 1
*
*
***Inputs***
S2 1 100 106 113 Switch
S3 9 101 106 113 Switch
VOS 1 2 dc 0.2e-6
IbiasP 110 2 dc 5e-12
IbiasN 110 9 dc 5e-12
RinCMP 110 2 Rideal 20000000000000e6
RinCMN 9 110 Rideal 20000000000000e6
CinCMP 110 2 5.7e-12
CinCMN 9 110 5.7e-12
IOS 9 2 2e-12
RinDiff 9 2 Rideal 20000000000000e3
CinDiff 9 2 2.2e-12
*
*
***Non-Inverting Input with Clamp***
g1 3 110 110 2 0.001
RInP 3 110 Rideal 1e3
RX1 40 3 Rideal 0.001
DInP 40 41 diode
DInN 42 40 diode
VinP 111 41 dc 2.96
VinN 42 112 dc 2.96
*
*
***Vnoise***
hVn 6 5 Vmeas1 707.10678
Vmeas1 20 110 DC 0
Vvn 21 110 dc 0.65
Dvn 21 20 DVnoisy
hVn1 6 7 Vmeas2 707.10678
Vmeas2 22 110 dc 0
Vvn1 23 110 dc 0.65
Dvn1 23 22 DVnoisy
*
*
***Inoise***
FnIN 9 110 Vmeas3 0.7071068
Vmeas3 51 110 dc 0
VnIN 50 110 dc 0.65
DnIN 50 51 DINnoisy
FnIN1 110 9 Vmeas4 0.7071068
Vmeas4 53 110 dc 0
VnIN1 52 110 dc 0.65
DnIN1 52 53 DINnoisy
*
FnIP 2 110 Vmeas5 0.7071068
Vmeas5 31 110 dc 0
VnIP 30 110 dc 0.65
DnIP 30 31 DIPnoisy
FnIP1 110 2 Vmeas6 0.7071068
Vmeas6 33 110 dc 0
VnIP1 32 110 dc 0.65
DnIP1 32 33 DIPnoisy
*
*
***CMRR***
RcmrrP 3 10 Rideal 1e12
RcmrrN 10 9 Rideal 1e12
g10 11 110 10 110 -1e-10
Lcmrr 11 12 1e-12
Rcmrr 12 110 Rideal 1e3
e4 5 3 11 110 1
*
*
***Power Down***
VPD 111 80 dc 2
VPD1 81 0 dc 1.5
RPD 111 106 Rideal 0.286e6
ePD 80 113 82 0 1
RDP1 82 0 Rideal 1e3
CPD 82 0 1e-10
S5 81 82 83 113 Switch
CDP1 83 0 1e-12
RPD2 106 83 1e6
*
*
***Feedback Pin***
*RF 105 104 Rideal 0.001
*
*
***VFB Stage***
g200 200 110 7 9 1
R200 200 110 Rideal 250
DzSlewP 201 200 DzSlewP
DzSlewN 201 110 DzSlewN
*
*
***Dominant Pole at 350 Hz***
g210 210 110 200 110 0.3502e-6
R210 210 110 Rideal 454.73e6
C210 210 110 1e-012
*
*
***Output Voltage Clamp-1***
RX2 60 210 Rideal 0.001
DzVoutP 61 60 DzVoutP
DzVoutN 60 62 DzVoutN
DVoutP 61 63 diode
DVoutN 64 62 diode
VoutP 65 63 dc 5.709
VoutN 64 66 dc 5.428
e60 65 110 111 110 1.34
e61 66 110 112 110 1.34
*
*
***Pole-Zero at 84KHz, 180KHz***
g220 220 110 210 110 0.001
R220 220 110 Rideal 1000
R221 220 221 Rideal 0.875e3
C220 221 110 1010.5064e-12
*
***Pole at 110MHz***
g230 230 110 220 110 0.001
R230 230 110 Rideal 1000
C230 230 110 1.4469e-12
*
***Buffer***
g240 240 110 230 110 0.001
R240 240 110 Rideal 1000
*
***Buffer***
g245 245 110 240 110 0.001
R245 245 110 Rideal 1000
*
***Buffer***
g250 250 110 245 110 0.001
R250 250 110 Rideal 1000
*
***Buffer***
g255 255 110 250 110 0.001
R255 255 110 Rideal 1000
*
***Buffer***
g260 260 110 255 110 0.001
R260 260 110 Rideal 1000
*
***Buffer***
g265 265 110 260 110 0.001
R265 265 110 Rideal 1000
*
***Buffer***
g270 270 110 265 110 0.001
R270 270 110 Rideal 1000
*
***Notch: f=2.2MHz, Zeta=1.2, Gain=0.8dB***
e280 280 110 270 110 1
R280 280 285 Rideal 10
L280 285 281 3425.757e-9
C280 281 282 1527.698e-12
R281 282 110 Rideal 103.65
*
***Peak: f=0.5MHz, Zeta=3.1, Gain=5.1dB***
e290 290 110 285 110 1
R290 290 292 Rideal 10
L290 290 291 513.402e-9
C290 291 292 197351.907e-12
R291 292 110 Rideal 12.518
e295 295 110 292 110 1.7989
*
*
***Output Stage***
g300 300 110 295 110 0.001
R300 300 110 Rideal 1000
e301 301 110 300 110 1
Rout 302 303 Rideal 163
Lout 303 310 80e-9
Cout 310 110 6e-12
*
*
***Output Current Limit***
H1 301 304 Vsense1 100
Vsense1 301 302 dc 0
VIoutP 305 304 dc 5.736
VIoutN 304 306 dc 5.736
DIoutP 307 305 diode
DIoutN 306 307 diode
Rx3 307 300 Rideal 0.001
*
*
***Output Clamp-2***
VoutP1 111 73 dc 0.785
VoutN1 74 112 dc 0.785
DVoutP1 75 73 diode
DVoutN1 74 75 diode
RX4 75 310 Rideal 0.001
*
*
***Supply Currents***
FIoVcc 314 110 Vmeas8 1
Vmeas8 310 311 dc 0
R314 110 314 Rideal 1e9
DzOVcc 110 314 diode
DOVcc 102 314 diode
RX5 311 312 Rideal 0.001
FIoVee 315 110 Vmeas9 1
Vmeas9 312 313 dc 0
R315 315 110 Rideal 1e9
DzOVee 315 110 diode
DOVee 315 103 diode
*
*
***Output Switch***
S4 104 313 106 113 Switch
*
*
*** Common Models ***
.model diode d(bv=100)
.model Switch vswitch(Von=1.505,Voff=1.495,ron=0.001,roff=1e6)
.model DzVoutP D(BV=4.3)
.model DzVoutN D(BV=4.3)
.model DzSlewP D(BV=174.665)
.model DzSlewN D(BV=174.665)
.model DVnoisy D(IS=2.03e-15 KF=8.16e-18)
.model DINnoisy D(IS=1.45e-22 KF=8.13e-18)
.model DIPnoisy D(IS=1.45e-22 KF=8.13e-18)
.model Rideal res(T_ABS=-273)
*
.ends ADA4610
* AD4622 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 30V, JFET, OP, S SPLY, RRO
* Developed by: DB / ADSJ
* Revision History:
* 1.0 (11/2015)
* 2.0 (12/2017)
* 12/01/2017 - corrected pin order to standard by AR / ADGT
* Copyright 2015 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
*
* Notes: This model simulates typical values @ Vsy=15V, T=25C.
* Ibias and Vos are static and will not vary with Vcm.
* Distortion is not modelled.
* (ada4622 DMod model)
*
* Usage:-
*X1 3 2 7 4 6 ADA4622
* | | | | |
* | | | | Output
* | | | Negative Supply
* | | Positive Supply
* | Inverting Input
* Non-Inverting Input
.SUBCKT ADA4622 3 2 7 4 6
* Input Impedances
I1 0 3 1.000E-012
I2 0 2 1.000E-012
R3 3 2 1.333E+013
R4 3 0 2.000E+013
R5 2 0 2.000E+013
C1 3 0 1.800E-012
C2 2 0 1.800E-012
C3 3 2 4.000E-013
* Preconditioning Gain Stage and Sum Node for
* Transconductance Control and Noise Insertion
G1 0 41 POLY(2) 3 2 60 63 0.000E+000 2.377E-003 1.947E-003
* Limiting Section for Slew-Rate Control
D5 41 43 DL
V1 43 0 1.082E+002
D6 42 41 DL
V2 0 42 8.170E+001
G2 41 0 41 0 1.0E-5
E6 20 0 POLY(1) 41 0 0 1
+0 -6.562164E-006 0 -5.302485E-012
+0 3.817254E-016 0 -1.371241E-021
.MODEL DL D IS=1E-18 EG=0.1 N=0.2
* Second-Order Frequency Shaping
R50 20 21 5
C50 21 0 1.224E-009
R52 21 23 35
C51 23 0 5.350E-011
R54 23 25 245
C52 25 0 7.642E-012
R56 25 27 1715
C53 27 0 1.031E-012
R58 27 40 12005
C54 40 0 1.105E-013
* Primary Gain Block and Dominant Pole/Zero
G3 0 44 POLY(3) 45 6 40 0 0 54 0 -1.033E-003 1E-5 5E-4
G4 44 0 44 0 1.981E-011
C4 44 4 4.348E-013
* Output Stage and Swing Limiting Network
E2 46 0 POLY(1) 7 0 -1.178E+000 1.000E+002
E3 47 0 POLY(1) 4 0 2.801E-001 1.000E+002
D7 44 46 DL
D8 47 44 DL
G7 45 6 45 6 100
E5 55 0 6 0 1.00E+002
C5 55 50 4.348E-013
R7 50 44 1.150E+005
E4 53 0 45 6 2.863E+005
V7 53 56 7.734E+001
D9 56 54 DL
V8 57 53 100.2
D10 54 57 DL
G5 54 0 54 0 9.1E-6
G8 45 7 POLY(2) 7 0 0 44 0 2.500E-002 2.500E-004
G9 45 4 POLY(2) 4 0 0 44 0 2.500E-002 2.500E-004
R12 7 45 4.000E+001
R13 4 45 4.000E+001
G10 58 59 POLY(2) 0 45 44 0 0 2.500E-002 2.500E-004
G11 51 0 51 0 100
G12 52 0 52 0 100
G13 4 7 POLY(2) 51 0 52 0 0 100 100
D11 59 0 DX
D12 51 59 DX
D13 52 58 DX
D14 58 0 DX
R10 58 0 7.00E+003
R11 59 0 7.00E+003
.MODEL DX D IS=1E-14 EG=0.6
* Quiescent Supply Current c
I9 7 4 6.650E-004
* Noise Modeling
D60 60 0 DN1 1000
I60 0 60 1E-3
D63 63 0 DN2
I63 0 63 1E-6
.MODEL DN1 D IS=1E-16
.MODEL DN2 D IS=1E-16 AF=1 KF=7.715E-018
.ENDS ADA4622
*ADA4625 Macro-model
*Function:Amplifier
*
*Revision History:
*Rev.1 Oct 2017-JL
*Copyright 2017 by Analog Devices
*
*Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spicemodels/license
*for License Statement. Use of this model indicates your acceptance
*of the terms and provisions in the License Staement.
*
*Tested on MultSIm, SiMetrix(NGSpice), PSpice
*
*Not modeled: Distortion, PSRR, Overload Recovery,
* Shutdown Turn On/Turn Off time
*
*Parameters modeled include:
* Vos, Ibias, Input CM limits and Typ output voltge swing over full supply range,
* Open Loop Gain & Phase, Slew Rate, Output current limits, Voltage & Current Noise over temp,
* Capacitive load drive, Quiescent and dynamic supply currents,
* Shut Down pin functionality where applicable,
* Single supply & offset supply functionality.
*
*Node Assignments
* Non-Inverting Input
* | Inverting Input
* | | Positive supply
* | | | Negative supply
* | | | | Output
* | | | | |
.Subckt ADA4625 IN+ IN- V+ V- OUT
*
***Power Supplies***
Rz1 V+ 1020 Rideal 1e-6
Rz2 V- 1030 Rideal 1e-6
Ibias 1020 1030 dc 0.4e-3
DzPS 98 1020 diode
Iquies 1020 98 dc 3.6e-3
S1 98 1030 106 113 Switch
R1 1020 99 Rideal 1e7
R2 99 1030 Rideal 1e7
e1 111 110 1020 110 1
e2 110 112 110 1030 1
e3 110 0 99 0 1
*
*
***Inputs***
S2 1 IN+ 106 113 Switch
S3 9 IN- 106 113 Switch
VOS 1 2 dc 15e-6
IbiasP 110 2 dc 15e-12
IbiasN 110 9 dc 15e-12
RinCMP 110 2 Rideal 1000000e6
RinCMN 9 110 Rideal 1000000e6
CinCMP 110 2 11.3e-12
CinCMN 9 110 11.3e-12
IOS 9 2 2e-12
RinDiff 9 2 Rideal 1000000000e3
CinDiff 9 2 8.6e-12
*
*
***Non-Inverting Input with Clamp***
g1 3 110 110 2 0.001
RInP 3 110 Rideal 1e3
RX1 40 3 Rideal 0.001
DInP 40 41 diode
DInN 42 40 diode
VinP 111 41 dc 3.96
VinN 42 112 dc 0.26
*
*
***Vnoise***
hVn 6 5 Vmeas1 707.10678
Vmeas1 20 110 DC 0
Vvn 21 110 dc 0.65
Dvn 21 20 DVnoisy
hVn1 6 7 Vmeas2 707.10678
Vmeas2 22 110 dc 0
Vvn1 23 110 dc 0.65
Dvn1 23 22 DVnoisy
*
*
***Inoise***
FnIN 9 110 Vmeas3 0.7071068
Vmeas3 51 110 dc 0
VnIN 50 110 dc 0.65
DnIN 50 51 DINnoisy
FnIN1 110 9 Vmeas4 0.7071068
Vmeas4 53 110 dc 0
VnIN1 52 110 dc 0.65
DnIN1 52 53 DINnoisy
*
FnIP 2 110 Vmeas5 0.7071068
Vmeas5 31 110 dc 0
VnIP 30 110 dc 0.65
DnIP 30 31 DIPnoisy
FnIP1 110 2 Vmeas6 0.7071068
Vmeas6 33 110 dc 0
VnIP1 32 110 dc 0.65
DnIP1 32 33 DIPnoisy
*
*
***CMRR***
RcmrrP 3 10 Rideal 1e12
RcmrrN 10 9 Rideal 1e12
g10 11 110 10 110 -0.634e-9
Lcmrr 11 12 1591.6e-3
Rcmrr 12 110 Rideal 1e3
e4 5 3 11 110 1
*
*
***Power Down***
VPD 111 80 dc 2.6
VPD1 81 0 dc 0.1
RPD 111 106 Rideal 1e6
ePD 80 113 82 0 1
RDP1 82 0 Rideal 1e3
CPD 82 0 1e-10
S5 81 82 83 113 Switch
CDP1 83 0 1e-12
RPD2 106 83 1e6
*
*
***Feedback Pin***
*RF 105 OUT Rideal 0.001
*
*
***VFB Stage***
g200 200 110 7 9 1
R200 200 110 Rideal 250
DzSlewP 201 200 DzSlewP
DzSlewN 201 110 DzSlewN
*
*
***Dominant Pole at 0.599999999999996 Hz***
g210 210 110 200 110 0.3455e-6
R210 210 110 Rideal 265.26e6
C210 210 110 1e-012
*
*
***Output Voltage Clamp-1***
RX2 60 210 Rideal 0.001
DzVoutP 61 60 DzVoutP
DzVoutN 60 62 DzVoutN
DVoutP 61 63 diode
DVoutN 64 62 diode
VoutP 65 63 dc 5.723
VoutN 64 66 dc 5.603
e60 65 110 111 110 1.004
e61 66 110 112 110 1.004
*
*
***Pole at 300MHz***
g220 220 110 210 110 0.001
R220 220 110 Rideal 1000
C220 220 110 0.5305e-12
*
***Pole at 300MHz***
g230 230 110 220 110 0.001
R230 230 110 Rideal 1000
C230 230 110 0.5305e-12
*
***Buffer***
g240 240 110 230 110 0.001
R240 240 110 Rideal 1000
*
***Buffer***
g245 245 110 240 110 0.001
R245 245 110 Rideal 1000
*
***Buffer***
g250 250 110 245 110 0.001
R250 250 110 Rideal 1000
*
***Buffer***
g255 255 110 250 110 0.001
R255 255 110 Rideal 1000
*
***Buffer***
g260 260 110 255 110 0.001
R260 260 110 Rideal 1000
*
***Buffer***
g265 265 110 260 110 0.001
R265 265 110 Rideal 1000
*
***Buffer***
g270 270 110 265 110 0.001
R270 270 110 Rideal 1000
*
***Buffer***
e280 280 110 270 110 1
R280 280 285 Rideal 10
*
***Buffer***
e290 290 110 285 110 1
R290 290 292 Rideal 10
e295 295 110 292 110 1
*
*
***Output Stage***
g300 300 110 295 110 0.001
R300 300 110 Rideal 1000
e301 301 110 300 110 1
Rout 302 303 Rideal 2
Lout 303 310 1e-9
Cout 310 110 1e-12
*
*
***Output Current Limit***
H1 301 304 Vsense1 100
Vsense1 301 302 dc 0
VIoutP 305 304 dc 3.936
VIoutN 304 306 dc 3.936
DIoutP 307 305 diode
DIoutN 306 307 diode
Rx3 307 300 Rideal 0.001
*
*
***Output Clamp-2***
VoutP1 111 73 dc 0.965
VoutN1 74 112 dc 0.945
DVoutP1 75 73 diode
DVoutN1 74 75 diode
RX4 75 310 Rideal 0.001
*
*
***Supply Currents***
FIoVcc 314 110 Vmeas8 1
Vmeas8 310 311 dc 0
R314 110 314 Rideal 1e9
DzOVcc 110 314 diode
DOVcc V+ 314 diode
RX5 311 312 Rideal 0.001
FIoVee 315 110 Vmeas9 1
Vmeas9 312 313 dc 0
R315 315 110 Rideal 1e9
DzOVee 315 110 diode
DOVee 315 V- diode
*
*
***Output Switch***
S4 OUT 313 106 113 Switch
*
*
*** Common Models ***
.model diode d(bv=100)
.model Switch vswitch(Von=0.105,Voff=0.095,ron=0.001,roff=1e6)
.model DzVoutP D(BV=4.3)
.model DzVoutN D(BV=4.3)
.model DzSlewP D(BV=139.423)
.model DzSlewN D(BV=139.423)
.model DVnoisy D(IS=4.11e-16 KF=3.28e-18)
.model DINnoisy D(IS=7.72e-22 KF=0.00e0)
.model DIPnoisy D(IS=7.72e-22 KF=0.00e0)
.model Rideal res(T_ABS=-273)
*
.ends ADA4625
* ADA4627 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 8/30V, JFET, OP, Low Noise, Low Ib, 1X
* Developed by: HH / ADSJ
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (07/2009)
* Copyright 2009, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
* CAUTION!! To aid in convergence, most Spice simulators add a
* conductance on every node to insure that no node is floating.
* This is GMIN, and the default value is usually 1E-12. To properly
* simulate the low input bias current and low current noise, the
* Spice simulator options have to be set to the following:
* .OPTIONS GMIN=0.01p
* .OPTIONS ABSTOL=0.01pA
* .OPTIONS ITL1=500
* .OPTIONS ITL2=200
* .OPTIONS ITL4=100
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT ADA4627 1 2 99 50 30
*
* INPUT STAGE
*
Cdiff 1 2 4.7E-12
Cin1 1 50 7.5E-12
Cin2 2 50 7.5E-12
*
R3 5 99 1.478E+03
R4 6 99 1.478E+03
J1 5 2 4 JX
J2 6 7 4 JX
*
I1 4 50 2.70E-03
DI1 4a 4 DX
VI1 4a 50 5.5V
IOS 1 2 0.25E-12
EOS 60 1 POLY(2) (17,24) (73,98) 110E-6 1 1
EN 7 60 42 0 1
*
EREF 98 0 24 0 1
*
* SECOND STAGE
*
R5 9 98 4.097E+05
C3 9 98 3.850E-09
G1 98 9 5 6 7.700E-02
V2 99 8 2.86
V3 10 50 2.41;
D1 9 8 DX
D2 10 9 DX
*
* 2nd POLE
*
R13 18 98 1.000E+03
C9 18 98 1.0E-14
G5 98 18 9 24 1E-3
*
* COMMON-MODE GAIN NETWORK
*
R11 16 17 2.698E-01
R12 17 98 1.326E-04
E3 16 98 POLY(2) 1 98 2 98 0 8.459E-03 8.459E-03
C8 16 17 100E-6
*
* PSRR NETWORK
*
EPSY 98 72 POLY(1) (99,50) 3.350E-03 1.005E-01
CPS3 72 73 1.000E-09
RPS3 72 73 9.947E+05
RPS4 73 98 1.326E+02
*
* VOLTAGE NOISE GENERATOR
*
VN1 41 0 DC 2
DN1 41 42 DEN
DN2 42 43 DEN
VN2 0 43 DC 2
*
* CURRENT NOISE GENERATOR
*
VN3 44 0 DC 2
DN3 44 45 DIN
DN4 45 46 DIN
VN4 0 46 DC 2
*
* CURRENT NOISE GENERATOR
*
VN5 47 0 DC 2
DN5 47 48 DIN
DN6 48 49 DIN
VN6 0 49 DC 2
*
* OUTPUT STAGE
*
R14 24 99 500E3
R15 24 50 500E3
GSY 99 50 POLY(1) (99,50) 4.079E-03 2.985E-06
R16 29 99 100
R17 29 50 100
G6 27 50 18 29 10.0E-3
G7 28 50 29 18 10.0E-3
G8 29 99 POLY(1) 99 18 1E-16 1.00E-2
G9 50 29 POLY(1) 18 50 1E-16 1.00E-2
*
V4 25 29 1.99; Isc high side
V5 29 26 2.4
D3 18 25 DX
D4 26 18 DX
*
D5 99 27 DX
D6 99 28 DX
D7 50 27 DY
D8 50 28 DY
F1 29 0 V4 1
F2 0 29 V5 1
L1 29 30a 1E-15
R24 30a 30 1m
*
* MODELS USED
*
.MODEL JX NJF(BETA=3.400E-03 VTO=-1.500 IS=7E-13 RD=1
+ RS=1 CGD=1.5E-12 CGS=1.5E-12 )
*.MODEL JX PJF(BETA=1.4E-3 VTO=-1.000 IS=20E-12 RD=0
*+ RS=0 CGD=3E-12 CGS=3E-12)
.MODEL DX D(IS=1E-15 RS=0 CJO=1E-12)
.MODEL DY D(IS=1E-15 BV=50 RS=10 CJO=1E-12)
.MODEL DEN D(IS=1E-12 RS=1.7E3, KF=6.53E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=12090 KF=0 AF=1)
*
.ENDS ADA4627
$
* ADTL082 SPICE Macro-model Typical Values
* Description: Amplifier
* Generic Desc: Industry Standard TL082
* Developed by: ADSJ -- SS
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 ( 06/2007)
* Copyright 2007, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
* This model simulates typical value parameters at Vs=13V
*
* END Notes
*
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT ADTL082 1 2 99 50 30
*
* INPUT STAGE
*
R3 5 50 6.437E+03
R4 6 50 6.437E+03
CIN 1 2 5.5E-12
I1 99 4 9.321E-04
IOS 1 2 1.00E-12
EOS 60 1 POLY(2) (17,24) (73,24) 2.00E-03 1 1
EN 7 60 POLY(1) (81, 98) 0 1
J1 5 2 4 JX
J2 6 7 4 JX
GB1 2 50 POLY(3) (4,2) (5,2) (50,2) 0 1E-12 1E-12 1E-12
GB2 7 50 POLY(3) (4,7) (6,7) (50,7) 0 1E-12 1E-12 1E-12
*
EREFNEG 1000 0 24 0 -1
EREF 98 0 POLY(2) (99,0) (50,0) 0 .5 .5
*
* VOLTAGE NOISE GENERATOR
*
VN1 80 98 0
RN1 80 98 17.1E-3
HN 81 98 VN1 1.6E1
RN2 81 98 1
* Flicker noise
*
*D10 69 98 DNOISE
*VSN 69 98 DC .6551
*H1 70 98 VSN 8.22E+01
*RN 70 98 1
** SECOND STAGE & POLE AT 1.3 kHZ
*
R5 9 98 1.48E+05
C3 9 98 39000E-12
G1 98 9 5 6 1.30E-01
V2 99 8 0.7
V3 10 1000 -10.2
D1 9 8 DX
D2 10 9 DX
*
* COMMON-MODE GAIN NETWORK
*
E3 16 98 POLY(2) (1,98) (2,98) 0 2.623E-03 2.623E-03
R11 16 17 1.326E+06
R12 17 98 3.183E+03
C8 16 17 100E-12
*E3 16 98 POLY(2) (1,98) (2,98) 0 1.0E-02 1.0E-02
*R11 16 17 3.27E+02
*R12 17 98 1.59E-1
*C8 16 17 50E-8
*
* PSRR NETWORK
*
EPSY 98 72 POLY(1) (99,50) 0 30.00E-02
CPS3 72 73 300E-12
RPS3 72 73 20.0E+05
RPS4 73 98 1.96E+02; was 1.96E+02
*
* POLE AT 15 MHZ
*
R13 18 98 1E3
C9 18 98 1.48E-11
G5 98 18 9 24 1E-3
*
*
* OUTPUT STAGE
*
R14 24 99 500E3
R15 24 50 500E3
CF 24 0 1E-6
GSY 99 50 POLY(1) 99 50 .0002 1.0E-6
R16 29 99 8.00E+01
R17 29 50 8.00E+01
L1 29 30 1E-8
G6 27 50 18 29 1.25E-02
G7 28 50 29 18 1.25E-02
G8 29 99 99 18 1.25E-02
G9 50 29 18 50 1.25E-02
V4 25 29 0.675
V5 29 26 0.675
D3 18 25 DX
D4 26 18 DX
D5 99 27 DX
D6 99 28 DX
D7 50 27 DY
D8 50 28 DY
F1 29 0 V4 1
F2 0 29 V5 1
*
* MODELS USED
*
.MODEL JX PJF(BETA=1.4E-3 VTO=-1.000 IS=20E-12 RD=0
+ RS=0 CGD=1E-12 CGS=1E-12)
.MODEL DX D(IS=1E-12 RS=0 CJO=1E-12)
.MODEL DY D(IS=1E-12 BV=50 RS=10 CJO=1E-12)
.MODEL DEN D(IS=1E-12 RS=200 KF=2.651E-15 AF=6.8E-14)
.MODEL DIN D(IS=1E-12 RS=12090 KF=0 AF=1)
.MODEL DNOISE D(IS=1E-14,RS=0,KF=1.6E-16)
*
*
.ENDS ADTL082
* OP1177 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 5/30V, BIP, OP, Low Vos, Low Ib, 1X
* Developed by: SB, ADSiV apps
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (05/2002)
* Copyright 2002, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include: Vsy=15V
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP1177 1 2 99 50 34
*
* INPUT STAGE & POLE AT 100 MHZ
*
R3 5 51 6.8E3
R4 6 51 6.8E3
CIN 1 2 1.5E-12
C2 5 6 3.5E-12
I1 97 4 500E-6
IOS 1 2 0.1E-9
EOS 9 3 POLY(2) (26, 28) (73, 98) 15E-6 1 1
Q1 5 2 7 QX
Q2 6 9 8 QX
R5 7 4 50
R6 8 4 50
D1 2 36 DZ
D2 1 36 DZ
EN 3 1 10 0 1
GN1 0 2 13 0 1
GN2 0 1 16 0 1
*
EREF 98 0 28 0 1
EP 97 0 99 0 1
EM 51 0 50 0 1
*
* VOLTAGE NOISE SOURCE
*
DN1 35 10 DEN
DN2 10 11 DEN
VN1 35 0 DC 2
VN2 0 11 DC 2
*
* CURRENT NOISE SOURCE
*
DN3 12 13 DIN
DN4 13 14 DIN
VN3 12 0 DC 2
VN4 0 14 DC 2
*
* CURRENT NOISE SOURCE
*
DN5 15 16 DIN
DN6 16 17 DIN
VN5 15 0 DC 2
VN6 0 17 DC 2
*
* GAIN STAGE & DOMINANT POLE AT 0.439 HZ
*
R7 18 98 1.45E7
C3 18 98 25E-9
G1 98 18 5 6 5.15E-3
V2 97 19 1.5
V3 20 51 1.5
D3 18 19 DX
D4 20 18 DX
*
* POLE/ZERO PAIR AT 1.5MHz/12.7MHz
*
R8 21 98 1E3
R9 21 22 1.25E3
C4 22 98 10E-12
G2 98 21 18 28 1E-3
*
* POLE AT 2568 MHz
*
R10 23 98 1
C5 23 98 62E-12
G3 98 23 21 28 1
*
* POLE AT 2568 MHz
*
R11 24 98 1
C6 24 98 62E-12
G4 98 24 23 28 1
*
* POLE AT 2568 MHz
*
R14 27 98 1
C8 27 98 62E-12
G5 98 27 24 28 1
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1 kHZ
*
R12 25 26 1E6
C7 25 26 159.155E-12
R13 26 98 1
E2 25 98 POLY(2) 1 98 2 98 0 0.28 0.28
*
*PSRR=121dB
EPSY 98 72 POLY(1) (99,50) 0 1
RPS3 72 73 1E6
CPS3 72 73 3E-9
RPS4 73 98 1
* OUTPUT STAGE
*
R15 28 99 100E3
R16 28 50 100E3
C9 28 50 1E-6
ISY 99 50 250E-6
R17 29 99 100
R18 29 50 100
L2 29 34 1E-9
G6 32 50 27 29 10E-3
G7 33 50 29 27 10E-3
G8 29 99 99 27 10E-3
G9 50 29 27 50 10E-3
V4 30 29 1.3
V5 29 31 3.8
F1 29 0 V4 1
F2 0 29 V5 1
D5 27 30 DX
D6 31 27 DX
D7 99 32 DX
D8 99 33 DX
D9 50 32 DY
D10 50 33 DY
*
* MODELS USED
*
.MODEL QX PNP(BF=5E5)
.MODEL DX D(IS=1E-12)
.MODEL DY D(IS=1E-15 BV=50)
.MODEL DZ D(IS=1E-15 BV=7.0)
.MODEL DEN D(IS=1E-12 RS=6.8E3 KF=1.95E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=77.3E-6 KF=3.38E-15 AF=1)
.ENDS OP1177
*$
* OP213 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 4/30V, BIP, OP, Low Noise, Low Drift, 2X
* Developed by: JCB / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (09/1992)
* Copyright 1992, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
*
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT OP213 3 2 7 4 6
*
* INPUT STAGE
*
R3 4 19 1.5E3
R4 4 20 1.5E3
C1 19 20 5.31E-12
I1 7 18 106E-6
IOS 2 3 25E-09
EOS 12 5 POLY(1) 51 4 25E-06 1
Q1 19 3 18 PNP1
Q2 20 12 18 PNP1
CIN 3 2 3E-12
D1 3 1 DY
D2 2 1 DY
EN 5 2 22 0 1
GN1 0 2 25 0 1E-5
GN2 0 3 28 0 1E-5
*
* VOLTAGE NOISE SOURCE WITH FLICKER NOISE
*
DN1 21 22 DEN
DN2 22 23 DEN
VN1 21 0 DC 2
VN2 0 23 DC 2
*
* CURRENT NOISE SOURCE WITH FLICKER NOISE
*
DN3 24 25 DIN
DN4 25 26 DIN
VN3 24 0 DC 2
VN4 0 26 DC 2
*
* SECOND CURRENT NOISE SOURCE
*
DN5 27 28 DIN
DN6 28 29 DIN
VN5 27 0 DC 2
VN6 0 29 DC 2
*
* GAIN STAGE & DOMINANT POLE AT .2000E+01 HZ
*
G2 34 36 19 20 2.65E-04
R7 34 36 39E+06
V3 35 4 DC 6
D4 36 35 DX
VB2 34 4 1.6
*
* SUPPLY/2 GENERATOR
*
ISY 7 4 0.2E-3
R10 7 60 40E+3
R11 60 4 40E+3
C3 60 0 1E-9
*
* CMRR STAGE & POLE AT 6 kHZ
*
ECM 50 4 POLY(2) 3 60 2 60 0 0.8 0.8
CCM 50 51 26.5E-12
RCM1 50 51 1E6
RCM2 51 4 1
*
* OUTPUT STAGE
*
R12 37 36 1E3
R13 38 36 500
C4 37 6 20E-12
C5 38 39 20E-12
M1 39 36 4 4 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
M2 45 36 4 4 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
D5 39 47 DX
D6 47 45 DX
Q3 39 40 41 QPA 8
VB 7 40 DC 0.861
R14 7 41 375
Q4 41 7 43 QNA 1
R17 7 43 15
Q5 43 39 6 QNA 20
Q6 46 45 6 QPA 20
R18 46 4 15
Q7 36 46 4 QNA 1
M3 6 36 4 4 MN L=9E-6 W=2000E-6 AD=30E-9 AS=30E-9
*
* NONLINEAR MODELS USED
*
.MODEL DX D (IS=1E-15)
.MODEL DY D (IS=1E-15 BV=7)
.MODEL PNP1 PNP (BF=220)
.MODEL DEN D(IS=1E-12 RS=1016 KF=3.278E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=100019 KF=4.173E-15 AF=1)
.MODEL QNA NPN(IS=1.19E-16 BF=253 VAF=193 VAR=15 RB=2.0E3
+ IRB=7.73E-6 RBM=132.8 RE=4 RC=209 CJE=2.1E-13 VJE=0.573
+ MJE=0.364 CJC=1.64E-13 VJC=0.534 MJC=0.5 CJS=1.37E-12
+ VJS=0.59 MJS=0.5 TF=0.43E-9 PTF=30)
.MODEL QPA PNP(IS=5.21E-17 BF=131 VAF=62 VAR=15 RB=1.52E3
+ IRB=1.67E-5 RBM=368.5 RE=6.31 RC=354.4 CJE=1.1E-13
+ VJE=0.745 MJE=0.33 CJC=2.37E-13 VJC=0.762 MJC=0.4
+ CJS=7.11E-13 VJS=0.45 MJS=0.412 TF=1.0E-9 PTF=30)
.MODEL MN NMOS(LEVEL=3 VTO=1.3 RS=0.3 RD=0.3 TOX=8.5E-8
+ LD=1.48E-6 NSUB=1.53E16 UO=650 DELTA=10 VMAX=2E5
+ XJ=1.75E-6 KAPPA=0.8 ETA=0.066 THETA=0.01 TPG=1 CJ=2.9E-4
+ PB=0.837 MJ=0.407 CJSW=0.5E-9 MJSW=0.33)
*
.ENDS
* OP2177 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 5/30V, BIP, OP, Low Vos, Low Ib, 2X
* Developed by: SB, ADSiV apps
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (05/2002)
* Copyright 2002, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include: Vsy=15V
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP2177 1 2 99 50 34
*
* INPUT STAGE & POLE AT 100 MHZ
*
R3 5 51 6.8E3
R4 6 51 6.8E3
CIN 1 2 1.5E-12
C2 5 6 3.5E-12
I1 97 4 500E-6
IOS 1 2 0.1E-9
EOS 9 3 POLY(2) (26, 28) (73, 98) 15E-6 1 1
Q1 5 2 7 QX
Q2 6 9 8 QX
R5 7 4 50
R6 8 4 50
D1 2 36 DZ
D2 1 36 DZ
EN 3 1 10 0 1
GN1 0 2 13 0 1
GN2 0 1 16 0 1
*
EREF 98 0 28 0 1
EP 97 0 99 0 1
EM 51 0 50 0 1
*
* VOLTAGE NOISE SOURCE
*
DN1 35 10 DEN
DN2 10 11 DEN
VN1 35 0 DC 2
VN2 0 11 DC 2
*
* CURRENT NOISE SOURCE
*
DN3 12 13 DIN
DN4 13 14 DIN
VN3 12 0 DC 2
VN4 0 14 DC 2
*
* CURRENT NOISE SOURCE
*
DN5 15 16 DIN
DN6 16 17 DIN
VN5 15 0 DC 2
VN6 0 17 DC 2
*
* GAIN STAGE & DOMINANT POLE AT 0.439 HZ
*
R7 18 98 1.45E7
C3 18 98 25E-9
G1 98 18 5 6 5.15E-3
V2 97 19 1.5
V3 20 51 1.5
D3 18 19 DX
D4 20 18 DX
*
* POLE/ZERO PAIR AT 1.5MHz/12.7MHz
*
R8 21 98 1E3
R9 21 22 1.25E3
C4 22 98 10E-12
G2 98 21 18 28 1E-3
*
* POLE AT 2568 MHz
*
R10 23 98 1
C5 23 98 62E-12
G3 98 23 21 28 1
*
* POLE AT 2568 MHz
*
R11 24 98 1
C6 24 98 62E-12
G4 98 24 23 28 1
*
* POLE AT 2568 MHz
*
R14 27 98 1
C8 27 98 62E-12
G5 98 27 24 28 1
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1 kHZ
*
R12 25 26 1E6
C7 25 26 159.155E-12
R13 26 98 1
E2 25 98 POLY(2) 1 98 2 98 0 0.28 0.28
*
*PSRR=121dB
EPSY 98 72 POLY(1) (99,50) 0 1
RPS3 72 73 1E6
CPS3 72 73 3E-9
RPS4 73 98 1
* OUTPUT STAGE
*
R15 28 99 100E3
R16 28 50 100E3
C9 28 50 1E-6
ISY 99 50 250E-6
R17 29 99 100
R18 29 50 100
L2 29 34 1E-9
G6 32 50 27 29 10E-3
G7 33 50 29 27 10E-3
G8 29 99 99 27 10E-3
G9 50 29 27 50 10E-3
V4 30 29 1.3
V5 29 31 3.8
F1 29 0 V4 1
F2 0 29 V5 1
D5 27 30 DX
D6 31 27 DX
D7 99 32 DX
D8 99 33 DX
D9 50 32 DY
D10 50 33 DY
*
* MODELS USED
*
.MODEL QX PNP(BF=5E5)
.MODEL DX D(IS=1E-12)
.MODEL DY D(IS=1E-15 BV=50)
.MODEL DZ D(IS=1E-15 BV=7.0)
.MODEL DEN D(IS=1E-12 RS=6.8E3 KF=1.95E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=77.3E-6 KF=3.38E-15 AF=1)
.ENDS OP2177
* OP284 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 3/30V, BIP, OP, Low Noise, RRIO, 2X
* Developed by: HH / ADSJ, ARG / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 4.0 (09/2009) - Increased Ccm, Cdiff
* 3.0 - Adjusted Ccm, Cdiff, and en.
* 2.0 (11/1995) - Changed input transistor betas to conform to final data sheet Ios typical spec of 60nA.
* Copyright 1993, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance with the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT OP284 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
Q1 5 2 3 QIN 1
Q2 6 11 3 QIN 1
Q3 7 2 4 QIP 1
Q4 8 11 4 QIP 1
DC1 2 11 DC
DC2 11 2 DC
Q5 4 9 99 QIP 1
Q6 9 9 99 QIP 1
Q7 3 10 50 QIN 1
Q8 10 10 50 QIN 1
R1 99 5 4E3
R2 99 6 4E3
R3 7 50 4E3
R4 8 50 4E3
IREF 9 10 50.5E-6
EOS 1 11 POLY(2) (22,98) (14,98) -25E-6 1E-2 1
IOS 2 1 5E-9
CIN 1 2 2.3E-12
CCM1 1 50 7.2E-12
CCM2 2 50 7.2E-12
GN1 98 1 (17,98) 1E-3
GN2 98 2 (23,98) 1E-3
*
* VOLTAGE NOISE SOURCE WITH FLICKER NOISE
*
VN1 13 98 DC 2
VN2 98 15 DC 2
DN1 13 14 DEN
DN2 14 15 DEN
*
* CURRENT NOISE SOURCE WITH FLICKER NOISE
*
VN3 16 98 DC 2
VN4 98 18 DC 2
DN3 16 17 DIN
DN4 17 18 DIN
*
* 2ND CURRENT NOISE SOURCE WITH FLICKER NOISE
*
VN5 19 98 DC 2
VN6 98 24 DC 2
DN5 19 23 DIN
DN6 23 24 DIN
*
* GAIN STAGE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 0.5 0.5
G1 98 20 POLY(2) (6,5) (8,7) 0 0.5E-3 0.5E-3
R9 20 98 1E3
*
* COMMON MODE STAGE WITH ZERO AT 100HZ
*
ECM 98 21 POLY(2) (1,98) (2,98) 0 0.5 0.5
R10 21 22 1
R11 22 98 100E-6
C4 21 22 1.592E-3
*
* NEGATIVE ZERO AT 20MHZ
*
E1 27 98 (20,98) 1E6
R17 27 28 1
R18 28 98 1E-6
C8 25 26 7.958E-9
ENZ 25 98 (27,28) 1
VNZ 26 98 DC 0
FNZ 27 28 VNZ -1
*
* POLE AT 40MHZ
*
G4 98 29 (28,98) 1
R19 29 98 1
C9 29 98 3.979E-9
*
* POLE AT 40MHZ
*
G5 98 30 (29,98) 1
R20 30 98 1
C10 30 98 3.979E-9
*
* OUTUT STAGE
*
ISY 99 50 0.276E-3
GIN 50 31 POLY(1) (30,98) .862574E-6 505.879E-6
RIN 31 50 2.75E6
VB 99 32 0.7
Q11 32 31 33 QON 1
R21 33 34 4.5E3
I1 34 50 50E-6
R22 99 35 6E3
Q12 36 36 35 QOP 1
I2 36 50 50E-6
R23 99 37 2.6E3
R24 34 38 5E3
Q13 39 36 37 QOP 1
Q14 39 38 40 QON 1.5
R25 40 50 40
Q15 39 39 41 QON 1
R26 41 42 1E3
R27 99 43 220
Q16 44 44 43 QOP 1.5
Q17 44 39 42 QON 1
R28 42 50 2E3
VSCP 99 97 DC 0
FSCP 46 99 VSCP 1
RSCP 46 99 40
Q20 44 46 99 QOP 1
Q18 45 44 97 QOP 4.5
Q19 45 34 51 QON 4.5
VSCN 51 50 DC 0
FSCN 50 47 VSCN 1
RSCN 47 50 40
Q21 34 47 50 QON 1
CC2 31 45 20E-12
CF1 31 34 15E-12
CF2 31 42 15E-12
CO1 34 45 15E-12
CO2 42 45 5E-12
D3 45 99 DX
D4 50 45 DX
.MODEL DC D(IS=130E-21)
.MODEL DX D()
.MODEL DEN D(RS=380 KF=6E-15 AF=1)
.MODEL DIN D(RS=5.358 KF=56E-15 AF=1)
.MODEL QIN NPN(BF=120 VA=200 IS=0.5E-16)
.MODEL QIP PNP(BF=90 VA=60 IS=0.5E-16)
.MODEL QON NPN(BF=200 VA=200 IS=0.5E-16 RC=50)
.MODEL QOP PNP(BF=200 VA=200 IS=0.5E-16 RC=160)
.ENDS OP284
* OP285 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 9/30V, BIP, OP, High Slew, Low Noise, 2X
* Developed by: ARG / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (06/1992)
* Copyright 1992, 2012 by Analog Devices, Inc.
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP285 1 2 99 50 34
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE & POLE AT 100 MHZ
*
R3 5 51 2.188
R4 6 51 2.188
CIN 1 2 1.5E-12
C2 5 6 364E-12
I1 97 4 100E-3
IOS 1 2 1E-9
EOS 9 3 POLY(1) 26 28 35E-6 1
Q1 5 2 7 QX
Q2 6 9 8 QX
R5 7 4 1.672
R6 8 4 1.672
D1 2 36 DZ
D2 1 36 DZ
EN 3 1 10 0 1
GN1 0 2 13 0 1
GN2 0 1 16 0 1
*
EREF 98 0 28 0 1
EP 97 0 99 0 1
EM 51 0 50 0 1
*
* VOLTAGE NOISE SOURCE
*
DN1 35 10 DEN
DN2 10 11 DEN
VN1 35 0 DC 2
VN2 0 11 DC 2
*
* CURRENT NOISE SOURCE
*
DN3 12 13 DIN
DN4 13 14 DIN
VN3 12 0 DC 2
VN4 0 14 DC 2
CN1 13 0 7.53E-3
*
* CURRENT NOISE SOURCE
*
DN5 15 16 DIN
DN6 16 17 DIN
VN5 15 0 DC 2
VN6 0 17 DC 2
CN2 16 0 7.53E-3
*
* GAIN STAGE & DOMINANT POLE AT 32 HZ
*
R7 18 98 1.09E6
C3 18 98 4.55E-9
G1 98 18 5 6 4.57E-1
V2 97 19 1.4
V3 20 51 1.4
D3 18 19 DX
D4 20 18 DX
*
* POLE/ZERO PAIR AT 1.5MHz/2.7MHz
*
R8 21 98 1E3
R9 21 22 1.25E3
C4 22 98 47.2E-12
G2 98 21 18 28 1E-3
*
* POLE AT 100 MHZ
*
R10 23 98 1
C5 23 98 1.59E-9
G3 98 23 21 28 1
*
* POLE AT 100 MHZ
*
R11 24 98 1
C6 24 98 1.59E-9
G4 98 24 23 28 1
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1 kHZ
*
R12 25 26 1E6
C7 25 26 159.155E-12
R13 26 98 1
E2 25 98 POLY(2) 1 98 2 98 0 2.506 2.506
*
* POLE AT 100 MHZ
*
R14 27 98 1
C8 27 98 1.59E-9
G5 98 27 24 28 1
*
* OUTPUT STAGE
*
R15 28 99 100E3
R16 28 50 100E3
C9 28 50 1E-6
ISY 99 50 1.85E-3
R17 29 99 100
R18 29 50 100
L2 29 34 1E-9
G6 32 50 27 29 10E-3
G7 33 50 29 27 10E-3
G8 29 99 99 27 10E-3
G9 50 29 27 50 10E-3
V4 30 29 1.3
V5 29 31 3.8
F1 29 0 V4 1
F2 0 29 V5 1
D5 27 30 DX
D6 31 27 DX
D7 99 32 DX
D8 99 33 DX
D9 50 32 DY
D10 50 33 DY
*
* MODELS USED
*
.MODEL QX PNP(BF=5E5)
.MODEL DX D(IS=1E-12)
.MODEL DY D(IS=1E-15 BV=50)
.MODEL DZ D(IS=1E-15 BV=7.0)
.MODEL DEN D(IS=1E-12 RS=4.35K KF=1.95E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=77.3E-6 KF=3.38E-15 AF=1)
.ENDS OP285
* OP292 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 4.5/33V, BIP, OP, Low Cost, S SPLY, 2X
* Developed by: ARG / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 2.0 (03/1995)
* Copyright 1993, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT OP292 2 1 99 50 34
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE AND POLE AT 40MHZ
*
I1 99 4 50E-6
IOS 2 1 10E-9
EOS 2 3 POLY(1) (21,30) 1.5E-3 75
CIN 1 2 3E-12
Q1 5 1 7 QP
Q2 6 3 8 QP
R3 5 50 2E3
R4 6 50 2E3
R5 4 7 966
R6 4 8 966
C1 5 6 .995E-12
*
* GAIN STAGE
*
EREF 98 0 (30,0) 1
G1 98 9 (5,6) 500E-6
R7 9 98 210.819E3
D1 9 10 DX
D2 11 9 DX
V1 99 10 .6
V2 11 50 .6
*
* ZERO/POLE AT 6MHZ/12MHZ
*
E1 12 98 (9,30) 2
R8 12 13 1
R9 13 98 1
C3 12 13 26.526E-9
*
* ZERO AT 15MHZ
*
E2 14 98 (13,30) 1E6
R10 14 15 1E6
R11 15 98 1
C4 14 15 10.610E-15
*
* COMMON MODE STAGE WITH ZERO AT 40KHZ
*
ECM 20 98 POLY(2) (1,30) (2,30) 0 0.5 0.5
R20 20 21 1E6
R21 21 98 1
C5 20 21 3.979E-12
*
* POLE AT 100MHZ
*
G2 98 16 (15,30) 1
R12 16 98 1
C6 16 98 1.592E-9
*
* OUTPUT STAGE
*
RS1 99 30 1E6
RS2 30 50 1E6
ISY 99 50 .44E-3
G3 31 50 POLY(1) (16,30) -1.635E-6 4E-6
R16 31 50 1E6
DCL 50 31 DZ
I2 99 32 250E-6
RCL 33 50 56
M1 32 31 50 50 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
M2 34 31 50 50 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
CC 31 32 14E-12
Q3 99 32 34 QNA
Q4 33 32 34 QPA
Q5 31 33 50 QNA
.MODEL QNA NPN(IS=1.19E-16 BF=253 NF=0.99 VAF=193 IKF=2.76E-3
+ ISE=2.57E-13 NE=5 BR=0.4 NR=0.988 VAR=15 IKR=1.465E-4
+ ISC=6.9E-16 NC=0.99 RB=2.0E3 IRB=7.73E-6 RBM=132.8 RE=4 RC=209
+ CJE=2.1E-13 VJE=0.573 MJE=0.364 FC=0.5 CJC=1.64E-13 VJC=0.534 MJC=0.5
+ CJS=1.37E-12 VJS=0.59 MJS=0.5 TF=0.43E-9 PTF=30)
.MODEL QPA PNP(IS=5.21E-17 BF=131 NF=0.99 VAF=62 IKF=8.35E-4
+ ISE=1.09E-14 NE=2.61 BR=0.5 NR=0.984 VAR=15 IKR=3.96E-5
+ ISC=7.58E-16 NC=0.985 RB=1.52E3 IRB=1.67E-5 RBM=368.5 RE=6.31 RC=354.4
+ CJE=1.1E-13 VJE=0.745 MJE=0.33 FC=0.5 CJC=2.37E-13 VJC=0.762 MJC=0.4
+ CJS=7.11E-13 VJS=0.45 MJS=0.412 TF=1.0E-9 PTF=30)
.MODEL MN NMOS(LEVEL=3 VTO=1.3 RS=0.3 RD=0.3
+ TOX=8.5E-8 LD=1.48E-6 WD=1E-6 NSUB=1.53E16 UO=650 DELTA=10 VMAX=2E5
+ XJ=1.75E-6 KAPPA=0.8 ETA=0.066 THETA=0.01 TPG=1 CJ=2.9E-4 PB=0.837
+ MJ=0.407 CJSW=0.5E-9 MJSW=0.33)
.MODEL QP PNP(BF=61.5)
.MODEL DX D
.MODEL DZ D(BV=3.6)
.ENDS OP292
* OP413 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 4/30V, BIP, OP, Low Noise, Low Drift, 4X
* Developed by: ARG / PMI
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (03/1994)
* Copyright 1992, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
*
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT OP413 3 2 7 4 6
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
R3 4 19 1.5E3
R4 4 20 1.5E3
C1 19 20 5.31E-12
I1 7 18 106E-6
IOS 2 3 25E-09
EOS 12 5 POLY(1) 51 4 25E-06 1
Q1 19 3 18 PNP1
Q2 20 12 18 PNP1
CIN 3 2 3E-12
D1 3 1 DY
D2 2 1 DY
EN 5 2 22 0 1
GN1 0 2 25 0 1E-5
GN2 0 3 28 0 1E-5
*
* VOLTAGE NOISE SOURCE WITH FLICKER NOISE
*
DN1 21 22 DEN
DN2 22 23 DEN
VN1 21 0 DC 2
VN2 0 23 DC 2
*
* CURRENT NOISE SOURCE WITH FLICKER NOISE
*
DN3 24 25 DIN
DN4 25 26 DIN
VN3 24 0 DC 2
VN4 0 26 DC 2
*
* SECOND CURRENT NOISE SOURCE
*
DN5 27 28 DIN
DN6 28 29 DIN
VN5 27 0 DC 2
VN6 0 29 DC 2
*
* GAIN STAGE & DOMINANT POLE AT 2HZ
*
G2 34 36 19 20 2.65E-04
R7 34 36 39E6
V3 35 4 DC 6
D4 36 35 DX
VB2 34 4 1.6
*
* SUPPLY/2 GENERATOR
*
ISY 7 4 0.2E-3
R10 7 60 40E3
R11 60 4 40E3
C3 60 0 1E-9
*
* CMRR STAGE & POLE AT 6kHZ
*
ECM 50 4 POLY(2) 3 60 2 60 0 0.8 0.8
CCM 50 51 26.5E-12
RCM1 50 51 1E6
RCM2 51 4 1
*
* OUTPUT STAGE
*
R12 37 36 1E3
R13 38 36 500
C4 37 6 20E-12
C5 38 39 20E-12
M1 39 36 4 4 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
M2 45 36 4 4 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
D5 39 47 DX
D6 47 45 DX
Q3 39 40 41 QPA 8
VB 7 40 DC 0.861
R14 7 41 375
Q4 41 7 43 QNA 1
R17 7 43 15
Q5 43 39 6 QNA 20
Q6 46 45 6 QPA 20
R18 46 4 15
Q7 36 46 4 QNA 1
M3 6 36 4 4 MN L=9E-6 W=2000E-6 AD=30E-9 AS=30E-9
*
* NONLINEAR MODELS USED
*
.MODEL DX D (IS=1E-15)
.MODEL DY D (IS=1E-15 BV=7)
.MODEL PNP1 PNP (BF=220)
.MODEL DEN D(IS=1E-12 RS=1016 KF=3.278E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=100019 KF=4.173E-15 AF=1)
.MODEL QNA NPN(IS=1.19E-16 BF=253 VAF=193 VAR=15 RB=2.0E3
+ IRB=7.73E-6 RBM=132.8 RE=4 RC=209 CJE=2.1E-13 VJE=0.573
+ MJE=0.364 CJC=1.64E-13 VJC=0.534 MJC=0.5 CJS=1.37E-12
+ VJS=0.59 MJS=0.5 TF=0.43E-9 PTF=30)
.MODEL QPA PNP(IS=5.21E-17 BF=131 VAF=62 VAR=15 RB=1.52E3
+ IRB=1.67E-5 RBM=368.5 RE=6.31 RC=354.4 CJE=1.1E-13
+ VJE=0.745 MJE=0.33 CJC=2.37E-13 VJC=0.762 MJC=0.4
+ CJS=7.11E-13 VJS=0.45 MJS=0.412 TF=1.0E-9 PTF=30)
.MODEL MN NMOS(LEVEL=3 VTO=1.3 RS=0.3 RD=0.3 TOX=8.5E-8
+ LD=1.48E-6 NSUB=1.53E16 UO=650 DELTA=10 VMAX=2E5
+ XJ=1.75E-6 KAPPA=0.8 ETA=0.066 THETA=0.01 TPG=1 CJ=2.9E-4
+ PB=0.837 MJ=0.407 CJSW=0.5E-9 MJSW=0.33)
.ENDS OP413
* OP4177 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 5/30V, BIP, OP, Low Vos, Low Ib, 4X
* Developed by: SB, ADSiV apps
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (05/2002)
* Copyright 2002, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include: Vsy=+/-15V
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP4177 1 2 99 50 34
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE & POLE AT 100 MHZ
*
R3 5 51 6.8E3
R4 6 51 6.8E3
CIN 1 2 1.5E-12
C2 5 6 3.5E-12
I1 97 4 500E-6
IOS 1 2 0.1E-9
EOS 9 3 POLY(2) (26, 28) (73, 98) 15E-6 1 1
Q1 5 2 7 QX
Q2 6 9 8 QX
R5 7 4 50
R6 8 4 50
D1 2 36 DZ
D2 1 36 DZ
EN 3 1 10 0 1
GN1 0 2 13 0 1
GN2 0 1 16 0 1
*
EREF 98 0 28 0 1
EP 97 0 99 0 1
EM 51 0 50 0 1
*
* VOLTAGE NOISE SOURCE
*
DN1 35 10 DEN
DN2 10 11 DEN
VN1 35 0 DC 2
VN2 0 11 DC 2
*
* CURRENT NOISE SOURCE
*
DN3 12 13 DIN
DN4 13 14 DIN
VN3 12 0 DC 2
VN4 0 14 DC 2
*
* CURRENT NOISE SOURCE
*
DN5 15 16 DIN
DN6 16 17 DIN
VN5 15 0 DC 2
VN6 0 17 DC 2
*
* GAIN STAGE & DOMINANT POLE AT 0.439 HZ
*
R7 18 98 1.45E7
C3 18 98 25E-9
G1 98 18 5 6 5.15E-3
V2 97 19 1.5
V3 20 51 1.5
D3 18 19 DX
D4 20 18 DX
*
* POLE/ZERO PAIR AT 1.5MHz/12.7MHz
*
R8 21 98 1E3
R9 21 22 1.25E3
C4 22 98 10E-12
G2 98 21 18 28 1E-3
*
* POLE AT 2568 MHz
*
R10 23 98 1
C5 23 98 62E-12
G3 98 23 21 28 1
*
* POLE AT 2568 MHz
*
R11 24 98 1
C6 24 98 62E-12
G4 98 24 23 28 1
*
* POLE AT 2568 MHz
*
R14 27 98 1
C8 27 98 62E-12
G5 98 27 24 28 1
*
* COMMON-MODE GAIN NETWORK WITH ZERO AT 1 kHZ
*
R12 25 26 1E6
C7 25 26 159.155E-12
R13 26 98 1
E2 25 98 POLY(2) 1 98 2 98 0 0.28 0.28
*
*PSRR=121dB
EPSY 98 72 POLY(1) (99,50) 0 1
RPS3 72 73 1E6
CPS3 72 73 3E-9
RPS4 73 98 1
* OUTPUT STAGE
*
R15 28 99 100E3
R16 28 50 100E3
C9 28 50 1E-6
ISY 99 50 250E-6
R17 29 99 100
R18 29 50 100
L2 29 34 1E-9
G6 32 50 27 29 10E-3
G7 33 50 29 27 10E-3
G8 29 99 99 27 10E-3
G9 50 29 27 50 10E-3
V4 30 29 1.3
V5 29 31 3.8
F1 29 0 V4 1
F2 0 29 V5 1
D5 27 30 DX
D6 31 27 DX
D7 99 32 DX
D8 99 33 DX
D9 50 32 DY
D10 50 33 DY
*
* MODELS USED
*
.MODEL QX PNP(BF=5E5)
.MODEL DX D(IS=1E-12)
.MODEL DY D(IS=1E-15 BV=50)
.MODEL DZ D(IS=1E-15 BV=7.0)
.MODEL DEN D(IS=1E-12 RS=6.8E3 KF=1.95E-15 AF=1)
.MODEL DIN D(IS=1E-12 RS=77.3E-6 KF=3.38E-15 AF=1)
.ENDS OP4177
* OP484 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 3/30V, BIP, OP, Low Noise, RRIO, 4X
* Developed by: ARG / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (11/1995)
* Copyright 1993, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT OP484 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE
*
Q1 5 2 3 QIN 1
Q2 6 11 3 QIN 1
Q3 7 2 4 QIP 1
Q4 8 11 4 QIP 1
DC1 2 11 DC
DC2 11 2 DC
Q5 4 9 99 QIP 1
Q6 9 9 99 QIP 1
Q7 3 10 50 QIN 1
Q8 10 10 50 QIN 1
R1 99 5 4E3
R2 99 6 4E3
R3 7 50 4E3
R4 8 50 4E3
IREF 9 10 50.5E-6
EOS 1 11 POLY(2) (22,98) (14,98) -25E-6 1E-2 1
IOS 2 1 1E-9
CIN 1 2 2E-12
GN1 98 1 (17,98) 1E-3
GN2 98 2 (23,98) 1E-3
*
* VOLTAGE NOISE SOURCE WITH FLICKER NOISE
*
VN1 13 98 DC 2
VN2 98 15 DC 2
DN1 13 14 DEN
DN2 14 15 DEN
*
* CURRENT NOISE SOURCE WITH FLICKER NOISE
*
VN3 16 98 DC 2
VN4 98 18 DC 2
DN3 16 17 DIN
DN4 17 18 DIN
*
* 2ND CURRENT NOISE SOURCE WITH FLICKER NOISE
*
VN5 19 98 DC 2
VN6 98 24 DC 2
DN5 19 23 DIN
DN6 23 24 DIN
*
* GAIN STAGE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 0.5 0.5
G1 98 20 POLY(2) (6,5) (8,7) 0 0.5E-3 0.5E-3
R9 20 98 1E3
*
* COMMON MODE STAGE WITH ZERO AT 100HZ
*
ECM 98 21 POLY(2) (1,98) (2,98) 0 0.5 0.5
R10 21 22 1
R11 22 98 100E-6
C4 21 22 1.592E-3
*
* NEGATIVE ZERO AT 20MHZ
*
E1 27 98 (20,98) 1E6
R17 27 28 1
R18 28 98 1E-6
C8 25 26 7.958E-9
ENZ 25 98 (27,28) 1
VNZ 26 98 DC 0
FNZ 27 28 VNZ -1
*
* POLE AT 40MHZ
*
G4 98 29 (28,98) 1
R19 29 98 1
C9 29 98 3.979E-9
*
* POLE AT 40MHZ
*
G5 98 30 (29,98) 1
R20 30 98 1
C10 30 98 3.979E-9
*
* OUTUT STAGE
*
ISY 99 50 0.276E-3
GIN 50 31 POLY(1) (30,98) .862574E-6 505.879E-6
RIN 31 50 2.75E6
VB 99 32 0.7
Q11 32 31 33 QON 1
R21 33 34 4.5E3
I1 34 50 50E-6
R22 99 35 6E3
Q12 36 36 35 QOP 1
I2 36 50 50E-6
R23 99 37 2.6E3
R24 34 38 5E3
Q13 39 36 37 QOP 1
Q14 39 38 40 QON 1.5
R25 40 50 40
Q15 39 39 41 QON 1
R26 41 42 1E3
R27 99 43 220
Q16 44 44 43 QOP 1.5
Q17 44 39 42 QON 1
R28 42 50 2E3
VSCP 99 97 DC 0.088
FSCP 46 99 VSCP 1
RSCP 46 99 40
Q20 44 46 99 QOP 1
Q18 45 44 97 QOP 4.5
Q19 45 34 51 QON 4.5
VSCN 51 50 DC 0.081
FSCN 50 47 VSCN 1
RSCN 47 50 40
Q21 34 47 50 QON 1
CC2 31 45 20E-12
CF1 31 34 15E-12
CF2 31 42 15E-12
CO1 34 45 15E-12
CO2 42 45 5E-12
D3 45 99 DX
D4 50 45 DX
.MODEL DC D(IS=130E-21)
.MODEL DX D()
.MODEL DEN D(RS=100 KF=12E-15 AF=1)
.MODEL DIN D(RS=5.358 KF=56E-15 AF=1)
.MODEL QIN NPN(BF=120 VA=200 IS=0.5E-16)
.MODEL QIP PNP(BF=90 VA=60 IS=0.5E-16)
.MODEL QON NPN(BF=200 VA=200 IS=0.5E-16 RC=50)
.MODEL QOP PNP(BF=200 VA=200 IS=0.5E-16 RC=160)
.ENDS OP484
* OP492 SPICE Macro-model
* Description: Amplifier
* Generic Desc: 4.5/33V, BIP, OP, Low Cost, S SPLY, 4X
* Developed by: ARG / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 2.0 (03/1995)
* Copyright 1993, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT OP492 2 1 99 50 34
*#ASSOC Category="Op-amps" symbol=opamp
*
* INPUT STAGE AND POLE AT 40MHZ
*
I1 99 4 50E-6
IOS 2 1 10E-9
EOS 2 3 POLY(1) (21,30) 1.5E-3 75
CIN 1 2 3E-12
Q1 5 1 7 QP
Q2 6 3 8 QP
R3 5 50 2E3
R4 6 50 2E3
R5 4 7 966
R6 4 8 966
C1 5 6 .995E-12
*
* GAIN STAGE
*
EREF 98 0 (30,0) 1
G1 98 9 (5,6) 500E-6
R7 9 98 210.819E3
D1 9 10 DX
D2 11 9 DX
V1 99 10 .6
V2 11 50 .6
*
* ZERO/POLE AT 6MHZ/12MHZ
*
E1 12 98 (9,30) 2
R8 12 13 1
R9 13 98 1
C3 12 13 26.526E-9
*
* ZERO AT 15MHZ
*
E2 14 98 (13,30) 1E6
R10 14 15 1E6
R11 15 98 1
C4 14 15 10.610E-15
*
* COMMON MODE STAGE WITH ZERO AT 40KHZ
*
ECM 20 98 POLY(2) (1,30) (2,30) 0 0.5 0.5
R20 20 21 1E6
R21 21 98 1
C5 20 21 3.979E-12
*
* POLE AT 100MHZ
*
G2 98 16 (15,30) 1
R12 16 98 1
C6 16 98 1.592E-9
*
* OUTPUT STAGE
*
RS1 99 30 1E6
RS2 30 50 1E6
ISY 99 50 .44E-3
G3 31 50 POLY(1) (16,30) -1.635E-6 4E-6
R16 31 50 1E6
DCL 50 31 DZ
I2 99 32 250E-6
RCL 33 50 56
M1 32 31 50 50 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
M2 34 31 50 50 MN L=9E-6 W=1000E-6 AD=15E-9 AS=15E-9
CC 31 32 14E-12
Q3 99 32 34 QNA
Q4 33 32 34 QPA
Q5 31 33 50 QNA
.MODEL QNA NPN(IS=1.19E-16 BF=253 NF=0.99 VAF=193 IKF=2.76E-3
+ ISE=2.57E-13 NE=5 BR=0.4 NR=0.988 VAR=15 IKR=1.465E-4
+ ISC=6.9E-16 NC=0.99 RB=2.0E3 IRB=7.73E-6 RBM=132.8 RE=4 RC=209
+ CJE=2.1E-13 VJE=0.573 MJE=0.364 FC=0.5 CJC=1.64E-13 VJC=0.534 MJC=0.5
+ CJS=1.37E-12 VJS=0.59 MJS=0.5 TF=0.43E-9 PTF=30)
.MODEL QPA PNP(IS=5.21E-17 BF=131 NF=0.99 VAF=62 IKF=8.35E-4
+ ISE=1.09E-14 NE=2.61 BR=0.5 NR=0.984 VAR=15 IKR=3.96E-5
+ ISC=7.58E-16 NC=0.985 RB=1.52E3 IRB=1.67E-5 RBM=368.5 RE=6.31 RC=354.4
+ CJE=1.1E-13 VJE=0.745 MJE=0.33 FC=0.5 CJC=2.37E-13 VJC=0.762 MJC=0.4
+ CJS=7.11E-13 VJS=0.45 MJS=0.412 TF=1.0E-9 PTF=30)
.MODEL MN NMOS(LEVEL=3 VTO=1.3 RS=0.3 RD=0.3
+ TOX=8.5E-8 LD=1.48E-6 WD=1E-6 NSUB=1.53E16 UO=650 DELTA=10 VMAX=2E5
+ XJ=1.75E-6 KAPPA=0.8 ETA=0.066 THETA=0.01 TPG=1 CJ=2.9E-4 PB=0.837
+ MJ=0.407 CJSW=0.5E-9 MJSW=0.33)
.MODEL QP PNP(BF=61.5)
.MODEL DX D
.MODEL DZ D(BV=3.6)
.ENDS OP492
* OP727 SPICE Macro-model Typical Values
* Description: Amplifier
* Generic Desc: 2.7/30V, BIP, OP, S SPLY, RRO, 2X
* Developed by: RM / ADSC, HH / ADSJ
* Revision History: 08/10/2012 - Updated to new header style
* 1.2 (04/2009) - Corrected EVP, EVN
* 1.1 (08/2000)
* Copyright 2000, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP727 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* PNP INPUT STAGE
*
Q1 5 7 3 PIX
Q2 6 2 3 PIX
RC1 5 50 8000
RC2 6 50 8000
C1 5 6 0.5E-12
D1 3 8 DX
V1 99 8 DC 1.0
I1 99 3 50E-6
EOS 7 1 POLY(3) (73,98) (81,98) (22,98) 0.08E-3 1 1 1
IOS 2 1 1E-9
*
* PSRR=120dB, ZERO AT 150Hz
*
RPS1 70 0 1E+6
RPS2 71 0 1E+6
CPS1 99 70 1E-5
CPS2 50 71 1E-5
EPSY 98 72 POLY(2) (70,0) (0,71) 0 1 1
RPS3 72 73 1E+6
CPS3 72 73 1.06E-9
RPS4 73 98 1
*
EVP 97 98 (99,50) 0.5
EVN 51 98 (50,99) 0.5
*
* VOLTAGE NOISE REFERENCE OF 15nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 16.45E-3
HN 81 98 VN1 15
RN2 81 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 .5 .5
GSY 99 50 POLY(1) (99,50) 0 2.6E-6
*
*
* CMRR 110dB, ZERO AT 400Hz
*
ECM1 21 98 POLY(2) (1,98) (2,98) 0 .5 .5
RCM1 21 22 1E+6
CCM1 21 22 0.397E-9
RCM2 22 98 1
*
* GAIN STAGE
*
G1 98 30 POLY(1) (5,6) 0 28.8E-6
R1 30 98 2.02E+8
CF 45 30 50E-12
D3 30 97 DX
D4 51 30 DX
*
* OUTPUT STAGE
*
M5 45 46 99 99 POX L=1E-6 W=0.329E-3
M6 45 47 50 50 NOX L=1E-6 W=0.496E-3
EG1 99 46 POLY(1) (98,30) 0.6299 1
EG2 47 50 POLY(1) (30,98) 0.5739 1
*
* MODELS
*
.MODEL POX PMOS (LEVEL=2,KP=10E-6,VTO=-0.328,LAMBDA=0.01,KF=2.5E-23,AF=1)
.MODEL NOX NMOS (LEVEL=2,KP=10E-6,VTO=+0.328,LAMBDA=0.01,KF=2.5E-23,AF=1)
.MODEL PIX PNP (BF=2273,IS=1E-14,VAF=130)
.MODEL DX D(IS=1E-14,RS=5)
.ENDS OP727
* OP747 SPICE Macro-model Typical Values
* Description: Amplifier
* Generic Desc: 2.7/30V, BIP, OP, S SPLY, RRO, 4X
* Developed by: RM / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 1.2 (04/2009) - Corrected EVP, EVN
* 1.1 (08/2000)
* Copyright 2000, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP747 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* PNP INPUT STAGE
*
Q1 5 7 3 PIX
Q2 6 2 3 PIX
RC1 5 50 8000
RC2 6 50 8000
C1 5 6 0.5E-12
D1 3 8 DX
V1 99 8 DC 1.0
I1 99 3 50E-6
EOS 7 1 POLY(3) (73,98) (81,98) (22,98) 0.08E-3 1 1 1
IOS 2 1 1E-9
*
* PSRR=120dB, ZERO AT 150Hz
*
RPS1 70 0 1E+6
RPS2 71 0 1E+6
CPS1 99 70 1E-5
CPS2 50 71 1E-5
EPSY 98 72 POLY(2) (70,0) (0,71) 0 1 1
RPS3 72 73 1E+6
CPS3 72 73 1.06E-9
RPS4 73 98 1
*
* VOLTAGE NOISE REFERENCE OF 15nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 16.45E-3
HN 81 98 VN1 15
RN2 81 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 .5 .5
GSY 99 50 POLY(1) (99,50) 0 2.6E-6
EVP 97 98 POLY(1) (99,50) 0 0.5
EVN 51 98 POLY(1) (50,99) 0 0.5
*
*
* CMRR 110dB, ZERO AT 400Hz
*
ECM1 21 98 POLY(2) (1,98) (2,98) 0 .5 .5
RCM1 21 22 1E+6
CCM1 21 22 0.397E-9
RCM2 22 98 1
*
* GAIN STAGE
*
G1 98 30 POLY(1) (5,6) 0 28.8E-6
R1 30 98 2.02E+8
CF 45 30 50E-12
D3 30 97 DX
D4 51 30 DX
*
* OUTPUT STAGE
*
M5 45 46 99 99 POX L=1E-6 W=0.329E-3
M6 45 47 50 50 NOX L=1E-6 W=0.496E-3
EG1 99 46 POLY(1) (98,30) 0.6299 1
EG2 47 50 POLY(1) (30,98) 0.5739 1
*
* MODELS
*
.MODEL POX PMOS (LEVEL=2,KP=10E-6,VTO=-0.328,LAMBDA=0.01,KF=2.5E-23,AF=1)
.MODEL NOX NMOS (LEVEL=2,KP=10E-6,VTO=+0.328,LAMBDA=0.01,KF=2.5E-23,AF=1)
.MODEL PIX PNP (BF=2273,IS=1E-14,VAF=130)
.MODEL DX D(IS=1E-14,RS=5)
.ENDS OP747
* OP777 SPICE Macro-model Typical Values
* Description: Amplifier
* Generic Desc: 2.7/30V, BIP, OP, S SPLY, RRO, 1X
* Developed by: RM / ADSC
* Revision History: 08/10/2012 - Updated to new header style
* 1.2 (04/2009) - Corrected EVP, EVN
* 1.1 (08/2000)
* Copyright 2000, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this model
* indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes:
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT OP777 1 2 99 50 45
*#ASSOC Category="Op-amps" symbol=opamp
*
* PNP INPUT STAGE
*
Q1 5 7 3 PIX
Q2 6 2 3 PIX
RC1 5 50 8000
RC2 6 50 8000
C1 5 6 0.5E-12
D1 3 8 DX
V1 99 8 DC 1.0
I1 99 3 50E-6
EOS 7 1 POLY(3) (73,98) (81,98) (22,98) 0.08E-3 1 1 1
IOS 2 1 1E-9
*
* PSRR=120dB, ZERO AT 150Hz
*
RPS1 70 0 1E+6
RPS2 71 0 1E+6
CPS1 99 70 1E-5
CPS2 50 71 1E-5
EPSY 98 72 POLY(2) (70,0) (0,71) 0 1 1
RPS3 72 73 1E+6
CPS3 72 73 1.06E-9
RPS4 73 98 1
*
* VOLTAGE NOISE REFERENCE OF 15nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 16.45E-3
HN 81 98 VN1 15
RN2 81 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 .5 .5
GSY 99 50 POLY(1) (99,50) 0 2.6E-6
EVP 97 98 (99,50) 0.5
EVN 51 98 (50,99) 0.5
*
*
* CMRR 110dB, ZERO AT 400Hz
*
ECM1 21 98 POLY(2) (1,98) (2,98) 0 .5 .5
RCM1 21 22 1E+6
CCM1 21 22 0.397E-9
RCM2 22 98 1
*
* GAIN STAGE
*
G1 98 30 POLY(1) (5,6) 0 28.8E-6
R1 30 98 2.02E+8
CF 45 30 50E-12
D3 30 97 DX
D4 51 30 DX
*
* OUTPUT STAGE
*
M5 45 46 99 99 POX L=1E-6 W=0.329E-3
M6 45 47 50 50 NOX L=1E-6 W=0.496E-3
EG1 99 46 POLY(1) (98,30) 0.6299 1
EG2 47 50 POLY(1) (30,98) 0.5739 1
*
* MODELS
*
.MODEL POX PMOS (LEVEL=2,KP=10E-6,VTO=-0.328,LAMBDA=0.01,KF=2.5E-23,AF=1)
.MODEL NOX NMOS (LEVEL=2,KP=10E-6,VTO=+0.328,LAMBDA=0.01,KF=2.5E-23,AF=1)
.MODEL PIX PNP (BF=2273,IS=1E-14,VAF=130)
.MODEL DX D(IS=1E-14,RS=5)
.ENDS OP777
* AD8235 SPICE Macro-model
* Description: Amplifier
* Generic Desc: CMOS, InAmp, 40 microA, WLCSP
* Developed by:
* Revision History: 08/10/2012 - Updated to new header style
* 1.0 (12/2009)
* Copyright 2009, 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html for License Statement. Use of this
* model indicates your acceptance of the terms and provisions in the License Statement.
*
* BEGIN Notes: VSY=5V, T=25C
*
* Not Modeled:
*
* Parameters modeled include:
*
* END Notes
*
* Node Assignments
* -input
* | rg1
* | | rg2
* | | | +input
* | | | | shutdwn Neg Supply
* | | | | | | ref
* | | | | | | | out
* | | | | | | | | Pos Supply
* | | | | | | | | |
.SUBCKT AD8235 Vin- RG- RG+ Vin+ SDN VNEG REF VOUT VPOS
*Amplifiers
X_U1 Vin- RG- 1 2 9 AMPA
X_U2 Vin+ 7 1 2 VOUT AMPB
*Gain Error for RG resistor
R5 7 RG+ 6
*Adjustable Supply Current for Low Supply Voltage
I3 1 2 6.5E-6
G1 1 2 2 1 1.5E-6
* Shutdown Switches
S1 1 VPOS SDN VNEG SW
S2 2 VNEG SDN VNEG SW
*Resistor Network
R1 REF RG- 209.8K
R2 RG- 9 52.5K
R3 9 7 52.5K
R4 7 VOUT 209.85K
*Switch Model
.MODEL SW VSWITCH(VON=1.3 VOFF=0.5 RON=1 ROFF=1E9)
.ENDS AD8235
*$
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT AMPA 1 2 99 50 45
*
* INPUT STAGE
*
M1 4 7 8 8 PIX L=2E-6 W=9.070E-04
M2 6 2 8 8 PIX L=2E-6 W=9.070E-04
Cinp 1 50 4.2pF
Cinn 2 50 4.2pF
Cdiff 1 2 3pF
RD1 4 50 5.333E+04
RD2 6 50 5.333E+04
C1 4 6 7.650E-12
I1 99 8 7.500E-06
V1 9 8 +0.025E-00
D1 9 99 DX
EOS 7 1 POLY(4) (73,98) (22,98) (81,98) (83,98) 0 1 1 1 1
IOS 1 2 -5.0E-12
*
* CMRR=95dB, POLE AT 3500 Hz
*
E1 72 98 POLY(2) (1,98) (2,98) 0 1.289E-02 1.289E-02
R10 72 73 4.613E+01
R20 73 98 3.183E-02
C10 72 73 1.000E-06
*
* PSRR=100dB, POLE AT 100 Hz
*
EPSY 21 98 POLY(1) (99,50) -0.181E-00 -0.03E-00
RPS1 21 22 1.274E+04
RPS2 22 98 2.989E-00
CPS1 21 22 0.20E-07
*
* VOLTAGE NOISE REFERENCE OF 45nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 17.500E-3
HN 81 98 VN1 4.62E+1
RN2 81 98 1
*
* FLICKER NOISE CORNER = 20000 Hz
*
DFN 82 98 DNOISE
VFN 82 98 DC 0.6531
HFN 83 98 POLY(1) VFN 1.00E-03 1.00E+00
RFN 83 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 0.5 0.5
GSY 99 50 POLY(1) (99,50) +0.580E-06 0.2710E-06
EVP 97 98 (99,50) 0.5
EVN 51 98 (50,99) 0.5
*
* GAIN STAGE
*
G1 98 30 (4,6) 4.474E-04
R1 30 98 1.00E+06
CF 30 31 1.55E-08
RZ 455 31 1.2280E-03
EZ 455 98 (451 98) 1
V3 32 30 0.279E+00
V4 30 33 0.362E-00
D3 32 97 DX
D4 51 33 DX
*
* OUTPUT STAGE
*
M5 451 46 99 99 POX L=1E-6 W=3.940E-04
M6 451 47 50 50 NOX L=1E-6 W=4.598E-04
Lout 451 45 10pH
EG1 99 46 POLY(1) (98,30) 3.598E-01 1
EG2 47 50 POLY(1) (30,98) 3.574E-01 1
*
* MODELS
*
.MODEL POX PMOS (LEVEL=2,KP=3.00E-05,VTO=-0.328,LAMBDA=0.015,RD=0)
.MODEL NOX NMOS (LEVEL=2,KP=3.00E-05,VTO=+0.328,LAMBDA=0.015,RD=0)
.MODEL PIX PMOS (LEVEL=2,KP=5.00E-05,VTO=-5.00E-01,LAMBDA=0.01)
.MODEL DX D(IS=1E-14,RS=0.1)
.MODEL DNOISE D(IS=1E-14,RS=0,KF=12.400E-11)
*
*
.ENDS AMPA
*
*$
* Node Assignments
* noninverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
* | | | | |
.SUBCKT AMPB 1 2 99 50 45
*
* INPUT STAGE
*
M1 4 7 8 8 PIX L=2E-6 W=9.070E-04
M2 6 2 8 8 PIX L=2E-6 W=9.070E-04
Cinp 1 50 4.2pF
Cinn 2 50 4.2pF
Cdiff 1 2 3pF
RD1 4 50 5.333E+04
RD2 6 50 5.333E+04
C1 4 6 7.650E-12
I1 99 8 7.500E-06
V1 9 8 +0.025E-00
D1 9 99 DX
EOS 7 1 POLY(4) (73,98) (22,98) (81,98) (83,98) 0.926m 1 1 1 1
IOS 1 2 -10E-12
*
* CMRR=95dB, POLE AT 3500 Hz
*
E1 72 98 POLY(2) (1,98) (2,98) 0 1.289E-02 1.289E-02
R10 72 73 4.613E+01
R20 73 98 3.183E-02
C10 72 73 1.000E-06
*
* PSRR=100dB, POLE AT 100 Hz
*
EPSY 21 98 POLY(1) (99,50) -0.181E-00 0.03E-00
RPS1 21 22 2.274E+04
RPS2 22 98 1.989E-00
CPS1 21 22 0.20E-07
*
* VOLTAGE NOISE REFERENCE OF 45nV/rt(Hz)
*
VN1 80 98 0
RN1 80 98 17.500E-3
HN 81 98 VN1 4.62E+1
RN2 81 98 1
*
* FLICKER NOISE CORNER = 20000 Hz
*
DFN 82 98 DNOISE
VFN 82 98 DC 0.6531
HFN 83 98 POLY(1) VFN 1.00E-03 1.00E+00
RFN 83 98 1
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 0.5 0.5
GSY 99 50 POLY(1) (99,50) +0.580E-06 0.2710E-06
EVP 97 98 (99,50) 0.5
EVN 51 98 (50,99) 0.5
*
* GAIN STAGE
*
G1 98 30 (4,6) 4.474E-04
R1 30 98 1.00E+06
CF 30 31 1.55E-08
RZ 455 31 1.2280E-03
EZ 455 98 (451 98) 1
V3 32 30 0.279E+00
V4 30 33 0.362E-00
D3 32 97 DX
D4 51 33 DX
*
* OUTPUT STAGE
*
M5 451 46 99 99 POX L=1E-6 W=3.940E-04
M6 451 47 50 50 NOX L=1E-6 W=4.598E-04
Lout 451 45 10pH
EG1 99 46 POLY(1) (98,30) 3.598E-01 1
EG2 47 50 POLY(1) (30,98) 3.574E-01 1
*
* MODELS
*
.MODEL POX PMOS (LEVEL=2,KP=3.00E-05,VTO=-0.328,LAMBDA=0.015,RD=0)
.MODEL NOX NMOS (LEVEL=2,KP=3.00E-05,VTO=+0.328,LAMBDA=0.015,RD=0)
.MODEL PIX PMOS (LEVEL=2,KP=5.00E-05,VTO=-5.00E-01,LAMBDA=0.01)
.MODEL DX D(IS=1E-14,RS=0.1)
.MODEL DNOISE D(IS=1E-14,RS=0,KF=12.400E-11)
*
*
.ENDS AMPB
*
*$
* AD8236 SPICE Macro-model
* Description: Instrumentation, Amplifier
* Generic Desc: CMOS, InAmp, 40 microA, MSOP
* Developed by: GC, KF
* Revision History: 08/10/2012 - Updated to new header style
* 09/18/2015 - Updated model to latest coding standards
* 2.0 (beta3) (01/2016)
* Copyright 2009, 2015 by Analog Devices
*
*Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spicemodels/license
*for License Statement. Use of this model indicates your acceptance
*of the terms and provisions in the License Staement.
*
* BEGIN Notes: VSY=5V, T=25C
**Not modeled: Distortion, PSRR, Overload Recovery,
* Shutdown Turn On/Turn Off time
*
*Parameters modeled include:
* Vos, Ibias, Supply Current, Input CM limits and Typ output voltge swing over full supply range,
* Bandwidth over all gains, Slew Rate, Output current limits, Voltage & Current Noise,
* Capacitive load drive, CMRR, Output Swing vs. Load Resistance
* Single supply & offset supply functionality.
* END Notes
*
*
* Node Assignments
* -input
* | rg1
* | | rg2
* | | | +input
* | | | |
* | | | | Neg Supply
* | | | | | ref out
* | | | | | | | Pos Supply
* | | | | | | | |
*
.SUBCKT AD8236 Vin- RG- RG+ Vin+ VNEG REF VOUT VPOS
*
*Amplifiers
X_U1 Vin- RG- VPOSa VNEGa 9 AMPA
X_U2 Vin+ 7 VPOSa VNEGa VOUT AMPB
*
*Charge pump for VPOS and VNEG
VposCP VPOSa VPOS dc 0.58
VnegCP VNEG VNEGa dc 0.57
*
*Gain Error for RG resistor
R5 7 RG+ 6
*
*Adjustable Supply Current for Low Supply Voltage
*I3 VPOS VNEG 6.5E-6
*G1 VPOS VNEG VNEG VPOS 1.5E-6
*
*Resistor Network
R1 REF RG- 209.8K
R2 RG- 9 52.5K
R3 9 7 52.5K
R4 7 VOUT 209.85K
.Subckt AMPA 100 101 102 103 104
*
***Power Supplies***
Rz1 102 1020 1e-6
Rz2 103 1030 1e-6
Ibias 1020 1030 dc 0.001e-3
DzPS 98 1020 diode
Iquies 1020 98 dc 0.015e-3
RSW1 98 1030 1e-3
R1 1020 99 1e7
R2 99 1030 1e7
e1 111 110 1020 110 1
e2 110 112 110 1030 1
e3 110 0 99 0 1
*
*
***Inputs***
RSW2 1 100 1e-3
RSW3 9 101 1e-3
VOS 1 2 dc -500e-6
IbiasP 110 2 dc 1.5e-12
IbiasN 110 9 dc 1.5e-12
RinCMP 110 2 110000e6
RinCMN 9 110 110000e6
CinCMP 110 2 4.2e-12
CinCMN 9 110 4.2e-12
IOS 9 2 0.0000005e-6
RinDiff 9 2 220000e3
CinDiff 9 2 3e-12
*
*
***Non-Inverting Input with Clamp***
g1 3 110 110 2 0.001
RInP 3 110 1e3
RX1 40 3 0.001
DInP 40 41 diode
DInN 42 40 diode
VinP 111 41 dc 0.46
VinN 42 112 dc 0.46
*
*
***Vnoise***
hVn 6 5 Vmeas1 707.10678
Vmeas1 20 110 DC 0
Vvn 21 110 dc 0.65
Dvn 21 20 DVnoisy
hVn1 6 7 Vmeas2 707.10678
Vmeas2 22 110 dc 0
Vvn1 23 110 dc 0.65
Dvn1 23 22 DVnoisy
*
*
***Inoise***
FnIN 9 110 Vmeas3 0.4071068
Vmeas3 51 110 dc 0
VnIN 50 110 dc 0.65
DnIN 50 51 DINnoisy
FnIN1 110 9 Vmeas4 0.4071068
Vmeas4 53 110 dc 0
VnIN1 52 110 dc 0.65
DnIN1 52 53 DINnoisy
*
FnIP 2 110 Vmeas5 0.4071068
Vmeas5 31 110 dc 0
VnIP 30 110 dc 0.65
DnIP 30 31 DIPnoisy
FnIP1 110 2 Vmeas6 0.4071068
Vmeas6 33 110 dc 0
VnIP1 32 110 dc 0.65
DnIP1 32 33 DIPnoisy
*
*
***CMRR***
RcmrrP 3 10 1e12
RcmrrN 10 9 1e12
g10 11 110 10 110 -1e-10
Lcmrr 11 12 1e-12
Rcmrr 12 110 1e3
e4 5 3 11 110 1
*
*
*
***Feedback Pin***
*RF 105 104 0.001
*
*
***VFB Stage***
g200 200 110 7 9 1
R200 200 110 250
DzSlewP 201 200 DzSlewP
DzSlewN 201 110 DzSlewN
*
*
***Dominant Pole at 0.1 Hz***
g210 210 110 200 110 0.0025e-6
R210 210 110 1591547.63e6
C210 210 110 1e-12
*
*
***Output Voltage Clamp-1***
RX2 60 210 0.001
DzVoutP 61 60 DzVoutP
DzVoutN 60 62 DzVoutN
DVoutP 61 63 diode
DVoutN 64 62 diode
VoutP 65 63 dc 5.022
VoutN 64 66 dc 5.022
e60 65 110 111 110 1.01
e61 66 110 112 110 1.01
*
*
***Pole at 1000000Hz***
g220 220 110 210 110 0.001
R220 220 110 1000
C220 220 110 159.1548e-12
*
***Pole at 0.4MHz***
g230 230 110 220 110 0.001
R230 230 110 1000
C230 230 110 397.8869e-12
*
***Pole at 0.5MHz***
g240 240 110 230 110 0.001
R240 240 110 1000
C240 240 110 318.3095e-12
*
***Buffer***
g245 245 110 240 110 0.001
R245 245 110 1000
*
***Buffer***
g250 250 110 245 110 0.001
R250 250 110 1000
*
***Buffer***
g255 255 110 250 110 0.001
R255 255 110 1000
*
***Buffer***
g260 260 110 255 110 0.001
R260 260 110 1000
*
***Buffer***
g265 265 110 260 110 0.001
R265 265 110 1000
*
***Buffer***
g270 270 110 265 110 0.001
R270 270 110 1000
*
***Buffer***
e280 280 110 270 110 1
R280 280 285 10
*
***Buffer***
e290 290 110 285 110 1
R290 290 292 10
e295 295 110 292 110 1
*
*
***Output Stage***
g300 300 110 295 110 0.001
R300 300 110 1000
e301 301 110 300 110 1
Rout 302 303 180
Lout 303 310 10e-9
Cout 310 110 2e-12
*
*
***Output Current Limit***
H1 301 304 Vsense1 100
Vsense1 301 302 dc 0
VIoutP 305 304 dc 3.836
VIoutN 304 306 dc 3.836
DIoutP 307 305 diode
DIoutN 306 307 diode
Rx3 307 300 0.001
*
*
***Output Clamp-2***
VoutP1 111 73 dc 1.27
VoutN1 74 112 dc 1.26
DVoutP1 75 73 diode
DVoutN1 74 75 diode
RX4 75 310 0.001
*
*
***Supply Currents***
FIoVcc 314 110 Vmeas8 1
Vmeas8 310 311 dc 0
R314 110 314 1e9
DzOVcc 110 314 diode
DOVcc 102 314 diode
RX5 311 312 0.001
FIoVee 315 110 Vmeas9 1
Vmeas9 312 313 dc 0
R315 315 110 1e9
DzOVee 315 110 diode
DOVee 315 103 diode
*
*
RSW4 104 313 1e-3
*
*
*** Common Models ***
.model diode d(bv=100)
.model DClamp D(IS=1E-15 IBV=1E-13 VJ=0.1)
.model DzVoutP D(BV=4.3)
.model DzVoutN D(BV=4.3)
.model DzSlewP D(BV=10.821)
.model DzSlewN D(BV=2.842)
.model DVnoisy D(IS=7.49e-14 KF=9.87e-18)
.model DINnoisy D(IS=8.58e-21 KF=0.00e0)
.model DIPnoisy D(IS=8.58e-21 KF=0.00e0)
*
*
.ENDS AMPA
*
.subckt AMPB 100 101 102 103 104
*
***Power Supplies***
Rz1 102 1020 1e-6
Rz2 103 1030 1e-6
Ibias 1020 1030 dc 0.001e-3
DzPS 98 1020 diode
Iquies 1020 98 dc 0.015e-3
RSW1 98 1030 1e-3
R1 1020 99 1e7
R2 99 1030 1e7
e1 111 110 1020 110 1
e2 110 112 110 1030 1
e3 110 0 99 0 1
*
*
***Inputs***
RSW2 1 100 1e-3
RSW3 9 101 1e-3
VOS 1 2 dc 500e-6
IbiasP 110 2 dc 0.000001e-6
IbiasN 110 9 dc 0.000001e-6
RinCMP 110 2 110000e6
RinCMN 9 110 110000e6
CinCMP 110 2 4.2e-12
CinCMN 9 110 4.2e-12
IOS 9 2 0.0000005e-6
RinDiff 9 2 220000e3
CinDiff 9 2 3e-12
*
*
***Non-Inverting Input with Clamp***
g1 3 110 110 2 0.001
RInP 3 110 1e3
RX1 40 3 0.001
DInP 40 41 diode
DInN 42 40 diode
VinP 111 41 dc 0.46
VinN 42 112 dc 0.46
*
*
***Vnoise***
hVn 6 5 Vmeas1 707.10678
Vmeas1 20 110 DC 0
Vvn 21 110 dc 0.65
Dvn 21 20 DVnoisy
hVn1 6 7 Vmeas2 707.10678
Vmeas2 22 110 dc 0
Vvn1 23 110 dc 0.65
Dvn1 23 22 DVnoisy
*
*
***Inoise***
FnIN 9 110 Vmeas3 0.4071068
Vmeas3 51 110 dc 0
VnIN 50 110 dc 0.65
DnIN 50 51 DINnoisy
FnIN1 110 9 Vmeas4 0.4071068
Vmeas4 53 110 dc 0
VnIN1 52 110 dc 0.65
DnIN1 52 53 DINnoisy
*
FnIP 2 110 Vmeas5 0.4071068
Vmeas5 31 110 dc 0
VnIP 30 110 dc 0.65
DnIP 30 31 DIPnoisy
FnIP1 110 2 Vmeas6 0.4071068
Vmeas6 33 110 dc 0
VnIP1 32 110 dc 0.65
DnIP1 32 33 DIPnoisy
*
*
***CMRR***
RcmrrP 3 10 1e12
RcmrrN 10 9 1e12
g10 11 110 10 110 -1e-10
Lcmrr 11 12 1e-12
Rcmrr 12 110 1e3
e4 5 3 11 110 1
*
*
**
*
***Feedback Pin***
*RF 105 104 0.001
*
*
***VFB Stage***
g200 200 110 7 9 1
R200 200 110 250
DzSlewP 201 200 DzSlewP
DzSlewN 201 110 DzSlewN
*
*
***Dominant Pole at 0.1 Hz***
g210 210 110 200 110 0.0025e-6
R210 210 110 1591547.63e6
C210 210 110 1e-12
*
*
***Output Voltage Clamp-1***
RX2 60 210 0.001
DzVoutP 61 60 DzVoutP
DzVoutN 60 62 DzVoutN
DVoutP 61 63 diode
DVoutN 64 62 diode
VoutP 65 63 dc 5.022
VoutN 64 66 dc 5.022
e60 65 110 111 110 1.01
e61 66 110 112 110 1.01
*
*
***Pole at 1000000Hz***
g220 220 110 210 110 0.001
R220 220 110 1000
C220 220 110 159.1548e-12
*
***Pole at 0.4MHz***
g230 230 110 220 110 0.001
R230 230 110 1000
C230 230 110 397.8869e-12
*
***Pole at 0.5MHz***
g240 240 110 230 110 0.001
R240 240 110 1000
C240 240 110 318.3095e-12
*
***Buffer***
g245 245 110 240 110 0.001
R245 245 110 1000
*
***Buffer***
g250 250 110 245 110 0.001
R250 250 110 1000
*
***Buffer***
g255 255 110 250 110 0.001
R255 255 110 1000
*
***Buffer***
g260 260 110 255 110 0.001
R260 260 110 1000
*
***Buffer***
g265 265 110 260 110 0.001
R265 265 110 1000
*
***Buffer***
g270 270 110 265 110 0.001
R270 270 110 1000
*
***Buffer***
e280 280 110 270 110 1
R280 280 285 10
*
***Buffer***
e290 290 110 285 110 1
R290 290 292 10
e295 295 110 292 110 1
*
*
***Output Stage***
g300 300 110 295 110 0.001
R300 300 110 1000
e301 301 110 300 110 1
Rout 302 303 180
Lout 303 310 1e-9
Cout 310 110 2e-12
*
*
***Output Current Limit***
H1 301 304 Vsense1 100
Vsense1 301 302 dc 0
VIoutP 305 304 dc 3.836
VIoutN 304 306 dc 3.836
DIoutP 307 305 diode
DIoutN 306 307 diode
Rx3 307 300 0.001
*
*
***Output Clamp-2***
VoutP1 111 73 dc 1.27
VoutN1 74 112 dc 1.26
DVoutP1 75 73 diode
DVoutN1 74 75 diode
RX4 75 310 0.001
*
*
***Supply Currents***
FIoVcc 314 110 Vmeas8 1
Vmeas8 310 311 dc 0
R314 110 314 1e9
DzOVcc 110 314 diode
DOVcc 102 314 diode
RX5 311 312 0.001
FIoVee 315 110 Vmeas9 1
Vmeas9 312 313 dc 0
R315 315 110 1e9
DzOVee 315 110 diode
DOVee 315 103 diode
*
*
RSW4 104 313 1e-3
*
*
*** Common Models ***
.model diode d(bv=100)
.model DClamp D(IS=1E-15 IBV=1E-13 VJ=0.1)
.model DzVoutP D(BV=4.3)
.model DzVoutN D(BV=4.3)
.model DzSlewP D(BV=10.821)
.model DzSlewN D(BV=2.842)
.model DVnoisy D(IS=7.49e-14 KF=9.87e-18)
.model DINnoisy D(IS=8.58e-21 KF=0.00e0)
.model DIPnoisy D(IS=8.58e-21 KF=0.00e0)
*
.ENDS AMPB
.ENDS AD8236
*
*
* AD8634 SPICE Macro-model
* Function: Amplifier
*
* Revision History:
* Rev. 0.0 (Mar 2014) ADSJ-RM
* Copyright 2012 by Analog Devices
*
* Refer to http://www.analog.com/Analog_Root/static/techSupport/designTools/spiceModels/license/spice_general.html
* for License Statement. Use of this model indicates your acceptance
* of the terms and provisions in the License Statement.
*
* modeled:
* +/-15V (30V) only, not checked at lower voltages
* modeling based on the typical values stated in the datasheet table
*
* Parameters modeled include:VOS , CMRR, PSRR, voltage noise,
* Vdo, gbw & phase margin, slew rate, CL Zout, Isy, ISC
*
* Node assignments
* non-inverting input
* | inverting input
* | | positive supply
* | | | negative supply
* | | | | output
* | | | | |
.SUBCKT AD8634 1 2 99 50 45
* INPUT STAGE
*
Q1 5 11 301 QIN 1; 301
Q2 6 2 302 QIN 1; 302
Cx1 5 6 7.0E-12
Q3 7 11 303 QIP 1; 303
Q4 8 2 304 QIP 1; 304
Cx2 7 8 7.0E-12
DC1 2 11 DC
DC2 11 2 DC
Q5 4 9 99 QIP 1;
Q6 9 9 99 QIP 1
Q7 3 10 50 QIN 1;
Q8 10 10 50 QIN 1
R1 99 5 4.5E3
R2 99 6 4.5E3
R3 7 50 4.0E3
R4 8 50 4.0E3
RE1 301 3 12.0E+1
RE2 302 3 12.0E+1
RE3 303 4 12.0E+1
RE4 304 4 12.0E+1
IREF 9 10 69E-06
GREF 9 10 POLY(1) (99,50) 0 2.5E-07
EOS 1 11 POLY(4) (81,98)(83,98)(22,98)(73,98) -90E-6 1 1 1 1
IOS 1 2 -10E-09
CIN 1 2 1.1E-12
CICM1 1 50 2.4E-12
CICM2 2 50 2.4E-12
Dinp1 1 99 DC
Dinp2 50 1 DC
Dinn1 2 99 DC
Dinn2 50 2 DC
GN1 1 98 POLY(1) (1,50) 53E-09 -2.15E-9
GN2 2 98 POLY(1) (2,50) 56E-09 -2.11E-9
*
G101 98 211 POLY(2) (5,6) (7,8) 0 5.3E-04 5.3E-04
R101 211 98 1.0E6
*
E201 311 98 POLY(1) (211,98)0 2.0E+0
R202 311 321 1.8E+3;
C202 311 321 8E-16
R203 321 98 1.8E+3
*
E3 252 98 (321 98) 2E-0
R31 252 253 1.0E+3
C31 253 252 9E-11; -12
R32 253 98 1.0E+3
*
* GAIN STAGE
*
G2 98 251 (253, 98) 1.0E-06
R5 251 98 8.2E5
RF 251 250 75.0E+00
CF 245 250 40.5E-11
EF (245 98) (45,98) 1
D3 251 451 DX
D4 452 251 DX
V1 451 98 -0.038 ;
V2 452 98 -0.29
*
* CMRR
*
ECM 72 98 POLY(2) (1,98) (2,98) 0 3.42E-03 3.42E-03
RCM1 72 73 3.061E+01
RCM2 73 98 7.958E-03
CCM1 72 73 1.0E-6
*
* PSRR
*
EPSY 21 98 POLY(1) (99,50) -197.534E+00 6.584E-00
RPS1 21 22 5.341E+03
RPS2 22 98 7.958E-04
CPS1 21 22 1.000E-06
*
* VOLTAGE NOISE
*
VN1 80 98 0
RN1 80 98 43.5E-3
HN 81 98 VN1 5.3
RN2 81 98 1
*
* FLICKER NOISE CORNER
*
DFN 82 98 DNOISE 1000
IFN 98 82 DC 1E-03
DFN2 182 98 DNOISE
IFN2 98 182 DC 1E-06
GFN 83 98 POLY(1) (182,82) 1.00E-13 1.00E-04
RFN 83 98 1
*
D60 60 0 DN1 1000
I60 0 60 1M
D61 61 0 DN4
I61 0 61 1U
D62 62 0 DN3
I62 0 62 1U
D63 63 0 DN2
I63 0 63 1U
G60 3 50 61 60 .007
G61 2 50 61 60 .008
G62 3 2 62 60 .000092
*
* INTERNAL VOLTAGE REFERENCE
*
EREF 98 0 POLY(2) (99,0) (50,0) 0 .5 .5
GSY 99 50 POLY(1) (99,50) 403E-6 6.036E-6
*
* OUTPUT STAGE
*
Q33 450 41 99 POUT
Cco1 450 41 2.5E-12
RB1 40 41 1.5E3
EB1 99 40 POLY(1) (98,251) 7.535E-01 1;
Q34 450 43 50 NOUT
Cco2 450 43 5E-12
RB2 42 43 2.0E3
EB2 42 50 POLY(1) (251,98) 7.520E-01 1;
Lout 45 450 1E-09
*
* MODELS
*
.MODEL DC D(IS=1E-14,CJO=1E-15)
.MODEL DX D(IS=1E-14,CJO=1E-15)
.MODEL DY D(IS=1E-16,RS=0.1)
.MODEL DIN1 D(RS=5.358 KF=56E-15 AF=1)
.MODEL DIN2 D(RS=5.358 KF=56E-15 AF=1)
.MODEL DN1 D IS=1E-16
.MODEL DN2 D IS=1E-16 AF=1 KF=1.05E-17
.MODEL DN3 D IS=1E-16 AF=1 KF=2.8E-17
.MODEL DN4 D IS=1E-16 AF=1 KF=4.5E-17
.MODEL DNOISE D(IS=1E-16,RS=1E-3,KF=1.14E-11)
.MODEL QIN NPN(BF=130 VA=200 IS=0.5E-16)
.MODEL QIP PNP(BF=80 VA=140 IS=0.5E-16)
.MODEL NOUT NPN(BF=140 VA=350 IS=0.5E-16 BR=8.4 VAR=20 RC=4.0E1)
.MODEL POUT PNP(BF=80 VA=130 IS=0.5E-16 BR=5 VAR=20 RC=6.0E1)
*
.ENDS AD8634