Untitled
Abstract: No abstract text available
Text: MAX3785 Output Model 6.25Gbps 1.8V Board Equalizer SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3785
25Gbps
worst-c28
REPORTERL1N29
REPORTERL1N30
920E-018
DE0900A
DE0396
REPORTERL1N27
REPORTERL1N28
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NET0260
Abstract: 3845 n equivalent VALUE IC net219 LTspice eldo TSH300
Text: Development of the Analog Macromodel for TSH300, ultra low-noise high-speed operational amplifier Angelo Marotta [email protected] STMicroelectronics May 2011 Abstract An unified analog macromodel, for Spice-like simulators, was implemented for TSH300 operational amplifier matching the real DC, Transient and AC behavior
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TSH300,
TSH300
NET0260
3845 n equivalent VALUE IC
net219
LTspice
eldo
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H12A05
Abstract: No abstract text available
Text: MAX3269 I/O Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic (PECL), and Low
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MAX3269
testi509
326E-017
573E-020
022E-029
968E-018
H14E04
H12A05
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1P NPN
Abstract: TC227 AX3910
Text: MAX3910u/d Output Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3910u/d
DE0172
PADESD25
DE0172
514E-018
1P NPN
TC227
AX3910
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max3963
Abstract: No abstract text available
Text: MAX3963CSA Output Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic (PECL), and Low Voltage Differential Signal (LVDS)
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MAX3963CSA
151E-017
444E-021
000E-030
540E-019
H11A05
max3963
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npn TTL LOGIC pspice model
Abstract: vcsel spice model
Text: MAX3905 Input Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3905
teH21M02
HDE072021
591E-018
HDE072021
npn TTL LOGIC pspice model
vcsel spice model
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c4001 transistor
Abstract: transistor c4001 k0203 TC182 3004 transistor
Text: MAX3885ECB Input Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic (PECL), and Low
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MAX3885ECB
for61
151E-017
444E-021
000E-030
540E-019
H11A05
c4001 transistor
transistor c4001
k0203
TC182
3004 transistor
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TC227
Abstract: No abstract text available
Text: MAX3935 I/O Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3935
DE0172
PADESD25
DE0172
514E-018
TC227
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vcsel spice model
Abstract: No abstract text available
Text: MAX3996 I/O Model 2.5Gbps VCSEL Driver SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic (PECL), and
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MAX3996
920E-018
083E-022
168E-030
680E-019
H11A02
vcsel spice model
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75188N
Abstract: LED pspice model
Text: MAX3966 Input Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3966
N11A03
22809e-13
29926e-14
113E-17
3397e-13
81509e-14
75188N
LED pspice model
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Untitled
Abstract: No abstract text available
Text: MAX3804 I/O Model 10Gbps Equalizer SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic (PECL), and Low Voltage Differential Signal
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MAX3804
10Gbps
REPORTERL1N11
REPORTERL1N12
926E-018
463E-018
558E-030
N102M066
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TC227
Abstract: N102M024
Text: MAX3735 I/O Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3735
558E-018
279E-018
N102M024
TC227
N102M024
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Untitled
Abstract: No abstract text available
Text: MAX3822 I/O Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic (PECL), and Low Voltage Differential Signal (LVDS)
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MAX3822
151E-017
444E-021
000E-030
540E-019
H11A05
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HDE072021
Abstract: laser diode spice model simulation
Text: MAX3867 Input Model SPICE I/O Macromodels aid in understanding signal integrity issues in electronic systems. Most of Maxim’s High Frequency/Fiber Communication ICs utilize input and output I/O circuits with Current Mode Logic (CML), Positive Emitter Coupled Logic
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MAX3867
teH21M02
HDE072021
591E-018
HDE072021
laser diode spice model simulation
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MAX954
Abstract: F226 DCM103
Text: * MAX954 FAMILY MACROMODELS * -* FEATURES: * Op Amp + Comparator * 7uA Typical Supply Current * Comparator and Op Amp Input Range Includes Ground * Outputs Swing Rail to Rail * Internal Comparator Hysteresis * Op Amp Gain Stability 10V/V
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MAX954
MAX954
RH101
RH102
DP101
DP102
VP100
F226
DCM103
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00E-6
Abstract: 20E6 OPA129E 100E-9
Text: * OPA129E operational amplifier "macromodel" subcircuit * "E" is enhanced model * created using Parts release 5.2 on 12/15/94 at 14:58 * REV. A SB * * -* | NOTICE: THE INFORMATION PROVIDED HEREIN IS BELIEVED TO BE RELIABLE;
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OPA129E
700E-3
700E-3
0E-12
9E-16
643E-16)
0E-18)
00E-15
00E-6
20E6
100E-9
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UAF42E
Abstract: 10E6 UAF42
Text: * UAF42E OPERATIONAL AMPLIFIER "MACROMODEL" SUBCIRCUIT * "E" IS ENHANCED MODEL * SUBCIRCUIT AMP_UAFE CREATED USING PARTS RELEASE 4.03 ON 10/17/90 AT 14:54 * * UAF42E = 4x AMP_UAFE + PRECISION RESISTORS AND CAPS * * REV.B 3/21/92 BCB added input bias current error correction to AMP_UAFE
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UAF42E
UAF42E
UAF42
UAF42
358E3
950E-3
0E-12
10E6
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ISS 99 diode
Abstract: OPT201 OPT201KP 30E-9
Text: * OPT201 INTEGRATED PHOTODIODE AND AMPLIFIER MACROMODEL * * CREATED USING PARTS 3/18/93 WM * REV.A * -* | NOTICE: THE INFORMATION PROVIDED HEREIN IS BELIEVED TO BE RELIABLE; | * | HOWEVER; BURR-BROWN ASSUMES NO RESPONSIBILITY FOR INACCURACIES OR
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OPT201
00E-12
49E-12
36E-12
-30E9
-30E9
074E-9
307E3
ISS 99 diode
OPT201KP
30E-9
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PJ 3236
Abstract: 50E-12 20E-3 40E-12 OPA2604M
Text: * OPA2604M OPERATIONAL AMPLIFIER "MACROMODEL" SUBCIRCUIT * "M" IS MULTIPLE POLE/ZERO TOPOLOGY * CREATED 7/8/92 BCB * REV.A * * -* | NOTICE: THE INFORMATION PROVIDED HEREIN IS BELIEVED TO BE RELIABLE;
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OPA2604M
9E-15
1E-11
20E-3
304E3
PJ 3236
50E-12
20E-3
40E-12
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C23P
Abstract: No abstract text available
Text: * OPA646X - LOW POWER, WIDE BANDWIDTH OPERATIONAL AMPLIFIER MACROMODEL * * CREATED 11/21/93 DS * REV. A * * -* | NOTICE: THE INFORMATION PROVIDED HEREIN IS BELIEVED TO BE RELIABLE;
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OPA646X
PROD794E
038E-14
470E-01
930E-01
434E-11
397E-02
106E-14
743E-01
185E-01
C23P
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MAX409B
Abstract: f5 18u MAX406 MAX406A MAX406B MAX407 MAX409A MAX417 MAX418 MAX419
Text: * MAX406 FAMILY MACROMODELS * -* FEATURES: * 1.2uA Max Quiescent Current per Amplifier * Low Supply Voltage Operation -+2.5V to +10V * Low Input Current -0.1pA typ. * Input Voltage Range Includes Negative Rail * Output Swings Rail-to-Rail
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MAX406
40kHz
150kHz
MAX406Ac
MAX406A
MAX406Ad
40kHz,
MAX406Bc
MAX406B
MAX409B
f5 18u
MAX406A
MAX406B
MAX407
MAX409A
MAX417
MAX418
MAX419
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avo 20-80
Abstract: CT 4407 TLE2027 TLE2237 TLE2237CDW TLE2237CDWR TLE2237CP TLE2237Y 6BL7 VCC-20UT
Text: TLE2237 TLE2237Y EXCALIBUR LOW-NOISE HIGH-SPEED PRECISION DECOMPENSATED DUAL OPERATIONAL AMPLIFIERS SL.OSIO8 B - SEPTEMBER 1991 - REVISED AUGUST 1994 • Available In 16-Pin Small-Outline Wide-Body Package Output Features Saturation Recovery Circuitry Macromodels and Statistical information
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TLE2237
TLE2237Y
441Li
avo 20-80
CT 4407
TLE2027
TLE2237CDW
TLE2237CDWR
TLE2237CP
6BL7
VCC-20UT
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tlc22541
Abstract: 2SC2030 std 15007 TLC2254 0E-18 TLC2254A TLC2254AID TLC2254CD TLC2254CN TLC2254CPWLE
Text: TLC2254, TLC2254A, TLC2254Y Advanced LinCMOS RAIL-TO-RAIL VERY LOW POWER, QUAD OPERATIONAL AMPLIFIERS SLOS142 - DECEMBER 1994 Common-Mode Input Voltage Range Includes Negative Rail Low Input Offset Voltage 850 iV Max at TA = 25°C (TLC2254A Macromodel Included
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TLC2254,
TLC2254A,
TLC2254Y
SLOS142
TLC2254
TLC2254A
-60E6
-60E6
86E-6
100E-6
tlc22541
2SC2030
std 15007
0E-18
TLC2254AID
TLC2254CD
TLC2254CN
TLC2254CPWLE
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TLE2081
Abstract: ka bs 89 DDS4115 E 109 01 T40 16 ultrasonic TLE2081A TLE2081ACD TLE2081ACP TLE2081CP TLE2081Y
Text: TLE2081, TLE2081A, TLE2081Y EXCALIBUR HIGH-SPEED JFET-INPUT OPERATIONAL AMPLIFIERS S L O S 122A -JUNE 1993 - REVISED APRIL 1994 40-V/ns Slew Rate Typ Input Range Includes the Positive Supply High-Gain Bandwidth P ro d u c t. . . 10 MHz Macromodel Included
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TLE2081,
TLE2081A,
TLE2081Y
SLOS122A
30-mA
TLE2081
TLE2081A
TLE2081.
2/100-pF
ka bs 89
DDS4115
E 109 01
T40 16 ultrasonic
TLE2081ACD
TLE2081ACP
TLE2081CP
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