TC227
Abstract: KF102 maxim 2150
Text: MAX3657etc 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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MAX3657etc
fo102M024
HDE381011
707E-018
HDE381011
TC227
KF102
maxim 2150
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PDF
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laser diode spice model simulation
Abstract: HFAN-06
Text: MAX3663ETG 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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MAX3663ETG
H21M022
HDE072021
591E-018
HDE072021
laser diode spice model simulation
HFAN-06
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k 2101 equivalent
Abstract: No abstract text available
Text: MAX3761 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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MAX3761
H11M032
HDE072021
591E-018
HDE072021
k 2101 equivalent
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PDF
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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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PDF
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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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PDF
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ikf68
Abstract: 2P4N xp1800 laser diode spice model simulation
Text: MAX3865 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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MAX3865
H11M022
HDE072021
591E-018
HDE072021
ikf68
2P4N
xp1800
laser diode spice model simulation
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PDF
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ISE19
Abstract: No abstract text available
Text: MAX3676 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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MAX3676
H11M02
HDE113032
181E-017
HDE113032
ISE19
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PDF
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BF265
Abstract: 29v33
Text: MAX3880 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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MAX3880
HDE113032
181E-017
HDE113032
BF265
29v33
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PDF
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NF1010
Abstract: No abstract text available
Text: MAX3760E/D 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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MAX3760E/D
HDE113032
REPORTERL1N63
REPORTERL1N64
181E-017
HDE113032
NF1010
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PDF
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TC221
Abstract: M400
Text: MAX3664EUA 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
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MAX3664EUA
968E-018
H14E04
REPORTERL1N94
HDE113032
181E-017
HDE113032
TC221
M400
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PDF
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XQ22
Abstract: BR924 KL1012 XQ20 H12A05 KL-23
Text: MAX3265 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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MAX3265
TSSOP16
XQ22
BR924
KL1012
XQ20
H12A05
KL-23
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PDF
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BR 115N
Abstract: SPICE 2G6 xds npn
Text: MAX3296 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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MAX3296
HDU031011
HDE113032
REPORTERL1N63
REPORTERL1N64
181E-017
HDE113032
DE381011
BR 115N
SPICE 2G6
xds npn
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PDF
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ikf68
Abstract: 1159m transistor 1002 rcx 1002
Text: MAX3640 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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MAX3640
test11M02
HDE113032
181E-017
HDE113032
ikf68
1159m
transistor 1002
rcx 1002
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PDF
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Untitled
Abstract: No abstract text available
Text: MAX3881 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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MAX3881
H11M02
HDE113032
181E-017
HDE113032
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PDF
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mje 3003
Abstract: 02n60p mje 3001 MJE I 3004 h11m XQ22 2996M
Text: MAX3891 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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MAX3891
640E-018
H14E062
HDE113032
181E-017
HDE113032
mje 3003
02n60p
mje 3001
MJE I 3004
h11m
XQ22
2996M
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PDF
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Untitled
Abstract: No abstract text available
Text: MAX3760 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
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MAX3760
HDE113032
181E-017
HDE113032
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PDF
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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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PDF
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transistor mje 3003
Abstract: kf 202 transistor mje 3003 3003 BR TRANSISTOR IS-132
Text: MAX3968 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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MAX3968
HDE113032
REPORTERL1N63
REPORTERL1N64
181E-017
HDE113032
transistor mje 3003
kf 202 transistor
mje 3003
3003 BR TRANSISTOR
IS-132
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PDF
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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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PDF
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2996M
Abstract: H12A05 transistor 1002 transistor BF 502
Text: MAX3750 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) formats to transfer data
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Original
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MAX3750
REPORTERL1N94
HDE113032
REPORTERL1N66
REPORTERL1N67
181E-017
HDE113032
2996M
H12A05
transistor 1002
transistor BF 502
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PDF
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LTspice
Abstract: 23/zoom 505 schematic
Text: M A NU A L , M E T HO D S A ND A P P L I CAT I O N S SIMULATOR THE LTSPICE IV THE LTSPICE IV 1st edition Swiridoff Verlag ISBN: 978-3-89929-258-9 SIMULATOR GILLES BROCARD MANUAL, METHODS AND APPLICATIONS Preface by Mike Engelhardt 1st edition Preface It is an honor to write a preface for Gilles Brocard. I appreciate his work writing this book and hope you benefit from
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N03E
Abstract: HBC2500 USE OF TRANSISTOR AMP017 opamp 555 3-input xnor Analog Devices Opamp transistor 2955 AMP016 op-amp- 356
Text: HBC2500 H A R R IS S E M I C O N D U C T O R 3fim B iM O S-E A nalog/D igital Library February 1992 Features • Description Cost-Effective 3 Micron BiCMOS Technology Integrates Up to 2000 Gates and 100 Op Amps HBC2500 is a mixed-signal analog and digital BICMOS
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OCR Scan
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HBC2500
HBC2500
N03E
USE OF TRANSISTOR
AMP017
opamp 555
3-input xnor
Analog Devices Opamp
transistor 2955
AMP016
op-amp- 356
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PDF
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Burr-Brown Application Note AN-165
Abstract: design of 4-20mA transmitter for bridge type transducer using op-amp burr-brown linear catalog diode germanium catalog band pass active filters uaf42 6.4V Zener spice model Siliconix FET Design Catalog bourns torque sensor harmonic HLP 4200 solomon lcd lm
Text: Burr-Brown Collection o f A p p licatio n s Bulletins L B U R R - BROWN • b b i TABLE OF CONTENTS SECTION 1, Burr-Brown Technical Literature Thermal and electrical properties of selected packaging m aterials. 1
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OCR Scan
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OPA121
OPA128
OPA177
OPA2107
OPA2111
OPA2604
OPA27
OPA404
OPA445
OPA602
Burr-Brown Application Note AN-165
design of 4-20mA transmitter for bridge type transducer using op-amp
burr-brown linear catalog
diode germanium catalog
band pass active filters uaf42
6.4V Zener spice model
Siliconix FET Design Catalog
bourns torque sensor
harmonic HLP 4200
solomon lcd lm
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PDF
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TLE2227
Abstract: TLE2227CDW TLE2227CDWR TLE2227CP TLE2227Y
Text: TLE2227, TLE2227Y EXCALIBUR LOW-NOISE HIGH-SPEED PRECISION DUAL OPERATIONAL AMPLIFIERS SLOS107B-SEPTEMBER 1991 -REVISED AUGUST 1994 • Outstanding Combination of DC Precision and AC Performance: Unity-Gain Bandwidth . . . 15 MHz Typ Vn . . . 3.3 nV/Vfiz at f = 10 Hz Typ,
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OCR Scan
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TLE2227,
TLE2227Y
SLOS107B-SEPTEMBER
TLE2227C
Figure44.
TLE2227
TLE2227CDW
TLE2227CDWR
TLE2227CP
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PDF
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