bf331
Abstract: tc2576m 5724E n12a PADESD100
Text: MAX3800 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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MAX3800
N14E062
109E-019
PADESD100
DE381011
DE381011
PADESD100
080E-017
bf331
tc2576m
5724E
n12a
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321f
Abstract: bf331 236f 724E-020 HFAN-06 455e diode 699n 250N MAX3640 MAX3801
Text: Application Note: HFAN-06.1 Rev 1, 11/07 Input/Output Models for Maxim Fiber Components Maxim High-Frequency/Fiber Communications Group Maxim Integrated Products 9hfan61_old_63.doc 11/13/07 Input/Output Models for Maxim Fiber Components 1 Abstract The objective of this note is to discuss the use of
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HFAN-06
9hfan61
MAX3801
109E-019
PADESD100
DE381011
PADESD100
DE381011
080E-017
321f
bf331
236f
724E-020
455e
diode 699n
250N
MAX3640
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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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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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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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MAX3750
REPORTERL1N94
HDE113032
REPORTERL1N66
REPORTERL1N67
181E-017
HDE113032
2996M
H12A05
transistor 1002
transistor BF 502
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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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1159m
Abstract: No abstract text available
Text: MAX3268 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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MAX3268
326E-017
573E-020
022E-029
968E-018
H14E04
1159m
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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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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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ic 2101
Abstract: No abstract text available
Text: MAX3286 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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MAX3286
HDU031011
HDE113032
REPORTERL1N63
REPORTERL1N64
181E-017
HDE113032
DE381011
ic 2101
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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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C312 diode
Abstract: 2SC3238A BLY87A 2SC2983Y BLW80 2SC731 BSS42 2SD1220Y acrian acrian inc
Text: RF POWER SILICON NPN Item Number Part Number I C 5 10 >= 20 40665 2N5215 C2-8Z C3-12 2SC1947 2SC1965 2N5080 BFY99 ~~~~~69 25 30 2SC731 2SC731 BlY53A 2SC1966 BLX93A BLX68 BLX68 BlW80 ~~~~~7 35 40 MH8112 MH8113 2SD439 2SD1681 2SC2690 2SC2690A PT9732 2SC3292
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TN3440
2N3961
2N4012
2N5645
2N5079
MRF5175
2N5215
C3-12
2SC1947
2SC1965
C312 diode
2SC3238A
BLY87A
2SC2983Y
BLW80
2SC731
BSS42
2SD1220Y
acrian
acrian inc
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lcr1210
Abstract: R040 0197 tx 400m 120 R050 RESISTOR cr1206-8w CR0402-16W 22MEG
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C t w 0201 0402 0603 0805 1206 1210 2010 2512 L Length Inches (mm) 0.024 ± .002 (0.6 ± 0.05)
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Untitled
Abstract: No abstract text available
Text: Product Brief network)connected)devices)and)appliances.) ) The) EC32LXX) has) the) lowest) power) consump<on,) smallest) footprint,) and) most) comprehensive) so]ware) )
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EC32LXX)
EC32L13)
EC32LXX
10/16Mbps
72MHz
168MHz)
125mA
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Untitled
Abstract: No abstract text available
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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079ee
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lcr1210
Abstract: 22 Ohm resistor 2W 2512 CR0402-16W CR2010-2W CR1206-8W Venkel CR0603-10W 10k ohm 20W resistor datasheet CR0201-20W CR1210-2W CR1210-4W
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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Untitled
Abstract: No abstract text available
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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CR0402-16W
Abstract: No abstract text available
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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lcr1210
Abstract: 1206 chip resistor size in mm CR0402-16W
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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079ee
lcr1210
1206 chip resistor size in mm
CR0402-16W
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R043
Abstract: No abstract text available
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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079ee
R043
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Untitled
Abstract: No abstract text available
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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CR0402-16W
Abstract: lcr1210
Text: Chip Resistors – CR, LCR and ULCR Features • Flat Chip Resistors for surface mount applications • LCR and ULCR for current sensing applications Dimensions L C C C C T w 01005 0201 0402 0603 0805 1206 1210 2010 2512* L Length Inches (mm) 0.016 ± .0008
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1MBI400L-120
Abstract: M116 400l1
Text: • ih ■ ■■ _ 1“Psck IGBT ir.” 1MBI400L-120 IGBT M O D U LE L series Outline Drawings ■ Features • High Speed Switching • Low Saturation Voltage • Voltage Drive ■ Applications • Inverter for M otor Drive • AC and DC Servo Drive Am plifier
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1MBI400L-120
1MBI400L-120
M116
400l1
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DTS108
Abstract: 2n2585 DTS103 DTS106 BUY27
Text: SYMBOLS & CODES EXPLAINED 7. "N” Channel - SILICON FIELD EFFECT TRANSISTORS 8. GERMANIUM P N P 19 GERMANIUM NPN110. SILICON PNP 11. SILICON NPN High Power Transistors k I B LINE No. H H TYPE No. ABSOiLOTE M A X . RATIING S Ä 2 5 C I I M IN . M A X Pc T 6 T T
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NPN110.
75OP0
A580-2405
250kSA
SFT268
6000n
2N2341
350ktA
75Om0
DTS108
2n2585
DTS103
DTS106
BUY27
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