H14A
Abstract: No abstract text available
Text: GENERAL-USE RECTIFIER DIODE H14 OUTLINE DRAWING H 29MIN. 1.14 H14A(100V) Brown H14B(200V) Red H14C(300V) Orange H14D(400V) Yellow H14E(500V) Green H14F(600V) Blue H14H(800V) Gray H14J(1000V) Purple φ 0.8 (0.03) Lot mark Color of cathode band Type 5MAX (0.2)
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62MIN.
100x180x1
PDE-H14-0
H14A
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Untitled
Abstract: No abstract text available
Text: GENERAL-USE RECTIFIER DIODE H14 FEATURES OUTLINE DRAWING • For general purpose. • Diffused-junction. Glass passivated and encapsulated. ABSOLUTE MAXIMUM RATINGS Item Type H14A H14B H14C H14D H14E H14F H14H H14J Repetitive Peak Reverse Voltage V RRM V 100
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PDE-H14-2
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H14A
Abstract: H14B H14C H14D H14E H14F H14H H14J H14 HITACHI
Text: GENERAL-USE RECTIFIER DIODE H14 OUTLINE DRAWING H 29MIN. 1.14 H14A(100V) Brown H14B(200V) Red H14C(300V) Orange H14D(400V) Yellow H14E(500V) Green H14F(600V) Blue H14H(800V) Gray H14J(1000V) Purple φ 0.8 (0.03) Lot mark Color of cathode band Type 5MAX (0.2)
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29MIN.
62MIN.
H14A
H14B
H14C
H14D
H14E
H14F
H14H
H14J
H14 HITACHI
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H14B
Abstract: H14J H14D H14C H14A H14E h14h H14F Hitachi DSA00514
Text: GENERAL-USE RECTIFIER DIODE H14 OUTLINE DRAWING H 29MIN. 1.14 H14A(100V) Brown H14B(200V) Red H14C(300V) Orange H14D(400V) Yellow H14E(500V) Green H14F(600V) Blue H14H(800V) Gray H14J(1000V) Purple φ 0.8 (0.03) Lot mark Color of cathode band Type 5MAX (0.2)
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29MIN.
62MIN.
H14B
H14J
H14D
H14C
H14A
H14E
h14h
H14F
Hitachi DSA00514
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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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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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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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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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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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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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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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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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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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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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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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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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B446
Abstract: D6A14
Text: 1 Datasheet F9DEFFFF 2F2 E7!FDEEF"F F#FF 9$%$&'F 1 1 !1 C91C918A196FF314(1DC78C4E1(431 *+,+-./ 1)*+,+-./ 7E174E834D13488C4ED19AA51115C3A78122 1E51*!14D8A19AA5174E834D1
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C91C918
A196FF
E153C
01F484319CDAE8D
E51C81
E174E834D1348
AA511
15C3A78122
AA5174E834D
AA5174E834D1
B446
D6A14
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SPICE 2G6
Abstract: No abstract text available
Text: MAX3665 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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MAX3665
HDE381011
707E-018
HDE381011
SPICE 2G6
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Untitled
Abstract: No abstract text available
Text: KM48V512DT CMOS DRAM 512 K x 8 Bit CMOS Dynamic RAM with Fast Page Mode DESCRIPTION This is a family of 524,288 x 8 bit Fast Page Mode CMOS DRAMs. Fast Page Mode offers high speed random access of memory cells within the same row. Power supply voltage +5.0V or +3.3V , access time
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KM48V512DT
512Kx
512Kx8
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IRFS630
Abstract: IRFS631 250M
Text: N-CHANNEL POWER MOSFETS IRFS630/631 FEATURES • Lower R ds<on • Improved inductive ruggedness • Fast switching times • Rugged polysilicon gate cell structure • Lower input capacitance • Extended safe operating area • Improved high temperature reliability
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IRFS630/631
IRFS630
IRFS631
O-220F
250M
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AL15
Abstract: No abstract text available
Text: KM68V1002A/AL CMOS SRAM ELECTRONICS 1 2 8 K x 8 B i t H igh-Speed C M O S Static R A M 3 .3 V Operating FEATURES GENERAL DESCRIPTION • Fast Access Time 12,15,17,20 ns(Max.) • Low Power Dissipation Standby (TTL) : 20m A(M ax.) (CMOS): 5m A(M ax.) Q.5mA(Max.) ; L-veronly
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KM68V1002A/AL
128Kx
KM68V1002A/AL-12
KM68V1002A/AL-15
KM68V1002A/AL-17
KM68V1002A/AL-20
KM68V1002AJ/ALJ
32-SOJ-400
KM68V1002AT/ALT
32-TSOP2-4QOF
AL15
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Untitled
Abstract: No abstract text available
Text: KSOl19Q2 Multimedia ELECTRO NICS VIDEO ENCODER The KS0119/KS0119Q2 combines NTSC encoding with conventional RAM-DAC functions so that digitized video or computer generated graphics can be displayed on either NTSC or PC monitors. There are two data input channels
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KSOl19Q2
KS0119/KS0119Q2
KS0119Q2
KS0119.
RS-170A
S0119Q
00335bb
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UD322
Abstract: H14E AA-322 D322B
Text: KM416V256DT CMOS D RA M ELECTRONICS 2 5 6 K x 1 6 B i t CMOS Dynamic RAM with Fast Page Mode DESCRIPTION This is a family of 262,144 x 16 bit Fast Page Mode CMOS DRAMs. Fast Page Mode offers high speed random access of memory cells within the same row. Power supply voltage +5.0V or +3.3V , access time
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KM416V256DT
256Kx16
JU004
7Tb4142
UD322
H14E
AA-322
D322B
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H14F
Abstract: H14J H14D
Text: GENERAL-USE RECTIFIER DIODE Unit in mm inch • i* it OUTLINE DRAWING ¿0.8 Direction of polarity (0.03) ■ FEA TU RES • For general purpose. • Diffused-junction. Glass passivated and encapsulated. Color of cathode band Type H14A(100V) Brown H14B(200V)
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H14COOOV)
HI4EC500V)
100X180X1
H14F
H14J
H14D
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