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FT3019HSA4-6-2W Fastener Technology Corp Bisco Industries 150 - -

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Not Available

Abstract: No abstract text available
Text: ide bit width configuration, such as cache and buffer memory in system. The H M 62W 1664H /H M 62W , Information HM 62W 1664HJP-25 HM 62W 1664HJP-30 HM 62W 1664HJP-35 HM 62W 1664HJP-45 25 30 35 45 ns ns ns ns HM 62W 1664HLJP-25 HM62W 1664HLJP-30 HM 62W 1664HLJP-35 HM 62W 1664HLJP-45 25 30 35 45 ns ns ns ns HM 62W 1864HJP-25 HM 62W 1864HJP-30 HM 62W 1864HJP-35 HM 62W 1864HJP-45 25 30 35 45 ns ns ns ns HM 62W 1864HLJP-25 HM 62W 1864HLJP-30 HM 62W 1864HLJP-35


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PDF HM62W1664H HM62W1864H 65536-word 16/18-bit 1664H 1864H 400-mil 44-pin 1664HJP-25 1664Hto
Not Available

Abstract: No abstract text available
Text: TSOP-11 for high density surface mounting. Ordering Information Type No. HM 62W 1664HJP-25 H M 62W 1664H J P-30 HM 62W 1664HJP-35 HM 62W 1664HJP-45 H M 62W 1664H LJ P- 25 HM 62W 1664HLJP-30 HM 62W 1664HLJP-35 HM 62W 1664HLJP-45 HM 62W 1864HJP-25 HM 62W 1864HJP-30 HM 62W 1864HJP-35 HM 62W 1864HJP-45 HM 62W 1864HLJP-25 HM 62W 1864HLJP-30 HM 62W 1864HLJP-35 HM 62W 1864HLJP-45 HM 62W 1664HTT-25 HM 62W 1664HTT-30 HM62W 1664HTT-35 HM62W 1664HTT-45 HM 62W 1664HLTT-25 HM 62W 1664HLTT-30 HM 62W 1664HLTT-35 HM 62W 1664H LTT-45 HM


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PDF 65536-w 16/18-b 1864H 400-mil 44-pin TSOP-11 HM62W1664H/HM62W1864H
8127H

Abstract: No abstract text available
Text: RAM is an The H M 6 2 W 8 12 7 H / H M 6 2 W 9 12 7 H Ordering Information Type No. HM 62W 8127HJP-25 HM 62W 8127HJP-3Û HM 62W 8127HJP-35 HM 62W 8127HJP-45 HM 62W 8127HLJP-25 HM 62W 8127HLJP-30 H M 62W 8127H U P -35 H M 62W 8127H LJP-45 HM 62W 9127HJP-25 HM 62W 9127HJP-30 H M 62W 9127HJ P-35 HM 62W 9127HJP-45 HM 62W 9127HLJP-25 HM 62W 9127HLJP-30 HM 62W 9127HLJP-35 H M 62W 9127H U P -45 a syn cro n o u , HM 62W 8127H Series HM62W 9127H Series c 1 A2 c 2 A1 c 3 AO c 4 CS c 5 1/01 c 6 I/0 2 c 7 vcc [ I


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PDF HM62W8127H HM62W9127H 131072-word 8127HJP-25 8127HJP-3Û 8127HJP-35 8127HJP-45 8127HLJP-25 8127HLJP-30 8127H
2007 - MAPRST0912-50

Abstract: No abstract text available
Text: Resistance Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz RTH(JC) - 0.80 °C/W Output Power Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz PO 50 - W Power Gain Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz GP 9.1 - dB Collector Efficiency Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz C 40 - % Input Return Loss Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz RL - -9 dB Load Mismatch Stability Vcc = 50V


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PDF MAPRST0912-50 MAPRST0912-50
2007 - Not Available

Abstract: No abstract text available
Text: Collector-Emitter Leakage Current VCE = 40V Thermal Resistance Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz RTH(JC) - 0.80 °C/W Output Power Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz PO 50 - W Power Gain Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz GP 9.1 - dB Collector Efficiency Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz ηC 40 - % Input Return Loss Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz RL -


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PDF MAPRST0912-50
671400H

Abstract: 27C256AG m5118160 4096A 4270-D 5118160 4165A BK 4367 101AG 514270
Text: Organization (word X bit) 512kx8512k x 8 - Type H M 62W 8512A Series Page* 121 133 145 157 172 5V , . H M 62V 8128 S e r i e s . H M 62W 1664H B Series . HM 62W 1664H S e r ie s . H M 62W 9127H Series . H M 62W 8127H B Series . H M 62W 8127H S e r i e s . H M 62W 8128B S e r ie s . H M 62W 8128 S e r ie s . 186 199 - 3 .3 V - 6 4 k X 16 - n


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PDF 512kx8512k 28512A 674100H 671400H 8128B 1664H 9127H 8127H 27C256AG m5118160 4096A 4270-D 5118160 4165A BK 4367 101AG 514270
2007 - Not Available

Abstract: No abstract text available
Text: = 40V Vcc = 50V, Pin = 6.2W Vcc = 50V, Pin = 6.2W Vcc = 50V, Pin = 6.2W Vcc = 50V, Pin = 6.2W Vcc = 50V, Pin = 6.2W Vcc = 50V, Pin = 6.2W Vcc = 50V, Pin = 6.2W C RL VSWR-T VSWR-S ADVANCED: Data , Note: Po(dB) is the difference between Pout at 1dB overdrive and Pout at Pin = 6.2W . Gain vs


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PDF MAPRST0912-50
2002 - FZ1200R12KE3

Abstract: 997E-02
Text: Abschaltverzögerungszeit (ind. Last) turn off delay time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C td,off VGE=±15V, RGoff =0, 62W ,T vj= 125°C IC= 1200A, VCC= 600V Fallzeit (induktive Last) fall time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C tf VGE=±15V, RGoff =0, 62W ,T vj= 125 , = 125°C IC= 1200A, VCC= 600V, Ls= 60nH VGE=±15V, RGoff =0, 62W , T vj= 125°C tP £ 10µs, VGE £ 15V , ) Switching losses (typical) VGE=±15V, Rgon=1,8W, Rgoff=0, 62W , VCE=600V, Tvj=125°C 800 700 Eon Eoff


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PDF FZ1200R12KE3 FZ1200R12KE3 997E-02
EN6100-3-2

Abstract: EN61547 EN6100-3-3 EN55015 EN61347-2-13 CLQ21-240-B EN55015 EN61547 selv CLQ212
Text: CoolLED CLQ - 62W Single Output CoolLED Efficient Innovative Control Ambient temperature range , standards -25°C to 50°C 80°C 95% max non-condensing 110° self resetting 62W 2100mA + 5% 9V - 29.5V 3 - 9 , -2-13 EN6100-3-2 EN6100-3-3 EN61547 EN55015 147.3 76.20 CoolLED CLQ - 62W Single Output LED drivers , mains supply. The power factor corrected driver has a fully isolated, SELV output delivering up to 62W , string of 62W · Power factor corrected (0.95) · Constant current output · Up to 88% efficient Pending


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PDF 230Vac 120Vac 260Vac 350/700mA EN61347-2-13 EN6100-3-2 EN6100-3-3 EN61547 EN55015 EN55015 CLQ21-240-B EN55015 EN61547 selv CLQ212
2009 - power transistor 50w

Abstract: MAPRST0912-50 j78 transistor
Text: Resistance Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz RTH(JC) - 0.80 °C/W Output Power Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz PO 50 - W Power Gain Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz GP 9.1 - dB Collector Efficiency Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz C 40 - % Input Return Loss Vcc = 50V, Pin = 6.2W F = 960, 1090, 1215 MHz RL - -9 dB Load Mismatch Stability Vcc = 50V


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PDF MAPRST0912-50 power transistor 50w MAPRST0912-50 j78 transistor
Not Available

Abstract: No abstract text available
Text: Information Description Typ e No. A ccess tim e H M 62W 8128LP-10 100 ns H M 62W 8128LP-12 120 ns H M 62W 8128LP-1O L 100 ns H M 6 2W 81 28 LP-12 L 120 ns H M 62W 8128LP-1O SL 100 ns H M 6 2W 81 28 LP -12 SL 120 ns Features H M 62W 8128LFP-10 100 ns • High , 100 ns H M 6 2W 81 28 LFP -1 2L 120 ns H M 62W 8128LFP-1 OSL 100 ns H M 6 2 W 8 1 2 8 LFP -1 2 S L 120 ns HM 62W 8128LT-10 100 ns HM 62W 8128LT-12 120 ns HM 62W


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PDF HM62W8128 131072-Word 8128LP-10 8128LP-12 8128LP-1O LP-12 8128LFP-10
2002 - FF1200R12KE3

Abstract: No abstract text available
Text: ) turn off delay time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C td,off VGE=±15V, RGoff =0, 62W ,T vj= 125°C IC= 1200A, VCC= 600V Fallzeit (induktive Last) fall time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C tf VGE=±15V, RGoff =0, 62W ,T vj= 125 , = 125°C IC= 1200A, VCC= 600V, Ls= 60nH VGE=±15V, RGoff =0, 62W , T vj= 125°C tP £ 10µs, VGE £ 15V , (typical) VGE=±15V, Rgon=2,4W, Rgoff=0, 62W , VCE=600V, Tvj=125°C 800 700 Eon Eoff 600 Erec


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PDF FF1200R12KE3 897E-01 452E-01 997E-02 647E-02 634E-02 451E-02 820E-03 850E-03 FF1200R12KE3
1999 - MBM400GS6AW

Abstract: Hitachi DSA0047
Text: 0.35 0.7 RL=0.75W Switching Times Fall Time tf 0.25 0.35 RG= 6.2W (4) 0.8 1.1 VGE=±15V Turn , -0 TYPICAL TYPICAL 10 1.5 Switching Time, t (ms) Vcc=300V VGE=±15V RG= 6.2W TC=25°C Resistive , ) Switching time vs. Collector current TYPICAL TYPICAL 100 Vcc=300V VGE=±15V RG= 6.2W TC , . Collector current 1000 Transient Thermal Impedance, Rth(j-c) (°C/W) VGE=±15V RG= 6.2W TC


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PDF MBM400GS6AW MBM400GS6AW Hitachi DSA0047
1999 - Not Available

Abstract: No abstract text available
Text: Turn On Time ton 0.35 0.55 RL=3.0W Switching Times Fall Time tf 0.25 0.35 RG= 6.2W (4) 0.55 , =25°C Resistive Load Switching Time, t (ms) Vcc=600V VGE=±15V RG= 6.2W TC=25°C Resistive Load , TYPICAL 100 Vcc=600V VGE=±15V RG= 6.2W TC=125°C Inductive Load 30 Switching Loss, Eton , Thermal Impedance, Rth(j-c) (°C/W) 1000 100 VGE=±15V RG= 6.2W TC£125°C 10 1 0


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PDF MBM200JS12EW
2001 - MIL-STD-1399

Abstract: 19v 65w HDPC-2 power transient filter MIL-STD 704
Text: . 62W VO +/- 1% 5.0A 62W 5.0A 62W VO +/- 1% 7.8A 62W 7.8A VO +/- 1% note


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PDF LC810 DS-241 MIL-STD-1399 19v 65w HDPC-2 power transient filter MIL-STD 704
1999 - Not Available

Abstract: No abstract text available
Text: =600V ms Turn On Time ton 0.35 0.55 RL=3.0W Switching Times Fall Time tf 0.25 0.35 RG= 6.2W (4 , ±15V RG= 6.2W TC=25°C Resistive Load Switching Time, t (ms) 1 1 toff toff 0.5 tr ton , resistance TYPICAL 40 Vcc=600V VGE=±15V RG= 6.2W TC=125°C Inductive Load 30 Etoff , ) 1000 VGE=±15V RG= 6.2W TC£125°C 10 1 0.1 0 200 400 600 800 1000 1200


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PDF MBM200JS12AW
CFM60T

Abstract: V3-12V
Text: ±4% V3=-12V 0A 0.5A 0.65A 120mV ±5% ±2% O/PPower Max. %EFF. 62W 83% ±5% V2 V1 V1 GND GND V3 N L 62W 83% 3.750 (95.20) CFM60T-04 62W 83


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PDF 20LFM CFM60T 240Vac 242VDC 120mV CFM60T-04 CFM60T-03 CFM60T-02 CFM60T-01 CFM60T V3-12V
2001 - MIL-STD-1275

Abstract: MIL-STD-1399 19v 65w
Text: . 62W VO +/- 1% 5.0A 62W 5.0A 62W VO +/- 1% 7.8A 62W 7.8A VO +/- 1% note


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PDF LC810 DS-243 MIL-STD-1275 MIL-STD-1399 19v 65w
2002 - FF1200R12KE3

Abstract: IGBT 1200A
Text: ) turn off delay time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C td,off VGE=±15V, RGoff =0, 62W ,T vj= 125°C IC= 1200A, VCC= 600V Fallzeit (induktive Last) fall time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C tf VGE=±15V, RGoff =0, 62W ,T vj= 125 , = 125°C IC= 1200A, VCC= 600V, Ls= 60nH VGE=±15V, RGoff =0, 62W , T vj= 125°C tP £ 10µs, VGE £ 15V , (typical) VGE=±15V, Rgon=2,4W, Rgoff=0, 62W , VCE=600V, Tvj=125°C 800 700 Eon Eoff 600 Erec


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PDF FF1200R12KE3 FF1200R12KE3 IGBT 1200A
2002 - FZ1200R12KE3

Abstract: No abstract text available
Text: Abschaltverzögerungszeit (ind. Last) turn off delay time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C td,off VGE=±15V, RGoff =0, 62W ,T vj= 125°C IC= 1200A, VCC= 600V Fallzeit (induktive Last) fall time (inductive load) VGE=±15V, RGoff =0, 62W , T vj=25°C tf VGE=±15V, RGoff =0, 62W ,T vj= 125 , = 125°C IC= 1200A, VCC= 600V, Ls= 60nH VGE=±15V, RGoff =0, 62W , T vj= 125°C tP £ 10µs, VGE £ 15V , ) Switching losses (typical) VGE=±15V, Rgon=1,8W, Rgoff=0, 62W , VCE=600V, Tvj=125°C 800 700 Eon Eoff


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PDF FZ1200R12KE3 FZ1200R12KE3
1999 - MBM400JS6AW

Abstract: PC1470 Hitachi DSA0047
Text: 0.35 0.7 RL=0.75W Switching Times Fall Time tf 0.25 0.35 RG= 6.2W (4) 0.8 1.1 VGE=±15V Turn , Switching Time, t (ms) Switching Time, t (ms) Vcc=300V VGE=±15V RG= 6.2W TC=25°C Resistive Load , , IC (A) Switching time vs. Collector current TYPICAL TYPICAL 100 Vcc=300V VGE=±15V RG= 6.2W , loss vs. Gate resistance 1000 1 Transient Thermal Impedance, Rth(j-c) (°C/W) VGE=±15V RG= 6.2W


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PDF MBM400JS6AW MBM400JS6AW PC1470 Hitachi DSA0047
2000 - Not Available

Abstract: No abstract text available
Text: 3.3V, 5V, 6V, 1 Current Limit, Max. 62W 5.0A 62W 5.0A 62W 7.8A 62W 7.8A


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PDF LC810
Not Available

Abstract: No abstract text available
Text: ) 589-8300 H M 62W 9128 Series Pin A rra n g e m e n t HM62W9128FP Series HM62W9128T Series A 16 I , 2000 Sierra Point Pkwy. · Brisbane, CA 94005-1819 · (415) 589-8300 5-123 HM 62W 9128 Series B , 62W 9128 Series A bso lute M a x im u m Ratings Ite m S u p p ly v o lta g e relative to Vs s V o , Brisbane, CA 94005-1819 · (415) 589-8300 5 -1 2 5 H M 62W 9128 Series D C C h a ra c te ris tic s (Ta , (415) 589-8300 D O < HM 62W 9128 Series A C C h a ra c te ris tic s (T a = 0 to + 7 0 ° C


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PDF HM62W9128 131072-Word
Not Available

Abstract: No abstract text available
Text: s H M 6 2W 91 28 LFP -10 S L 100 ns H M 6 2 W 9 1 2 8 LFP -1 2 S L 120 ns H M 62W 9128LT-10 100 ns HM 62W 9128LT-12 120 ns H M 62W 9128LT-10L 100 ns H M 62W 9128LT-12L 120 ns HM 62W 9128LT-10 S L 100 ns H M 62W 9128LT-12SL The H itachi H M 62W 9128 is a CMOS , Pkwy. • Brisbane, CA 94005-1819 • (415) 589-8300 HM62W9128 Series Pin Arrangem ent H M 62W 9128T Series H M 62W 9128FP Series A16d 1 A15d 2 3 A8 d ^ 32 I 't c 31 â


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PDF HM62W9128 131072-Word LFP-12 9128LT-10 9128LT-12 9128LT-10L 9128LT-12L 9128LT-10 9128LT-12SL
1999 - Not Available

Abstract: No abstract text available
Text: 0.35 0.55 RL=3.0W Switching Times Fall Time tf 0.25 0.35 RG= 6.2W (4) 0.55 1.0 VGE=±15V Turn , -0 TYPICAL TYPICAL 1.5 10 Vcc=600V VGE=±15V RG= 6.2W TC=25°C Resistive Load Switching , ) Switching time vs. Collector current TYPICAL Vcc=600V VGE=±15V RG= 6.2W TC=125°C Inductive Load 30 , , Eton, Etoff (mJ/pulse) Switching Loss, Eton,Etoff, Err (mJ/pulse) 40 10 1 VGE=±15V RG= 6.2W


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PDF MBM200GS12AW
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