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150-A Datasheet

Part Manufacturer Description PDF Type
150-A05 Allen-Bradley Smart Motor Controller-SMC-2 Original
150A100B Amplifier Research 150 WATTS CW 10 kHz - 100 MHz Original
150A100BM1 Amplifier Research 150 WATTS CW 10 kHz - 100 MHz Original
150A100BM2 Amplifier Research 150 WATTS CW 10 kHz - 100 MHz Original
150A100BM3 Amplifier Research 150 WATTS CW 10 kHz - 100 MHz Original
150A100BM4 Amplifier Research 150 WATTS CW 10 kHz - 100 MHz Original
150-A-111-02 WECO Electrical Connectors Over 600 obsolete distributor catalogs now available on the Datasheet Archive - SCREW CONNECTOR, PCB W/ELEVATOR STYLE CLAMP MECH, 2 POLES Scan
150-A-111-03 WECO Electrical Connectors Over 600 obsolete distributor catalogs now available on the Datasheet Archive - SCREW CONNECTOR, PCB W/ELEVATOR STYLE CLAMP MECH, 3 POLES Scan
150-A-121/02 WECO Electrical Connectors Over 600 obsolete distributor catalogs now available on the Datasheet Archive - SCREW CONNECTOR, PCB W/ELEVATOR STYLE CLAMP MECH, 2 POLES Scan
150-A-121/03 WECO Electrical Connectors Over 600 obsolete distributor catalogs now available on the Datasheet Archive - SCREW CONNECTOR, PCB W/ELEVATOR STYLE CLAMP MECH, 3 POLES Scan
150-A16 Allen-Bradley Smart Motor Controller-SMC-2 Original
150A220 Amplifier Research A completely solid-state, linear broadband amplifier Original
150-A24 Allen-Bradley Smart Motor Controller-SMC-2 Original
150A400 Amplifier Research a self-contained, broadband unit Original
150A400M1 Amplifier Research a self-contained, broadband unit Original
150A400M2 Amplifier Research a self-contained, broadband unit Original
150A400M3 Amplifier Research a self-contained, broadband unit Original
150-A54 Allen-Bradley Smart Motor Controller-SMC-2 Original
150AV Mullard Quick Reference Guide 1977/78 Scan
150AYC10B TE Connectivity Line Filters, Filters, FILTER 3-PHASE RFI PWR LINE 150A Original
Showing first 20 results.

150-A

Catalog Datasheet MFG & Type PDF Document Tags

MLM309

Abstract: MC7705C 150°C 79, 29 200 mV 80 mV ±.16mV/°C o°c 150°C 79, 29 250 mV 100 mV ±.24mV/°C o°c 150°C 79, 29 300 mV 150 mV ±. 3mV/°C o°c 150°C 79, 29 325 mV 170 mV ±.36mV/°C o°c 150°C 79, 29 350 mV 200 mV ±.18mV/°C o°c 150°C 79, 29 150 mV 60 mV ± 1mV/°C o°c 150°C 79, 29 175 mV 80 mV ±.16mV/°C o°c 150°C 79, 29 250 mV 100 m V ±.24mV/°C o°c 150° C 79, 29 300 mV 150 mV ±. 3mV/°C o°c 150°C 79, 29 325 mV 175 mV ±.36mV/°C o°c 150°C 79, 29 300 mV 200 mV ±.48mV/°C o°c 150°C 79
-
OCR Scan
MC78L05C MC78L08C MC78L12C MC78L15C MC78L05AC MC78L08AC MLM309 MC7705C MLM109 MLM209 MC7718 MC7718C MC78L18C MC78L24C
Abstract: SPHbl 150â'"Pt0402Gfâ'"0800 SPHbl 150â'"Pt0502Gfâ'"0800 SPHbl 150â'"Pt0602Gfâ'"0800 SPHbl 150â'"Pt0702Gfâ'"0800 SPHbl 150â'"Pt0802Gfâ'"0800 SPHbl 150â'"Pt0902Gfâ'"0800 SPHbl 150â'"Pt1002Gfâ'"0800 SPHbl 150â'"Pt1102Gfâ'"0800 SPHbl 150â'"Pt1202Gfâ'"0800 SPHbl 150â'"Pt1302Gfâ'"0800 SPHbl 150â'"Pt1402Gfâ'"0800 SPHbl 150â'"Pt1502Gfâ'"0800 SPHbl 150â'"Pt1602Gfâ'"0800 SPHbl 150â'"Pt1702Gfâ'"0800 SPHbl 150â'"Pt1802Gfâ'"0800 SPHbl 150â'"Pt1902Gfâ'"0800 SPHbl 150â'"Pt2002Gfâ'"0800 SPHbl 150â'"Pt2102Gfâ'"0800 SPHbl 150â'"Pt2202Gfâ'"0800 SPHbl 150â'"Pt2302Gfâ'"0800 -
OCR Scan
5000M0 0202G 0302G 0402G 0502G 0602G
Abstract: diode IF SEMiX151GAR12T4s VCC = 800V VGE ≤ 20V Tj = 150°C VCES ≤ 1200V Tj = 175 , 150°C 2.20 2.4 V VCE0 Tj = 25°C 0.8 0.9 V Tj = 150°C 0.7 0.8 V , 1200V Tj = 150°C VGE=VCE, IC = 6mA Cies Coes Cres VCE = 25V VGE = 0V 5 Tj = 25°C Tj = 150°C mA f = 1MHz 9.3 nF f = 1MHz 0.58 nF f = 1MHz 0.51 nF QG , ICnom = 150A Tj = 150°C RG on = 1â"¦ RG off = 1â"¦ di/dton = 3600A/µs di/dtoff = 1600A/µs Rth SEMIKRON
Original
X151GAR12T4 E63532 B100/125 1/T-1/T100
Abstract: IC = 400 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå , 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 400 A, VCE = 300 V VGE = ±15 V RGon = 1,5 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C å³æ­å»¶è¿æ—¶é , "¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time,#2;inductive#2;load IC = 400 A, VCE = 300 V VGE = ±15 V RGoff = 1,5 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Infineon Technologies
Original
F3L400R12PT4 E83335
Abstract: 150°C ã'²ãƒ¼ãƒãƒ»ã'¨ãƒãƒƒã'¿é"しãã"å'¤é›»å§ Gate#2;threshold#2;voltage IC = 2,60 mA, VCE = , 25°C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ³ä¸æ˜‡æ™'é"ï¼èª˜å°è² è·ï¼‰ Rise#2;time,#2;inductive#2;load IC = 30 A, VCE = 400 V VGE = 15 V RGon = 6,8 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , VGE = 15 V RGoff = 6,8 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ•ä¸'é™æ , °C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ³ã'¹ã'¤ãƒƒãƒãƒ³ã'°æå¤± Turn-on#2;energy#2;loss#2;per#2;pulse Infineon Technologies
Original
F3L75R12W1H3
Abstract: Vâ' Å Ã™ÃÚ â'¢ Trench IGBT 4 â'¢ TÝà Ã"Ã" = 150°C â'¢ Vâ' Å Ã™ÃÚ mit positivem , '¢ Low Vâ' Å Ã™ÃÚ â'¢ Trench IGBT 4 â'¢ TÝà Ã"Ã" = 150°C â'¢ Vâ' Å Ã™ÃÚ with positive , Kollektor-Emitter-Sättigungsspannung Collector-emitter#2;saturation#2;voltage min. Tvj = 25°C Tvj = 125°C Tvj = 150°C IC = 400 , 125°C Tvj = 150°C Anstiegszeit,#2;induktive#2;Last Rise#2;time,#2;inductive#2;load IC = 400 A, VCE = 300 V VGE = ±15 V RGon = 1,5 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Infineon Technologies
Original
E8333
Abstract: IC = 15 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C , 25°C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ³ä¸æ˜‡æ™'é"ï¼èª˜å°è² è·ï¼‰ Rise#2;time,#2;inductive#2;load IC = 15 A, VCE = 350 V VGE = 15 V RGon = 35 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , VGE = 15 V RGoff = 35 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ•ä¸'é™æ , °C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ³ã'¹ã'¤ãƒƒãƒãƒ³ã'°æå¤± Turn-on#2;energy#2;loss#2;per#2;pulse Infineon Technologies
Original
F3L15R12W2H3
Abstract: 125°C Eon, Tvj = 150° Eoff, Tvj = 150°C 6,5 6,0 120 5,5 105 5,0 4,5 4,0 E [mJ , 125°C Tvj = 150°C VCE sat typ. max. 1,55 1,70 1,75 1,95 V V V 5,8 6,5 , "¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 75 A, VCE = 300 V VGE = ±15 V RGon = 5,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , RGoff = 5,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time Infineon Technologies
Original
FP75R07N2E4
Abstract: °C Eon, Tvj = 150° Eoff, Tvj = 150°C 6,5 6,0 120 5,5 105 5,0 4,5 4,0 E [mJ] IC , = 75 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C , = 25°C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ³ä¸æ˜‡æ™'é"ï¼èª˜å°è² è·ï¼‰ Rise#2;time,#2;inductive#2;load IC = 75 A, VCE = 300 V VGE = ±15 V RGon = 5,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , VGE = ±15 V RGoff = 5,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ã'¿ãƒ¼ãƒ³ã'ªãƒ•ä¸'é™æ Infineon Technologies
Original
Abstract: , Tvj = 25°C tp = 10 ms, Tvj = 150°C IFSM #2; 360 290 #2; A A Grenzlastintegral I²t#2;-#2;value tp = 10 ms, Tvj = 25°C tp = 10 ms, Tvj = 150°C I²t #2; 650 420 #2; A²s A²s , #2; #2; Durchlassspannung Forward#2;voltage Tvj = 150°C, IF = 30 A Sperrstrom Reverse#2;current Tvj = 150°C, VR = 1200 V Wärmewiderstand,#2;Chip#2;bis#2;Gehäuse Thermal#2;resistance , , Tvj = 25°C tp = 10 ms, Tvj = 150°C IFSM #2; 290 245 #2; A A Grenzlastintegral Infineon Technologies
Original
DF120R12W2H3

EWCAP

Abstract: USCAR 1 2 3 4 33472-0401 - BLACK A 60 60 SALEABLE RECOMMENDED. TEMPERATURE CLASS 4 (-40°C TO 150°D 33472-0402 - LIGHT GRAY B 60 40 SALEABLE RECOMMENDED: TEMPERATURE CLASS 4 (-40°C TO 150°C) 33472-0403 - , 33472-0406 YES BLACK A 60 60 SALEABLE RECOMMENDED; TEMPERATURE CLASS 4 (-40°C TO 150°C) 33472-0407 YES LIGHT GRAY B 60 40 SALEABLE RECOMMENDED, TEMPERATURE CLASS 4 l-40°C TO 150°C) 33472-0408 YES BROWN , 33472-0431 - BLACK A 60 60 X X X X SALEABLE RECOMMENDED; TEMPERATURE CLASS 4 (-40°C TO 150°C) 33472-0432 -
-
OCR Scan
150-S-004-2-Z02 EWCAP USCAR z02 marking D4040 marking A02 S-004 CUENPTSHAASRPN00TRE 15O-S-0 15D-S-0D 15D-S-D04-2-A02

FP75R12KT4

Abstract: IC = 75 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå , = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 75 A, VCE = 600 V VGE = ±15 V RGon = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , RGoff = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time,#2;inductive#2;load IC = 75 A, VCE = 600 V VGE = ±15 V RGoff = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C
Infineon Technologies
Original
FP75R12KT4
Abstract: I Specified for 150â"¦ loads I I 8 NC Inv. In. 2 Input single supply voltage I , standard 150â"¦ loads. A low operating voltage makes TSH7x amplifiers ideal for use in portable equipment , 1.5V |Source |Sink ICC Avd Io 0.2 Tamb =25°C RL = 150â"¦ to GND RL = 600â"¦ to GND , = RL = 150â"¦ to 1.5V 600â"¦ to 1.5V 2kâ"¦ to 1.5V 10kâ"¦ to 1.5V Tmin. < Tamb < Tmax. RL = 150â"¦ to GND RL = 150â"¦ to 1.5V pF 9.8 11 mA dB dB 75 dB 70 65 81 STMicroelectronics
Original
TSH70 TSH71 TSH72 TSH73 SO14/TSSOP14
Abstract: 25V â'"55 to 150°C â'"55 to 200°C â'"65 to 150°C 300°C * Although the devicesâ'™ maximum , 150°C VIN = 13.5V to 25V IO = 0 to 1.5A TJ = â'"55 to 150°C VIN â'" VOUT = 1.5 to 15V IO = 10mA to 1.5A TJ = â'"55 to 150°C VIN = 6.5 to 20V IO = 0 TJ = â'"55 to 150°C VIN = 13.5 to 25V IO = 0 TJ = â'"55 to 150°C VIN â'" VOUT = 1.5 to 15V ILOAD = 10mA TJ = â'"55 to 150°C VIN = 8V IO = 0 to 1.5A TJ = â'"55 to 150°C VIN = 15V IO = 0 to 1.5A Semelab
Original
LM1086
Abstract: °C Tvj = 125°C Tvj = 150°C IC = 75 A, VGE = 15 V IC = 75 A, VGE = 15 V IC = 75 A, VGE = 15 V , °C Tvj = 150°C Anstiegszeit,#2;induktive#2;Last Rise#2;time,#2;inductive#2;load IC = 75 A, VCE = 300 V VGE = ±15 V RGon = 30 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Abschaltverzögerungszeit , "¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Fallzeit,#2;induktive#2;Last Fall#2;time,#2;inductive#2;load IC = 75 A, VCE = 300 V VGE = ±15 V RGoff = 30 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Infineon Technologies
Original
FP75R06KE3
Abstract: 125°C Tvj = 150°C æ æžé˜å'¼ç"µå' Gate#2;threshold#2;voltage IC = 0,20 mA, VCE = VGE, Tvj = , = 22 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 15 A, VCE = 300 V VGE = ±15 V RGon = 22 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , RGoff = 22 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time,#2;inductive#2;load IC = 15 A, VCE = 300 V VGE = ±15 V RGoff = 22 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Infineon Technologies
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FP15R06W1E3
Abstract: = 30 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå , °C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 30 A, VCE = 300 V VGE = ±15 V RGon = 15 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C å³æ­å»¶è¿æ—¶é—´(ç"µæ"è´è , °C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time,#2;inductive#2;load IC = 30 A, VCE = 300 V VGE = ±15 V RGoff = 15 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C å¼'é'šæè'—能量#2;(每è"‰å Infineon Technologies
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FP30R06W1E3
Abstract: °C Tvj = 125°C Tvj = 150°C IC = 30 A, VGE = 15 V IC = 30 A, VGE = 15 V IC = 30 A, VGE = 15 V , °C Tvj = 150°C Anstiegszeit,#2;induktive#2;Last Rise#2;time,#2;inductive#2;load IC = 30 A, VCE = 300 V VGE = ±15 V RGon = 56 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Abschaltverzögerungszeit , "¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Fallzeit,#2;induktive#2;Last Fall#2;time,#2;inductive#2;load IC = 30 A, VCE = 300 V VGE = ±15 V RGoff = 56 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Infineon Technologies
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FP30R06KE3
Abstract: 125°C Tvj = 150°C æ æžé˜å'¼ç"µå' Gate#2;threshold#2;voltage IC = 0,30 mA, VCE = VGE, Tvj = , = 27 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 10 A, VCE = 300 V VGE = ±15 V RGon = 27 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C , RGoff = 27 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time,#2;inductive#2;load IC = 10 A, VCE = 300 V VGE = ±15 V RGoff = 27 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C Infineon Technologies
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FP10R06W1E3
Abstract: Bias Safe Operating Area TC = 25°C TJ = 150°C Max ratings 600 100 75 140 ±20 250 150A , 150°C VGE = VCE, IC = 600µA VGE = 20V, VCE = 0V Min Typ 5.0 1.5 1.7 5.8 Min Typ , 75A RG = 4.7Ω Inductive Switching (150°C) VGE = ±15V VBus = 300V IC = 75A RG = 4.7Ω VGE = ±15V Tj = 25°C VBus = 300V Tj = 150°C IC = 75A Tj = 25°C RG = 4.7Ω Tj = 150°C VGE ≤15V ; VBus = 360V tp ≤ 6µs ; Tj = 150°C Junction to Case Thermal Resistance 4620 300 140 pF Microsemi
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APTGT75TL60T3G
Abstract: "¢ åæ­¥æ•°æ®#2;/#2;Preliminary#2;Data VCES = 650V IC nom = 150A / ICRM = 300A å¸åž'åº"ç"¨ â , '¢ 高ç­è·¯èƒ½å›ï¼Œè‡ªé™å¶ç­è·¯ç"µæµ â'¢ æ²æ§½æ IGBT4 â'¢ Tvj#2;op#2;=#2;150°C â'¢ VCEsat#2;#2;带正温度系数 , Limiting Short Circuit#2;Current â'¢ Trench#2;IGBT#2;4 â'¢ Tvj#2;op#2;=#2;150°C â , °C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå' Gate#2;threshold#2;voltage IC = 2,40 mA, VCE = VGE , = 3,3 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time Infineon Technologies
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FP150R07N3E4
Abstract: #2;4#2;diode#2;and#2;NTC åæ­¥æ•°æ®#2;/#2;Preliminary#2;Data VCES = 650V IC nom = 150A / ICRM = 300A å¸åž'åº"ç"¨ â , '¢ 高ç­è·¯èƒ½å›ï¼Œè‡ªé™å¶ç­è·¯ç"µæµ â'¢ æ²æ§½æ IGBT4 â'¢ Tvj#2;op#2;=#2;150°C Electrical#2;Features â , #2;4 â'¢ Tvj#2;op#2;=#2;150°C æºæ¢°ç‰¹æ'§ â'¢ é›æNTC温度传æ"器 â'¢ é"åºæ¿ â'¢ ç"æ¥æ'æ , IC = 150 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå , = 3,3 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time Infineon Technologies
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FS150R07N3E4
Abstract: Short Circuit#2;Current â'¢ Low#2;VCEsat â'¢ Unbeatable#2;Robustness â'¢ Tvj#2;op#2;=#2;150°C â'¢ â'¢ â'¢ â'¢ â'¢ ä½#2;VCEsat#2;飽å'Œé›»å§ å"ªã'Œããƒ­ãƒã'¹ãƒæ'§ Tvj#2;op#2;=#2;150°C æ­£æ , ã'³ãƒ¬ã'¯ã'¿ãƒ»ã'¨ãƒãƒƒã'¿é"é›»å§ Collector-emitter#2;voltage Tvj = -50°C Tvj = -40°C Tvj = 150°C VCES #2; 3200 , = 150°C IC nom #2; 1000 #2; A ç¹°ã'è¿"しãƒ"ーã'¯ã'³ãƒ¬ã'¯ã'¿é›»æµ , 25°C, Tvj max = 150°C Ptot #2; 9,60 #2; kW ã'²ãƒ¼ãƒãƒ»ã'¨ãƒãƒƒã'¿é"ãƒ"ーã'¯é›»å Infineon Technologies
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FD1000R33HL3-K

FF150R12RT4

Abstract: #2;4#2;diode Vorläufige#2;Daten#2;/#2;Preliminary#2;Data VCES = 1200V IC nom = 150A / ICRM = 300A Typische#2;Anwendungen â , '¢ Erweiterte#2;Sperrschichttemperatur#2;Tvj#2;op â'¢ Niedrige#2;Schaltverluste â'¢ Niedriges#2;VCEsat â'¢ Tvj#2;op#2;=#2;150°C â , '¢ Low#2;VCEsat â'¢ Tvj#2;op#2;=#2;150°C â'¢ , Kollektor-Emitter-Sättigungsspannung Collector-emitter#2;saturation#2;voltage min. Tvj = 25°C Tvj = 125°C Tvj = 150°C IC = 150 , 125°C Tvj = 150°C Anstiegszeit,#2;induktive#2;Last Rise#2;time,#2;inductive#2;load IC = 150 A, VCE =
Infineon Technologies
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FF150R12RT4
Abstract: IC = 150 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå , = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time,#2;inductive#2;load IC = 150 A, VCE = 600 V VGE = ±15 V RGon = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150 , RGoff = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸'é™æ—¶é—´(ç"µæ"è´è½½) Fall#2;time,#2;inductive#2;load IC = 150 A, VCE = 600 V VGE = ±15 V RGoff = 1,1 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150 Infineon Technologies
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IFS150B12N3T4
Abstract: #2;4#2;diode Vorläufige#2;Daten#2;/#2;Preliminary#2;Data VCES = 1200V IC nom = 150A / ICRM = 300A Typische#2;Anwendungen â , '¢ Erweiterte#2;Sperrschichttemperatur#2;Tvj#2;op â'¢ Niedrige#2;Schaltverluste â'¢ Niedriges#2;VCEsat â'¢ Tvj#2;op#2;=#2;150°C â , '¢ Low#2;VCEsat â'¢ Tvj#2;op#2;=#2;150°C â'¢ , , VGE = 15 V IC = 150 A, VGE = 15 V IC = 150 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150 , 125°C Tvj = 150°C Anstiegszeit,#2;induktive#2;Last Rise#2;time,#2;inductive#2;load IC = 150 A, VCE = Infineon Technologies
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FD150R12RT4 FD150R
Abstract: "¢ åæ­¥æ•°æ®#2;/#2;Preliminary#2;Data VCES = 650V IC nom = 150A / ICRM = 300A å¸åž'åº"ç , ‡³650V â'¢ 高ç­è·¯èƒ½å›ï¼Œè‡ªé™å¶ç­è·¯ç"µæµ â'¢ æ²æ§½æ IGBT4 â'¢ Tvj#2;op#2;=#2;150°C â , Short Circuit Capability, Self Limiting Short Circuit#2;Current â'¢ Trench#2;IGBT#2;4 â'¢ Tvj#2;op#2;=#2;150 , IC = 150 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C æ æžé˜å'¼ç"µå , = 3,3 â"¦ Tvj = 25°C Tvj = 125°C Tvj = 150°C ä¸å‡æ—¶é—´(ç"µæ"è´è½½) Rise#2;time Infineon Technologies
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