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Part : ASSVP-11.025MHZ-R-C02 Supplier : Abracon Manufacturer : Avnet Stock : - Best Price : - Price Each : -
Part : CV3336-20.25MHZ Supplier : - Manufacturer : Bristol Electronics Stock : 25 Best Price : - Price Each : -
Part : TO52025MHZ Supplier : Vanlong Technology Manufacturer : Bristol Electronics Stock : 80 Best Price : - Price Each : -
Part : Q1A155025MH0D Supplier : Vishay Intertechnology Manufacturer : ComSIT Stock : 2,500 Best Price : - Price Each : -
Part : QESM08.1.30.DT.30.10/ 25MHZ - 18PF Supplier : Temex Ceramics Manufacturer : Chip One Exchange Stock : 2,826 Best Price : - Price Each : -
Part : QESM08.1.30.DT.30.10/ 25MHZ - 18PF Supplier : - Manufacturer : Chip One Exchange Stock : 2,826 Best Price : - Price Each : -
Part : MP-025MH Supplier : Marushin Electric Mfg Manufacturer : Chip1Stop Stock : 88 Best Price : $3.27 Price Each : $3.27
Part : CO1100-25MHZ Supplier : Raltron Electronics Manufacturer : Master Electronics Stock : 229 Best Price : $0.1920 Price Each : $0.3330
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0-25MH

Catalog Datasheet MFG & Type PDF Document Tags

fg3000gx90da

Abstract: 4500v 3400V, VDM = 4500V, Tj = 125°C, CS = 3.0mF, LS = 0.25mH 180Tf = 73°C 60Hz1 1 VD = 3400V, IGM = 25A , 0.25mH VD = 24V, RL = 0.1, Tj = 25°C - V mA mA mA V/ms ms - - 30 ms - - - , -90DA - 50 VD = 3400V VDM = 4500V diGQ/dt = ­40A/ms 40 VRG = 17V CS = 3.0mF LS = 0.25mH 30 Tj , 17V CS = 3.0mF LS = 0.25mH Tj = 125°C 0 10 20 30 40 50 60 (A) (A /ms) - , 3.0mF LS = 0.25mH Tj = 125°C 300 200 100 0 0 (A) (A) 800 1000 900 800 700 600
Mitsubishi
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FG3000GX-90DA FG4000GX-90DA FG6000AU-120D FGR3000CV-90DA FGR3000FX-90DA fg3000gx90da 4500v FG3000G

FG4000BX-90DA

Abstract: 30MF5 VD = 2250V, VDM = 4500V, Tj = 125°C, CS = 3.0mF, LS = 0.25mH 180Tf = 78°C 60Hz1 1 VD = 3400V, IGM , /ms, VRG = 17V, CS = 3.0mF, LS = 0.25mH VD = 24V, RL = 0.1, Tj = 25°C - - ms - - - , 0.25mH 20 Tj = 125°C tgq ts 15 10 5 500 1000 1500 2000 2500 3000 tgq ts , 3000A ts VRG = 17V CS = 3.0mF 5 LS = 0.25mH Tj = 125°C 10 0 0 10 20 30 40 50 60 70 80 , 17V CS = 3.0mF LS = 0.25mH 600 Tj = 125°C (A) (A) 1000 400 200 0 500 1000
Mitsubishi
Original
FG4000BX-90DA 30MF5

C998

Abstract: 420AI Time Fall Time Cross Over Time le = 10A Vcc =50V Vbb = - 5V RBB=0.6n Vclamp = 400V lB1=1A L = 0.25mH 1 , 0.6fi Vclamp = 400V Ibi = 1A L = 0.25mH Tj = 100°C 2 0.1 0.18 ns ns ns Vcew Maximum Collector , 0.25mH Tj=125°C 500 V ts ti to Storage Time Fall Time Cross Over Time le = 10A Vcc =50 V Vbb = 0 Rbb =0.150 Vclamp = 400V iÃt = 1A L = 0.25mH 1.5 0.04 0.07 ns ns ns S G S-THOMSON 3QE D _ fZT , Ibi=1A L = 0.25mH Tj = 100°C 3 0.15 0.25 US US US VcEW Maximum Collector Emitter Voltage without
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BUF420 BUF420I BUF420M BUF420A BUF420A1 BUF420AM C998 420AI BUF420/420I/420M BUF420A/420AI/420AM 100KHZ 100KH
Abstract: 20A V BB = -5V L C = 0.25mH VCC = 100V I C = 20A V BB = -5V L C = 0.25mH V CC = 100V I C = 20A V BB = 0 LC = 0.25mH V CC = 100V I C = 20A V BB = 0 LC = 0.25mH I C = 24A IB1 = 3A Tp = 30 µs V cla mp = STMicroelectronics
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BUW50 P025A

BUV39

Abstract: 0.09 0.2 US tt Tail Time in Turn-on VBB =- 5V Rb2 = 1.7Q 0.03 0.05 |iS tc Crossover Time Lc = 0.25mH , 0.25mH T| = 100°C 0.3 0.5 US See fig.3 ts Storage Time Vcc = 72V Vciamp = 90V 1.4 US tf Fall Time le = 15A lB = 1.5A 0.7 US tt Tail Time in Turn-on VBB =0 Rb2 = 3.9Q 0.22 US Lc = 0.25mH See , Tail Time in Turn-on VBB =0 RB2 = 3.9fi 0.44 ns Lc = 0.25mH Tj = 100°C See fig
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BUV39 T-33-13 T-33-1

SC06960

Abstract: BUW50 0.09 0.2 ns tt Tail Time in Turn-on Vbb = -5V Rb = 13Q 0.04 0.05 ns tc Crossover Time Lc = 0.25mH , 0.3 ns t. Tail Time in Turn-on VBB = -5V RB = 1 3Û 0.07 0.1 ns tc Crossover Time Lc = 0.25mH Tj , 0.7 ns tt Tail Time in Turn-on Vbb = 0 Rb = 4.7Q 0.28 ns Lc = 0.25mH ts Storage Time Vcc , = 0 Rb = 4.7Q 0.55 ns Lc = 0.25mH Tj =100°C * Pulsed: Pulse duration - 300 |xs, duty
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SC06960 7TBT237 7T2TE37

BUW89

Abstract: 15A V BB = -5V LC = 0.25mH VCC = 72V I C = 15A V BB = -5V LC = 0.25mH V CC = 72V I C = 15A V BB = 0 L C = 0.25mH V CC = 72V I C = 15A V BB = 0 L C = 0.25mH I C = 20A IB1 = 2.5A Tp = 30µ s V clamp = 90V
STMicroelectronics
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BUW89

TS morocco

Abstract: BUW90 CC = 100V I C = 11A V BB = -5V LC = 0.25mH V CC = 100V I C = 11A V BB = -5V LC = 0.25mH V CC = 100V I C = 11A V BB = 0 L C = 0.25mH V CC = 100V I C = 11A V BB = 0 LC = 0.25mH IC = 15A IB1 = 1.8A T p =
STMicroelectronics
Original
BUW90 TS morocco BUW9

BUW50

Abstract: Crossover Time V CC = 100V I C = 20A V BB = -5V L C = 0.25mH V clamp = 125V I B = 2A R B = 1.3 , Time Tail Time in Turn-on Crossover Time VCC = 100V I C = 20A V BB = -5V L C = 0.25mH V , = 0 L C = 0.25mH V clamp = 125V I B = 2A R B = 4.7 2.1 0.7 0.28 µs µs µs ts tf tt Storage Time Fall Time Tail Time in Turn-on V CC = 100V I C = 20A V BB = 0 L C = 0.25mH
STMicroelectronics
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PFC2831CNP-15A-P

Abstract: PFC2831 C AC COMMON MODE COIL Type: PFC2831C Product Description 35.0×23.0mm Max.(L×W), 35.0mm Max. Height . Inductance range: 0.25mH Rated current range:15.0A In addition to the standard versions of parameters shown here, custom designs are available to meet your exact requirements. Feature Safety standard conformance such as UL. Ideally used in TV, VCRs, OA devices. RoHS , : PFC2831CNP-15A-P) Measuring condition Inductance (1-2) and (4-3) 0.25mH D.C.R. (1-2) and (4-3
Sumida
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PFC2831

TO-216

Abstract: BUF420AI Time Cross Over Time lc = 10A Vcc = 50V Vbs =- 5V Rbb=0.6£1 Vclaup = 400V lB:=1A L = 0.25mH 1 0.05 , =1A L = 0.25mH 1.5 0.04 0.07 fis US lis 2'4 358 r=J SCS-THOMSON BUF420/4201/420M - BUF420A/420AI/420AM , Time Fail Time Cross Over Time lc = 10A Vcc = 50V VBB=0 RBb=0.15Ì1 V clamp = 400V Ibi=1A L = 0.25mH Tj
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BUF420AI TO-216 D997 RC VOLTAGE CLAMP snubber circuit of 4A, 50V BRIDGE RECTIFIER rectifier bridge 300v 30a 10OKH 125CC 20A20 BUF42DA/420AI BUF42QAM

transistor BJ 102 131

Abstract: ysus US L c = 0.25mH < o o II o > o o < II Vclamp = 125 V l B = 1.1A RB2 =2.3Q See fig. 3 Vclamp = , 0.25mH See fig. 3 V cc = 100V lc = 11A V bb = 0 Lc = 0.25mH Vcc = 100V lc = 11A > o C D C D II R bj = 2.3£i T, = 100°C = 125V l B = 1-1A RB2 = 4.7Q See fig. 3 V c la m p ts tf tt L c = 0.25mH See
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transistor BJ 102 131 ysus transistor 11a TRANSISTOR BJ 131

BUW89

Abstract: BUW89 THOMSON V BB = -5V L C = 0.25mH Vc la mp = 90V I B = 1.5A R B2 = 1.7 o Tj =100 C 0.95 0.15 0.06 , Storage Time Fall T ime Tail T ime in Turn-on V CC = 72V I C = 15A V BB = 0 L C = 0.25mH V cla , ime Tail T ime in Turn-on V CC = 72V I C = 15A V BB = 0 L C = 0.25mH V cla mp = 90V I B =
STMicroelectronics
Original
BUW89 THOMSON HIGH POWER NPN SILICON TRANSISTOR

BUF420AI

Abstract: BUF420M 1A V c e (5 u s ) ts tf tc lc = 10A Vbb = - 5V Vctamp = 400V L = 0.25mH lc = 10A V bb = - , = 400V L = 0.25mH ns J1S ns ns ns V ts tf tc VcEW ts tf tc 1.5 0.04 0.07 ns ns ns , V oltage w itho u t S n u bb e r le = 10A < < E C D II o Vclamp = 400V L = 0.25mH le = 10A > o II
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1253C
Abstract: cc » 72V le = 15A V b b = -5V Lc = 0.25mH c!n < II Ib Tj =100°C 0.5 MS 2/3 , Test Conditions Vcc = 72V lc = 15A o II ffi ffl > Lc = 0.25mH Vcc = 72V CD CD Min. Typ. 1.4 0.7 -
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BUW90

Abstract: LE17 0-25mH Vcc= 100 V RB2 = 2-3!à T| = 100°C VB8-5V T, = 100°C 0-75 14 0-95 1-7 M-S (IS tfì Fall time , = 0-25mH T,= 100°C VCC=10V RB2 = 4-7(1 VBB = 0V Tj = 100°C 1-8 2-5 (IS (IS t(j Fall time 0-7 1-0
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LE17 D0DD207 1003C 10CTC
Abstract: 100V C Fall tim e Vc,amp= 1 2 5 V Lc = 0-25mH RB2 = 1 Tj â'" 100°C 009 0-17 0-2 , NEGATIVE BIAS t,; tf; Carrier storage tim e Vctamp* 1 2 B V Lc = 0-25mH VCC= 1 0 0 V Fall -
OCR Scan

etd 41

Abstract: 3A, 50V BRIDGE '" 5V Rbb=1.2£2 Vclamp = 400V Ibi=2A L = 0.25mH 1.9 0.06 0.12 us us us ts tf tc Storage Time Fall Time Cross Over Time lc=10A Vcc = 50V Vbb = â'" 5V RBB=1.2n Vclamp = 400V Ibt = 2A L = 0.25mH Tj = 100Â
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BUF41 BUF410 BUF410I BUF410AI etd 41 3A, 50V BRIDGE OA-41 3A, 50V BRIDGE rectifier NPN Transistor 15A 400V to3 400V switching transistor BUF410/41 OA/41 BUF41OA

hypot

Abstract: 1. Mechanical Dimensions: 0.098- o un un 0.030 Typ -0.490 Max- 10 XFADSL21 YYWW i 0.550 Max I T CL X à m o O O o m o o Tape -0.020 Typ ⡠-0.050 Typ i un rx m o o 0.098 Typ 2. Schematic: Chip Line 3 o 5 o o 6 0- 4 o 8 O- 3. Electrical Specifications: -o 2 -o g -o 10 ,025mH ±5% 300RHz, ,1V -10) 10.OuH Max 3000Hz, 0.1V OCL: (Pins 1- Leakage L: (Pins Short Pins 3-5-6-8, tie 2-9 Turns Ratio: (l-10):(3-8) 1CS:1CS±2% Tie 5-6&2-9 DC Res: (Pins 3-5) 0.500
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hypot 300RH 3000H 1500VAC XDADS021

TIC125

Abstract: 2N6925A = 0 Ade, f = 1 MHz) Cob - 500 Pf Delay Time IC = 10A IBI = 1A VBB = -5V RBB = 0.6Q LC=0.25mH VCLAMP
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2N6678 2N6921A 2N6923A 2N6924A 2N6925A MJ16018 TIC125 JO3020 aafa ic 921 transistor VCE 1000V SFT5925A

BUF420AW

Abstract: CC 50 R 06 3400V, VDM = 4500V, Tj = 125°C, CS = 3.0mF, LS = 0.25mH 180Tf = 73°C 60Hz1 1 VD = 3400V, IGM = 25A , 0.25mH VD = 24V, RL = 0.1, Tj = 25°C - V mA mA mA V/ms ms - - 30 ms - - - , -90DA - 50 VD = 3400V VDM = 4500V diGQ/dt = ­40A/ms 40 VRG = 17V CS = 3.0mF LS = 0.25mH 30 Tj , 17V CS = 3.0mF LS = 0.25mH Tj = 125°C 0 10 20 30 40 50 60 (A) (A /ms) - , 3.0mF LS = 0.25mH Tj = 125°C 300 200 100 0 0 (A) (A) 800 1000 900 800 700 600
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BUF420AW CC 50 R 06 transistor bb P025P

BUF420AW

Abstract: VD = 2250V, VDM = 4500V, Tj = 125°C, CS = 3.0mF, LS = 0.25mH 180Tf = 78°C 60Hz1 1 VD = 3400V, IGM , /ms, VRG = 17V, CS = 3.0mF, LS = 0.25mH VD = 24V, RL = 0.1, Tj = 25°C - - ms - - - , 0.25mH 20 Tj = 125°C tgq ts 15 10 5 500 1000 1500 2000 2500 3000 tgq ts , 3000A ts VRG = 17V CS = 3.0mF 5 LS = 0.25mH Tj = 125°C 10 0 0 10 20 30 40 50 60 70 80 , 17V CS = 3.0mF LS = 0.25mH 600 Tj = 125°C (A) (A) 1000 400 200 0 500 1000
STMicroelectronics
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BUF420AW

Abstract: RC VOLTAGE CLAMP snubber circuit 0.09 0.2 ns tt Tail Time in Turn-on Vbb = -5V Rb = 13Q 0.04 0.05 ns tc Crossover Time Lc = 0.25mH , 0.3 ns t. Tail Time in Turn-on VBB = -5V RB = 1 3Û 0.07 0.1 ns tc Crossover Time Lc = 0.25mH Tj , 0.7 ns tt Tail Time in Turn-on Vbb = 0 Rb = 4.7Q 0.28 ns Lc = 0.25mH ts Storage Time Vcc , = 0 Rb = 4.7Q 0.55 ns Lc = 0.25mH Tj =100°C * Pulsed: Pulse duration - 300 |xs, duty
STMicroelectronics
Original
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