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Part Manufacturer Description Datasheet BUY
325034 TE Connectivity Ltd TERMINAL,PIDG R 16-14 1/4 visit Digikey
32503 TE Connectivity Ltd TERMINAL,BUDG HK 16-14 8 visit Digikey
32501 TE Connectivity Ltd TERMINAL,BUDG SPD 26-22 0 visit Digikey
SN74ALVCH32501GKFR Texas Instruments ALVC/VCX/A SERIES, DUAL 18-BIT REGISTERED TRANSCEIVER, TRUE OUTPUT, PBGA114, PLASTIC, LFBGA-114 visit Texas Instruments
TPS73250DRBR Texas Instruments 5V FIXED POSITIVE LDO REGULATOR, 0.15V DROPOUT, PDSO8, 3 X 3 MM, PLASTIC, SON-8 visit Texas Instruments
TPS73250DBVRQ1 Texas Instruments 5V FIXED POSITIVE LDO REGULATOR, 0.15V DROPOUT, PDSO5, PLASTIC, SOT-23, 5 PIN visit Texas Instruments

IRF 3250

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: odel N um ber Vo ltage (VDC) Op.Voltage (VDC) A irF lo w (CFM) Static Pres. (mm-H20 , -61 12 6.0-13.8 41.60 3.30 32.50 3000 230 2.76 B,S P,M,U,X,Y 12 6.0-13.8 , 41.60 3.30 32.50 3000 140 3.36 B,S P,M,U,X,Y © FD8025B12W9-61 FD8025B24W7 -
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500VD 500VAC/ FD8025B12W3-61 FD8025B12W5-61 FD8025B12W7-61 FD8025B24W3-61

IRF 3250

Abstract: irf 1402 65.90 CRY — HCPL-3700 4.76 FSC 811 HFCT-5205D 230.00 AGT 792 FB180SA10 32.50 IRF — H12D4840D 71.00 CRY — , , Inc. IRF International Rectifier ONS ON Semiconductor XCR Xicor CRY Crydom Company INT Intersil PHI , -90 74.04 CRY — ERA83-006 0.52 COL 800 GA200SA60S 51.11 IRF — HA4875 66.23 CRY — HEDS-6100-B12 25.25 AGT — ERA84-009 0.49 COL 800 GA200SA60U 51.11 IRF — HA4890 69.12 CRY — HEDS-6540-B06 104.69 AGT — ERA91 , 813 HA60125 80.56 CRY — HFA06TB120 4.03 IRF — ERC81-006 1.28 COL — GBPC2506 3.21 GIS 813 HA6025 39.79
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HA3-2525-5 EFG13C FA57SA50LC H22B1 IRF 3250 irf 1402 IRf 334 irf 2117 EC350 G2-1B02-TT H23LTI HCTL-2016 EC350X G2-2A03-ST

IRF 930

Abstract: c«X US IP SF Vo ltage (VDC) M odel N um ber Op.Voltage (VDC) A irF lo w (CFM , 6.10 32.50 7,500 130 0.65 B,F P,M FD4010B05W7-84 ☠5 4.0-5.75 10.20 , 1.20 B,F P,M FD4010B12W5-84 ☠12 6.0-13.8 9.30 6.10 32.50 7,500
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IRF 930 FD4010B05W3-84 FD4010B05W5-84 FD4010B12W3-84 FD4010B12W7-84

irf 3250

Abstract: 2150 >80 >80 RF MHz 2200 2200 2200 2200 2200 2200 1100 734 550 440 4350 2175 1450 1088 870 6500 3250 2167 , desired signal produced by fLO = 2150 MHz and IRF = 2200 MHz. LO harmonics are referenced to the LO drive
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2150 irf 1244 SME1900-17 1-800-WJ1-4401

PJ 1429

Abstract: irf 3250 4.750 6.000 2.500 3.250 4.750 6.000 7.250 2.000 2.750 4.250 5.500 6.750 0.718 [18.24] 1.468 [37.29 , IR-2 B08 BH EB 200 IR-4 B08 BH EB 200 IRF-1 B08 BH EB 200 IRF-3 B08 BH EB 200 IRF-24 IRF-36 IRF-46 IHD-1 IHD-3 IHD-2 IHD-4 IHA-101 IHA-102 IHA
Vishay Dale
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PJ 1429 213/393 EZ 952 LT 5239 irf 0218 HL024 NHL024 HL035 NHL035 HL055 NHL055

LINEAR 339

Abstract: irf 3250 4 3250 Hz response referenced to 1 kHz response with BP = 1, other bits-=0 N L/L H1 H3 H2 0 0 0 0 , 1 1 1 3230 -0.1 -0.1 3250 +0.1 +0.1 3 16.1 ± 2 .0 14.2 ±1.5 12.6 ±1.5 9.1 ±1.0 3.6 ± 0.5 1.2+ 0.35 , section creates a peak in the response at 3250 Hz and this filter controls the amount of peaking. Table 2 , in Figure 5 There are 4 bandwidth select bits, B3-B0. This section causes the response of the 3250 Hz peak to be widened, and as a result, this filter controls the bandwidth of the 3250 Hz peaked region
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LINEAR 339 ML2021 ML2020 ML2003 ML2004 L2004 ML2021CP

IRF 3250

Abstract: telephone equalizer TYP NOTE 3 MAX UNITS 3250 Hz response referenced to 1kHz response with B P -1 , other bits- 0 H3 , 1 1 1 0 0 1 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 HO 0 1 0 0 0 I 1 1 1 1 1 1 3230 -0.1 -0.1 3250 +0.1 , 3250 Hz and this filter controls the amount of peaking. Table 2 gives typical 1kHz gain values for all , the 3250 Hz peak to be widened, and as a result, this filter controls the bandwidth of the 3250 Hz , (s + bl x k 2 + h s + M° 2] X b in farf/fcQ b (s + cl [s2 + ia iJQ ) s + < d 02] (irf/fc
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telephone equalizer M12004 ML20M I2021CP ML2021CS ML2021IP ML2021IS
Abstract: 0 0 0 2 .6 0 Referenced to 0 HR Response, Height Section 4 3250 H z , PK BW Peak Frequency 4 H3 thru H 0 -1 3230 3250 3270 Hz AC Absolute Gain , creates a peak in the response at 3250 Hz and this filter controls the amount of peaking. Table 2 gives , the 3250 Hz peak to be widened, and as a result, this filter controls the bandwidth of the 3250 H z , c (s + b) x [ s2 + h (q;0/Q) s + Mn2 | x [sin (irf/fc)] ~ b (s + c) [s^ + (qj0/Q) s + < u02 -
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L2021 022/D GT341 DD4443

ksd 302 250v, 10a

Abstract: irf 5630 . 37 3-2-20 IRF Data Register , . 68 3-2-50 CSR UserSpace Config Register , . 139 10-1-10 ITF or IRF transfer , . 139 10-1-10-2 IRF transmission , . 166 17-3 Isochronous Buffer (ITF/IRF
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ksd 302 250v, 10a irf 5630 transistor 2SB 367 bf199 IRF 3055 transistor ESM 2878 ZTX751 ZTX3866 2SD2182 2SD1642 2SC4489

MD8415B

Abstract: MD8415 Turn-off#2;energy#2;loss#2;per#2;pulse IC = 1600 A, VCE = 900 V, LS = 50 nH Tvj = 25°C VGE = ±15 V, du/dt = 3250 V/µs (Tvj = 150 , ,#2;Inverter#2;(SOA) IR#2;=#2;f(VR) Tvj#2;=#2;150°C 100 4000 ZthJC : Diode IR, Modul 3600 3200 2800 10
Fujifilm Microdevices
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MD8415B MD8415 MD8402 MD8404 MD8405 0x0004 fujifilm
Abstract: ¼‰ Turn-off#2;energy#2;loss#2;per#2;pulse IC = 1600 A, VCE = 900 V, LS = 50 nH Tvj = 25°C VGE = ±15 V, du/dt = 3250 V/µs (Tvj = 150 , ) ) IR#2;=#2;f(VR) Tvj#2;=#2;150°C 100 4000 ZthJC : Diode IR, Modul 3600 3200 Infineon Technologies
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FZ1600R17HP4
Abstract: 5 613 o . irf I O' â  IJ DR 125â'"16, HR 20â'"25 RR ER PH 1 ALUMINUM , 1 41 1 92 1 1 125 8X11.5 [ 3250 1 1 1 1 1 1 1 250 j 1.5 i 1 i i i j i Infineon Technologies
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irf 1820

Abstract: 25°C VGE = ±15 V, du/dt = 3250 V/µs (Tvj=150°C) Tvj = 125°C RGoff = 0,6 Tvj = 150°C VGE 15 V, VCC = , ,Inverter(SOA) IR=f(VR) Tvj=150°C 4000 IR, Modul 3600 3200 2800 2400 10 ZthJC [K/W] 1 IR [A] i: 1
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irf 1820 10X12 10X16 10X20 16X25 16X31 18X35

FZ1600R17HP4-B21

Abstract: FZ1600R17HP4_B21 2.842 3.267 3.3 3.333 â'¢ 3.250 3.3 3.350 v v v v v v v v v â , 75A at 25°C 59Aat 100°C IRF IRL3103S d 2p a k 0.014 56A at 25°C 40Aat 100°C IRF IRLZ44 TO-220 0.028 50A at 25°C 36A at 100°C Fuji 2SK1388 TO-220 0.037
Infineon Technologies
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FZ1600R17HP4-B21 FZ1600R17HP4_B21 E83335

50N03

Abstract: -2.8 (Note 4) · LTC1530CS8-3.3 (Note 4) · SmERR 1.871 2.475 2.462 2.772 2.758 3.267 3.250 1.6 Error , 150 IRF IRL3103S d 2p a k 0.014 56A at 25°C 40Aat 100°C 1600 1.8 175 IRF
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50N03 LTC1530 LTC1159 LTC1266 LTC1430A LTC1435 LTC1438

D0-3316P-152

Abstract: IRF 3250 CTC1F C2 CTC1F 08N CTC1F LAL03NA CTC2F ELEB CTC2F IRF-1 CTC2F LA4D1 CTC2F LAL03 CTC2F , AP0406 CTC3F LD3 CTC3F 1206 CTC3F LAL04NA CTC3F C4 CTC3F 15C CTC3F IRF-3 CTC3F IR-4 CTC3F
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D0-3316P-152 LTC1148 LTC1553 LTC1553L LTC1753

spw 080

Abstract: LEM3225 3.267 3.250 3.3 3.3 3.333 3.350 V V q 1.6 2 2.6 13.2 V 3.5 3.75 , 100°C 4025 1.0 150 IRF IRL3103S D2PAK 0.014 56A at 25°C 40A at 100°C 1600 1.8 175 IRF IRLZ44 TO-220 0.028 50A at 25°C 36A at 100°C 3300 1.0 175
CT Technologies
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spw 080 LEM3225 CL-2M2012-900JT TKS 0603 FBM3216HS800-T LAL04TB 0402R CT0402CSF 0402CS-P 0402CS PE-0402CD 0402AS

IRF 3250

Abstract: IRF 1630 12 SHDN FREQ P1 IRF 7700 24mOhm REF GND 8,9 +3V to -12V @ 0.6A D1 HRF 502A
Linear Technology
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IRF 1630 ls1n4148 LTC153033 q4580 CTX02-13198 LTC1530C

SONY APS 252 power supply

Abstract: 8 pin ic 9435A 2.660 3.000 3.000 3.000 3.000 3.000 3.250 3.500 3.500 3.500 3.870 4.000 4.000 4.750 5.000 5.000 5.250 , 2.000 2.000 2.000 2.250 2.500 2.500 2.750 3.000 3.000 3.000 3.000 3.250 3.500 3.500 4.000 4.000 4.000
Maxim Integrated Products
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SONY APS 252 power supply 8 pin ic 9435A SONY APS 283 SONY APS 252 IRF 9460 SONY APS 254 VP2-0216 16TPB47M FDS4672A IRF7468 MAX668 CDRH6D28-100
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