SRW42EC
Abstract: ferrite core transformer calculation formula how to calculate ferrite core transformer SRW13EPC srw13ep SRW16ES4-H SRW16ES srw19epc SRW19ES SRW2820ED-3
Text: 6355_SRW 1/15 Transformers SRW Series For Power Supply Pin Terminal (General Transformers, Barrierless Transformer ) GENERAL TRANSFORMERS, BARRIERLESS TRANSFORMER® The SRW series transformer for switching power supplies utilizes ferrite materials, which makes it possible to achieve an incredibly
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Untitled
Abstract: No abstract text available
Text: Document 457 Flyback Transformer For Maxim MAX5941A PoE Interface/PWM Controller • Dual-output continuous-current flyback transformer • Operates with 32 – 56 Volts input • 1500 Vrms isolation between the primary and the secondary Core material Ferrite
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MAX5941A
C1154-B
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C1154-BLD
Abstract: 12 pin flyback transformer C1154 Coilcraft C1154-B FERRITE flyback MAX5941A SR-332
Text: Document 457 Flyback Transformer For Maxim MAX5941A PoE Interface/PWM Controller • Dual-output continuous-current flyback transformer • Operates with 18 – 72 Volts input • 1500 Vrms isolation between the primary and the secondary Core material Ferrite
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MAX5941A
C1154-B
C1154-BLD
12 pin flyback transformer
C1154
Coilcraft C1154-B
FERRITE flyback
MAX5941A
SR-332
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UCC28600
Abstract: FERRITE flyback HA4018-AL SR-332 12 pin flyback transformer HA-401
Text: Document 724 Flyback Transformer For Texas Instruments UCC28600 Flyback Green Mode Controller • Triple-output flyback transformer • Designed to operate at 50 kHz with universal ac input • 3000 Vrms isolation from primary and bias to secondaries Core material Ferrite
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UCC28600
UCC28600
FERRITE flyback
HA4018-AL
SR-332
12 pin flyback transformer
HA-401
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GA3271-ALD
Abstract: MAX5941B SR-332
Text: Document 629 Flyback Transformer For Maxim MAX5941B PWM Controller • Flyback transformer for 13 W PoE applications • Designed to operate with 30 – 60 V input at 275 kHz • 1500 Vrms isolation from primary to secondary windings Core material Ferrite
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MAX5941B
GA3271-AL
GA3271-ALD
MAX5941B
SR-332
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E19 CORE TRANSFORMER
Abstract: 50CS400 transformer ETD34 design CORE N67 ETD49 E55 ferrite core FERRITE TRANSFORMER etd34 EI114 transformer e19 smd transistor e42 ferrite core Etd44
Text: Tianjin Huigao Magnetics Co., Ltd 6# Taishan Rd. Hexi District. Tianjin China Tel: +86 22 28250366 Fax:+86 22 28306117 www.huigao-magnetics.com High Frequency Transformers Ferrite Core The selection of the ferrite core type for a specific transformer depends on the design parameters and
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P11/7;
P14/8
EFD15
ETD29;
EFD20
ETD34;
EFD25
ETD39;
E19 CORE TRANSFORMER
50CS400
transformer ETD34 design
CORE N67 ETD49
E55 ferrite core
FERRITE TRANSFORMER etd34
EI114
transformer e19
smd transistor e42
ferrite core Etd44
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BE-5-916F
Abstract: EE ferrite core FERRITE core ee TRANSFORMER FERRITE TRANSFORMER ee Bobbin EE 19 EE ferrite BE-5-926F EE8 FERRITE TRANSFORMER smd transistor 6Z transistor smd 6z
Text: Ferrite Cores EE, ER, EEM Series For Power Supply and Signal Transformer Thin Ferrite Cores for SMD Transformers 2B F 2B Fig. 1 F 2B Fig. 2 Type Fig. EE5 EE8.9/8 ER9.5/5 ER11/3.9 ER11/5 ER14.5/6 EEM12.7/13.7 1 1 2 2 2 2 3 Dimensions mm A 2B 5.25±0.05 5.3±0.1
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ER11/3
ER11/5
EEM12
5/5-118GA
BER11/3
9-1110G
BER11/5-1110GA
BER14
5/6-1110GA
BEM12
BE-5-916F
EE ferrite core
FERRITE core ee TRANSFORMER
FERRITE TRANSFORMER ee
Bobbin EE 19
EE ferrite
BE-5-926F
EE8 FERRITE TRANSFORMER
smd transistor 6Z
transistor smd 6z
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N30 transformer core
Abstract: ferrite core geometry ferrite core transformer design FERRITES T44 n30 transformer ferrite N30 hysteresis magnetic loops N26 core transformer material n26
Text: Jürgen Hess New ferrite materials and core shapes for broadband transformer design Broadband transformers, in contrast with power transformers, operate with very narrow dynamic ranges. They generally handle sinusoidal signals with a broad energy distribution
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Abstract: No abstract text available
Text: Document 890 Flyback Transformer – KA4947-AE • HarvesterEvaluationKit • Excellentcouplingcoeficient k=0.95 • Smallfootprint Core material Ferrite
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KA4947-AE
CBC-EVAL-09à
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KA49
Abstract: No abstract text available
Text: Document 890 Flyback Transformer – KA4947-AE • Developed for the Cymbet CBC-EVAL-09 Universal Energy Harvester Evaluation Kit • Excellent coupling coefficient k = 0.95 • Small footprint Core material Ferrite Environmental RoHS compliant, halogen free
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KA4947-AE
CBC-EVAL-09
KA49
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UCD30xx
Abstract: PR796 Telcordia SR-332 SR-332 GA3550-BL
Text: Document 765 Gate Drive Transformer For use with TI UCD30xx Digital Power Controllers • Selected by Texas Instruments for their PR796 and PR841 evaluation boards. • Isolation: 3000 Vrms primaries to secondary; 500 Vrms windings to core Core material Ferrite
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UCD30xx
PR796
PR841
SR-332
GA3550-BLD
EIA-481
UCD30xx
Telcordia SR-332
SR-332
GA3550-BL
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C1099-A
Abstract: C1099-ALD MAX5941A SR-332
Text: Document 409 Flyback Transformer For Maxim MAX5941A PoE Interface/PWM Controller • Designed for IEEE 802.3af-compliant PoE applications • Operates with 32 – 56 Volts input • 1500 Vrms isolation between the primary and the secondary Core material Ferrite
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MAX5941A
C1099-A
C1099-A
C1099-ALD
MAX5941A
SR-332
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DA2362-AL
Abstract: DA2362 DA2362-ALD MC34670 SR-332
Text: Document 563 Flyback Transformer For Freescale Semiconductor MC34670 PD Interface • Designed for 13 W IEEE 802.3af-compliant PoE applications • Operates with 36 – 80 Volts input • 1500 Vrms isolation between the primary and the secondary Core material Ferrite
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MC34670
DA2362-AL
DA2362
DA2362-ALD
SR-332
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Untitled
Abstract: No abstract text available
Text: Document 379-1 PoE Transformer For Maxim MAX5941B PoE Interface/PWM Controller • Designedforforwardtopology • Operatesat275kHz,ata50%dutycycle Core material Ferrite Terminations RoHS tin-silver over tin over nickel over phos bronze.
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MAX5941B
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EF25 transformer
Abstract: etd39 core type smps full bridge transformer design Nyleze AN-16 topswitch EF20 TRANSFORMER epoxylite 203 TDK EF25 EPOXYLITE 814 EE19 TDK Ferrite Core PC40 EFD20 TDK Ferrite Core PC40
Text: TOPSwitch Flyback Transformer Construction Guide ® Application Note AN-18 Introduction Ferrite Core Manufacturer’s Catalogs This application note is a design and construction guide for margin wound or triple insulated wire wound flyback transformers suitable for use with TOPSwitch. Margin wound
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AN-18
AN-16.
EF25 transformer
etd39 core type smps full bridge transformer design
Nyleze
AN-16 topswitch
EF20 TRANSFORMER
epoxylite 203
TDK EF25
EPOXYLITE 814
EE19 TDK Ferrite Core PC40
EFD20 TDK Ferrite Core PC40
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BEPC-13-1110CPH
Abstract: FEPC-10-A FEPC-13-A BEPC-13-1110GA BEPC-30-1112CPH PC44EPC17-Z BEPC-17-1110CPH FEPC-25-A FEPC-19-A BEPC-19-1111CPH
Text: EPC-13_TDK.pdf Ferrite Cores EPC Series For Power Supply and Signal Transformer EPC Cores C2 C CORE SHAPES AND DIMENSIONS/CHARACTERISTICS C1 A D U.S.PAT.4,760,366 EP.PAT.245,083 DE,FR,GB,NL KS.UM50,836 TW.UM39,406 JP.PENDING C1 C2 C Fig.1 D A Type Fig. EPC10
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EPC-13
EPC10
EPC13
EPC17
EPC19
EPC25
EPC25B
EPC27
EPC27N
EPC30
BEPC-13-1110CPH
FEPC-10-A
FEPC-13-A
BEPC-13-1110GA
BEPC-30-1112CPH
PC44EPC17-Z
BEPC-17-1110CPH
FEPC-25-A
FEPC-19-A
BEPC-19-1111CPH
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BEPC-13-1110CPH
Abstract: PC44EPC17 FEPC-19-A fepc30 EPC TRANSFORMER epc13 FEPC-17-A EPC19 BEPC-30-1112CPH BEPC-25B-1111G
Text: Ferrite Cores EPC Series For Power Supply and Signal Transformer EPC Cores C2 C CORE SHAPES AND DIMENSIONS/CHARACTERISTICS C1 A D U.S.PAT.4,760,366 EP.PAT.245,083 DE,FR,GB,NL KS.UM50,836 TW.UM39,406 JP.PENDING C1 C2 C Fig.1 D A Type Fig. EPC10 EPC13 EPC17
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EPC10
EPC13
EPC17
EPC19
EPC25
EPC25B
EPC27
EPC27N
EPC30
FEPC-10-A
BEPC-13-1110CPH
PC44EPC17
FEPC-19-A
fepc30
EPC TRANSFORMER
epc13
FEPC-17-A
EPC19
BEPC-30-1112CPH
BEPC-25B-1111G
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1812DPS-473MLC
Abstract: SR-332
Text: Document 248-1 1812DPS Coupled Inductors for xDSL • Coupled inductor optimized for xDSL filtering applications • Can be used as a common mode choke, 1:1 transformer or in SEPIC applications Core material Ferrite Terminations RoHS compliant gold over nickel over moly-manganese.
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1812DPS
1812DPS-473MLC
SR-332
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WBC1-1TL
Abstract: WBC16-1T WBC16-1TL WBC4 WBC2-1TL
Text: Document 424 -1 SMTMiniWidebandTransformers –WBC • Smallest wideband transformer: 4 mm square 3 mm high • 300 V interwinding isolation, 1/4 Watt RF input power • 250 mA max current rating. Designer’s Kit C393 contains three of each part Core material Ferrite
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WBC16-1T
WBC4-14
WBC1-1TL
WBC16-1TL
WBC4
WBC2-1TL
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FERRITE TRANSFORMER
Abstract: B0863-B B0863-BLD MAX5941B SR-332 Telcordia SR-332
Text: Document 379-1 PoE Transformer For Maxim MAX5941B PoE Interface/PWM Controller • Designed for forward topology • Operates at 275 kHz, at a 50% duty cycle Core material Ferrite Terminations RoHS tin-silver over tin over nickel over phos bronze. Other terminations available at additional cost.
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MAX5941B
B0863-B
FERRITE TRANSFORMER
B0863-B
B0863-BLD
MAX5941B
SR-332
Telcordia SR-332
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WBC1-1TL
Abstract: WBC4-6TLB WBC2-1TLB WBC4-1WLB WBC1 C393 SR-332 WBC1-1L WBC3 WBC8-1LB
Text: Document 424 -1 SMT Mini Wideband Transformers • Smallest wideband transformer: 4 mm square 3 mm high • 300 V interwinding isolation, 1/4 Watt RF input power • 250 mA max current rating. Designer’s Kit C393 contains three of each part Core material Ferrite
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FERRITE flyback
Abstract: AN-1430 DA2383-ALD LM5071 SR-332
Text: Document 523 Flyback Transformer For National Semiconductor LM5071 PoE PD Controller • Designed to operate in continuous mode at 250 kHz • NSC App Note AN-1430 specifies 84% efficiency at 3 A. • 1500 Vrms isolation from primary and aux to secondary Core material Ferrite
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LM5071
AN-1430
FERRITE flyback
DA2383-ALD
SR-332
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SRF 3662
Abstract: SLC7530
Text: Document 366-1 SMT Power Inductors - SLC7530 Series • Designed for high-speed switch mode applications • Can be used as a 1:1 transformer or in SEPIC applications Designer’s Kit C379 contains 3 each of all values. Core material Ferrite Core and winding loss See www.coilcraft.com/coreloss
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SLC7530
SRF 3662
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SR-332
Abstract: GA3502-BL
Text: Document 708 Flyback Transformer • • • • For Maxim Off-Line LED Driver Designed for PWM Dimming of High-Brightness LEDs Bias winding output: 18 V, 20 mA 400 V input; 110 V, 0.4 A output 1500 Vrms primary and bias to secondary isolation Core material Ferrite
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