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ETD49 Datasheet

Part Number ETD49
Manufacturers YUXIANG
Logo YUXIANG
Description EER CORES
Datasheet ETD49 DatasheetETD49 Datasheet (PDF)

EER42,ETD-core,EER-core,EER40,EER20,EER35,EER cores,EER28,EER30,EER34,EER43,EER45,EER50,ETD cores, www.DataSheet4U.com HOME PRODUCTS PROFILE CONTACT SITEMAP CATALOG p EER CORES ETD CORES Description of the “E” patterns The "E" patterns are sought that are easy to assemble, could be interleave to minimize gap effects, and would minimize waste. Since “E” cores have two open coil sides, they provide substantial room to bring high current lead wires out from the coil. It is easier to achie.

  ETD49   ETD49






Part Number ETD49-K-H-20P
Manufacturers FERYSTER
Logo FERYSTER
Description ETD Bobbins
Datasheet ETD49 DatasheetETD49-K-H-20P Datasheet (PDF)

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  ETD49   ETD49







Part Number ETD4435
Manufacturers Sumida Corporation
Logo Sumida Corporation
Description General Power Transformer
Datasheet ETD49 DatasheetETD4435 Datasheet (PDF)

General Power Transformer www.DataSheet4U.com Type: ETD4435 ◆ Product Description ・45.2×45.2mm Max.(L×W), 36.4mm Max. Height. ・In addition to the typical versions of parameters shown here, custom designs are available to meet your exact requirements. ◆ Feature ・Max. Operating frequency 500kHz,Max. Operating Power 180W (500kHz). ・Ideally used in Switching power supply etc. ・RoHS Compliance ◆ Dimensions (mm) MAX.45.2 MAX.36.4 4.3±0.5 9 φ1.0±0.2 30.7±0.9 MAX.45.2 5.0±0.3 .

  ETD49   ETD49







Part Number ETD44-K-V-18P
Manufacturers FERYSTER
Logo FERYSTER
Description ETD Bobbins
Datasheet ETD49 DatasheetETD44-K-V-18P Datasheet (PDF)

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  ETD49   ETD49







Part Number ETD44-K-V-16P
Manufacturers FERYSTER
Logo FERYSTER
Description ETD Bobbins
Datasheet ETD49 DatasheetETD44-K-V-16P Datasheet (PDF)

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  ETD49   ETD49







EER CORES

EER42,ETD-core,EER-core,EER40,EER20,EER35,EER cores,EER28,EER30,EER34,EER43,EER45,EER50,ETD cores, www.DataSheet4U.com HOME PRODUCTS PROFILE CONTACT SITEMAP CATALOG p EER CORES ETD CORES Description of the “E” patterns The "E" patterns are sought that are easy to assemble, could be interleave to minimize gap effects, and would minimize waste. Since “E” cores have two open coil sides, they provide substantial room to bring high current lead wires out from the coil. It is easier to achieve high voltage electrical isolation with an “E” core. In the typical “E” lamination, the center leg (one of three legs) is twice the width of either outer leg. In theory, magnetic flux flowing out of the center leg divides equally and flows into the outer two "E" core legs. Since the outer legs handle half the flux they only need to have half the cross-section that the center leg has. It is easier to achieve high voltage electrical isolation with an “E” core than with a pot core. Presentation of EER-core and ETD-core EER-core and ETD-core are examples of type “E” cores with round center legs. The combined cross section of the two outer legs of EER cores and ETD cores should equal or exceed that of the center leg. The core stack is a stack of laminations and the typical stack has core legs of rectangular cross-section. Typically the inductor or transformer coil is placed over the center core leg. To minimize winding resistance (hence also minimize winding losses) it is desirable to hav.


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