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740 02$aTransformer design for forward converters.<br />

740 02$aDiagonal half-bridge forward converters.<br />

740 02$aTransformer design for diagonal half-bridge forward converters.<br />

740 02$aHalf-bridge push-pull duty-ratio-controlled converters.<br />

740 02$aBridge converters.<br />

740 02$aLow-power self-oscillating auxiliary converters.<br />

740 02$aSingle-transformer two-transistor self-oscillating converters.<br />

740 02$aTwo-transformer self-oscillating converters.<br />

740 02$aDC-TO-DC Transformer concept.<br />

740 02$aMultiple-output compound regulating systems.<br />

740 02$aDuty-ratio-controlled push-pull converters.<br />

740 02$aDC-TO-DC switching regulators.<br />

740 02$aHigh-frequency saturable reactor power regulator (magnetic duty ratio control)<br />

740 02$aConstant-current power supplies.<br />

740 02$aVariable linear power supplies.<br />

740 02$aSwitchmode variable power supplies.<br />

740 02$aSwitchmode variable power supply transformer design.<br />

740 02$aInductors and chokes in switchmode supplies.<br />

740 02$aHigh-current chokes using iron powder cores.<br />

740 02$aChoke design using iron powder toroidal cores.<br />

740 02$aSwitchmode transformer design (general principles)<br />

740 02$aOptimum 150-W transformer design example using nomograms.<br />

740 02$aTransformer staircase saturation.<br />

740 02$aFlux doubling.<br />

740 02$aStability and control-loop compensation in SMPS.<br />

740 02$aRight-half-plane zero.<br />

740 02$aCurrent-mode control.<br />

740 02$aOptocouplers.<br />

740 02$aRipple current ratings for electrolytic capacitors.<br />

740 02$aNoninductive current shunts.<br />

740 02$aCurrent transformers.<br />

740 02$aCurrent probes for measurement purposes.<br />

740 02$aThermal management in switchmode power supplies.<br />

740 02$aActive power factor correction.<br />

740 02$aMerits and limitations of hard switching and fully resonant switchmode power supplies.<br />

740 02$aQuasi-resonant switching converters.<br />

740 02$aFully resonant self-oscillating current fed FET type sine wave inverter.<br />

740 02$aSingle control wide range sine wave oscillator.<br />

830 0$a<strong>McGraw</strong>-<strong>Hill</strong>'s AccessEngineering.<br />

856 40$uhttp://access<strong>eng</strong>ineeringlibrary.com/browse/switchmode-power-supply-handbook-thirdedition$zSubscription<br />

required<br />

949 $aTK 7881.15 .B55 2011$wLC$c1$i336704-1<strong>001</strong>$d1/2/2012$lMAIN$mMGH$q2$rY$sY$tWEB$u7/14/2011$xENG<br />

997 $a(c)2011 Cassidy Cataloguing Services, Inc.<br />

000 06120cam 2201165 a 4500<br />

<strong>001</strong> ccn00336913<br />

006 m f d<br />

007 cr cn ---<strong>uuauu</strong><br />

<strong>008</strong> 110718s2011 <strong>nyua</strong> <strong>fob</strong> <strong>001</strong> 0 <strong>eng</strong> d<br />

010 $z 2011<strong>001</strong>901<br />

020 $a0071776249<br />

020 $z9780071609012 (print)<br />

020 $z0071609016 (print)<br />

035 $a(Sirsi) a336913<br />

050 4$aTA1695.5$b.H55 2011<br />

082 04$a621.36/6$222<br />

245 00$aHigh-power laser handbook$h[electronic resource] /$c[Hagop Injeyan, Gregory D. Goodno,<br />

editors].<br />

246 1 $iPrint version has title:$aHigh power laser handbook<br />

260 $aNew York :$b<strong>McGraw</strong>-<strong>Hill</strong>,$c[2011]<br />

300 $a1 electronic text (xxiv, 591 p.) :$bill. (chiefly col.).<br />

490 1 $a<strong>McGraw</strong>-<strong>Hill</strong>'s AccessEngineering<br />

588 $aDescription based on cover image and table of contents, viewed on July 18, 2011.<br />

500 $aPrint version c2011.<br />

520 $a"In-depth details on kilowatt level high-power lasers and their commercial, industrial, and<br />

military applications. High power laser handbook introduces the physics and <strong>eng</strong>ineering of

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