HIGH FREQUENCY WIRE WOUND TRANSFORMERS EP13 Platforms - SMT

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1 EP Platforms - SMT Power Range: up to 0W Height:.mm Max Footprint:.mm x.0mm Max Toplogy: Forward and Flyback PANL PANL PANL PANL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted.µh MAX (-) 0mΩ MAX (, -0, ) mω MAX (-) mω MAX K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (0,,, ) shorted.µh MAX (-) 0mΩ MAX (, -0, ) mω MAX (-) mω MAX K Factor. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted.µh MAX (-) 0mΩ MAX (, -0, ) mω MAX (-) mω MAX K Factor. Pri. Inductance (-) 0µH ±0% Lk. Inductance (-) with (0,,, ) shorted 0µH MAX (-) 0mΩ MAX (-0) mω MAX (-) 0mΩ MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. V-V V / 0mA V-V V / 0mA V-V V / 0mA V-V V / 0mA V /.A V /.A V /.A.V / W.. Output power is limited to W maximum total V / W power.pulseelectronics.com P.K (/)

2 EP Platforms - SMT PA0NL PANL PANL PANL PA0NL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted 0.µH MAX (-) 0mΩ MAX (, -0, ) mω MAX (-) 0mΩ MAX K Factor 0. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) 0mΩ MAX (, -, 0) mω MAX (-) 0mΩ MAX K Factor. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted 0.µH MAX (-) 00mΩ MAX (, -0, ).mω MAX (-) 0mΩ MAX K Factor 0. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted 0.µH MAX (-) 00mΩ MAX (, -0, ).mω MAX (-) 0mΩ MAX Hi-Pot Pri-Sec 00Vdc K Factor 0. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (0,,, ) shorted 0.µH MAX (-) mω MAX (, -0, ) 0mΩ MAX (-) 00mΩ MAX K Factor.0 V-V V / 0mA V-V V / 0mA... V-V. V / 0mA. V-V. V / 0mA V /.W.V / W.V / A V /.W V-0V V / 0mA..V /.A power.pulseelectronics.com P.K (/)

3 EP Platforms - SMT PANL PA0NL PANL PAANL PANL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (, -, ).µh ±0% Lk. Inductance (, -, ) with (0,,, ) shorted µh MAX (, -,) mω MAX (, ) mω MAX (-0) mω MAX K Factor.0 Pri. Inductance (, ) 0µH ±0% Lk. Inductance (, ) with (0,,, ) shorted.µh MAX (, ) mω MAX (, -0, ) mω MAX (-) mω MAX Hi-Pot Pri-Sec 0Vrms K Factor 0. Pri. Inductance (, ).µh ±0% Lk. Inductance (, ) with (0,,, ) shorted µh MAX (, ) mω MAX (, -0, ) mω MAX (-) mω MAX K Factor. Pri. Inductance (, ).µh ±0% Lk. Inductance (,) with (0,,, ) shorted μhω MAX (, ) mω MAX (, -0, ) mω MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. Pri. Inductance (, ) 0.µH ±0% Lk. Inductance (, ) with (0,,, ) shorted.µh MAX (, ) mω MAX (, -0, ).mω MAX (-) mω MAX K Factor. V-V V-V 0kHz V / 0mA V-V V / 0mA -V V / 0.A V / 0.A V /.A V / W.V, 0 ma V-V 00kHz 0V / 0mA 0., V, W 0,.V / A power.pulseelectronics.com P.K (/)

4 EP Platforms - SMT PANL PANL PANL PA00NL PA0NL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-) 0.µH ±0% Lk. Inductance (-) with (0,,, ) shorted.µh MAX (, ) mω MAX (-)=(-0) mω MAX (-) mω MAX K Factor. Pri. Inductance (, ).µh ±% Lk. Inductance (, ) with (0,,, ) shorted 0.µH MAX (, ) mω MAX (, -0, ).mω MAX (-) mω MAX K Factor. Pri. Inductance (, ).µh ±% Lk. Inductance (, ) with (0,,, ) shorted 0.µH MAX (, ) 0mΩ MAX (, -, 0) mω MAX (-) 0mΩ MAX K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) mω MAX (, -, 0).mΩ MAX (-) 0mΩ MAX Hi-Pot Pri-Sec 00Vdc K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) mω MAX (-) mω MAX (-0) mω MAX (-) 00mΩ MAX K Factor. V-V 00kHz 0V / 0mA V-0V V / 0mA V-V V / 0mA V-0V 0V / 0 ma V-V V /.A V /.A V /.A.V / W V /.A 0V / 0.0A. V /.W V /.W power.pulseelectronics.com P.K (/)

5 EP Platforms - SMT PANL PANL PA0NL PANL PANL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) 00mΩ MAX (-) mω MAX (-) 0mΩ MAX (-) mω MAX K Factor. Pri. Inductance (-).µh ±% Lk. Inductance (-) with (0,,,,, ) shorted µh MAX (-) 0mΩ MAX (, 0-, ) 0mΩ MAX (-) mω MAX K Factor. Pri. Inductance (, -, ) µh ±0% Lk. Inductance (, -, ) with (0,,, ) shorted 0.µH MAX (, -, ) 0mΩ MAX (, -0, ) 0.mΩ MAX K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) 0mΩ MAX (, -, 0).mΩ MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. Pri. Inductance (-) 0µH ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) mω MAX (, -0, ).mω MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. -V V-V 0V / 0.0A.0 0V, 0.0A.0. V, W V, W 0 V / W 0V-V 0kHz..V /.A V-0V 0V / 0mA V-V V / 0mA 0...V / W. V / W power.pulseelectronics.com P.K (/)

6 EP Platforms - SMT PANL PANL PANL PANL PANL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-) 00µH ±0% Lk. Inductance (-) with (0,,,, ) shorted 0.µH MAX (-) 0mΩ MAX (, -, 0) mω MAX (-) 0mΩ MAX K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (0,,,,, ) shorted 0.µH MAX (-) mω MAX (, 0-, ).mω MAX (-) mω MAX K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (,,, 0) shorted 0.µH MAX (-) mω MAX (, -, 0).mΩ MAX (-) mω MAX K Factor. Pri. Inductance (-) 0µH ±% Lk. Inductance (-) with (0,,,,, ) shorted 0.µH MAX (-) mω MAX (, -, 0).mΩ MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. Pri. Inductance (-).µh ±% Lk. Inductance (-) with (0,,,,, ) shorted 0.µH MAX (-) mω MAX (, -, 0).mΩ MAX (-) 0mΩ MAX Hi-Pot Pri-Sec 00Vdc K Factor. V-V 0kHz V /.A V / 0mA. V-V 0kHz. V / 0W 0V / 0.0A. V-V 0kHz V / A V / 0.0V. V-V 00kHz V / A V / 0mA. 0V-0V khz..v / A V / 0mA. power.pulseelectronics.com P.K (/)

7 EP Platforms - SMT PANL PANL PANL PANL PANL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-) with (-) shorted 0µH ±0% Lk. Inductance (-) with (-) and (-0) shorted µh MAX (-) mω MAX (-) mω MAX (-) mω MAX (-0) mω MAX K Factor 0. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (,,, 0) shorted 0.µH MAX (-) mω MAX (, -, 0).mΩ MAX (-) mω MAX K Factor. Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (,,, 0) shorted 0.µH MAX (-) mω MAX (, -, 0).mΩ MAX (-) mω MAX K Factor. Pri. Inductance (-) 00.µH ±0% Lk. Inductance (-) with (,,,,,, 0) shorted 0.µH MAX (-) 0mΩ MAX (, -, 0) 0mΩ MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (,,, 0) shorted 0.µH MAX (-) mω MAX (, -, 0).mΩ MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. -V- / -0V 0kHz V / 0mA V-V 0kHz V / 0.0A V-V 0kHz.. V / 0.0A. -V 00kHz V@0mA.0..V /.A.V /.A V /.A 0, V@.A,0 power.pulseelectronics.com P.K (/)

8 EP Platforms - SMT PANL PANL PANL PANL PANL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (,,, 0) shorted.µh MAX (-) mω MAX (-) mω MAX (-0) 0mΩ MAX (-) 0mΩ MAX K Factor. Pri. Inductance (-) 00µH ±0% Lk. Inductance (-) with (,,,,,, 0) shorted 0.µH MAX (-).mω MAX (, -, 0) mω MAX (-) mω MAX K Factor. Pri. Inductance (-) 00µH ±0% Lk. Inductance (-) with (,,, ) shorted µh MAX (-) 0mΩ MAX (-)=- (-) mω MAX (-) 00mΩ MAX Hi-Pot Pri-Sec 00Vrms K Factor. Pri. Inductance (-0) 0µH ±0% Lk. Inductance (-0) with (,,,,,,, ) shorted.µh MAX (-0) 0mΩ MAX (-)=(-).mω MAX (-) 0mΩ MAX (-) 0mΩ MAX Hi-Pot Pri-Sec 000Vdc K Factor 0. Pri. Inductance (-) 0µH ±0% Lk. Inductance (-) with (0,,, ) shorted µh MAX (-) 00mΩ MAX (-) 0mΩ MAX (-0) 0mΩ MAX (-) mω MAX Hi-Pot Pri-Sec 00Vdc K Factor. -V.0 V, 0.0A...V, 0.0A 0-V 0kHz V@mA -V khz V, 0.0A 0 -V 00kHz V,.0A.V,.0A 0, V@.0A,0 0.V, 0.0A (on -, short -) * Please note this part has an alternate pin-out. Please see note. -V 00kHz 0V, 0.0A.0.0.0,.,.V@0mA.V@mA.V@00mA 0V V, 0mA 0 V, A power.pulseelectronics.com P.K (/)

9 EP Platforms - SMT PANL PANL PANL PA0NL Electrical C - Operating Temperature -0 C to +0 C Pri. Inductance (-) µh ±0% Lk. Inductance (-) with (,,,,,,, 0) shorted 0.µH MAX (-) 00mΩ MAX (-)=(-) mω MAX (-0).mΩ MAX (-) mω MAX K Factor. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (,,,,, ) shorted 0.µH MAX (-) mω MAX (-) mω MAX (-) mω MAX (-) 0mΩ MAX K Factor 0. Pri. Inductance (-).µh ±0% Lk. Inductance (-) with (,,,,, ) shorted 0.µH MAX (-) 0mΩ MAX (-) mω MAX (-) mω MAX (-) mω MAX K Factor 0. Pri. Inductance (-) 00.µH ±0% Lk. Inductance (-) with (,,,,,, 0) shorted 0.µH MAX (-) mω MAX (, -, 0) 0mΩ MAX (-) 0mΩ MAX K Factor.0 -V 00kHz 0V, 0.0A V, 0.0A V khz.0.0.0v,.0a 0 V, 0.0A (on -, short -).0V,.0A 0V, 0.0A (on -, short -) * Please note this part has an alternate pin-out. Please see note. -V khz V, 0.0A..0.0V,.0A 0V, 0.0A (on -, short -) * Please note this part has an alternate pin-out. Please see note. power.pulseelectronics.com P.K (/)

10 EP Platforms - SMT Notes:. The temperature of the component (ambient plus temperature rise) must be within the stated operating temperature range.. The above transformers and inductors have been tested and approved by Pulse s power IC partners and are sited in the appropriate datasheet or evaluation board documentation at these companies. To determine which IC and IC partners are matched with the above Pulse part numbers please consult the IC Cross Reference on the Pulse website.. For flyback topology applications, it is necessary to ensure that the transformer will not saturate in the application. The peak flux density (Bpk) should remain below 00Gauss. To calculate the peak density, use the following formula: Bpk (Gauss) = K_Factor * Ipk (A). In high volt-sec applications, it is important to calculate the core loss of the transformer. Approximate transformer core loss can be calculated as:.. CoreLoss (W) =.E- * (Freq_kHz) * (ΔB_Gauss) where ΔB can be calculated as: For Flyback Topology: ΔB = K_Factor * (A) For Forward Topology: ΔB = K_Factor * Volt-µsec PAXXXXNL 0,00 MAX Mechanical. The standard pin-numbering for this package is indicated in the below mechanical drawing showing pin on the lower right corner and the numbers proceeding clock wise to pin 0 on the upper right corner. However, for those parts that are indicated as having an alternate pinout, pin is in the lower left corner and the numbers proceed counter-clockwise to pin 0 in the upper left corner.. Optional Tape & Reel packaging can be ordered by adding a T suffix to the part number (i.e. PANL becomes PANLT). Pulse complies with industry standard tape and reel specification EIA. The tape and reel for this product has a width (W=mm), pitch (Po=mm) an depth (Ko=.mm).. The NL suffix indicates an RoHS-compliant part number. Non-NL suffixed parts are not necessarily RoHS compliant, but are electrically and mechanically equivalent to NL versions. If a part number does not have the NL suffix, but an RoHS compliant version is required, please contact Pulse for availability. 0,00,0 0 X 0,0 ± 0,0 0 X, ± 0,0,0 0, MAX PAXXXXNL Date Code Country of Origin,,, MAX,00, MAX, MAX,0 MAX 0, 0 SURFACES For More Information Pulse Worldwide Pulse Europe Headquarters Pulse Electronics GmbH Innovation Drive Ste 00 Am Rottland San Diego, CA 0 Meinerzhagen U.S.A. Germany Pulse China Headquarters Pulse Electronics (ShenZhen) CO., LTD D0, Shenzhen Academy of Aerospace Technology, The 0th Keji South Road, Nanshan District, Shenzhen, P.R. China 0 Pulse North China Room 0/0 Super Ocean Finance Ctr. 0 Yan An Road West Shanghai 00 China Pulse South Asia Joo Seng Road #0-0 PM Industrial Bldg. Singapore Pulse North Asia F, No. Xiyuan Road Zhongli District Taoyuan City 0 Taiwan (R.O.C) Tel: 00 Fax: Tel: 00 Fax: Tel: Fax: 00 Tel: 00 Fax: Tel: Fax: Tel: Fax: 0 Performance warranty of products offered on this data sheet is limited to the parameters specified. Data is subject to change without notice. Other brand and product names mentioned herein may be trademarks or registered trademarks of their respective owners. Copyright, 0. Pulse Electronics, Inc. All rights reserved. power.pulseelectronics.com P.K (/)

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