LPE-6855 Vishay Dale Surface Mount Transformers/Inductors, Gapped and Ungapped, Custom Configurations Available FEATURES • Compliant to RoHS directive 2002/95/EC ELECTRICAL SPECIFICATIONS (Multiple winds are connected in parallel) Inductance Range: 10 μH to 150 000 μH, measured at 0.10 VRMS at 10 kHz without DC current, using an HP 4263A or HP 4284A impedance analyzer DC Resistance Range: 0.02 to 46.2 , measured at + 25 °C ± 5 °C Rated Current Range: 3.20 A to 0.17 A Dielectric Withstanding Voltage: 500 VRMS, 60 Hz, 5 s STANDARD ELECTRICAL SPECIFICATIONS GAPPED MODELS (B) UNGAPPED MODELS (A) SATURATING CURRENT IND. IND. SCHEMATIC DCR MAX. MAX. RATED DC CURRENT (A) (2) MODEL (μH) TOL. LETTER () (A) (1) LPE6855ER151NU 150 ± 30 % A 0.28 0.84 N/A LPE6855ER221NU 220 ± 30 % A 0.34 0.76 N/A LPE6855ER331NU 330 ± 30 % A 0.41 0.69 N/A LPE6855ER471NU 470 ± 30 % A 0.49 0.63 N/A LPE6855ER681NU 680 ± 30 % A 0.59 0.57 N/A LPE6855ER102NU 1000 ± 30 % A 0.72 0.52 N/A LPE6855ER152NU 1500 ± 30 % A 0.88 0.47 N/A LPE6855ER222NU 2200 ± 30 % A 1.07 0.43 N/A LPE6855ER332NU 3300 ± 30 % A 1.31 0.39 N/A LPE6855ER472NU 4700 ± 30 % A 1.56 0.35 N/A LPE6855ER682NU 6800 ± 30 % A 1.88 0.32 N/A LPE6855ER103NU 10 000 ± 30 % A 7.17 0.16 N/A LPE6855ER153NU 15 000 ± 30 % A 8.78 0.15 N/A LPE6855ER223NU 22 000 ± 30 % A 10.6 0.14 N/A LPE6855ER333NU 33 000 ± 30 % A 13.0 0.12 N/A LPE6855ER473NU 47 000 ± 30 % A 15.5 0.11 N/A LPE6855ER683NU 68 000 ± 30 % A 18.7 0.10 N/A LPE6855ER104NU 100 000 ± 30 % A 37.7 0.07 N/A LPE6855ER154NU 150 000 ± 30 % A 46.2 0.06 N/A LPE6855ER100MG 10 ± 20 % B 0.02 3.21 3.375 LPE6855ER150MG 15 ± 20 % B 0.03 2.90 2.790 LPE6855ER220MG 22 ± 20 % B 0.04 2.64 2.325 LPE6855ER330MG 33 ± 20 % B 0.05 2.12 1.910 LPE6855ER470MG 47 ± 20 % B 0.08 1.73 1.610 LPE6855ER680MG 68 ± 20 % B 0.12 1.41 1.350 LPE6855ER101MG 100 ± 20 % B 0.15 1.28 1.120 LPE6855ER151MG 150 ± 20 % C 0.23 1.02 0.915 LPE6855ER221MG 220 ± 20 % D 0.35 0.83 0.757 LPE6855ER331MG 330 ± 20 % D 0.55 0.67 0.620 LPE6855ER471MG 470 ± 20 % D 0.82 0.54 0.520 LPE6855ER681MG 680 ± 20 % E 1.23 0.45 0.433 LPE6855ER102MG 1000 ± 20 % E 1.89 0.36 0.358 LPE6855ER152MG 1500 ± 20 % E 2.90 0.29 0.292 LPE6855ER222MG 2200 ± 20 % E 4.50 0.23 0.242 LPE6855ER332MG 3300 ± 20 % E 5.50 0.21 0.197 LPE6855ER472MG 4700 ± 20 % E 8.30 0.17 0.166 Notes (1) DC current that will create a maximum temperature rise of 30 °C when applied at + 25 °C ambient. (2) DC current that will typically reduce the initial inductance by 20 %. • UNGAPPED MODELS: Highest possible inductance with the lowest DCR and highest Q capability. Beneficial in filter, impedance matching and line coupling devices. GAPPED MODELS: Capable of handling large amounts of DC current, tighter inductance tolerance with better temperature stability than ungapped models. Beneficial in DC/DC converters or other circuits carrying DC currents or requiring inductance stability over a temperature range. DESCRIPTION LPE 6855 MODEL SIZE 1000 μH INDUCTANCE VALUE ± 30 % INDUCTANCE TOLERANCE A CORE ER PACKAGE CODE e2 JEDEC LEAD (Pb)-FREE STANDARD GLOBAL PART NUMBER L P E PRODUCT FAMILY 6 8 5 SIZE 5 E R PACKAGE CODE 1 0 2 INDUCTANCE VALUE N U TOL. CORE Note • Series is also available with SnPb terminations by using package code RY for tape and reel (in place of ER) or SM for bulk (in place of EB). Document Number: 34067 Revision: 10-Oct-08 For technical questions, contact: [email protected] www.vishay.com 199 LPE-6855 Surface Mount Transformers/Inductors, Gapped and Ungapped, Custom Configurations Available Vishay Dale DIMENSIONS in inches [millimeters] SCHEMATIC (top view) 0.079 [2.01] 0.045 [1.14] Typical 3 places 0.593 [15.06] 0.638 [16.21] Reference Only 4 0.555 [14.10] 1 Max. 8 Schematic C 5 4 5 4 5 4 6 3 6 3 6 3 7 2 7 2 7 2 8 1 8 1 8 1 Schematic D Dimensional Outline 5 Schematic B Schematic A 0.045 [1.14] Pad Dimensions Typical, 8 places Pad Layout Schematic E 5 4 5 4 6 3 6 3 7 2 7 2 8 1 8 1 Note • Schematic A is for ungapped LPE series Clip Opening Opposite Pin 1 ENVIRONMENTAL PERFORMANCE 0.220 [5.59] Max. 0.690 [17.53] Max. 0.618 [15.70] 0.028 [0.71] 0.079 [2.01] Typ. 0.028 [0.71] Foot Print Diagram TEST CONDITIONS Thermal Cycling Withstands - 55 °C to + 125 °C Operating Temperature - 55 °C to + 125 °C (1) High Humidity 85 % Soldering Heat Tested to + 230 °C Mechanical Shock Per MIL-STD-202, method 213 (100G) Vibration Per MIL-STD-202, method 204 (20G) Solderability Per industry standards Note (1) Must be checked in end use application PART MARKING Notes • Pad layout guidelines per MIL-STD-275E (printed wiring for electronic equipment). • Tolerances: xx ± 0.01" [± 0.25 mm]; xxx ± 0.005" [± 0.12 mm]. - Vishay Dale - Date code - Marking code (suffix of model #) - Pin 1 indicator PACKAGING TAPE SPECIFICATIONS: Carrier Tape Type: Conductive Cover Tape Type: Anti-static Cover Tape Adhesion to Carrier: 40 g ± 30 g REEL SPECIFICATIONS: Diameter (flange): 13" [330.2 mm] Maximum Width (over flanges): 1.197" [30.4 mm] STANDARDS: All embossed carrier tape packaging will be accomplished in compliance with latest revision of EIA-481 “Taping of Surface Mount Components for Automatic Placement”. TAPE COMPONENT UNITS PER 13" MODEL WIDTH PITCH REEL LPE-6855 32 mm 20 mm 450 Tape and Reel Orientation Pin 1 Indicator Cover Tape Carrier Tape Embossed Cavity Label Area USER DIRECTION OF FEED Note • Top view shown with cover tape removed www.vishay.com 200 For technical questions, contact: [email protected] Document Number: 34067 Revision: 10-Oct-08 Legal Disclaimer Notice www.vishay.com Vishay Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. 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Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners. © 2017 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED Revision: 08-Feb-17 1 Document Number: 91000