LMax SMD Power Inductor LMXN Series Non-Shielded Style B FEATURES CHARACTERISTICS Miniature surface mount design Saturation Rated Current:The current when the inductance becomes 30% lower than its initial value. (Ta=25C) High power, High saturation inductors Operating temperature range: -40 ~ 85C Very low resistance Maximum power density Ideal inductors for DCDC converters INDUCTANCE AND RATED Available on tape and reel for auto surface mounting CURRENT RANGES 0705 0.47H ~ 22.0H 7.7 ~ 0.70A APPLICATIONS 0.56H ~ 100H 0906 7.7 ~ 0.53A Notebook Computers 0.47H ~ 100H 1310 11.4 ~ 0.95A Handheld Communications 0.47H ~ 100H 1913 25.1 ~ 1.80A LCD Televisions 0.78H ~ 470H 2216 30.0 ~ 0.8A Power Supply For VTRs Electrical specifications at 25C DC/DC Converters, etc. DIMENSIONS I J I A C PAD 100 4R7 E B H LAYOUT D mm (inches) Type A max. B max. C max. D E H I J 7.50 5.20 3.20 4.60 2.50 4.00 2.00 4.00 0705 (0.295) (0.205) (0.126) (0.181) (0.098) (0.157) (0.079) (0.157) 8.89 6.40 5.00 5.84 2.60 4.06 2.00 5.08 0906 (0.350) (0.252) (0.197) (0.230) (0.103) (0.160) (0.079) (0.200) 13.20 9.90 6.35 9.50 4.50 6.50 2.30 9.00 1310 (0.560) (0.390) (0.250) (0.374) (0.177) (0.256) (0.091) (0.344) 19.40 13.30 6.80 12.7 6.60 8.00 3.80 11.7 1913 (0.764) (0.524) (0.268) (0.500) (0.260) (0.315) (0.150) (0.460) 22.35 16.26 8.00 16.0 8.00 8.64 4.30 14.35 2216 (0.880) (0.604) (0.315) (0.630) (0.315) (0.340) (0.169) (0.565) HOW TO ORDER LM XN 0705 M R04 B T A S Family Series Size Tolerance Inductance Style Termination Special Packaging LM = Power Inductor XN = Non-Shielded 0705 = 7x5xh M = 20% R04 = 0.039H T = Sn Plate A = Standard S = 13 Reel (h = see catalog) P = +40% R39 = 0.390H 20% 3R9 = 3.900H 390 = 39.00H 391 = 390.0H 392 = 3900H 2LMax SMD Power Inductor LMXN Series Non-Shielded Style B ELECTRICAL CHARACTERISTICS 0705/0906/1310/1913/2216 Tolerance DCR () max. I sat (A) max* L Test Codes 0906 1310 (H) 705 Condition 0705 0906 1310 1913 2216 0705 0906 1310 1913 2216 2216 1913 R47 0.47 P P 100KHz, 0.1V 0.025 0.005 0.003 7.7 11.4 25.1 R56 0.56 M 100KHz, 0.1V 0.010 7.7 R78 0.78 M 100KHz, 0.1V 0.003 30 1R0 1.0 M P 100KHz, 0.1V 0.050 0.006 0.004 2.9 9.9 15.3 1R5 1.5 M M P 100KHz, 0.1V 0.050 0.008 0.006 0.004 2.6 7.9 12 25 2R2 2.2 M M M 100KHz, 0.1V 0.070 0.035 0.011 0.008 0.006 2.3 3.5 6.1 10.2 20 3R3 3.3 M M M 100KHz, 0.1V 0.080 0.040 0.014 0.009 0.009 2 3 5.1 9.3 17 3R9 3.9 M 100KHz, 0.1V 0.010 15 4R7 4.7 M M M 100KHz, 0.1V 0.090 0.054 0.018 0.012 0.014 1.5 2.6 4.2 7.7 13 6R0 6.0 M 100KHz, 0.1V 0.017 12 6R8 6.8 M M M 100KHz, 0.1V 0.130 0.08 0.027 0.019 1.2 2.2 3.6 6.2 7R8 7.8 M 100KHz, 0.1V 0.018 11 100 10 M M M 100KHz, 0.1V 0.160 0.111 0.038 0.027 0.026 1.1 1.9 3.3 5.2 10 150 15 M M M 100KHz, 0.1V 0.230 0.170 0.045 0.032 0.032 0.9 1.5 2.4 4.3 8 220 22 M M M 100KHz, 0.1V 0.370 0.250 0.070 0.050 0.043 0.7 1.2 2 3.7 7 330 33 M M 100KHz, 0.1V 0.350 0.100 0.069 0.066 0.99 1.7 3 6 470 47 M M 100KHz, 0.1V 0.470 0.150 0.109 0.096 0.87 1.4 2.4 5 680 68 M M 100KHz, 0.1V 0.730 0.220 0.156 0.115 0.68 1.2 2 4 101 100 M M 100KHz, 0.1V 1.110 0.280 0.206 0.165 0.53 0.95 1.8 3 221 220 M 100KHz, 0.1V 0.396 2.4 331 330 M 100KHz, 0.1V 0.588 1 471 470 M 100KHz, 0.1V 0.950 0.8 *Saturation Current:The current when the inductance becomes 30% lower than its initial value. (Ta=25C) 3