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? llm2520 (previous name fslm2520) inductance range: 0.1~220 h (e-12) ? wire-wound miniature chip inductor most suitable for surface mount. ? it is recommended for wide general use for signal conditioning in a variety of electronic equipment. ? low profile 1.7mm max height. (1.6mm typ.) ? wide inductance range from 0.1 to 220 h. ? superior solderability and high heat-resistance for reflow soldering. ? excellent environmental and mechanical stability. ? rohs compliant. ? ?w? ? nz ???????? ? ??;+w ?? rg;q`oz??w ,=z? s? ?w0 t7& ? ? 1.7mm max. (1.6mm typ.) ? 0.1 ? 220 h ?pw ??m?????? c? ? ??x?i ?zud ? ? zz??t???m? ?t qq?h ;?$z1?$ ?t q ? rohs |?0 recommended patterns * ???? $ (unit: mm) ?? inductance range 0.1~220 h (e-12 series) ?? inductance tolerance j ; 5% k ; 10% ?? inductance temperature coefficient 750ppm/c max. ?? operating temperatur e range -40c~+85c ?? storge temperature range -40c~+85c (in case of taping used) (-40c~+60c) ?? ?????? c? 0.1 ? 220 h (e-12 3??? ?? ???????0) j ? ; 5% k ? ; 10% ?? ??????9s : 750ppm/ ? max. ?? ?;9s c? 40 ?? 85 ? ?? -9s c? 40 ?? 85 ? a?e?? y6 40 ?? 60 ? 0 10 20 30 40 50 60 70 1 10 100 frequency (mhz) q vs frequency q 47 h 4.7 h 0.47 h 47 h 4.7 h 0.47 h continued on next page ?x examples of characteristics ?e ? q? electrical characteristics ??>$? q dimensions ?? go $ features ??? wire wound chip inductors ? ??????? ? continued from previous page 2??x selection guide for standard coils type llm2520 (previous name fslm2520, quantity/reel; 2,000 pcs) f? ? j ?????? (1) q *t : v ? (2) 7g?0?v (3) ~? *t : inductance (1) toko part number lo ( h) tolerance q min. test frequency (mhz) dc resistance (2) ( ) max. rated dc current (3) (ma) max. self-resonant frequency (mhz) min. #fslm2520-r10 0.10 j,k 30 25.2 0.21 570 680 #fslm2520-r12 0.12 j,k 30 25.2 0.22 550 650 #fslm2520-r15 0.15 j,k 30 25.2 0.25 500 530 #fslm2520-r18 0.18 j,k 30 25.2 0.29 460 520 #fslm2520-r22 0.22 j,k 30 25.2 0.30 430 390 #fslm2520-r27 0.27 j,k 30 25.2 0.33 420 330 #fslm2520-r33 0.33 j,k 30 25.2 0.39 400 310 #fslm2520-r39 0.39 j,k 30 25.2 0.40 375 290 #fslm2520-r47 0.47 j,k 30 25.2 0.44 350 260 #fslm2520-r56 0.56 j,k 30 25.2 0.49 330 230 #fslm2520-r68 0.68 j,k 30 25.2 0.52 320 200 #fslm2520-r82 0.82 j,k 30 25.2 0.61 290 180 #fslm2520-1r0 1.0 j,k 30 7.96 0.75 250 150 #fslm2520-1r2 1.2 j,k 30 7.96 0.87 240 140 #fslm2520-1r5 1.5 j,k 30 7.96 1.0 230 130 #fslm2520-1r8 1.8 j,k 30 7.96 1.1 220 120 #fslm2520-2r2 2.2 j,k 30 7.96 1.3 210 105 #fslm2520-2r7 2.7 j,k 30 7.96 1.4 200 90 #fslm2520-3r3 3.3 j,k 30 7.96 1.6 190 80 #fslm2520-3r9 3.9 j,k 30 7.96 1.7 185 75 #fslm2520-4r7 4.7 j,k 30 7.96 1.9 180 70 #fslm2520-5r6 5.6 j,k 30 7.96 2.2 170 60 #fslm2520-6r8 6.8 j,k 30 7.96 2.4 165 55 #fslm2520-8r2 8.2 j,k 30 7.96 2.6 160 50 #fslm2520-100 10.0 j,k 25 2.52 2.2 155 30 #fslm2520-120 12.0 j,k 25 2.52 2.5 150 27 #fslm2520-150 15.0 j,k 25 2.52 2.8 140 23 #fslm2520-180 18.0 j,k 25 2.52 3.2 130 22 #fslm2520-220 22.0 j,k 25 2.52 3.6 125 21 #fslm2520-270 27.0 j,k 25 2.52 4.3 115 19 #fslm2520-330 33.0 j,k 25 2.52 4.7 110 17 #fslm2520-390 39.0 j,k 25 2.52 8.1 85 15 #fslm2520-470 47.0 j,k 25 2.52 8.8 80 14 #fslm2520-560 56.0 j,k 25 2.52 10.0 75 12.5 #fslm2520-680 68.0 j,k 25 2.52 11.5 70 12 #fslm2520-820 82.0 j,k 25 2.52 12.5 65 11 #fslm2520-101 100.0 j,k 15 0.796 13.0 60 10 #fslm2520-121 120.0 j,k 15 0.796 19.0 55 8 #fslm2520-151 150.0 j,k 15 0.796 22.0 50 7.5 #fslm2520-181 180.0 j,k 15 0.796 25.0 47 7 #fslm2520-221 220.0 j,k 15 0.796 28.0 44 6.5 add the tolerance of inductance to within the ? of the part number as follows: j= 5%, k= 10% ? x??????w?0)?k??`o???bwpz]|<^m{ j= 5%, k= 10% (1) inductance is measured with a lcr meter 4194a ( * ) or 4291a ( * ) (2) dc resistance is measured with a digital multimeter tr6871 (advantest) or equivalent. (3) rated dc current is that which causes a 10% inductance reduction from the initial value, or coil temperature to rise by 20c, whichever is smaller. (reference ambient temperature 20c) * agilent technologies (1) ??????x lcr y?? 4194a ( * ) ?hx 4291a ( * ) t?? b?{ (2) v ?x?????y?? tr6871 (advantest) ?hx?s ?t??b?{ (3) 7g?0?vxzv o t?v?v`h??????w?u s8??? 10 ?n ?b?v?v?z?hxv?vt??z ??w9su 20 ? w??t ?^m?pb{ *?9s 20 ? ?, jqb? * agilent technologies wire wound chip inductors ? ??????? |
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