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LL1608-FH1N8S Datasheet(PDF) 1 Page - TOKO, Inc |
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LL1608-FH1N8S Datasheet(HTML) 1 Page - TOKO, Inc |
1 / 2 page 12 1.800.PIK.TOKO 1.847.297.0070 www.tokoam.com R-LOG0703A Meeting Your Needs Multilayer Chip Inductors TYPE LL1608FH Features • Inductance range: 1.2-100nH • Miniature size: 0603 footprint (1.6mm x 0.8mm) • Laminated ceramic allows high SRF • Q: 35 typical (at 800MHz) • High current handling, up to 1A • Temperature coefficient of inductance: +250ppm/ °C • Temperature range: –40 °C to +100°C • S-parameter data available upon request • Packaged on tape and reel in 4,000 piece quantity • Reflow solderable STANDARD PARTS SELECTION GUIDE Unit: mm Type L (mm) W (mm) T (mm) A (mm) LL1608FH 1.6 ±0.15 0.8±0.15 0.8±0.15 0.3±0.2 TYPE LL1608-FH Part Numbering * Add tolerance to part number: S= ±0.3nH, J = ±5%, K = ±10% Testing Conditions: (1) L,Q: Agilent 4191A at 100MHz (Test fixture 16092A) (2) SRF: Agilent 8753C (Test fixture 16091A) (3) RDC: Agilent 4338B The LL1608-FH Series is a miniature multilayer ceramic chip inductor. TOKO's proprietary laminated ceramic material pro- vides high SRF, excellent Q, and superior reliability. The FH al- lows up to 3 times the current handling of standard multilayers. In addition, the Qs are 1.3-1.6 times higher. It has an industry standard 0603 footprint and comes on tape in 4,000 piece reels. It is an ideal solution for higher current needs in high frequency RF and wireless communications equipment. L W T A Polarity Marking LL 1608 - FH 1N2 S Tolerance (S= ±0.3nH, J=±5%, K=±10%) Inductance Material Dimensions (LxW) Type Name O K O T t r a P r e b m u N ) H n ( o L* . l o T L Q z H M 0 0 1 . p y t Q z H M 0 0 8 ] z H M 0 0 5 [ . p y t ) z H M ( F R S . p y t ( C D R Ω ) . x a m ) A m ( C D I . x a m S 2 N 1 H F - 8 0 6 1 L L2 . 1S 3 10 60 0 0 6 >0 1 . 00 0 0 1 S 5 N 1 H F - 8 0 6 1 L L5 . 1S 3 17 40 0 0 6 >0 1 . 00 0 0 1 S 8 N 1 H F - 8 0 6 1 L L8 . 1S 2 11 50 0 0 6 >0 1 . 00 0 0 1 S 2 N 2 H F - 8 0 6 1 L L2 . 2S 2 18 30 0 0 6 >0 1 . 00 0 0 1 S 7 N 2 H F - 8 0 6 1 L L7 . 2S 2 18 30 0 0 6 >0 1 . 00 0 0 1 * _ 3 N 3 H F - 8 0 6 1 L L3 . 3K , S2 11 40 0 9 52 1 . 00 0 0 1 * _ 9 N 3 H F - 8 0 6 1 L L9 . 3K , S3 10 50 0 6 54 1 . 00 0 0 1 * _ 7 N 4 H F - 8 0 6 1 L L7 . 4K , S2 11 40 0 8 46 1 . 00 0 0 1 * _ 6 N 5 H F - 8 0 6 1 L L6 . 5K , S2 12 40 5 3 48 1 . 00 0 6 * _ 8 N 6 H F - 8 0 6 1 L L8 . 6K , J2 10 40 5 7 32 2 . 00 0 6 * _ 2 N 8 H F - 8 0 6 1 L L2 . 8K , J3 14 30 0 3 34 2 . 00 0 6 * _ N 0 1 H F - 8 0 6 1 L L0 . 0 1K , J3 15 40 5 8 26 2 . 00 0 6 * _ N 2 1 H F - 8 0 6 1 L L0 . 2 1K , J5 16 40 0 5 28 2 . 00 0 6 * _ N 5 1 H F - 8 0 6 1 L L0 . 5 1K , J5 18 40 5 1 22 3 . 00 0 6 * _ N 8 1 H F - 8 0 6 1 L L0 . 8 1K , J6 18 40 0 1 25 3 . 00 0 6 * _ N 2 2 H F - 8 0 6 1 L L0 . 2 2K , J7 15 40 5 8 10 4 . 00 0 6 * _ N 7 2 H F - 8 0 6 1 L L0 . 7 2K , J7 13 40 8 6 15 4 . 00 0 6 * _ N 3 3 H F - 8 0 6 1 L L0 . 3 3K , J8 19 30 8 5 15 5 . 00 0 6 * _ N 9 3 H F - 8 0 6 1 L L0 . 9 3K , J7 1] 7 3 [0 0 4 10 6 . 00 0 5 * _ N 7 4 H F - 8 0 6 1 L L0 . 7 4K , J7 1] 5 3 [0 0 2 10 7 . 00 0 5 * _ N 6 5 H F - 8 0 6 1 L L0 . 6 5K , J7 1] 2 3 [0 0 1 15 7 . 00 0 5 * _ N 8 6 H F - 8 0 6 1 L L0 . 8 6K , J8 1] 4 3 [0 5 0 15 8 . 00 0 4 * _ N 2 8 H F - 8 0 6 1 L L0 . 2 8K , J8 1] 2 3 [0 0 90 5 . 10 0 3 * _ 0 1 R H F - 8 0 6 1 L L0 . 0 0 1K , J5 1] 6 1 [0 5 80 1 . 20 0 3 |
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