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  inductors technology of tomorrow 43 europe gmbh ?kaddenbusch 6 ?d-25578 d?geling / itzehoe ?phone: +49 (0) 48 21/89 89-0 ?fax: +49 (0) 48 21/89 89 89 ?interne t: www.koaeurope.de specifications given herein may be changed at any time without prior notice. please confirm technical specifications before you order and/or use. kq 1008 none 3 digit inductance code air core wirewound chip inductor kq 1008 features small chip inductors of air-core (wirewound type) high q and high self-resonant frequency excellent mountability, solderability and high reliablity suitable for high-frequency circuits in telecommunication equipment and mobile phones operating temperature range: - 40 c ... + 125 c flat top suitable for high speed mounting suitable for reflow soldering lab kit available 1 ceramic core 2 winding wire 3 electrode (ag/pd + ni + sn/pb) 4 inner coat 5 flat top film structure identification product code coating color marking dimensions (mm) product code l w h wt ht p kq1008 2.5 0.2 2.2 0.2 1.8 2.0 0.1 0.45 0.15 0.45 0.1 +0.2 ? 5 wt w h ht l p 4 2 1 3 type designation (how to order) *please see ?ackaging kq1008 product code te t aping* r39 nominal inductance old part no. new part no. termination surface material t: sn l: sn/pb j inductance tolerance kq1008 te r39 l j inductance tolerance inductance (nh) frequency (mhz) frequency (mhz) t est equipment hp4291a hp t est equipment hp4291a hp q characteristics inductance vs. frequency q-factor vs. frequency
technology of tomorrow inductors 44 europe gmbh ?kaddenbusch 6 ?d-25578 d?geling / itzehoe ?phone: +49 (0) 48 21/89 89-0 ?fax: +49 (0) 48 21/89 89 89 ?interne t: www.koaeurope.de specifications given herein may be changed at any time without prior notice. please confirm technical specifications before you order and/or use. air core wirewound chip inductor kq 1008 kq1008 te r22 0.22 ? 700 mhz 0.84 ? 720 ma kq1008 te r27 0.27 ? 600 mhz 0.91 ? 690 ma kq1008 te r33 0.33 ? 25 mhz 45 100 mhz 570 mhz 1.05 ? 660 ma kq1008 te r39 0.39 ? 500 mhz 1.12 ? 630 ma kq1008 te r47 0.47 ? 450 mhz 1.19 ? 600 ma kq1008 te r56 0.56 ? 415 mhz 1.33 ? 580 ma kq1008 te r62 0.62 ? g ( 2%) 375 mhz 1.40 ? 560 ma kq1008 te r68 0.68 ? j ( 5%) 375 mhz 1.47 ? 540 ma kq1008 te r75 0.75 ? k ( 10%) 360 mhz 1.54 ? 520 ma kq1008 te r82 0.82 ? 350 mhz 1.61 ? 500 ma kq1008 te r91 0.91 ? 320 mhz 1.68 ? 480 ma kq1008 te 1r0 1.0 ? 35 290 mhz 1.75 ? 460 ma kq1008 te 1r2 1.2 ? 250 mhz 2.0 ? 440 ma kq1008 te 1r5 1.5 ? 50 mhz 200 mhz 2.3 ? 420 ma kq1008 te 1r8 1.8 ? 28 160 mhz 2.6 ? 400 ma kq1008 te 2r2 2.2 ? 160 mhz 2.8 ? 380 ma kq1008 te 2r7 2.7 ? 22 140 mhz 3.2 ? 360 ma kq1008 te 3r3 3.3 ? 7.9 mhz 25 mhz 110 mhz 3.4 ? 350 ma kq1008 te 3r9 3.9 ? 20 100 mhz 3.6 ? 340 ma kq1008 te 4r7 4.7 ? 90 mhz 4.0 ? 330 ma kq1008 te 5r6 5.6 ? 80 mhz 2.2 ? 150 ma kq1008 te 6r8 6.8 ? 15 7.9 mhz 70 mhz 2.5 ? 150 ma kq1008 te 8r2 8.2 ? 65 mhz 2.8 ? 150 ma kq1008 te 100 10 ? 60 mhz 3.2 ? 150 ma type nom. value inductance frequency tolerance q (min.) quality factor frequency self-resonant frequency (min.) dc resistance (max.) allowable dc current (max.) rating kq1008 te 10n 10 nh 4100 mhz 0.08 ? kq1008 te 12n 12 nh 50 500 mhz 3300 mhz 0.09 ? kq1008 te 15n 15 nh 3000 mhz 0.10 ? kq1008 te 18n 18 nh j ( 5%) 2500 mhz 0.11 ? kq1008 te 22n 22 nh k ( 10%) 55 2400 mhz 0.12 ? kq1008 te 27n 27 nh 50 mhz m ( 20%) 1600 mhz 0.13 ? 1000 ma kq1008 te 33n 33 nh 60 0.14 ? kq1008 te 39n 39 nh 1500 mhz 0.15 ? kq1008 te 47n 47 nh 350 mhz 0.16 ? kq1008 te 56n 56 nh 65 1300 mhz 0.18 ? kq1008 te 68n 68 nh 0.20 ? kq1008 te 82n 82 nh 1000 mhz 0.22 ? kq1008 te r10 0.10 ? 60 0.56 ? kq1008 te r12 0.12 ? 950 mhz 0.63 ? 800 ma kq1008 te r15 0.15 ? 850 mhz 0.70 ? kq1008 te r18 0.18 ? 750 mhz 0.77 ? 750 ma


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