5503 SUMIDA | Alldatasheet
Document overview
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Technical content
——O-Series 1206(3216)/5503 1/4 *All specifications are subject to change without notice. F e a t u r e s 1. Coil body of ceramic or ferrite material according to inductance value . 2. Two solderable metallized terminations of Ag/Pd/Pt. 3. Wound with lacquer-coated copper wire. 4. Wire ends welded onto the terminations. 5. Lead Free (RoHS Compliance) .
Applications
- RF technique 2. A ntenna Amplifiers Tuners, Base Stations or SAT Receivers O r d e r i n g I n f o r m a t i o n 5503 270 * * ** Shape and Dimensions (mm) (1) Series - 5503: Size 1206(3216) (4) Delivery Form 2 : s t a n d a r d , t a p e & r e e l 4 : coated, tape & reel (2) Inductance Value example: 27x10 X =27x10 0=27(nH) (5) Packing unit tape & reel 00 : reels Φ180mm, 3,000 pcs. 0 3 : r e e l s Φ330mm, 10,000 pcs. 0 5 : r e e l s Φ180mm, 500 pcs. (3) Inductance Tolerance 2 : ± 1 0 % 9 : s p e c i a l t o l e r a n c e 3 : ±5% Typ. 0.6
——O-Series 1206(3216)/5503 2/4 *All specifications are subject to change without notice. E l e c t r i c a l P a r a m e t e r s Order No. L [nH] Qmin fL,Q [MHz] fres,min [MHz] D.C.R. ,max [mΩ ]] IN,max [mA] Tol. [%] 5503 030 3,3 30 100 > 5000 40 1000 10/20 5503 060 6,8 30 100 > 5000 50 1000 10/20 5503 120 12 30 100 4000 80 1000 10/20 5503 150 15 30 100 3200 80 1000 5/10/20 5503 180 18 35 100 2800 80 1000 5/10/20 5503 220 22 35 100 2300 100 1000 5/10/20 5503 270 27 40 100 2000 110 1000 5/10/20 5503 330 33 40 100 1900 130 1000 5/10/20 5503 390 39 40 100 1800 130 1000 5/10/20 5503 470 47 40 100 1400 230 1000 5/10/20 5503 560 56 35 100 1400 230 840 2/ 5/10/20 5503 680 68 40 100 1300 210 570 2/ 5/10/20 5503 820 82 40 100 1200 230 660 2/5/10/20 5503 101 100 40 100 1100 290 660 2/5/10/20 5503 121 120 40 100 1000 300 570 2/5/10/20 5503 151 150 45 100 970 400 530 2/5/10/20 5503 181 180 35 50 880 470 450 2/5/10/20 5503 221 220 35 50 850 500 430 2/5/10/20 5503 271 270 35 50 800 620 420 2/5/10/20 5503 331 330 35 50 710 820 410 2/5/10/20 5503 391 390 35 50 650 1100 410 2/5/10/20 5503 471 470 35 50 640 1300 290 2/5/10/20 5503 561 560 30 35 560 1500 280 2/5/10/20 5503 681 680 30 35 540 1800 270 2/5/10/20 5503 821 820 30 35 470 2800 260 2/5/10/20 5503 102 1000 30 35 450 2700 230 2/5/10/20 5503 122 1200 30 35 430 3200 220 2/5/10/20 5503 152 1500 25 7,9 260 1200 320 2/5/10/20 5503 182 1800 25 7,9 250 1200 320 2/5/10/20 5503 222 2200 25 7,9 240 1300 300 2/5/10/20 5503 272 2700 25 7,9 230 1400 300 2/5/10/20 5503 332 3300 25 7,9 200 1500 280 2/5/10/20 5503 392 3900 25 7,9 190 1900 280 2/5/10/20 5503 472 4700 25 7.9 170 2200 280 2/5/10/20 5503 562 5600 25 7,9 160 2400 260 2/5/10/20 5503 682 6800 25 7,9 150 2800 240 2/5/10/20 5503 822 8200 25 7.9 130 3100 220 2/5/10/20 5503 103 10000 25 7,9 120 4000 200 2/5/10/20 5503 123 12000 18 2,5 110 4600 200 2/5/10/20 5503 153 15000 16 2,5 100 8200 160 2/5/10/20 5503 183 18000 16 2,5 95 9000 130 2/5/10/20 All values up to 1200 nH on ceramic core – from 1500 nH on ferrite core. Ceramic Ferrite
——O-Series 1206(3216)/5503 3/4 *All specifications are subject to change without notice. E l e c t r i c a l C h a r a c t e r i s t i c C u r v e s Typical Q factor vs frequency Coil on ceramic body Coil on ferrite body Typical Inductance vs. frequency Coil on ceramic body Coil on ferrite body 120 100 10 100 1000 f (MHz) Q 680nH 150nH 3,3nH 15nH 33nH 330nH 1 10 100 f (MHz) Q 1800nH 18000nH 4700nH 3300nH 10000 1000 100 10 100 1000 f (MHz) L (nH) 680nH 33nH 15nH 3,3nH 150nH 330nH 100000 10000 1000 100 1 10 100 1000 f (MHz) L (nH) 18000nH 4700nH 3300nH 1800nH
——O-Series 1206(3216)/5503 4/4 *All specifications are subject to change without notice. Inductance L in dependence of direct current IDC Current-carrying capacity IOP/IR in dependence of the ambient temperature Ta Test equipment: Inductance and Q: Agilent 42286A + 16093A. Resonant Frequency: Agilent 8753E. D.C.R. : Burst Resistomat 2329.(at 20 ℃) 18000nH 1E+01 1E+02 1E+03 1E+04 IDC (‘mA) 5600nH 1500nH 1000nH 100nH 12nH 1E+04 1E+03 1E+02 1E+01 1E+00 L (‘nH) 0 20 40 60 80 100 120 140 Ta ( °C) 1,2 0,8 0,6 0,4 0,2 IB / I N