Content (RF Inductors) Multi-Layer High Frequency Inductors (IQ & HI Series) Cautions... 18

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1 Content (RF Inductors) Multi-Layer High Inductors (IQ & HI Series)... 2 Ordering Code... 2 Standard External Dimensions... 3 High Q Type (IQ Series)... 4 Standard Type (HI Series)... 5 Testing Condition & Requirements (IQ & HI Series) Packaging Specification Cautions Inductor 1 Rev

2 Multi-Layer High Inductors (IQ & HI Series) Ordering Code HI 5 1N5 S T PRODUCT CODE HI :Standard type IQ: High Q type DIMENSION (L X W) Code Dimension EIA X 0.3 mm X 0.5 mm X 0.8 mm 0603 INDUCTANCE CODE Code 1N5 15N R15 Inductance (nh) TOLERANCE CODE B = ± 0.1 nh (for IQ series) G = ± 2% D = ± 0.1 nh (for HI series) K = ± % C = ± 0.2 nh H= ± 3% S = ± 0.3 nh J= ± 5% PACKAGING CODE T = Tape 2

3 -MLCI (IQ & HI Series) Standard External Dimensions Unit: mm/(inch) Series L W T A (Min/Max) Packing Quantity (pcs/reel) Paper Tape IQ0603 (0201) HI0603 (0201) HI5 (0402) HI1608 (0603) 0.60±0.03 (0.024±0.001) 0.60±0.03 (0.024±0.001) 1.00±0.05 (0.040±0.002) 1.60±0.15 (0.063±0.006) Recommended Pad Dimensions 0.30±0.03 (0.012±0.001) 0.30±0.03 (0.012±0.001) 0.50±0.05 (0.020±0.002) 0.80±0.15 (0.031±0.006) Land Pattern 0.30±0.03 (0.012±0.001) 0.30±0.03 (0.012±0.001) 0.50±0.05 (0.020±0.002) 0.80±0.15 (0.031±0.006) SMD Inductor Soldering resist 0./0.20 (0.004/0.008) 0./0.20 (0.004/0.008) 0./0.30 (0.004/0.012) 0.20/0.60 (0.008/0.024) 15,000 15,000,000 4,000 Multi-Layer HF Inductor c b a Size mm (EIA) L x W (mm) a (mm) b (mm) c (mm) 0603 (0201) 0.6* to to to (0402) 1.0* to to to (0603) 1.6* to to to Rev

4 High Q Type (IQ Series) Feature 1. For high frequency application 2. Tight tolerance physical dimensions 3. Tight Inductance tolerance, Excellent Q and Guaranteed SRF range 4. RoHS compliant Part Numbers & Characteristic IQ0603 series (EIA 0201) Ordering Code Inductance (nh) Available Tolerance IQ06030N6BT 0.6 ±0.1nH IQ06030N7BT 0.7 ±0.1nH IQ06030N8BT 0.8 ±0.1nH IQ06030N9BT 0.9 ±0.1nH IQ06031N0BT 1.0 ±0.1nH IQ06031N1BT 1.1 ±0.1nH IQ06031N2BT 1.2 ±0.1nH IQ06031N3BT 1.3 ±0.1nH IQ06031N4BT 1.4 ±0.1nH IQ06031N5BT 1.5 ±0.1nH IQ06031N6BT 1.6 ±0.1nH IQ06031N7BT 1.7 ±0.1nH IQ06031N8BT ±0.1nH IQ06031N9BT 1.9 ±0.1nH IQ06032N0BT ±0.1nH IQ06032N1BT 2.1 ±0.1nH IQ06032N2BT 2.2 ±0.1nH IQ06032N3BT 2.3 ±0.1nH IQ06032N4BT ±0.1nH IQ06032N5BT 2.5 ±0.1nH IQ06032N6BT 2.6 ±0.1nH IQ06032N7BT 2.7 ±0.1nH IQ06032N8BT 2.8 ±0.1nH IQ06032N9BT 2.9 ±0.1nH IQ06033N0BT 3.0 ±0.1nH IQ06033N1BT 3.1 ±0.1nH IQ06033N2BT 3.2 ±0.1nH IQ06033N3BT 3.3 ±0.1nH IQ06033N5BT 3.5 ±0.1nH IQ06033N6BT 3.6 ±0.1nH IQ06033N7BT 3.7 ±0.1nH IQ06033N8BT 3.8 ±0.1nH IQ06033N9BT 3.9 ±0.1nH IQ06034N3HT 4.3 ±3% IQ06034N7HT 4.7 ±3% IQ06035N1HT 5.1 ±3% IQ06035N6HT 5.6 ±3% IQ06036N2HT 6.2 ±3% IQ06036N8HT 6.8 ±3% IQ06037N5HT 7.5 ±3% IQ06038N2HT 8.2 ±3% IQ06039N1HT 9.1 ±3% IQ0603NHT.0 ±3% IQ060312NHT 1 ±3% IQ060315NHT 15.0 ±3% IQ060318NHT 18.0 ±3% IQ060322NHT 2 ±3% Q () Application For high frequency application: cellular phone, WLAN, PHS, EMI countermeasure in high frequency circuits and computer communication etc. Measuring Self-Resonance Min. Typ. () (Min.) 15 >30, >30, >30, >30, >30, >30, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , DC Resistance Rated Current Packing Amount Ω (Max.) ma(max.) kpcs

5 -MLCI (IQ & HI Series) Standard Type (HI Series) Feature 1. For high frequency application 2. Tight tolerance physical dimensions 3. RoHS compliant Part Numbers & Characteristicc HI0603 series (EIA 0201) Application For high frequency application: cellular phone, WLAN, PHS, EMI countermeasure in high frequency circuits and computer communication etc. Ordering Code Inductance (nh) Available Tolerancee HI06030N3 T 0.3 ±0.1nH HI06030N4 T 0.4 ±0.1nH HI06030N5 T 0.5 ±0.1nH HI06030N6 T 0.6 ±0.1nH, ±0.2nH 4,000 > HI06030N7 T 0.7 ±0.1nH HI06030N8 T 0.8 ±0.1nH HI06030N9 T 0.9 ±0.1nH HI06031N0 T 1.0 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N1 T 1.1 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N2 T 1.2 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N3 T 1.3 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N5 T 1.5 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N6 T 1.6 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N8 T ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06031N9 T 1.9 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06032N0 T ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06032N1 T 2.1 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06032N2 T 2.2 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06032N3 T 2.3 ±0.3nH, ±0.2nH, ±0.1nH 4,000 > HI06032N4 T ±0.3nH, ±0.2nH, ±0.1nH 4,000 11, HI06032N7 T 2.7 ±0.3nH, ±0.2nH, ±0.1nH 5,000 11, HI06032N9 T 2.9 ±0.3nH, ±0.2nH, ±0.1nH 5 9, 11, HI06033N0 T 3.0 ±0.3nH, ±0.2nH, ±0.1nH 5 9, 11, HI06033N2 T 3.2 ±0.3nH, ±0.2nH, ±0.1nH 5 9,, 0.30 HI06033N3 T 3.3 ±0.3nH, ±0.2nH, ±0.1nH 5 9,, HI06033N4 T 3.4 ±0.3nH, ±0.2nH, ±0.1nH 5 8,000, HI06033N6 T 3.6 ±0.3nH, ±0.2nH, ±0.1nH 5 8,000 9, HI06033N9 T 3.9 ±0.3nH, ±0.2nH, ±0.1nH 5 6, 8, HI06034N3 T 4.3 ±0.3nH, ±0.2nH, ±3% 5 6, 8, HI06034N7 T 4.7 ±0.3nH, ±0.2nH, ±3% 5 6, 7, HI06035N1 T 5.1 ±0.3nH, ±0.2nH, ±3% 5 6, 7, HI06035N6 T 5.6 ±0.3nH, ±0.2nH, ±3% 5 6,000 6, HI06036N2 T 6.2 ±0.3nH, ±0.2nH, ±3% 5 6,000 6, 0.44 HI06036N8 T 6.8 ±5%, ±3% 5 5,400 6, 0.50 HI06037N5 T 7.5 ±5%, ±3% 5 4, 6, HI06038N2 T 8.2 ±5%, ±3% 5 4, 5, 0.55 HI06039N1 T 9.1 ±5%, ±3% 5 4, 5, HI0603N T ±5%, ±3% 5 4, 4, HI060312N T 12 ±5%, ±3% 5 3,700 4, Q L, Q Measuring Self-Resonance () Min. () Min. typ. Max. 4,000 > ,000 > ,000 > ,000 > ,000 > ,000 > DC Resistance (Ω) Rated Current (ma) Packing Amount typ. Max. kpcs Multi-Layer HF Inductor 5 Rev

6 Ordering Code Inductance (nh) Available Tolerance Q L, Q Measuring Self-Resonance () DC Resistance (Ω) Rated Current (ma) Packing Amount Min. () Min. typ. Max. typ. Max. kpcs HI060315N T 15 ±5%, ±3% 5 2,200 4, HI060318N T 18 ±5%, ±3% 5 2,200 3, HI060322N T 22 ±5%, ±3% 5 2,000 2, HI060327N T 27 ±5%, ±3% 4 1, 2, HI060333N T 33 ±5% 4 1,700 2, HI060339N T 39 ±5% 4 1, 1, HI060347N T 47 ±5% 4 1,300 1, HI060356N T 56 ±5% 4 1, 1, HI060368N T 68 ±5% 4 1, 1, HI060382N T 82 ±5% 4 1,000 1, HI0603R T ±5% 4 1, Tolerance: D=±0.1nH, C=±0.2nH,S=±0.3nH, G=±2%, H=±3%, J=±5%, K=±% Operating Temperature range: -55 to +125 L,Q vs. Characteristics Typical Inductance(nH) Typical Q Ordering Code HI06030N3 T HI06030N4 T HI06030N5 T HI06030N6 T HI06030N7 T HI06030N8 T HI06030N9 T HI06031N0 T HI06031N1 T HI06031N2 T HI06031N3 T HI06031N5 T HI06031N6 T HI06031N8 T HI06031N9 T HI06032N0 T HI06032N1 T HI06032N2 T HI06032N3 T HI06032N4 T HI06032N7 T HI06032N9 T HI06033N0 T HI06033N2 T HI06033N3 T HI06033N4 T HI06033N6 T HI06033N9 T HI06034N3 T HI06034N7 T HI06035N1 T HI06035N6 T HI06036N2 T

7 Ordering Code Inductors-MLCI (IQ & HI Series) Typical Inductance(nH) HI06036N8 T HI06037N5 T HI06038N2 T HI06039N1 T HI0603N T HI060312N T HI060315N T HI060318N T HI060322N T HI060327N T HI060333N T HI060339N T HI060347N T HI060356N T HI060368N T HI060382N T HI0603R T Typical Q Typical Electrical Characteristic Inductance (nh) ,000,000 () 0603 L vs 22N 6N8 1N Q N5 6N N 0 1,000,000 () Q vs 0603 Z vs Impedance (ohm) 22N 6N8 1N5 1,000,000 () Multi-Layer HF Inductor 7 Rev

8 HI5 series (EIA 0402) Ordering Code Inductance (nh) Available Tolerance Q L, Q Measuring Self-Resonance () DC Resistance (Ω) Rated Current (ma) Packing Amount Min. () Min. typ. Max. typ. Max. kpcs HI50N3 T 0.3 ±0.1nH 8,000 > HI50N4 T 0.4 ±0.1nH 8,000 > HI50N5 T 0.5 ±0.1nH 8,000 > HI50N6 T 0.6 ±0.1nH 8,000 > HI50N8 T 0.8 ±0.1nH 8,000 > HI51N0 T 1.0 ±0.3nH, ±0.2nH, ±0.1nH 8,000 > HI51N1 T 1.1 ±0.3nH, ±0.2nH, ±0.1nH 8,000 > HI51N2 T 1.2 ±0.3nH, ±0.2nH, ±0.1nH 8,000 > HI51N3 T 1.3 ±0.3nH, ±0.2nH, ±0.1nH 8,000 > HI51N5 T 1.5 ±0.3nH, ±0.2nH, ±0.1nH 8,000 > HI51N6 T 1.6 ±0.3nH, ±0.2nH, ±0.1nH 8,000 > HI51N8 T ±0.3nH, ±0.2nH, ±0.1nH 8,000 12, HI52N0 T ±0.3nH, ±0.2nH, ±0.1nH 8,000 12, HI52N2 T 2.2 ±0.3nH, ±0.2nH, ±0.1nH 8,000 12, HI52N4 T ±0.3nH, ±0.2nH, ±0.1nH 8,000 12, HI52N7 T 2.7 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000, HI53N0 T 3.0 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000 8, HI53N3 T 3.3 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000 8, HI53N6 T 3.6 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000 8, HI53N9 T 3.9 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000 8, HI54N3 T 4.3 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000 7, HI54N7 T 4.7 ±0.3nH, ±0.2nH, ±0.1nH 8 6,000 7, HI55N1 T 5.1 ±0.3nH, ±0.2nH, ±0.1nH 8 5,300 6, HI55N6 T 5.6 ±0.3nH, ±0.2nH, ±0.1nH 8 4, 5, HI56N2 T 6.2 ±0.3nH, ±0.2nH, ±0.1nH 8 4, 5, HI56N8 T 6.8 ±5%, ±3%, ±2% 8 4, 5, HI57N5 T 7.5 ±5%, ±3%, ±2% 8 4,200 5, HI58N2 T 8.2 ±5%, ±3%, ±2% 8 3,700 4, HI59N1 T 9.1 ±5%, ±3%, ±2% 8 3,400 4, HI5N T ±5%, ±3%, ±2% 8 3,400 4, HI512N T 12 ±5%, ±3%, ±2% 8 3,000 3, HI513N T 13 ±5%, ±3%, ±2% 8 3,000 3, HI515N T 15 ±5%, ±3%, ±2% 8 2, 3, HI518N T 18 ±5%, ±3%, ±2% 8 2,200 2, HI522N T 22 ±5%, ±3%, ±2% 8 1, 2, HI524N T 24 ±5%, ±3% 8 1,700 2, HI527N T 27 ±5%, ±3% 8 1,700 2, HI533N T 33 ±5%, ±3% 8 1,600 2, HI539N T 39 ±5%, ±3% 8 1,200 1, HI547N T 47 ±5%, ±3% 8 1, 1, HI556N T 56 ±5%, ±3% 8 1,000 1, HI568N T 68 ±5%, ±3% 8 1,

9 -MLCI (IQ & HI Series) Ordering Code Inductance (nh) Available Tolerance HI582N T 82 ±5%, ±3% HI5R T ±5%, ±3% HI5R12 T 120 ±5% HI5R15 T 150 ±5% HI5R18 T 180 ±5% HI5R22 T 220 ±5% HI5R27 T 270 ±5% Q L, Q Measuring Self-Resonance () DC Resistance (Ω) Rated Current (ma) Min. () Min. typ. Max. typ. Max. kpcs , , Packing Amount Tolerance: D=±0.1nH, C=±0.2nH,S=±0.3nH, G=±2%, H=±3%, J=±5%, K=±% Operating Temperature range: -55 to +125 L,Q vs. Characteristics Ordering Code Typical Inductance(nH) HI50N3 T HI50N4 T HI50N5 T HI50N6 T HI50N8 T HI51N0 T HI51N1 T HI51N2 T HI51N3 T HI51N5 T HI51N6 T HI51N8 T HI52N0 T HI52N2 T HI52N4 T HI52N7 T HI53N0 T HI53N3 T HI53N6 T HI53N9 T HI54N3 T HI54N7 T HI55N1 T HI55N6 T HI56N2 T HI56N8 T HI57N5 T HI58N2 T HI59N1 T HI5N T Typical Q Multi-Layer HF Inductor 9 Rev

10 Typical Inductance(nH) Typical Q Ordering Code HI512N T HI513N T HI515N T HI518N T HI522N T HI524N T HI527N T HI533N T HI539N T HI547N T HI556N T HI568N T HI582N T HI5R T HI5R12 T HI5R15 T HI5R18 T HI5R22 T HI5R27 T Typical Electrical Characteristic Inductance (nh) R 56N 33N 15N Q N 56N R 15N Impedance (ohm),000 1, N 33N R 15N 1,000,000 1,000, ,000,000 () () () 5 L vs 5 Q vs 5 Z vs

11 HI1608 series (EIA 0603) Inductors-MLCI (IQ & HI Series) Ordering Code Inductance (nh) Available Tolerancee HI16081N0 T 1.0 ±0.3nH, ±0.1nH 8,000 > HI16081N2 T 1.2 ±0.3nH, ±0.1nH 8,000 > HI16081N5 T 1.5 ±0.3nH, ±0.1nH 8,000 > HI16081N8 T ±0.3nH, ±0.1nH 8,000 > HI16082N2 T 2.2 ±0.3nH, ±0.1nH 8 8, HI16082N7 T 2.7 ±0.3nH, ±0.1nH 7, HI16083N3 T 3.3 ±0.3nH, ±0.1nH 6, HI16083N9 T 3.9 ±0.3nH, ±0.1nH 6, HI16084N7 T 4.7 ±0.3nH, ±0.1nH 5, HI16085N6 T 5.6 ±0.3nH, ±0.1nH 4, HI16086N8 T 6.8 ±5%, ±2% HI16088N2 T 8.2 ±5%, ±2% HI1608N T ±5%, ±2% HI160812N T 12 ±5%, ±2% HI160815N T 15 ±5%, ±2% HI160818N T 18 ±5%, ±2% HI160822N T 22 ±5%, ±2% HI160827N T 27 ±5%, ±2% HI160833N T 33 ±5%, ±2% HI160839N T 39 ±5%, ±2% HI160847N T 47 ±5%, ±2% HI160856N T 56 ±5%, ±2% HI160868N T 68 ±5%, ±2% HI160882N T 82 ±5%, ±2% HI1608R T ±5% HI1608R12 T 120 ±5% HI1608R15 T 150 ±5% HI1608R18 T 180 ±5% HI1608R20 T 200 ±5% HI1608R22 T 220 ±5% HI1608R27 T 270 ±5% HI1608R33 T 330 ±5% HI1608R39 T 390 ±5% HI1608R47 T 470 ±5% Q L, Q Measuring Self-Resonance () Min. () Min. typ. Max. 4, , , , , , , , , , DC Resistance (Ω) Rated Current (ma) Packing Amount typ. Max. kpcs Multi-Layer HF Inductor Tolerance: D=±0.1nH,S=±0.3nH, G=±2%, J=±5%, K=±% Operating Temperature range: -40 to Rev

12 L,Q vs. Characteristics Typical Inductance(nH) Typical Q Ordering Code HI16081N0 T HI16081N2 T HI16081N5 T HI16081N8 T HI16082N2 T HI16082N7 T HI16083N3 T HI16083N9 T HI16084N7 T HI16085N6 T HI16086N8 T HI16088N2 T HI1608N T HI160812N T HI160815N T HI160818N T HI160822N T HI160827N T HI160833N T HI160839N T HI160847N T HI160856N T HI160868N T HI160882N T HI1608R T HI1608R12 T HI1608R15 T HI1608R18 T HI1608R22 T HI1608R27 T HI1608R33 T HI1608R39 T HI1608R47 T Typical Electrical Characteristic Inductance (nh) R22 56N 33N 15N 1,000,000 () Q ,000,000 () Impedance (ohm) N R22 56N 33N 1 R22 56N 33N 15N 1,000,000 () 1608 L vs 1608 Q vs 1608 Z vs 12

13 -MLCI (IQ & HI Series) Testing Condition & Requirements (IQ & HI Series) No. Item Test Condition 1 Appearance Inductors shall be visually inspected for visible evidence of defect. 2 Inductance a. Temperature: 25+/- 3 b. Relative Humidity: 45 to 75%RH c. Measurement Voltage: mv d. Measuring equipment and fixture: 0603(0201) HP C 5(0402) HP A 1608(0603) HP A 3 Q Value a. Temperature: 25 ± 3 b. Relative Humidity: 45 to 75%RH c. Measurement Voltage: mv d. Measuring equipment and fixture: 0603(0201) HP C 5(0402) HP A 1608(0603) HP A 4 DC Resistance a. Temperature: 25 ± 3 b. Relative Humidity: 45 to 75%RH c. Measuring equipment: HP Dimension Dimension shall be measured with caliper or micrometer 6 Solder-ability Immerse a test sample into a methanol solution containing rosin and immerse into SAC305(Sn96.5Ag3.0Cu0.5) solder of 245±5 for 3±1 seconds. Requirements No harmful defect for piratical use. Within specified tolerance. In accordance with electrical specification. In accordance with electrical specification. In accordance with dimension specification. 90% of the termination is to be soldered evenly and continuously. Multi-Layer HF Inductor 7 Resistance to Soldering Heat Immerse a test sample into a methanol solution containing No visible damage resin, preheat it at 120 to 150 for 1 minutes and immersee Inductance variation within into molten solder of 270 ± 5 for ± 1 second so thatt % Q variation within both terminal electrodes are completely submerged. 20% Solder the chip to test jig then apply a force in the direction shown in below. The soldering shall be done with the reflow method and shall be conducted with care so that the soldering is uniform and free of defects such as heat shock. 8 Bending Strength b c 40 a t :1.6mm(0.8mm for 0603&5 size) Fig. a Pressurizing speed : 1.0mm/sec. Pressurize R230 Flexure : 1mm Capacitance Meter Fig. b. 1. No mechanical damage shall be observed. 2. Rdc-value: to meet the initial Spec. Size a b C Rev

14 No. Item Test Condition Requirements Solder a test sample to printed circuit board, and conduct 5 cycles of test under the conditions shown as below &5 operating temp. range: -55~ operating temp. range: -40~85 9 Thermal Shock Cycle: Maximum operating temp. /(30+/-3min) within 3min No visible damage Inductance variation within % Q variation within 20% Minimum operating temp. (30+/-3min) High Humidity State Life Test Keep a test sample in an atmosphere with a temperature of 40±2 No visible damage., 90~95%RH for +24/-0 hours. Inductance variation within After the removal from test chamber, 2 to 3 hours of recovery %. under standard condition, and measurement shall be made after Q variation within 20%. 24±2 hrs of recovery under standard condition. 11 High Humidity Load Life Test Solder a test sample to printed circuit board then keep the test sample in an atmosphere with a temperature of 40±2, No visible damage. 90~95%RH for +24/-0 hours while supplying the rated Inductance variation within current. %. After the removal from test chamber, 2 to 3 hours of recovery Q variation within 20%. under standard condition, and measurement shall be made after 24±2 hrs of recovery under standard condition. 12 High Temperature State Life Test Keep a test sample in an atmosphere with a temperature of 85±2 for ±12 hours. After the removal from test chamber, 2 to 3 hours of recovery under standard condition, and measurement shall be made after 24±2 hrs of recovery under standard condition. No visible damage. Inductance variation within %. Q variation within 20%. 13 High Temperature Load Solder a test sample to printed circuit board then keep the test sample in an atmosphere with a temperature of 85±2 for ±12 hours while supplying the rated current. After the removal from test chamber, 2 to 3 hours of recovery under standard condition, and measurement shall be made after 24±2 hrs of recovery under standard condition. No visible damage. Inductance variation within %. Q variation within 20%. 14

15 -MLCI Reflow Profile Chart (Reference) Soldering Profile for SMT Process with Lead Free Solder Paste. The rate of preheat should not exceed 4 /sec and a target of 2 /sec is preferred. Ceramic chip components should be preheated to within to 130 of the soldering. Temperature ( ) Soldering 240 to ~ sec. Gradual Natural Cooling Preheating 0 over 1 min over 1 min Over 200,within 90sec Time (sec.) Multi-Layer Inductor Soldering Profile for SMT Process with SnPb Solder Paste. The rate of preheat should not exceed 4 /sec and a target of 2 /sec is preferred. Ceramic chip components should be preheated to within to 130 of the soldering Soldering 220 to ~ sec. Temperature ( ) 200 Gradual Natural Cooling Preheating 0 over 1 min over 1 min Over 200,within 40sec Time (sec.) 15 Rev

16 Packaging Specification Paper Tape Product Size Code Symbol 0603(0201) 5(0402) 1608(0603) 2012(0805) (mm) (mm) (mm) (mm) Chip cavity A 0.38± ± ± ±0.2 B 0.68± ±0.03 ± ±0.2 Insertion Pitch F 2±0.1 2± ± ±0.1 Tape Thickness T 1.1 max 1.1 max 1.1 max 0.8 max 16

17 -MLCI Embossed Tape 4mm pitch tape P 0 P 1 D 0 P 2 E K 0 T A 0 F W B 0 D 1 Direction of feed Top tape T Symbol 2012 (0805) 2016 (0806) 2520 (8) P 1 4±0.1 4±0.1 4±0.1 P O 4±0.1 4±0.1 4±0.1 P 2 2±0.05 2±0.05 2±0.05 A ±0.2 ± ±0.1 B 0 2.3± ± ±0.1 K 0 1.3± ± ±0.1 W 8±0.3 8±0.3 8±0.3 E 1.75± ± ±0.1 F 3.5± ± ±0.05 D (+0.1/-0.0) (+0.1/-0.0) (+0.1/-0.0) T 0.3 max 0.3 max 0.3 max Unit: mm/(inch) Multi-Layer Inductor Reel Specifications Tape Width (mm) G (mm) T max.(mm) D (mm) 8.0± ± 17 Rev

18 Peel Strength of Top Cover Tape The peel speed shall be about 300 mm/min. The peel strength of top cover tape shall be between 0.1 to 1.0N. Cautions Storage 1. The inductor shall be packaged in carrier tapes. 2. To keep storage place temperature from +5 to 35, humidity from 45 to 70% RH. 3. The storage atmosphere must be free of gas containing sulfur and chlorine. Also, avoid exposing the product to saline moisture. If the product is exposed to such atmospheres, the terminals will oxidize and solderability will be affected. 4. The solder ability is assured for 12 months from our final inspection date if the above storage condition is followed. Handling Inductor should be handled with care to avoid contamination or damage. The use of vacuum pick-up or plastic tweezers is recommended for manual placement. Tape and reeled packages are suitable for automatic pick and placement machine. 18

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