MCFT000063 MULTICOMP | Alldatasheet

Document overview

  • Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
  • PDF pages: 8

Technical content

Features

  • Wire wound ceramic construction provide high SRF.
  • Ultra-compact inductors provide exceptional Q values.
  • Low profile, high current are available.
  • Miniature SMD chip inductor for fully automated assembly.
  • Outstanding endurance from pull-up force, mechanical shock and pressure.
  • Tighter tolerance down to ±2%.
  • Smaller size of 0402 (1005).

Applications

RF Products:

  • Cellular Phone (CDMA/GSM/PHS)
  • Cordless Phone (DECT/CT1CT2)
  • Remote Control, Security System
  • Wireless PDA
  • WLL, Wireless LAN / Mouse / Keyboard / Earphone
  • VCO, RF Module & Other Wireless Products
  • Base Station, Repeater
  • GPS Receiver Broad Band Applications:
  • CATV Filter, Tuner
  • Cable Modem/ XDSL Tuner
  • Set Top Box IT Applications:
  • USB 2.0
  • IEEE 1394 Construction Dimensions Type Size (Inch) A max. B max. C max. D Ref. E F G H I J Standard Dimensions : Millimetres

Page <2> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro Type Size (Inch) A max. B max. C max. D Ref. E F G H I J Low Profile Type Size (Inch) A max. B max. C max. D Ref. E F G H I J High Current / High Q Colour Coding 0603 / 0805 / 1206 Type (0402 Type is No Colour Coding) Because of small sizes, these parts are marked with a single colour dot. The inductance value represented by the dot is shown on the data page for each type. Color Coding Code Inductance (nH) Tolerance (%) Quality Factor/ Min. Self Resonant Freq. / Min. (GHz) Resistance DC / Max. (Ω) Current DC / Max. (mA) 900MHz 1.7GHz L Q L Q 1 at 250MHz 10 16 12.7 0.045 1360 1.02 77 1.02 69 3.3 at 250MHz 10, 5, 2 19 7 0.066 840 3.1 65 3.12 87 10 at 250MHz 21 3.9 0.195 480 9.8 50 10.1 67 12 at 250MHz 24 3.6 0.12 640 11.9 53 12.7 71 15 at 250MHz 24 3.28 0.172 560 14.6 55 15.5 77 18 at 250MHz 25 3.1 0.23 420 18.3 57 20.3 62 22 at 250MHz 25 2.8 0.3 400 23.2 53 26.8 53 27 at 250MHz 24 2.48 0.3 400 28.7 49 33.5 63 33 at 250MHz 24 2.35 0.35 400 34.9 31 41.7 32 39 at 250MHz 25 2.1 0.55 200 41.7 47 50.2 45 47 at 250MHz 25 2.1 0.83 150 50 38 55.8 37 56 at 250MHz 25 1.76 0.97 100 57.4 49 72.4 40 68 at 250MHz 22 1.62 1.12 100 69.6 45 83.4 38 Standard Electrical Specifications

0402 Wire Wound Chip Inductors / Standard

Dimensions : Millimetres

Page <3> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro Inductance (nH) Tolerance (%) Quality Factor/ Min. Self Resonant Freq. / Min. (GHz) Resistance DC / Max. (Ω) Current DC / Max. (mA) 900MHz 1.7GHz Colour CodeL Q L Q 2.2 at 250MHz 10, 5 15 6 0.1 700 2.18 41 2.2 64 White 3.3 at 250MHz 10, 5, 2 22 >6 0.08 700 3.35 47 3.4 65 Red 10 at 250MHz 31 4.8 0.13 700 10 66 10.6 83 Orange 12 at 250MHz 35 4 0.13 700 12.3 72 13.5 83 Yellow 15 at 250MHz 35 4 0.17 700 15.4 64 16.8 89 Green 18 at 250MHz 35 3.1 0.17 700 18.7 70 21.4 69 Blue 22 at 250MHz 38 3 0.19 700 22.8 73 26.1 71 Violet 27 at 250MHz 40 2.8 0.22 600 29.2 74 34.6 65 Grey 33 at 250MHz 40 2.3 0.22 600 36.0 67 49.5 42 White 39 at 250MHz 40 2.2 0.25 600 42.7 60 60.2 40 Black 47 at 200MHz 38 2 0.28 600 52.2 62 77.2 35 Brown 56 at 200MHz 38 1.9 0.31 600 62.5 56 97 26 Red 68 at 200MHz 37 1.7 0.34 600 80.5 54 168 21 Orange 82 at 150MHz 34 1.7 0.54 400 96.2 54 177 21 Green 100 at 150MHz 34 1.4 0.58 400 124 49 319.5 13 Blue 120 at 150MHz 32 1.3 0.65 300 166 39 529.3 8 Grey 150 at 100MHz 28 1.3 0.95 280 230 25 - - White 180 at 100MHz 25 1.25 1.4 250 305 22 - - Black 220 at 100MHz 25 1.2 1.6 250 377 21 - - Brown 270 at 100MHz 25 0.9 2.1 200 523 19 - - Red 330 at 100MHz 25 0.9 3.8 100 680.4 20 - - Blue 390 at 100MHz 25 0.9 4.35 100 734.5 29 - - Yellow 470 at 100MHz 23 0.6 3.6 80 - - - - White

0603 Wire Wound Chip Inductors / Standard

0805 Wire Wound Chip Inductors / Standard

(nH) Tolerance (%) Quality Factor/Min. Self Resonant Freq. / Min. (GHz) Resistance DC / Max. (Ω) Current DC / Max. (mA) Colour Code 10 at 250MHz 10, 5, 2 60 at 500MHz 4.2 0.1 600 Blue 12 at 250MHz 50 at 500MHz 4 0.15 600 Orange 15 at 250MHz 50 at 500MHz 3.4 0.17 600 Yellow 18 at 250MHz 50 at 500MHz 3.3 0.2 600 Green 22 at 250MHz 50 at 500MHz 2.6 0.22 500 Blue 27 at 250MHz 55 at 500MHz 2.5 0.25 500 Violet

Page <4> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro Inductance (nH) Tolerance (%) Quality Factor/Min. Self Resonant Freq. / Min. (GHz) Resistance DC / Max. (Ω) Current DC / Max. (mA) Colour Code 33 at 250MHz 60 at 500MHz 2.05 0.27 500 Grey 39 at 250MHz 60 at 500MHz 2 0.29 500 White 47 at 200MHz 60 at 500MHz 1.65 0.31 500 Black 56 at 200MHz 60 at 500MHz 1.55 0.34 500 Brown 68 at 200MHz 60 at 500MHz 1.45 0.38 500 Red 82 at 150MHz 65 at 500MHz 1.3 0.42 400 Orange 100 at 150MHz 65 at 500MHz 1.2 0.46 400 Yellow 120 at 150MHz 50 at 250MHz 1.1 0.51 400 Green 150 at 100MHz 50 at 250MHz 0.92 0.56 400 Blue 180 at 100MHz 50 at 250MHz 0.87 0.64 400 Violet 220 at 100MHz 50 at 250MHz 0.85 0.7 400 Grey 270 at 100MHz 48 at 250MHz 0.65 1 350 White 300 at 100MHz 48 at 250MHz 0.6 1.4 310 Black 390 at 100MHz 48 at 250MHz 0.56 1.5 290 Brown 470 at 50MHz 33 at 100MHz 0.375 1.7 250 Red 560 at 25MHz 23 at 50MHz 0.34 1.9 230 Orange 680 at 25MHz 23 at 50MHz 0.2 2.2 190 Green 820 at 25MHz 23 at 50MHz 0.2 2.35 180 Violet 1000 at 25MHz 20 at 50MHz 0.1 2.5 170 Grey 1,500 at 7.9MHz 16 at 25MHz 0.1 2.5 170 Black 2,200 at 7.9MHz 16 at 7.9MHz 0.06 2.7 160 Red 3,300 at 7.9MHz 15 at 7.9MHz 0.04 4.4 90 Blue 4,700 at 7.9MHz 15 at 7.9MHz 0.04 6.4 90 Green

1206 Wire Wound Chip Inductors / Standard

(nH) T olerance (%) Quality Factor/Min. Self Resonant Freq. / Min (GHz) Resistance DC/Max. (Ω) Current DC/Max. (mA) Colour Code 10 at 100MHz 10, 5 40 at 300MHz 4 0.08 1000 Red 15 at 100MHz 3.2 0.10 Y ellow 22 at 100MHz 50 at 300MHz

2.2 Blue

10, 5, 2 1.8 0.1 1 Grey 47 at 100MHz 55 at 300MHz 1.5 0.13 Black 68 at 100MHz 1.2 0.26 950 Red 150 at 100MHz 60 at 300MHz 0.95 0.31 750 Blue 220 at 50MHz 55 at 300MHz 0.76 0.50 670 Grey

Page <5> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro Inductance (nH) T olerance (%) Quality Factor/Min. Self Resonant Freq. / Min (GHz) Resistance DC/Max. (Ω) Current DC/Max. (mA) Colour Code 330 at 50MHz 10, 5, 2 45 at 150MHz 0.65 0.62 590 Black 470 at 50MHz 0.55 1.30 490 Red 680 at 35MHz 0.45 1.58 430 Y ellow 1000 at 35MHz 0.4 2.80 320 Blue

0805 Wire Wound Chip Inductors / Low Profile

(nH) Tolerance (%) Quality Factor/Min. Self Resonant Freq. /Min. (GHz) Resistance DC/Max (Ω) Current DC/Max (mA) Colour Code 10 at 250MHz 10, 5, 2 55 at 750MHz 3.3 0.08 800 Green 12 at 250MHz 3.8 0.1 Blue 15 at 250MHz 50 at 500MHz

2.95 Violet

18 at 250MHz 3.1 0.13 Grey 22 at 250MHz 2.9 0.15 White 27 at 250MHz 2.45 0.23 600 Black 33 at 250MHz 2.35 0.28 Brown 39 at 250MHz 2.2 0.33 Red 47 at 200MHz 2 0.39 Orange 56 at 200MHz 1.85 500 Yellow 68 at 200MHz 1.5

0.4 Green

82 at 150MHz 0.44 Blue 100 at 150MHz 1.2 0.64 400 Violet 120 at 150MHz 40 at 250MHz 1.15 0.68 300 Grey 150 at 150MHz 1.05 0.8 White 1000 at 25MHz 16 at 50MHz 0.08 3.5 170 Black

0603 Wire Wound Chip Inductors / High Current

(nH) T olerance (%) Quality Factor/Min. Self Resonant Freq. /Min. (GHz) Resistance DC/Max. (Ω) Current DC/Max. (mA) Colour Code 6.8 at 250MHz 10, 5 35 5.8 0.054 2100 Orange 10 at 250MHz 10, 5, 2 3.7 0.071 2000 Green 12 at 250MHz 3 0.075 Blue 15 at 250MHz 2.8 0.080 1900 Violet 18 at 250MHz 40 0.099 Grey 22 at 250MHz 42 2.4 1800 White

Page <6> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro

0805 Wire Wound Chip Inductors / High Q

(nH) T olerance (%) Quality Factor/Min. Self Resonant Freq. /Min. (GHz) Resistance DC/Max. (Ω) Current DC/Max. (mA) Colour Code 10 at 250MHz 10, 5 80 at 1000MHz 0.06 1600 Black 12 at 250MHz 0.045 Orange 15 at 250MHz 10, 5, 2 2.8 0.1 1200 Black 18 at 250MHz 75 at 500MHz 2.55 0.06 1400 Green 22 at 250MHz 80 at 500MHz 0.1 1200 Black 27 at 250MHz 75 at 500MHz 0.07 1300 Violet 39 at 250MHz 65 at 500MHz 1.6 0.1 1 1 100 White Item Requirement Test Method Vibration Appearance: No damage L change: within ±5% Q change: within ±10% Test device shall be soldered on the substrate Oscillation Frequency: 10 to 55 to 10Hz for 1 min. Amplitude: 1.5 mm Time: 2 hrs for each axis (X, Y &Z), total 6 hrs Resistance to Soldering Heat Solder Temperature: 260±5°C Immersion Time: 10±2 seconds Component Adhesion (Push Test) 1lbs. For 0402 2lbs. For 0603 3lbs. For the rest The device should be soldered (260±5 for 10 seconds) to a tinned copper subs rate. A dynamiter force gauge should be applied to the side of the component. The device must with stand a minimum force of 2 or 4 pounds without a failure of adhesion on termination Drop No damage Dropping chip by each side and each corner. Drop 10 times in total Drop height: 100 cm Drop weight: 125 g Solderability 90% covered with solder Inductor shall be dipped in a melted solder bath at 245±5 for 3 seconds Resistance to Solvent No damage on appearance and marking MIL-STD-202F, Method 215D Mechanical Performance

Page <7> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro Electrical Performance Item Requirement Test Method Inductance Refer to standard electrical characteristic spec. HP4291B Q HP4291B SRF HP8753D DC Resistance RDC Micro-Ohm meter (Gom-801G) Rated Current IDC Applied the current to coils, The inductance change should be less than 10% to initial value Over load test Inductors shall have no evidence of electrical and mechanical damage Applied 2 times of rated allowed DC current to inductor for a period of 5 minutes Withstanding Voltage test Inductors shall be no evidence of electrical and mechanical damage. AC voltage of 500V AC applied between inductors terminal and case for 1 min. Insulation Resistance test 1,000MΩ min. 100V DC applied between inductor terminal and case Climatic Test Item Requirement Test Method Temperature Characteristic Appearance: No damage L change: within ±10% Q change: within ±20% -40 to +125°C Humidity Temperature: 40 ±2°C Relative Humidity: 90 ~ 95% Time: 96 ±2 hrs Measured after exposure in the room condition for 2 hrs Low Temperature Storage Temperature: -40 ±2°C Time: 96 ±2 hrs Inductors are tested after 1 hour at room temperature Thermal Shock One cycle: Step Temperature(°C) Time (min.) 1 -25 ±3 30 2 25 ±2 15 3 125 ±3 30 4 25 ±2 15 Total: 5 cycles High Temperature Storage Temperature: 125 ±2°C Time: 96 ±2 hrs Measured after exposure in the room condition for 1hour High Temperature Load Life There should be no evidence of short of open circuit. Temperature: 85 ±2°C Time: 1,000 ±12 hrs Load: Allowed DC current Damp Heat with Load Temperature: 40 ±2°C Relative Humidity: 90 ~ 95% Time: 1,000 ±12 hrs Load: Allowed DC current Storage Temperature: 25±3°C; Humidity < 80%RH

Page <8> V1.010/02/20 Wire Wound Chip Inductors Newark.com/multicomp-pro Farnell.com/multicomp-pro Element14.com/multicomp-pro Part Number Table Description Part Number Inductor, 0402, 1nH MCFT000063 Inductor, 0402, 2.2nH MCFT000064 Inductor, 0402, 3.3nH MCFT000065 Inductor, 0402, 4.7nH MCFT000066 Inductor, 0402, 6.8nH MCFT000067 Inductor, 0402, 10nH MCFT000068 Inductor, 0402, 12nH MCFT000069 Inductor, 0402, 15nH MCFT000070 Inductor, 0402, 18nH MCFT000071 Inductor, 0402, 22nH MCFT000072 Inductor, 0402, 27nH MCFT000073 Inductor, 0402, 33nH MCFT000074 Inductor, 0402, 39nH MCFT000075 Inductor, 0402, 47nH MCFT000076 Inductor, 0402, 56nH MCFT000077 Inductor, 0402, 68nH MCFT000078 Inductor, 0603, 2.2nH MCFT000079 Inductor, 0603, 3.3nH MCFT000080 Inductor, 0603, 4.7nH MCFT000081 Inductor, 0603, 6.8nH MCFT000082 Inductor, 0603, 10nH MCFT000083 Inductor, 0603, 12nH MCFT000084 Inductor, 0603, 15nH MCFT000085 Inductor, 0603, 18nH MCFT000086 Inductor, 0603, 22nH MCFT000087 Inductor, 0603, 27nH MCFT000088 Inductor, 0603, 33nH MCFT000089 Inductor, 0603, 39nH MCFT000090 Inductor, 0603, 47nH MCFT000091 Inductor, 0603, 56nH MCFT000092 Inductor, 0603, 68nH MCFT000093 Inductor, 0603, 82nH MCFT000094 Inductor, 0603, 100nH MCFT000095 Inductor, 0603, 120nH MCFT000096 Inductor, 0603, 150nH MCFT000097 Inductor, 0603, 180nH MCFT000098 Inductor, 0603, 220nH MCFT000099 Inductor, 0603, 270nH MCFT000100 Inductor, 0603, 330nH MCFT000101 Inductor, 0603, 390nH MCFT000102 Inductor, 0603, 470nH MCFT000103 Inductor, 0805, 10nH MCFT000104 Inductor, 0805, 12nH MCFT000105 Inductor, 0805, 15nH MCFT000106 Inductor, 0805, 18nH MCFT000107 Inductor, 0805, 22nH MCFT000108 Inductor, 0805, 27nH MCFT000109 Inductor, 0805, 33nH MCFT000110 Inductor, 0805, 39nH MCFT000111 Inductor, 0805, 47nH MCFT000112 Inductor, 0805, 56nH MCFT000113 Inductor, 0805, 68nH MCFT000114 Inductor, 0805, 82nH MCFT000115 Inductor, 0805, 100nH MCFT000116 Inductor, 0805, 120nH MCFT000117 Inductor, 0805, 150nH MCFT000118 Inductor, 0805, 180nH MCFT000119 Inductor, 0805, 220nH MCFT000120 Inductor, 0805, 270nH MCFT000121 Inductor, 0805, 330nH MCFT000122 Inductor, 0805, 390nH MCFT000123 Inductor, 0805, 470nH MCFT000124 Inductor, 0805, 560nH MCFT000125 Inductor, 0805, 680nH MCFT000126 Inductor, 0805, 820nH MCFT000127 Inductor, 0805, 1000nH MCFT000128 Inductor, 0805, 1500nH MCFT000129 Inductor, 0805, 2200nH MCFT000130 Inductor, 0805, 3300nH MCFT000131 Inductor, 0805, 4700nH MCFT000132 Inductor, 0805, 10nH MCFT000133 Inductor, 0805, 15nH MCFT000134 Inductor, 0805, 22nH MCFT000135 Inductor, 0805, 33nH MCFT000136 Inductor, 0805, 47nH MCFT000137 Inductor, 0805, 68nH MCFT000138 Inductor, 0805, 100nH MCFT000139 Inductor, 1206, 10nH MCFT000140 Inductor, 1206, 15nH MCFT000141 Inductor, 1206, 22nH MCFT000142 Inductor, 1206, 33nH MCFT000143 Inductor, 1206, 47nH MCFT000144 Inductor, 1206, 68nH MCFT000145 Inductor, 1206, 150nH MCFT000146 Inductor, 1206, 220nH MCFT000147 Inductor, 1206, 330nH MCFT000148 Inductor, 1206, 470nH MCFT000149 Inductor, 1206, 680nH MCFT000150 Inductor, 1206, 1000nH MCFT000151 Important Notice : This data sheet and its contents (the “Information”) belong to the members of the AVNET group of companies (the “Group”) or are licensed to it. No licence is granted for the use of it other than for information purposes in connection with the products to which it relates. No licence of any intellectual property rights is granted. The Information is subject to change without notice and replaces all data sheets previously supplied. The Information supplied is believed to be accurate but the Group assumes no responsibility for its accuracy or completeness, any error in or omission from it or for any use made of it. Users of this data sheet should check for themselves the Information and the suitability of the products for their purpose and not make any assumptions based on information included or omitted. Liability for loss or damage resulting from any reliance on the Information or use of it (including liability resulting from negligence or where the Group was aware of the possibility of such loss or damage arising) is excluded. This will not operate to limit or restrict the Group’s liability for death or personal injury resulting from its negligence. Multicomp Pro is the registered trademark of Premier Farnell Limited 2019.