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0805HP (2012) High Q
Ceramic Chip Inductors

  • Our highest Q factors in an 0805 form factor
  • Excellent current handling and low DCR ratings
  • Inductance values from 2.6 nH to 820 nH
  • Tight tolerances – 2% for most
  • Wirewound construction for highest possible self resonance – up to 9.5 GHz
  • RoHS-compliant  260°C compatible. Silver-palladium-platinum-glass frit terminations.
  • COTS Plus tin-silver-copper and tin-lead terminations available
  • Samples of all 5% or 2% values available in Coilcraft Designer's Kit C477 and C477-2

SPECIFICATIONS


Part number1
Click to get parts
Inductance2
(nH)
Percent
tolerance3
Q typ4 SRF typ5
(MHz)
DCR max6
(Ohms)
Irms7
(A)
0805HP-2N6XJR_ 2.6 @ 250MHz 5 100 @ 1500MHz 9500 0.015 2.0
0805HP-6N2XJR_ 6.2 @ 250MHz 5 104 @ 1000MHz 7200 0.027 1.5
0805HP-6N8XJR_ 6.8 @ 250MHz 5 90 @ 1000MHz 6000 0.066 1.3
0805HP-11NX_R_ 11 @ 250MHz 5,2 93 @ 500MHz 4750 0.039 1.6
0805HP-12NX_R_ 12 @ 250MHz 5,2 91 @ 500MHz 4425 0.039 1.4
0805HP-13NX_R_ 13 @ 250MHz 5,2 91 @ 500MHz 4100 0.039 1.4
0805HP-18NX_R_ 18 @ 250MHz 5,2 95 @ 500MHz 3650 0.050 1.2
0805HP-33NX_R_ 33 @ 250MHz 5,2 100 @ 500MHz 2410 0.087 1.1
0805HP-47NX_R_ 47 @ 200MHz 5,2 105 @ 500MHz 2170 0.093 1.0
0805HP-56NX_R_ 56 @ 200MHz 5,2 100 @ 500MHz 1815 0.122 0.95
0805HP-82NX_R_ 82 @ 150MHz 5,2 103 @ 500MHz 1525 0.168 0.82
0805HP-101X_R_ 100 @ 150MHz 5,2 100 @ 500MHz 1400 0.220 0.72
0805HP-121X_R_ 120 @ 150MHz 5,2 80 @ 250MHz 1265 0.293 0.62
0805HP-151X_R_ 150 @ 100MHz 5,2 80 @ 250MHz 1150 0.288 0.60
0805HP-181X_R_ 180 @ 100MHz 5,2 77 @ 250MHz 1025 0.374 0.54
0805HP-221X_R_ 220 @ 100MHz 5,2 75 @ 250MHz 930 0.426 0.50
0805HP-271X_R_ 270 @ 100MHz 5,2 75 @ 100MHz 830 0.754 0.42
0805HP-331X_R_ 330 @ 100MHz 5,2 54 @ 100MHz 770 1.004 0.36
0805HP-391X_R_ 390 @ 100MHz 5,2 52 @ 100MHz 700 1.110 0.33
0805HP-471X_R_ 470 @ 50MHz 5,2 52 @ 100MHz 640 1.559 0.28
0805HP-561X_R_ 560 @ 25MHz 5,2 46 @ 100MHz 550 2.067 0.24
0805HP-681X_R_ 680 @ 25MHz 5,2 46 @ 100MHz 535 2.355 0.21
0805HP-821X_R_ 820 @ 25MHz 5,2 50 @ 100MHz 485 3.945 0.18
1 When ordering, please specify tolerance, termination and packaging codes: e.g. 0805HP-821XJRC
Tolerance: G = 2%, J = 5% (Table above shows stock tolerances in bold.)
  Termination: R= RoHS matte tin over nickel over silver-platinum-glass frit
Special order, added cost: Q = RoHS tin-silver-copper (95.5/4/0.5) or
P = non-RoHS tin-lead (63/37).
Packaging: C = 7" machine-ready reel
EIA-481 embossed plastic tape (2000 parts per full reel).
B = Less than full reel
In tape, but not machine-ready. To have a leader and trailer added ($25 charge), use code letter C instead.
D = 13" reel, machine-ready 
EIA-481 embossed plastic tape. Factory order only, not stocked (7500 parts per full reel).
2 Inductance measured using a Coilcraft SMD-A fixture in an Agilent/HP 4286A impedance analyzer with Coilcraft-provided correlation pieces.
3 Tolerances in bold are stocked for immediate shipment.
4 Q measured using an Agilent/HP 4291A with an Agilent/HP 16193 test fixture.
5 SRF measured using an Agilent/HP 8720D network analyzer and a Coilcraft SMD-D test fixture. Details
6 DCR measured at 25°C on a Cambridge Technology Micro-ohmmeter and a Coilcraft CCF840 test fixture. For other operating temperatures, use this DCR at Temperature calculator.
7 Irms: Current that causes a 15°C temperature rise from 25°C ambient. This information is for reference only and does not represent absolute maximum ratings.
8 Ambient temperature range: −40°C to +125°C with Irms current.
9 Storage temperature range:Component: −40°C to +140°C
Tape and reel packaging: −40°C to +80°C
10 Maximum part temperature: +140°C (Ambient + temperature rise)
11 Resistance to soldering heat: Three reflows at >217°C for 90 seconds (+260°C ±5°C for 20 – 40 seconds), allowing parts to cool to room temperature between.
12 Electrical specifications at 25°C.
13 Temperature coefficient of inductance (TCL): +25 to +125 ppm/°C.
Refer to Soldering Coilcraft Components before soldering.
PCB washing: Tested to MIL-STD-202 Method 215 plus an additional aqueous wash. More info.

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Updated: August 24, 2017