Datasheet 3D Model

AE336RAA Series

Outgassing Compliant Chip Inductors

The AE336RAA Series is not recommended for new designs, but existing customers will continue to be supported. As an alternative, we recommend the AR336RAA Series which is a drop-in replacement.
AE336RAA Series ceramic body and wire wound construction provides the highest SRFs available in 0805 size.
  • Exceptional Q values, even at high frequencies.
  • Robust version of Coilcraft’s standard 0805CS series.
  • Passes NASA low outgassing specifications.
  • Allows operation in ambient temperatures up to 155°C.
  • Standard tin-lead (Sn-Pb) terminations ensures the best possible board adhesion. Note: Nickel barrier termination (tin-lead over tin over nickel over silver-platinum-glass frit, termination code P) is recommended for hand soldering applications.
  • Tin-lead (63/37) over tin over nickel over silver-platinum-glass frit terminations. Other terminations are also available.

Looking for the commercial version of this part? See Coilcraft 0805CS Series
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Specifications

Electrical specifications at 25°C.

Part is not compliant with MIL-STD-981 Family 50, Class S due to wire gauge.

Part number 1 Inductance (nH) 2 Tolerance (%) Q min 3 SRF min (MHz) 4 DCR max (Ω) 5 Imax (mA)
AE336RAA020JPZ 2.8 @ 250 MHz 5 57 @ 1000 MHz 5000 0.06 800
AE336RAA3N0JPZ 3.0 @ 250 MHz 5 61 @ 1000 MHz 5000 0.06 800
AE336RAA030JPZ 3.3 @ 250 MHz 5 48 @ 1000 MHz 5000 0.08 600
AE336RAA050JPZ 5.6 @ 250 MHz 5 75 @ 1000 MHz 4760 0.08 600
AE336RAA060JPZ 6.8 @ 250 MHz 5 54 @ 1000 MHz 4440 0.11 600
AE336RAA070JPZ 7.5 @ 250 MHz 5 56 @ 1000 MHz 3840 0.14 600
AE336RAA080_PZ 8.2 @ 250 MHz 5,2 63 @ 1000 MHz 3560 0.12 600
AE336RAA100_PZ 10 @ 250 MHz 5,2,1 57 @ 500 MHz 3460 0.10 600
AE336RAA120_PZ 12 @ 250 MHz 5,2,1 46 @ 500 MHz 3180 0.15 600
AE336RAA150_PZ 15 @ 250 MHz 5,2,1 41 @ 500 MHz 2560 0.17 600
AE336RAA180_PZ 18 @ 250 MHz 5,2,1 48 @ 500 MHz 2480 0.20 600
AE336RAA220_PZ 22 @ 250 MHz 5,2,1 59 @ 500 MHz 2080 0.22 500
AE336RAA240_PZ 24 @ 250 MHz 5,2,1 59 @ 500 MHz 1920 0.22 500
AE336RAA270_PZ 27 @ 250 MHz 5,2,1 56 @ 500 MHz 2060 0.25 500
AE336RAA330_PZ 33 @ 250 MHz 5,2,1 64 @ 500 MHz 1720 0.27 500
AE336RAA360_PZ 36 @ 250 MHz 5,2,1 57 @ 500 MHz 1520 0.27 500
AE336RAA390_PZ 39 @ 250 MHz 5,2,1 44 @ 250 MHz 1600 0.29 500
AE336RAA430_PZ 43 @ 200 MHz 5,2,1 45 @ 250 MHz 1440 0.34 500
AE336RAA470_PZ 47 @ 200 MHz 5,2,1 44 @ 250 MHz 1360 0.31 470
AE336RAA560_PZ 56 @ 200 MHz 5,2,1 49 @ 250 MHz 1280 0.34 460
AE336RAA680_PZ 68 @ 200 MHz 5,2,1 52 @ 250 MHz 1200 0.38 440
AE336RAA820_PZ 82 @ 150 MHz 5,2,1 51 @ 250 MHz 1060 0.42 400
AE336RAA910_PZ 91 @ 150 MHz 5,2,1 49 @ 250 MHz 1060 0.48 390
AE336RAA101_PZ 100 @ 150 MHz 5,2,1 54 @ 250 MHz 1000 0.46 390
AE336RAA111_PZ 110 @ 150 MHz 5,2,1 38 @ 250 MHz 880 0.48 390
AE336RAA121_PZ 120 @ 150 MHz 5,2,1 52 @ 250 MHz 880 0.51 380
AE336RAA151_PZ 150 @ 100 MHz 5,2,1 33 @ 100 MHz 730 0.56 340
AE336RAA181_PZ 180 @ 100 MHz 5,2,1 37 @ 100 MHz 730 0.64 340
AE336RAA221_PZ 220 @ 100 MHz 5,2,1 36 @ 100 MHz 650 0.70 330
AE336RAA241_PZ 240 @ 100 MHz 5,2,1 36 @ 100 MHz 610 1.00 270
AE336RAA271_PZ 270 @ 100 MHz 5,2,1 36 @ 100 MHz 580 1.00 260
AE336RAA331_PZ 330 @ 100 MHz 5,2,1 36 @ 100 MHz 520 1.40 230
AE336RAA391_PZ 390 @ 100 MHz 5,2,1 34 @ 100 MHz 480 1.50 210
AE336RAA471_PZ 470 @ 50 MHz 5,2 24 @ 50 MHz 300 1.76 230
AE336RAA561_PZ 560 @ 25 MHz 5,2 21 @ 50 MHz 260 1.90 210
AE336RAA681_PZ 680 @ 25 MHz 5,2 21 @ 50 MHz 220 2.20 190
AE336RAA821_PZ 820 @ 25 MHz 5,2 23 @ 50 MHz 240 2.35 170
Notes
  1. When ordering, please specify tolerance, termination and screening codes: e.g. AE336RAA821GPZ.
  2. Inductance measured using a Coilcraft SMD-A fixture in an Agilent/HP 4286A impedance analyzer or equivalent with Coilcraft-provided correlation pieces.
  3. Q measured using an Agilent/HP 4291A with an Agilent/HP 16197A test fixture or equivalents.
  4. SRF measured on an Agilent 8753ES or equivalent with a Coilcraft CCF1297 test fixture.
  5. DCR measured on a Keithley micro-ohmmeter or equivalent and a Coilcraft CCF858 test fixture.
For ESCC 3201 F4 testing, operational life is performed at 90°C.

Tolerance:

  • F = 1%
  • G = 2%
  • J = 5%

Termination:

For hand soldering applications, the nickel barrier termination (tin-lead over tin over nickel over silver-platinum-glass frit, termination code P) is recommended. Exposed gold or tin in the terminations migrates into the solder.
  • P = Tin-lead (63/37) over tin over nickel over silver-platinum-glass frit.
  • C = Tin-lead (63/37) over gold over nickel over moly-mag.
  • S = Tin-lead (63/37) over leach-resistant silver-platinum-glass frit.
  • A = Gold over nickel over moly-mag.
  • L = Silver-palladium-platinum-glass frit.

Screening:

  • Z = Unscreened
  • = Coilcraft CP-SA-10001 Group A
  • 1 = EEE-INST-002 (Family 3) Level 1
  • 2 = EEE-INST-002 (Family 3) Level 2
  • 3 = EEE-INST-002 (Family 3) Level 3
  • 4 = MIL-STD-981 (Family 50) Class B
  • 5 = MIL-STD-981 (Family 50) Class S
  • Screening performed to the document’s latest revision.
  • Lot qualification (Group B) available.
  • Testing T and U have been replaced with more detailed codes 4, 5, and 1, 2, 3, respectively. Codes T and U can still be used, if necessary. Custom testing also available.
  • Country of origin restrictions available; prefix options G or F.
Environmental
Ambient temperature range:
–55°C to +125°C with Imax current.
Storage temperature range:
Component: –65°C to +155°C.
Tape and reel packaging: –55°C to +80°C.
Maximum part temperature:
+155°C (ambient + temp rise).
Failures in Time (FIT) / Mean Time Between Failures (MTBF):

Performance curves

Typical Q vs Frequency

Typical L vs Frequency

Physical characteristics

DIM.PNG

General specification

Core Material:
Ceramic
Packaging:
2000 per 7′′ reel Plastic tape: 8 mm wide, 0.23 mm thick, 4 mm pocket spacing, 1.65 mm pocket depth.
Temperature coefficient of inductance:
+25 to +155 ppm/°C.

Soldering/Washing

Moisture Sensitivity Level (MSL):
1 (unlimited floor life at <30°C / 85% relative humidity).
Resistance to soldering heat:
Max three 40 second reflows at +260°C, parts cooled to room temperature between cycles.
Refer to Soldering Coilcraft Components before soldering.