Jantzen Audio Cross Coil 0,010 – 0,220mH 16AWG Pure Copper Foil Audio Inductor

Pure Copper Foil Audio Inductor. The Cross Coil has been developed in cooperation with Audio Technology (Denmark), who produces high-end drivers of impeccable quality. When using foil instead of wire for inductors, the enlarged surface will make for a much higher rate of electron travel. The benefits from using foil inductors comes in the form…

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Rating: 4 out of 5.

Description

PRODUCT FEATURE
The Cross Coil was developed in cooperation with Mr. Per Skaaning from Audio Technology™ (Denmark).
It is a high-performance foil inductor offering improved power handling and dynamic head room.
Using pure copper foil, we have insured a better surface for electron travel, a better distortion reduction, a higher power handling and improved dynamic headroom, compared to wire-based inductors.
The coil is wrapped in clear shrink foil to protect the outer layer of foil and to help maintain the integrity of the windings.
We know that with rising frequency, the electrons will move towards the surface. This Phenomenon is known as power distortion. Therefore, we need as large a surface as we can get, to prevent the electrons from getting “squeezed” on their path to the surface.

TECHNICAL DATA
• Made from ETP (Electrolytic-Tough-Pitch) copper foil
• The copper foil is C11000 / IACS certified
• Available in 8, 12, 14 and 16 AWG
• Inductance tolerance: +/- 2%
• DCR (coil resistance) tolerance: +/- 5%
• Insulation: Polypropylene shrink foil (clear)
• Estimated maximum power handling:
16 AWG – approx. 350 watts RMS
14 AWG – approx. 500 watts RMS
12 AWG – approx. 650 watts RMS
8 AWG – approx. 850 watts RMS

List of values with data in separate columns

Additional information

Inductance [mH]

0,010mH +/-2% 0,03Ω +/-5% 16AWG OD29 H27, 0,011mH +/-2% 0,03Ω +/-5% 16AWG OD30 H27, 0,018mH +/-2% 0,04Ω +/-5% 16AWG OD31 H27, 0,025mH +/-2% 0,05Ω +/-5% 16AWG OD33 H27, 0,027mH +/-2% 0,05Ω +/-5% 16AWG OD33 H27, 0,030mH +/-2% 0,05Ω +/-5% 16AWG OD33 H27, 0,040mH +/-2% 0,06Ω +/-5% 16AWG OD35 H27, 0,044mH +/-2% 0,06Ω +/-5% 16AWG OD35 H27, 0,050mH +/-2% 0,07Ω +/-5% 16AWG OD35 H27, 0,055mH +/-2% 0,07Ω +/-5% 16AWG OD36 H27, 0,070mH +/-2% 0,08Ω +/-5% 16AWG OD37 H27, 0,080mH +/-2% 0,09Ω +/-5% 16AWG OD39 H27, 0,090mH +/-2% 0,09Ω +/-5% 16AWG OD39 H27, 0,100mH +/-2% 0,10Ω +/-5% 16AWG OD40 H27, 0,105mH +/-2% 0,10Ω +/-5% 16AWG OD40 H27, 0,110mH +/-2% 0,10Ω +/-5% 16AWG OD41 H27, 0,115mH +/-2% 0,10Ω +/-5% 16AWG OD41 H27, 0,120mH +/-2% 0,11Ω +/-5% 16AWG OD42 H27, 0,130mH +/-2% 0,11Ω +/-5% 16AWG OD42 H27, 0,135mH +/-2% 0,11Ω +/-5% 16AWG OD42 H27, 0,140mH +/-2% 0,12Ω +/-5% 16AWG OD43 H27, 0,145mH +/-2% 0,12Ω +/-5% 16AWG OD43 H27, 0,150mH +/-2% 0,12Ω +/-5% 16AWG OD43 H27, 0,155mH +/-2% 0,12Ω +/-5% 16AWG OD43 H27, 0,160mH +/-2% 0,13Ω +/-5% 16AWG OD44 H27, 0,167mH +/-2% 0,13Ω +/-5% 16AWG OD45 H27, 0,170mH +/-2% 0,13Ω +/-5% 16AWG OD45 H27, 0,180mH +/-2% 0,13Ω +/-5% 16AWG OD45 H27, 0,190mH +/-2% 0,13Ω +/-5% 16AWG OD45 H27, 0,195mH +/-2% 0,13Ω +/-5% 16AWG OD45 H27, 0,200mH +/-2% 0,14Ω +/-5% 16AWG OD46 H27, 0,205mH +/-2% 0,14Ω +/-5% 16AWG OD46 H27, 0,210mH +/-2% 0,14Ω +/-5% 16AWG OD46 H27, 0,215mH +/-2% 0,14Ω +/-5% 16AWG OD46 H27, 0,220mH +/-2% 0,15Ω +/-5% 16AWG OD47 H27

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