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Solen 14AWG Air Core Perfect Lay Inductors

Solen 14AWG Air Core Perfect Lay Inductors
  • Stock: 50
  • Model: S14
$25.50

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SOLEN AIR CORE INDUCTORS
PERFECT LAY HEXAGONAL WINDING

SOLEN was the first electronic passive components manufacturing company to design air core inductors
using the high precision honeycomb structured perfect lay hexagonal winding technique. This advance concept
was introduced to design and manufacture the most complete line of highest quality close tolerance self
supporting air core inductors for the specific application of the loudspeaker industry. The range of values is from
0.10 mH to 30 mH with solid conductor sizes from 0.8 mm Ø (20AWG) to 2.6 mm Ø (10AWG) with a tolerance of
.0.5 %.


GENERAL INFORMATION

Type : Air Cored Inductor.
Conductor : Pure Copper Solid Round Type.
Dielectric : Red Polyurethane Polyamide Enamel.
Construction : Hollow Cylindrical Type, Radial Leads.
Winding : Perfect Layer Hexagonal Self-Supporting Type.
Coating : Varnish Dip With Four Black Nylon Ties.
Leads : Pure Copper

TECHNICAL DATA
Inductance Range/Tolerance : 0.10 mH ... 30 mH, E24 series, ±1 %. (see specifications for details)
Conductor Material : ≥ 99.99 % Purity Annealed Copper.
Electrical Conductivity : ≥ 101.5 %.
DC resistance : Very Low (see specifications for details)
Oxygen Content : ≤ 200 ppm on surface.
Temperature Coefficient : 0.00393 / °C.
Temperature Range : -55 °C to +85 °C.
Insulation Temperature : 130 °C.
Solder-able Temperature : 360 °C.
Test Voltage : 1000 VAC
Conductor Diameter : S20 = 0.8, S18 = 1.0, S16 = 1.3, S14 = 1.6, S12 = 2.0, S10=2.6mmØ
Skin Effect Rac = Rdc : S20 = 7.0, S18 = 4.0, S16 = 2.5, S14 = 1.7, S12 = 1.0, S10 = 0.7 KHz
Skin Effect Rac = Rdc +10% : S20 = 27, S18 = 17, S16 = 10, S14 = 7.0, S12 = 4.0, S10 = 2.5 KHz
Winding Space Factor : S20 = 84, S18 = 86 , S16 = 87, S14 = 88, S12 = 90, S10 = 92 %

FEATURE
Integral Wheeler Formula Application.
Computer Optimised Inductor Dimension.
Linear AC Resistance
Very Low Magnetostriction Distortion.
Constant Inductance with Voltage Variation.
Constant Inductance with Current Variation.
No Saturation Distortion.
No Hysteresis Distortion.
● AIR CORED INDUCTORS
PERFECT LAY HEXAGONAL WINDING
● GENERAL INFORMATION
Type : Air Cored Inductor.
Conductor : Pure Copper Solid Round Type.
Dielectric : Red Polyurethane Polyamide Enamel.
Construction : Hollow Cylindrical Type, Radial Leads.
Winding : Perfect Layer Hexagonal Self-Supporting Type.
Coating : Varnish Dip With Four Black Nylon Ties.
Leads : Pure Copper
● TECHNICAL DATA
Inductance Range/Tolerance : 0.10 mH ... 30 mH, E24 series, ±1 %. (see specifications for details)
Conductor Material : ≥ 99.99 % Purity Annealed Copper.
Electrical Conductivity : ≥ 101.5 %.
DC resistance : Very Low (see specifications for details)
Oxygen Content : ≤ 200 ppm on surface.
Temperature Coefficient : 0.00393 / °C.
Temperature Range : -55 °C to +85 °C.
Insulation Temperature : 130 °C.
Solder-able Temperature : 360 °C.
Test Voltage : 1000 VAC
Conductor Diameter : S20 = 0.8, S18 = 1.0, S16 = 1.3, S14 = 1.6, S12 = 2.0, S10=2.6mmØ
Skin Effect Rac = Rdc : S20 = 7.0, S18 = 4.0, S16 = 2.5, S14 = 1.7, S12 = 1.0, S10 = 0.7 KHz
Skin Effect Rac = Rdc +10% : S20 = 27, S18 = 17, S16 = 10, S14 = 7.0, S12 = 4.0, S10 = 2.5 KHz
Winding Space Factor : S20 = 84, S18 = 86 , S16 = 87, S14 = 88, S12 = 90, S10 = 92 %
● FEATURE
Integral Wheeler Formula Application.
Computer Optimised Inductor Dimension.
Linear AC Resistance
Very Low Magnetostriction Distortion.
Constant Inductance with Voltage Variation.
Constant Inductance with Current Variation.
No Saturation Distortion.
No Hyteresis Distortion.

ELECTRICAL PERFORMANCE
High Quality Factor.
Very Low DC Resistance
Low AC Resistance.
Low Skin Effect Losses.
Low Proximity Effect Losses.
Low Self Capacitance.
High Quality Factor.
Very Low DC Resistance
Low AC Resistance.
Low Skin Effect Losses.
Low Proximity Effect Losses.
Low Self Capacitance.

P/N Inductance
DCR Dimensions
S14.16 0.16 mH 0.07 14x29x57
S14.18 0.18 mH 0.08 14x29x57
S14.20 0.2 mH 0.08 14x29x57
S14.22 0.22 mH 0.09 14x29x57
S14.24 0.24 mH 0.1 14x29x57
S14.27 0.27 mH 0.1 14x29x57
S14.30 0.3 mH 0.11 14x29x57
S14.33 0.33 mH 0.11 16x32x64
S14.36 0.36 mH 0.11 16x32x64
S14.39 0.39 mH 0.12 16x32x64
S14.43 0.43 mH 0.12 16x32x64
S14.47 0.47 mH 0.13 16x32x64
S14.51 0.51 mH 0.14 16x32x64
S14.56 0.56 mH 0.15 16x32x64
S14.62 0.62 mH 0.16 16x32x64
S14.68 0.68 mH 0.17 19x38x76
S14.75 0.75 mH 0.18 19x38x76
S14.82 0.82 mH 0.19 19x38x76
S14.91 0.91 mH 0.2 19x38x76
S141.0 1 mH 0.21 19x38x76
S141.1 1.1 mH 0.23 19x38x76
S141.2 1.2 mH 0.24 19x38x76
S141.3 1.3 mH 0.26 19x38x76
S141.5 1.5 mH 0.28 19x38x76
S141.6 1.6 mH 0.29 22x45x89
S141.8 1.8 mH 0.3 22x45x89
S142.0 2 mH 0.31 22x45x89
S142.2 2.2 mH 0.33 22x45x89
S142.4 2.4 mH 0.36 22x45x89
S142.7 2.7 mH 0.39 22x45x89
S143.0 3 mH 0.42 22x45x89
S143.3 3.3 mH 0.45 25x51x102
S143.6 3.6 mH 0.47 25x51x102
S143.9 3.9 mH 0.49 25x51x102
S144.3 4.3 mH 0.52 25x51x102
S144.7 4.7 mH 0.56 25x51x102
S145.1 5.1 mH 0.59 25x51x102
S145.6 5.6 mH 0.63 25x51x102
S146.2 6.2 mH 0.67 25x51x102
S143.6 3.6 mH 0.47 25x51x102
S143.9 3.9 mH 0.49 25x51x102
S144.3 4.3 mH 0.52 25x51x102
S144.7 4.7 mH 0.56 25x51x102
S145.1 5.1 mH 0.59 25x51x102
S145.6 5.6 mH 0.63 25x51x102
S146.2 6.2 mH 0.67 25x51x102
S146.8 6.8 mH 0.71 32x64x127
S147.5 7.5 mH 0.75 32x64x127
S148.2 8.2 mH 0.79 32x64x127
S149.1 9.1 mH 0.83 32x64x127
S1410 10 mH 0.87 32x64x127
S1411 11 mH 0.96 32x64x127
S1412 12 mH 1.03 32x64x127
S1413 13 mH 1.11 32x64x127
S1415 15 mH 1.17 32x64x127
S1416 16 mH 1.24 38x76x152
S1418 18 mH 1.29 38x76x152
S1420 20 mH 1.35 38x76x152
S1422

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