TOKEN TCACR0.83.18.5

TOKEN
TCAC Air Coils Inductors Spring Coils
Air Coils Inductors
Air Coils Inductors, Spring Coils - TCAC Series
Token will do any custom coil windings of
Air Coils for you (TCAC)
Preview
Token manufactures all types of air coils inductors. Air Coils’ another name is Spring Coils. Token’s Air Core
Coil TCAC Series has advantages of free from iron losses, non-linearity, single layer coils structure, low selfcapacitance, and self-resonant frequency.
TCAC’s inductance is unaffected by the current it carries. This contrasts with the situation with coils using
ferromagnetic cores whose inductance tends to reach a peak at moderate field strengths before dropping towards
zero as saturation approaches. Sometimes non-linearity in the magnetization curve can be tolerated; for example
in switching converters. In circuits such as audio cross over networks in Hi-Fi speaker systems you must avoid
distortion; then you need an air coil. Most radio transmitters rely on air coils to prevent the production of
harmonics.
Token’s TCAC Series is custom coil windings. Please call Token Sales for your requirements to have high quality
work at a reasonable tooling cost and low cost volume production.
Features :
- High Q values
- High frequency
Applications :
- Set up box, CATV & Electronic Products.
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TCAC Air Coils Inductors, Spring Coils
Configurations
Note: Design as Customer’s Requested Specifications.
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TCAC Air Coils Inductors, Spring Coils
Winding Formula & Q Factor
Single layer air coil winding formula Methods and Increasing Q Factor
The following single layer air coil formula is most accurate when the coil length is greater than 0.67r
and the frequency is less than 10 MHz. As the frequency goes above 10MHz, the formula becomes less
accurate, because parasitics dominate the circuit. In all cases, the length is 4 times the radius.
Formula in Inch Units: L = r2N2 / (9r + 10A);
N = (L(9r + 10A) / r2)1/2
Formula in Metric Units: L = 0.394r2N2 / (9r + 10A);
N = (L(9r + 10A) / 0.394r2)1/2 Where:
● L = inductance (in microhenries).
● r = radius of coil (in inches or cm).
● N = number of turns.
● A = length of winding (in inches or cm).
The Q or Quality Factor of an inductor is the ratio of its inductive reactance XL to its series resistance
RS. The larger the ratio, the better the inductor.
Formula: Q = XL / RS, Where:
● XT = 2πƒL. where ƒ = Frequency (Hz); L = Inductance in Henries.
● RS is determined by multiplying the length of the wire used to wind the coil by the D.C. resistance
per unit length for the wire gage used.
● Q changes dramatically as a function of frequency.
● At lower frequencies, Q is very good because only the D.C. resistance of the windings has an effect
which is very low.
● As frequency goes up, Q will increase up to about the point where the skin effect and the combined
distributed capacitances begin to dominate.
● From then on, Q falls rapidly and becomes 0 at the self resonance frequency of the coil.
Increasing Q of Inductors:
● Spread the windings. Air gaps between the windings decrease the distributed capacitances.
● Use a ferrite core or powdered iron to wind the coil on. This will increase the permeability of the
space around the core.
● Decrease the series resistance of the windings by increasing the wire gage used. Larger wire has a
lower resistance per unit length.
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TCAC Air Coils Inductors, Spring Coils
How to Order
TCAC
R
0.8
3.1
8.5





 Part Number: TCAC
 Type of Winding
Code
R
L
Type of Winding
Clockwise winding
Counter clockwise winding
 Wire Diameter(mm)
 Inner Diameter(mm)
 Number of Turns
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