This calculator helps you compute the inductance of a wire-over-plane setup.
Inputs
Outputs
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This tool is designed to help you calculate the inductance of a wire placed above a conducting plane, which is crucial for designing and analyzing high-frequency circuits.
Inputs:
To compute the inductance, please provide the following parameters:
- Wire Diameter: Enter the diameter of the wire in inches (in). This is the thickness of the wire that affects the inductance.
- Height Above Plane: Input the height of the wire above the plane in inches (in). This is the vertical distance between the wire and the conducting plane below it.
- Length of Wire: Provide the total length of the wire in inches (in). This measures how long the wire is, which impacts the inductance value.
- Relative Permeability: Enter the relative permeability of the wire material. This dimensionless value indicates the material’s ability to conduct magnetic flux compared to a vacuum.
Output:
- Inductance: The calculator will compute and display the inductance of your wire-over-plane setup in microhenries (µH). This value represents how effectively the wire stores energy in its magnetic field.
How It Works:
- Enter Data: Fill in the required parameters: Wire Diameter, Height Above Plane, Length of Wire, and Relative Permeability.
- Calculate: Click the “Calculate” button to obtain the inductance value.
- View Results: The calculator will display the computed inductance based on your inputs.
Why Use This Calculator?
- Precision: Get accurate inductance values essential for high-frequency design and analysis.
- Design Insights: Optimize your wire-over-plane configurations for better performance.
- Efficiency: Quickly perform inductance calculations without manual computation.
Example Calculation:
For a wire with a Diameter of 0.1 inches, Height Above Plane of 0.5 inches, Length of Wire of 10.0 inches, and a Relative Permeability of 1.0, enter these values into the calculator to determine the inductance.
Start using the Wire-Over-Plane Inductance Calculator now to streamline your design process and enhance your circuit performance!