For the switching speed respectively the frequency range achieved by your circuit, you can simply treat the problem as magnetostatic one. No electromagnetic properties (coupling of electrical and magnetical field) have to be considered. As said, Biot-Savarts law allows a simple field calculation at the axis of round coils. For complex shaped coils or off-axis positions, it's most likely more simple to use a numerical simulator/solver, e.g. the free student version of Quickfield.finding the mathematical equation that can be used to estimate the coverage area of the electromagnetic wave
A magnetic core will reduce the distant field strength in most cases, because it concentrates the field to the proximity. A numerical simulator would be very useful for evaluating the core effect. I don't understand, what you want to achieve with a core. Of course, an air coil is an inductor as well.my focus is to use inductor and not a coil
Not generally, I think.research papers have showed that the coil winding need to be precise with one another
Can you please clarify about the involved type of "inductor". It can mean a lot, from effectively closed core to halfside open pot core, bobbin and rod core. Preferably tell the manufacturer and type.
The current source would need a current limit to protect itself respectively the choke. The field should be at least detectable in a 20 cm distance.
You need a current limiting resistor or another method to limit the current- please advise if my current circuitry is usable. i plan on testing at max 8 A first.
Due to the core, it's no longer a simple magnetostatic problem as an air coil would be. As already suggested, it's typically a case for a numerical sover.- how did you estimate that it is detectable. this is why i'm finding the equations, so that i could estimate if the field is detectable.
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