An iron circuit with a small 0.75 mm air gap is shown in Figure 1. A 6000 turn coil carries a current I = 18 mA which sets up a flux within the iron and across the air gap. The cross section of the...


An iron circuit with a small 0.75 mm air gap is shown in Figure 1. A 6000 turn coil carries a current<br>I = 18 mA which sets up a flux within the iron and across the air gap. The cross section of the<br>iron is a consistent 0.8 cm2, and the mean length of the flux path is 0.15 m.<br>a) Redraw the magnetic circuit using schematic symbols of an electric circuit with reluctance<br>in each part of the circuit.<br>b) State's Ohm's Law for magnetic circuit.<br>c) By neglecting the effect of fringing, calculate the reluctance of the circuit.<br>d) Find the flux within the core.<br>N = 6000<br>Iron circuit (4, = 800 for iron).<br>

Extracted text: An iron circuit with a small 0.75 mm air gap is shown in Figure 1. A 6000 turn coil carries a current I = 18 mA which sets up a flux within the iron and across the air gap. The cross section of the iron is a consistent 0.8 cm2, and the mean length of the flux path is 0.15 m. a) Redraw the magnetic circuit using schematic symbols of an electric circuit with reluctance in each part of the circuit. b) State's Ohm's Law for magnetic circuit. c) By neglecting the effect of fringing, calculate the reluctance of the circuit. d) Find the flux within the core. N = 6000 Iron circuit (4, = 800 for iron).

Jun 10, 2022
SOLUTION.PDF

Get Answer To This Question

Related Questions & Answers

More Questions »

Submit New Assignment

Copy and Paste Your Assignment Here