Inductors for direct current (DC) circuit breakers in aircraft applications
A solid-state circuit breaker (SSCB) is provided. The SSCB includes an electrical circuit. The electrical circuit includes inductor electrical connections, a diode rectifier bridge that drives current, which enters the electrical circuit in first or second directions, across the inductor electrical connections in only one of the first direction or the second direction and an inductor. The inductor is electrically interposed between the inductor electrical connections. The inductor includes a permanent magnet arrangement configured to introduce flux pre-bias for maintaining the inductor in an out-of-saturation condition during a peak fault event.
1 . A solid-state circuit breaker (SSCB), comprising:
an electrical circuit comprising:
a number of inductor electrical connections;
a diode rectifier bridge that drives current, which enters the electrical circuit in first or second directions, across the inductor electrical connections in only one of the first direction or the second direction; and
an inductor electrically interposed between the inductor electrical connections,
the inductor comprising a permanent magnet arrangement configured to introduce flux pre-bias for maintaining the inductor in an out-of-saturation condition during a peak fault event,
wherein:
the inductor comprises a bobbin comprising base elements at opposite longitudinal ends thereof, a magnetic core disposed about the bobbin and a permanent magnet pair disposed in series or in parallel with magnetic flux in the inductor, and
the magnetic core comprises first portions at the opposite longitudinal ends and second and third portions extending between the first portions at first and second sides of the bobbin, respectively.
2 . The SSCB according to claim 1 , wherein the permanent magnet arrangement is disposed in series with magnetic flux in the inductor.
3 . The SSCB according to claim 1 , wherein the permanent magnet arrangement is disposed in parallel with magnetic flux in the inductor.
4 . The SSCB according to claim 1 , wherein the permanent magnet pair is a north-south permanent magnet pair disposed in series with the magnetic flux is disposed along a longitudinal axis of the bobbin.
5 . The SSCB according to claim 1 , wherein the permanent magnet pair is a north-south permanent magnet pair disposed in parallel with the magnetic flux is disposed about a longitudinal axis of the bobbin.
6 . The SSCB according to claim 1 , wherein the first, second and third portions of the bobbin comprise ceramic materials.
7 . The SSCB according to claim 6 , wherein the ceramic materials comprise alumina.
8 . The SSCB according to claim 1 , wherein the base elements define microchannels.
9 . The SSCB according to claim 8 , wherein the microchannels are oriented transversely relative to a longitudinal axis of the bobbin.
10 . The SSCB according to claim 1 , wherein the bobbin comprises bobbin channels into each of which a corresponding portion of a winding, which is wound around the bobbin, is disposable with an absence of insulation.
11 . The SSCB according to claim 10 , wherein the bobbin channels are arranged in a pattern of concentric rings.
12 . A bobbin of an inductor of a solid-state circuit breaker (SSCB), the bobbin comprising:
base elements; and
bobbin channels interposed between the base elements to extend along a longitudinal axis defined to extend between the base elements,
each of the bobbin channels being receptive of a corresponding portion of a winding with an absence of insulation,
wherein the bobbin comprises a magnetic core and a north-south permanent magnet pair disposed in series or in parallel with magnetic flux in the inductor, the base elements are at opposite longitudinal ends of the bobbin and the magnetic core comprises:
first portions at the opposite longitudinal ends of the bobbin;
second portions extending between first corresponding ends of the first portions at a first side of the bobbin; and
third portions extending between second corresponding ends of the first portions at a second side of the bobbin.
13 . The bobbin according to claim 12 , wherein the base elements and the bobbin channels comprise ceramic materials.
14 . The bobbin according to claim 13 , wherein the ceramic materials comprise alumina.
15 . The bobbin according to claim 12 , wherein the base elements define microchannels.
16 . The bobbin according to claim 15 , wherein the microchannels are oriented transversely relative to the longitudinal axis.
17 . The bobbin according to claim 12 , wherein the bobbin channels are arranged in a pattern of concentric rings.
18 . A solid-state circuit breaker (SSCB), comprising:
an electrical circuit comprising:
a number of inductor electrical connections;
a diode rectifier bridge that drives current, which enters the electrical circuit in first or second directions, across the inductor electrical connections in only one of the first direction or the second direction; and
a coreless inductor electrically interposed between the inductor electrical connections and is configured to introduce flux pre-bias for maintaining the coreless inductor in an out-of-saturation condition during a peak fault event,
the coreless inductor comprising:
a winding;
a ferromagnetic fluid circuit configured to flow a ferromagnetic fluid through the winding; and
a heat exchanger configured to remove heat from the ferromagnetic fluid.
19 . The SSCB according to claim 18 , further comprising a ceramic bobbin in which the winding is supportively disposed.