Heat actuated magnetic latching microswitch
A heat actuated switch comprises a substrate, a moveable element having at least one electrical contact associated therewith, a permanent magnet in the vicinity of the electrical contact, a ferromagnetic material in the vicinity of the permanent magnet and associated with the at least one electrical contact, and a heater adjacent the ferromagnetic material, whereby actuating the heater alters the magnetic properties of the ferromagnetic material and causes the moveable element to switch the electrical contact.
1 . A heat actuated switch, comprising:
a substrate;
a moveable element having at least one electrical contact associated therewith;
a permanent magnet in the vicinity of the electrical contact;
a ferromagnetic material in the vicinity of the permanent magnet and associated with the at least one electrical contact; and
a heater adjacent the ferromagnetic material, whereby actuating the heater alters the magnetic properties of the ferromagnetic material and causes the moveable element to switch the electrical contact.
2 . The heat actuated switch of claim 1 , further comprising:
a second electrical contact, and wherein the moveable element is a cantilever.
3 . The heat actuated switch of claim 1 , in which the ferromagnetic material is chosen from chromium dioxide (Cr 2 O), yttrium iron garnet (YIG) (Y 3 Fe 5 O 12 ), and magnesium antimonide (MnSb).
4 . The heat actuated switch of claim 2 , in which heating the ferromagnetic material above a Curie temperature causes the moveable element to switch the electrical contact.
5 . The heat actuated switch of claim 4 , in which the heater, the ferromagnetic material and the at least one electrical contact are located at the end of the cantilever.
6 . The heat actuated switch of claim 4 , in which the permanent magnet and the at least one electrical contact are located at the end of the cantilever and the heater and the ferromagnetic material are located over the substrate.
7 . The heat actuated switch of claim 4 , in which the permanent magnet and the at least one electrical contact are located on the cantilever and the heater and the ferromagnetic material are located over the substrate and in which the switch functions as a Reed switch.
8 . A method for operating a heat actuated switch, comprising:
latching a heat actuated switch in a first position;
heating a first ferromagnetic material to a temperature at which the first ferromagnetic material becomes non-magnetic; and
attracting a second ferromagnetic material using a permanent magnet to cause the switch to latch in a second position.
9 . The method of claim 8 , in which the ferromagnetic material is chosen from chromium dioxide (Cr 2 O), yttrium iron garnet (YIG) (Y 3 Fe 5 O 12 ), and magnesium antimonide (MnSb).
10 . The method of claim 8 , in which heating the ferromagnetic material above a Curie temperature causes a moveable element to switch at least one electrical contact.
11 . The method of claim 8 , further comprising locating the heater, the ferromagnetic material and at least one electrical contact at the end of a cantilever.
12 . The method of claim 8 , further comprising locating the permanent magnet and at least one electrical contact at the end of a cantilever and locating the heater and the ferromagnetic material over a substrate.
13 . The method of claim 8 , further comprising locating the permanent magnet and at least one electrical contact on a cantilever and locating the heater and the ferromagnetic material over a substrate and in which the switch functions as a Reed switch.
14 . A heat actuated switch, comprising:
a substrate;
a moveable element having at least one electrical contact associated therewith;
a permanent magnet in the vicinity of the electrical contact;
a ferromagnetic material in the vicinity of the permanent magnet and associated with the at least one electrical contact;
a heater adjacent the ferromagnetic material, whereby actuating the heater alters the magnetic properties of the ferromagnetic material and causes the moveable element to switch the electrical contact; and
an enclosure surrounding the moveable element, the at least one electrical contact, the permanent magnet, the ferromagnetic material and the heater.
15 . The heat actuated switch of claim 14 , further comprising: a second electrical contact, and wherein the moveable element is a cantilever.
16 . The heat actuated switch of claim 14 , in which the ferromagnetic material is chosen from chromium dioxide (Cr 2 O), yttrium iron garnet (YIG) (Y 3 Fe 5 O 12 ), and magnesium antimonide (MnSb).
17 . The heat actuated switch of claim 14 , in which heating the ferromagnetic material above a Curie temperature causes the moveable element to switch the electrical contact.
18 . The heat actuated switch of claim 17 , in which the moveable element switches the at least one contact in approximately 50 microseconds (μs) when 2 (two) watts (W) is applied to the heater.
19 . The heat actuated switch of claim 17 , in which the moveable element will cycle between two states in approximately 0.1 milliseconds (ms) when 2 (two) watts (W) is applied to the heater.
20 . The heat actuated switch of claim 17 , in which the moveable element switches the at least one contact in approximately 1 millisecond (ms) when 0.16 W is applied to the heater.