1460935474-6bc3797f-76bb-4ff4-953e-f17dfc00d445

1. A voltage excursion control system for limiting voltage peaks in electrical circuits otherwise occurring across selected components therein in response to changing conditions in such circuits, the system comprising:
a plurality of silicon carbide diode dice each having an anode and a cathode region therein and each positioned in a spatial succession thereof with each such die being interconnected by an electrically conductive metal bond with each neighbor thereof in the succession such that each cathode region of each die face toward a common end of the succession, and
first and second electrically conductive electrodes each electrically interconnected by an electrically conductive metal bond with a corresponding one of the dice at opposite ends of the succession.
2. The system of claim 1 wherein the electrically conductive metal bond is formed of a gold-germanium alloy.
3. The system of claim 1 wherein that one of the first and second electrodes interconnected to an anode region of a die is so interconnected by one of a pair of extensions provided in that electrode with a gap therebetween in which the succession and the remaining electrode are positioned and further comprising an antiparallel diode die having a cathode region therein electrically interconnected by an electrically conductive metal bond with that remaining one of the pair of extensions and having an anode region therein electrically interconnected by an electrically conductive metal bond with the remaining one of the first and second electrodes.
4. The system of claim 3 wherein the antiparallel diode die is a silicon carbide diode die.
5. The system of claim 3 wherein the electrically conductive metal bond is formed of a gold-germanium alloy.
6. The system of claim 1 wherein the first and second electrodes are electrically connected across the selected components of an electrical circuit, and the selected components comprise a circuit switch.
7. The system of claim 6 wherein that one of the first and second electrodes interconnected to an anode region of a die is so interconnected by one of a pair of extensions in provided in that electrode with a gap therebetween in which the succession and the remaining electrode are positioned and further comprising an antiparallel diode die having a cathode region therein electrically interconnected by an electrically conductive metal bond with that remaining one of the pair of extensions and having an anode region therein electrically interconnected by an electrically conductive metal bond with the remaining one of the first and second electrodes.
8. The system of claim 7 wherein the antiparallel diode die is a silicon carbide diode die.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. An oil boom for preventing dissemination of oil on an aqueous surface, comprising plate elements which by means of hinges disposed at a pair of opposed side edges are arranged to be joined to a continuous wall, wherein the hinges are arranged to exert an angle-increasing force between the plate elements while an adjustable angle delimiting device comprising a line provided with stoppers arranged to be positioned in any desired position along the line, is connected to every second hinge, and is so arranged that an angle between the plate elements only can increase to a certain maximum angle.
2. The oil boom as claimed in claim 1, wherein the angle delimiting device includes a pair of movable stoppers, one stopper beyond each of the hinges disposed at opposed ends of the oil boom.
3. The oil boom as claimed in claim 1, wherein the plate elements are made of a light weight material provided with a ballast disposed at a lower edge of the plate elements.
4. The oil boom as claimed in claim 3, wherein the light weight material is selected from the group consisting of a material of expanded polymer material and expanded light metal.
5. The oil boom as claimed in claim 1, wherein the plate elements substantially comprise rigid, expanded polymer material selected from the group consisting of PVC, polyethylene, and polyurethane.
6. The oil boom as claimed in claim 1, wherein at least one of the hinges comprises a flexible material provided with two pairs of flanges adapted to hold each respective side edge of two adjacent plate elements.
7. The oil boom as claimed in claim 6, wherein the flexibility of the hinge allows an angle change between two adjacent plate elements from approximately 0 degrees to approximately 90 degrees.
8. The oil boom as claimed in claim 6, wherein the flexibility of the hinge allows an angle change between two adjacent plate elements from approximately 0 degrees to approximately 135 degrees.
9. The oil boom as claimed in claim 6, wherein the flexibility of the hinge allows an angle change between two adjacent plate elements from approximately 0 degrees to approximately 180 degrees.
10. The oil boom as claimed in claim 6, wherein the two pairs of flanges meet in an intermediate area and end in a ring shaped area which is internally reinforced by a sleeve of a rigid material, arranged for interaction with the angle delimiting device.
11. The oil boom as claimed in claim 6, wherein the flexible material selected from the group consisting of oil resistant nitrile rubber and a mixture of PVC, nitrile and neoprene.
12. The oil boom as claimed in claim 1, wherein at least one hinge comprises first and second mainly sleeve shaped bodies having different diameters, said second sleeve shaped body received in said first sleeve shaped body, both provided with extending flanges adapted to be attached to a side edge of separate adjacent plate elements.
13. The oil boom as claimed in claim 12, wherein the hinges also are provided with a bracket arranged to interact with the angle delimiting device.
14. The oil boom as claimed in claim 1, wherein the hinges comprise two flexible coupling parts which meet in a splicing socket so arranged that the coupling parts will be aligned with one another when not exposed to external forces.
15. An oil boom for preventing dissemination of oil on an aqueous surface, comprising plate elements which by means of hinges disposed at a pair of opposed side edges are arranged to be joined to a continuous wall, wherein the hinges are arranged to exert an angle-increasing force between the plate elements while an adjustable angle delimiting device is connected to every second hinge and is so arranged that an angle between the plate elements only can increase to a certain maximum angle, and wherein at least one hinge comprises first and second mainly sleeve shaped bodies having different diameters, said second sleeve shaped body received in said first sleeve shaped body, both provided with extending flanges adapted to be attached to a side edge of separate adjacent plate elements.
16. The oil boom as claimed in claim 15, wherein the hinges also are provided with a bracket arranged to interact with the angle delimiting device.
17. The oil boom as claimed in claim 15, wherein at least one of the hinges comprises a flexible material provided with two pairs of flanges adapted to hold each respective side edge of two adjacent plate elements.
18. An oil boom for preventing dissemination of oil on an aqueous surface, comprising plate elements which by means of hinges disposed at a pair of opposed side edges are arranged to be joined to a continuous wall, wherein the hinges are arranged to exert an angle-increasing force between the plate elements while an adjustable angle delimiting device is connected to every second hinge and is so arranged that an angle between the plate elements only can increase to a certain maximum angle, and wherein the hinges comprise two flexible coupling parts which meet in a splicing socket so arranged that the coupling parts will be aligned with one another when not exposed to external forces.
19. The oil boom as claimed in claim 18, wherein at least one of the hinges comprises a flexible material provided with two pairs of flanges adapted to hold each respective side edge of two adjacent plate elements.
20. The oil boom as claimed in claim 18, wherein at least one hinge comprises first and second mainly sleeve shaped bodies having different diameters, said second sleeve shaped body received in said first sleeve shaped body, both provided with extending flanges adapted to be attached to a side edge of separate adjacent plate elements.