Drive system for a resettable interrupting switch
A drive system for a single-phase switch includes: a first latch device; a trip latch device coupled to the first latch device; and a crank device coupled to the trip latch device and configured to control a switch actuation device to perform an open operation or a close operation in a switch. The trip latch device moves laterally during the open operation and during the close operation.
1 . A drive system for a single-phase switch, the drive system comprising:
a first latch device;
a trip latch device coupled to the first latch device; and
a crank device coupled to the trip latch device and configured to control a switch actuation device to move a moveable electrical contact of a switch relative to a fixed electrical contact of the switch, wherein the trip latch device moves laterally during an ordinary open operation of the switch and during an ordinary close operation of the switch, and the trip latch device moves during a trip operation of the switch.
2 . The drive system of claim 1 , wherein the trip latch device comprises at least one moveable pivot point, the trip latch device does not change shape during the ordinary open operation or the ordinary close operation, and the trip latch device changes shape during the trip operation.
3 . The drive system of claim 1 , further comprising a drive toggle coupled to the first latch device.
4 . The drive system of claim 3 , wherein the drive toggle is coupled to an operating interface; and the operating interface is configured to operate the drive system in response to receiving an input to thereby cause the moveable electrical contact to move relative to the fixed electrical contact.
5 . The drive system of claim 4 , wherein the operating interface is configured for manual operation, and the input comprises a manual input.
6 . The drive system of claim 4 , wherein the operating interface is configured for electronic operation, and the input comprises an electronic input.
7 . The drive system of claim 1 , further comprising a trip actuation device configured to act on the trip latch device; and wherein the crank device controls the switch actuation device to move the moveable electrical contact relative to the fixed electrical contact to perform the trip operation in the switch in response to the trip actuation device acting on the trip latch device.
8 . The drive system of claim 7 , wherein the trip actuation device comprises a trigger device that, when activated, causes the trip actuation device to act on the trip latch device by moving the trip latch device.
9 . The drive system of claim 8 , wherein the trigger device is activated based on a measured amount of electrical current flowing in the switch.
10 . The drive system of claim 9 , wherein the trigger device comprises an electromagnetic actuator and a moveable element controlled by the electromagnetic actuator; and, when activated, the electromagnetic actuator causes the moveable element to make contact with the trip latch device to move the trip latch device into a released position.
11 . The drive system of claim 1 , wherein each of the first latch device and the trip latch device comprises at least one mechanical linkage.
12 . The drive system of claim 11 , wherein the trip latch device comprises: first and second mechanical linkages; the first mechanical linkage is connected to the crank device at a first moveable pivot point and to the second mechanical linkage at a second moveable pivot point; and the second mechanical linkage is coupled to the first latch device at a fixed pivot point.
13 . The drive system of claim 12 , wherein each moveable pivot and each fixed pivot point comprises a movement enhancement device.
14 . The drive system of claim 1 , wherein the first latch device comprises an over-toggle latch; and the trip latch device comprises a trip over-toggle latch coupled to a linear tension spring.
15 . An electrical apparatus comprising:
a switching system comprising:
a first electrical contact;
a second electrical contact; and
a switch actuation device controllable to move the second electrical contact relative to the first electrical contact; and
a drive system comprising:
a first latch device;
a trip latch device coupled to the first latch device; and
a crank device coupled to the trip latch device and configured to control the switch actuation device to move the second electrical contact relative to the first electrical contact, wherein the trip latch device moves laterally without substantially changing shape during an ordinary open operation of the switching system and during an ordinary close operation of the switching system.
16 . The electrical apparatus of claim 15 , wherein the drive system is configured to hold the drive actuation device such that the second electrical contact only moves relative to the first electrical contact during the ordinary open operation, the ordinary close operation, or a trip operation.
17 . The electrical apparatus of claim 15 , wherein the trip latch device comprises a plurality of moveable pivot points, the trip latch device maintains a substantially linear shape during the ordinary open operation or the close operation, and the trip latch device changes shape during a trip operation.
18 . The electrical apparatus of claim 15 , wherein the switching system has a current interruption rating of up to 25 kiloamperes (kA) and a voltage rating of 4 kilovolts (kV) to 38 kV.
19 . The electrical apparatus of claim 15 , wherein the switching system is a solid dielectric switch.
20 . A system comprising:
a plurality of single-phase switches, each switch configured to be coupled to one phase of a multi-phase alternating current (AC) power system and each switch comprising:
a first electrical contact;
a second electrical contact; and
a switch actuation device controllable to move the second electrical contact relative to the first electrical contact; and
a plurality of drive systems, each drive system comprising:
a first latch device;
a trip latch device coupled to the first latch device; and
a crank device coupled to the trip latch device and configured to control the switch actuation device of one of the single-phase switches to move the second electrical contact relative to the first electrical contact of the one of the single-phase switches, wherein the trip latch device moves laterally without substantially changing shape during an ordinary open operation and during an ordinary close operation.
21 . The system of claim 20 , wherein each drive system further comprises a manual operating interface coupled to the first latch device, the manual operating interface of each drive system is a handle, and each handle is configured for simultaneous manual operation such that the second electrical contacts of all of the single-phase switches move relative to the respective first electrical contact simultaneously in response to operation of the handles.
22 . The system of claim 20 , wherein each drive system further comprises a trip actuation device configured to act on the trip latch device to drive the crank device of the one of the single-phase switches in response to an indication of a fault condition, and the trip actuation devices are configured for simultaneous operation such that all of the single-phase switches trip simultaneously in response to the fault condition.