MAINTENANCE GROUNDING DEVICE IN MOTOR CONTROL CENTER WITH INTEGRATED INTERLOCK SYSTEM
20230043360 · 2023-02-09
Assignee
Inventors
- Navinchandra Bhatt (Mississauga, CA)
- Paul van Heeswyk (Cambridge, CA)
- John Kay (Kitchener, CA)
- Ashwin Baliga B (Bengaluru, IN)
Cpc classification
H02B1/30
ELECTRICITY
International classification
H02B1/30
ELECTRICITY
Abstract
A motor control center includes an enclosure comprising an isolation switch, a main contactor device, and a ground switch device. The isolation switch is selectively manually operable between a connected state and a disconnected state. In the connected state the isolation switch is adapted to conduct electrical power from an associated power source to the main contactor device and wherein the isolation switch in the disconnected state interrupts conduction of electrical power from the associated power source to the main contactor device. The main contactor device is selectively operable between a conductive state and a non-conductive state, wherein the main contactor device is adapted to electrically connect the isolation switch to the ground switch device and to an associated electrical load when the main contactor device is in its conductive state and wherein the main contactor device disconnects said isolation switch from the ground switch device and the associated electrical load when the main contactor device is in its non-conductive state. The ground switch device is manually operable from an open, ungrounded state in which the main contactor device is electrically disconnected from a ground path to a closed, grounded state in which the main contactor device is electrically connected to the ground path. The motor control center further includes an interlock device operably connected between the isolation switch and the ground switch device, wherein the interlock device prevents movement of the isolation switch from the disconnected state to the connected state when the ground switch device is in the grounded state.
Claims
1. A ground switch interlock system for electrical equipment, said ground switch interlock system comprising: an isolation switch selectively manually operable between a connected state and a disconnected state, wherein said isolation switch in said connected state is adapted to conduct electrical power and wherein said isolation switch in said disconnected state interrupts conduction of electrical power; an isolation switch handle operably connected to said isolation switch, said isolation switch handle movable between an “off” position corresponding to said disconnected state of said isolation switch and an “on” position corresponding to said connected state of said isolation switch; a ground switch device manually operable from an open, ungrounded state in which said main isolation switch is electrically disconnected from a ground path to a closed, grounded state in which said isolation switch is electrically connected to said ground path; an interlock plunger operably connected to said handle through an interlock linkage and movable to and between a retracted position corresponding to said “off” position of said isolation switch handle and an extended position corresponding to said “on” position of said isolation switch handle; said interlock plunger blocking movement of said ground switch device from said open, ungrounded state to said closed, grounded state when said interlock plunger is in said extended position.
2. The ground switch interlock system as set forth in claim 1, wherein said ground switch device comprises a first lock block that blocks movement of said interlock plunger from said retracted position to said extended position when said ground switch device is in said closed, grounded state.
3. The ground switch interlock system as set forth in claim 2, wherein said first lock block comprises a first recess that is aligned with and that receives said interlock plunger when said interlock lock plunger is in said extended position.
4. The ground switch interlock system as set forth in claim 3, wherein said first recess is aligned with and receives said interlock plunger only when said ground switch device is in said open, ungrounded state.
5. The ground switch interlock system as set forth in claim 3, wherein: said ground switch device comprises at least one movable ground contact that moves between an opened position in said ungrounded state to a closed position in said grounded state.
6. The ground switch interlock system as set forth in claim 5, wherein said interlock plunger blocks movement of said at least one movable ground contact from said opened position to said closed position when said interlock plunger is in said extended position.
7. The ground switch interlock system as set forth in claim 6, wherein said at least one movable ground contact is connected to a rotatable ground shaft that is electrically connected to said ground path, said ground switch device comprising a main gear connected to said ground shaft and an output gear engaged with said main gear; wherein said first lock block is non-rotatably coupled with said output gear such that rotation of said ground shaft alters an angular position of said first lock block; said first lock block located in a select angular position in which said first lock recess is aligned with said interlock plunger when said ground shaft is rotated to a position corresponding to said opened position of said at least one ground contact.
8. The ground switch interlock system as set forth in claim 7, further comprising an input gear engaged with said main gear, wherein said input gear is non-rotatably connected to a torque input head that is selectively manually rotatable to rotate said input gear, said main gear, and said output gear.
9. The ground switch interlock system as set forth in claim 8, further comprising a first key interlock device operable by a key between a locked state and an unlocked state, wherein said first key interlock blocks rotation of said input gear of said ground switch device when said first key interlock device is in said locked state.
10. The ground switch interlock system as set forth in claim 9, further comprising a second key interlock device operable by said key between a locked state and an unlocked state, wherein said second key interlock device selectively blocks movement of said isolation switch handle when said second key interlock device is in said locked state, wherein: said key that operates said first key interlock device and said second key interlock device is a single, common key; when one of the first and second key interlock devices is in said locked state the other of the first and second key interlock devices in in said unlocked state; said key is captured in said one of said first and second key interlock devices that is in said unlocked state such that said one of said first and second key interlock devices in said unlocked state must be moved to said locked state before said other of said first and second key interlock devices can be moved to said unlocked state using said key.
11. The ground switch interlock system as set forth in claim 10, further comprising a second lock block non-rotatably coupled to said input gear, said first key interlock comprising a lock member that engages and prevents rotation of said second lock block when said lock member is in an extended position and said ground switch device is in its opened, ungrounded state.
12. The ground switch interlock system as set forth in claim 11, wherein said ground switch device is located on a load side of said isolation switch.
13. The ground switch interlock system as set forth in claim 11, wherein said ground switch device comprises: first, second, and third ground terminals electrically connected respective first, second, and third electrical phases of said main contactor; said at least one moveable ground contact comprises first, second, and third ground contacts that respectively contact said first, second, and third ground terminals when said first, second, and third ground contacts are in their respective closed positions.
14. The ground switch interlock system as set forth in claim 13, wherein said first, second, and third ground terminals are respectively vertically aligned with said first, second, and third ground contacts.
15. The ground switch interlock system as set forth in claim 14, wherein: said ground switch device is located vertically above or vertically below said main contactor device; said main contactor device comprises first, second, and third contactors electrically connected respectively to said first, second, and third ground terminals; and, said first, second, and third ground terminals are horizontally spaced-apart from each other in a row so that said first, second, and third ground terminals are visually associated with said first, second, and third contactors, respectively.
16. An interlock system for electrical equipment, said interlock system comprising: an isolation switch selectively operable between a connected state and a disconnected state, wherein said isolation switch in said connected state is adapted to conduct electrical power and wherein said isolation switch in said disconnected state interrupts conduction of electrical power; a handle operably connected to said isolation switch, said handle movable between an “off” position corresponding to said disconnected state of said isolation switch and an “on” position corresponding to said connected state of said isolation switch; a ground switch device operable from an open, ungrounded state in which said main isolation switch is electrically disconnected from a ground path to a closed, grounded state in which said isolation switch is electrically connected to said ground path; an interlock plunger operably connected to said handle and moved to a retracted position when said handle is in said “off” position and an extended position when said handle is in said “on” position; said interlock plunger blocking movement of said ground switch device from said open, ungrounded state to said closed, grounded state when said interlock plunger is in its extended position.
17. The interlock system as set forth in claim 16, wherein said ground switch device comprises a first lock block that blocks movement of said interlock plunger from said retracted position to said extended position to prevent movement of said handle from said “off” position to said “on” position when said ground switch device is in said closed, grounded state.
18. The interlock system as set forth in claim 17, wherein said first lock block comprises a first recess that is aligned with and that receives said interlock plunger when said interlock plunger is in its extended position only when said ground switch device is in its open, ungrounded state.
19. The interlock system as set forth in claim 18, wherein: said ground switch device comprises at least one movable ground contact that moves between an opened position in said ungrounded state to a closed position in said grounded state; said at least one movable ground contact is connected to a rotatable ground shaft that is electrically connected to said ground path, said ground switch device comprising a main gear connected to said ground shaft and an output gear engaged with said main gear; wherein said first lock block is non-rotatably coupled with said output gear such that rotation of said ground shaft alters an angular position of said first lock block; said first lock block is located in a select angular position in which said first lock recess is aligned with said interlock plunger when said ground shaft is rotated to a position corresponding to said opened position of said at least one ground contact.
20. The interlock system as set forth in claim 19, further comprising an input gear engaged with said main gear, wherein said input gear is non-rotatably connected to a torque input head that is selectively manually rotatable to rotate said input gear, said main gear, and said output gear to move said at least one movable ground contact between said opened position and said closed position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION
[0019]
[0020] The isolator IS comprises and/or is operably connected to an isolator handle IH through which an operator manually controls the operative state of the isolation switch IS. The isolator handle IH pivots between at least a first or “off” position (typically pivoted downward a maximum extent) as shown where the isolator switch IS is opened and disconnected from the incoming power terminals T (a disconnected state) and a second or “on” position (typically pivoted upward a maximum extent) where the isolator switch IS is closed or connected to the incoming power terminals T (a connected state). The isolator handle IH is operably mechanically connected to the isolator switch IS through an isolator switch linkage ISL that opens and closes the isolator IS in response to movement of the handle IH between its first and second operative positions.
[0021] The motor control center M further comprises a main contactor device CX that is electromechanically or otherwise operable to selectively conduct electrical power from the source terminals T to an associated motor or other load (a closed or conductive state) or to disconnect the motor or other load from the electrical power supplied by terminals T (an opened or non-conductive state). The main contactor device CX comprises a plurality of contactors corresponding in number to the number of power phases (i.e., three contactors X1,X2,X3 for three-phase power) electrically connected (when the isolator IS is closed) on an input side to the power terminals T and that are connected or adapted to be connected on an output side or “load side” to the motor(s) or other load(s) LD (
[0022] The motor control center M also comprises a ground switch or ground switch device GS that is selectively manually operable to connect the load side of the main contactor CX (i.e., the load side of the contactors X1-X3 of the main contactor CX) to a ground path GP (
[0023] With continuing reference particularly to
[0024] The ground shaft GSX is manually rotatable using a wrench or other tool TL that is removably connected to a rotatable torque input head HX. The torque input head HX is connected to and rotates with an input gear GR1 that is drivingly engaged with the ground shaft GSX such that manually rotation of the torque input head HX in first and second directions correspondingly rotates the input gear GR1 and also the ground shaft GSX in first and second angular directions. As shown herein the input gear GR1 is non-rotatably connected to an input shaft GR1X that is rotatably supported relative to the enclosure E, and the torque input head HX is non-rotatably connected to and/or forms a part of the input shaft GR1X. In the illustrated embodiment, a main gear GR2 such as a bevel gear is non-rotatably connected to the ground shaft GSX and is engaged with the input gear GR1 which acts as a pinion gear to drive the main gear GR2 and ground shaft GSX in the first and second angular directions to open and close the ground contacts GC1-GC3. The ground switch device GS further comprises an output gear or driven gear GR3 that is drivingly engaged with the main gear GR2 and that rotates in first and second opposite directions in response to rotation of the main gear GR2. In particular, the driven gear GR3 rotates in opposite directions as compared to the input gear GR1 such that the driven gear GR3 rotates in second and first opposite directions when the input gear GR1 rotates in first and second directions, respectively. The gears GR1-GR3 define a ground switch device gear train.
[0025] The ground switch GS comprises at least one and optionally first and second interlock devices for preventing closing of the ground switch contacts GC1-GC3 when the isolator switch IS is closed and for preventing closing of the isolator switch IS when the ground switch contacts GC1-GC3 are closed. In particular, the ground switch comprises a first interlock device IX1 (sometimes referred to herein as the “isolator interlock device”) and optionally also includes a second interlock device IX2 (sometimes referred to herein as the “key interlock device”).
[0026] The first (isolator) interlock device IX1 comprises a first lock base or lock block B1 that is non-rotatably connected to the driven output gear GR3. As shown, the driven output gear GR3 is non-rotatably connected to an output shaft GR3X that is rotatably supported relative to the enclosure E, and the first lock block B1 is non-rotatably connected to the output shaft GR3X so as to rotate in unison with the output gear GR3. The first lock block B1 can be non-circular and comprise a plurality of flat surfaces. The first lock block B1 comprises a first lock recess RC1.
[0027] The first interlock device IX1 further comprises an interlock member such as an interlock member or interlock plunger LP1 that is connected to an isolation switch interlock linkage IXL that is operatively connected to the isolator switch handle IH. Due to the interlock linkage IXL, movement of the isolator switch handle IH from the first (off) position to the second (on) position induces movement of the interlock plunger LP1 in a first direction D1 toward the lock block B1 (downward in a typical installation) to a deployed or extended position as shown in
[0028] The first lock block B1 is conformed and dimensioned to block and prevent movement of the interlock plunger LP1 in the first direction D1 for all angular positions of the lock block B1 except when the lock recess RC1 is located in a select plunger receiving position where the lock recess RC1 is registered or aligned with the interlock plunger LP1. When the interlock plunger LP1 is located in the first lock recess RC1, the isolator interlock device IX1 is in its “engaged” position where it prevents operation of the ground switch device GS and when the interlock plunger LP1 is retracted and withdrawn from the lock recess RC1 the isolator interlock device IX1 is in its “disengaged” position where it allows operation of the ground switch device GS.
[0029] When the isolator interlock is disengaged and moved toward its engaged position, contact between the interlock plunger LP1 and the first lock block B1 blocks movement of the interlock plunger LP1 in the first direction D1 which, in turn, blocks movement of the isolator handle to its “on” (conducting) position except when the lock recess RC1 is aligned with the interlock plunger LP1. The first lock block B1 is keyed in a select angular position on the output shaft GR3X such that the lock recess RC1 is only located in the interlock plunger receiving position where it is aligned with and open to receive the interlock plunger LP1 when the ground switch GS is located or arranged in its opened (non-conducting) position, i.e., when the ground contacts GC1-GC3 are open. Thus, when the lock recess RC1 is aligned with the interlock plunger LP1, the interlock plunger LP1 is able to move in the direction D1 into the lock recess RC1 (to engage the isolator interlock device IX1) which allows the isolator handle IH to move to its “on” (conducting) position. Furthermore, those of ordinary skill in the art will recognize that the lock recess RC1 is conformed and dimensioned to receive the interlock plunger LP1 therein in a manner such that, when the isolator interlock system IX1 is engaged, the interlock plunger LP1 abuts and prevents rotation of the lock block B1 and, consequently, also prevents rotation of the output gear GR3, main gear GR2, and ground shaft GSX when the interlock plunger LP1 is received and seated in the lock recess RC1. In this manner, the ground switch is restrained in its opened (non-conducting) state when the isolator handle IH is located in its second (on) position corresponding the closed (conducting) state of the isolator switch IS to prevent closing of the ground contacts GC1-GC3 when the isolator switch is in a conductive state. The interlock plunger LP1 is shown as being moved linearly in the first and second opposite directions D1,D2 by the interlock linkage IXL, but those of ordinary skill in the art will recognize that the interlock plunger can alternatively move along a non-linear path between its retracted and deployed positions.
[0030] The second (key) interlock device IX2 similarly comprises a second lock member or second lock block B2 that is non-rotatably connected to the input gear GR1. As shown, the input gear GR1 is non-rotatably connected to the input shaft GR1X that is rotatably supported relative to the enclosure E, and the second lock block B2 is non-rotatably connected to the input shaft GR1X so as to be non-rotatably coupled to and rotate in unison with the input gear GR1. The second lock block B2 can be non-circular and comprise a plurality of flat surfaces. The second lock block B2 comprises a second lock recess RC2 (see
[0031] The key interlock device IX2 further comprises an interlock member such as a keylock plunger or other lock member LP2 that is connected to a key-lock assembly LA that is operated with a removable key K. The lock assembly LA is secured to the enclosure E. When the key K is operably engaged in the lock assembly LA, rotational movement of the key K in a first direction from a first (unlocked) position to a second (locked) position induces movement of the lock member LP2 in an extension direction Z1 (
[0032] The key K is trapped or captured in the lock assembly LA while the lock assembly LA is in its unlocked condition and can only be removed from the lock assembly LA when the lock assembly LA is in its locked condition. This allows the key K to be used in a shared-key interlock system where the same key K is used to operate first and second key interlock devices to ensure that only one of the key interlock devices is unlocked at any given time.
[0033] Another advantage of a ground switch interlock system IK provided in accordance with an embodiment of the present development is that, unlike known systems, the ground switch device GS is located on the load-side of the main contactor CX, i.e., electrically between the motor or other associated load LD being powered by the motor control center M and the contactors X1-X3 of the main contactor CX. As shown in
[0034]
[0035] The physical position of the ground switch device GS relative to the main contactor CX can be altered such as by locating the ground switch device GS vertically above the main contactor CS as shown for the motor control center M′ in
[0036] In the preceding specification, various embodiments have been described with reference to the accompanying drawings. It will, however, be evident that various modifications and changes may be made thereto, and additional embodiments may be implemented, without departing from the broader scope of the invention as set forth in the claims that follow. The specification and drawings are accordingly to be regarded in an illustrative rather than restrictive sense.