Locking device for molded case circuit breakers

Abstract
The invention relates to a locking device mounted directly on a circuit breaker and configured for mounting different locks. The locking device includes a yoke member, a slider member, a handle block and a lock. When the locking device is locked, the handle block abuts the operating handle in an engaged position corresponding to the operating handle in the ON or OFF position. Thus, the locking device locks the circuit breaker in the OFF position or the ON position. The locking device may further comprise a base member disposed between the yoke member and the housing. When it is desired to lock the circuit breaker in the on position, the base member is adapted to cover the push-to-trip button on the housing.
Description




BACKGROUND OF THE INVENTION




The present invention relates generally to the field of circuit breakers and, more particularly, to a locking device for locking the circuit breaker handle in either an on or an off position.




It is frequently necessary to ensure that electrical equipment cannot be operated, for example while maintenance work is being carried out. It is essential to ensure that circuit breakers associated with the equipment are secured in the OFF position to avoid inadvertent operation that can lead to unplanned personnel exposure or equipment damage. Also, it is also often necessary to ensure that equipment is secured in the ON position, to prevent accidental shutdown of machinery, such as refrigeration equipment, life support systems, fire protection devices and continuous processes which require 1-2 days to start (e.g. cement manufacturing). Therefore, the ability to lock the circuit breaker in either the off or the on position is desirable. Further, when the circuit breaker is locked in the on position, an unintentional or purposeful trip of the circuit breaker caused by the pressing of a trip test button is undesirable. In such an instance, an electrical unit is needlessly shut down causing unnecessary time delays and costly down time.




SUMMARY OF THE INVENTION




In an exemplary embodiment of the invention, a locking device for use on a circuit breaker having a housing and an operating handle. The locking device comprising a yoke member fixedly attached to the housing, a slider member slidably engaged to the yoke member, a handle block depending from the slider member and positioned to abut the operating handle in an engaged position, and a first lock arranged to secure the slider member and the handle block in the engaged position. When the locking device is locked, the handle block abuts the operating handle in an engaged position corresponding to the operating handle in the ON or OFF position. Thus, the locking device locks the circuit breaker in the OFF position or the ON position. The locking device may further comprise a base member disposed between the yoke member and the housing. When it is desired to lock the circuit breaker in the on position, the base member is adapted to cover the push-to-trip button on the housing.











BRIEF DESCRIPTION OF THE DRAWINGS





FIG. 1

is an isometric view of a circuit breaker in the off position including the locking device of the present invention;





FIG. 2

is an isometric view of a circuit breaker in the on position including the locking device of

FIG. 1

;





FIG. 3

is an isometric view of the base member of the locking device of FIG.


1


and the top cover of the circuit breaker of

FIG. 1

;





FIG. 4

is an isometric view of the yoke member of the locking device of

FIG. 1

;





FIG. 5

is an isometric view of the slider member of the locking device of

FIG. 1

;





FIG. 6

is a top view of the handle block of the locking device of

FIG. 1

;





FIG. 7

is an isometric view of the cam link of the locking device of

FIG. 1

; and





FIG. 8

is an isometric view of the slider member, yoke member, cam link, figure lock and nut of the locking device of FIG.


1


.











DETAILED DESCRIPTION OF THE INVENTION




Referring to

FIG. 1

, a circuit breaker


10


is shown in the OFF position. Circuit breaker


10


includes a housing, shown generally at


16


. Housing


16


contains mechanical operating components within a circuit breaker case (housing)


11


and electronic components within a circuit breaker cover


12


. The circuit breaker cover


12


is securely fastened to the circuit breaker case


11


. A top cover (not shown) attached to the circuit breaker cover


12


protects the electronic components from the environment. An operating handle


14


extends through an opening


18


in the circuit breaker cover


12


. The handle


14


is movable between an OFF position, at one end of the opening


18


, to an ON position, at the opposite end of the opening


18


. Moving the handle


14


to the OFF position separates a pair of main contacts (not shown) within the circuit breaker


10


to stop the flow of electrical current through the main contacts. Moving the handle


14


to the ON position brings the main contacts into contact to allow the electrical current to flow through the main contacts to a protected load.




A “push to trip” button


70


is located on the circuit breaker cover


12


adjacent the opening


18


. Pressing the “push to trip” button causes the operating mechanism (not shown) within case


11


to trip and separate the main contacts (not shown) stopping the flow of electric current to the protected load. The design and operation of the circuit breaker


10


is known in the art. A locking device


20


is secured to the circuit breaker cover


12


. Locking device


20


locks the handle


14


in either the OFF position, as shown in

FIG. 1

, or the ON position, as shown in FIG.


2


. Locking device


20


includes a base member


22


, a slider member


32


, a yoke member


28


, a handle block


30


and a figure lock


48


.




Referring to

FIG. 3

, the base member


22


is generally planar and includes a platform


80


, a first arm


72


and a second arm


74


. First arm


72


is attached to and projects outward from one end of platform


80


. Second arm


74


is attached to and projects outward from the opposite end of platform


80


. First arm


72


and second arm


74


projects outward from platform


80


in the same general direction. First arm


72


includes a first aperture


24


located at an end of the first arm


72


. Platform


80


includes a second aperture


25


located in an outward comer of the platform


80


proximate to the second arm


74


. Mechanical fasteners are inserted through apertures


24


,


25


and corresponding apertures (not shown) on the circuit breaker cover


12


(

FIG. 1

) to fixedly attach the base member


22


to the circuit breaker cover


12


. The base member


22


is preferably made of a plastic material. Second arm


74


further includes lines of weakness such that the second arm


74


can be manually removed from the platform


80


, preferably at an edge


82


. Edge


82


is generally located where the second arm


74


attaches to platform


80


.




Referring to

FIG. 4

, yoke member


28


is shown having apertures


42


spaced apart and located in a base section


56


. Yoke member


28


is fixedly attached to base member


22


by inserting mechanical fasteners, preferably screws, through apertures


26


of base member


22


(

FIG. 3

) and apertures


42


. Yoke member


28


has a first leg


52


and a generally L-shaped second leg


54


. First leg


52


and second leg


54


extend outward from base section


56


in the same general direction. Second leg


54


has an aperture


50


configured to receive a lock. First leg


52


has three padlock apertures


55


. Padlock apertures


55


are spaced apart such that there is sufficient space between them to accommodate three padlocks (not shown). It is understood and within the scope of this invention that additional padlock apertures


55


can be employed to accommodate additional padlocks.




Referring to

FIGS. 3 and 4

, yoke member


28


is assembled to the base member


22


. Yoke member


28


covers the second aperture


25


of the base member


22


. First aperture


24


is not covered. Therefore, the yoke member


28


covers access to the mechanical fasteners used to fasten the base member


22


to the circuit breaker cover


12


. Thus, when the locking device


20


(

FIG. 1

) is intentionally locked, tampering with the locking device


20


is prevented.




Referring to

FIG. 5

, a slider member


32


includes a first leg


36


, second leg


38


and a base portion


40


. Base portion


40


has three apertures


46


generally lined up along an edge of the base portion


40


. Second leg


38


has two padlock apertures


34


. First leg


36


and second leg


38


extend generally perpendicularly outward from the base portion


40


and in the same general direction. First leg


36


includes an opening, preferably elongated,


70


. Opening


70


employs additional padlocks (not shown). An arm


64


extends from first leg


36


of slider member


32


and includes an aperture


66


. Arm


64


is generally bent towards the first leg


36


.




Referring to

FIGS. 4 and 5

, slider member


32


is arranged to overlie said yoke member


28


for slidable movement. Further, slider member


32


covers access to the mechanical fasteners inserted through apertures


42


of the yoke member


28


and apertures


26


(

FIG. 3

) of the base member


22


(

FIG. 3

) in order to fasten the yoke member


28


to the base member


22


. Therefore, when the locking device


20


is intentionally locked, tampering with the locking device


20


is prevented.




Referring to

FIG. 6

, a handle block


30


, preferably flat and thin in shape, is shown having three apertures


71


and a slot


84


. Slot


84


provides access to mechanical fasteners inserted through apertures


42


of yoke member


28


when locking device


20


is in the unlocked condition. Handle block


30


further includes a first end


76


and a second end


78


. Second end


78


includes an L-shaped bend. Second end


78


ensures that the locking device


20


is locked only in the OFF position or the ON position by obstructing (the slider


32


connected to handle block


30


cannot be slid on yoke


28


unless the handle


14


is in the intended position of locking since it is obstructed by the projection second leg


78


or first end


76


. E.g. when the lock is configured for locking in OFF position and attempted to be used for locking in the ON position) handle


14


.




Referring to

FIGS. 5 and 6

, the arrangement of the slider member


32


and the handle block


30


is described. One aperture


71


of handle block


30


selectively aligns with one aperture


46


of slider member


32


. Mechanical fasteners are inserted through apertures


72


and extend through corresponding selected aligned apertures


46


of slider member


32


. Handle block


30


is positioned such that first end


76


abuts handle


14


(

FIG. 1

) when handle


14


is in the OFF position and second end


78


abuts handle


14


when handle


14


is in the ON position. By changing the position of the handle block


30


relative to the slider member


32


, the operating handle


14


will be locked in either the OFF position or the ON position.




Referring to

FIG. 7

, a cam link


58


is shown with an aperture


60


and a first end


62


. Cam link


58


is part of the locking device


20


(FIG.


1


). Referring to

FIGS. 5 and 7

, first end


62


of cam link


58


is arranged to for insertion into aperture


66


of arm


64


of slider member


32


. Thus, the slider member


32


and the handle block


30


attached to slider member


32


are engagingly attached to the cam link


58


.




Referring to

FIG. 8

, the yoke member


28


and the slider member


32


are shown assembled with the cam link


58


. The first leg


36


and base portion


30


of slider member


32


are positioned proximate to the yoke member


28


and in slidably contact with yoke member


28


. A nut


88


, or other similar mechanical fastener, holds the first arm


62


of cam link


58


in aperture


66


.




The manner in which the operating handle


14


is locked in the desired OFF or ON position will now be described in reference to

FIGS. 1

,


4


and


7


. To lock the operating handle


14


in the desired position, slider member


32


and handle block


30


must be slidably positioned to abut the operating handle


14


as described herein above. The slider member


32


and the handle block


30


must then be prevented from slidable motion. A lock


48


, preferably a figure lock such as sold under the trade name Ronis 1104 and Profalux B24, is used to prevent the slidable motion of the slider member


32


and handle block


30


. A figure lock is a type of lock readily available from companies, such as Castell. The figure lock is a radial pin tumbler lock with up to three raised alpha-numeric symbols on the lock face. These symbols must mate with a mirror image of them machined into the face of a key in order for the key to depress the radial pins and allow the key to rotate the lock center. The figure lock center is available in brass/mazak (a zinc alloy) or stainless steel and is therefore ideally suited for use in harsh or corrosive environments. The figure lock is available with a grand master or part master. Lock


48


is inserted through aperture


50


of yoke member


28


and extends through aperture


60


of cam link


58


. First end


62


of cam link


58


is configured to fit into aperture


66


to prevent movement of the slider member


32


when the lock


48


is installed. Further, the cam link


58


permits lock


48


to be mounted onto the locking device


20


. Therefore, once the lock


48


is installed, the slider member


32


is prevented from movement. The handle block


30


connected to the slider member is also prevented from movement.




As described above in reference to

FIG. 6

, the handle block


30


is positioned to abut either the first end


76


or the second end


78


depending on whether it is desired to lock the circuit breaker


10


(

FIG. 1

) in either the OFF position (shown in

FIG. 1

) or the ON position (shown in FIG.


2


). Since the handle block


30


is locked in the selected position relative to the handle


14


, the handle


14


will be locked in the desired OFF or ON position.




Referring to

FIG. 1

, as an alternative to securing the locking device


20


with lock


48


, a padlock


68


may be used, preferably of 5-8 mm in diameter. Padlock


68


is positioned through padlock apertures


55


of the yoke member


28


that are aligned with corresponding padlock apertures


34


of the second leg


38


of slider member


32


. Padlock apertures


55


and padlock apertures


34


are sufficiently spaced apart from one another such that one to three padlocks


68


may be inserted through each respective padlock aperture


55


and corresponding padlock aperture


34


. Thus, the use of padlock


68


, similar to lock


48


, prevents the slider member


32


and the handle block


30


from slidable motion when the operating handle


14


is locked in the desired ON or OFF position. An authorized user may remove the padlocks


68


or unlock the locks


48


as desired and reconfigure the locking device


20


to switch the circuit breaker


10


from the OFF position to the ON position or visa versa. Locks


48


are unlocked by the authorized user through insertion of a key that disengages the cam link


58


from aperture


66


of arm


64


of slider member


32


. Once unlocked, the slider member


32


is slid on the yoke member


28


in order to move the handle block


30


such that handle


14


is free to switch the circuit breaker


10


ON or OFF. The locking device


20


is then repositioned. The locking device may be re-assembled only if the user wishes to change the mode of locking (from ON to OFF or from OFF to ON).




When the circuit breaker


10


is locked in the ON position with the locking device


20


of the present invention, the “push to trip” button


70


located on circuit breaker cover


12


is preferably covered by the second arm


74


of base member


22


. When the circuit breaker is intentionally locked in the ON position, the ability to access and push the “push to trip” button would defeat the purpose of having the handle


14


locked in the ON position. Thus, when the circuit breaker


10


is intentionally locked in the ON position, the “push to trip” button


70


cannot be pressed and the circuit breaker cannot revert to the OFF position. It should be noted that if the circuit breaker


10


is intentionally locked in the OFF position, second arm


74


of base member


22


is easily removed by authorized field personnel exposing the push to trip button


70


. This is accomplished by manually breaking off the second arm by bending second arm relative to base member


22


at edge


82


that is of a reduced thickness defining the lines of weakness that are formed within the second arm. The reduced thickness forming edge


82


allows separation of second arm


74


from base member


22


at edge


82


because of the elimination of material at edge


82


that define the lines of weakness.




As described herein, the locking device


20


is versatile so that it may be used for locking the handle


14


of the circuit breaker


10


in either the ON position or the OFF position. The locking device


20


is mounted directly on the circuit breaker and authorized users can be readily unlock the selected locks and convert from the OFF position to the ON position or visa versa. Further, all mechanical fasteners holding the locking device


20


to the circuit breaker cover


12


are covered thereby preventing unauthorized tampering with the locking device


20


. Another feature of the present invention is the built-in safety provision within the base member to avoid accidental or purposeful tripping of the circuit breaker


10


when it is locked in the ON position.




While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof Therefore, it is intended that the invention not be limited to the particular embodiment disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all embodiments falling within the scope of the appended claims.



Claims
  • 1. A locking device for use on a circuit breaker having a housing and an operating handle movable between an ON position and an OFF position, the locking device comprising:a yoke member fixedly attached to the housing; a slider member slidably attached to said yoke member; a handle block depending from said slider member, said handle block positioned to abut the operating handle in an engaged position and disengage the operating handle in a disengaged position; and a first lock arranged to secure said slider member and said handle block in the engaged position, wherein said slider member includes a base, a first leg extending from said base, and an arm extending from said first leg, said arm having an aperture and further including a cam link having a first end, said cam link operably connected to said first lock, wherein said aperture in said arm of said slider member configured to receive said first end of said cam link.
  • 2. The locking device of claim 1 wherein said handle block is positioned to abut the operating handle in at least a first and a second engaged position, wherein said handle block prevents the operating handle from moving from the ON position to the OFF position when said handle block is in the first engaged position and prevents the operating handle from moving from the OFF position to the ON position when said handle block is in the second engaged position.
  • 3. The locking device of claim 1 wherein said yoke member includes a first aperture and said first lock is mounted within said first aperture of said yoke member.
  • 4. The locking device of claim 1 further including a base member disposed between said yoke member and the housing, said base member adapted to cover a push-to-trip button on the housing, wherein said base member prevents said push-to-trip button from being depressed.
  • 5. The locking device of claim 1 wherein said arm is U-shaped and inwardly extending.
  • 6. The locking device of claim 4 wherein said base member is formed from plastics material.
  • 7. The locking device of claim 6 wherein said base member includes a first arm extending from one end of said base member and a second arm extending from an opposite end of said base member, said second arm covers said push-to-trip button on the housing, wherein said second arm contains lines of weakness for removing said second arm from said base member.
  • 8. The locking device of claim 7 wherein said second arm is planar.
  • 9. The locking device of claim 1 wherein said first lock is a figure lock.
  • 10. The locking device of claim 1 wherein said yoke member includes a base section and a first leg extending from said base section, said first leg having a first padlock aperture, and further wherein said slider member includes a second leg having a first padlock aperture configured to align with said first padlock aperture in said yoke member for receiving said first lock for securing said slider member and said handle block in the engaged position.
  • 11. The locking device of claim 10 wherein said first lock is a padlock.
  • 12. The locking device of claim 1 wherein said handle block includes an aperture and wherein said slider member includes an aperture, said aperture in said handle block configured to align with said aperture in said slider member for insertion of a mechanical fastener.
  • 13. The locking device of claim 1 wherein said cam link includes an aperture, said first lock inserted through said aperture of said cam link.
  • 14. The locking device of claim 1 further including a fastener connected to said cam link, said fastener arranged to secure said first end of said cam link in said first aperture of said arm.
  • 15. The locking device of claim 1 wherein said handle block having a plurality of apertures and said slider member having a plurality of apertures wherein one of said plurality of apertures in said slider member selectively aligned with one of said plurality of apertures in said handle block to abut said handle block against the operating handle in the engaged position.
  • 16. The locking device of claim 4 wherein said base member having an aperture for receiving a mechanical fastener to fixedly attach said base member to the housing and further wherein said yoke member covers said aperture of said base member to prevent access to said aperture of said base member when the locking device is locked in the engaged position.
  • 17. The locking device of claim 4 wherein said yoke member having an aperture for receiving a mechanical fastener to fixedly attach said yoke member to said base member and further wherein said slider member covers said aperture of said yoke member to prevent access to said aperture of said yoke member when the locking device is locked in the engaged position.
  • 18. A circuit breaker comprising:a housing; an operating handle, extending outwardly from the housing, movable between an ON position and an OFF position; and a locking device including: a yoke member fixedly attached to the housing; a slider member slidably attached to said yoke member; a handle block depending from said slider member, said handle block positioned to abut the operating handle in an engaged position and disengage the operating handle in a disengaged position; and a first lock arranged to secure said slider member and said handle block in the engaged position, wherein said slider member includes a base, a first leg extending from said base and an arm extending from said first leg, said arm having an aperture and further including a cam link having a first end, said cam link operably connected to said first lock, wherein said aperture in said arm of said slider member configured to receive said first end of said cam link.
  • 19. The circuit breaker of claim 18 wherein said handle block is positioned to abut said operating handle in a first and a second engaged position, wherein said handle block prevents said operating handle from moving from the ON position to the OFF position when said handle block is in the first engaged position and prevents said operating handle from moving from the OFF position to the ON position when said handle block is in the second engaged position.
  • 20. The circuit breaker of claim 18 wherein said yoke member includes a first aperture and said first lock is mounted within said first aperture of said yoke member.
  • 21. The circuit breaker of claim 18 wherein said base member includes a first arm extending from one end of said base member and a second arm extending from an opposite end of said base member and adapted to cover a push-to-trip button on the housing, wherein said second arm prevents said push-to-trip button from being depressed, said second arm contains lines of weakness for removing said second arm from said base member.
  • 22. The circuit breaker of claim 18 wherein said arm is U-shaped and inwardly extending.
  • 23. The circuit breaker of claim 21 wherein said base member is formed from plastics material.
  • 24. The circuit breaker of claim 23 wherein said base member includes a first arm extending from one end of said base member and a second arm extending from an opposite end of said base member, said second arm covers said push-to-trip button on the housing, wherein said second arm contains lines of weakness for removing said second arm from said base member.
  • 25. The circuit breaker of claim 24 wherein said second arm is generally planar.
  • 26. The circuit breaker of claim 18 wherein said first lock is a figure lock.
  • 27. The circuit breaker of claim 18 wherein said yoke member includes a base section and a first leg extending from said base section, said first leg having a first padlock aperture, and further wherein said slider member includes a second leg having a first padlock aperture configured to align with said first padlock aperture in said yoke member for receiving said first lock for securing said slider member and said handle block in the engaged position.
  • 28. The circuit breaker of claim 27 wherein said first lock is a padlock.
  • 29. The circuit breaker of claim 18 wherein said handle block includes an aperture and wherein said slider member includes an aperture, said aperture in said handle block configured to align with said aperture in said slider member for insertion of a mechanical fastener.
  • 30. The circuit breaker of claim 18 wherein said cam link includes an aperture, said first lock inserted through said aperture of said cam link.
  • 31. The circuit breaker of claim 18 further including a fastener connected to said cam link, said fastener arranged to secure said first end of said cam link in said first aperture of said arm.
  • 32. The circuit breaker of claim 18 wherein said handle block having a plurality of apertures and said slider member having a plurality of apertures wherein one of said plurality of apertures in said slider member selectively aligned with one of said plurality of apertures in said handle block to abut said handle block against the operating handle in the engaged position.
  • 33. The locking device of claim 21 wherein said base member having an aperture for receiving a mechanical fastener to fixedly attach said base member to the housing and further wherein said yoke member covers said aperture of said base member to prevent access to said aperture of said base member when the locking device is locked in the engaged position.
  • 34. The locking device of claim 21 wherein said yoke member having an aperture for receiving a mechanical fastener to fixedly attach said yoke member to said base member and further wherein said slider member covers said aperture of said yoke member to prevent access to said aperture of said yoke member when the locking device is locked in the engaged position.
CROSS REFERENCE TO RELATED APPLICATIONS

This application is based upon, and claims the benefit of, U.S. Provisional Patent Application No. 60/190,294 filed on Mar. 17, 2000, which is herein incorporated by reference in its entirety.

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Provisional Applications (1)
Number Date Country
60/190294 Mar 2000 US