US3134877A - Panelboard switch unit - Google Patents

Panelboard switch unit Download PDF

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US3134877A
US3134877A US15964A US1596460A US3134877A US 3134877 A US3134877 A US 3134877A US 15964 A US15964 A US 15964A US 1596460 A US1596460 A US 1596460A US 3134877 A US3134877 A US 3134877A
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Prior art keywords
contact
contact arm
switch
enclosure
operating
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US15964A
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Eric A Ericson
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General Electric Co
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General Electric Co
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/26Casings; Parts thereof or accessories therefor
    • H02B1/30Cabinet-type casings; Parts thereof or accessories therefor
    • H02B1/32Mounting of devices therein
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H1/00Contacts
    • H01H1/12Contacts characterised by the manner in which co-operating contacts engage
    • H01H1/14Contacts characterised by the manner in which co-operating contacts engage by abutting
    • H01H1/18Contacts characterised by the manner in which co-operating contacts engage by abutting with subsequent sliding
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H3/00Mechanisms for operating contacts
    • H01H3/001Means for preventing or breaking contact-welding
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H71/00Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
    • H01H71/02Housings; Casings; Bases; Mountings
    • H01H71/0264Mountings or coverplates for complete assembled circuit breakers, e.g. snap mounting in panel
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H71/00Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
    • H01H71/10Operating or release mechanisms
    • H01H71/1009Interconnected mechanisms
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/10Adaptation for built-in fuses
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/22Interlocking, locking, or latching mechanisms for interlocking between casing, cover, or protective shutter and mechanism for operating contacts
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/20Bus-bar or other wiring layouts, e.g. in cubicles, in switchyards
    • H02B1/21Bus-bar arrangements for rack-mounted devices with withdrawable units
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/18Disposition or arrangement of fuses

Definitions

  • My invention relates to panelboard subassemblies or units and particularly to panelboard units of the switch and cartridge-fuse type, adapted to be mounted with other similar units within a larger enclosure to provide a panelboard.
  • Panelboard units of the switch and cartridge-fuse type in the past have been limited as regards their switching capacity. Such structures have also been relatively large and cumbersome, and the size and capacity thereof cannot readily be varied. Such switch structures are also basically of the slow-make, slow-break type, and considerable complication and expense is required to provide a mechanism suitable for use therewith adapted to give a quick-make, quick-break or snap action.
  • I provide a panelboard unit including a number of separately housed selfcontained switching devices of the snap-acting type, one for each pole or phase of a multiphase circuit, each being separately mounted and including its own operating member and are extinguishing structure, all such devices being assembled in a common outer housing provided with means for operating all of such devices simultaneously from outside the housing.
  • I provide a plurality of individual insulating housings each containing two independent snap-acting switches in endto-end relation having adjacent electrically common stationary contacts, the housings being mounted in side-byside relation to form two rows of switches, the switches in each row being ganged together for common movement to provide two multipole snap-acting switches, and two separate operating means for operating such multipole switches from outside the unit housing.
  • FIGURE 1 is a top plan view of a panel board unit embodying my invention
  • FIGURE 2 is a side elevation view of the unit of FIG- URE 1, partly in section;
  • FIGURE 3 is a fragmentary view showing particularly the cover interlock arrangement used with the unit of FIGURE 1;
  • FIGURE 4 is a perspective view of one of the switch unit housings utilized in the invention of FIGURE 1, one switch mechanism being shown in place;
  • FIGURE 5 is a top plan view of a switching unit of increased capacity
  • FIGURE 6 is a fragmentary perspective view of a portion of the manual operating mechanism of the panelboard unit of FIGURE 1;
  • FIGURE 7 is a detail view on enlarged scale of a portion of the operating mechanism shown in FIGURE 6;
  • FIGURE 8 is a side elevation view of the embodiment of my invention shown in FIGURE 10;
  • FIGURE 9 is a top plan view similar to FIGURE 1 but with the covers of the outer enclosure removed;
  • FIGURE 10 is a top plan View of another embodiment of my invention.
  • FIGURE 11 is a side elevation view partly in section of the embodiment of FIGURE 10;
  • FIGURE 12 is a detail view of a portion of the switch operating mechanism of FIGURE 10;
  • FIGURE 13 is a fragmentary view of the cover interlocking mechanism used in the embodiment of FIG- URE 10;
  • FIGURE 14 is a view similar to FIGURE 13 but showing the parts in interlocked condition
  • FIGURE 15 is a side elevation view, a modified form of the operating mechanism of FIGURE 11 shown in the circuit closed condition;
  • FIGURE 16 is a view similar to FIGURE 15, but with the mechanism shown in the circuit open position in full lines, a portion thereof being shown in an intermediate position.
  • the enclosure 10 is provided with elongated generally rectangular openings in the back wall 10a, and each insulating body 13 includes a base portion 13a adapted to extend through one of these openings, substantially filling the opening and projecting a short distance beyond the back wall 10a.
  • the base portion 13a includes a shoulder 13b adapted to underlie the back wall of the enclosure 10 at one end of the block 13, and a shoulder 13c adapted to be retained in mounted position by means of a locking tab- 14 at the other end.
  • the upper or main portion of the insulating body 13 is wider than the bottom portions 13a, thereby presenting shoulder 13d (FIGURE 4) adapted to rest on the inner surface of the back wall of the enclosure.
  • the insulating body 13 is assembled from the interior of the enclosure by first inserting the shoulder 13b under the back wall, then setting the body flush on the back wall and locking it in place with tab 14.
  • Each of the insulating blocks 13 is provided with two end-to-end elongated generally rectangular recesses 15 and 16 (see FIGURE 4) extending down from the top and substantially completely from end-to-end thereof and separated from each other by a barrier portion 17.
  • Each of the recesses 15 and 16 contains a fuse connector 18 at one end thereof and a relatively stationary contact 19 on the back wall of the recess at the other end thereof.
  • each switch mechanism 20 includes a frame 21 mounted within the recess 15 by suitable means such as by rivets or screws 22.
  • a switch arm 23 is mounted on a fixed pivot 24 in the frame 21 and carries a movable contact 25 adapted to engage and disengage the stationary contact 19.
  • a pair of toggle links 31 and 32, interconnected by a knee pin 34, is provided between the switch arm 23 and fixed member 21'.
  • the toggle links 31, 32 are each double members, comprising a link extending along each side of the relatively thin flat member 21.
  • the operating mechanism further includes an operating member 35 pivoted on a fixed pivot 36 carried by the frame 21 and connected by a pair of tension springs 37 to the knee pin 34 of the toggle linkage.
  • the springs 37 are adapted to be moved from one side to the other of the pin 34 as the operating member 35 is moved between on" and off position. In the on position, the tension springs cause the toggle links 31 and 32 to move to a straightened position, thereby rotating the switch arm 23 in a clockwise direction and forcing the movable contact 25 into engagement with the stationary contact 19.
  • the tension springs 37 cause the toggle links 31 and 32 to move to the collapsed position, moving the switch arm 23 counterclockwise to the open circuit position.
  • an arc extinguishing assembly including a plurality of spaced arc extinguishing plates 41 preferably of magnetic material, adapted to draw the are the'rebetween and to cool and quickly extinguish it.
  • the are extinguishing plates 41 are carried by generally U-shaped insulating side wall members 42.
  • the stationary contacts 19 in the recesses and 16 are mounted on opposite ends of a common terminal plate 43, and the insulating block 13 is provided with an aperture in its back wall adjacent the midpoint of the plate 43. Since the block 13 itself projects through the back wall 10a of the enclosure 10, connection may be readily made to the stationary contact 19 such as by a connecting strap S extending through the back wall of the enclosure 10.
  • the relative position of main bus bars, A, B and C is shown in dotted lines in FIGURE 2.
  • the strap S is shown as connecting one plate 43 to bus bar B. Connection is similarly made between the other two plates 43 and the other bus bars A and C, by means of offset straps (not shown).
  • the movable contact is connected by means of a suitable flexible conductor 46 to a fuse connector 18 positioned in the opposite end of the recess from the stationary contact 19.
  • I provide insulating tie bars or ganging means 48.
  • I provide additional insulating bases 49 and 50 adapted to support additional fuse connectors 51 and 52 in alignment with the fuse connectors 18 carried by the block 13.
  • the fuse connectors 51, 52 are connected to load terminal connectors 53 and 54, to which wires or cables leading to the loads to be controlled may be connected.
  • the end walls 11 are preferably left open, it being understood that the enclosure 10 is to be mounted in a larger enclosure housing a complete panelboard.
  • a bridging member 55 adapted to be mounted across the central portion of the enclosure 10 by suitable means such as by screws 56 and carrying thereon an insulating shield 57 adapted to overlie all the arc chute chambers and mechanisms 20, including the handles and ganging means 48.
  • the insulating blocks 13 are preferably spaced apart and the insulating shield 57 is provided with slot-like openings 58 for the purpose of providing restricted access to the ganging members 48 for operation in a manner to be described.
  • I further provide two partial covers 59 and 60 hinged across the end Walls of the enclosure 10 and adapted to meet and partially overlap the central bridging member 55 to completely close the front of the enclosure 10.
  • I provide operating mechanism including an operating handle 61 pivotally supported in each of the covers 59 and 60.
  • Each operating handle 61 is anchored by means of bolts 61A to a plate 61B (see FIGURE 6) carrying an eccentric bolt 62 which in turn extends through slot 63 in a sliding plate 64.
  • the movement of the plate 64 is further guided by members 65 carried by cover 59 and having an offset portion extending through slot 66.
  • the plate 64 is also provided with depending bifurcated portions 68 which, when the covers 59 and 60 are closed, enter the slot-like openings 58 in the shields 57 and engage the tie bar 48, to operate the same between open and closed positions as the plates 64 slide back and forth in response to rotation of the handles 61 respectively.
  • the plates 64 are each provided with a forward extension 64a, which is adapted to extend under the bridging member 55 when the handle 61 and sliding plate 64 are in on position. This provides a safety interlock, making it impossible to open the covers 59 and 60 when the corresponding handle is in the on position.
  • the covers 59 and 60 are also provided with a second interlocking means comprising resilient strips 69 having a retaining hook portion adjacent the outer end thereof.
  • a second interlocking means comprising resilient strips 69 having a retaining hook portion adjacent the outer end thereof.
  • FIGURE 9 I have shown a top plan view of a panel board unit as shown in FIGURES 1 and 2, the top covers and bridging portion being removed to show the relative positions of the three insulating blocks and associated parts.
  • the length of the enclosure 10 and the spacing between the blocks 13 and the end blocks 49 and 50 may be varied to provide for accepting fuses of varying length.
  • FIGURE 5 I have shown a modified form of my invention including an insulating body 13' having a single enlarged recess therein adapted to receive and mount therein two switch operating mechanisms 20 in side-by-side relation.
  • the contact arms 23 of each of the switch mechanisms 20 are connected in common to the fuse socket 18' which socket is adapted to receive a cartridge fuse having a knife blade type terminal rather than a ferrule type terminal.
  • the two stationary contacts 19 are also connected electrically in common to a back terminal 43.
  • the contact arms 23 are supported on a common pivotal axis member 70 which is noncircular and which prevents appreciable movement of one contact arm without corresponding movement of the other.
  • the operating members 35 are likewise ganged together by ganging means similar to ganging means 48 of FIGURES l and 2. Because of the double mechanism and contact arrangement provided and described, this unit is able to handle currents equal to twice the capacity of the units of FIGURES 1 and 2. Three of these units when ganged together in side-by-side relation similarly to the arrangement shown in FIGURES 1 and 2 provide a three-pole switch of correspondingly increased rating. By means of the common noncircular support of the switch contact arms common action of the arms is assured even if the operating springs of one mechanism should fail.
  • FIGURES 8 and 10-14 I have shown my invention as embodied in an assembly adapted to handle substantially larger amounts of current, such, for instance, as
  • a mechanism is provided of the same general type as the mechanism of the form of FIGURE 1 but including several important improvements whereby it is adapted to handle larger currents and to positively move the movable contact in case of contact welding.
  • This form is preferably constructed as a single branc unit, that is, the enclosure contains only one set of three switch and fuse units.
  • the enclosure 10 is however preferably made identical in length and height with the enclosure 10 of the form of FIGURES 11-9, so that both units may be mounted in the same panelboard assembly.
  • Operating mechanism comprises a supporting frame member 21' having enlarged apertures 75 in opposed portions of the side walls thereof.
  • An operating member 35 is pivotally supported on a pivot pin 76 carried by the side frame 21.
  • Toggle links 31' and 62 are pivoted respectively in the side walls of the frame 21 at 33' and on the contact arm 23 and have their adjacent ends joined by a toggle knee pin 34.
  • An operating spring 71 is connected between the bight of the operating member 35' and the knee pin 34' of the toggle links.
  • toggle links are pivoted directly to the side walls of the frame member 21' at 33' and that a single operating spring 71' is provided between the double sides of the toggle links.
  • a single operating spring 71' is provided between the double sides of the toggle links.
  • the operating member 35' extends outside the supporting frame 21' and the side portions thereof are provided with apertures 35A (see FIGURE 12).
  • the upper toggle links 3 1' are provided with pins 32A extending within the apertures 35A.
  • the length of each aperture 35A is made slightly less than the total travel of the operating member 35 at the corresponding point. Accordingly, as the operating member 35 is moved toward on position, the pin 32A is picked up by the portion of member 35' at one end of the aperture 35A and if the operating spring has not passed over center, the operating member 35 forcibly moves the upper toggle links toward straightened or over set condition.
  • the enclosure 10' is provided with a two-part top wall, one part ltiA' being relatively stationary and immovable, and the other part 1013' comprising a door hinged at the opposite end of the enclosure to provide access to the fuses.
  • the operating handle 61 is preferably mounted on the stationary portion 10A of the top wall.
  • FIGURES 13 and 114 I have shown the form of cover interlock used for the embodiment of my invention shown in FIGURES 10 to 15.
  • an interlocking member 81 is provided pivotally supported on a pin 82 carried by the side 80 of the enclosure 18'.
  • the member 81 is generally V-shaped and includes bent-over end portions 83 and 84 at opposite ends thereof.
  • the end of the cross bar 48 is extended so as to terminate just short of the outer surface of the interlocking member 81.
  • the end 83 however projects outwardly from the member 8 1 to a position Where it normal- 1y interferes with the motion of the member 48.
  • the member 86' is slidably supported on the side wall of the enclosure 10 on the pins 82 and 87.
  • the biasing spring 85 is anchored to an extension of the interlocking member 86 so as to always bias the member 86 for movement to interlocking position (to the left as viewed in these figures).
  • the cover 1013' is provided with an interlocking projection 88 having an undercut portion into which a portion 86' of the interlocking member 86 is adapted to extend when the member 86 is in interlocking position.
  • FIGURE 8 I have shown a cross section view of a panelboard unit such as shown in FIGURES 10 and 11 when mounted within an outer panelboard enclosure containing main power bus bars 91 and being connected thereto by oifset straps 92.
  • Each of the offset straps 92 is adapted to make connection with the strap 43" of each of the three poles (see FIGURES 10 and 11). Connection is made between the plates 43" and the connecting straps 92 by means of a bolt 93 which is inserted through suitable clearance openings 94 in the molded insulating body 13".
  • FIGURES l5 and 16 I have shown a slightly modified form of the switching mechanism of FIGURE 11, like parts being indicated with like numerals.
  • This form includes a heavy cast or machined contact member 95.
  • a contact arm 97 is provided, pivoted in the side frames on a stationary pivot 98 also as in FIGURE 11.
  • the contact arm 97 includes a generally U-shaped intermediate portion having two slots cut therein adjacent the bight portion thereof to permit the passage of the lower toggle links 32
  • a compression spring 99 is provided between the contact arm 97 and the contact member 95. In the position of FIGURE 15, the contact arm 97 is held in the position shown by means of the toggle links which are moved to the straightened position by the operating spring 71.
  • the compression spring 99 serves to transmit force from the contact arm 97 to the contact member 95, forcing it against the stationary contact Since the compression spring 99 is squarely behind the contact surfaces, it urges them into complete flatwise surface engagement.
  • the contact member is provided with a certain freedom of movement with respect to the pivot point 76. The arrangement of the parts is such that when the contacts are in engagement as shown in FIGURE 15, the pin 76 is out of contact with the corresponding bearing surface at the back end of the contact member 95.
  • the contact arm 97 is connected by lost-motion connecting means to the contact member by means of the headed screw 100 which passes through a clearance hole in the contact arm 97 and into threaded engagement with the contact member 95.
  • FIGURE 16 there is shown in dotted lines the outline of the movable contact member 95 in the intermediate position as opening occurs. As indicated in this figure, the forward ends of the contacts are the last to part, thus causing arcing to occur at this portion of the contacts, and decreasing burning over the remaining area of the contacts.
  • An electric switch including a pivotally supported contact arm, a movable contact member extending in parallel spaced relation to said contact arm, spring means between said contact arm and said movable contact urging said movable contact away from said contact arm, first lost-motion means connecting said movable contact and said contact arm, and positioned adjacent said spring means and between said spring means and the pivot of said contact arm, second lost-motion means connecting said movable contact and said contact arm and positioned between said first lost-motion means and said pivot of said contact arm, the limits of movement of said lostmotion means being such that when said contact arm is in closed position neither of said lost motion means is at the limit of its movement.
  • An electric switch comprising a pivotally supported contact arm, an elongated movable contact member extending in parallel spaced relation to said contact arm, a compression spring between said contact arm and said movable contact member urging said movable contact member away from said contact arm, first lost-motion means bet-ween said contact arm and said movable contact member adjacent said compression spring and between said compression spring and the pivot of said contact arm, second lost-motion means connecting said movable contact and said contact arm positioned between said first lost-motion means and said pivot of said contact arm,
  • said second lost-motion means comprising a portion of said movable contact member extending under a portion of said contact arm so that said portion can move without restraint away from said contact arm but is limited in its movement toward said contact arm, both of said lost-motion connecting means permitting limited pivotal movement so that said movable contact member can vary its angular relationship to said contact arm.
  • An electric switch comprising a stationary frame having two opposed side wall portions, a contact operating member pivotally supported on a pivot pin carried by said opposed side wall portions, said contact operating memher including a generally U-shaped intermediate portion having a pair of slots therein extending along the juncture of the sides and the bight of said Ushaped portion, two pairs of toggle links, each of said pairs comprising an upper toggle link and a lower toggle link connected by a knee pivot pin, said upper toggle link of each pair being pivotally supported on a side wall portion of said stationary frame, the lower toggle link of each of said pairs extending through one of said slots and into pivotal engagement with a portion of said contact arm, said lower toggle links being supported against lateral outward deformation by sliding flatwise engagement with the interior side wall surfaces of the sides of said U-shaped portion of said contact arm, and being supported against inward lateral deformation by edge portions of said bight portion of said contact arm, a knee-pin joining the knee pivots of said pairs of toggle links, and tension spring means connected to said knee-pin for

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Patch Boards (AREA)
  • Breakers (AREA)
  • Switch Cases, Indication, And Locking (AREA)

Description

May 26, 1964 E. A. ERICSON FANELBOARD SWITCH UNIT 4 Sheets-Sheet 1 Original Filed Feb. 5, 1957 INVENTOR. ERIC A. ERlcsow HIS A TTORNEY May 26, 1964 E. A. ERICSON PANELBOARD swzwcn UNIT 4 Sheets-Sheet 2 Original Filed Feb. 5, 1957 INVENTOR. ERIC A.ERICSON WWI/ 6 HIS A TTORNE Y May 26, 1964 E. A. ERICSON 3,134,877
PANELBOARD SWITCH UNIT Original Filed Feb. 5, 1957 4 Sheets-Sheet 3 May 26, 19 4 E. A. ERICSON PANELBOARD SWITCH UNIT 4 Sheets-Sheet 4 Original Filed Feb. 5, 1957 N o s m R R A e m ll/S A TTOR/VE'Y United States Patent 3,134,877 PANELBOARD SWITCH UNIT Eric A. Ericson, Plainville, Conm, assignor to General Electric Company, a corporation of New York Original application Feb. 5, 1957, Ser. No. 638,371, now
Patent No. 2,937,254, dated May 17, 1960. Divided and this application Mar. 18, 1960, Ser. No. 15,964
3 Claims. (Cl. 200-153) This application is a division of my copending application Serial Number 638,371, filed February 5, 1957, now Patent No. 2,937,254, issued May 17, 1960.
My invention relates to panelboard subassemblies or units and particularly to panelboard units of the switch and cartridge-fuse type, adapted to be mounted with other similar units within a larger enclosure to provide a panelboard.
Panelboard units of the switch and cartridge-fuse type in the past have been limited as regards their switching capacity. Such structures have also been relatively large and cumbersome, and the size and capacity thereof cannot readily be varied. Such switch structures are also basically of the slow-make, slow-break type, and considerable complication and expense is required to provide a mechanism suitable for use therewith adapted to give a quick-make, quick-break or snap action.
It is an object of my invention to provide a panelboard unit of the switch and cartridge-fuse type which includes switching means of the quick-make, quick-break or snapacting type, which is extremely compact and efficient, and which has a high interrupting capacity.
It is another object of my invention to provide a panel board unit of this type which can be readily manufactured in various sizes and capacities.
In accordance with my invention, I provide a panelboard unit including a number of separately housed selfcontained switching devices of the snap-acting type, one for each pole or phase of a multiphase circuit, each being separately mounted and including its own operating member and are extinguishing structure, all such devices being assembled in a common outer housing provided with means for operating all of such devices simultaneously from outside the housing.
In accordance with my invention in one form, I provide a plurality of individual insulating housings each containing two independent snap-acting switches in endto-end relation having adjacent electrically common stationary contacts, the housings being mounted in side-byside relation to form two rows of switches, the switches in each row being ganged together for common movement to provide two multipole snap-acting switches, and two separate operating means for operating such multipole switches from outside the unit housing.
In the drawings:
FIGURE 1 is a top plan view of a panel board unit embodying my invention;
FIGURE 2 is a side elevation view of the unit of FIG- URE 1, partly in section;
FIGURE 3 is a fragmentary view showing particularly the cover interlock arrangement used with the unit of FIGURE 1;
FIGURE 4 is a perspective view of one of the switch unit housings utilized in the invention of FIGURE 1, one switch mechanism being shown in place;
FIGURE 5 is a top plan view of a switching unit of increased capacity;
FIGURE 6 is a fragmentary perspective view of a portion of the manual operating mechanism of the panelboard unit of FIGURE 1;
FIGURE 7 is a detail view on enlarged scale of a portion of the operating mechanism shown in FIGURE 6;
3,134,877 Patented May 26, 1964 FIGURE 8 is a side elevation view of the embodiment of my invention shown in FIGURE 10;
FIGURE 9 is a top plan view similar to FIGURE 1 but with the covers of the outer enclosure removed;
FIGURE 10 is a top plan View of another embodiment of my invention;
FIGURE 11 is a side elevation view partly in section of the embodiment of FIGURE 10;
FIGURE 12 is a detail view of a portion of the switch operating mechanism of FIGURE 10;
FIGURE 13 is a fragmentary view of the cover interlocking mechanism used in the embodiment of FIG- URE 10;
FIGURE 14 is a view similar to FIGURE 13 but showing the parts in interlocked condition;
FIGURE 15 is a side elevation view, a modified form of the operating mechanism of FIGURE 11 shown in the circuit closed condition; and
FIGURE 16 is a view similar to FIGURE 15, but with the mechanism shown in the circuit open position in full lines, a portion thereof being shown in an intermediate position.
Referring to the drawings and particularly to FIG- URES 1-9, I have shown my invention as embodied in a panelboard unit having two 3-pole snap-acting switches and comprising a generally rectangular elongated outer enclosure 10 having open end walls 11 and closed side walls 12. Within the enclosure 10, I provide insulating switch housing means comprising three elongated generally rectangular insulating bodies 13. The enclosure 10 is provided with elongated generally rectangular openings in the back wall 10a, and each insulating body 13 includes a base portion 13a adapted to extend through one of these openings, substantially filling the opening and projecting a short distance beyond the back wall 10a. The base portion 13a includes a shoulder 13b adapted to underlie the back wall of the enclosure 10 at one end of the block 13, and a shoulder 13c adapted to be retained in mounted position by means of a locking tab- 14 at the other end. The upper or main portion of the insulating body 13 is wider than the bottom portions 13a, thereby presenting shoulder 13d (FIGURE 4) adapted to rest on the inner surface of the back wall of the enclosure. The insulating body 13 is assembled from the interior of the enclosure by first inserting the shoulder 13b under the back wall, then setting the body flush on the back wall and locking it in place with tab 14.
Each of the insulating blocks 13 is provided with two end-to-end elongated generally rectangular recesses 15 and 16 (see FIGURE 4) extending down from the top and substantially completely from end-to-end thereof and separated from each other by a barrier portion 17. Each of the recesses 15 and 16 contains a fuse connector 18 at one end thereof and a relatively stationary contact 19 on the back wall of the recess at the other end thereof.
Also mounted in each of the recesses 15 and 16 between the fuse connector and the stationary contact, I provide a switch operating mechanism, of the snap-acting type, indicated generally at 20. Referring to FIGURE 2, each switch mechanism 20 includes a frame 21 mounted within the recess 15 by suitable means such as by rivets or screws 22. A switch arm 23 is mounted on a fixed pivot 24 in the frame 21 and carries a movable contact 25 adapted to engage and disengage the stationary contact 19. A pair of toggle links 31 and 32, interconnected by a knee pin 34, is provided between the switch arm 23 and fixed member 21'. The toggle links 31, 32 are each double members, comprising a link extending along each side of the relatively thin flat member 21.
The operating mechanism further includes an operating member 35 pivoted on a fixed pivot 36 carried by the frame 21 and connected by a pair of tension springs 37 to the knee pin 34 of the toggle linkage. The springs 37 are adapted to be moved from one side to the other of the pin 34 as the operating member 35 is moved between on" and off position. In the on position, the tension springs cause the toggle links 31 and 32 to move to a straightened position, thereby rotating the switch arm 23 in a clockwise direction and forcing the movable contact 25 into engagement with the stationary contact 19. When the operating member 35 is moved to the off position as shown in the left-hand side of FIGURE 2, the tension springs 37 cause the toggle links 31 and 32 to move to the collapsed position, moving the switch arm 23 counterclockwise to the open circuit position.
In order to increase the interrupting ability and capacity of the switch assembly, I provide an arc extinguishing assembly including a plurality of spaced arc extinguishing plates 41 preferably of magnetic material, adapted to draw the are the'rebetween and to cool and quickly extinguish it. The are extinguishing plates 41 are carried by generally U-shaped insulating side wall members 42.
The stationary contacts 19 in the recesses and 16 are mounted on opposite ends of a common terminal plate 43, and the insulating block 13 is provided with an aperture in its back wall adjacent the midpoint of the plate 43. Since the block 13 itself projects through the back wall 10a of the enclosure 10, connection may be readily made to the stationary contact 19 such as by a connecting strap S extending through the back wall of the enclosure 10. The relative position of main bus bars, A, B and C is shown in dotted lines in FIGURE 2. The strap S is shown as connecting one plate 43 to bus bar B. Connection is similarly made between the other two plates 43 and the other bus bars A and C, by means of offset straps (not shown).
The movable contact is connected by means of a suitable flexible conductor 46 to a fuse connector 18 positioned in the opposite end of the recess from the stationary contact 19.
For the purpose of making possible the simultaneous operation of the switch mechanisms 20 which are in sideby-side alignment within the enclosure 10 to provide two 3-pole snap-acting switches, I provide insulating tie bars or ganging means 48.
At opposite ends of the enclosure 10, I provide additional insulating bases 49 and 50 adapted to support additional fuse connectors 51 and 52 in alignment with the fuse connectors 18 carried by the block 13. The fuse connectors 51, 52 are connected to load terminal connectors 53 and 54, to which wires or cables leading to the loads to be controlled may be connected. For the purpose of permitting ready access to such terminals, the end walls 11 are preferably left open, it being understood that the enclosure 10 is to be mounted in a larger enclosure housing a complete panelboard.
For the purpose of shielding the mechanisms and contacts from possible contact through the open front of the enclosure 10, and for providing a cover interlock in a manner to be described, I provide a bridging member 55 adapted to be mounted across the central portion of the enclosure 10 by suitable means such as by screws 56 and carrying thereon an insulating shield 57 adapted to overlie all the arc chute chambers and mechanisms 20, including the handles and ganging means 48.
The insulating blocks 13 are preferably spaced apart and the insulating shield 57 is provided with slot-like openings 58 for the purpose of providing restricted access to the ganging members 48 for operation in a manner to be described. I further provide two partial covers 59 and 60 hinged across the end Walls of the enclosure 10 and adapted to meet and partially overlap the central bridging member 55 to completely close the front of the enclosure 10.
For the purpose of permitting operation of the two multipole switch assemblies from outside the enclosure when the enclosure doors are closed, I provide operating mechanism including an operating handle 61 pivotally supported in each of the covers 59 and 60. Each operating handle 61 is anchored by means of bolts 61A to a plate 61B (see FIGURE 6) carrying an eccentric bolt 62 which in turn extends through slot 63 in a sliding plate 64. The movement of the plate 64 is further guided by members 65 carried by cover 59 and having an offset portion extending through slot 66. The plate 64 is also provided with depending bifurcated portions 68 which, when the covers 59 and 60 are closed, enter the slot-like openings 58 in the shields 57 and engage the tie bar 48, to operate the same between open and closed positions as the plates 64 slide back and forth in response to rotation of the handles 61 respectively.
The plates 64 are each provided with a forward extension 64a, which is adapted to extend under the bridging member 55 when the handle 61 and sliding plate 64 are in on position. This provides a safety interlock, making it impossible to open the covers 59 and 60 when the corresponding handle is in the on position.
The covers 59 and 60 are also provided with a second interlocking means comprising resilient strips 69 having a retaining hook portion adjacent the outer end thereof. When the covers 59 and 60 are in closed condition as in FIGURE 2, the ends of the strips 69 rest on flange portions of the bridging member 55 and the offset or hook portion is held out of the path of the plate 64. When the plate 64 is retracted to the off position and the door opened, the member 69 drops down to an interlocking position, as shown on enlarged scale in FIGURE 3. In this condition, the hook portion engages the end 64a of the plate 64 and prevents it from moving forward. This retains the handle 61 in off condition when the door is open, preventing any misalignment of the bifurcated portions 68 and the ganging bars 48.
In FIGURE 9 I have shown a top plan view of a panel board unit as shown in FIGURES 1 and 2, the top covers and bridging portion being removed to show the relative positions of the three insulating blocks and associated parts.
It will be observed that the length of the enclosure 10 and the spacing between the blocks 13 and the end blocks 49 and 50 may be varied to provide for accepting fuses of varying length.
In FIGURE 5 I have shown a modified form of my invention including an insulating body 13' having a single enlarged recess therein adapted to receive and mount therein two switch operating mechanisms 20 in side-by-side relation. The contact arms 23 of each of the switch mechanisms 20 are connected in common to the fuse socket 18' which socket is adapted to receive a cartridge fuse having a knife blade type terminal rather than a ferrule type terminal. The two stationary contacts 19 are also connected electrically in common to a back terminal 43. The contact arms 23 are supported on a common pivotal axis member 70 which is noncircular and which prevents appreciable movement of one contact arm without corresponding movement of the other. The operating members 35 are likewise ganged together by ganging means similar to ganging means 48 of FIGURES l and 2. Because of the double mechanism and contact arrangement provided and described, this unit is able to handle currents equal to twice the capacity of the units of FIGURES 1 and 2. Three of these units when ganged together in side-by-side relation similarly to the arrangement shown in FIGURES 1 and 2 provide a three-pole switch of correspondingly increased rating. By means of the common noncircular support of the switch contact arms common action of the arms is assured even if the operating springs of one mechanism should fail.
In FIGURES 8 and 10-14, I have shown my invention as embodied in an assembly adapted to handle substantially larger amounts of current, such, for instance, as
400-600 amperes. In this form, a mechanism is provided of the same general type as the mechanism of the form of FIGURE 1 but including several important improvements whereby it is adapted to handle larger currents and to positively move the movable contact in case of contact welding.
This form is preferably constructed as a single branc unit, that is, the enclosure contains only one set of three switch and fuse units. The enclosure 10 is however preferably made identical in length and height with the enclosure 10 of the form of FIGURES 11-9, so that both units may be mounted in the same panelboard assembly. Operating mechanism comprises a supporting frame member 21' having enlarged apertures 75 in opposed portions of the side walls thereof. An operating member 35 is pivotally supported on a pivot pin 76 carried by the side frame 21. Toggle links 31' and 62 are pivoted respectively in the side walls of the frame 21 at 33' and on the contact arm 23 and have their adjacent ends joined by a toggle knee pin 34. An operating spring 71 is connected between the bight of the operating member 35' and the knee pin 34' of the toggle links. It will be observed that in this case the toggle links are pivoted directly to the side walls of the frame member 21' at 33' and that a single operating spring 71' is provided between the double sides of the toggle links. By means of this arrangement, the mechanism is simplified and a larger and heavier operating spring may be utilized.
The operating member 35' extends outside the supporting frame 21' and the side portions thereof are provided with apertures 35A (see FIGURE 12). The upper toggle links 3 1' are provided with pins 32A extending within the apertures 35A. The length of each aperture 35A is made slightly less than the total travel of the operating member 35 at the corresponding point. Accordingly, as the operating member 35 is moved toward on position, the pin 32A is picked up by the portion of member 35' at one end of the aperture 35A and if the operating spring has not passed over center, the operating member 35 forcibly moves the upper toggle links toward straightened or over set condition. Conversely, on return movement of the operating member toward off position, if the contacts have welded, or for some other reason the toggle spring does not provide enough force to initiate movement of the contact arm, the pin 32A will be picked up by the portion of member 35 at the other end of aperture 35A and be forcibly moved by the operating member 35'.
In this form of the invention, the enclosure 10' is provided with a two-part top wall, one part ltiA' being relatively stationary and immovable, and the other part 1013' comprising a door hinged at the opposite end of the enclosure to provide access to the fuses. The operating handle 61 is preferably mounted on the stationary portion 10A of the top wall.
In FIGURES 13 and 114 I have shown the form of cover interlock used for the embodiment of my invention shown in FIGURES 10 to 15. In accordance with this embodiment, an interlocking member 81 is provided pivotally supported on a pin 82 carried by the side 80 of the enclosure 18'. The member 81 is generally V-shaped and includes bent-over end portions 83 and 84 at opposite ends thereof. The end of the cross bar 48 is extended so as to terminate just short of the outer surface of the interlocking member 81. The end 83 however projects outwardly from the member 8 1 to a position Where it normal- 1y interferes with the motion of the member 48. When the cover 1013 is in closed position however a portion thereof strikes the end portion 84 of the interlocking member and rotates the member clockwise to the position shown in FIGURE 14. As shown in this position the offset end 83 has been moved out of the path of the ganging member 48 so as to permit movement of the member 48 to on position. A biasing spring 85 is provided which normally urges the interlocking member 81 counter- 6 clockwise to its interfering position as shown in FIGURE 13.
For the purpose of providing a cover interlock to prevent opening of the cover when the switch is in the on position and to permit opening of the cover when the switch is in the off position, I provide an interlocking member 86. The member 86' is slidably supported on the side wall of the enclosure 10 on the pins 82 and 87. The biasing spring 85 is anchored to an extension of the interlocking member 86 so as to always bias the member 86 for movement to interlocking position (to the left as viewed in these figures). The cover 1013' is provided with an interlocking projection 88 having an undercut portion into which a portion 86' of the interlocking member 86 is adapted to extend when the member 86 is in interlocking position. When the switch is moved to the on position, the ganging member 48' is moved to the left, thereby permitting movement of the interlocking member to interlocking position under the influence of spring 85. When the switch is moved to the open circuit position, the member 48 moves to the right and strikes an offset portion 86" carried by the interlocking member 86 thereby moving the interlocking member 86 to the right and releasing the cover. For the purpose of making the interlocking of the cover defeatable to permit inspection of the switch while in the on position, I provide an aperture 89 in the cover 1013 adjacent the side Wall 80, and affording access to the offset portion 86' of the interlocking member 86. In order to open the cover when the switch is in the on position, it is only necessary to insert an instrument such as a screwdriver in the opening 89 and push the interlocking member 86 to the right.
In FIGURE 8 I have shown a cross section view of a panelboard unit such as shown in FIGURES 10 and 11 when mounted within an outer panelboard enclosure containing main power bus bars 91 and being connected thereto by oifset straps 92. Each of the offset straps 92 is adapted to make connection with the strap 43" of each of the three poles (see FIGURES 10 and 11). Connection is made between the plates 43" and the connecting straps 92 by means of a bolt 93 which is inserted through suitable clearance openings 94 in the molded insulating body 13".
In FIGURES l5 and 16, I have shown a slightly modified form of the switching mechanism of FIGURE 11, like parts being indicated with like numerals. This form includes a heavy cast or machined contact member 95. A contact arm 97, generally similar to that of FIGURE 1 1, is provided, pivoted in the side frames on a stationary pivot 98 also as in FIGURE 11. The contact arm 97 includes a generally U-shaped intermediate portion having two slots cut therein adjacent the bight portion thereof to permit the passage of the lower toggle links 32 In addition, a compression spring 99 is provided between the contact arm 97 and the contact member 95. In the position of FIGURE 15, the contact arm 97 is held in the position shown by means of the toggle links which are moved to the straightened position by the operating spring 71. The compression spring 99 serves to transmit force from the contact arm 97 to the contact member 95, forcing it against the stationary contact Since the compression spring 99 is squarely behind the contact surfaces, it urges them into complete flatwise surface engagement. The contact member is provided with a certain freedom of movement with respect to the pivot point 76. The arrangement of the parts is such that when the contacts are in engagement as shown in FIGURE 15, the pin 76 is out of contact with the corresponding bearing surface at the back end of the contact member 95.
The contact arm 97 is connected by lost-motion connecting means to the contact member by means of the headed screw 100 which passes through a clearance hole in the contact arm 97 and into threaded engagement with the contact member 95.
As the contact arm 97 moves toward circuit open position, the contact arm 97 comes in contact with the head of the screw 100 and the compression spring 99 forces the forward end of the contact member 95 downwardly causing it to tip slightly with respect to the contact surface 90'. The screw 10!) may be adjusted to provide the optimum action in this respect. In FIGURE 16 there is shown in dotted lines the outline of the movable contact member 95 in the intermediate position as opening occurs. As indicated in this figure, the forward ends of the contacts are the last to part, thus causing arcing to occur at this portion of the contacts, and decreasing burning over the remaining area of the contacts.
It will be noted that the operating member 35 and the toggle links 31 are the same in this form as in the form of FIGURE 11, and therefore a positive kick-01f action is also provided by this form of mechanism as described above in connection with FIGURE 11. The provision of slots in the contact arm and the positioning of the lower toggle links 32 passing through the slots and partially within and partially outside of the channel shaped contact arm adds a substantial amount of support laterally to the toggle assembly.
It will be seen that I have provided a fusible switch panelboard assembly which is extremely compact and which may be used in various combinations to provide for the various needs of such devices and which is highly effective and efficient. For instance, devices constructed in accordance with the present invention have been found to be capable of interrupting currents eight times as great as the minimum required for safe operation, and more than times as great as full rated load current.
While I have shown only three embodiments of my invention, it will be appreciated that many modifications thereof will occur to those skilled in the art and I therefore intend by the appended claims to cover all such modifications as fall within the true spirit and scope of my invention.
What I claim as new and desire to secure by Letters Patent of the United States is:
1. An electric switch including a pivotally supported contact arm, a movable contact member extending in parallel spaced relation to said contact arm, spring means between said contact arm and said movable contact urging said movable contact away from said contact arm, first lost-motion means connecting said movable contact and said contact arm, and positioned adjacent said spring means and between said spring means and the pivot of said contact arm, second lost-motion means connecting said movable contact and said contact arm and positioned between said first lost-motion means and said pivot of said contact arm, the limits of movement of said lostmotion means being such that when said contact arm is in closed position neither of said lost motion means is at the limit of its movement.
2. An electric switch comprising a pivotally supported contact arm, an elongated movable contact member extending in parallel spaced relation to said contact arm, a compression spring between said contact arm and said movable contact member urging said movable contact member away from said contact arm, first lost-motion means bet-ween said contact arm and said movable contact member adjacent said compression spring and between said compression spring and the pivot of said contact arm, second lost-motion means connecting said movable contact and said contact arm positioned between said first lost-motion means and said pivot of said contact arm,
' said second lost-motion means comprising a portion of said movable contact member extending under a portion of said contact arm so that said portion can move without restraint away from said contact arm but is limited in its movement toward said contact arm, both of said lost-motion connecting means permitting limited pivotal movement so that said movable contact member can vary its angular relationship to said contact arm.
3. An electric switch comprising a stationary frame having two opposed side wall portions, a contact operating member pivotally supported on a pivot pin carried by said opposed side wall portions, said contact operating memher including a generally U-shaped intermediate portion having a pair of slots therein extending along the juncture of the sides and the bight of said Ushaped portion, two pairs of toggle links, each of said pairs comprising an upper toggle link and a lower toggle link connected by a knee pivot pin, said upper toggle link of each pair being pivotally supported on a side wall portion of said stationary frame, the lower toggle link of each of said pairs extending through one of said slots and into pivotal engagement with a portion of said contact arm, said lower toggle links being supported against lateral outward deformation by sliding flatwise engagement with the interior side wall surfaces of the sides of said U-shaped portion of said contact arm, and being supported against inward lateral deformation by edge portions of said bight portion of said contact arm, a knee-pin joining the knee pivots of said pairs of toggle links, and tension spring means connected to said knee-pin for operating said pairs of links between collapsed and straightened condition in unison to move said contact arm from open to closed circuit position.
References Cited in the file of this patent UNITED STATES PATENTS 1,814,777 Wurdack July 14, 1931 1,915,948 Pedrazzo June 27, 1933 2,332,496 Baxter Oct. 26, 1943 2,849,581 Bingenheimer Aug. 26, 1958

Claims (1)

1. AN ELECTRIC SWITCH INCLUDING A PIVOTALLY SUPPORTED CONTACT ARM, A MOVABLE CONTACT MEMBER EXTENDING IN PARALLEL SPACED RELATION TO SAID CONTACT ARM, SPRING MEANS BETWEEN SAID CONTACT ARM AND SAID MOVABLE CONTACT URGING SAID MOVABLE CONTACT AWAY FROM SAID CONTACT ARM, FIRST LOST-MOTION MEANS CONNECTING SAID MOVABLE CONTACT AND SAID CONTACT ARM, AND POSITIONED ADJACENT SAID SPRING MEANS AND BETWEEN SAID SPRING MEANS AND THE PIVOT OF SAID CONTACT ARM, SECOND LOST-MOTION MEANS CONNECTING SAID MOVABLE CONTACT AND SAID CONTACT ARM AND POSITIONED BETWEEN SAID FIRST LOST-MOTION MEANS AND SAID PIVOT OF SAID CONTACT ARM, THE LIMITS OF MOVEMENT OF SAID LOSTMOTION MEANS BEING SUCH THAT WHEN SAID CONTACT ARM IS IN CLOSED POSITION NEITHER OF SAID LOST MOTION MEANS IS AT THE LIMIT OF ITS MOVEMENT.
US15964A 1957-02-05 1960-03-18 Panelboard switch unit Expired - Lifetime US3134877A (en)

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US4211906A (en) * 1978-04-05 1980-07-08 Siemens Aktiengesellschaft Rotary actuating device for low-voltage circuit breakers with toggle lever
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FR2666168A1 (en) * 1990-08-23 1992-02-28 Merlin Gerin CONTROL MECHANISM WITH CIRCUIT BREAKER FOR ELECTRIC CIRCUIT BREAKER.
US7268308B1 (en) 2004-12-06 2007-09-11 Willie Sam Caudill Isolation switch for power transfer
US8803369B1 (en) 2010-01-06 2014-08-12 Willie Sam Caudill Automatic isolation switch for power transfer with emergency isolation control
US11009849B1 (en) 2018-03-06 2021-05-18 Willie Sam Caudill Meter hub safety isolation service entrance disconnect switch
US12167550B2 (en) 2021-05-14 2024-12-10 Hoffman Enclosures Inc. Disconnect defeater arm mechanism

Also Published As

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JPS3310325B1 (en) 1958-11-28
US2937254A (en) 1960-05-17

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