Switch module in a molded casing for a circuit breaker and circuit breaker in a modular molded casing
11942299 ยท 2024-03-26
Assignee
Inventors
- Rodrigo Gon?alves De Villa (Jaragua do Sul, BR)
- Everton Soares Pivotto (Jaragua do Sul, BR)
- F?bio Decker De Souza (Jaragua do Sul, BR)
Cpc classification
H01H1/2058
ELECTRICITY
H01H71/125
ELECTRICITY
H01H71/40
ELECTRICITY
International classification
H01H33/60
ELECTRICITY
Abstract
A unipolar switching module made of insulating material and including an incorporated thermomagnetic tripping set, and/or a current measurer and power supply set for an electronic controller A multipolar low-voltage molded case circuit breaker can include unipolar switching modules, which interact with the tripping set and/or the current measurer and power supply set.
Claims
1. A unipolar switching module comprising: a case made of insulating material; a contact system associated with electrical connection terminals and an arc extinguishing system; and a set; wherein the contact system is selected from the group consisting of a rotary contact system and a double rotary contact system; wherein the set is selected from the group consisting of a thermomagnetic tripping set associated with one of the electrical connection terminals and a current measurer and power supply set associated with one of the electrical connection terminals; and wherein the rotary contact system comprises: a rotary traverse bar; a movable contact; a spring; an equalization shaft; and a pivoting support chamber, within which the rotary traverse bar, the movable contact, the spring and the equalization shaft are at least partially contained, the pivoting support chamber including: a pivot shaft; and a through hole for the equalization shaft.
2. A unipolar switching module comprising: a case made of insulating material; a contact system associated with electrical connection terminals and an arc extinguishing system; and a set; wherein the contact system is selected from the group consisting of a rotary contact system and a double rotary contact system; wherein the set is selected from the group consisting of a thermomagnetic tripping set associated with one of the electrical connection terminals and a current measurer and power supply set associated with one of the electrical connection terminals; and wherein the double rotary contact system comprises: a first movable contact; a rotary traverse bar; a second movable contact; springs; a first equalization shaft; a second equalization shaft; and a pivoting support chamber, within which the first movable contact, the rotary traverse bar, the second movable contact, the springs, the first equalization shaft and the second equalization shaft are at least partially contained; wherein the pivoting support chamber has through holes for the first equalization shaft and the second equalization shaft.
3. A unipolar switching module comprising: a case made of insulating material; a contact system associated with electrical connection terminals and an arc extinguishing system; and a set; wherein the contact system is selected from the group consisting of a rotary contact system and a double rotary contact system; wherein the set is selected from the group consisting of a thermomagnetic tripping set associated with one of the electrical connection terminals and a current measurer and power supply set associated with one of the electrical connection terminals; wherein the thermomagnetic tripping set comprises: a shunt bar; a magnetic yoke; a bimetallic strip; and a magnetic trip lever; and wherein the thermomagnetic tripping set is electrically connected to the associated electric connection terminal through a fastening element; wherein the case comprises a first cavity and a second cavity made of insulating material, each cavity defined by an inner face and outer faces, the outer faces comprising an anterior side face, a posterior side face, a bottom face and a top face that comprises a recess; and wherein the magnetic trip lever is transversely bearing on one side to a guide of the inner face of the first cavity and on the other side to an equivalent but inverted guide of the inner face of the second cavity.
4. A unipolar switching module comprising: a case made of insulating material; a contact system associated with electrical connection terminals and an arc extinguishing system; and a set; wherein the contact system is selected from the group consisting of: a rotary contact system comprising a rotary traverse bar, a movable contact, a spring, an equalization shaft, and a pivoting support chamber, wherein within the pivoting support chamber the rotary traverse bar, the movable contact, the spring and the equalization shaft are at least partially contained, wherein the pivoting support chamber includes a pivot shaft and a through hole for the equalization shaft; and a double rotary contact system comprising a first movable contact, a rotary traverse bar, a second movable contact, springs, a first equalization shaft, a second equalization shaft, and a pivoting support chamber, wherein within the pivoting support chamber the first movable contact, the rotary traverse bar, the second movable contact, the springs, the first equalization shaft and the second equalization shaft are at least partially contained, and wherein the pivoting support chamber has through holes for the first equalization shaft and the second equalization shaft; and wherein the set is selected from the group consisting of a thermomagnetic tripping set associated with one of the electrical connection terminals and a current measurer and power supply set associated with one of the electrical connection terminals.
5. A unipolar switching module comprising: a case made of insulating material; a contact system associated with electrical connection terminals and an arc extinguishing system; and a set selected from the group consisting of a thermomagnetic tripping set associated with one of the electrical connection terminals and a current measurer and power supply set associated with one of the electrical connection terminals; wherein the thermomagnetic tripping set comprises: a shunt bar; a magnetic yoke; a bimetallic strip; and a magnetic trip lever; wherein the thermomagnetic tripping set is electrically connected to the associated electric connection terminal through a fastening element; wherein the electrical connection terminals comprise fixed contacts; wherein the current measurer and power supply set are electrically coupled to an electronic controller; wherein the case comprises a first cavity and a second cavity made of insulating material, each cavity defined by an inner face and outer faces, the outer faces comprising an anterior side face, a posterior side face, a bottom face and a top face that comprises a recess; and wherein the magnetic trip lever is transversely bearing on one side to a guide of the inner face of the first cavity and on the other side to an equivalent but inverted guide of the inner face of the second cavity.
6. A unipolar switching module comprising: a case made of insulating material; a contact system associated with electrical connection terminals and an arc extinguishing system; and a set; wherein the contact system is selected from the group consisting of a rotary contact system and a double rotary contact system; wherein the set is selected from the group consisting of a thermomagnetic tripping set associated with one of the electrical connection terminals and a current measurer and power supply set associated with one of the electrical connection terminals; and wherein the electrical connection terminals are magnetically coupled to the current measurer and power supply set and electrically connected to the contact system through a strand.
7. The unipolar switching module according to claim 1 or 2, wherein the electrical connection terminals comprise fixed contacts; and wherein the current measurer and power supply set is electrically coupled to an electronic controller.
8. The unipolar switching module according to claim 1 or 2, wherein the case comprises a first cavity and a second cavity made of insulating material, each comprising an anterior side face, a posterior side face, a bottom face and a top face that comprises a recess.
9. The unipolar switching module according to claim 1 or 2, wherein the arc extinguishing system comprises grids.
10. A circuit breaker comprising: an operating and tripping mechanism; a tripping set; and the unipolar switching module according to claim 1 or 2; wherein when the unipolar switching module comprises the thermomagnetic tripping set, the thermomagnetic tripping set of the unipolar switching module interacts with the tripping set of the thermomagnetic circuit breaker with the operating and tripping mechanism; and wherein when the unipolar switching module comprises the current measurer and power supply set, the current measurer and power supply set of the unipolar switching module for the electronic controller is associated with a trip coil that interacts with the operating and tripping mechanism.
11. The circuit breaker according to claim 10 further comprising unipolar side circuit breaker modules mounted side by side relative to the unipolar switching module.
12. The circuit breaker according to claim 10 further comprising an external case for housing the operating and tripping mechanism, the tripping set, and the unipolar switching module.
13. The circuit breaker according to claim 12, wherein the external case comprises: an insulating base case; an insulating intermediate case; and an insulating cover.
14. The circuit breaker according to claim 10, wherein the trip coil comprises an actuator associated to a lever coupled to the operating and tripping mechanism that can release the operating and tripping mechanism to a TRIP state.
15. The unipolar switching module according to claim 1, 2 or 4, wherein the thermomagnetic tripping set is electrically connected to the associated rotary contact system through a strand.
16. The unipolar switching module according to claim 1, 2 or 4, wherein the thermomagnetic tripping set is electrically connected to a termination extension comprising a first fixed contact of the fixed contacts associated with the double rotary contact system.
17. The unipolar switching module according to claim 1, 2 or 4, wherein the electrical connection terminals are magnetically coupled to the current measurer and power supply set and electrically connected to the associated contact system through a strand.
18. The unipolar switching module according to claim 1, 2 or 4, wherein the electrical connection terminal comprises a first fixed contact of the fixed contacts associated with the double rotary contact system and is magnetically coupled to the current measurer and power supply set.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE DRAWINGS
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(15) Said unipolar switching modules (9, 9, 9) constructed in parallelepiped format comprising a first cavity (9a) and a second cavity (9b), made of insulating material preferably inversely identical made of insulating material, forming a case (9ab), better viewed with a details in the
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OPERATION OF THE INVENTION
(26) In the state of the art, the search for advantageous arrangements are constant in both operation and manufacturing. Despite this, an assembly arrangement not obtained so far refers to assembly preparations, use of synergistic components both using thermomagnetic and electronic technology, already known, but that allow greater flexibility of assemblies and use of standardized components between them, without this burdening costs or leading to the use of dedicated components for each choice of arrangement. In this way the solution presented seeks to solve this in a way, wherein several configurations are permissible using the same philosophy and preparation, thus facilitating a range of pre-assemblies and administration of components in an organized way and that allows the use of various components throughout this range in a standardized and versatile way.
(27) The molded case circuit breaker (1a, 1b) according to a first and second preferred embodiments of the present invention now detailed, meets a first objective of the invention, in the sense of providing unipolar circuit switching modules (4, 4, 4, 9, 9, 9) constructed to facilitate the assembly of components of a low-voltage molded case circuit breaker, provided with a different construction concept to others from the state of the art, its main fundament being the fact that the components of the unipolar switching module (4, 4, 4, 9, 9, 9) comprising at least one said thermomagnetic tripping set (4r, 9r), said rotary contact system (4q, 9d) best seen in
(28) A second objective achieved by the invention is to use a same case (4ab, 9ab) for unipolar thermomagnetic trip switching modules (4, 4, 4, 9, 9, 9), wherein the second cavity (4b, 9b) is inversely identical to said first cavity (4a, 9a), which together form said insulating case of said unipolar thermomagnetic switching modules (4, 4, 4, 9, 9, 9) of said low-voltage circuit breaker (1a, 1b), and also use a same external case (3), comprising a base case (3a), intermediate case (3b) and cover (3c) which serves all unipolar circuit switching modules (4, 4, 4, 9, 9, 9), due to their outer construction being identical to all the modules for using identical fastening elements (4k, 10s),), equalization shafts (2b, 2b) and positioning shafts (2c, 2c).
(29) A third objective achieved by the invention is to use a same case (10ab, 11ab) for unipolar electronic trip switching modules (10, 10, 10, 11, 11, 11), wherein the second cavity (10b, 11b) is inversely identical to said first cavity (10a, 11a) which together form said insulating case (10ab, 11ab) of said unipolar electronic circuit switching modules (10, 10, 10, 11, 11, 11) of said low-voltage circuit breaker (1c, 1d), and also use a same outer case (3) comprising base case (3a), intermediate case (3b) and cover (3c) which serves all unipolar switching modules (10, 10, 10, 11, 11, 11), due to their external construction being identical to all the modules for using identical fastening elements (4k, 10s), equalization shafts (2b, 2b) and positioning shafts (2c, 2c), and said base case (3a) is interchangeable between said unipolar thermomagnetic trip switching modules (4, 4, 4, 9, 9, 9).
(30) A fourth objective of the invention is achieved by using a same external cavity (4a, 4b, 9a, 9b, 10a, 10b, 11a, 11b) for unipolar thermomagnetic/electronic trip switching modules (4, 4, 4, 9, 9, 9, 10, 10, 10, 11, 11, 11) which externally have identical dimensions, in a first, second, third and fourth preferred embodiment of the invention respectively, in different nominal current ranges, due to the modular concept proposed, where it is possible to make the prior assemblies, with a predetermined values of nominal current range, regardless of the range for the thermomagnetic tripping set (4r, 9r), facilitating the administration of inventories for subsequent final assembly, as said unipolar thermomagnetic trip switching modules (4, 4, 4, 9, 9, 9) and/or unipolar electronic circuit switching modules (10, 10, 10, 11, 11, 11) are stable, interchangeable, sidewardly fixed to each other, containing rotary contact systems (4q, 9d, 10d, 11d) in equalized form, through said equalization shaft (2b) and alternatively associated said second equalization shaft (2b), where said operating and tripping mechanism (2, 2), fixed on the upper part of said central unipolar switching module (4, 9, 10, 11), which comprises two positioning shafts (2c, 2c) are introduced into the side positioning holes (4h, 4j) of the first or second insulating cavities (4a, 4b, 9a, 9b, 10a, 10b, 11a, 11b) and between the unipolar side switching modules (4, 4, 4, 9, 9, 9, 10, 10, 10, 11, 11, 11), allowing an equalization shaft (2b) and alternatively associated said second equalization shaft (2b) of the rotary contact system (4q, 9d, 10d, 11d) to command the action of any one of the rotary contact systems (4q, 9d, 10d, 11d) coupled sidewardly, comprised in said unipolar switching modules (4, 4, 9, 9, 10, 10, 11, 11) in an identical manner, when said operating and tripping mechanism (2, 2) is triggered, both by the operator in ON/OFF operations, and in any anomalous pre-configured situation arising from said thermomagnetic tripping bar (8a) pre-configured by the thermal adjustment button (8d), or from the magnetic trip lever (4ra, 9ra), in any anomalous pre-configured situation by means of a magnetic adjustment button (8b) jointly with a said thermomagnetic tripping bar (8a) of said tripping set (8) or also from the current measurer and power supply set (10h, 11i), which are electrically coupled by means of a power terminal (10k, 11p) to an electronic controller (W), incorporated inside the molded case circuit breaker (1c, 1d) and capable of promoting an electronic trip, triggering the opening of the rotary contact system (10d, 11d) thereof, through said operating and tripping mechanism (2) automatically.
(31) A fifth objective of the present invention is achieved by providing a breaker switching device with a lesser number of components than the state of the art, when noting the options that use unipolar switching modules (4, 4, 9, 9, 10, 10, 11, 11), as it does not require additional thermomagnetic or electronic trips in specific modules, when compared to that presented in the state of the art, which is situated outside the switching modules, which implies the use of additional fastening elements, such as hooks and complex docking support between each other.
(32) A sixth objective of the invention is achieved by providing a switching device, such as a low-voltage molded case circuit breaker (1a, 1b, 1c, 1d), satisfying the above requirements, being compact in its longitudinal measure and simplified, maintaining the structural rigidity, due to the elimination of factors such as the use of fastening elements such as hooks and complex docking support, which by their connection nature, weaken the structure.
(33) Besides the objectives proposed already achieved by the invention now proposed a tripping set (8) is provided, easily coupleable to the unipolar switching module (4, 4, 4, 9, 9, 9), where it is positioned vertically through the said seat base (8h) and of said traverse seat (8g) on the top face (4f, 9t) and longitudinally through the vertical positioning rod (81) which encases in the recess (4x, 9x), in any one of the unipolar switching modules (4, 4, 4, 9, 9, 9), being additionally positioned vertically through the vertical positioning rails (41) and the guide rails (8f). Side locking shafts (8j) are additionally provided in said tripping set (8), which behave as stand-bys and which at the time wherein the unipolar switching modules (4, 4, 4, 9, 9, 9) are positioned side by side, former are positioned in the positioning holes (4g) of the first or second insulating cavities (4a, 4b, 9a, 9b), whereby promoting for this positioner set a fast locking of said tripping set (8) in the 3 possible displacement shafts.
(34) Lastly, the unipolar thermomagnetic switching modules (4, 4, 4, 9, 9, 9) or the electronic unipolar switching modules (10, 10, 10, 11, 11, 11) chosen according to a set pre-arrangement, coupled to the operating and tripping mechanism (2, 2) and a tripping set (8) or alternatively an electronic controller (W) are introduced into the outer case (3, 3), specifically at the base case (3a), so as jointly with the intermediate case (3b, 3b) and said cover (3c, 3c), to form said low-voltage molded case circuit breaker (1a, 1b, 1c, 1d), constituting a double insulating case.
(35) Said operating and tripping mechanism (2, 2) comprises an operating handle (2a, 2a), whose rotational articulation transmits to the equalization shaft (2b) or alternatively a second equalization shaft (2b) to said rotary contact systems (4q, 9d, 10d, 11d) the force necessary to open and close to command the action of any one of said rotary contact systems (4q, 9d, 10d, 11d) of said circuit breaker (1a, 1b, 1c, 1d), by means of handles, locking elements and springs (not represented) known in the state of the art. Additionally, when a failure occurs, notably an overcurrent or a short-circuit, the contacts are provided to open automatically, due to the action of a trip device as preferably the thermomagnetic tripping set (4r), acting jointly with the operating and tripping mechanism (2, 2).
(36) Alternatively and according to a third and fourth embodiments of the invention, from said current measurer and power supply set (10h, 11i) associated with a said solid state electronic controller (W), it is possible to control said trip coil (13) coupled to said operating and tripping mechanism (2, 2) comprising a shaft (2f) associated to said lever (13b) capable of transmitting a displacement movement of the trigger support (13d) comprising actuator latch (13c) from the actuator (13f), wherein said trip coil (13), its said coil winding of the power terminals (13e) being electrically powered from said solid state electronic controller (W), wherein said trip coil (13) comprising an armature, encase a magnet with a casing and a cylindrical core, comprising compression spring, among other components (not represented), which assist the movement of said actuator (13c), in the ratio of external components of said trip coil (13), where said core (not represented) when energized from a signal of said solid state electronic controller (W), move said actuator (13f), associated to said trigger support (13d) and lever (13b) to provoke a displacement of the internal trigger and trip mechanism (2, 2) and disarm said circuit breaker (1c, 1d), to an intermediary position between the closed position ON and the open position OFF, for a TRIP state of said circuit breaker (1c, 1d), breaking an associated electrical circuit.
(37) After said TRIP, the prior OFF (re-arm) movement to a restart wherein said associated circuit breaker (1c, 1d) associated can be ON, or OFF (re-armed), after said associated circuit breaker (1c, 1d) associated is tripped, is carried out wherein said side ledge (13a) of said trip coil (13) is associated with a said repositioning latch (2e) of said handle (2a, 2a), when said handle (2a, 2a) of said operating and tripping mechanism (2, 2) returns to the initial position after a trip and repositions said trip coil (13) for a new trigger, conducting said lever (13b), trigger support (13d) and actuator (13f) to an initial position capable of a new trip of said trip coil (13).
(38) The circuit breakers (1a, 1b, 1c, 1d), including the reception of auxiliary trip devices which can be disarm devices like auxiliary trip coils of the subtension type or auxiliary remote trip coils have already been achieved or proposed.
(39) Another proposal included designing unipolar thermomagnetic switching modules (4, 4, 4, 9, 9, 9) or unipolar electronic trip switching modules (10, 10, 10, 11, 11, 11). A unipolar switching module (4, 4, 4, 9, 9, 9, 10, 10, 11, 11, 11) of this kind generally comprises a certain number of parts which are common to both kinds of unipolar switching modules. Other parts of the unipolar switching module are, however, specific for the unipolar switching module (4, 4, 4, 9, 9, 9) and other different parts are specific for electronic trip unipolar switching module (10, 10, 10, 11, 11, 11). Additionally, certain parts are common to both kinds of modules, such as for example preferably the rotary contact system (4q, 9d, 10d, 11d) or said arc-extinguishing system (4u, 9e, 9f, 10e, 11e, 11f) and their grids (4ua, 9ea, 9fa, 10ea, 11ea, 11fa), and also a base case (3a), among others.
(40) The fact that a large number of parts are different in these two types of devices is a disadvantage as this leads to a relatively high manufacturing cost and with a set cost that is also relatively high.
(41) Another object achieved of the present invention is to propose a circuit breaker (1a, 1b, 1c, 1d), being able to constitute a switching device containing unipolar thermomagnetic switching modules (4, 4, 4, 9, 9, 9) or containing unipolar electronic trip switching modules (10, 10, 10, 11, 11, 11) to which almost all the parts that constitute said circuit breaker (1a, 1b, 1c, 1d) are identical for both, which may be constructed.
(42) It should obviously be understood that other modifications and variations made to this invention are considered to be within the scope of the present invention.