Field of the Invention
[0001] The invention relates to a circuit breaker, and more particularly to a fault indicator
or a short-circuit indicator adapted for the circuit breaker.
Background of the Invention
[0002] A circuit breaker is designed to trip and turn OFF power during short-circuit or
fault condition and indicate short-circuit or fault to the user. Generally, the handle
of the circuit breaker gets tilted during a short circuit situation to indicate the
short circuit situation which successively moves to its initial position to indicate
that the circuit breaker is switched OFF. Thus, mere tilting of the handle of the
circuit breaker does not convincingly indicate exact operating condition of the circuit
breaker to a remote observer.
[0003] There are various indication mechanisms such as buzzers, light indicators and the
like are also used in the art to indicate short-circuit condition, but these indication
mechanisms indicate short-circuit condition by creating a buzz or an illumination
at the time of the short-circuit. For example, in
EP1703533, a short-circuit condition is indicated by an indication mechanism visible on the
circuit breaker. The indication mechanism is indicated by a flag that is visible to
a user. The flag is mounted on a rotating drum. A solenoid of the circuit breaker
acts on the rotating drum. The rotating drum is also connected to a handle of the
circuit breaker. However, an erroneous situation may arise if the rotating drum gets
blocked. In such situation, the circuit breaker might mal-function and an indication
of the short-circuit condition might be erroneous.
[0004] Document
US 2006/097829 A1 discloses a circuit breaker device having a mechanism for indicating an ON condition,
a TRIPPED condition and an OFF condition. The mechanism comprises a slider (a solenoid
plunger) connected to a solenoid coil and movable between first and second positions
responsive to the operating conditions. A rotating arm is connected to the slider
and has an indication flag mounted thereon for indicating the plurality of operating
conditions. Therefore, there exists a need of a short-circuit indicator mechanism
for a circuit breaker that overcomes all the drawbacks of the prior art.
Objects of the Invention
[0005] An object of the present invention is to provide a remote indication of a plurality
of working conditions of a circuit breaker that gives a remote indication of an operating
condition, a short-circuit condition and/or an OFF condition of the circuit breaker
to a distant observer.
Summary of the Invention
[0006] The present invention discloses a circuit breaker device having a short-circuit indicator
mechanism adapted for indicating a normal operating condition, a short-circuit condition
and an OFF condition of the circuit breaker. The short-circuit indicator mechanism
comprises a slider that is having a first end and a second end. The first end of the
slider connects to a first hook. The second end of the slider connects to a solenoid.
The slider slidably moves between a first position and a second position responsive
to a plurality of operating conditions of the circuit breaker. The short-circuit indicator
mechanism includes a rotating arm that is having a second hook connected thereto.
The second hook engages with the first hook in the first position of the slider. The
second hook disengages with the first hook in the second position of the slider. The
rotating arm is having an indication flag mounted thereon. The indication flag is
adapted for indicating the plurality of operating conditions of the circuit breaker.
The rotating arm includes a slot adapted to accommodate a pin that assists in a movement
of the rotating arm in response to the plurality of operating conditions. The slider
includes a spring extending between a body of the slider and the rotating arm adapted
for assisting a counterclockwise rotation of the rotating arm.
Brief Description of the Drawings
[0007]
FIG. 1 is a front view of a short-circuit indicator mechanism constructed in accordance
with the present invention illustrating a normal operating condition of a circuit
breaker;
FIG. 2 is a front view of the short-circuit indicator mechanism of FIG. 1 illustrating
a short-circuit condition of the circuit breaker; and
FIG. 3 is a front view of the short circuit indicator mechanism of FIG. 1 illustrating
an OFF condition of the circuit breaker.
Detailed Description of the Drawings
[0008] The foregoing objects of the present invention are accomplished and the problems
and shortcomings associated with the prior art, techniques and approaches are overcome
by the present invention as described below in the preferred embodiments.
[0009] Referring to FIG. 1, a circuit breaker 100 having a short-circuit indicator mechanism
constructed in accordance with a preferred embodiment of the present invention is
shown. The short-circuit indicator mechanism includes a solenoid 102, a slider 104,
a rotating arm 110, and an indication flag 114. The slider 104 is having a first end
that includes a first hook 106. The first hook 106 is preferably positioned substantially
perpendicular to the first end. The slider 104 is having a second end that connects
to the solenoid 102 via an annular collar 118. The slider 104 is removably connectable
in this one preferred embodiment. The slider 104 is linearly movable between a first
position and a second position. The solenoid 102 assists in the linear movement of
the slider 104 between the first and second positions responsive to a plurality of
operating conditions of circuit breaker 100. In this one particular embodiment, the
slider 104 remains in the first position in a normal operating condition of the circuit
breaker 100. The slider 104 moves to the second position during a short-circuit condition
of the circuit breaker 100. The short-circuit indicator mechanism includes a spring
103 that extends between a body of the slider 104 and the rotating arm 110. The spring
103 substantially pushes the slider 104 against the solenoid 102. The spring 103 also
assists in a counterclockwise rotation of the rotating arm 110 in this one particular
embodiment.
[0010] The rotating arm 110 is mounted on a housing of the circuit breaker 100 along a pivot
112. The rotating arm 110 includes a second hook 108 that respectively engages and
disengages with the first hook 106 depending upon the operating condition of the slider
104. The rotating arm 110 includes an elongated slot that engages with a movable pin
such that the pin is movable within the elongated slot per the movement of a movable
contact of the circuit breaker 100 in this one particular embodiment. The pin moves
to an intermediate position inside the slot when the movable contact of the miniature
circuit breaker 100 disengages with the fixed contact in the short-circuit condition.
[0011] The pin is configured to move inside the elongated slot and align to an edge of the
slot to move the rotating arm 110 per the movement of a handle 120 of the circuit
breaker 100. The handle 120 is configured to open and close the movable contact of
the circuit breaker 100 to preferably switch ON and switch OFF the circuit breaker
100. However, it is understood that the rotating arm 110 remains stationary if the
short-circuit condition is not verified.
[0012] The short-circuit indicator mechanism includes an indication flag 114 that indicates
the operating condition of circuit breaker 100 in this one preferred embodiment. The
short-circuit indicator mechanism further comprises a window 116 preferably located
on the housing of circuit breaker 100 such that the indication flag 114 is visible
through the window 116. In this one embodiment, the indication flag 114 is visible
through the window 116 during the short-circuit condition of the circuit breaker 100.
However, the flag 114 is invisible through the window 116 during a normal operating
condition of the circuit breaker 100.
[0013] As shown in FIG. 1, the circuit breaker 100 is in the normal operating condition.
In the normal operating position the handle 120 is in an ON position. In this condition,
the solenoid 102 is in a retracted position and the slider 104 is in a first position.
In this condition, the first hook 106 and the second hook 108 are engaged with each
other. In this condition, the indication flag 114 is not visible through the window
116.
[0014] Referring now to FIG. 2, a short circuit condition of the circuit breaker 100 is
shown. In the short circuit condition, the solenoid 102 reacts and moves the slider
104 to a second position. In the second position, the slider 104 moves such that the
first hook 106 disengages from the second hook 108 to facilitate rotation of the rotating
arm 110. In this condition, the indication flag 114 is visible through the window
116 to indicate the short-circuit condition of the circuit breaker 100.
[0015] As shown in FIG. 3, the circuit breaker 100 is an OFF condition wherein the handle
120 shifts to an OFF position. In this condition, the solenoid 102 retracts to an
original position to move the slider 104 back to the first position. In the first
position, the first hook 106 and the second hook 108 contact without getting engaged
with each other. In this condition, the indication flag 114 remains visible through
the window 116 thereby indicating the short-circuit condition of the circuit breaker
100.
Advantages of the invention
[0016]
- 1. The solenoid 102 is capable of reacting to a change in an operating condition of
the circuit breaker 100 that advantageously assists in the linear movement of the
slider 104 as per the operating condition of the circuit breaker 100.
- 2. The spring 103 extends between the body of the slider 104 and the rotating arm
110 to advantageously push the slider 104 against the solenoid 102 for enabling the
rotating arm 110 to rotate in a counterclockwise direction.
- 3. The slider 104 is capable of moving linearly between the first and second positions
to respectively define the operating condition and the short-circuit condition of
the circuit breaker 100.
- 4. The window 116 is advantageously provided on the housing of the circuit breaker
100 such that the indication flag 114 is visible through the window 116 during the
short-circuit condition and the flag 114 is invisible during the normal operating
condition.
[0017] The foregoing descriptions of specific embodiments of the present invention have
been presented for purposes of illustration and description. They are not intended
to be exhaustive or to limit the present invention to the precise forms disclosed,
and obviously many modifications and variations are possible in light of the above
teaching. The embodiments were, chosen and described in order to best explain the
principles of the present invention and its practical application, to thereby enable
others skilled in the art to best utilize the present invention and various embodiments
with various modifications as are suited to the particular use contemplated.
1. A circuit breaker device (100) having a short-circuit indicator mechanism for indicating
a normal operating condition, a short-circuit condition and an OFF condition of the
circuit breaker, the short-circuit indicator mechanism comprising:
a slider (104) having a first end and a second end, the first end connecting to a
first hook (106), the second end connecting to a solenoid (102), the slider (104)
slidably moving between a first position and a second position responsive to a plurality
of operating conditions; and
a rotating arm (110) having a second hook (108) connected thereto, the second hook
(108) engaging with the first hook (106) in the first position of the slider (104),
the second hook (108) disengaging with the first hook (106) in the second position
of the slider (104), the rotating arm (110) having an indication flag (114) mounted
thereon, the indication flag (114) adapted for indicating the plurality of operating
conditions.
2. The short-circuit indicator mechanism as claimed in claim 1, wherein the rotating
arm (110) includes a slot adapted to accommodate a pin that assists in a movement
of the rotating-arm in response to the plurality of operating conditions.
3. The short-circuit indicator mechanism as claimed in claim 1, wherein the rotating
arm (110) and the slider (104) are having a spring (103) extended therebetween to
assist a rotation of the rotating arm (110).
1. Leistungsschaltereinrichtung (100) mit einem Kurzschlussindikatormechanismus zum Anzeigen
eines normalen Betriebszustands, eines Kurzschlusszustands und eines AUS-Zustands
des Leistungsschalters, wobei der Kurzschlussindikatormechanismus Folgendes umfasst:
einen Schieber (104) mit einem ersten Ende und einem zweiten Ende, wobei das erste
Ende mit einem ersten Haken (106) verbunden ist, das zweite Ende mit einer Magnetspule
(102) verbunden ist, wobei der Schieber (104) sich gleitend zwischen einer ersten
Position und einer zweiten Position als Reaktion auf mehrere Betriebsbedingungen bewegt;
und
einen Dreharm (110) mit einem damit verbundenen zweiten Haken (108), wobei der zweite
Haken (108) den ersten Haken (106) in der ersten Position des Schiebers (104) in Eingriff
nimmt, der zweite Haken (108) den ersten Haken (106) in der zweiten Position des Schiebers
(104) freigibt, wobei der Dreharm (110) eine daran montierte Anzeigemarkierung (114)
besitzt, wobei die Anzeigemarkierung (114) zum Anzeigen der mehreren Betriebsbedingungen
ausgelegt ist.
2. Kurzschlussindikatormechanismus nach Anspruch 1, wobei der Dreharm (110) einen Schlitz
enthält, der ausgelegt ist zum Aufnehmen eines Stifts, der eine Bewegung des Dreharms
als Reaktion auf die mehreren Betriebsbedingungen unterstützt.
3. Kurzschlussindikatormechanismus nach Anspruch 1, wobei der Dreharm (110) und der Schieber
(104) eine Feder (103) aufweisen, die sich dazwischen erstreckt, um eine Drehung des
Dreharms (110) zu unterstützen.
1. Dispositif de disjoncteur (100) comportant un mécanisme d'indication de court-circuit
servant à indiquer un état de fonctionnement normal, un état de court-circuit et un
état d'arrêt du disjoncteur, le mécanisme d'indication de court-circuit comprenant
:
un coulisseau (104) comportant une première extrémité et une seconde extrémité, la
première extrémité étant reliée à un premier crochet (106), la seconde extrémité étant
reliée à un solénoïde (102), le coulisseau (104) se déplaçant par coulissement entre
une première position et une seconde position en réaction à une pluralité d'états
de fonctionnement ; et
un bras rotatif (110) comportant un second crochet (108) relié à celui-ci, le second
crochet (108) venant en prise avec le premier crochet (106) dans la première position
du coulisseau (104), le second crochet (108) se séparant du premier crochet (106)
dans la seconde position du coulisseau (104), le bras rotatif (110) comportant un
indicateur (114) supporté sur celui-ci, l'indicateur (114) étant conçu pour indiquer
la pluralité d'états de fonctionnement.
2. Mécanisme indicateur de court-circuit selon la revendication 1, dans lequel le bras
rotatif (110) comprend une fente conçue pour recevoir une goupille qui facilite un
déplacement du bras rotatif en réaction à la pluralité d'états de fonctionnement.
3. Mécanisme indicateur de court-circuit selon la revendication 1, dans lequel le bras
rotatif (110) et le coulisseau (104) comportent un ressort (103) s'étendant entre
ceux-ci afin de faciliter une rotation du bras rotatif (110).