STATE-INDICATING DEVICE FOR LOW CURRENT APPLICATIONS WITH WIDER OPERATING RANGE
20230326698 ยท 2023-10-12
Inventors
- Vimal Adithiya TELLICHERRY MADHUSOODANAN (BANGALORE, IN)
- Abdul Latheef SHAIK (BANGALORE, IN)
- Ashok Ramlal RICHHAWAL (KARNATAKA, IN)
- Narasimha Murthy VEERAKARIYAPPA (KARNATAKA, IN)
Cpc classification
H01H71/46
ELECTRICITY
H01H71/04
ELECTRICITY
H01H2071/042
ELECTRICITY
International classification
H01H71/04
ELECTRICITY
Abstract
The present invention relates to a state-indicating device (100) for circuit breaker with test function disclose. The state-indicating device (100) includes signal transmission to plurality of indicating devices (100) from the circuit breaker by means of linking features between the circuit breaker and indicating device and also linkage between one indicating device and other indicating device. Indicating device includes a mechanical linkage comprising an actuator connected to hook member (7) and tripping bar (8) with stainless-steel rod (9) being configured to: operate mechanical plate (6) and lever (10), test function actuator (4); to push the microswitch button (19) of a microswitch assembly (12) by selectively On/Off (OF), Signal Default (SD) and SD+OF causing the circuit to change status from Normally Open (NO) to Normally Close (NC); and to show the trip status of the circuit breaker which is mounted to, say the right side of the invented state-indicating device (100).
Claims
1. A state-indicating device (100) linked to a circuit breaker indicating the status thereof with test function, said circuit breaker having an On/Off (OF) function and a Signal Default (SD) function, wherein said state-indicating device (100) comprises: a housing; a microswitch assembly (12) attached within said housing, said microswitch assembly (12) comprising at least one microswitch button (19); a mechanical linkage linked to said microswitch assembly (12), and configured to selectively operate said microswitch assembly (12), wherein said mechanical linkage comprises: a mechanical plate (6); a lever (10), a test function actuator (4) coupled with said lever (10) a tripping assembly mounted on said mechanical plate (6); and an actuator (3) coupled with said tripping assembly and configured to: actuate said microswitch button (19) based on signals corresponding to said On/Off (OF) function, said Signal Default (SD) function and a combination of said SD function and said OF function (SD+OF) that allow said microswitch assembly (12) to change from Normally Open (NO) state to Normally Close (NC) state, and vice versa; and indicate the trip status of the circuit breaker linked to said state-indicating device (100), and wherein said test function actuator (4) is configured to actuate said microswitch button (19) without operating said actuator (3) to perform a test of a make or break operation with said lever (10) without switching ON said circuit breaker linked to said state-indicating device (100).
2. The state-indicating device (100) as claimed in claim 1, wherein said tripping assembly comprises a hook member (7), a tripping bar (8), and a connecting stainless-steel rod (9) linking said hook member (7) with said actuator (3), wherein upon actuation of said actuator (3), said tripping assembly is biased to rotate at a predefined angle through said hook member (7) and latches with the tripping bar (8) and locks therein maintaining said predefined angle and thereby said tripping assembly allows to indicate the change of said trip status of said circuit breaker to either On, Off, or Trip.
3. The state-indicating device (100) as claimed in claim 1, wherein said mechanical linkage comprises a lever spring (11) assembled to said lever (10), wherein upon actuation of said actuator (3), said lever (10) actuates said microswitch button (19) to transmit a signal to said circuit breaker, indicating said trip status of said circuit breaker, and wherein said lever spring (11) provides a biasing force to said lever (10) to restore the position of said lever (10) with respect to said mechanical plate (6) when the state of the circuit breaker has been indicated.
4. The state-indicating device (100) as claimed in claim 1, wherein said test function actuator (4) comprises a test lever arm (20) such that, when a test current is passed through said state-indicating device (100), said test lever arm (20) comes in contact with the lever (10) to actuate said microswitch assembly (12) to test said state-indicating device (100) without switching ON said circuit breaker.
5. The state-indicating device (100) as claimed in claim 1, wherein said state-indicating device (100) comprises an actuator spring (2) attached with said actuator (3) providing biasing force to restore the position of the actuator (3) upon indication of the circuit breaker, such that the restoration of said actuator (3) is preceded by said restoration of said lever (10) to its position.
6. The state-indicating device (100) as claimed in claim 1, wherein said state-indicating device (100) comprises a mechanical plate spring (5) providing biasing force to said tripping assembly preventing from returning to a normal state while maintaining said predefined angle.
7. The state-indicating device (100) as claimed in claim 1, wherein said microswitch assembly (12) comprises a trip microswitch and a switch microswitch, said microswitch assembly (12) being configured to transmit a signal from a common contact to a Normally Open (NO) or a Normally Close (NC) contact.
8. The state-indicating device (100) as claimed in claim 7, wherein said actuator (3) comprises: a trip actuator being operably coupled with said trip microswitch; and a switch actuator being operably coupled with said switch microswitch.
9. The state-indicating device (100) as claimed in claim 1, wherein said switch actuator selectively engages with said microswitch button (19) on said switch microswitch and said trip actuator selectively engages with said microswitch button (19) to actuate said trip microswitch using the selective function of SD+OF with reset function and test function.
10. The state-indicating device (100) as claimed in claim 1, wherein said housing comprises: a bottom case (1) having plurality of engraved holding provisions, said bottom case is provided with at least one stationary contact and at least one movable contact; and a cover member (16) removably attached to said bottom case (1).
11. The state-indicating device (100) as claimed in claim 10, wherein the bottom case (1) is provided with plurality of terminal lugs (14) to facilitate an electrical connection between plurality of output terminals of said microswitch assembly (12) and said stationary contact and the movable contact of said state-indicating device (100).
12. The state-indicating device (100) as claimed in claim 11, wherein said stationary contact and said movable contact are gold plated contacts having a separation distance of 0.6 mm therebetween.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0037] For better understanding, an illustrative embodiment of the invention will now be described with reference to the accompanying drawings. It will however be appreciated that the embodiment exemplified in the drawings is merely illustrative and not limitative to the scope of the invention, because it is quite possible, indeed often desirable, to introduce a number of variations in the embodiment that have been shown in the drawings. In the accompanying drawings:
[0038]
[0039]
[0040]
DETAILED DESCRIPTION OF THE INVENTION
[0041] In the following, numerous specific details are set forth to provide a thorough description of the preferred embodiment. Those skilled in the art will recognize and appreciate that, despite of the detailed nature of the exemplary embodiment provided here; changes and modifications may be applied to said embodiments without limiting or departing from the generally intended scope. Like numbers refer to like elements throughout.
[0042] In the accompanying drawings,
[0043] The state-indicating device (100) includes a mechanical linkage comprising an actuator (3) which is assembled on the bottom case (1). The actuator (3) is connected to hook member (7) and tripping bar (8) with stainless-steel rod (9). The stainless-steel rod (9) is configured to create a link between the actuator (3) and said hook member (7). The mechanical linkage being configured to operate mechanical plate (6) and lever (10), test function actuator (4). The mechanical plate (6) houses the trip mechanism, which consist of the hook member (7) and tripping bar (8) linked with the actuator (3) by a connecting stainless-steel rod (9). On actuation of the actuator (3) the rotation motion is transferred to the mechanism through hook member (7) and latches with the tripping bar (8) locks the mechanism there by allowing the mechanism part, which consist of the mechanical plate (6), hook member (7), tripping bar (8), stainless-steel rod (9), the actuator (3) and the actuator spring (2) to rotate to a desired angle precisely maintained, which allows to change in status to On/Off/Trip.
[0044] The test function actuator (4) is assembled on the actuator (3). The test function actuator (4) is configured to make and break contact with said lever (10). Further, the test function actuator (4) comprises a test lever arm (20) such that, when a test current is passed through said state-indicating device, said test lever arm (20) comes in contact with the lever (10). The lever (10) then goes on to actuate said microswitch to test said state-indicating device without installing said circuit breaker. This also referred as test function of the state-indicating device. Further, a mechanical plate spring (5) along with said hook member (7) and said tripping bar (8) is engaged with said mechanical plate (6). Mechanical plate spring (5) provides the force necessary to prevent the mechanism which consist of the mechanical plate (6), hook member (7), tripping bar (8), stainless-steel rod (9), the actuator (3) and the actuator spring (2) from returning to original position and retain the state of operation.
[0045] The lever (10) is assembled on the mechanical plate (6) to actuate the microswitch button (19) for On/Off and trip indication. Further, a lever spring (11) is assembled onto said lever (10) and similarly and actuator spring (2) is assembled onto said actuator (3). The lever spring (11) helps in reset function when the state of the breaker has been indicated and also to maintain the position with mechanism of lever (10) with mechanical plate (6). The actuator spring (2) helps to retain the position of the actuator (3) on fault indication of the breaker also designed in such a way the lever (10) is returned first to its position before the actuator (3). This function of said springs are also referred as reset function of the state-indicating device (100).
[0046] With regard to
[0047] According to the embodiment as shown in
[0048] The state-indicating device (100) further comprises an on-off actuator provided with a microswitch. The microswitch assembly (12), according to one preferred embodiment of the invention, is an on-off type microswitch that is selectively engaged to actuate a button of the on-off microswitch using the selective function of On/Off (OF) with test function. The microswitch assembly (12) comprises a switch microswitch and a trip microswitch. The trip actuator selectively engages to actuate a button of the microswitch assembly (12) using the selective function of SD with reset function and test function.
[0049] The state-indicating device (100) further includes a plurality of wires to be electrically engaged with corresponding microswitch assembly (12). According to a preferred embodiment, one end of each said wires is electrically connected to one of the plurality of output terminals of the microswitch assembly (12), and the other end of each wire is soldered to one of the plurality of output terminals with robust splicing methods withstanding higher mechanical vibration and higher voltage. In said state-indicating device (100), plurality of terminal lugs (14) and terminal screws (13) are provided. The terminal lugs (14) are assembled on the bottom case (1) and are screwed thereto to help create cable connection with said state-indicating device (100). The terminal screws (13) are assembled on the terminal lugs (14) to facilitate said cable connections. The plurality of output terminals, in a preferred embodiment are box terminals. Such box terminals, according to one object of the invention, are designed for higher isolation distance for higher and lower voltage and current operating conditions. The working procedure of the box terminals are not discussed for the sake of brevity.
[0050] Each of the junction points of said other end of said each wire is soldered. In particular, said other end with tapered joint which is designed with 70N or greater separation force to one of the pluralities of output terminals to withstand higher mechanical vibration and higher voltage. Further, The plurality of output terminals of said microswitch assembly (12) are electrically connected to one of the stationary contact and the movable contact with in the microswitch assembly (12) of the state-indicating device (100) to provide the continuity only when actuated by the microswitch button (19). The movable contact is formed with a silver or gold plated contact. The contacts are custom designed having 0.6 mm or more isolation distance custom designed for higher performance. Furthermore, the Normally Open (NO) contact and the Normally Closed (NC) contact are silver or gold plated contact.
[0051] As already mentioned, the foregoing description is illustrative of the invention and not limitative to its scope, because it will be apparent to persons skilled in the art to devise other alternative embodiments without departing from the broad ambit of the disclosures made herein.
PART-LIST
[0052] State-indicating device (100) [0053] Bottom case (1) [0054] Actuator spring (2) [0055] Actuator (3) [0056] Test function actuator (4) [0057] Mechanical plate spring (5) [0058] Mechanical plate (6) [0059] Hook member (7) [0060] Tripping bar (8) [0061] Stainless-steel rod (9) [0062] Lever (10) [0063] Lever spring (11) [0064] Microswitch assembly (12) [0065] Terminal screws (13) [0066] Terminal lugs (14) [0067] Front face cover (15) [0068] Cover member (16) [0069] Precision snaps (17) [0070] Mechanical connections (18) [0071] Microswitch button (19) [0072] Test lever arm (20)