Systems, apparatus, and methods for accessory tripping and resetting of electric circuit breakers
10242833 · 2019-03-26
Assignee
Inventors
Cpc classification
H01H71/128
ELECTRICITY
H01H71/505
ELECTRICITY
H01H21/30
ELECTRICITY
International classification
H01H21/30
ELECTRICITY
H01H71/12
ELECTRICITY
H01H71/50
ELECTRICITY
Abstract
Systems, apparatus, and methods for accessory tripping and resetting of circuit breakers are disclosed. Embodiments of the invention include a breaker handle; a breaker trip bar; an accessory trip device; an accessory pocket configured to receive the accessory trip device; and an adapter module disposed within the accessory pocket between the accessory trip device and the breaker handle, and coupled to the breaker handle, the breaker trip bar, and the accessory trip device, the adapter module including linkages configured to boost a force output by the accessory trip device. Numerous additional features and aspects are disclosed.
Claims
1. A circuit breaker comprising: a breaker handle; a breaker trip bar; an accessory trip device; an accessory pocket configured to receive the accessory trip device; and an adapter module disposed within the accessory pocket between the accessory trip device and the breaker handle, and coupled to the breaker handle, the breaker trip bar, and the accessory trip device, the adapter module including linkages configured to boost a force output by the accessory trip device, wherein the linkages include: a reset arm coupled to the breaker handle; a latch coupled to the reset arm; a trip shaft coupled to the latch; a latch bar and a bias spring coupled to the trip shaft; an adapter trip bar coupled to the trip shaft; a trip spring coupled to the adapter trip bar; and a trip lever coupled to the adapter trip bar.
2. The circuit breaker of claim 1 wherein the linkages are further configured to lengthen a stroke length of the accessory trip device.
3. The circuit breaker of claim 1 wherein the linkages further include: a reset slide coupled to the reset arm.
4. The circuit breaker of claim 3 wherein moving the breaker handle to the reset position interacts with the reset arm to engage the latch allowing the trip shaft and latch bar to move to a latched position via the bias spring, and rotates the latch to move the adapter trip bar to compress the trip spring and allow the trip lever to rotate to a reset position.
5. The circuit breaker of claim 4 wherein the trip lever rotating to the reset position decouples the trip lever from the breaker trip shaft and allows the circuit breaker to reset.
6. The circuit breaker of claim 5 wherein the interaction of the breaker handle with the reset arm also moves the reset slide to reset the accessory trip device.
7. An adapter module for an accessory trip device in an accessory pocket of a circuit breaker, the adapter module comprising: linkages configured to boost a force output by the accessory trip device; a coupling to a breaker handle; a coupling to a breaker trip bar; and a coupling to the accessory trip device, wherein the linkages include: a reset arm coupled to the breaker handle; a latch coupled to the reset arm; a trip shaft coupled to the latch; a latch bar and a bias spring coupled to the trip shaft; an adapter trip bar coupled to the trip shaft; a trip spring coupled to the adapter trip bar; and a trip lever coupled to the adapter trip bar.
8. The adapter module of claim 7 wherein the linkages are further configured to lengthen a stroke length of the accessory trip device.
9. The adapter module of claim 7 wherein the linkages further include: a reset slide coupled to the reset arm.
10. The adapter module of claim 9 wherein moving the breaker handle to the reset position interacts with the reset arm to engage the latch allowing the trip shaft and latch bar to move to a latched position via the bias spring, and rotates the latch to move the adapter trip bar to compress the trip spring and allow the trip lever to rotate to a reset position.
11. The adapter module of claim 10 wherein the trip lever rotating to the reset position decouples the trip lever from the breaker trip shaft and allows the circuit breaker to reset.
12. The adapter module of claim 11 wherein the interaction of the breaker handle with the reset arm also moves the reset slide to reset the accessory trip device.
13. An adapter module for an accessory trip device in an accessory pocket of a circuit breaker, the adapter module comprising: a housing that supports an internal multi-linkage system, wherein the multi-linkage system provides a force and stroke multiplier for the accessory trip device, wherein the multi-linkage system provides for resetting of the force and stroke multiplier for the accessory trip device, and wherein the multi-linkage system operates in unison with the circuit breaker for RESET and OFF states of the circuit breaker and the multi-linkage system works independently from the circuit breaker in ON and TRIPPED states of the circuit breaker; a coupling to a breaker handle; a coupling to a breaker trip bar; and a coupling to the accessory trip device, wherein the multi-linkage system includes linkages that further comprising: a reset arm coupled to the breaker handle, a latch coupled to the reset arm, a trip shaft coupled to the latch, a latch bar and a bias spring coupled to the trip shaft, an adapter trip bar coupled to the trip shaft, a trip spring coupled to the adapter trip bar, and a trip lever coupled to the adapter trip bar.
14. The adapter module of claim 13, wherein the linkages further including a reset slide coupled to the reset arm.
15. The adapter module of claim 13, wherein the linkages are further configured to lengthen a stroke length of the accessory trip device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(20) Embodiments disclosed herein describe an adapter module for an accessory trip device for circuit breakers. Circuit breakers designed to accept accessory devices such as sensors, alarms, remote tripping devices, etc. provide users a cost effective means to customize or reconfigure circuit breakers and provide manufacturers a cost effective means to provide more product options to meet customer needs. As discussed above, these circuit breakers include a standardized accessory pocket that is adapted to receive various different modular accessory devices. In other words, a user can choose from among several different accessory devices for use in a given circuit breaker. However, even though different size (e.g., different amperage rating) circuit breakers may have the same standardized size accessory pockets, accessory trip devices are frequently specific to particular circuit breakers, for example, in order to meet the tripping force and stroke length specifications of the given circuit breaker. Thus, a manufacturer will typically resort to making different versions of the same accessory trip device for different size circuit breakers. Embodiments disclosed herein provide an adapter module for use with an accessory trip device that adapts the accessory trip device to be suitable for use with different size circuit breakers that have different tripping force and stroke length specifications. Thus, for example, the adapter module allows a single accessory trip device to be compatible with and used with an entire range of different size circuit breakers, e.g., ranging in size from approximately 40 amps to approximately 1500 amps.
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(28) Numerous embodiments are described in this disclosure, and are presented for illustrative purposes only. The described embodiments are not, and are not intended to be, limiting in any sense. The presently disclosed embodiments are widely applicable to numerous other embodiments, as is readily apparent from the disclosure. One of ordinary skill in the art will recognize that the disclosed embodiments may be practiced with various modifications and alterations, such as structural, logical, software, and electrical modifications. Although particular features of the disclosed embodiments may be described with reference to one or more particular embodiments and/or drawings, it should be understood that such features are not limited to usage in the one or more particular embodiments or drawings with reference to which they are described, unless expressly specified otherwise.
(29) The present disclosure is neither a literal description of all embodiments nor a listing of features of the embodiments that must be present in all embodiments. The present disclosure provides, to one of ordinary skill in the art, an enabling description of several embodiments. Some of these embodiments may not be claimed in the present application, but may nevertheless be claimed in one or more continuing applications that claim the benefit of priority of the present application.
(30) The foregoing description discloses only example embodiments. Modifications of the above-disclosed apparatus, systems and methods which fall within the scope of the claims will be readily apparent to those of ordinary skill in the art. Accordingly, while the embodiments have been disclosed in connection with exemplary embodiments thereof, it should be understood that other embodiments may fall within the intended spirit and scope, as defined by the following claims.