The present invention relates to an earth leakage breaker with overcurrent protection and ground fault protection functions in a low voltage distribution system. In particular, the invention relates to a structure for posterior mounting type earth leakage operation output switch, as an internal accessory device of an earth leakage breaker that electrically indicates an earth leakage trip operation of the earth leakage breaker.
Known protection devices in a low voltage distribution system include a molded case circuit breaker and an earth leakage breaker. An earth leakage breaker produced in these days in Japan generally has an integrated structure assembling the parts for overcurrent protection function and the parts for ground fault protection function together in a single main body housing that has the same external dimensions as those of the molded case circuit breaker.
Circuit breakers such as molded case circuit breakers and earth leakage breakers have various internal accessory devices including an auxiliary switch for electrical indication of ON, OFF states of a breaker, an alarm switch for indicating trip state, a voltage trip device and the like as optional devices in order to flexibly deal with a system change in the user side. The internal accessory devices can be installed to be taken out afterwards in a recess formed in a cover of a main body housing (for example, Patent Document 1).
Conventional earth leakage breakers are normally equipped with an earth leakage indicating button of a pop-up type as a means for indicating the earth leakage trip operation (the indicator button projects from the cover of the main body housing in the earth leakage trip operation). Different from this means, an earth leakage operation output switch (a micro switch) for electrically indicating the earth leakage trip operation is installed in a known earth leakage trip device (for example, Patent Document 2).
Referring to
The earth leakage operation output switch 5 employs a micro switch with its actuator lever 5a arranged opposing a movable iron core 3a of the trip coil 3 in the unit case 2. The movable iron core 3a of the trip coil 3 is driven in the direction of the arrow on receiving an earth leakage detection signal from an earth leakage detection circuit. Corresponding to the movement of the movable iron core 3a, an actuating slider (not shown in the figures) strikes a trip crossbar of the breaker to trip a contact switching mechanism, and at the same time, the movable iron core 3a pushes an actuator lever 5a of the micro switch towards inside of the micro switch. As a result, a contact (a “make” contact) of the earth leakage operation output switch 5 turns ON to output an earth leakage operation signal. In
Patent Document 1: Japanese Unexamined Patent Application Publication No. H6-236726 (U.S. Pat. No. 5,581,219)(FIG. 1-3)
Patent Document 2: Japanese Unexamined Patent Application Publication No. H9-63453 (FIGS. 1-3)
Earth leakage breakers mounting the earth leakage trip device having the conventional structure as described above have following problems from a viewpoint of a user side. In the conventional structure shown in
For the users without using electrical indication of the earth leakage operation in the system employing an earth leakage breaker, the earth leakage operation output switch permanently incorporated in the earth leakage breaker deserves an excess specification. On the contrary, the users that purchased an earth leakage breaker with standard specification that is not equipped with an earth leakage operation output switch, cannot add an earth leakage operation output switch to the earth leakage breaker as it is. Consequently, these users can make a system including electrical indication of the earth leakage operation only by asking the manufacturer to exchange the earth leakage trip device for the one equipped with an earth leakage operation output switch, or by newly purchasing another earth leakage breaker with an earth leakage operation output switch. This is hardly dealt with by the users.
In light of the above problems, it is an object of the present invention to provide an earth leakage breaker capable of indicating earth leakage operation by an electric signal, wherein a user can install later an earth leakage operation output switch as an optional internal accessory device similar to an auxiliary switch and an alarm switch, onto an earth leakage breaker of standard specification. The invention also provides a structure for mounting an earth leakage operation output switch afterwards.
Further objects and advantages of the invention will be apparent from the following description of the invention.
The foregoing object of the invention has been achieved by an earth leakage breaker that serves functions of overcurrent protection and ground fault protection, and comprises a main body housing of a simplex structure composed of a casing and a case cover, the case cover being combined with an auxiliary cover that covers the case cover and having a recess with a pocket shape for mounting internal accessory devices.
The circuit breaker contains components in the housing, the components including a main circuit contact, a contact switching mechanism, an operation handle, an overcurrent tripping device, an earth leakage detection circuit combined with a zero-phase current transformer, and an earth leakage tripping device. An earth leakage operation output switch is removable and allowed to be mounted in the recess formed in the case cover of the main body housing. The earth leakage operation output switch is an internal accessory device that indicates earth leakage trip operation electrically and links mechanically with the earth leakage trip device to operate the earth leakage operation output switch in the earth leakage trip operation (first aspect). More specifically, the earth leakage breaker of the invention is constituted by the following modes.
(1) The earth leakage trip device mounted on the main body housing has a unit case including a switch housing for holding the earth leakage operation output switch, and the switch housing is disposed facing the recess of the case cover of the main body housing (second aspect).
(2) The earth leakage operation output switch is a micro switch, and an actuator of the micro switch is linked to an output end of the earth leakage trip device at a position of the micro switch inserted into the recess of the case cover of the main body housing (third aspect).
(3) The lead wires connected to the earth leakage operation output switch is placed to pass through a gap between the case cover of the main body housing and an auxiliary cover covering the case cover, and is lead out towards outer side or upper direction for wiring (fourth aspect).
(4) The earth leakage operation output switch in the mode (3) above has a support member for the lead wires on a top of the switch, and the lead wires are entangled with the support member to be tightly bundled, lead out outwardly of the housing through the gap adjacent to the auxiliary cover for wiring (fifth aspect).
(5) The lead wires, in the mode (3) above, connected to the earth leakage operation output switch and leading out towards outwardly of the main body housing is pushed down and held by an edge of the auxiliary cover covering the case cover of the main body housing at an intermediate position of the lead wires running outwardly (sixth aspect).
In this structure, the earth leakage operation output switch (an optional device), similarly to the internal accessory device such as an auxiliary switch and an alarm switch installed later for usage in an earth leakage breaker, can be readily inserted and set in the form of a cassette into a recess formed in the case cover of the main body housing by a user. At this inserted position, the earth leakage operation output switch is linked with the earth leakage tripping device to electrically indicate the earth leakage operation. Posterior installation of the earth leakage operation output switch can be readily conducted to electrically indicate earth leakage trip operation, which has been hardly dealt with by the user side in the conventional products. Therefore, service ability for the use is improved.
The unit case of the earth leakage trip device installed in the earth leakage breaker has a monolithically formed switch housing with a pocket shape for engaging and holding the earth leakage operation output switch at a predetermined insertion position. In this constitution, the earth leakage operation output switch and the earth leakage trip device working together, ensure linkage between the two and switching operation. In addition, the earth leakage operation output switch can be inserted and held at the predetermined position without limitation of configuration of the recess formed on the case cover of the main body housing of the breaker. Therefore, the configuration and structure of the recess formed on the case cover of the housing can be simplified.
Further by employing the wiring methods of the fourth through sixth aspects for the lead wires of the post mounted earth leakage operation output switch, the lead wires connected to the earth leakage output switch can be lead out for wiring in a desired direction corresponding to the condition of the application site in the user side. In addition, when the lead wires are entangled with the support member for the lead wires formed on a top of the switch housing and tightly bundled, and further pushed down and held by an edge of the auxiliary cover covering the case cover of the main body housing at an intermediate position of the lead wires, the lead wires extending outwardly, even exerted by an external tensional force, do not accidentally come off from the earth leakage operation output switch or the switch does not slip out of the predetermined place. Therefore, high reliability is secured.
a) through
a) and
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a) and
Some preferred embodiments according to the invention will be described with reference to
Referring to
Installed in the case 6a are a switching operation handle 7, a switching mechanism 15, an arc extinguishing chamber 16, a zero phase current transformer 17, and an earth leakage trip device 1 in the side of the handle 7 (
a) through 4(d) are supplementary illustrations of the earth leakage breaker with an earth leakage operation output switch 5 mounted afterwards in the main body housing 1, in which
Descriptions will be made on an assembly structure of the earth leakage trip device 1 referring to
The earth leakage trip device 1 shown in
The trip coil unit 8 is, as shown in
The earth leakage operation output switch 5 is a micro-switch including a contact mechanism (c-contact) provided with normally-open and a normally-close contact points. As shown in
The unit case 11 (a molded resin case) of the earth leakage trip device 1 in
In the assembled state having the earth leakage trip device 1 mounted on the main body housing 6 (
When an earth leakage operation output switch 5 is installed afterwards into the earth leakage breaker in the structure as described above, after opening the top cover 6c as shown in
In the above described structure, on the event of ground fault in the distribution system, the earth leakage detection circuit 14 detects earth leakage current in the main circuit. The output signal from the earth leakage detection circuit 14 operates the trip coil 3 of the earth leakage tripping device 1 driving the actuation slider 9 to trip the switching mechanism 15 and open the main circuit contacts. At the same time, the dog 9a branched from the actuation slider 9 moves to the direction of the arrow in
Next, a description will be made on a process, in the state of the earth leakage operation output switch 5 post-mounted on the earth leakage breaker, to arrange the lead wires 18 connected to the switch towards the side or above from the main body housing 6 of the breaker and lead out of the breaker referring to
After the earth leakage operation output switch 5 is inserted and set on the main body housing 5 of the earth leakage breaker, in the case that the lead wires 18 connected to the earth leakage operation output switch 5 are lead out to the side of the main body housing 6 as shown in
When the lead wires 18 cannot be lead out for wiring sideways as shown in
The lead wire supports 5c in a form of a bar with a rectangular cross section are provided on the top of the micro switch, and when the lead wires 18 are lead out for wiring from the earth leakage operation output switch 5 post-mounted on the main body housing 6 of the earth leakage breaker, the lead wires 18 can be lead out in a desired direction and held on the main body housing 6 by wiring in the above described process.
The disclosure of Japanese Patent Applications No. 2006-282096 filed on Oct. 17, 2006 and No. 2006-105830 filed on Apr. 7, 2006 are incorporated as a reference.
While the invention has been explained with reference to the specific embodiments of the invention, the explanation is illustrative and the invention is limited only by the appended claims.
Number | Date | Country | Kind |
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2006-105830 | Apr 2006 | JP | national |
2006-282096 | Oct 2006 | JP | national |
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5757254 | Kurono et al. | May 1998 | A |
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6784770 | Gimenez et al. | Aug 2004 | B2 |
6864447 | Lipsey et al. | Mar 2005 | B1 |
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Number | Date | Country |
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H06-236726 | Aug 1994 | JP |
H09-063453 | Mar 1997 | JP |
Number | Date | Country | |
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20070236841 A1 | Oct 2007 | US |