序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
181 JPS6227495B2 - JP4794980 1980-04-11 JPS6227495B2 1987-06-15 FURITSUTSU MENTERU
182 Auxiliary module for breaker JP6175785 1985-03-26 JPS60218729A 1985-11-01 UIRIAMU II MEI; UIRIAMU AARU TEIRAA; PEETAA ENU SHII PANGU
183 Exterior attached block connectible with breaker JP6175885 1985-03-26 JPS60218727A 1985-11-01 REMAAKANDO PIEERU; PIERO ENRI
184 Ground defect breaker JP1459085 1985-01-30 JPS60189136A 1985-09-26 ROBAATO ARAN MOORISU; JIYOOJI UIRIAMU KETSUSERU; POORU TOMASU RAJIYOTSUTO
185 Leakage breaker JP13451282 1982-07-31 JPS5925144A 1984-02-09 MAKINAGA HITOSHI
186 Leakage breaker JP13199180 1980-09-22 JPS5757439A 1982-04-06 KOUNO NORITO
187 JPS5540999U - JP12313379 1979-09-07 JPS5540999U 1980-03-15
188 Leakage indicator for leakage breaker JP15194077 1977-12-15 JPS5482674A 1979-07-02 MAKINAGA HITOSHI; HIRAI YUUJI
189 Rodenshadankinotesutosuitsuchi JP4444075 1975-04-11 JPS51103277A 1976-09-11 YAMAGUCHI NORITSUGU; YOSHINO AKIRA; OHARA TOSHINORI
190 Rodenshadanki JP687475 1975-01-14 JPS5145771A 1976-04-19 KAWAMOTO SADAO; KUMOTO HIDEO; MAKINAGA HITOSHI; IWABUCHI MAKOTO
191 Setsuchijikokairohogosochi JP4572975 1975-04-15 JPS5138640A 1976-03-31 KAARU II GURITSUKOO
192 JPS4989863A - JP303473 1972-12-29 JPS4989863A 1974-08-28
193 JPS4954868A - JP4833673 1973-04-26 JPS4954868A 1974-05-28
194 JPS4853262A - JP8855871 1971-11-06 JPS4853262A 1973-07-26
195 JPS47010295A - JP8938471 1971-11-09 JPS47010295A 1972-05-24
196 JPS466675A - JP3148171 1971-05-12 JPS466675A 1971-12-13
197 回路遮断器及び回路遮断器の組立方法 JP2013026627 2013-02-14 JP6020236B2 2016-11-02 佐藤 佑高; 浜田 佳伸; 細岡 洋平
198 漏電遮断器 JP2011249402 2011-11-15 JP5866993B2 2016-02-24 川嶋 善明; 細岡 洋平
199 Trip button device of the external operating handle for the circuit breaker JP2011220268 2011-10-04 JP5291167B2 2013-09-18 ワンウォン リ
Provided is a trip button mechanism of an external handle for a circuit breaker. The trip button mechanism includes a button support (220), an externally operable trip button (230), and an elastic member (240). The button support (220) is disposed at an outer casing (210) of the externally operable handle. The operable trip button (230) is movable along the button support (220) for manipulating a circuit breaker trip button (11). The elastic member (240) applies a force to the operable trip button (230) in a direction opposite to a direction in which the operable trip button (230) pushes the circuit breaker trip button (11). The operable trip button (230) includes a handle (231) exposed through a penetration hole (212) of the outer casing (210), and a pusher (233) formed in one piece with the handle (231) and movable along the button support (220) for selectively pushing the circuit breaker trip button (11). Therefore, the trip button mechanism can be easily assembled to increase productivity and decrease manufacturing costs, and the trip button mechanism can be reliably operated.
200 Trip button mechanism of externally-operable handle for circuit breaker JP2011220268 2011-10-04 JP2012079701A 2012-04-19 LEE KWANGWON
PROBLEM TO BE SOLVED: To provide a trip button mechanism of an externally-operable handle for a circuit breaker.SOLUTION: An embodiment of the present invention provides a trip button mechanism of an externally-operable handle for a circuit breaker which operates a circuit breaker trip button arranged on the circuit breaker. The trip button mechanism includes: a button support which is disposed on an outer casing of the externally-operable handle and is communicated to the outside via a penetration hole formed on the outer casing; an externally-operable trip button including a handle which is exposed through the penetration hole, and a pusher which is formed integrally with the handle and moves along the button support for selectively pushing the circuit breaker trip button; and an elastic member for applying force to the externally-operable trip button in a direction opposite to a direction in which the externally-operable trip button pushes the circuit breaker trip button. According to the embodiment of the present invention, easiness in an assembly process and reliability in an operational phase can be ensured, and enhancement in productivity and reduction in cost can be expected.
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