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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
101 How to prevent a conductive failure failure of electrical switchgear contacts due to the silicone steam JP18174087 1987-07-21 JP2608411B2 1997-05-07 勝利 峰; 博之 浅井
102 Circuit breaker JP26743095 1995-10-16 JPH09115409A 1997-05-02 KATSUBE SHUNICHI; UEMOTO TOSHIKAZU; YAMAZAKI SATORU; FUKUTANI KAZUNORI; YAMAGATA NOBUJI
PROBLEM TO BE SOLVED: To prevent decrease of insulation performance, deformation and destruction of component members by forming a circuit breaking mechanism and a part to be subjected to arc of an arc suppressor, of a specified resin, or covering them with the resin. SOLUTION: A circuit breaking mechanism is formed of a fixed contact element 5 with a fixed contact 4 and a movable contact element 2 with a movable contact 3 contacting the contact 4 and separating therefrom. An arc suppressor 7 composed of an arc extinguishing plate 7a cooling and extinguishing arc and an arc extinguishing side late 7b retaining the plate 7a is installed. In the case where arc is generated between the movable contact element 2 and the fixed contact 5 when a circuit is breaked, a part made of resin to be subjected to arc is composed of or covered with resin formed material containing silicone polymer. The side late 7b of the suppressor 7 is composed of 18 to 26wt.% of silicon polymer, 28 to 37wt.% of metal hydroxide and 41 to 50wt.% of reinforcing material. Accordingly decrease in insulation performance because of generation of arc can be suppressed, and deformation or destruction of component parts caused by arbupt increase of gas pressure in a case can be prevented. COPYRIGHT: (C)1997,JPO
103 Electronic equipment with shock-absorbing property and waterproof functions JP10200095 1995-04-26 JPH0870188A 1996-03-12 SAI HITSUKEI; RI TENRETSU
PURPOSE: To enhance a portable electronic equipment in vibration and shock- absorbing properties by a method, wherein a plastic member is made to serve as a rigid case inner surface for protecting an inner part, and a rubber member which serves as an outer surface for absorbing shocks applied from the outside is attached to the plastic member. CONSTITUTION: The upper case of a computer is possessed of shock-absorbing properties and a waterproof function and composed of a plastic member 12 which serves as the inner surface of the upper case, a rubber member 11 attached to the plastic member 12, and a main gasket 13 which is inserted between the upper case and a lower case for assembly. The plastic member 12 is formed of an acrylobutylene-styrene resin, and the rubber member 11 is formed of a synthetic resin of rubber ingredients such as Du Pont's HYTREL resin. HYTREL resin is a block copolymer composed of polybutylene terephthalate as a hard component and long-chain polyether glycol as a soft component.
104 Identification of material of circuit breaker enclosure JP23040393 1993-09-16 JPH06203732A 1994-07-22 CHIYAARUZU EDOMANDO RITSUKAA
PURPOSE: To ensure that the enclosure of a circuit breaker is made of a proper material by illumination with ultraviolet ray by containing a fluorescent material in a plastic material together with a filler. CONSTITUTION: A case 11, a handle 12 and a cover of a wiring circuit breaker 10 are made of a plastic material containing, as filler, about 1.0-20wt.% of glass fiber to the plastic resin. To this plastic material, about 0.05-5.00% of a fluorescent material is added. An arc generated between the contacts of the circuit breaker 10 contains an ionized gas which emits a large quantity of ultraviolet ray to make the cover, case 11 and handle 12 emit fluorescence. Thus, the manufacture of the circuit breaker can be easily identified. COPYRIGHT: (C)1994,JPO
105 ELECTRONIC DEVICE WITH AUTOMATIC MODE SWITCHING US15812907 2017-11-14 US20180067757A1 2018-03-08 Fletcher R. Rothkopf
An automatic hold switch is disclosed. The automatic hold switch provides a means for automatically switching a hold feature on and off. When the hold feature is on, one or more input devices of a portable electronic device are disabled or prevented from providing input signals. When the hold feature is off, one or more input devices of a portable electronic device are enabled or allowed to provide input signals. Because the user no longer has to manually control the hold feature, the number of actions that need to be taken by the user is reduced. In one example, the automatic hold switch is embodied with light sensors that detect when the device is in a dark environment and when the device is in a light environment. A dark environment indicates to the portable electronic device that the user wishes not to input and therefore the hold feature is turned on. A lighted environment indicates to the portable electronic device that the user wishes to input and therefore the hold feature is turned off.
106 CURRENT LIMITING CIRCUIT, DC POWER SUPPLY CONNECTOR, AND DC POWER SOURCE DEVICE US15545016 2015-05-26 US20180006447A1 2018-01-04 Tadashi Morita
Provided is a current limiting circuit (30) configured to: before release of a touch between a second contact (20b) provided at a position where a terminal (11a) on a power receiving side in which a current flows at supply of DC power in an electrode that supplies the DC power touches before touching a first contact (20a) provided for the electrode at supply of the DC power and the terminal (11a), decrease the current flowing into the terminal (11a) through the second contact (20b); and avoid flowing a current in a case where the terminal (11a) is touching the first contact (20a), and decrease the current flowing into the terminal (11a) through the second contact (20b) only in a case where the terminal (11a) is touching the second contact (20b).
107 Apparatus and method for monitoring operation of an insulated gate bipolar transistor US13882710 2013-01-09 US09664729B2 2017-05-30 Randall C. Gray; Ibrahim S. Kandah; Philipe J. Perruchoud; John M. Pigott; Thierry Sicard
Operation of an insulated gate bipolar transistor (IGBT) is monitored by an apparatus that has a capacitor connected between a collector of the IGBT and an input node. A processing circuit, coupled to the input node, responds to current flowing through the capacitor by providing an indication whether a voltage level at the collector is changing and the rate of that change. The processing circuit also employs the capacitor current to provide an output voltage that indicates the voltage at the IGBT collector.
108 Electronic device with automatic mode switching US15213097 2016-07-18 US09645836B2 2017-05-09 Fletcher R. Rothkopf
An automatic hold switch is disclosed. The automatic hold switch provides a means for automatically switching a hold feature on and off. When the hold feature is on, one or more input devices of a portable electronic device are disabled or prevented from providing input signals. When the hold feature is off, one or more input devices of a portable electronic device are enabled or allowed to provide input signals. Because the user no longer has to manually control the hold feature, the number of actions that need to be taken by the user is reduced. In one example, the automatic hold switch is embodied with light sensors that detect when the device is in a dark environment and when the device is in a light environment. A dark environment indicates to the portable electronic device that the user wishes not to input and therefore the hold feature is turned on. A lighted environment indicates to the portable electronic device that the user wishes to input and therefore the hold feature is turned off.
109 Action output device for micro breaker US13880350 2010-12-17 US09524833B2 2016-12-20 Jiasheng Wan
An action output device for a micro breaker, connecting with more than one micro breaker, includes: a shell, the shell comprises: a motor, which is for outputting a torque; an action unit, which is for achieving switching the micro breaker on and off, comprising a rotating part, a poking part, and a linking piece, wherein, the torque outputted by the motor is got by the rotating part; the linking piece is drove to swing by the poking part; the linking piece is connected with an action mechanism of the micro breaker for driving to switch on and off; and a control unit, which controls the motor turning on and off.
110 Intelligent safety disconnect switching US13840162 2013-03-15 US09524832B2 2016-12-20 Raymond Kenneth Orr; Antoine Marc Joseph Richard Paquin; Edward Keyes
Intelligent safety disconnect switching methods and arrangements for PhotoVoltaic (PV) panels are disclosed. A determination is made as to whether a reconnect condition, for reconnecting a PV panel to a power system from which the PV panel is disconnected, is satisfied. The PV panel is automatically reconnected to the power system responsive to determining that the reconnect condition is satisfied. A determination is then made as to whether a power system operating condition is satisfied on reconnection of the PV panel, and the PV panel is automatically disconnected from the power system responsive to determining that the power system operating condition is not satisfied on reconnection of the PV panel.
111 Industrial automation emergency stop with state indictor US13756186 2013-01-31 US09349546B2 2016-05-24 Gary Dotson
The embodiments described herein include a system and a method. One embodiment provides an industrial automation system an emergency stop system configured to interrupt power to at least a portion of an industrial control system. The industrial automation system further includes a user perceptible indicator associated with the emergency stop system that in use provides an indication to a user of an operative state of the emergency stop system.
112 Brake drive controlling device for promptly switching state of brake from released state to fastened state US14074837 2013-11-08 US09224546B2 2015-12-29 Yasuyuki Matsumoto; Naoyuki Suzuki
A diode includes an anode connected to the other ends of brake coils, and a cathode connected to one end of a smoothing capacitor. A diode includes an anode connected to the other end of the smoothing capacitor, and a cathode connected to one ends of the brake coils. By providing the diodes, energy stored in the brake coils, when at least one of an NPN type transistor and an NPN type transistor is in an on-state, is returned to the smoothing capacitor when the NPN type transistors are in an off-states.
113 ROTOR SHAFT MODULE FOR A ROTOR SHAFT OF A MOLDED-CASE CIRCUIT BREAKER, ROTOR SHAFT FOR A MOLDED-CASE CIRCUIT BREAKER, MOLDED-CASE CIRCUIT BREAKER COMPRISING A ROTATOR SHAFT, AND METHOD FOR PRODUCING A ROTOR SHAFT MODULE FOR A ROTOR SHAFT OF A MOLDED-CASE CIRCUIT BREAKER US14583845 2014-12-29 US20150262772A1 2015-09-17 Jörg-Uwe DAHL; Erhard DEYLITZ; Wolfgang ERVEN; Björn GEHRKE; Alexander KUPSCH
A rotor shaft module for a rotor shaft of a molded-case circuit breaker, includes a module body including an electrically insulating first material, the module body including a receptacle for a contact element of the molded-case circuit breaker. The rotor shaft module includes at least one coupling apparatus for connection to an opposing coupling apparatus of a further rotor shaft module. In addition, disclosed are a rotor shaft for a molded-case circuit breaker includes at least two coupled rotor shaft modules; a molded-case circuit breaker including a rotor shaft; and a method for producing a rotor shaft module for a rotor shaft of a molded-case circuit breaker.
114 ELECTRONIC DEVICE WITH AUTOMATIC MODE SWITCHING US14692621 2015-04-21 US20150227835A1 2015-08-13 Fletcher R. Rothkopf
An electronic device for predicting or anticipating a user's operational desires. The electronic device is ready to perform the anticipated function without input from the user by using sensors to sense environmental attributes. The sensors can include an ambient light sensor, a force sensor, a temperature sensor, an ambient noise sensor, and a motion sensor. The electronic device also includes a control mechanism for switching between modes for the device.
115 Anti-rotational buttons US13607541 2012-09-07 US09099264B2 2015-08-04 Anna-Katrina Shedletsky; Colin M. Ely; Phillip Michael Hobson
Systems and methods for providing input component assemblies with anti-rotational buttons in electronic devices are provided. The input component assembly includes a switch, a button positioned over the switch, where the button is operative to close at least one circuit of the switch when the button is depressed towards the switch, and at least one pin positioned underneath the button, where the at least one pin is operative to engage with a surface to assist in preventing rotation of the button, when the button is depressed towards the switch.
116 Lockout and tagging device and assembly for a switchable energy isolation device such as a terminal block US13965676 2013-08-13 US09059533B2 2015-06-16 Edward J. Bogart; Stephen D. Longworth; Joseph G. Elsesser
A lockout and tagging device and assembly for a switchable energy isolation device such as a terminal block are provided. The lockout and tagging device includes a base member configured to support a tag and a male member extending from the base member and including a retaining portion complementary to a female receptacle of the isolation device to retain the male member in a female receptacle after insertion of the male member into the female receptacle. The lockout and tagging device also includes a blocking member extending from the base member. The blocking member positively blocks an actuator of the isolation device from moving and switching the isolation device into its non-isolating state when the male member is retained in the female receptacle. A circuit coupled to the isolation device is positively de-energized when the actuator is blocked in the isolating state.
117 Luminous keyboard device US13953923 2013-07-30 US09040856B2 2015-05-26 Chung-Yuan Chen; Hsuan-Wei Ho
A luminous keyboard device includes plural keys, a supporting plate, a light-emitting element, a membrane switch circuit module, and a light guide plate. The light guide plate is thicker than the light guide plate. The supporting plate has an opening corresponding to the light-emitting element. The light-emitting element is inserted into the opening. The light-emitting element is used for emitting plural light beams. A portion of the plural light beams are traveled along the path under the supporting plate and introduced into the light guide plate. Consequently, the portion of the plural light beams will be directed to the plural keys to illuminate the plural keys. Another portion of the plural light beams are traveled along the path over the supporting plate and introduced into the membrane switch circuit module. Consequently, the luminous efficiency of the slim-type luminous keyboard device is enhanced.
118 Electronic device with automatic mode switching US14199719 2014-03-06 US09013855B2 2015-04-21 Fletcher R. Rothkopf
An electronic device for predicting or anticipating a user's operational desires. The electronic device is ready to perform the anticipated function without input from the user by using sensors to sense environmental attributes. The sensors can include an ambient light sensor, a force sensor, a temperature sensor, an ambient noise sensor, and a motion sensor. The electronic device also includes a control mechanism for switching between modes for the device.
119 LUMINOUS KEYBOARD DEVICE US13953923 2013-07-30 US20140369020A1 2014-12-18 Chung-Yuan Chen; Hsuan-Wei Ho
A luminous keyboard device includes plural keys, a supporting plate, a light-emitting element, a membrane switch circuit module, and a light guide plate. The light guide plate is thicker than the light guide plate. The supporting plate has an opening corresponding to the light-emitting element. The light-emitting element is inserted into the opening. The light-emitting element is used for emitting plural light beams. A portion of the plural light beams are traveled along the path under the supporting plate and introduced into the light guide plate. Consequently, the portion of the plural light beams will be directed to the plural keys to illuminate the plural keys. Another portion of the plural light beams are traveled along the path over the supporting plate and introduced into the membrane switch circuit module. Consequently, the luminous efficiency of the slim-type luminous keyboard device is enhanced.
120 Disconnector switch for voltage transformer US13993746 2011-12-15 US08810344B2 2014-08-19 Arend Lammers
A disconnector unit for a medium voltage application, with a conductive pen inside a housing. The conductive pen is moveable between an operational position in which an electrical contact is provided between a first terminal and a second terminal positioned inside the housing, and an off position in which no electrical contact is present between the first terminal and the second terminal. The conductive pen includes a first actuating part inside the housing, optionally, in the form of a magnet. The disconnector unit further includes a second actuating part positioned outside the housing, wherein the first actuating part and second actuating part form a non-mechanical link.
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