Abstract:
The invention relates to a re-ignition system for a gas device comprising an electrode element (1) provided next to a burner (2); an igniter (60) in communication with the electrode element (1) for transmitting electrical signal and providing a spark arc with high voltage towards burner (2) in electrode element (1) in ignition mode; and an ignition control unit (30). Re-ignition system further comprises at least one battery (10); a flame detection unit (50) receiving a flame presence signal (3) by flame rectification and a transformer (20) which converts the direct current supplied through the battery (10) from one inlet (22) to alternating current at an outlet (24) and is connected with the ignition control unit (30) and flame detection unit (50) to provide electrical signal.
Abstract:
The present invention relates to an improvement in next-generation lighter configured instead of terminal box in lighters operating with electricity used in gas ovens.
Abstract:
Apparatus for igniting a burner of a barbeque includes a housing, a mesh, an orifice, a pair of conductors and a generator. The housing defines a conduit having an inlet and an outlet spaced apart from the inlet. The mesh occludes the conduit and is positioned adjacent the outlet. The orifice is for receiving combustible gas and communicates with the inlet. The pair of conductors define a gap, the gap being positioned such that the gap is disposed in spaced relation to the mesh and the mesh is disposed intermediate the orifice and the gap. The generator is for producing a spark across the gap.
Abstract:
One or more techniques and/or systems are disclosed for mitigating the effect of electrical noise on electrical-based hardware components. Electrical noise can be generated by an igniter adjacent to one or more of the components. In lieu of, or in addition to, shielding, hardening, and other noise prevention techniques, methods and systems can be used to mask the effects of electrical noise upon other hardware components. State data for a target component can be stored in volatile memory. Upon a reset of microprocessor controlling the component, the stored state data can be read and matched with known state data stored in non-volatile memory. After the reset, the target component can be placed in the state that matches the state data indicated by the stored data.
Abstract:
본 발명은 원격제어가 가능한 자동점화 양초 및 그 제어 시스템에 관한 것으로서, 더욱 상세하게는, 점화 후 연소가 이루어지며, 전도성 소재를 함유하는 심지를 포함하는 심지부, 사용자의 단말기와 유선 또는 무선으로 통신하는 제1 통신부, 상기 제1 통신부를 통해 전달받은 제어신호에 따라 심지부의 점화상태를 제어하는 제어부 및 상기 제어부의 제어에 따라 상기 심지부가 점화되도록 상기 심지에 방전을 일으키는 점화수단을 포함하는, 원격제어가 가능한 자동점화 양초에 관한 것이다.
Abstract:
The present approach relates to generating seed electrons at a spark gap in the absence of 85 Kr. The present approach utilizes electron emission from a triple-point instead to provide seed electrons to reduce the statistical time lag of a spark gap. In one such implementation, a spark gap may be fabricated and/or operated without a radioactive component without otherwise changing its overall form or function of the spark gap.
Abstract:
본 발명은 전도성 소재를 함유하는 심지를포 함하며, 상기 심지는 방전에 의해 점화되는 양초용 자동점화 유닛에 관한 것이다. 또한, 본 발명은 양초용 점화 유닛을 포함하여 전기적 신호에 의해 자동 점화되는 양초에 관한 것이다. 또한, 본 발명은 탄소소재를 포함하는 양초용 심지에 관한 것이다. 또한, 상기 양초용 심지를 포함하는 양초에 관한 것이다.
Abstract:
System for fastening ignition spark plugs (2) of boilers or the like, comprising a supporting plate (1), which supporting plate (1) has at least one insertion hole (11) intended for the insertion of a spark plug (2) and/or of an inspection window (6), which spark plug (2) comprises an outer ceramic tubular body (21), inside which a detection and/or ignition rod (22) is housed which projects at least from one head end of said ceramic tubular body (21). Said insertion hole (11) having such dimensions that said spark plug (2), in the inserted condition, forms a gap region between the outer surface of the tubular body (21) of the spark plug (2) and the inner surface of the insertion hole (11), at least in said gap region there being provided means (4) for fastening and sealing said spark plug (2) to said supporting plate (1). Said fastening and sealing means (4) are composed of glass material (4) which is brought in the liquid or semi-liquid phase beforehand such to adhere mechanically and/or by chemical/physical adhesion to the outer surface of said tubular body (21) of the spark plug (2) and to the inner surface of said insertion hole (11) and subsequently it is brought to the solid phase.