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    • 2. 发明授权
    • Filament electrode and fluorescent lamp
    • 灯丝电极和荧光灯
    • US07868530B2
    • 2011-01-11
    • US11965374
    • 2007-12-27
    • Toshiyuki NagaharaKoji KikuchiharaMasayuki Kanechika
    • Toshiyuki NagaharaKoji KikuchiharaMasayuki Kanechika
    • H01J17/04H01K1/16
    • H01J61/0672
    • The disclosed subject matter includes a filament electrode that can include a filament coil connected with a pair of lead wires with confidence. It is possible for a fluorescent lamp using the filament electrode to emit light with a wider range while located in a thin tube. The filament electrode can include a pair of connecting pipes, a pair of lead wires located parallel to each other, and a filament coil including two connecting parts. Each of the two connecting parts of the filament coil can attach to respective ends of the pair of lead wires via the pair of connecting pipes via pressure bonding so as not to contact the connecting parts of the filament coil with the ends of the pair of lead wires located in the pair of connecting pipes and so as to align the structures. Thus, the filament electrode can be used even in a thin glass or quartz tube and can provide an effective heat-shield operation.
    • 所公开的主题包括可以包含与一对引线相连的灯丝线圈的灯丝电极。 使用灯丝电极的荧光灯可以在较细的管中发射更宽范围的光。 灯丝电极可以包括一对连接管,一对彼此平行的引线和包括两个连接部分的灯丝线圈。 灯丝线圈的两个连接部分中的每一个可以经由一对连接管经由压力接合而附接到一对引线的相应端部,以便不与一对引线的端部接触灯丝线圈的连接部分 电线位于一对连接管中,以便对准结构。 因此,丝状电极即使在薄玻璃或石英管中也能够使用,并且可以提供有效的热屏蔽操作。
    • 3. 发明授权
    • Fluorescent lamp
    • 日光灯
    • US07764009B2
    • 2010-07-27
    • US12031886
    • 2008-02-15
    • Kazuhiro MiyamotoMasayuki KanechikaKoji Kikuchihara
    • Kazuhiro MiyamotoMasayuki KanechikaKoji Kikuchihara
    • H01J61/067
    • H01J61/0672H01J61/0675
    • The disclosed subject matter includes a fluorescent lamp and particularly a cold cathode fluorescent lamp that can be employed as a light source for a LCD backlight unit for a television, a computer, a display, and the like. The fluorescent lamp can include a couple of electrode units located opposite to each other at each end of a tube, a couple of welding beads sealing both the tube and the couple of electrode units, and a filler gas located in the tube. Each of the electrode units can include an emitter electrode that is configured with a crystalline silicon carbide material having an electrical conductivity and including a concave portion formed thereon. The electrode units can prevent blackening on an inner surface of the tube by avoiding the occurrence of spattering. Thus, the fluorescent lamp using the electrode units can enjoy a long life, high reliability, easy manufacture, and the like.
    • 所公开的主题包括荧光灯,特别是可用作电视,计算机,显示器等的LCD背光单元的光源的冷阴极荧光灯。 荧光灯可以包括在管的每个端部彼此相对定位的一对电极单元,密封管和一对电极单元的一对焊接珠,以及位于管中的填充气体。 每个电极单元可以包括发射电极,其配置有具有导电性并包括形成在其上的凹部的结晶碳化硅材料。 电极单元可以通过避免溅射的发生来防止管的内表面发生黑化。 因此,使用电极单元的荧光灯可以使用寿命长,可靠性高,制造容易等。
    • 4. 发明授权
    • Method for manufacturing hot cathode fluorescent lamp
    • 制造热阴极荧光灯的方法
    • US07775847B2
    • 2010-08-17
    • US11855485
    • 2007-09-14
    • Naoyuki MatsubaraMasayuki KanechikaYoshifumi TakaoKazuhiro MiyamotoToshiyuki NagaharaJunji Matsuda
    • Naoyuki MatsubaraMasayuki KanechikaYoshifumi TakaoKazuhiro MiyamotoToshiyuki NagaharaJunji Matsuda
    • H01J9/00H01J9/24H05B33/10
    • H01J9/323H01J9/38H01J9/40H01J61/70
    • A method for manufacturing a hot cathode fluorescent lamp can ensure or facilitate stable initial luminous intensity and provide improved product life characteristics even when the hot cathode fluorescent lamp employs a glass tube with an outer diameter of less than 7 mmφ. One end of a glass tube can be sealed with a glass bead of a mount structure. The other opening end of the glass tube can be welded with an opening end of an exhaust pipe with bent portions of lead wires being sandwiched between the opening ends of the glass tube and the exhaust pipe. After evacuating a vacuum system that is constituted by the inner spaces of the glass tube and the exhausted pipe communicating with each other, the bent portions of the lead wires which extrude outside the vacuum system can be clamp-connected to power source lines extending from an external power source. The emitter of the filaments can be activated by the generated heat of the filament. After supplying mercury and a rare gas into the glass tube, the glass bead can be sealed, and unnecessary portions of the glass tube, the exhaust pipe, and the lead wires can be removed to complete the hot cathode fluorescent lamp, in accordance with one aspect of the disclosed subject matter.
    • 热阴极荧光灯的制造方法可以确保或促进稳定的初始发光强度,并且即使当热阴极荧光灯采用外径小于7mm&phgr的玻璃管时也能提供改善的产品寿命特性。 玻璃管的一端可以用安装结构的玻璃珠密封。 玻璃管的另一个开口端可以与排气管的开口端焊接,其中引线的弯曲部分夹在玻璃管的开口端和排气管之间。 在抽出由玻璃管的内部空间和彼此连通的排气管构成的真空系统之后,在真空系统外部拉出的引线的弯曲部分可以夹紧连接到从 外部电源。 长丝的发射体可以被灯丝产生的热量激活。 在玻璃管中供应汞和稀有气体之后,玻璃珠可以被密封,玻璃管,排气管和引线的不必要部分可以被去除以完成热阴极荧光灯,根据一个 所公开的主题的方面。
    • 5. 发明申请
    • Filament Electrode and Fluorescent Lamp
    • 灯丝电极和荧光灯
    • US20080157676A1
    • 2008-07-03
    • US11965374
    • 2007-12-27
    • Toshiyuki NagaharaKoji KikuchiharaMasayuki Kanechika
    • Toshiyuki NagaharaKoji KikuchiharaMasayuki Kanechika
    • H01J17/04H01J1/00
    • H01J61/0672
    • The disclosed subject matter includes a filament electrode that can include a filament coil connected with a pair of lead wires with confidence. It is possible for a fluorescent lamp using the filament electrode to emit light with a wider range while located in a thin tube. The filament electrode can include a pair of connecting pipes, a pair of lead wires located parallel to each other, and a filament coil including two connecting parts. Each of the two connecting parts of the filament coil can attach to respective ends of the pair of lead wires via the pair of connecting pipes via pressure bonding so as not to contact the connecting parts of the filament coil with the ends of the pair of lead wires located in the pair of connecting pipes and so as to align the structures. Thus, the filament electrode can be used even in a thin glass or quartz tube and can provide an effective heat-shield operation.
    • 所公开的主题包括可以包含与一对引线相连的灯丝线圈的灯丝电极。 使用灯丝电极的荧光灯可以在较细的管中发射更宽范围的光。 灯丝电极可以包括一对连接管,一对彼此平行的引线和包括两个连接部分的灯丝线圈。 灯丝线圈的两个连接部分中的每一个可以经由一对连接管经由压力接合而附接到一对引线的相应端部,以便不与一对引线的端部接触灯丝线圈的连接部分 电线位于一对连接管中,以便对准结构。 因此,丝状电极即使在薄玻璃或石英管中也能够使用,并且可以提供有效的热屏蔽操作。
    • 7. 发明授权
    • Microwave source system
    • 微波源系统
    • US08022342B2
    • 2011-09-20
    • US11679495
    • 2007-02-27
    • Masayuki Kanechika
    • Masayuki Kanechika
    • H05B6/72H05B6/64
    • H01J65/044
    • A microwave source system 1 extracts power in a predetermined microwave frequency band out of thermal noise power generated by a resistor (3) by using filter means (4), amplifies the power through a first amplifier (5) and a second amplifier (7), and outputs the power. The first amplifier (5) is variably controllable in gain and control means (6) controls the gain in such a way as to maintain the intensity of the microwave power output from the first amplifier 5 at a predetermined constant value. The second amplifier (7) has a predetermined gain. The resistor (3) is attached to one of the first amplifier (5) and the second amplifier (7), for example, to the second amplifier (7). Thereby, the resistor (3) receives heat from the amplifier (7). Output of the microwave source system (1) is supplied to, for example, a microwave discharge lamp (2). The microwave source system (1) having the above configuration can be compact and inexpensive without a need for a magnetron or a high voltage power supply.
    • 微波源系统1通过使用滤波器装置(4)从电阻器(3)产生的热噪声功率中提取预定微波频带中的功率,通过第一放大器(5)和第二放大器(7)放大功率, ,并输出电源。 第一放大器(5)在增益中可变地控制,并且控制装置(6)以这样的方式控制增益,即将从第一放大器5输出的微波功率的强度保持在预定的恒定值。 第二放大器(7)具有预定的增益。 电阻器(3)例如连接到第一放大器(5)和第二放大器(7)中的一个到第二放大器(7)。 由此,电阻器(3)从放大器(7)接收热量。 微波源系统(1)的输出被提供给例如微波放电灯(2)。 具有上述结构的微波源系统(1)可以紧凑且便宜,而不需要磁控管或高压电源。
    • 8. 发明授权
    • Lighting system
    • 照明系统
    • US07447249B2
    • 2008-11-04
    • US11464325
    • 2006-08-14
    • Takahiro MatsumotoMasayuki Kanechika
    • Takahiro MatsumotoMasayuki Kanechika
    • H01S3/093
    • H01S3/0975H01J65/044H01S3/2232
    • A lighting system includes a microwave resonator (2) for generating a standing microwave in the internal space, and a gas cell (6) enclosing a medium is disposed in the internal space of the microwave resonator 2. The lighting system excites the medium in the gas cell (6) by the standing microwave to generate light. The gas cell (6) is replaceably mounted on the microwave resonator (2). The generated light is output to the outside of the microwave resonator (2) through a light lead-out hole (26). Thereby, it is possible to provide a lighting system (including a gas laser) capable of emitting light efficiently with a compact and inexpensive device configuration and of achieving a long life. Moreover, it can also be used as a lighting system in the THz-wave region by enclosing the medium for generating light in the far-infrared region in the gas cell (6).
    • 照明系统包括用于在内部空间中产生驻波的微波谐振器(2),并且包围介质的气室(6)设置在微波谐振器2的内部空间中。 照明系统通过立式微波激发气室(6)中的介质以产生光。 气体电池(6)可更换地安装在微波谐振器(2)上。 所产生的光通过光导出孔(26)输出到微波谐振器(2)的外部。 由此,能够提供能够以紧凑且廉价的装置结构有效发光的长寿命的照明系统(包括气体激光器)。 而且,也可以在气体电池(6)的远红外区域包围用于产生光的介质,作为太赫兹波区域的照明系统。
    • 9. 发明申请
    • Method for Manufacturing Hot Cathode Fluorescent Lamp
    • 热阴极荧光灯制造方法
    • US20080070467A1
    • 2008-03-20
    • US11855485
    • 2007-09-14
    • Naoyuki MatsubaraMasayuki KanechikaYoshifumi TakaoKazuhiro MiyamotoToshiyuki NagaharaJunji Matsuda
    • Naoyuki MatsubaraMasayuki KanechikaYoshifumi TakaoKazuhiro MiyamotoToshiyuki NagaharaJunji Matsuda
    • H01J9/08
    • H01J9/323H01J9/38H01J9/40H01J61/70
    • A method for manufacturing a hot cathode fluorescent lamp can ensure or facilitate stable initial luminous intensity and provide improved product life characteristics even when the hot cathode fluorescent lamp employs a glass tube with an outer diameter of less than 7 mmφ. One end of a glass tube can be sealed with a glass bead of a mount structure. The other opening end of the glass tube can be welded with an opening end of an exhaust pipe with bent portions of lead wires being sandwiched between the opening ends of the glass tube and the exhaust pipe. After evacuating a vacuum system that is constituted by the inner spaces of the glass tube and the exhausted pipe communicating with each other, the bent portions of the lead wires which extrude outside the vacuum system can be clamp-connected to power source lines extending from an external power source. The emitter of the filaments can be activated by the generated heat of the filament. After supplying mercury and a rare gas into the glass tube, the glass bead can be sealed, and unnecessary portions of the glass tube, the exhaust pipe, and the lead wires can be removed to complete the hot cathode fluorescent lamp, in accordance with one aspect of the disclosed subject matter.
    • 热阴极荧光灯的制造方法可以确保或促进稳定的初始发光强度,并且即使当热阴极荧光灯采用外径小于7mmφ的玻璃管时也能提供改善的产品寿命特性。 玻璃管的一端可以用安装结构的玻璃珠密封。 玻璃管的另一个开口端可以与排气管的开口端焊接,其中引线的弯曲部分夹在玻璃管的开口端和排气管之间。 在抽出由玻璃管的内部空间和彼此连通的排气管构成的真空系统之后,在真空系统外部拉出的引线的弯曲部分可以夹紧连接到从 外部电源。 长丝的发射体可以被灯丝产生的热量激活。 在玻璃管中供应汞和稀有气体之后,玻璃珠可以被密封,玻璃管,排气管和引线的不必要部分可以被去除以完成热阴极荧光灯,根据一个 所公开的主题的方面。
    • 10. 发明申请
    • MICROWAVE SOURCE SYSTEM
    • 微波源系统
    • US20070210052A1
    • 2007-09-13
    • US11679495
    • 2007-02-27
    • Masayuki Kanechika
    • Masayuki Kanechika
    • F23Q7/00
    • H01J65/044
    • A microwave source system 1 extracts power in a predetermined microwave frequency band out of thermal noise power generated by a resistor (3) by using filter means (4), amplifies the power through a first amplifier (5) and a second amplifier (7), and outputs the power. The first amplifier (5) is variably controllable in gain and control means (6) controls the gain in such a way as to maintain the intensity of the microwave power output from the first amplifier 5 at a predetermined constant value. The second amplifier (7) has a predetermined gain. The resistor (3) is attached to one of the first amplifier (5) and the second amplifier (7), for example, to the second amplifier (7). Thereby, the resistor (3) receives heat from the amplifier (7). Output of the microwave source system (1) is supplied to, for example, a microwave discharge lamp (2). The microwave source system (1) having the above configuration can be compact and inexpensive without a need for a magnetron or a high voltage power supply.
    • 微波源系统1通过使用滤波器装置(4)从电阻器(3)产生的热噪声功率中提取预定微波频带中的功率,通过第一放大器(5)和第二放大器(7)放大功率, ,并输出电源。 第一放大器(5)在增益中可变地控制,并且控制装置(6)以这样的方式控制增益,即将从第一放大器5输出的微波功率的强度保持在预定的恒定值。 第二放大器(7)具有预定的增益。 电阻器(3)例如连接到第一放大器(5)和第二放大器(7)中的一个到第二放大器(7)。 由此,电阻器(3)从放大器(7)接收热量。 微波源系统(1)的输出被提供给例如微波放电灯(2)。 具有上述结构的微波源系统(1)可以紧凑且便宜,而不需要磁控管或高压电源。