会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明授权
    • Low-pressure discharge lamp and back light device using same
    • 低压放电灯和使用相同的背光灯装置
    • US07358675B2
    • 2008-04-15
    • US10502892
    • 2003-07-17
    • Hirofumi YamashitaHaruo YamazakiToshihiro TeradaShinji Kihara
    • Hirofumi YamashitaHaruo YamazakiToshihiro TeradaShinji Kihara
    • H01J61/067H01J61/12H01J61/20
    • H01J61/72H01J61/067
    • A low-pressure discharge lamp (1) is provided that includes a glass tube (2) having an inner diameter in a range of 1 to 5 mm and a pair of electrodes (3) disposed at end portions in the glass tube (2). The pair of electrodes (3) contain at least one transition metal selected from transition metals of Groups IV to VI. Mercury and a rare gas containing argon and neon are sealed in an inner portion of the glass tube (2). A relationship between a cathode glow discharge density J and a composition index α of the sealed rare gas of the low-pressure discharge lamp (1) satisfies the following expression α≦J=I/(S·P2)≦1.5α (where S represents an effective discharge surface area (mm2) of an electrode, I represents a RMS lamp current (mA), P represents a pressure (kPa) of a sealed rare gas, and α represents a composition index of a sealed rare gas that is a constant expressed by α=(90.5A+3.4N)×10−3 when a total of a composition ratio A of argon and a composition ratio N of neon is expressed by A+N=1).
    • 提供一种低压放电灯(1),其包括内径为1〜5mm的玻璃管(2)和设置在玻璃管(2)的端部的一对电极(3) 。 该对电极(3)含有至少一种选自IV至VI族过渡金属的过渡金属。 汞和含有氩气和氖气的稀有气体密封在玻璃管(2)的内部。 阴极辉光放电密度J与低压放电灯(1)的密封稀有气体的成分指数α之间的关系满足以下表达式<?in-line-formula description =“In-line formula”end = “lead”?>α<= J = I /(SP 2 )<= 1.5alpha <?in-line-formula description =“In-line Formulas”end =“tail”?> 其中S表示电极的有效放电表面积(mm 2),I表示RMS灯电流(mA),P表示密封稀有气体的压力(kPa),α表示 当氩的组成比A和氖的组成比N的总和为Λ时,由α=(90.5A + 3.4N)×10 -3表示的常数的密封稀有气体的组成指数为 由A + N = 1表示)。
    • 8. 发明授权
    • Low-pressure discharge lamp and back light device using the same
    • 低压放电灯和背光灯装置使用相同
    • US07683550B2
    • 2010-03-23
    • US12069672
    • 2008-02-12
    • Hirofumi YamashitaHaruo YamazakiToshihiro TeradaShinji Kihara
    • Hirofumi YamashitaHaruo YamazakiToshihiro TeradaShinji Kihara
    • H01J61/067H01J61/12H01J61/20
    • H01J61/72H01J61/067
    • A low-pressure discharge lamp (1) is provided that includes a glass tube (2) having an inner diameter in a range of 1 to 5 mm and a pair of electrodes (3) disposed at end portions in the glass tube (2). The pair of electrodes (3) contain at least one transition metal selected from transition metals of Groups IV to VI. Mercury and a rare gas containing argon and neon are sealed in an inner portion of the glass tube (2). A relationship between a cathode glow discharge density J and a composition index α of the sealed rare gas of the low-pressure discharge lamp (1) satisfies the following expression α≦J=I/(S·P2)≦1.5α (where S represents an effective discharge surface area (mm2) of an electrode, I represents a RMS lamp current (mA), P represents a pressure (kPa) of a sealed rare gas, and α represents a composition index of a sealed rare gas that is a constant expressed by α=(90.5A+3.4N)×10−3 when a total of a composition ratio A of argon and a composition ratio N of neon is expressed by A+N=1).
    • 提供一种低压放电灯(1),其包括内径为1〜5mm的玻璃管(2)和设置在玻璃管(2)的端部的一对电极(3) 。 该对电极(3)含有至少一种选自IV至VI族过渡金属的过渡金属。 汞和含有氩气和氖气的稀有气体密封在玻璃管(2)的内部。 阴极辉光放电密度J与低压放电灯(1)的密封稀有气体的成分指数α之间的关系满足以下表达式α&nlE; J = I /(S·P2)&nlE;1.5α(其中 S表示电极的有效放电面积(mm2),I表示RMS灯电流(mA),P表示密封稀有气体的压力(kPa),α表示密封稀有气体的组成指数, 当氩的组成比A和氖的组成比N的总和由A + N = 1表示时,由α=(90.5A + 3.4N)×10-3表示的常数。
    • 10. 发明申请
    • Low-pressure dischage lamp and back light device using same
    • 低压放电灯和使用相同的背光灯装置
    • US20050077830A1
    • 2005-04-14
    • US10502892
    • 2003-07-17
    • Hirofumi YamashitaHaruo YamazakiToshihiro TeradaShinji Kihara
    • Hirofumi YamashitaHaruo YamazakiToshihiro TeradaShinji Kihara
    • F21S2/00F21Y103/00H01J61/067H01J61/16H01J61/72H01J17/20H01J61/12
    • H01J61/72H01J61/067
    • A low-pressure discharge lamp (1) is provided that includes a glass tube (2) having an inner diameter in a range of 1 to 5 mm and a pair of electrodes (3) disposed at end portions in the glass tube (2). The pair of electrodes (3) contain at least one transition metal selected from transition metals of Groups IV to VI. Mercury and a rare gas containing argon and neon are sealed in an inner portion of the glass tube (2). A relationship between a cathode glow discharge density J and a composition index α of the sealed rare gas of the low-pressure discharge lamp (1) satisfies the following expression α≦J=I/(S·P2)≦1.5α (where S represents an effective discharge surface area (mm2) of an electrode, I represents a RMS lamp current (mA), P represents a pressure (kPa) of a sealed rare gas, and α represents a composition index of a sealed rare gas that is a constant expressed by α=(90.5A+3.4N)×10−3 when a total of a composition ratio A of argon and a composition ratio N of neon is expressed by A+N=1). Thus, sputtering of a small-sized electrode is suppressed thereby to suppress consumption of a rare gas sealed in a lamp so as to increase a life time, and a decrease of an emitted luminous flux is prevented.
    • 提供一种低压放电灯(1),其包括内径为1〜5mm的玻璃管(2)和设置在玻璃管(2)的端部的一对电极(3) 。 该对电极(3)含有至少一种选自IV至VI族过渡金属的过渡金属。 汞和含有氩气和氖气的稀有气体密封在玻璃管(2)的内部。 阴极辉光放电密度J与低压放电灯(1)的密封稀有气体的成分指数α之间的关系满足以下表达式α<= J = I /(SP <2>)<= 1.5alpha (其中S表示电极的有效放电表面积(mm 2),I表示RMS灯电流(mA),P表示密封稀有气体的压力(kPa),α表示组成指数 当氩的组成比A和氖的组成比N的总和由A + N = 1表示时,由α=(90.5A + 3.4N)×10 -3表示的常数的密封稀有气体。 因此,抑制了小尺寸电极的溅射,从而抑制了密封在灯中的稀有气体的消耗,从而延长了使用寿命,并且防止了发射光束的减少。