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    • 1. 发明授权
    • Discharge lamp with specific amounts of halogen, oxygen, hydrogen and carbon
    • 放电灯具有特定量的卤素,氧气,氢气和碳
    • US07002299B2
    • 2006-02-21
    • US10697090
    • 2003-10-31
    • Masataka KawaguchiMotoko UramotoDan MasashiYoshihiro Horikawa
    • Masataka KawaguchiMotoko UramotoDan MasashiYoshihiro Horikawa
    • H01J61/12
    • H01J61/12H01J9/395
    • A discharge lamp which maintains a high lumen maintenance factor even when operated for a long time is obtained in a discharge lamp which has a silica glass discharge vessel and a pair of opposed electrodes in the discharge vessel and in which the discharge vessel is filled with at least 0.15 mg/mm3 mercury, a rare gas with argon as the main component, and 2×10−4 μmole/mm3 to 7×10−3 μmole/mm3 bromine by meeting the following conditions when feeding a direct current of 5 mA between the electrodes and a glow discharge produced: 1.0×10−4≦b/a≦1.2×10−1  Condition (1) c/a≦1.4×10−1  Condition (2) d/a≦1.2×10−2  Condition (3) e/a≦1.4×10−2  Condition (4) where a is the emission intensity of the argon with a wavelength of 668 nm, b is the emission intensity of OH with a wavelength of 309 nm, c is the emission intensity of hydrogen (H) with a wavelength of 656 nm, d is the emission intensity of C2 with a wavelength of 517 nm, and e is the emission intensity of CH with a wavelength of 431 nm.
    • 在放电灯放电灯中,即使在放电容器中具有石英玻璃放电容器和一对相对电极的放电灯,也可以在放电容器中填充放电灯 至少0.15mg / mm 3汞,一种以氩为主要成分的稀有气体,以及2×10 -4 Mumole / mm 3至7×10 3, 通过满足以下条件,在电极之间馈送5mA的直流电流和辉光放电产物时,通过满足以下条件:SUP> -3 / m 3 /
    • 4. 发明申请
    • LASER LIGHT SOURCE APPARATUS AND TEMPERATURE CONTROL METHOD OF WAVELENGTH CONVERSION ELEMENT IN LASER LIGHT SOURCE APPARATUS
    • 激光光源设备波长转换元件的激光光源装置和温度控制方法
    • US20140233090A1
    • 2014-08-21
    • US14241432
    • 2012-08-06
    • Nobuhiko SugiharaKentaro FujitaTakanori SamejimaYoshihiro Horikawa
    • Nobuhiko SugiharaKentaro FujitaTakanori SamejimaYoshihiro Horikawa
    • G02F1/37
    • G02F1/37G02F1/0121G02F1/353G02F2201/17G02F2203/21H01S3/109H01S5/02296H01S5/02446H01S5/0428H01S5/0683H01S5/141
    • The purpose of the present invention is to make it possible to output stable light by optimizing the wavelength conversion efficiency in a wavelength conversion element without employing an optical detection device such as a photo diode in a laser light source device. A fundamental light wave emitted from a semiconductor laser (2) is wavelength converted by a wavelength conversion element (5) and is emitted therefrom. A lighting circuit (20) supplies electric power for the aforementioned semiconductor laser (2) to turn on the semiconductor laser (2). A control unit (21) controls the operation of the device while controlling the amount of power supplied to a heater means (7) such that the wavelength conversion element (5) reaches a temperature at which optimum wavelength conversion efficiency is acquired. The temperature detected by a temperature detection means (Th1) is input to the control unit (21), and the control unit (21) defines the temperature of the wavelength conversion element (5) at which the maximum amount of power is supplied to the heater means (7) as a set temperature at which the optimum wavelength conversion efficiency is acquired, and performs feedback control of the temperature of the wavelength conversion element (5) so that the temperature of the wavelength conversion element (5) reaches the aforementioned set temperature by controlling the amount of heat supplied from the heater means (7).
    • 本发明的目的是通过在激光光源装置中不使用诸如光电二极管的光学检测装置来优化波长转换元件中的波长转换效率来输出稳定的光。 从半导体激光器(2)发射的基本光波被波长转换元件(5)波长转换并从其发射。 照明电路(20)为上述半导体激光器(2)提供电力来接通半导体激光器(2)。 控制单元(21)在控制提供给加热器装置(7)的功率量的同时控制装置的操作,使得波长转换元件(5)达到获得最佳波长转换效率的温度。 由温度检测装置(Th1)检测的温度被输入到控制单元(21),控制单元(21)将波长转换元件(5)的温度定义为向 加热器装置(7)作为获得最佳波长转换效率的设定温度,并且进行波长转换元件(5)的温度的反馈控制,使得波长转换元件(5)的温度达到上述设定值 通过控制从加热器装置(7)供应的热量来控制温度。
    • 8. 发明申请
    • LIGHT SOURCE DEVICE
    • 光源设备
    • US20130126930A1
    • 2013-05-23
    • US13813076
    • 2011-07-22
    • kiyoyuki KabukiYoshihiro HorikawaKazuhiro Yoshida
    • kiyoyuki KabukiYoshihiro HorikawaKazuhiro Yoshida
    • H01L33/50
    • H01L33/50C09K11/646G02B5/0236G02B5/0278G02B5/0294G02B19/0014G02B19/0047G02B27/106G02B27/142G03B21/204
    • Disclosed herein is a light source device for converting excited light into long-wavelength light having a longer wavelength than the excited light. The light source includes: an excited light source emitting excited light; a wavelength conversion member including a light transmission plate and a wavelength conversion layer formed on the light transmission plate and receiving the excited light from the excited light source and emitting long-wavelength light having a longer wavelength than the excited light, the excited light emitted from the excited light source being incident upon one side of the wavelength conversion layer; a light reflection member provided at one side of the wavelength conversion member and including an excited light transmission window transmitting the excited light; and a filter member provided at the other side of the wavelength conversion member and reflecting the excited light and transmitting the long-wavelength light.
    • 这里公开了一种用于将激发光转换成具有比激发光更长波长的长波长光的光源装置。 光源包括:发射激发光的激发光源; 波长转换构件,其包括透光板和形成在透光板上的波长转换层,并且接收来自激发光源的激发光并发射具有比激发光更长波长的长波长的光,激发的光从 所述激发光源入射在所述波长转换层的一侧; 设置在所述波长转换构件的一侧的光反射构件,并且包括传递所述激发光的激发光透射窗; 以及设置在所述波长转换部件的另一侧的反射所述激发光并透过所述长波长光的滤光片部件。
    • 10. 发明申请
    • Discharge lamp
    • 放电灯
    • US20060220562A1
    • 2006-10-05
    • US11391307
    • 2006-03-29
    • Takuya TsukamotoNoriko NishiakiYoshihiro HorikawaSenga Takehito
    • Takuya TsukamotoNoriko NishiakiYoshihiro HorikawaSenga Takehito
    • H01J61/12
    • H01J61/86H01J9/395H01J9/42H01J61/20
    • Process for producing a discharge lamp having a silica discharge vessel with an emission space in which there is a pair of electrodes at least 0.15 mg/mm3 of mercury, argon (Ar), and halogen by measuring the relation b/a1 between the emission intensity a1 of argon (Ar) at a wavelength of 668 nm and the emission intensity b of OH radicals at a wavelength of 309 nm in a state of glow discharge of the discharge lamp; supplying hydrogen into the discharge vessel of the discharge lamp; measuring the relation c/a2 between the emission intensity a2 of argon (Ar) at a wavelength of 668 nm and the emission intensity c of OH radicals at a wavelength of 309 nm in the state of glow discharge of the discharge lamp; and fixing the difference c/a2−b/a1 at a value in the range of 0.001 to 15.
    • 一种具有发射空间的二氧化硅放电容器的放电灯的制造方法,其中存在一对电极至少0.15mg / mm 3的汞,氩(Ar)和卤素,通过测量 在放电灯的辉光放电状态下,波长为668nm的氩(Ar)的发光强度a1与波长309nm的OH自由基的发射强度b之间的关系b / a1; 向放电灯的放电容器供给氢; 在放电灯的辉光放电状态下测量在波长为668nm的氩(Ar)的发射强度a2和波长为309nm的OH自由基的发射强度c之间的关系c / a2; 并将差值c / a2-b / a1固定在0.001〜15的范围内的值。