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    • 2. 发明授权
    • Wavelength conversion layers with embedded crystallites
    • 带嵌入微晶的波长转换层
    • US07577318B2
    • 2009-08-18
    • US11722812
    • 2005-12-19
    • Holger MönchGero Heusler
    • Holger MönchGero Heusler
    • G02F1/23G02F1/35
    • C09K11/7772C03C14/006C03C17/3411C03C2214/16C09K11/7773F21K9/64H01L33/502H01S5/06
    • The present invention is directed to a wavelength conversion layer (1) with a matrix layer (2) comprising embedded rare-earth-ion-doped micro-crystallites (3) and/or rare-earth-ion-doped amorphous particles, wherein said rare-earth-ion-doped micro crystallites and/or rare-earth-ion-doped amorphous particles are doped with at least one of the lanthanides, and wherein said rare-earth-ion-doped micro-crystallites and/or said doped amorphous particles have a mean diameter d50 of 10 nm to 500 müm, and wherein the matrix layer, is transparent, whereby the refractive indices of said rare-earth-ion-doped micro-crystallites and/or said rare-earth-ion-doped amorphous particles match the refractive indices of the matrix layer with an index fifference delta n such as: 0
    • 本发明涉及一种具有基质层(2)的波长转换层(1),该基质层包括掺杂的稀土离子掺杂微晶(3)和/或稀土离子掺杂的无定形颗粒,其中所述 稀土离子掺杂的微晶和/或稀土离子掺杂的无定形颗粒掺杂有至少一种镧系元素,并且其中所述稀土离子掺杂的微晶和/或所述掺杂的非晶体 颗粒的平均直径d50为10nm至500μm,并且其中基质层是透明的,由此所述稀土离子掺杂的微晶和/或所述稀土离子掺杂的非晶体的折射率 对于400nm至1200nm范围内的至少一个波长,颗粒与基准层的折射率与索引倍数Δn匹配,例如:0 <_达尔n <_0.1。
    • 3. 发明申请
    • Waveguide laser light source suitable for projection displays
    • 波导激光光源适用于投影显示
    • US20070019691A1
    • 2007-01-25
    • US10569717
    • 2004-08-20
    • Holger MönchGero Heusler
    • Holger MönchGero Heusler
    • H01S3/10H01S5/00H01S3/08
    • H04N9/3129H01S3/0632H01S3/0637H01S3/094092H01S3/09415H01S3/1608H01S3/2391H01S5/02248H01S5/02272H01S5/4031H04N9/315
    • The invention relates to a semiconductor diode laser used to pump a waveguide and their use as light source. A waveguide laser (15) according to the present invention producing visible wavelength radiation from IR wavelength radiation comprising: a) at least one semiconductor diode laser or diode laser bar (8) producing IR wavelength radiation; b) at least one upconversion layer (13a, 13b, 13c) having a thickness of at least 1 μm thicker than the thickness of the emitting layer in the semiconductor diode laser that converts the IR wavelength radiation into visible wavelengths by an upconversion process of photon absorption energy transfer followed by emission; c) at least one optical resonator which recirculates the visible wavelength radiation and/or at least one optical resonator which recirculates the IR wavelength radiation; whereby—the laser diode or laser diode bar and the upconversion layer(s) are arranged on the same substrate or each on a separate substrate (12, 14);—the laser diode or laser diode bar and the upconversion layer(s) are adjacent arranged, whereby a gap between the adjacent arranged diode laser bar and the upconversion layer(s) is formed; or—the laser diode or laser diode bar and the upconversion layer(s) are contacting arranged in this order, and whereby the waveguide laser has a beam quality M2 of ≧2 and ≦1000.
    • 本发明涉及一种用于泵浦波导的半导体二极管激光器及其作为光源的用途。 根据本发明的波导激光器(15)产生来自IR波长辐射的可见波长辐射,包括:a)至少一个产生IR波长辐射的半导体二极管激光器或二极管激光棒(8); b)至少一个上半导体层(13a,13b,13c),其厚度至少比半导体二极管激光器中的发光层的厚度厚至少1μm,其通过上转换将IR波长辐射转换成可见波长 光子吸收能量转移过程随后发射; c)至少一个使可见波长辐射再循环的光学谐振器和/或使IR波长辐射再循环的至少一个光学谐振器; 由此 - 激光二极管或激光二极管条和上转换层被布置在相同的衬底上或每个在单独的衬底(12,14)上; - 激光二极管或激光二极管条和上转换层是 相邻布置,由此形成相邻布置的二极管激光棒和上转换层之间的间隙; 或 - 激光二极管或激光二极管条和上转换层以此顺序接触,由此波导激光器具有≥2和<= 1000的光束质量M2。
    • 5. 发明授权
    • Lighting unit
    • 照明单元
    • US07654696B2
    • 2010-02-02
    • US10538104
    • 2003-12-04
    • Jens Pollmann-RetschHolger MönchWouter Jozef MaesEdmond Mariette Emile Verstraeten
    • Jens Pollmann-RetschHolger MönchWouter Jozef MaesEdmond Mariette Emile Verstraeten
    • F21V29/00
    • H05B41/36H05B41/2928Y02B20/208
    • A lighting unit is described which has a discharge lamp (1), in particular a high pressure or high intensity discharge (HID) lamp or an ultra high performance (UHP) lamp, a lamp driver (2) and a cooling device (3). To reduce mechanical stresses caused by temperature variations in the lamp (1), one or more operating parameters of the lamp (1) are detected. In addition, a control unit is provided for controlling the lamp driver (2) and/or the cooling device (3) at least during switching on and/or off of the lighting unit in such a way that there is no excursion from a predetermined range of the at least one operating parameter. By selecting the parameter range suitably, the service life of the lamp may be extended considerably or the power of the lamp may be increased while the service life remains the same.
    • 描述了具有放电灯(1),特别是高压或高强度放电(HID)灯或超高性能(UHP)灯,灯驱动器(2)和冷却装置(3))的照明单元, 。 为了减少由灯(1)的温度变化引起的机械应力,检测到灯(1)的一个或多个工作参数。 此外,至少在照明单元的接通和/或关闭期间,提供控制单元以控制灯驱动器(2)和/或冷却装置(3),使得不会从预定的 至少一个操作参数的范围。 通过适当地选择参数范围,可以显着延长灯的使用寿命,或者可以在使用寿命保持不变的同时增加灯的功率。
    • 6. 发明授权
    • Video projection system
    • 视频投影系统
    • US07128441B2
    • 2006-10-31
    • US10500504
    • 2002-12-09
    • Holger Mönch
    • Holger Mönch
    • F21V9/00
    • H04N9/3114F21S10/007F21V9/40
    • The invention relates to a video projection system comprising at least a light source coupled to a reflector for focusing the light beam, a motor-driven color wheel having a plurality of light-transmitting segments, at least some of said segments being dichroic filters for the colors red, green, and blue, while the speed of rotation of said wheel can be modified by a control, a lens system imaging the focused light beam onto a display, a display system comprising at least a display and a display control, and a projection lens, wherein the video projection system has a video projection mode and a lighting mode, and in addition the color wheel is stationary in the lighting mode and at least one segment of the color wheel can be given a defined position in the beam.
    • 本发明涉及一种视频投影系统,其至少包括耦合到用于聚焦光束的反射器的光源,具有多个透光段的电动驱动色轮,所述段中的至少一些是二向色滤光器,用于 颜色为红色,绿色和蓝色,而所述轮的旋转速度可以通过控制来改变,将聚焦光束成像到显示器上的透镜系统,至少包括显示器和显示控制的显示系统,以及 投影透镜,其中视频投影系统具有视频投影模式和照明模式,此外,色轮在照明模式下是静止的,并且色轮的至少一个段可以被赋予光束中限定的位置。
    • 7. 发明授权
    • Electronic circuit and method of supplying energy to a high-pressure gas-discharge lamp
    • 电子电路及向高压气体放电灯供电的方法
    • US07064495B2
    • 2006-06-20
    • US10506271
    • 2003-02-26
    • Peter LürkensHolger Mönch
    • Peter LürkensHolger Mönch
    • H05B37/02
    • H05B41/2923
    • The invention relates to an electronic circuit and a method of supplying energy to a high-pressure gas-discharge lamp H, 65, 75. The electronic circuit comprises a line-supply input section 62, 72 to receive and convert an a.c. voltage from an a.c. line-supply system 61, 71, an energy storage means 63, 73 to store the energy put out by the line-supply input section 62, 72 and a lamp-current regulating unit 64, 74 that is supplied with an input voltage U1 by the line-supply input section 62, 72 via the energy storage means 63, 73 and that makes available a lamp current I2 for a high-pressure gas-discharge lamp II, 65, 75. To make it possible for the energy storage means 63, 73 to be particularly small, it is proposed that the lamp-current regulating unit 64, 74 have a power section L, D, C, S, A1, A2, K having a transconductive property. If there is a drop in the input voltage U1, this property then automatically produces a reduction in the lamp current I2 made available to a high-pressure gas-discharge lamp 65, 75, H. This ensures a particularly fast adjustment to voltage fluctuations. The invention also relates to a corresponding method.
    • 本发明涉及电子电路和向高压气体放电灯H,65,75提供能量的方法。 电子电路包括线路供电输入部分62,72,用于接收和转换交流电源。 电压来自a.c. 线路供电系统61,71,用于存储由线路供电输入部分62,72所放出的能量的能量存储装置63,73和提供有输入电压U 1的灯电流调节单元64,74 经由能量存储装置63,73的线路供电输入部分62,72,并且为高压气体放电灯II,65,75提供灯电流I 2。 为了使能量存储装置63,73特别小,建议灯电流调节单元64,74具有功率部分L,D,C,S,A 1,A 2,K,具有 导电性。 如果输入电压U 1有下降,则该特性自动产生可用于高压气体放电灯65,75,H的灯电流I 2的降低。这确保了对电压的特别快速的调整 波动 本发明还涉及相应的方法。