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公开(公告)号:US20170345975A1
公开(公告)日:2017-11-30
申请号:US15537299
申请日:2015-12-17
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Peter Josef Schmidt , Walter Mayr , Volker Weiler , Hans-Helmut Bechtel
CPC classification number: H01L33/502 , C09K11/0883 , C09K11/59 , C09K11/7734 , H01L33/504
Abstract: The invention provides a lighting device configured to provide white lighting device light, the lighting device comprising (i) a light source, configured to provide blue light source light, and (ii) a luminescent material element, configured to absorb at least part of the blue light source light and to convert into luminescent material light, wherein the luminescent material element comprises a luminescent material which consists for at least 80 wt. % of a M2-2xEu2xSi5-yAlyOyN8-y phosphor, wherein M comprises one or more of Mg, Ca, Sr, Ba, with a molar ratio of (Mg+Ca+Sr)/(Ba)≦0.1, wherein x is in the range of 0.001-0.02, wherein y is in the range of ≦0.2, and wherein the white lighting device light comprises said blue light source light and said luminescent material light.
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公开(公告)号:US20170331011A1
公开(公告)日:2017-11-16
申请号:US15607180
申请日:2017-05-26
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: April Dawn Schricker , Oleg Borisovich Shchekin , Kenneth Vampola , Hans-Helmut Bechtel , Guido Salmaso
CPC classification number: H01L33/502 , H01L21/304 , H01L21/78 , H01L31/18 , H01L33/505 , H01L33/507 , H01L33/60 , H01L2933/0041 , H01L2933/0058
Abstract: A method according to embodiments of the invention includes disposing a support layer on a surface of a wavelength converting ceramic wafer. The wavelength converting ceramic wafer and the support layer are diced to form wavelength converting members. A wavelength converting member is attached to a light emitting device. After attaching the wavelength converting member to the light emitting device, the support layer is removed.
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公开(公告)号:US20170162758A1
公开(公告)日:2017-06-08
申请号:US15423495
申请日:2017-02-02
Applicant: Koninklijke Philips N.V.
Inventor: Volker Weiler , Peter Josef Schmidt , Hans-Helmut Bechtel
IPC: H01L33/50 , G02F1/1335 , F21V9/08 , C09K11/08 , C09K11/02 , C09K11/77 , C09K11/61 , H01L25/075 , F21V9/16
CPC classification number: H01L33/504 , C09K11/025 , C09K11/0883 , C09K11/617 , C09K11/646 , C09K11/7731 , C09K11/7734 , F21V9/08 , F21V9/30 , F21Y2115/10 , G02F1/133603 , G02F2001/133614 , H01L25/0753 , H01L33/502 , H01L2924/0002 , H01L2924/00
Abstract: The invention provides a lighting unit comprising a source of blue light, a source of green light, a first source of red light comprising a first red luminescent material, configured to provide red light with a broad band spectral light distribution, and a second source of red light comprising a second red luminescent material, configured to provide red light with a spectral light distribution comprising one or more red emission lines. Especially, the first red luminescent material comprises (Mg,Ca,Sr)AlSiN3:Eu and/or (Ba,Sr,Ca)2Si5-xAlxOxN8-x:Eu, and the second red luminescent material comprises K2SiF6:Mn.
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公开(公告)号:US20170047492A1
公开(公告)日:2017-02-16
申请号:US15335354
申请日:2016-10-26
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Kenneth Vampola , Hans-Helmut Bechtel
CPC classification number: H01L33/60 , H01L33/02 , H01L33/36 , H01L33/501 , H01L33/502 , H01L33/507 , H01L33/508 , H01L2933/0091
Abstract: In one embodiment, the transparent growth substrate of an LED die is formed to have light scattering areas, such as voids formed by a laser. In another embodiment, the growth substrate is removed and replaced by another substrate that is formed with light scattering areas. In one embodiment, the light scattering areas are formed over the light absorbing areas of the LED die, to reduce the amount of incident light on those absorbing areas, and over the sides of the substrate to reduce light guiding. The replacement substrate may be formed to include reflective particles in selected areas. A 3D structure may be formed by stacking substrate layers containing the reflective areas. The substrate may be a transparent substrate or a phosphor tile that is affixed to the top of the LED.
Abstract translation: 在一个实施例中,LED管芯的透明生长衬底形成为具有光散射区域,例如由激光形成的空隙。 在另一个实施方案中,生长衬底被去除并由用光散射区域形成的另一衬底代替。 在一个实施例中,光散射区域形成在LED管芯的光吸收区域的上方,以减少这些吸收区域上的入射光的量,并且在衬底的两侧以减少光引导。 替代基板可以形成为在选定区域中包括反射粒子。 可以通过堆叠包含反射区域的衬底层来形成3D结构。 衬底可以是固定到LED的顶部的透明衬底或荧光砖。
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公开(公告)号:US09564559B2
公开(公告)日:2017-02-07
申请号:US14699362
申请日:2015-04-29
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Joerg Meyer , Hans-Helmut Bechtel , Walter Mayr , Peter Schmidt , Baby-Seriyati Schreinemacher , Detlef Uwe Wiechert
IPC: H01L33/50 , C01B21/06 , C04B35/581 , C04B35/583 , C04B35/584 , C04B35/645 , C09K11/08 , C09K11/77
CPC classification number: H01L33/502 , C01B21/0602 , C01P2002/84 , C01P2004/61 , C04B35/581 , C04B35/583 , C04B35/584 , C04B35/6455 , C04B2235/3217 , C04B2235/3224 , C04B2235/3229 , C04B2235/3418 , C04B2235/3852 , C04B2235/386 , C04B2235/3865 , C04B2235/3873 , C04B2235/604 , C04B2235/608 , C04B2235/6582 , C04B2235/9646 , C09K11/0883 , C09K11/7734 , C09K11/7792 , H01L2924/0002 , H01L2924/00
Abstract: The invention relates to a white emitting light source with an improved luminescent material of the formula (AEN2/3)*b(MN)*c(SiN4/3)*d1CeO3/2*d2EuO*xSiO2*yAlO3/2 wherein AE is an alkaline earth metal chosen of the group of Ca, Mg, Sr and Ba or mixtures thereof and M is a trivalent element chosen of the group of Al, B, Ga, Sc with d1>10*d2. In combination with a UV to blue light generating device this material leads to an improved light quality and stability, especially an improved temperature stability for a wide range of applications.
Abstract translation: 本发明涉及具有式(AEN2 / 3)* b(MN)* c(SiN4 / 3)* d1CeO3 / 2 * d2EuO * xSiO2 * yAlO3 / 2的改进的发光材料的白色发光光源,其中AE是 选自Ca,Mg,Sr和Ba或其混合物的碱土金属,M是选自具有d1> 10×d2的Al,B,Ga,Sc组的三价元素。 结合UV到蓝光产生装置,这种材料导致改进的光质量和稳定性,特别是对于广泛应用的改进的温度稳定性。
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公开(公告)号:US09564557B2
公开(公告)日:2017-02-07
申请号:US14439253
申请日:2013-10-22
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Volker Weiler , Peter Josef Schmidt , Hans-Helmut Bechtel
IPC: H01L33/50 , C09K11/64 , C09K11/77 , C09K11/61 , G02F1/1335 , H01L25/075
CPC classification number: H01L33/504 , C09K11/025 , C09K11/0883 , C09K11/617 , C09K11/646 , C09K11/7731 , C09K11/7734 , F21V9/08 , F21V9/30 , F21Y2115/10 , G02F1/133603 , G02F2001/133614 , H01L25/0753 , H01L33/502 , H01L2924/0002 , H01L2924/00
Abstract: The invention provides a lighting unit comprising a source of blue light, a source of green light, a first source of red light comprising a first red luminescent material, configured to provide red light with a broad band spectral light distribution, and a second source of red light comprising a second red luminescent material, configured to provide red light with a spectral light distribution comprising one or more red emission lines. Especially, the first red luminescent material comprises (Mg,Ca,Sr)AlSiN3:Eu and/or (Ba,Sr,Ca)2Si5-xAlxOxN8-x:Eu, and the second red luminescent material comprises K2SiF6:Mn.
Abstract translation: 本发明提供了一种照明单元,其包括蓝光源,绿光源,包括第一红色发光材料的第一红光源,用于提供具有宽带光谱分布的红光,以及第二源 红光包括第二红色发光材料,其被配置为提供具有包括一个或多个红色发射线的光谱分布的红光。 特别地,第一红色发光材料包含(Mg,Ca,Sr)AlSiN 3:Eu和/或(Ba,Sr,Ca)2 Si 5-x Al x O x N 8-x:Eu,第二红色发光材料包括K 2 SiF 6:Mn。
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27.
公开(公告)号:US20170012183A1
公开(公告)日:2017-01-12
申请号:US15113738
申请日:2015-01-20
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: April Dawn Schricker , Oleg Borisovich Shchekin , Kenneth Vampola , Hans-Helmut Bechtel , Guido Salmaso
CPC classification number: H01L33/502 , H01L21/304 , H01L21/78 , H01L31/18 , H01L33/505 , H01L33/507 , H01L33/60 , H01L2933/0041 , H01L2933/0058
Abstract: A method according to embodiments of the invention includes disposing a support layer (32) on a surface of a wavelength converting ceramic wafer (30). The wavelength converting ceramic wafer and the support layer are diced (42) to form wavelength converting members. A wavelength converting member is attached to a light emitting device. After attaching the wavelength converting member to the light emitting device, the support layer is removed.
Abstract translation: 根据本发明的实施例的方法包括在波长转换陶瓷晶片(30)的表面上设置支撑层(32)。 波长转换陶瓷晶片和支撑层被切割(42)以形成波长转换部件。 波长转换构件附接到发光器件。 在将波长转换构件附接到发光器件之后,移除支撑层。
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28.
公开(公告)号:US09543478B2
公开(公告)日:2017-01-10
申请号:US14440479
申请日:2013-10-25
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: April Dawn Schricker , Hans-Helmut Bechtel , Kim Kevin Mai , Thomas Diederich , Joost Peter Andre Vogels , Uwe Mackens , Matthias Heidemann
IPC: H01L33/50 , H01L33/44 , H01L33/56 , H01L25/075 , H01L33/60 , H01L25/00 , H01L33/00 , H01L33/52 , H01L33/46
CPC classification number: H01L33/44 , H01L25/0753 , H01L25/50 , H01L33/005 , H01L33/46 , H01L33/50 , H01L33/501 , H01L33/502 , H01L33/505 , H01L33/52 , H01L33/56 , H01L33/58 , H01L33/60 , H01L33/62 , H01L2224/16225 , H01L2924/0002 , H01L2933/0025 , H01L2933/0033 , H01L2933/0041 , H01L2933/0058 , H01L2924/00
Abstract: A method according to embodiments of the invention includes providing a plurality of LEDs (60) attached to a mount (62). A filter (102) is attached to at least one of the plurality of LEDs. A protective layer (104) is formed over the filter. A reflective layer (74) is formed over the mount. A portion of the reflective layer disposed over the protective layer is removed.
Abstract translation: 根据本发明的实施例的方法包括提供附接到安装件(62)的多个LED(60)。 过滤器(102)附接到多个LED中的至少一个。 在过滤器上形成保护层(104)。 在安装件上形成反射层(74)。 设置在保护层上方的反射层的一部分被去除。
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29.
公开(公告)号:US20150171284A1
公开(公告)日:2015-06-18
申请号:US14419951
申请日:2013-08-06
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Hans-Helmut Bechtel , Matthias Heidemann
IPC: H01L33/50
CPC classification number: H01L33/504 , H01L33/507 , H01L2924/0002 , H01L2924/00
Abstract: A phosphor converted Light Emitting Diode (LED), a lamp and a luminaire are provided. The phosphor converted LED 106 comprises a LED 102, a first luminescent material166, a second luminescent material 164 and a third luminescent material 162. The LED 102 emits a first spectral distribution having a first peak wavelength in the blue spectral range. The first luminescent material 166 absorbs a portion of the light of the first spectral distribution and converts at least a portion of the absorbed light towards light of a second spectral distribution. The second spectral distribution has a second peak wavelength in the green spectral range. The second luminescent material 164 absorbs absorbing a portion of the light of the first spectral distribution and/or a portion of the second spectral distribution. The second luminescent material 164 converts at least a portion of the absorbed light towards lights of a third spectral distribution. The third spectral distribution has a third spectral width and has a third peak wavelength. The third luminescent material 162 absorbs a portion of the light of at least one of the first spectral distribution, second spectral distribution, and the third spectral distribution. The third luminescent material 162 converts at least a portion of the absorbed light towards light of a fourth spectral distribution. The fourth spectral distribution has a fourth spectral width and has a fourth peak wavelength. The third peak wavelength and the fourth peak wavelength are in the orange/red spectral range. The third peak wavelength is smaller than the fourth peak wavelength and the third spectral width is larger than the fourth spectral width.
Abstract translation: 提供了磷光体转换发光二极管(LED),灯和照明器。 磷光体转换LED 106包括LED 102,第一发光材料166,第二发光材料164和第三发光材料162. LED 102发射在蓝色光谱范围内具有第一峰值波长的第一光谱分布。 第一发光材料166吸收第一光谱分布的一部分光,并将至少一部分吸收的光转换成第二光谱分布的光。 第二光谱分布在绿色光谱范围内具有第二峰值波长。 第二发光材料164吸收吸收第一光谱分布的光的一部分和/或第二光谱分布的一部分。 第二发光材料164将吸收的光的至少一部分转换成第三光谱分布的光。 第三光谱分布具有第三光谱宽度并且具有第三峰值波长。 第三发光材料162吸收第一光谱分布,第二光谱分布和第三光谱分布中的至少一个的一部分光。 第三发光材料162将吸收的光的至少一部分转换成第四光谱分布的光。 第四光谱分布具有第四光谱宽度并且具有第四峰值波长。 第三峰值波长和第四峰值波长处于橙色/红色光谱范围。 第三峰值波长小于第四峰值波长,第三光谱宽度大于第四光谱宽度。
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公开(公告)号:US10121770B2
公开(公告)日:2018-11-06
申请号:US15551381
申请日:2016-02-10
Applicant: KONINKLIJKE PHILIPS N.V.
Inventor: Hans-Helmut Bechtel , Erik Nelson , April Dawn Schricker
IPC: H01L25/075 , H01L27/15
Abstract: A device according to embodiments of the invention includes a first semiconductor light emitting layer disposed between a first n-type region and a first p-type region. A second semiconductor light emitting layer disposed between a second n-type region and a second p-type region is disposed over the first semiconductor light emitting layer. A non-III-nitride material separates the first and second light emitting layers.
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