Hld module with improved cooling of a luminescent body

公开(公告)号:
WO2020254455A1
公开(公告)日:
2020-12-24
申请号:
PCT/EP2020/066855
申请日:
2020-06-18
授权日:
-
受理局:
世界知识产权组织
专利类型:
发明申请
简单法律状态:
PCT指定期满
法律状态/事件:
PCT进入指定国(指定期满)
IPC分类号:
F21V8/00
战略新兴产业分类:
电子核心产业
国民经济行业分类号:
C4350 | C3874 | C4090 | C3879
当前申请(专利权)人:
SIGNIFY HOLDING B.V.
原始申请(专利权)人:
SIGNIFY HOLDING B.V.
当前申请(专利权)人地址:
High Tech Campus 48,5656 AE Eindhoven NL
工商统一社会信用代码:
-
工商登记状态:
-
工商注册地址:
-
工商成立日期:
-
工商企业类型:
-
发明人:
YU, JIANG, HONG | BRULS, DOMINIQUE, MARIA
代理机构:
-
代理人:
MALLENS, ERIK, PETRUS, JOHANNES ET AL.
摘要:
The invention provides a light generating system (1000) comprising: - a plurality of k light sources (10) configured to provide light source light (11), wherein k is a natural number of at least 5, wherein the light sources (10) are configured in an array (15), wherein the light sources (10) have inter-light source distances (d1); - an elongated luminescent body (100) having a length (L), the elongated luminescent body comprising one or more side faces (140), the elongated luminescent body (100) comprising a radiation input face (111) and a radiation exit window (112), wherein the radiation input face (111) is configured in a light receiving relationship with the plurality of light sources (10), wherein the elongated luminescent body (100) comprises luminescent material (120) configured to convert at least part of light source light (11) into luminescent material light (8), wherein the radiation exit window (112) has an angle (α) unequal to 0° and unequal to 180° with the radiation input face (111); - a body holder structure (2000), wherein the body holder structure (2000) comprises an elongated slit (205) for hosting the elongated luminescent body (100), wherein the elongated slit (205) comprises one or more slit side faces (2140); - n force applying elements (1300) configured to keep the elongated body (100) pushed against at least one of the one or more slit side faces (2140) of the elongated slit (205), wherein n is a natural number selected from the range of 0.01*L/mm-0.05*L/mm, wherein the length (L) is in mm, wherein n is at least 1, and wherein the inter-light source distance (d1) at the n force applying elements (1300) is larger than an average inter-light source distance (d1).
技术问题语段:
The technical problem addressed in this patent is how to improve the cooling and efficiency of a light generating system that uses a luminescent body. The patent describes a high brightness light source that can be used in various applications such as stage-lighting, microscopy, and digital light projection. The light source comprises a ceramic rod with a high lumen density, which is clamped by metal rod holders for optical efficiency and cooling. The patent also discusses a method for improving the cooling of the light source by using a heat dissipation holder.
技术功效语段:
The patent is about a new light generating system that uses a luminescent body to convert short wavelength light to longer wavelengths for use in various applications such as stage-lighting, microscopy, and digital light projection. The system includes a ceramic rod with a high lumen density and a heat dissipation holder for efficient cooling. The system also includes a light converter with improved cooling to prevent overheating. The technical effects of the patent are improved cooling and optical efficiency of the light generating system.
权利要求:
CLAIMS: 1. A light generating system (1000) comprising: a plurality of k light sources (10) configured to provide light source light (11), wherein k is a natural number of at least 5, wherein the light sources (10) are configured in an array (15), wherein the light sources (10) have inter-light source distances (dl); an elongated luminescent body (100) having a length (L), the elongated luminescent body comprising one or more side faces (140), the elongated luminescent body (100) comprising a radiation input face (111) and a radiation exit window (112), wherein the radiation input face (111) is configured in a light receiving relationship with the plurality of light sources (10), wherein the elongated luminescent body (100) comprises luminescent material (120) configured to convert at least part of light source light (11) into luminescent material light (8), wherein the radiation exit window (112) has an angle (a) unequal to 0° and unequal to 180° with the radiation input face (111)); a body holder structure (2000), wherein the body holder structure (2000) comprises an elongated slit (205) for hosting the elongated luminescent body (100), wherein the elongated slit (205) comprises one or more slit side faces (2140); n force applying elements (1300) configured to keep the elongated body (100) pushed against at least one of the one or more slit side faces (2140) of the elongated slit (205), wherein n is a natural number selected from the range of 0.01 *L/mm-0.05*L/mm, wherein the length (L) is in mm, wherein n is at least 1, and wherein the inter-light source distance (dl) at the n force applying elements (1300) is larger than an average inter-light source distance (dl), and wherein the n force applying elements (1300) are configured to exert a force selected from the range of 1-10 N. 2. The light generating system (1000) according to claim 1, wherein the n force applying elements (1300) comprise n spring elements (300). 3. The light generating system (1000) according to claim 2, wherein the one or more spring elements (300) comprises a single wire spring. 4. The light generating system (1000) according to any one of the preceding claims, wherein the n force applying elements (1300) are configured to exert a force selected from the range of 2-6 N. 5. The light generating system (1000) according to any one of the preceding claims, wherein the length (L) is selected from the range of 10-200 mm, and wherein n is selected from the range of 2-3. 6. The light generating system (1000) according to any one of the preceding claims, wherein the plurality of k light sources (10) are arranged in an array (15) parallel to the length (L) of the elongated luminescent body (100), wherein the n force applying elements (1300) spatially divide the plurality of k light sources (10) in n+1 subsets (110), wherein k is at least 5*n, 7. The light generating system (1000) according to claim 6, wherein at least two of the n+1 subsets (110) do not contain the same number of light sources (10). 8. The light generating system (1000) according to claim 7, wherein n=2, and wherein the numbers of light sources (10) in the three subsets (110) are a:b:c, wherein a, b, c are natural numbers, wherein a+b+c=k, a>l, b>l, c>l, wherein 1.5<b/a<5, wherein 1.5<b/c<5, and wherein 0.75<a/c£1.25. 9. The light generating system (1000) according to claim 8, wherein 2<b/a<3, wherein 2<b/c<3, and wherein 0.9<a/c£l. l. 10. The light generating system (1000) according to any one of the preceding claims 7-9, wherein n>2, and wherein two or more of the n force applying elements (1300) are configured to exert mutually different forces. 11. The light generating system (1000) according to claim 10, wherein n=2, and wherein the mutually different forces have a ratio of the smaller force to the larger force selected from the range of 0.5-0.9. 12. The light generating system (1000) according to any one of the preceding claims 6-11, wherein the n force applying elements (1300) spatially divide the plurality of k light sources (10) in n+1 subsets (110), wherein n>2, wherein the light sources (10) are configured to provide an even irradiance to the radiation input face (111), but wherein two or more respective areas of the n+1 subsets (110) have different sizes, and wherein in the case of n=2, the respective areas have an area ratio of x:y:z, wherein x, y, z are rational numbers, wherein x>0, y>0, z>0, wherein 1.5<y/x<5, wherein 1.5<y/z<5, and wherein 0.75<x/z<1.25. 13. The light generating system (1000) according to any one of the preceding claims, wherein the elongated luminescent body (100) comprises a first face (141) and a second face (142) defining the length (L) of the elongated luminescent body (100), wherein the second face (142) comprises the radiation exit window (112), wherein the elongated luminescent body (100) comprises a plurality of N side faces (140), and wherein the elongated slit (205) comprises N-l slit side faces (2140), wherein one or more of the side faces (140) are in thermal contact with one or more of the slit side faces (2140), wherein a side face (140) in thermal contact with a slit side face (2140) is configured at a first average distance (dl l) of at least 1 pm from the slid side face (2140), and at maximum 20 pm. 14. The light generating system (1000) according to any one of the preceding claims 12-13, wherein the one or more of the slit side faces (2140) being in thermal contact with one or more of the side faces (140) comprise one or more reflectors (2100) being reflective for at least part of the light source light (11), and wherein at least a slit side face (2140) configured opposite of the light sources (10), with the elongated luminescent body (100) configured between that slit side face (2140) and the light sources (10), comprises a reflector (2100), and wherein the body holder structure (2000) comprises one or more heat transfer elements (200) for guiding away heat from the elongated luminescent body (100), and comprising one or more second heat transfer elements (1200) for guiding away heat from the plurality of light sources (10). 15. A projection system or a luminaire comprising the system (1000) according to any one of the preceding claims.
技术领域:
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背景技术:
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发明内容:
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具体实施方式:
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