Jagt, Eindhoven
Hekdrik J.b. Jagt, Eindhoven NL
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20120001204 | COLOR ADJUSTING ARRANGEMENT - Disclosed is a color adjusting arrangement comprising: i) a first wavelength converting material arranged to receive ambient light and capable of converting ambient light of a first wavelength range into light of a second wavelength range, and/or reflecting ambient light of said second wavelength range, said second wavelength range being part of the visible light spectrum; and ii) a complementary wavelength converting material arranged to receive ambient light and capable of converting part of said ambient light into light of a complementary wavelength range, which is complementary to said second wavelength range, and arranged to allow mixing of light of said second wavelength range and said complementary wavelength range; such that light of said second wavelength range that is emitted and/or reflected by said first wavelength converting material and light of said complementary wavelength range is mixed when leaving the color adjusting arrangement towards a viewing position, the light leaving the color adjusting arrangement thereby appearing less colored, i.e. having a color point substantially near the black body line. The invention thus allows an undesirable colored appearance of a semiconductor-phosphor based light source to be at least partly extinguished or neutralized. | 01-05-2012 |
Hendrik J.b. Jagt, Eindhoven NL
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20110062469 | MOLDED LENS INCORPORATING A WINDOW ELEMENT - A light emitter includes a light-emitting device (LED) die and an optical element over the LED die. The optical element includes a lens, a window element, and a bond at an interface disposed between the lens and the window element. The window element may be a wavelength converting element or an optically flat plate. The window element may be directly bonded or fused to the lens, or the window element may be bonded by one or more intermediate bonding layers to the lens. The bond between the window element and the lens may have a refractive index similar to that of the window element, the lens, or both. | 03-17-2011 |
Hendrik J. B. Jagt, Eindhoven NL
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20110175117 | COATED LIGHT EMITTING DEVICE AND METHOD FOR COATING THEREOF - The present invention relates to the field of a light emitting device ( | 07-21-2011 |
Hendrik Johannes Boudewijn Jagt, Eindhoven NL
Patent application number | Description | Published |
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20100053976 | OPTICAL ELEMENT HAVING AT LEAST ONE EMBEDDED REFLECTOR - An optical element ( | 03-04-2010 |
20100220459 | POLARIZED LIGHT EMITTING DEVICE - The present invention relates to a light emitting device, comprising: a LED die ( | 09-02-2010 |
20100258831 | SIDE EMITTING DEVICE WITH HYBRID TOP REFLECTOR - A side-emitting light emitting device ( | 10-14-2010 |
20100258832 | SIDE EMITTING DEVICE WITH HYBRID TOP REFLECTOR - A side-emitting light emitting device ( | 10-14-2010 |
20110018020 | SIDE EMITTING DEVICE WITH WAVELENGTH CONVERSION - A side-emitting light emitting device ( | 01-27-2011 |
20110025190 | LUMINOUS DEVICE - The present invention relates to the field of luminous devices, in particular to a luminous device ( | 02-03-2011 |
20110073898 | LED MODULE - The present invention relates to a LED module which converts pump light from a LED chip ( | 03-31-2011 |
20110116263 | Optical element for a light emitting device and a method of manufacturing thereof - The present invention relates to an optical element for a light emitting device, wherein the optical element comprises a sintered ceramic body ( | 05-19-2011 |
20120126274 | OPTICAL COMPOSITION - The invention relates to a composition comprising a binder material and nanoparticles having an average particle size of 100 nm or less having a first refractive index of at least 1.65 in respect of light of a first wavelength, and a second refractive index in the range of 1.60-2.2 in respect of light of a second wavelength, wherein said first refractive index is higher than said second refractive index, and wherein the first and second refractive indices may be tuned by adjusting the volume ratio of the nanoparticles to the binder material. The composition may improve light extraction when used for bonding a ceramic member to an LED, and/or may reduce the amount of light that is directed back towards the LED. | 05-24-2012 |
20130193838 | LED MODULE - The present invention relates to a LED module which converts pump light from a LED chip ( | 08-01-2013 |
20130200416 | LED MODULE - The present invention relates to a LED module which converts pump light from a LED chip ( | 08-08-2013 |
20130334559 | LIGHT EMITTING MODULE, A LAMP, A LUMINAIRE AND A DISPLAY DEVICE - A light emitting module | 12-19-2013 |
20140001497 | METHOD FOR PROVIDING A REFLECTIVE COATING TO A SUBSTRATE FOR A LIGHT EMITTING DEVICE | 01-02-2014 |
20150009649 | LIGHT EMITING MODULE, A LAMP, A LUMINAIRE AND A DISPLAY DEVICE - A light emitting module ( | 01-08-2015 |
Hendrik Johsannes Jagt, Eindhoven NL
Patent application number | Description | Published |
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20140119024 | LIGHT EMITTING MODULE COMPRISING A THERMAL CONDUCTOR, A LAMP AND A LUMINAIRE - A light emitting module ( | 05-01-2014 |
Henri Jagt, Eindhoven NL
Patent application number | Description | Published |
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20080212165 | Bistable Display Devices - A bistable display device comprises a first substrate ( | 09-04-2008 |