Patents
- M Arik et al., “System for measuring junction temperature of photonics devices”, US Patent App. 17/417,821, 2022.
- Arik et al., “Geodetic levelling staff and method of use thereof”, US Patent App. 17/294,708, 2022.
- Arik et al, “Heat sink cooling with preferred synthetic jet cooling devices”, US201515511175A, 2015, Ozyegin University.
- Arik et al, “Light engine system preferred in LED-based lighting systems”, US201615759310, 2016, Ozyegin University.
- Arik et al, “Flow cooled solid state lighting with preferred optical and advanced sensing feature”, US201615511170A (TR2018/04359, DE60201600951, EP16782108.1, EP16782108.1, EP16782108.1, EP16782108.1), 2018, Ozyegin University.
- Arik et al, “A flow controlled effective LED based lighting system”, US14/183931, Ozyegin University.
- Arik et al, “Preferred optothermal LED lighting embodiment for high lumen extraction and extended lifetime”, US14/183964, Ozyegin University.
- Arik et al, “LED esasli aydinlatma sistemlerinde tercih edilen işik motoru sistemi”, TR2015/14689 (EP16822551.4), 2016, Ozyegin University.
- Arik et al, “Işik yayan veya absorbe eden sistemlerin optik yollari için aydinlatma ara katmanlari”, TR2015/16627, 2015, Ozyegin University.
- Arik et al, “Preferred thermal connector for electronic systems”, TR2020/21772, 2020, Ozyegin University.
- Arik et al, “A preferred system for measuring junction temperature of photonics devices”, TR2021/010395 (WO2020139208A1), 2021, Ozyegin University.
- Arik et al, “An optical arrangement for a collimated light beam”, PCT/TR2021/050775, 2021, Ozyegin University.
- Arik et al, “Geodetic leveling staffs and method of use thereof”, US17294708, 2021, Ozyegin University.
- Arik et al, “Synthetic jet and method of making same”, US2010079943, October 2010, General Electric.
- Arik et al, “Method and apparatus for reducing acoustic noise in a synthetic jet”, US2010051242, August 2011, General Electric.
- Arik et al, “Heat sinks with distributed and integrated jet cooling”, US8496049, July 2013, General Electric.
- Arik et al, “Thermal management apparatus and uses thereof”, US2005093543, November 2006, General Electric.
- Arik et al, “Unique-cooling scheme for advanced thermal management of high flux electronics”, US20080156462, June 2011, General Electric.
- Arik et al, “System and method for mounting synthetic jets”, US2010051721, December 2011, General Electric.
- Arik et al, “Method, system and apparatus for cooling high power density devices”, EP1570521, March 2009, General Electric.
- Arik et al, “Electronic Devices and methods for making same using nanotube regions to assist in thermal heat-sinking”, JP2007531243, August 2011, General Electric.
- Arik et al, “Apparatus and method for reducing acoustical noise in synthetic jets”, US8564217, October 2013, General Electric.
- Arik et al, “Light emitting diode apparatuses with a thermally superconducting heat transfer medium for thermal management”, US20050258438, August 2006, General Electric.
- Arik et al, “Method of processing high-resolution flex circuits with low distortion”, JP4301924, July 2009, General Electric.
- Arik et al, “Thermal management apparatus and uses thereof”, US20070069843, October 2008, General Electric.
- Arik et al, “Thermal management system for embedded environment and method for making same”, US2010067191, February 2012, General Electric.
- Arik et al, “Device for thermal transfer and power generation”, US20070069357, April 2011, General Electric.
- Arik et al, “Methods and apparatus for temperature measurement and control in electromagnetic coils”, US20050129088, July 2006, General Electric.
- Arik et al, “LED light with active cooling”, US20040190305, April 2007, General Electric.
- Arik et al, “System and method for miniaturization of synthetic jets”, US/2010/0053891 A1, April 2013, General Electric.
- Arik et al, “LED power package”, US20040203189, November 2005, General Electric.
- Arik et al, “Thermal management system and method for MRI gradient coil”, US20060066309, November 2006, General Electric.
- Arik et al, “Method and system for cooling high power density devices”, US20040221603, March 2006, General Electric.
- Arik et al, “Method and apparatus for reducing acoustic noise in a synthetic jet”, US2011220339, November 2012, General Electric.
- Arik et al, “Thermal management systems for solid state lighting and other electronic systems”, US8506105, August 2013, General Electric.
- Arik et al, “Thermal management apparatus and uses thereof”, DE102004053879, June 2013, General Electric.
- Arik et al, “Thermal management apparatus and uses thereof, NL1027290, 13 February 2007.
- Arik et al, “Thermal management system for cooling a heat generating component of a magnetic resonance imaging apparatus, US2009120615, October 2010, General Electric.
- Arik et al, “LED light with active cooling”, JP20060507466, January 2012, General Electric.
- Arik et al, “Lighting system with thermal management system having point contact synthetic jets”, US8602607, December 2013, General Electric.
- Arik et al, “Lighting system with heat distribution face plate”, US8529097, September 2013, General Electric.
- Arik et al, “Method and system for cooling high power density devices”, CN1914968, June 2010, General Electric.
- Arik et al, “Enhanced heat transfer in MRI gradient coils with phase change materials”, US20080143331, February 2009, General Electric.
- Arik et al, “Device and method to directly control the temperature of microscope slides”, US6300124, October 2001, University of Minnesota/Blizzard Genomics.
- Arik et al, “LED light with active cooling”, US20070147046, June 2009, General Electric.
- Arik et al, “Cooling systems employing fluidic jets, methods for their use and methods for cooling”, US20080041574, November 2011, General Electric.
- Arik et al, “Electronic devices and methods for making same using nanotube regions to assist in thermal heat-sinking, US2005006754, March 2005, General Electric.
- Arik et al, “Method of processing high-resolution flex circuits with low distortion, FR2848062, 7 November 2003.
- Arik et al, “Method, system and apparatus for cooling high power density devices”, CN1745475, October 2009, General Electric.
- Arik et al, “LED light with active cooling, US20070139938”, July 2009, General Electric.
- Arik et al, “Lighting system with thermal management system”, US2011204790, May 2013, General Electric.
- Arik et al, “Method of processing high-resolution flex circuits with low distortion”, US6994897, February 2006, General Electric.
- Arik et al, “Synthetic jet embedded heat sink”, US2010110630, June 2013, General Electric.
- Arik et al, “Systems and methods for synthetic jet enhanced natural cooling”, US2010271775, August 2011, General Electric.
- Arik et al, “Method and system for cooling high power density devices”, EP1579155, June 2011, General Electric.
- Arik et al, “Light emitting chip apparatuses with a thermally superconducting heat transfer medium for thermal management”, US20060005947, February 2011, General Electric.
- Arik et al, “System and method for mounting a cooling device and method of fabrication”, US20100284147, January 2013, General Electric.
- Arik et al, “System and method for mounting a cooling device and method of fabrication”, US8342819, January 2013, General Electric.
- Arik et al, “System and method for mounting synthetic jets”, US20120018537, January 2012, General Electric.
- Arik et al, “Thermal management systems for solid state lighting and other electronic systems”, US20120051058, March 2012, General Electric.
- Arik et al, “Method and apparatus for improved cooling of a heat sink using a synthetic jet”, US20110174462, July 2011, General Electric.
- Arik et al, “Chassis with distributed jet cooling”, US20110114287, May 2011, General Electric.
- Arik et al, “Method and apparatus for reducing acoustic noise in a synthetic jet”, US20100054973, March 2010, General Electric.
- Arik et al, “Heat transfer and power generation device”, US20080017237, January 2008, General Electric.
- Arik et al, “Wireless monitoring system”, US20070139193, June 2007, General Electric.
- Arik et al, “Heat transfer system for a light emitting diode (LED) lamp”, US20110242826, October 2011, General Electric.
- Arik et al, “Apparatus and method for reducing acoustical noise in synthetic jets, US20110316416, December 2011.
- Arik et al, “Shaped heat sinks to optimize flow”, US20110139429, June 2011, General Electric.
- Arik et al, “Efficient cooling of lasers, LEDs and photonics devices”, US20090001372, January 2009, General Electric.
- Arik et al, “Apparatus for induction heating and method of making”, US20050061803, March 2005, General Electric.
- Arik et al, “Thermal management system for embedded environment and method for making same”, US20080137289, June 2008, General Electric.
- Arik et al, “Advanced heat sinks and thermal spreaders”, US20070053168, March 2007, General Electric.
- Arik et al, “Heat sinks with distributed and integrated jet cooling”, US20100258270, October 2010, General Electric.
- Arik et al, “Thermotunneling refrigeration system”, US20090031733, February 2009, General Electric.
- Arik et al, “System and method for mounting a cooling device and method of fabrication”, US20080310110, December 2008, General Electric.
- Arik et al, “Method of processing high-resolution flex circuits with low distortion”, US20040094329, May 2004, General Electric.
- Arik et al, “Method and apparatus for removing heat from electronic devices using synthetic jets”, US20110162823, July 2011, General Electric.
- Arik et al, “LED power package”, US20040188696, September 2004, General Electric.
- Arik et al, “Enhanced heat transfer in MRI gradient coils with phase-change materials”, (US)7489132, February 2009, General Electric.
- Arik et al, “Method and apparatus for reducing acoustic noise in a synthetic jet”, (US)8006917, August 2011, General Electric.
- Arik et al, “Light emitting diode apparatuses with heat pipes for thermal management, General Electric, (US), August 2006, General Electric.
- Arik et al, “System and method for mounting synthetic jets”, (US), December 2011, General Electric.
- Arik et al, “Thermal management system for cooling a heat generating component of a magnetic resonance imaging apparatus”, (US) 7812604, October 2010, General Electric.
- Arik et al, “Method, system and apparatus for cooling high power density devices”, US20040107718, June 2004, General Electric.
- Arik et al, “Unique cooling scheme for advanced thermal management of high flux electronics”, (US)7969734, June 2011, General Electric.
- Arik et al, “Thermal management system and method for MRI gradient coil”, (US)7135863, November 2006, General Electric.
- Arik et al, “Synthetic jet and method of making same”, (US)7688583, March 2010, General Electric.
- Arik et al, “Light emitting chip apparatuses with a thermally superconducting heat transfer medium for thermal management”, (US)7878232, February 2011, General Electric.
- Arik et al, “Method of processing high-resolution flex circuits with low distortion”, (US)6994897, February 2006, General Electric.
- Arik et al, “Thermal management system for embedded environment and method for making same”, (US)8120908, February 2012, General Electric.
- Arik et al, “Systems and methods for synthetic jet enhanced natural cooling”, (US)7990705, August 2011, General Electric.
- Arik et al, “Device for thermal transfer and power generation”, (US)7928561, April 2011, General Electric.
- Arik et al, “Electronic devices and methods for making same using nanotube regions to assist in thermal heat-sinking”, (US)6864571, March 2005, General Electric.
- Arik et al, “LED power package”, (US)6964877, November 2005, General Electric.
- Arik et al, “Cooling systems employing fluidic jets, methods for their use and methods for cooling”, (US)8051905, November 2011, General Electric.
- Arik et al, “Thermal management apparatus and uses thereof”, (US)7439741, October 2008, General Electric.
- Arik et al, “LED light with active cooling”, (US)7543961, June 2009, General Electric.
- Arik et al, “Led light with active cooling", (US) 7556406, July 2009, General Electric.
- Arik et al, “Thermal management apparatus and uses thereof”, (US)7140420, November 2006, General Electric.
- Arik et al, “Thermal management system for distributed heat sources”, (US)7606029, October 2009, General Electric.
- Arik et al, “LED light with active cooling”, (US)7204615, 17 April 2007, General Electric.
- Arik et al, “Methods and apparatus for temperature measurement and control in electromagnetic coils”, (US)7077566, July 2006, General Electric.
- Arik et al, “Method and system for cooling high power density devices, (US) 7010930, March 2006, General Electric.
- Arik et al, “Thermal management of batteries using synthetic jets”, (US)8030886, October 2011, General Electric.
- Arik et al, “Synthetic jet heat pipe thermal management system”, (US)7607470, October 2009, General Electric.
- Arik et al, “Energy conversion device”, US20090205695, August 2009, General Electric.
- Arik et al., “Geodetic leveling staffs and method of use thereof”, 2018, US201817294708A, Ozyegin University.
- Arik et al.,” Optical arrangement for collimated light beam”, 2021, US202118283496A, Ozyegin University.
- Arik et al.,” Fotonik cihazlarin jonksiyon sicakliğini ölçmek için tercih edilen bir sistem”, TR 2021/010395, 2015, Ozyegin University.
- Arik et al.,” Jeodezik nivelman miralari ve bunlari kullanma yöntemi”, TR 2021/008480, 2021, Ozyegin University.
- Arik et al.,” Flow cooled solid state lighting with preferred optical and advanced sensing features”, US201615511170A, 2016, Ozyegin University.
- Arik et al.,” Tercih edilen optik özelliklere ve önceden algilama özelliklerine sahip, akişla soğutulmuş kati hal aydinlatma”, TR 2018/04359, TR 2018/04359, Ozyegin University.
- Arik et al.,” Flow cooled solid state lighting with preferred optical and advanced sensing feature”, DE 602016009511, 2016, Ozyegin University.
- Arik et al.,” Flow controlled effective LED based lighting system”, US20150233571A1, 2015, Ozyegin University.
- Arik et al.,” Optothermal LED lighting embodiment for high lumen extraction and extended lifetime”, US20150233564A1, 2015, Ozyegin University.
- Arik et al.,” Elektronik sistemler için tercih edilen termal konnektör”,TR 2020/21772, 2020, Ozyegin University.
Several more US/PTC/EP patents are pending.