Electronic display assembly with thermal management
An electronic display assembly includes a housing having an intake and an exhaust, a liquid crystal display (“LCD”) interior to the housing, a backlight interior to the housing and rearward of the LCD, a cover forward of the LCD, and a panel interior to the housing, at least part of which is spaced apart from a rear surface of the backlight. An airflow pathway extends, at least in part, from the intake, rearward of the backlight and forward of the panel, and to the exhaust. A second airflow pathway is separated from the airflow pathway, and forms a closed, continuous airflow pathway extending, at least in part, rearward of the backlight and a rear surface of the panel. At least one electronic component for operating the electronic display assembly is located at the rear surface of the panel and within the second airflow pathway.
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This application is a continuation of U.S. patent application Ser. No. 18/243,180 filed Sep. 7, 2023, which is a continuation of U.S. patent application Ser. No. 18/108,907 filed Feb. 13, 2023, which is a continuation of U.S. patent application Ser. No. 16/983,842 filed Aug. 3, 2020, which is a continuation of U.S. patent application Ser. No. 15/135,032 filed Apr. 21, 2016, which is a continuation of U.S. patent application Ser. No. 12/234,360 filed Sep. 19, 2008. U.S. patent application Ser. No. 12/234,360 is a non-provisional of U.S. Provisional Application Nos. 61/053,713 filed May 16, 2008, 61/039,454 filed Mar. 26, 2008, 61/057,599 filed May 30, 2008, and 61/076,126 filed Jun. 26, 2008. U.S. patent application Ser. No. 12/234,360 is also a continuation-in-part of U.S. patent application Ser. No. 11/941,728 filed Nov. 16, 2007, now U.S. Pat. No. 8,004,648 issued Aug. 23, 2011. U.S. patent application Ser. No. 12/234,360 is also a continuation-in-part of U.S. patent application Ser. No. 12/191,834 filed Aug. 14, 2008, now U.S. Pat. No. 8,208,115 issued Jun. 26, 2012. U.S. patent application Ser. No. 12/234,360 is also a continuation-in-part of U.S. patent application Ser. No. 12/234,307 filed Sep. 19, 2008, now U.S. Pat. No. 8,767,165 issued Jul. 1, 2014; each of the aforementioned applications are hereby incorporated by reference in their entirety as if fully cited herein.
TECHNICAL FIELDExemplary embodiments generally relate to cooling systems and in particular to cooling systems for cooling electronic displays and their electronic components.
BACKGROUND OF THE ARTConductive and convective heat transfer systems for electronic displays are known. These systems of the past generally attempt to remove heat from the electronic components in a display through as many sidewalls of the display as possible. In order to do this, the systems of the past have relied primarily on fans for moving air past the components to be cooled and out of the display. In some cases, the heated air is moved into convectively thermal communication with fins. Some of the past systems also utilize conductive heat transfer from heat producing components directly to heat conductive housings for the electronics. In these cases, the housings have a large surface area, which is in convective communication with ambient air outside the housings. Thus, heat is transferred convectively or conductively to the housing and is then transferred into the ambient air from the housing by natural convection.
While such heat transfer systems have enjoyed a measure of success in the past, improvements to displays require even greater cooling capabilities.
SUMMARY OF THE EXEMPLARY EMBODIMENTSIn particular, cooling devices for electronic displays of the past have generally used convective heat dissipation systems that function to cool an entire interior of the display by one or more fans and fins, for example. By itself, this is not adequate in many climates, especially when radiative heat transfer from the sun through a display window becomes a major factor. In many applications and locations 200 Watts or more of power through such a display window is common. Furthermore, the market is demanding larger screen sizes for displays. With increased electronic display screen size and corresponding display window size more heat will be generated and more heat will be transmitted into the displays.
In the past, many displays have functioned satisfactorily with ten or twelve inch screens. Now, many displays are in need of screens having sizes greater than or equal to twenty-four inches that may require improved cooling systems. For example, some outdoor applications call for forty-seven inch screens and above. With increased heat production with the larger screens and radiative heat transfer from the sun through the display window, heat dissipation systems of the past, which attempt to cool the entire interior of the display with fins and fans, are no longer adequate.
A large fluctuation in temperature is common in the devices of the past. Such temperature fluctuation adversely affects the electronic components in these devices. Whereas the systems of the past attempted to remove heat only through the non-display sides and rear components of the enclosure surrounding the electronic display components, a preferred embodiment causes heat transfer from the face of the display as well. By the aspects described below, embodiments have made consistent cooling possible for electronic displays having screens of sizes greater than or equal to twelve inches. For example, cooling of a 55 inch screen can be achieved, even in extremely hot climates. Greater cooling capabilities are provided by the device and method described and shown in more detail below.
An exemplary embodiment relates to an isolated gas cooling system and a method for cooling the electronic components of an electronic display. An exemplary embodiment includes an isolated gas cooling chamber. The gas cooling chamber is preferably a closed loop which includes a first gas chamber comprising a transparent anterior plate and a second gas chamber comprising a cooling plenum. The first gas chamber is anterior to and coextensive with the viewable face of the electronic display surface. The transparent anterior plate may be set forward of the electronic display surface by spacers defining the depth of the first gas chamber. A cooling chamber fan, or equivalent means, may be located within the cooling plenum. The fan may be used to propel gas around the isolated gas cooling chamber loop. As the gas traverses the first gas chamber it contacts the electronic display surface, absorbing heat from the surface of the display. Because the gas and the relevant surfaces of the first gas chamber are transparent, the image quality remains excellent. After the gas has traversed the transparent first gas chamber, the gas may be directed into the rear cooling plenum. Located within the rear cooling plenum can be any number of electronic components which may be used to run the display. These components may include but are not limited to: transformers, circuit boards, resistors, capacitors, batteries, power transformers, motors, illumination devices, wiring and wiring harnesses, and switches.
In order to cool the gas in the plenum, external convective or conductive means may be employed. In at least one embodiment, an external fan unit may be utilized to blow cool air over the exterior surfaces of the plenum. The heat from the warm gas may radiate into the walls of the plenum and then escape the walls of the plenum by convection or conduction or a combination of both. The external fan unit may be positioned at the base of the housing for the entire display. Once the air is heated by flowing over the exterior surfaces of the plenum, the heated air may exit the housing as exhaust. Note, that the air from this external fan should not enter the isolated cooling system as this would introduce dust and contaminates into the otherwise clean air.
The foregoing and other features and advantages will be apparent from the following more detailed description of the particular embodiments, as illustrated in the accompanying drawings.
A better understanding of an exemplary embodiment will be obtained from a reading of the following detailed description and the accompanying drawings wherein identical reference characters refer to identical parts and in which:
Embodiments relate to a cooling system for the electronic components of an electronic display and to combinations of the cooling system and the electronic display. Exemplary embodiments provide an isolated gas cooling system for an electronic display. Such an isolated gas cooling system is the subject matter of U.S. Application No. 61/033,064, incorporated by reference herein.
As shown in
The display shown is equipped with an innovative gas cooling system. Accordingly, it may be placed in direct sunlight. Although the cooling system may be used on smaller displays, it is especially useful for larger LCD, LED, or organic light emitting diodes (OLED) displays. These screens, especially with displays over 24 inches, face significant thermoregulatory issues in outdoor environments.
In
It is to be understood that the spirit and scope of the disclosed embodiments includes cooling of displays including, but not limited to LCDs. By way of example and not by way of limitation, exemplary embodiments may be used in conjunction with displays selected from among LCD (including TFT or STN type), light emitting diode (LED), organic light emitting diode (OLED), field emitting display (FED), cathode ray tube (CRT), and plasma displays. Furthermore, embodiments may be used with displays of other types including those not yet discovered. In particular, it is contemplated that the system may be well suited for use with full color, flat panel OLED displays. While the embodiments described herein are well suited for outdoor environments, they may also be appropriate for indoor applications (e.g., factory environments) where thermal stability of the display may be at risk.
As shown in
The gas cooling system 10 shown in
Referring to
Various electronic components 200 are shown in various positions throughout the plenum 45. Placing these components 200 within the plenum allows for increased air flow around the components 200 and increased cooling. Further, location of the components 200 within the plenum 45 can help satisfy space considerations, as well as manufacturing and repair considerations. These components 200 may be mounted directly on the walls or surfaces of the plenum 45, or may be suspended by rods or posts 210. The precise mounting of the components 200 can vary depending on the amount of cooling that is required for the component, manufacturing limitations, wire routing benefits, or ease of repair or replacement of the specific component. Further, the precise wiring of the components 200 can vary depending on similar factors. The wiring may pass through a single hole in the plenum 45 and then spread to each component or there may be various holes in the plenum 45 to accommodate the wiring for each component individually. In a further embodiment, PCB boards and other typical electronic mounting surfaces may be integrated into the plenum 45 such that the mounting board itself substitutes as a portion of the plenum wall.
The isolated gas may be almost any transparent gas, for example, normal air, nitrogen, helium, or any other transparent gas. The gas is preferably colorless so as not to affect the image quality. Furthermore, the isolated gas cooling chamber need not necessarily be hermetically sealed from the external air. It is sufficient that the gas in the chamber is isolated to the extent that dust and contaminates may not substantially enter the first gas chamber.
In the closed loop configuration shown in
As shown in
Advantageously, in exemplary embodiments the electronic display surface 85 comprises the posterior surface of the first gas chamber 30. Accordingly, the term “electronic display surface” refers to the front surface of a typical electronic display (in the absence of the embodiments disclosed herein). The term “viewable surface” or “viewing surface” refers to that portion of the electronic display surface from which the electronic display images may be viewed by the user.
The electronic display surface 85 of typical displays is glass. However, neither display surface 85, nor transparent front plate 90, nor optional second transparent front plate 130 need necessarily be glass. Therefore, the term “glass” will be used herein interchangeably with the term plate. By utilizing the electronic display surface 85 as the posterior surface wall of the gas compartment 30, there may be fewer surfaces to impact the visible light traveling through the display. Furthermore, the device will be lighter and cheaper to manufacturer.
Although the embodiment shown utilizes the electronic display surface 85, certain modifications and/or coatings (e.g., anti-reflective coatings) may be added to the electronic display surface 85, or to other components of the system in order to accommodate the coolant gas or to improve the optical performance of the device. In the embodiment shown, the electronic display surface 85 may be the front glass plate of a liquid crystal display (LCD) stack. However, almost any display surface may be suitable for embodiments of the present cooling system. Although not required, it is preferable to allow the cooling gas in the first gas chamber 30 to contact the electronic display surface 85 directly. In this way, the convective effect of the circulating gas will be maximized. Preferably the gas, which has absorbed heat from the electronic display surface 85 may then be diverted to the cooling plenum 45 where the collected heat energy in the gas may be dissipated into the air within the display housing 70 by conductive and or convective means.
To prevent breakage, the optional second surface glass 130 may be adhered to the front surface of glass 90. Alternatively, surface glass 90 may be heat tempered to improve its strength. As shown in
As is clear from
As can be discerned in
Referring to
Besides thermoelectric modules 160, there are a number of ways to cool the gas in the second gas chamber. For example, air conditioners or other cooling means known by those skilled in the art may be useful for cooling the gas contained in plenum 45.
While the display is operational, the isolated gas cooling system may run continuously. However, if desired, a temperature sensor (not shown) and a switch (not shown) may be incorporated within the electronic display 10. The thermostat may be used to detect when temperatures have reached a predetermined threshold value. In such a case, the isolated gas cooling system may be selectively engaged when the temperature in the display reaches a predetermined value. Predetermined thresholds may be selected and the system may be configured with a thermostat (not shown) to advantageously keep the display within an acceptable temperature range.
An optional air filter (not shown) may be employed within the plenum to assist in preventing contaminates and dust from entering the first gas chamber 30.
The second front glass may have a first surface 202 and a second surface 208. The first surface 202 may be exposed to the elements; while the second surface 208 may be fixed to the first front glass 90 by the index matched optical adhesive 200. The first front glass may have a third surface 210 and a fourth surface 204. The third surface 210 may be fixed to the second front glass 130 by the index matched optical adhesive 200; while the fourth surface may be directly adjacent to the insulator gap 300. In some embodiments, to decrease the solar loading of the LCD stack 80 and improve the viewable image quality, an anti-reflective coating may be applied to the first surface 202 and the fourth surface 204. In other embodiments, the anti-reflective coating may only be applied to at least one of the first, second, third, or fourth surface 202, 208, 210, and 204.
The inclusion of the linear polarizer 400 may not affect the viewing angle of the electronic display or the chromaticity over angle. Another beneficial aspect of including the linear polarizer 400 is a reduction in specular reflection of the front glass unit 206 and the LCD stack 80 by approximately 50%.
Having shown and described preferred embodiments, those skilled in the art will realize that many variations and modifications may be made to affect the embodiments and still be within the scope of the claimed invention. Additionally, many of the elements indicated above may be altered or replaced by different elements which will provide the same result and fall within the spirit of the exemplary embodiments. It is the intention, therefore, to limit the invention only as indicated by the scope of the claims.
Claims
1. An electronic display assembly comprising:
- a housing having an intake and an exhaust;
- a liquid crystal display interior to the housing;
- a backlight interior to the housing and rearward of the liquid crystal display, said backlight comprising a plurality of light emitting diodes;
- a cover forward of a viewing surface of the liquid crystal display such that said cover forms a forward portion of said housing;
- a panel interior to said housing, at least a portion of which is rearward of, and spaced apart from, a rear surface of the backlight;
- an airflow pathway extending, at least in part, from said intake, rearward of the rear surface of the backlight and forward of a forward surface of the panel, and to said exhaust;
- a second airflow pathway, separated from the airflow pathway, and forming a closed, continuous airflow pathway extending, at least in part, rearward of the rear surface of the backlight and a rear surface of the panel; and
- at least one electronic component for operating the electronic display assembly located at the rear surface of the panel and within the second airflow pathway.
2. The electronic display assembly of claim 1 further comprising:
- a set of one or more fans located at the airflow pathway.
3. The electronic display assembly of claim 2 further comprising:
- an additional set of one or more fans located at the second airflow pathway.
4. The electronic display assembly of claim 3 further comprising:
- one or more surface features extending from the forward surface of the panel into the airflow pathway.
5. The electronic display assembly of claim 4 further comprising:
- one or more additional surface features extending from the rear surface of the panel into the second airflow pathway.
6. The electronic display assembly of claim 5 wherein:
- the one or more surface features comprises a plurality of fins; and
- the one or more additional surface features comprises a second plurality of fins.
7. The electronic display assembly of claim 3 wherein:
- said at least one electronic component is directly connected to the rear surface of the panel by an adhesive.
8. The electronic display assembly of claim 3 wherein:
- said at least one electronic component is spaced apart from, and connected to, the rear surface of the panel by one or more rods or posts.
9. The electronic display assembly of claim 3 further comprising:
- a polarizer located at an interior surface of the cover.
10. The electronic display assembly of claim 9 wherein:
- the cover is spaced apart from the viewing surface of the liquid crystal display; and
- the second airflow pathway includes a portion extending between an interior surface of the cover and the viewing surface of the liquid crystal display such that the second airflow pathway forms a circuit about an electronic display subassembly comprising the liquid crystal display and the backlight.
11. The electronic display assembly of claim 10 wherein:
- the cover comprises multiple plates.
12. The electronic display assembly of claim 11 further comprising:
- a second polarizer located between the plates of the cover.
13. The electronic display assembly of claim 1 wherein:
- said at least one electronic component comprises a transformer, a circuit board, a resistor, and a capacitor; and
- each of said at least one electronic component is located within said second airflow pathway.
14. The electronic display assembly of claim 13 wherein:
- at least some of the at least one electronic component are electrically connected by wiring to one or more of: the backlight and the liquid crystal display.
15. The electronic display assembly of claim 1 wherein:
- the second airflow pathway is fluidly separated from the airflow pathway in a manner sufficient to prevent particulate above a certain size in ambient air within the airflow pathway from entering the second airflow pathway and is less well sealed than a hermetic seal.
16. The electronic display assembly of claim 1 wherein:
- the backlight comprises a backlight panel, where the plurality of light emitting didoes are mounted to the backlight panel;
- the airflow pathway comprises multiple, distinct sub-pathways within the housing; and
- at least one of said distinct sub-pathways extends along the rear surface of the backlight panel.
17. An electronic display assembly comprising:
- a housing having an intake and an exhaust;
- a liquid crystal display;
- a backlight comprising a backlight panel and a plurality of light emitting diodes arranged at said backlight panel to illuminate the liquid crystal display when activated;
- a panel positioned interior to said housing and rearward of the backlight, where at least a portion of the panel is spaced apart from a rear surface of the backlight;
- an airflow pathway extending from the intake, along at least part of the rear surface of the backlight panel and along at least part of a forward surface of the panel, and to the exhaust;
- a second airflow pathway, fluidly separated from the airflow pathway in a manner sufficient to prevent particulate above a certain size in ambient air within the airflow pathway from entering the second airflow pathway and is less well sealed than a hermetic seal, and forming a closed, continuous airflow pathway extending, in part, rearward of the backlight and along at least part of a rear surface of the panel;
- electronic components for operating the electronic display assembly located at the rear surface of the panel and within the second airflow pathway;
- a cover provided forward of a viewing surface of the liquid crystal display, said cover and said housing, collectively, forming an enclosure for at least the liquid crystal display, the backlight, the panel, the electronic components, and the second airflow pathway;
- at least one fan located at the airflow pathway; and
- at least one additional fan located at the second airflow pathway.
18. The electronic display assembly of claim 17 further comprising:
- surface features, at least one of which extends from the forward surface of the panel into the airflow pathway.
19. An electronic display assembly comprising:
- a housing having an intake and an exhaust;
- a liquid crystal display having a viewing surface;
- a backlight for illuminating the liquid crystal display;
- a cover positioned forward of the viewing surface of the liquid crystal display;
- a panel positioned behind of the backlight such that the panel is, at least in part, spaced apart from a rear surface of the backlight;
- an airflow pathway extending between the intake and the exhaust, including a portion which extends along the rear surface of the backlight and a forward surface of the panel;
- a second airflow pathway, fluidly separated from the airflow pathway in a manner sufficient to prevent particulate above a certain size in ambient air within the airflow pathway from entering the second airflow pathway and is less well sealed than a hermetic seal, and forming a closed, continuous airflow pathway extending, at least in part, along a rear surface of the panel;
- electronic components for operating the electronic display assembly provided at the rear surface of the panel and within the second airflow pathway; and
- at least one surface feature provided at the forward surface of the panel and extending into the airflow pathway to facilitate heat transfer from circulating air within the second airflow pathway to the ambient air within the airflow pathway, wherein the cover and the housing, collectively, form an enclosure for at least the panel, the backlight, the liquid crystal display, the second airflow pathway, the electronic components, and the at least one surface feature;
- at least one fan located at the airflow pathway for moving the ambient air through the airflow pathway, when activated; and
- at least one additional fan located at the second airflow pathway for moving the circulating air through the second airflow pathway, when activated.
20. The electronic display assembly of claim 19 further comprising:
- at least one polarizer provided forward of the viewing surface and within the enclosure.
3858965 | January 1975 | Sumita |
4093355 | June 6, 1978 | Kaplit et al. |
4292370 | September 29, 1981 | Pekko |
4327803 | May 4, 1982 | Muellejans et al. |
4488193 | December 11, 1984 | Davis et al. |
4593978 | June 10, 1986 | Mourey et al. |
4634225 | January 6, 1987 | Haim et al. |
4748765 | June 7, 1988 | Martin |
4763993 | August 16, 1988 | Vogeley et al. |
4896218 | January 23, 1990 | Vick |
4921041 | May 1, 1990 | Akachi |
4952783 | August 28, 1990 | Aufderheide et al. |
4952925 | August 28, 1990 | Haastert |
4976536 | December 11, 1990 | Vogeley et al. |
5002118 | March 26, 1991 | Olmstead et al. |
5029982 | July 9, 1991 | Nash |
5088806 | February 18, 1992 | McCartney et al. |
5132666 | July 21, 1992 | Fahs |
5150231 | September 22, 1992 | Iwamoto et al. |
5247374 | September 21, 1993 | Terada |
5255029 | October 19, 1993 | Vogeley et al. |
5282114 | January 25, 1994 | Stone |
5285677 | February 15, 1994 | Oehler |
5293930 | March 15, 1994 | Pitasi |
5351176 | September 27, 1994 | Smith et al. |
5432526 | July 11, 1995 | Hyatt |
5535816 | July 16, 1996 | Ishida |
5559614 | September 24, 1996 | Urbish et al. |
5621614 | April 15, 1997 | O'Neill |
5657641 | August 19, 1997 | Cunningham et al. |
5748269 | May 5, 1998 | Harris et al. |
5765743 | June 16, 1998 | Sakiura et al. |
5767489 | June 16, 1998 | Ferrier |
5808418 | September 15, 1998 | Pitman et al. |
5818010 | October 6, 1998 | McCann |
5818694 | October 6, 1998 | Daikoku et al. |
5835179 | November 10, 1998 | Yamanaka |
5864465 | January 26, 1999 | Liu |
5869818 | February 9, 1999 | Kim |
5869919 | February 9, 1999 | Sato et al. |
5903433 | May 11, 1999 | Gudmundsson |
5920367 | July 6, 1999 | Kajimoto et al. |
5991153 | November 23, 1999 | Heady et al. |
6003015 | December 14, 1999 | Kang et al. |
6007205 | December 28, 1999 | Fujimori |
6020945 | February 1, 2000 | Sawai |
6043979 | March 28, 2000 | Shim |
6089751 | July 18, 2000 | Conover et al. |
6104451 | August 15, 2000 | Matsuoka et al. |
6125565 | October 3, 2000 | Hillstrom |
6157432 | December 5, 2000 | Helbing |
6181070 | January 30, 2001 | Dunn et al. |
6191839 | February 20, 2001 | Briley et al. |
6198222 | March 6, 2001 | Chang |
6211934 | April 3, 2001 | Habing et al. |
6215655 | April 10, 2001 | Heady et al. |
6244333 | June 12, 2001 | Bergh et al. |
6351381 | February 26, 2002 | Bilski et al. |
6359390 | March 19, 2002 | Nagai |
6392727 | May 21, 2002 | Larson et al. |
6405463 | June 18, 2002 | Roddy et al. |
6417900 | July 9, 2002 | Shin et al. |
6428198 | August 6, 2002 | Saccomanno et al. |
6437673 | August 20, 2002 | Nishida et al. |
6473150 | October 29, 2002 | Takushima et al. |
6476883 | November 5, 2002 | Salimes et al. |
6493440 | December 10, 2002 | Gromatsky et al. |
6496236 | December 17, 2002 | Cole et al. |
6504713 | January 7, 2003 | Pandolfi et al. |
6535266 | March 18, 2003 | Nemeth et al. |
6628355 | September 30, 2003 | Takahara |
6643130 | November 4, 2003 | DeMarchis et al. |
6683639 | January 27, 2004 | Driessen-Olde Scheper et al. |
6701143 | March 2, 2004 | Dukach et al. |
6714410 | March 30, 2004 | Wellhofer |
6727468 | April 27, 2004 | Nemeth |
6742583 | June 1, 2004 | Tikka |
6800378 | October 5, 2004 | Hawa et al. |
6807051 | October 19, 2004 | Takahashi |
6812851 | November 2, 2004 | Dukach et al. |
6825828 | November 30, 2004 | Burke et al. |
6833992 | December 21, 2004 | Kusaka et al. |
6839104 | January 4, 2005 | Taniguchi et al. |
6850209 | February 1, 2005 | Mankins et al. |
6885412 | April 26, 2005 | Ohnishi et al. |
6886942 | May 3, 2005 | Okada et al. |
6891135 | May 10, 2005 | Pala et al. |
6909486 | June 21, 2005 | Wang et al. |
6943768 | September 13, 2005 | Cavanaugh et al. |
6961108 | November 1, 2005 | Wang et al. |
7015470 | March 21, 2006 | Faytlin et al. |
7018054 | March 28, 2006 | Miyashita et al. |
7059757 | June 13, 2006 | Shimizu |
7083285 | August 1, 2006 | Hsu et al. |
7157838 | January 2, 2007 | Thielemans et al. |
7161803 | January 9, 2007 | Heady |
7164586 | January 16, 2007 | Lin |
7170759 | January 30, 2007 | Soga |
7190416 | March 13, 2007 | Paukshto et al. |
7190587 | March 13, 2007 | Kim et al. |
7209349 | April 24, 2007 | Chien et al. |
7210839 | May 1, 2007 | Jung et al. |
7212403 | May 1, 2007 | Rockenfell |
7259964 | August 21, 2007 | Yamamura et al. |
7269023 | September 11, 2007 | Nagano |
7284874 | October 23, 2007 | Jeong et al. |
7342789 | March 11, 2008 | Hall et al. |
7354159 | April 8, 2008 | Nakamura et al. |
7396145 | July 8, 2008 | Wang et al. |
7447018 | November 4, 2008 | Lee et al. |
7452121 | November 18, 2008 | Cho et al. |
7457113 | November 25, 2008 | Kumhyr et al. |
7458767 | December 2, 2008 | Wu et al. |
7466546 | December 16, 2008 | Park |
7480140 | January 20, 2009 | Hara et al. |
7492589 | February 17, 2009 | Park |
7518864 | April 14, 2009 | Kimura |
7529088 | May 5, 2009 | Chiu et al. |
7535543 | May 19, 2009 | Dewa et al. |
7591508 | September 22, 2009 | Chang |
7602469 | October 13, 2009 | Shin |
D608775 | January 26, 2010 | Leung |
7667964 | February 23, 2010 | Kang et al. |
7682047 | March 23, 2010 | Hsu et al. |
7752858 | July 13, 2010 | Johnson et al. |
7753567 | July 13, 2010 | Kang et al. |
7762707 | July 27, 2010 | Kim et al. |
7800706 | September 21, 2010 | Kim et al. |
7813124 | October 12, 2010 | Karppanen |
7864258 | January 4, 2011 | Cho et al. |
7868951 | January 11, 2011 | Maruta et al. |
7903416 | March 8, 2011 | Chou |
7995342 | August 9, 2011 | Nakamichi et al. |
8004648 | August 23, 2011 | Dunn |
8035968 | October 11, 2011 | Kwon et al. |
8081267 | December 20, 2011 | Moscovitch et al. |
8081465 | December 20, 2011 | Nishiura |
8102173 | January 24, 2012 | Merrow |
8102483 | January 24, 2012 | Perry et al. |
8142027 | March 27, 2012 | Sakai |
8208115 | June 26, 2012 | Dunn |
8223311 | July 17, 2012 | Kim et al. |
8241573 | August 14, 2012 | Banerjee et al. |
8248784 | August 21, 2012 | Nakamichi et al. |
8254121 | August 28, 2012 | Lee et al. |
8269916 | September 18, 2012 | Ohkawa |
8270163 | September 18, 2012 | Nakamichi et al. |
8274622 | September 25, 2012 | Dunn |
8274789 | September 25, 2012 | Nakamichi et al. |
8300203 | October 30, 2012 | Nakamichi et al. |
8310824 | November 13, 2012 | Dunn et al. |
8320119 | November 27, 2012 | Isoshima et al. |
8351014 | January 8, 2013 | Dunn |
8358397 | January 22, 2013 | Dunn |
8369083 | February 5, 2013 | Dunn et al. |
8373841 | February 12, 2013 | Dunn |
8379182 | February 19, 2013 | Dunn |
8400608 | March 19, 2013 | Takahashi et al. |
8462497 | June 11, 2013 | Li et al. |
8472174 | June 25, 2013 | Idems et al. |
8472191 | June 25, 2013 | Yamamoto et al. |
8482695 | July 9, 2013 | Dunn |
8497972 | July 30, 2013 | Dunn et al. |
8590602 | November 26, 2013 | Fernandez |
8649170 | February 11, 2014 | Dunn et al. |
8649176 | February 11, 2014 | Okada et al. |
8654302 | February 18, 2014 | Dunn et al. |
8678603 | March 25, 2014 | Zhang |
8693185 | April 8, 2014 | Dunn et al. |
8700226 | April 15, 2014 | Schuch et al. |
8711321 | April 29, 2014 | Dunn et al. |
8749749 | June 10, 2014 | Hubbard |
8755021 | June 17, 2014 | Hubbard |
8758144 | June 24, 2014 | Williams et al. |
8760613 | June 24, 2014 | Dunn |
8767165 | July 1, 2014 | Dunn |
8773633 | July 8, 2014 | Dunn et al. |
8804091 | August 12, 2014 | Dunn et al. |
8823916 | September 2, 2014 | Hubbard et al. |
8827472 | September 9, 2014 | Takada |
8854572 | October 7, 2014 | Dunn |
8854595 | October 7, 2014 | Dunn |
8879042 | November 4, 2014 | Dunn |
8976313 | March 10, 2015 | Kim et al. |
8988647 | March 24, 2015 | Hubbard |
9030641 | May 12, 2015 | Dunn |
9089079 | July 21, 2015 | Dunn |
9119325 | August 25, 2015 | Dunn et al. |
9119330 | August 25, 2015 | Hubbard et al. |
9173322 | October 27, 2015 | Dunn |
9173325 | October 27, 2015 | Dunn |
9282676 | March 8, 2016 | Diaz |
9285108 | March 15, 2016 | Dunn et al. |
9313917 | April 12, 2016 | Dunn et al. |
9335579 | May 10, 2016 | Onoue |
9338923 | May 10, 2016 | Lee et al. |
9357673 | May 31, 2016 | Chin |
9370127 | June 14, 2016 | Dunn |
9414516 | August 9, 2016 | Chin et al. |
9448569 | September 20, 2016 | Schuch et al. |
9451060 | September 20, 2016 | Bowers et al. |
9451733 | September 20, 2016 | Dunn et al. |
9456525 | September 27, 2016 | Yoon et al. |
9470924 | October 18, 2016 | Dunn et al. |
9500896 | November 22, 2016 | Dunn et al. |
9504188 | November 22, 2016 | Campbell et al. |
9516485 | December 6, 2016 | Bowers et al. |
9549490 | January 17, 2017 | Hubbard |
9594271 | March 14, 2017 | Dunn et al. |
9600026 | March 21, 2017 | Birgeoglu et al. |
9613548 | April 4, 2017 | DeMars |
9622392 | April 11, 2017 | Bowers et al. |
9629287 | April 18, 2017 | Dunn |
9648790 | May 9, 2017 | Dunn et al. |
9655289 | May 16, 2017 | Dunn et al. |
9703230 | July 11, 2017 | Bowers et al. |
9723765 | August 1, 2017 | DeMars |
9743553 | August 22, 2017 | Kim et al. |
9756739 | September 5, 2017 | Russell-Clarke et al. |
9797588 | October 24, 2017 | Dunn et al. |
9801305 | October 24, 2017 | Dunn et al. |
9823690 | November 21, 2017 | Bowers et al. |
9835893 | December 5, 2017 | Dunn |
9857618 | January 2, 2018 | Barnes |
9861007 | January 2, 2018 | Yoon et al. |
9894800 | February 13, 2018 | Dunn |
10070540 | September 4, 2018 | Campagna et al. |
10080316 | September 18, 2018 | Dunn et al. |
10088702 | October 2, 2018 | Dunn et al. |
10165712 | December 25, 2018 | Jang et al. |
10180591 | January 15, 2019 | Lee et al. |
10194564 | January 29, 2019 | Dunn et al. |
10212845 | February 19, 2019 | Dunn et al. |
10278311 | April 30, 2019 | DeMars |
10278312 | April 30, 2019 | Davis et al. |
10306781 | May 28, 2019 | Cho et al. |
10314212 | June 4, 2019 | Hubbard |
10359659 | July 23, 2019 | Dunn et al. |
10359817 | July 23, 2019 | Yun et al. |
10383238 | August 13, 2019 | Yun et al. |
10398066 | August 27, 2019 | Dunn et al. |
10405456 | September 3, 2019 | Jang et al. |
10409323 | September 10, 2019 | Birgeoglu et al. |
10420257 | September 17, 2019 | Dunn et al. |
10485113 | November 19, 2019 | Dunn et al. |
10485147 | November 19, 2019 | Oh et al. |
10485148 | November 19, 2019 | Oh et al. |
10488896 | November 26, 2019 | Simpson |
10499516 | December 3, 2019 | Dunn et al. |
10506738 | December 10, 2019 | Dunn |
10506740 | December 10, 2019 | Dunn et al. |
10524384 | December 31, 2019 | Dunn et al. |
10524397 | December 31, 2019 | Dunn et al. |
10548247 | January 28, 2020 | Demars |
10624218 | April 14, 2020 | Dunn et al. |
10660245 | May 19, 2020 | Dunn et al. |
10687446 | June 16, 2020 | Dunn et al. |
10716224 | July 14, 2020 | Dunn et al. |
10721836 | July 21, 2020 | Dunn et al. |
10736245 | August 4, 2020 | Dunn et al. |
10747261 | August 18, 2020 | Birgeoglu et al. |
10754184 | August 25, 2020 | Wang et al. |
10757844 | August 25, 2020 | Dunn et al. |
10795413 | October 6, 2020 | Dunn |
10820445 | October 27, 2020 | Diaz |
10827656 | November 3, 2020 | Hubbard |
10827657 | November 3, 2020 | Lee |
10905035 | January 26, 2021 | Whitehead et al. |
10925174 | February 16, 2021 | Dunn et al. |
10969615 | April 6, 2021 | Wang et al. |
10973156 | April 6, 2021 | Dunn et al. |
10983382 | April 20, 2021 | Takase |
11013142 | May 18, 2021 | Dunn et al. |
11016547 | May 25, 2021 | Whitehead et al. |
11019735 | May 25, 2021 | Dunn |
11032923 | June 8, 2021 | Dunn et al. |
11096317 | August 17, 2021 | Dunn |
11191193 | November 30, 2021 | Hubbard |
11206750 | December 21, 2021 | Lee et al. |
11470749 | October 11, 2022 | Dunn et al. |
11477923 | October 18, 2022 | Brown |
11507141 | November 22, 2022 | Dunn |
11540418 | December 27, 2022 | Dunn et al. |
11596081 | February 28, 2023 | Dunn et al. |
11617287 | March 28, 2023 | Dunn |
11744036 | August 29, 2023 | Diaz |
11744054 | August 29, 2023 | Dunn et al. |
11762231 | September 19, 2023 | Dunn et al. |
11822171 | November 21, 2023 | Dunn et al. |
11889636 | January 30, 2024 | Dunn |
11919393 | March 5, 2024 | Dunn et al. |
11934054 | March 19, 2024 | Dunn et al. |
11966263 | April 23, 2024 | Dunn et al. |
11968813 | April 23, 2024 | Dunn et al. |
11989059 | May 21, 2024 | Dunn |
12004310 | June 4, 2024 | Dunn et al. |
12004311 | June 4, 2024 | Dunn |
12010813 | June 11, 2024 | Dunn et al. |
12010824 | June 11, 2024 | Dunn |
12035486 | July 9, 2024 | Dunn et al. |
12052850 | July 30, 2024 | Brown |
20010001459 | May 24, 2001 | Savant et al. |
20010009508 | July 26, 2001 | Umemoto et al. |
20010019454 | September 6, 2001 | Tadic-Galeb et al. |
20010023914 | September 27, 2001 | Oddsen, Jr. |
20010032404 | October 25, 2001 | Hillstrom |
20020009978 | January 24, 2002 | Dukach et al. |
20020033919 | March 21, 2002 | Sanelle et al. |
20020050793 | May 2, 2002 | Cull et al. |
20020065046 | May 30, 2002 | Mankins et al. |
20020084891 | July 4, 2002 | Mankins et al. |
20020101553 | August 1, 2002 | Enomoto et al. |
20020112026 | August 15, 2002 | Fridman et al. |
20020122134 | September 5, 2002 | Kalua |
20020126248 | September 12, 2002 | Yoshida |
20020135741 | September 26, 2002 | Lee et al. |
20020148600 | October 17, 2002 | Bosch et al. |
20020149714 | October 17, 2002 | Anderson et al. |
20020154255 | October 24, 2002 | Gromatzky et al. |
20020164944 | November 7, 2002 | Haglid |
20020164962 | November 7, 2002 | Mankins et al. |
20020167637 | November 14, 2002 | Burke et al. |
20030007109 | January 9, 2003 | Park |
20030020679 | January 30, 2003 | Kojima et al. |
20030020884 | January 30, 2003 | Okada et al. |
20030043091 | March 6, 2003 | Takeuchi et al. |
20030104210 | June 5, 2003 | Azumi et al. |
20030128511 | July 10, 2003 | Nagashima et al. |
20030214785 | November 20, 2003 | Perazzo |
20040012722 | January 22, 2004 | Alvarez |
20040025389 | February 12, 2004 | Peterson |
20040035032 | February 26, 2004 | Milliken |
20040035558 | February 26, 2004 | Todd et al. |
20040036622 | February 26, 2004 | Dukach et al. |
20040036834 | February 26, 2004 | Ohnishi et al. |
20040042174 | March 4, 2004 | Tomioka et al. |
20040103570 | June 3, 2004 | Ruttenberg |
20040105159 | June 3, 2004 | Saccomanno et al. |
20040135482 | July 15, 2004 | Thielemans et al. |
20040165139 | August 26, 2004 | Anderson et al. |
20040207981 | October 21, 2004 | Gorenz, Jr. et al. |
20040212548 | October 28, 2004 | Ruttenberg |
20040223299 | November 11, 2004 | Ghosh |
20040239823 | December 2, 2004 | Silsby et al. |
20050012039 | January 20, 2005 | Faytlin et al. |
20050012722 | January 20, 2005 | Chon |
20050062373 | March 24, 2005 | Kim et al. |
20050073632 | April 7, 2005 | Dunn et al. |
20050073639 | April 7, 2005 | Pan |
20050094039 | May 5, 2005 | Kim et al. |
20050127796 | June 16, 2005 | Olesen et al. |
20050134525 | June 23, 2005 | Tanghe et al. |
20050134526 | June 23, 2005 | Willem et al. |
20050213950 | September 29, 2005 | Yoshimura |
20050219841 | October 6, 2005 | Ikeda et al. |
20050229630 | October 20, 2005 | Richter et al. |
20050237714 | October 27, 2005 | Ebermann |
20050253699 | November 17, 2005 | Madonia |
20050276053 | December 15, 2005 | Nortrup et al. |
20050286131 | December 29, 2005 | Saxena et al. |
20060012958 | January 19, 2006 | Tomioka et al. |
20060012985 | January 19, 2006 | Archie, Jr. et al. |
20060018093 | January 26, 2006 | Lai et al. |
20060034050 | February 16, 2006 | Wang et al. |
20060034051 | February 16, 2006 | Wang et al. |
20060056994 | March 16, 2006 | Van Lear et al. |
20060077636 | April 13, 2006 | Kim |
20060081366 | April 20, 2006 | Chiu et al. |
20060081367 | April 20, 2006 | Chiu et al. |
20060082271 | April 20, 2006 | Lee et al. |
20060092348 | May 4, 2006 | Park |
20060125998 | June 15, 2006 | Dewa et al. |
20060132699 | June 22, 2006 | Cho et al. |
20060133090 | June 22, 2006 | Noh et al. |
20060177587 | August 10, 2006 | Ishizuka et al. |
20060199514 | September 7, 2006 | Kimura |
20060209266 | September 21, 2006 | Utsunomiya |
20060221270 | October 5, 2006 | Toki et al. |
20060260790 | November 23, 2006 | Theno et al. |
20060262079 | November 23, 2006 | Seong et al. |
20060266499 | November 30, 2006 | Choi et al. |
20060266900 | November 30, 2006 | May et al. |
20060268194 | November 30, 2006 | Morimoto et al. |
20060269216 | November 30, 2006 | Wiemeyer et al. |
20060274237 | December 7, 2006 | Nelson et al. |
20060283579 | December 21, 2006 | Ghosh et al. |
20070013647 | January 18, 2007 | Lee et al. |
20070019419 | January 25, 2007 | Hafuka et al. |
20070021217 | January 25, 2007 | Wu et al. |
20070030879 | February 8, 2007 | Hatta |
20070046874 | March 1, 2007 | Adachi et al. |
20070047239 | March 1, 2007 | Kang et al. |
20070065091 | March 22, 2007 | Hinata et al. |
20070070615 | March 29, 2007 | Joslin et al. |
20070076431 | April 5, 2007 | Atarashi et al. |
20070081344 | April 12, 2007 | Cappaert et al. |
20070103863 | May 10, 2007 | Kim |
20070103866 | May 10, 2007 | Park |
20070115686 | May 24, 2007 | Tyberghien |
20070126335 | June 7, 2007 | You et al. |
20070139929 | June 21, 2007 | Yoo et al. |
20070140671 | June 21, 2007 | Yoshimura |
20070144704 | June 28, 2007 | Bundza et al. |
20070151164 | July 5, 2007 | Marshall |
20070151274 | July 5, 2007 | Roche et al. |
20070151664 | July 5, 2007 | Shin |
20070171353 | July 26, 2007 | Hong |
20070176885 | August 2, 2007 | Jun |
20070206158 | September 6, 2007 | Kinoshita et al. |
20070211205 | September 13, 2007 | Shibata |
20070212211 | September 13, 2007 | Chiyoda et al. |
20070217221 | September 20, 2007 | Lee et al. |
20070230167 | October 4, 2007 | McMahon et al. |
20070237636 | October 11, 2007 | Hsu |
20070253205 | November 1, 2007 | Welker |
20070267174 | November 22, 2007 | Kim |
20070274051 | November 29, 2007 | Horng et al. |
20080035315 | February 14, 2008 | Han |
20080054144 | March 6, 2008 | Wohlford |
20080055261 | March 6, 2008 | Cernasov |
20080055534 | March 6, 2008 | Kawano |
20080076342 | March 27, 2008 | Bryant et al. |
20080083527 | April 10, 2008 | Horng et al. |
20080099193 | May 1, 2008 | Aksamit et al. |
20080111936 | May 15, 2008 | Kim |
20080148609 | June 26, 2008 | Ogoreve |
20080165496 | July 10, 2008 | Kang et al. |
20080190210 | August 14, 2008 | Harish et al. |
20080209934 | September 4, 2008 | Richards |
20080218446 | September 11, 2008 | Yamanaka |
20080236005 | October 2, 2008 | Isayev et al. |
20080267790 | October 30, 2008 | Gaudet et al. |
20080283234 | November 20, 2008 | Sagi et al. |
20080285290 | November 20, 2008 | Ohashi et al. |
20080296134 | December 4, 2008 | Hattori et al. |
20080310116 | December 18, 2008 | O'Connor |
20080310158 | December 18, 2008 | Harbers et al. |
20090009047 | January 8, 2009 | Yanagawa et al. |
20090009729 | January 8, 2009 | Sakai |
20090021461 | January 22, 2009 | Hu et al. |
20090034188 | February 5, 2009 | Sween et al. |
20090059518 | March 5, 2009 | Kakikawa et al. |
20090065007 | March 12, 2009 | Wilkinson et al. |
20090086430 | April 2, 2009 | Kang et al. |
20090095819 | April 16, 2009 | Brown et al. |
20090104989 | April 23, 2009 | Williams et al. |
20090120629 | May 14, 2009 | Ashe |
20090122218 | May 14, 2009 | Oh et al. |
20090126906 | May 21, 2009 | Dunn |
20090126907 | May 21, 2009 | Dunn |
20090126914 | May 21, 2009 | Dunn |
20090129021 | May 21, 2009 | Dunn |
20090135365 | May 28, 2009 | Dunn |
20090145581 | June 11, 2009 | Hoffman et al. |
20090147170 | June 11, 2009 | Oh et al. |
20090154096 | June 18, 2009 | Iyengar et al. |
20090174626 | July 9, 2009 | Isoshima et al. |
20090231807 | September 17, 2009 | Bouissiere |
20090241437 | October 1, 2009 | Steinle et al. |
20090244472 | October 1, 2009 | Dunn |
20090251650 | October 8, 2009 | Fukagawa et al. |
20090266507 | October 29, 2009 | Turnbull et al. |
20090279240 | November 12, 2009 | Karppanen |
20090302727 | December 10, 2009 | Vincent et al. |
20090306820 | December 10, 2009 | Simmons et al. |
20090323275 | December 31, 2009 | Rehmann et al. |
20100060861 | March 11, 2010 | Medin |
20100079949 | April 1, 2010 | Nakamichi et al. |
20100079979 | April 1, 2010 | Nakamichi et al. |
20100142149 | June 10, 2010 | Nakamichi et al. |
20100162747 | July 1, 2010 | Hamel et al. |
20100171889 | July 8, 2010 | Pantel et al. |
20100182562 | July 22, 2010 | Yoshida et al. |
20100220249 | September 2, 2010 | Nakamichi et al. |
20100226091 | September 9, 2010 | Dunn |
20100232107 | September 16, 2010 | Dunn |
20100238394 | September 23, 2010 | Dunn |
20100315570 | December 16, 2010 | Mathew et al. |
20100321887 | December 23, 2010 | Kwon et al. |
20110001898 | January 6, 2011 | Mikubo et al. |
20110013114 | January 20, 2011 | Dunn et al. |
20110019363 | January 27, 2011 | Vahlsing et al. |
20110032489 | February 10, 2011 | Kimoto et al. |
20110051071 | March 3, 2011 | Nakamichi et al. |
20110051369 | March 3, 2011 | Takahara |
20110058326 | March 10, 2011 | Idems et al. |
20110072697 | March 31, 2011 | Miller |
20110075361 | March 31, 2011 | Nakamichi et al. |
20110083460 | April 14, 2011 | Thomas et al. |
20110083824 | April 14, 2011 | Rogers |
20110085301 | April 14, 2011 | Dunn |
20110085302 | April 14, 2011 | Nakamichi et al. |
20110090630 | April 21, 2011 | Bergeron et al. |
20110114384 | May 19, 2011 | Sakamoto et al. |
20110116000 | May 19, 2011 | Dunn et al. |
20110116231 | May 19, 2011 | Dunn et al. |
20110122162 | May 26, 2011 | Sato et al. |
20110134356 | June 9, 2011 | Swatt et al. |
20110141672 | June 16, 2011 | Farley, Jr. et al. |
20110141724 | June 16, 2011 | Erion |
20110162831 | July 7, 2011 | Lee et al. |
20110167845 | July 14, 2011 | Lee et al. |
20110261523 | October 27, 2011 | Dunn et al. |
20110297810 | December 8, 2011 | Tachibana |
20120006523 | January 12, 2012 | Masahiro et al. |
20120012295 | January 19, 2012 | Kakiuchi et al. |
20120012300 | January 19, 2012 | Dunn et al. |
20120014063 | January 19, 2012 | Weiss |
20120020114 | January 26, 2012 | Miyamoto et al. |
20120038849 | February 16, 2012 | Dunn et al. |
20120044217 | February 23, 2012 | Okada et al. |
20120105790 | May 3, 2012 | Hubbard |
20120106081 | May 3, 2012 | Hubbard et al. |
20120131936 | May 31, 2012 | Yoshida et al. |
20120188481 | July 26, 2012 | Kang et al. |
20120206687 | August 16, 2012 | Dunn et al. |
20120223877 | September 6, 2012 | Cho |
20120224116 | September 6, 2012 | Barnes |
20120236499 | September 20, 2012 | Murayama et al. |
20120249402 | October 4, 2012 | Kang |
20120255704 | October 11, 2012 | Nakamichi |
20120274876 | November 1, 2012 | Cappaert et al. |
20120284547 | November 8, 2012 | Culbert et al. |
20120327600 | December 27, 2012 | Dunn |
20130170140 | July 4, 2013 | Dunn |
20130173358 | July 4, 2013 | Pinkus |
20130176517 | July 11, 2013 | Kim et al. |
20130201685 | August 8, 2013 | Messmore et al. |
20130258659 | October 3, 2013 | Erion |
20130279154 | October 24, 2013 | Dunn |
20130294039 | November 7, 2013 | Chao |
20130299651 | November 14, 2013 | McGowan et al. |
20130344794 | December 26, 2013 | Shaw et al. |
20140044147 | February 13, 2014 | Wyatt et al. |
20140085564 | March 27, 2014 | Hendren et al. |
20140111758 | April 24, 2014 | Dunn et al. |
20140113540 | April 24, 2014 | Dunn et al. |
20140134767 | May 15, 2014 | Ishida et al. |
20140184980 | July 3, 2014 | Onoue |
20140190240 | July 10, 2014 | He et al. |
20140268657 | September 18, 2014 | Dunn et al. |
20140313452 | October 23, 2014 | Dunn et al. |
20140313666 | October 23, 2014 | Chin |
20140313698 | October 23, 2014 | Dunn et al. |
20140314395 | October 23, 2014 | Dunn et al. |
20140334100 | November 13, 2014 | Yoon et al. |
20140361138 | December 11, 2014 | Ramirez et al. |
20150009625 | January 8, 2015 | Chin et al. |
20150009627 | January 8, 2015 | Dunn et al. |
20150087404 | March 26, 2015 | Lesley et al. |
20150173237 | June 18, 2015 | Lin et al. |
20150192371 | July 9, 2015 | Hancock |
20150253611 | September 10, 2015 | Yang et al. |
20150264826 | September 17, 2015 | Dunn et al. |
20150319882 | November 5, 2015 | Dunn et al. |
20150366101 | December 17, 2015 | Dunn et al. |
20150371571 | December 24, 2015 | Häger |
20160014910 | January 14, 2016 | Campagna et al. |
20160041423 | February 11, 2016 | Dunn |
20160044829 | February 11, 2016 | Dunn |
20160162297 | June 9, 2016 | Shao |
20160192536 | June 30, 2016 | Diaz |
20160195254 | July 7, 2016 | Dunn et al. |
20160198588 | July 7, 2016 | DeMars |
20160238876 | August 18, 2016 | Dunn et al. |
20160242329 | August 18, 2016 | DeMars |
20160242330 | August 18, 2016 | Dunn |
20160249493 | August 25, 2016 | Dunn et al. |
20160265759 | September 15, 2016 | Na et al. |
20160302331 | October 13, 2016 | Dunn |
20170023823 | January 26, 2017 | Dunn et al. |
20170068042 | March 9, 2017 | Dunn et al. |
20170074453 | March 16, 2017 | Bowers et al. |
20170083043 | March 23, 2017 | Bowers et al. |
20170083062 | March 23, 2017 | Bowers et al. |
20170111486 | April 20, 2017 | Bowers et al. |
20170111520 | April 20, 2017 | Bowers et al. |
20170111521 | April 20, 2017 | Bowers et al. |
20170127579 | May 4, 2017 | Hubbard |
20170140344 | May 18, 2017 | Bowers et al. |
20170147992 | May 25, 2017 | Bowers et al. |
20170163519 | June 8, 2017 | Bowers et al. |
20170172016 | June 15, 2017 | Kang |
20170175411 | June 22, 2017 | Bowers et al. |
20170188490 | June 29, 2017 | Dunn et al. |
20170231112 | August 10, 2017 | Dunn et al. |
20170245400 | August 24, 2017 | Dunn et al. |
20170257978 | September 7, 2017 | Diaz |
20170332523 | November 16, 2017 | DeMars |
20170345346 | November 30, 2017 | Hong et al. |
20180020579 | January 18, 2018 | Chang et al. |
20180042134 | February 8, 2018 | Dunn et al. |
20180088368 | March 29, 2018 | Notoshi et al. |
20180088398 | March 29, 2018 | Lee et al. |
20180116073 | April 26, 2018 | Dunn |
20180199450 | July 12, 2018 | Kim et al. |
20180259806 | September 13, 2018 | Oh et al. |
20180263142 | September 13, 2018 | Oh et al. |
20180310439 | October 25, 2018 | Oh et al. |
20180314103 | November 1, 2018 | Dunn et al. |
20180315356 | November 1, 2018 | Dunn et al. |
20180317330 | November 1, 2018 | Dunn et al. |
20180317350 | November 1, 2018 | Dunn et al. |
20180364519 | December 20, 2018 | Dunn et al. |
20190021189 | January 17, 2019 | Kim et al. |
20190037738 | January 31, 2019 | Dunn et al. |
20190089176 | March 21, 2019 | Dunn et al. |
20190133002 | May 2, 2019 | Dunn et al. |
20190159363 | May 23, 2019 | Jang et al. |
20190208674 | July 4, 2019 | Demars |
20190239365 | August 1, 2019 | Dunn et al. |
20190289754 | September 19, 2019 | Hubbard |
20190327865 | October 24, 2019 | Dunn et al. |
20200033017 | January 30, 2020 | Brown et al. |
20200096797 | March 26, 2020 | Teragawa |
20200154597 | May 14, 2020 | Dunn et al. |
20200163235 | May 21, 2020 | Dunn |
20200201402 | June 25, 2020 | Lee et al. |
20200205303 | June 25, 2020 | Dunn et al. |
20200241612 | July 30, 2020 | Moon et al. |
20200253095 | August 6, 2020 | Dunn et al. |
20200275585 | August 27, 2020 | Dunn |
20200288585 | September 10, 2020 | Dunn et al. |
20200319676 | October 8, 2020 | Dunn |
20200352049 | November 5, 2020 | Dunn et al. |
20200367391 | November 19, 2020 | Dunn |
20200369169 | November 26, 2020 | Mercer et al. |
20200387194 | December 10, 2020 | Dunn |
20200390009 | December 10, 2020 | Whitehead et al. |
20210007241 | January 7, 2021 | Diaz |
20210022273 | January 21, 2021 | Hubbard |
20210165472 | June 3, 2021 | Chin |
20210168949 | June 3, 2021 | Dunn et al. |
20210231998 | July 29, 2021 | Noso et al. |
20210243906 | August 5, 2021 | Dunn |
20210243914 | August 5, 2021 | Dunn |
20210304644 | September 30, 2021 | Webster |
20210307214 | September 30, 2021 | Zhang et al. |
20210345528 | November 4, 2021 | Dunn |
20210397010 | December 23, 2021 | Mou et al. |
20210400853 | December 23, 2021 | Choi |
20210408676 | December 30, 2021 | Sainz Fuertes |
20220035198 | February 3, 2022 | Dunn et al. |
20220110227 | April 7, 2022 | Brown |
20220121255 | April 21, 2022 | Wang et al. |
20220132707 | April 28, 2022 | Dunn et al. |
20220287200 | September 8, 2022 | Dunn et al. |
20220394861 | December 8, 2022 | Dunn et al. |
20220408616 | December 22, 2022 | Brown |
20220408617 | December 22, 2022 | Brown |
20230030742 | February 2, 2023 | Dunn et al. |
20230032626 | February 2, 2023 | Brown |
20230033017 | February 2, 2023 | Dunn |
20230036767 | February 2, 2023 | Dunn et al. |
20230056061 | February 23, 2023 | Dunn et al. |
20230059819 | February 23, 2023 | Dunn et al. |
20230160774 | May 25, 2023 | Dunn et al. |
20230164964 | May 2023 | Dunn et al. |
20230200031 | June 22, 2023 | Dunn |
20230209786 | June 29, 2023 | Dunn |
20230345683 | October 26, 2023 | Dunn et al. |
20230359077 | November 9, 2023 | Dunn et al. |
20230422431 | December 28, 2023 | Dunn et al. |
20230422453 | December 28, 2023 | Dunn |
20240032238 | January 25, 2024 | Dunn et al. |
20240114633 | April 4, 2024 | Dunn |
20240219980 | July 4, 2024 | Dunn et al. |
20240264633 | August 8, 2024 | Dunn |
20240268088 | August 8, 2024 | Dunn et al. |
20240292561 | August 29, 2024 | Dunn et al. |
20240292562 | August 29, 2024 | Dunn et al. |
20240292563 | August 29, 2024 | Dunn et al. |
20240292580 | August 29, 2024 | Dunn |
2011248190 | May 2011 | AU |
2014287438 | January 2018 | AU |
2015253128 | March 2018 | AU |
2017216500 | January 2019 | AU |
2015229457 | March 2019 | AU |
2016220308 | March 2019 | AU |
2017228430 | March 2020 | AU |
2018258497 | January 2021 | AU |
2018257648 | February 2021 | AU |
PI0820231-1 | February 2019 | BR |
2705814 | February 2018 | CA |
2947524 | April 2018 | CA |
2915261 | August 2018 | CA |
2798277 | June 2019 | CA |
2809019 | September 2019 | CA |
2888494 | September 2019 | CA |
2976116 | November 2020 | CA |
3015365 | August 2021 | CA |
3059972 | January 2022 | CA |
2942321 | June 2022 | CA |
3059928 | November 2022 | CA |
2702363 | May 2005 | CN |
201228893 | April 2009 | CN |
202838830 | March 2013 | CN |
104640422 | May 2015 | CN |
106304788 | January 2017 | CN |
107251671 | October 2017 | CN |
108700739 | October 2018 | CN |
107251671 | August 2019 | CN |
216697703 | June 2022 | CN |
1408476 | April 2004 | EP |
1647766 | April 2006 | EP |
1722559 | November 2006 | EP |
1762892 | March 2007 | EP |
1951020 | July 2008 | EP |
2225603 | September 2010 | EP |
2370987 | October 2011 | EP |
2587175 | May 2013 | EP |
2603831 | June 2013 | EP |
2801888 | November 2014 | EP |
2909829 | August 2015 | EP |
3020260 | May 2016 | EP |
3040766 | July 2016 | EP |
3117693 | January 2017 | EP |
3259968 | December 2017 | EP |
3423886 | January 2019 | EP |
3468321 | April 2019 | EP |
3138372 | May 2019 | EP |
3117693 | August 2019 | EP |
2567283 | October 2019 | EP |
2909829 | February 2020 | EP |
3615978 | March 2020 | EP |
3616481 | March 2020 | EP |
3624574 | March 2020 | EP |
3468321 | April 2021 | EP |
3423886 | February 2022 | EP |
3259968 | April 2022 | EP |
4232870 | August 2023 | EP |
3615978 | January 2024 | EP |
3616481 | July 2024 | EP |
2893752 | May 2007 | FR |
2402205 | December 2004 | GB |
402062015 | March 1990 | JP |
402307080 | December 1990 | JP |
3153212 | July 1991 | JP |
H497194 | March 1992 | JP |
H06-2337 | January 1994 | JP |
6082745 | March 1994 | JP |
H8-54834 | February 1996 | JP |
H8-55567 | February 1996 | JP |
8115788 | May 1996 | JP |
H8-152604 | June 1996 | JP |
8194437 | July 1996 | JP |
H08-305301 | November 1996 | JP |
8339034 | December 1996 | JP |
H9-160512 | June 1997 | JP |
H09246766 | September 1997 | JP |
H10152604 | June 1998 | JP |
H-10222076 | August 1998 | JP |
H11-68363 | March 1999 | JP |
11160727 | June 1999 | JP |
H-11233967 | August 1999 | JP |
H11296094 | October 1999 | JP |
2000-10501 | January 2000 | JP |
2000112033 | April 2000 | JP |
2000131682 | May 2000 | JP |
3118907 | October 2000 | JP |
2001209125 | August 2001 | JP |
2001209126 | August 2001 | JP |
2001326488 | November 2001 | JP |
2002-6282 | January 2002 | JP |
2002006757 | January 2002 | JP |
2002148714 | May 2002 | JP |
2002158475 | May 2002 | JP |
2003036032 | February 2003 | JP |
2003-76286 | March 2003 | JP |
2003-162228 | June 2003 | JP |
2003173147 | June 2003 | JP |
2004053749 | February 2004 | JP |
2004-199675 | July 2004 | JP |
2004193002 | July 2004 | JP |
2004285940 | October 2004 | JP |
2004286940 | October 2004 | JP |
2005017434 | January 2005 | JP |
2005017556 | January 2005 | JP |
2005134849 | May 2005 | JP |
2005181799 | July 2005 | JP |
2005265922 | September 2005 | JP |
2005292939 | October 2005 | JP |
2005332253 | December 2005 | JP |
2006010851 | January 2006 | JP |
2006-32890 | February 2006 | JP |
2006513577 | April 2006 | JP |
2006148047 | June 2006 | JP |
2006163217 | June 2006 | JP |
2006-176112 | July 2006 | JP |
2006198344 | August 2006 | JP |
2006293062 | October 2006 | JP |
2006317494 | November 2006 | JP |
2006-330196 | December 2006 | JP |
2007003638 | January 2007 | JP |
2007052951 | March 2007 | JP |
2007207595 | August 2007 | JP |
2007-293105 | November 2007 | JP |
09307257 | November 2007 | JP |
2007322718 | December 2007 | JP |
2008010361 | January 2008 | JP |
2008292743 | December 2008 | JP |
2010024624 | February 2010 | JP |
2010-102227 | May 2010 | JP |
2010-282109 | December 2010 | JP |
2011-14593 | January 2011 | JP |
2011-503663 | January 2011 | JP |
2011-75819 | April 2011 | JP |
2012-118130 | June 2012 | JP |
2012-133254 | July 2012 | JP |
2013-537721 | October 2013 | JP |
2014-225595 | December 2014 | JP |
6039450 | December 2016 | JP |
2017518526 | July 2017 | JP |
2018-511838 | April 2018 | JP |
6305564 | April 2018 | JP |
2019-512721 | May 2019 | JP |
6526245 | May 2019 | JP |
6688402 | April 2020 | JP |
6824440 | January 2021 | JP |
6858276 | March 2021 | JP |
20000000118 | January 2000 | KR |
200163508 | July 2000 | KR |
20000047899 | July 2000 | KR |
200206768 | December 2000 | KR |
20010044073 | June 2001 | KR |
200236278 | October 2001 | KR |
10-2067751 | January 2002 | KR |
200286961 | August 2002 | KR |
100673470 | January 2004 | KR |
1020040067701 | July 2004 | KR |
200366674 | November 2004 | KR |
20050033986 | April 2005 | KR |
20050036254 | April 2005 | KR |
200401354 | November 2005 | KR |
20060016469 | February 2006 | KR |
10-0563049 | March 2006 | KR |
20060054742 | May 2006 | KR |
10-2006-0070176 | June 2006 | KR |
20060091898 | August 2006 | KR |
20060120904 | November 2006 | KR |
100659339 | December 2006 | KR |
100666961 | January 2007 | KR |
20070002494 | January 2007 | KR |
1020070070675 | April 2007 | KR |
10-2007-0048300 | May 2007 | KR |
20070048296 | May 2007 | KR |
1020070048294 | August 2007 | KR |
20080005024 | January 2008 | KR |
20080010091 | January 2008 | KR |
20080018486 | February 2008 | KR |
20080047241 | May 2008 | KR |
20090116368 | November 2009 | KR |
10-1153923 | June 2012 | KR |
10-2013-0126034 | November 2013 | KR |
101764381 | July 2017 | KR |
10-1847151 | April 2018 | KR |
10-1853885 | April 2018 | KR |
10-1868077 | June 2018 | KR |
10-1885884 | July 2018 | KR |
10-1894027 | August 2018 | KR |
10-1904363 | September 2018 | KR |
10-1958375 | March 2019 | KR |
10-2010515 | August 2019 | KR |
10-2063885 | January 2020 | KR |
10-2104342 | April 2020 | KR |
10-2109072 | May 2020 | KR |
10-2165778 | October 2020 | KR |
10-2262912 | June 2021 | KR |
10-2267374 | June 2021 | KR |
10-2306650 | September 2021 | KR |
10-2379046 | March 2022 | KR |
10-2400990 | May 2022 | KR |
10-2501211 | February 2023 | KR |
2513043 | April 2014 | RU |
WO2005079129 | August 2005 | WO |
WO2007/116117 | October 2007 | WO |
WO2007116116 | October 2007 | WO |
WO2008050660 | May 2008 | WO |
WO2008085138 | July 2008 | WO |
WO2008/102050 | August 2008 | WO |
WO2009/047390 | April 2009 | WO |
WO2009065125 | May 2009 | WO |
WO2009065125 | May 2009 | WO |
WO2009135308 | November 2009 | WO |
WO2010007821 | February 2010 | WO |
WO2010080624 | July 2010 | WO |
WO2011069084 | June 2011 | WO |
WO2011072217 | June 2011 | WO |
WO2011140179 | November 2011 | WO |
WO2011150078 | December 2011 | WO |
WO2012021573 | February 2012 | WO |
WO2012024426 | February 2012 | WO |
WO2013/182733 | December 2013 | WO |
WO2014062815 | April 2014 | WO |
WO2014149773 | September 2014 | WO |
WO2014150036 | September 2014 | WO |
WO2015/138609 | September 2015 | WO |
WO2015168375 | November 2015 | WO |
WO2016/102980 | June 2016 | WO |
WO2016102982 | June 2016 | WO |
WO2016127613 | August 2016 | WO |
WO2016133852 | August 2016 | WO |
WO2017152166 | September 2017 | WO |
WO2018/200260 | November 2018 | WO |
WO2018/200905 | November 2018 | WO |
WO2020/081687 | April 2020 | WO |
WO2020/205305 | October 2020 | WO |
WO2022/087488 | April 2022 | WO |
WO2023/096738 | June 2023 | WO |
WO2024/020185 | January 2024 | WO |
- Itsenclosures, Product Catalog, 2009, 48 pages.
- Itsenclosures, Standard Product Data Sheet, 2011, 18 pages.
- Sunbritetv, All Weather Outdoor LCD Television Model 4610HD, 2008, 1 page.
- Sunbritetv, Introduces Two New All-Weather Outdoor Televisions InfoComm 2008, 7 pages.
- Itsenclosures, Viewstation, 2017, 16 pages.
- Novitsky, Driving LEDs versus CCFLs for LCD backlighting, Nov. 12, 2007, 6 pages.
- Federman, Cooling Flat Panel Displays, 2011, 4 pages.
- Zeeff, T.M., EMC analysis of an 18″ LCD monitor, 2000, 1 page.
- Vertigo Digital Displays, Innovation on Display FlexVu Totem Brochure, 2014, 6 pages.
- Vertigo Digital Displays, FlexVu Totem Shelter, 2017, 2 pages.
- Vertigo Digital Displays, All Products Catalogue, 2017,14 pages.
- Adnation, Turn Key Advertising Technology Solutions, May 23, 2017, 4 pages.
- Civiq Smartscapes, FlexVue Ferro 55P/55L, Mar. 16, 2017, 4 pages.
- Wankhede, Evaluation of Cooling Solutions for Outdoor Electronics, Sep. 17-19, 2007, 6 pages.
- Bureau of Ships Navy Department, Guide Manual of Cooling methods for Electronic Equipment, Mar. 31, 1955, 212 pages.
- Civiq, Invalidity Claim Charts, Appendix A—Appendix D, Jan. 24, 2018, 51 pages.
- Civiq, Invalidity Contentions, Jan. 24, 2018, 51 pages.
- Scott, Cooling of Electronic Equipment, Apr. 4, 1974, 119 pages.
- Sergent, Thermal Management Handbook for Electronic Assemblies, Aug. 14, 1998, 190 pages.
- Steinberg, Cooling Techniques for Electronic Equipment First Edition, 1980, 255 pages.
- Steinberg, Cooling Techniques for Electronic Equipment Second Edition, 1991, 299 pages.
- Yeh, Thermal Management of Microelectronic Equipment, Oct. 15, 2002, 148 pages.
- Civiq, Invalidity Claim Chart, Appendix I, Mar. 22, 2018, 4 pages.
- Civiq, Invalidity Claim Charts, Appendix F to H, Mar. 22, 2018, 18 pages.
- Yung, Using Metal Core Printed Circuit Board as a Solution for Thermal Management article, 2007, 5 pages.
- Civiq Smartscapes, LLC v. Manufacturing Resources International, Inc., Memorandum Opinion re claim construction, Sep. 27, 2018, 16 pages.
- Civiq Smartscapes, LLC v. Manufacturing Resources International, Inc., Claim Construction Order, Oct. 3, 2018, 2 pages.
- Anandan, Munismay, Progress of LED backlights for LCDs, Journal of the SID, 2008, pp. 287-310, 16/2.
- Melford Technologies, Part 2, video online at https://m.youtube.com/watch?v=znlyHWozwDA, Oct. 21, 2019, 1 page.
- Civiq, Invalidity Claim Charts, Appendix E, Mar. 22, 2018, 28 pages.
- Signageinfo, Dynamax launches version 4 of its POV digital signage software, https://signageinfo.com/digital-signage/1706/dynamax-launches-version-4-of-its-pov-digital-signage-software-web-interface/?amp=1, Aug. 3, 2009, 6 pages.
- Respondent's Notice of Prior Art, Certain Outdoor and Semioutdoor Electronic Displays, Products Containing same, and components thereof, Jan. 4, 2023, 22 pages.
- Mentley, David E., State of Flat-Panel Display Technology and Future Trends, Proceedings of the IEEE, Apr. 2002, vol. 90, No. 4, pp. 453-459.
- Rohsenow, Warren M., Handbook of Heat Transfer, Third Edition, 1998, select chapters, 112 pages, McGraw-Hill.
- The American Heritage College Dictionary, Third Edition, 1993, excerpt, 3 pages, Houghton Company.
- Civiq Smartscapes LLC. v Manufacturing Resources International, Inc., Petition for Inter Partes. Review of U.S. Pat. No. 8,854,572 including Declaration of Greg Blonder in Support of Petition, Curriculum Vitae of Greg Blonder and Prosecution History of U.S. Pat. No. 8,854,572, Petition filed Mar. 14, 2018, 427 pages.
- Civiq Smartscapes LLC. v Manufacturing Resources International, Inc., Defendant's Amended Answer and Countercliams to Plaintiff's First Amended Complaint, Filed Apr. 24, 2018, 240 pages.
- Civiq Smartscapes LLC. v Manufacturing Resources International, Inc., Memorandum Order re “rear surface of the electronic display” term construction, Mar. 5, 2019, 3 pages.
- United States International Trade Commission, Manufacturing Resources International, Inc. v Samsung Electronics Co., Ltd et al., In the Matter of Certain Outdoor and Semioutdoor Electronic Displays, Products Containing Same, and Components Thereof, Inv. No. 337-TA-1331, Final Initial Determination of Violation of Section 337, Public Version, Nov. 13, 2023, 325 pages.
- Declaration of Robert Smith Gillespie, Certain Outdoor and Semi-outdoor Electronic Displays, Products, Containing same, and Components thereof, Jan. 17, 2023, 42 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Declaration of Michael Gershowitz, Sep. 26, 2023, 77 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Expert Declaration of Dr. Himanshu Pokhama,, Sep. 26, 2023, 104 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Decision to Institute IPR2023-00199, Jun. 20, 2023, 53 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Decision to Institute IPR2023-00220, Jun. 20, 2023, 51 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Decision to Institute IPR2023-00221, Jun. 20, 2023, 80 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Decision to Institute IPR2023-00254, Jun. 20, 2023, 72 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Decision to Institute IPR2023-00255, Jul. 18, 2023, 47 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Final Written Decision IPR2023-00199, Jul. 3, 2024, 78 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Final Written Decision IPR2023-00220, Jul. 3, 2024, 78 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Final Written Decision IPR2023-00254, Jul. 3, 2024, 114 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Final Written Decision IPR2023-00221, Jul. 3, 2024, 116 pages.
- Samsung Electronics Co., Ltd. and Samsung Electronics America, Inc. v Manufacturing Resources International, Inc., Final Written Decision IPR2023-00255, Jul. 30, 2024, 94 pages.
Type: Grant
Filed: Aug 21, 2024
Date of Patent: Jan 21, 2025
Assignee: Manufacturing Resources International, Inc. (Alpharetta, GA)
Inventor: William Dunn (Alpharetta, GA)
Primary Examiner: Vivek K Shirsat
Application Number: 18/811,475
International Classification: H05K 7/20 (20060101); G02F 1/133 (20060101); G02F 1/1333 (20060101);