Abstract: Methods for fabricating gate electrode/high-k dielectric gate structures having an improved resistance to the growth of silicon dioxide (oxide) at the dielectric/silicon-based substrate interface. In an embodiment, a method of forming a transistor gate structure comprises: incorporating nitrogen into a silicon-based substrate proximate a surface of the substrate; depositing a high-k gate dielectric across the silicon-based substrate; and depositing a gate electrode across the high-k dielectric to form the gate structure. In one embodiment, the gate electrode comprises titanium nitride rich in titanium for inhibiting diffusion of oxygen.
Type:
Grant
Filed:
March 11, 2010
Date of Patent:
November 27, 2012
Assignee:
International Business Machines Corporation
Inventors:
Huiming Bu, Michael P. Chudzik, Wei He, William K. Henson, Siddarth A. Krishnan, Unoh Kwon, Naim Moumen, Wesley C. Natzle
Abstract: A dialysis adapter cell includes a housing comprising a plurality of pillars extending between and attached to a top plate and a bottom plate to form a hollow receptacle, wherein the top plate comprises an aperture configured to provide access to the hollow receptacle; a dialysis membrane disposed about the housing and sealingly engaged to the top plate and the bottom plate; and a platform in physical communication with the bottom plate and configured to position the dialysis adapter cell in a sample holder of a United States Pharmacopoeia dissolution apparatus 4 flow-through cell.
Abstract: A solid state power controller (SSPC) for detecting a parallel arc fault in a direct current (DC) power distribution system includes an input, the input being connected to a DC power source; a power switch connected to the input; an output connected to the power switch, the output being connected to a DC motor controller and associated capacitive load; an output current sensor; an output voltage sensor; and an SSPC controller, the SSPC controller being configured to determine the presence of a parallel arc fault in the DC power distribution system and control the power switch via a gate drive based on inputs from the output current sensor and the output voltage sensor.
Abstract: An electron emission source includes nano-sized acicular materials and a cracked portion formed in at least one portion of the electron emission source. The acicular materials are exposed between inner walls of the cracked portion. A method for preparing the electron emission source, a field emission device including the electron emission source, and a composition for forming the electron emission source are also provided in the present invention.
Type:
Grant
Filed:
June 30, 2009
Date of Patent:
November 27, 2012
Assignee:
Samsung Electronics Co., Ltd.
Inventors:
Yong-chul Kim, In-taek Han, Ho-suk Kang
Abstract: The invention relates to a lamp (1), especially a suspended lamp, comprising a housing (2) that is provided with a first light emitting area (4) with a first light influencing element (9) on one side thereof while being fitted with a second light emitting area (21) with a second light influencing element (22) on another side for direct illumination. In order to improve indirect illumination of the lamp, the second light influencing element (22) can be moved into at least two different positions (S1, S2, S3).
Type:
Grant
Filed:
April 18, 2007
Date of Patent:
November 27, 2012
Assignee:
Zumtobel Lighting GmbH
Inventors:
Patrick Gassner, Manfred Petschulat, Hartmut S. Engel
Abstract: The present invention relates to a flexible metal-clad laminate for a printed circuit board and a method of manufacturing the same. The flexible metal-clad laminate includes: a first polyimide layer that is disposed on one surface of the metal-clad and has thermal expansion coefficient of 20 ppm/K or less; and a second polyimide layer that is disposed on one surface of the first polyimide layer and has thermal expansion coefficient of 20 ppm/K or more, wherein a difference between the thermal expansion coefficients of the first and second polyimide layers is within 5 ppm/K and a glass transition temperature Tg of resin of the first polyimide layer is 300° C.<Tg<350° C., which is lower than a maximum curing temperature.
Type:
Grant
Filed:
December 8, 2008
Date of Patent:
November 27, 2012
Assignee:
SK Innovation Co., Ltd.
Inventors:
Hong Yoo, Daenyoun Kim, Cheolho Kim, Byoungwook Jo
Abstract: The present invention relates to a small-sized food storage receptacle with an air inlet that includes a receptacle body having a food storage space adapted to be squeezed out of shape by the application of an external pressure thereto and be returned to its original shape if the external pressure is removed, a food outlet adapted to discharge the food to the outside when the food storage space is squeezed out of shape, and the air inlet formed along the top portion of the food storage space so as to supply external air to the food storage space, while having a size enough to allow the food to be smoothly fed therein by means of an automatic feeding device in a food manufacturing company.
Abstract: In one embodiment, a plastic composition can comprise: a plastic, a white pigment, and a non-white colorant. The composition can have a whiteness index of greater than or equal to about 50, and a composition yellowness index of less than 10, as measured on a 3 mm thick color chip under D65 illuminant and 2 degree observer. Also disclosed are articles made from the plastic composition.
Type:
Grant
Filed:
September 30, 2005
Date of Patent:
November 27, 2012
Assignee:
Sabic Innovative Plastics IP B.V.
Inventors:
Feng Cao, Michael Donovan, William A. Kernick, III, Guangda Shi
Abstract: A portable device for generating two electrical phases from a single electrical phase. The portable device includes a watertight housing having a toroidal transformer therein. A terminal block is mounted within the housing and is electrically connected to the toroidal transformer. The portable device is sized to fit on the rear floor of a vehicle and an appropriate weight to be carried by a single person.
Type:
Grant
Filed:
September 14, 2009
Date of Patent:
November 27, 2012
Assignee:
Consolidated Edison Company of New York, Inc.
Abstract: A blue color photoelectric conversion film includes: a p-type layer formed by depositing tetracene; a p,n-type layer formed by co-depositing tetracene and naphthalene-tetracarboxylic-dianhydride (“NTCDA”) on the p-type layer; and an n-type layer formed by depositing NTCDA on the p,n-type layer.
Type:
Grant
Filed:
April 3, 2009
Date of Patent:
November 27, 2012
Assignees:
Samsung Electronics Co., Ltd., Osaka University
Abstract: A method for making a polymer composite comprises mixing, a thermosetting polymer precursor, and 0.01 to 30 wt % of a derivatized nanoparticle based on the total weight of the polymer composite, the derivatized nanoparticle including functional groups comprising carboxy, epoxy, ether, ketone, amine, hydroxy, alkoxy, alkyl, aryl, aralkyl, alkaryl, lactone, functionalized polymeric or oligomeric groups, or a combination comprising at least one of the forgoing functional groups.
Type:
Grant
Filed:
September 9, 2010
Date of Patent:
November 27, 2012
Assignee:
Baker Hughes Incorporated
Inventors:
Gaurav Agrawal, Soma Chakraborty, Ping Duan, Michael H. Johnson
Abstract: The present invention relates to a method for reducing data loss comprising a first computing step for computing an intermediate result for each redundancy information entity of a redundancy set by processing respectively associated data information entities of a given data set on at least two main diagonals of a parity check matrix representing an error correction coding scheme. The method further comprises a second computing step for computing the information content of the respective redundancy information entity dependent on the respective intermediate result.
Type:
Grant
Filed:
May 30, 2008
Date of Patent:
November 27, 2012
Assignee:
International Business Machines Corporation
Abstract: Disclosed are compositions comprising: (i) 5-45 wt. % of an acrylonitrile-styrene-acrylate (ASA) graft copolymer or acrylate-modified ASA, (ii) 2-82 wt. % of at least one polyestercarbonate which is a block polyestercarbonate comprising organic carbonate blocks alternating with arylate blocks, said arylate blocks comprising ester structural units derived from at least one 1,3-dihydroxybenzene moiety and at least one aromatic dicarboxylic acid, and having a degree of polymerization of at least about 4; and (iii) 5-60 wt. % of at least one rigid thermoplastic polymer comprising structural units derived from styrene and acrylonitrile; alpha-methylstyrene and acrylonitrile; alpha-methylstyrene, styrene, and acrylonitrile; styrene, acrylonitrile, and methyl methacrylate; alpha-methyl styrene, acrylonitrile, and methyl methacrylate; or alpha-methylstyrene, styrene, acrylonitrile, and methyl methacrylate, or mixtures thereof, wherein wt.
Type:
Grant
Filed:
October 16, 2007
Date of Patent:
November 27, 2012
Assignee:
Sabic Innovative Plastics IP B.V.
Inventors:
Franciscus Maria Huijs, Robert Dirk van de Grampel, Ronald Akkermans
Abstract: A method for producing chitosan from naturally occurring chitin-containing raw material, such as crustacean shells, includes an optional pretreatment step to remove non-chitin rich organic material for example, shrimp flesh, from the raw material, e.g., shrimp shells. The optional pretreatment is followed by a demineralization step utilizing a mild hydrochloric acid solution and a deproteination step utilizing a mild sodium hydroxide solution. The deproteination step is followed by a deacetylation step to remove the acetyl group from N-acetylglucosamine (chitin) to form an amine group, yielding d-glucosamine (chitosan). Each step is followed by a washing step and the product is dried, preferably at a temperature not in excess of about 65° C. Known purification and grinding steps may also be used to produce the final chitosan product. The process is carried out in equipment comprising a series of substantially identical or similar tanks (18, 26, 36, etc.) and dryers (62, 62?), suitably interconnected.
Abstract: An electrical signaling system is disclosed. A modulator is arranged to accept information and encode that information in an alternating signal containing repeated rising and falling edges, by way of the time between consecutive rising or consecutive falling edges. A transmission path transmits the signal from the modulator to a demodulator. The demodulator is arranged to detect a signal edge and store a record of the signal around that edge and compare a subsequent part of the signal with that record thereby to detect a like edge and detect the time difference between like edges.
Abstract: A liquid crystal display (“LCD”) panel includes a first substrate including a pixel electrode defining pixel areas, a first alignment layer disposed on the pixel electrode and a first reactive mesogen layer disposed on the first alignment layer, a second substrate including a common electrode layer disposed on an entire portion of the second substrate facing the first substrate, a second alignment layer disposed on the common electrode layer and a second reactive mesogen layer disposed on the second alignment layer, and a liquid crystal layer disposed between the first and second substrates and including a first liquid crystal compound represented by Chemical Formula 1, a second liquid crystal compound represented by Chemical Formula 2 and a third liquid crystal compound represented by Chemical Formula 3:
Type:
Grant
Filed:
August 7, 2009
Date of Patent:
November 27, 2012
Assignee:
Samsung Display Co., Ltd.
Inventors:
Dong-Gi Seong, Jae-Jin Lyu, Seung-Beom Park, Myeong-Ha Kye, Min-Goo Seok, Min-Hee Kim
Abstract: A display device with improved display quality and a method of driving the display device set at least one static area in each of a previous frame and a current frame by comparing edge areas of the previous frame and edge areas of the current frame, and create an interpolated frame for display between the previous and current frames. At least one static area of the previous frame is used in an unmodified state as a static area of the interpolated frame.
Type:
Grant
Filed:
May 26, 2009
Date of Patent:
November 27, 2012
Assignee:
Samsung Electronics Co., Ltd.
Inventors:
Byung-Hyuk Shin, Min-Kyu Park, Kyung-Woo Kim
Abstract: The present invention disclosed an organic thin film transistor, an organic thin film transistor array substrate and an organic thin film transistor display. The present invention disclosed organic materials which is proper for the application to a large screen display. The presentation also disclosed structures and a method for manufacturing such an organic thin film transistor, the organic thin film transistor array substrate and the organic thin film transistor display.
Type:
Grant
Filed:
December 17, 2010
Date of Patent:
November 27, 2012
Assignee:
Samsung Display Co., Ltd.
Inventors:
Bo Sung Kim, Mun-Pyo Hong, Min-Seong Ryu, Yong-Uk Lee
Abstract: An integrated structural system for a vehicle is provided, the integrated structural system having: a structural member; a first beam component secured to the structural member by a molding process, the first beam component being molded from a first amount of thermoplastic material, wherein the configuration of the first beam component is defined by the molding process; and a second beam component secured directly and only to the first beam component by a vibration weld, the second beam component being separately molded from a second amount of thermoplastic material, the second beam component having a configuration different from the first beam component.
Type:
Grant
Filed:
June 7, 2010
Date of Patent:
November 20, 2012
Assignee:
Inteva Products, LLC
Inventors:
Edward J. Wenzel, Robert Van Jaarsveld, Ronald Widin, Joseph A. Bertucci, Gregory J. Kowalski
Abstract: An engine block assembly for an internal combustion engine comprises a cylinder portion having a plurality of cylinder walls disposed therein. A water jacket, having opposed side walls, extends about the plurality of cylinder walls to define a coolant flow path. A coolant inlet in fluid communication with the water jacket delivers coolant thereto and a coolant outlet in fluid communication with the water jacket removes coolant therefrom. Opposed sealing shoulders extend into the coolant flow path from the water jacket side walls and a longitudinally extending coolant baffle is disposed in the water jacket adjacent to the sealing shoulders. The coolant baffle includes a baffle sealing face configured to engage the opposed sealing shoulders to direct the coolant entering the water jacket in a single direction around the cylinder walls of the cylinder portion.