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Konda, IN

Ashok Konda, Maharashtra IN

Patent application numberDescriptionPublished
20090182016OPTICAL ENANTIOMERS OF PHENYRAMIDOL AND PROCESS FOR CHIRAL SYNTHESIS - The present invention discloses optically pure (R) and (S) Phenyramidol enantiomers and their pharmaceutically acceptable salts, a process for synthesising such enantiomers by means of a styrene oxide based asymmetric synthesis, and also a clinical evaluation of (R) and (S) enantiomers of Phenyramidol, their salts and compositions thereof for enhanced/newer therapeutic benefits.07-16-2009
20100144799OPTICAL ENANTIOMERS OF PHENYRAMIDOL AND PROCESS FOR CHIRAL SYNTHESIS - The present invention discloses optically pure (R) and (S) Phenyramidol enantiomers and their pharmaceutically acceptable salts, a process for synthesizing such enantiomers by means of a styrene oxide based synthesis, and also a clinical evaluation of (R) and (S) enantiomers of Phenyramidol, their salts and compositions thereof for enhanced/newer therapeutic benefits.06-10-2010

Avinash Gupta Konda, Bangalore IN

Patent application numberDescriptionPublished
20100287565METHOD FOR MANAGING REQUESTS ASSOCIATED WITH A MESSAGE DESTINATION - A method, apparatus and/or computer program product manage a request for a message destination. A request to create a new temporary destination at a receiving computer is intercepted, and generation of the new temporary destination is suppressed. A pre-defined destination that is operable to store the message instead of the new temporary destination is selected. An identifier, which is assigned to the new temporary destination, is associated with the pre-defined destination.11-11-2010

Baalaji Ramamoorthy Konda, Bangalore IN

Patent application numberDescriptionPublished
20090039347PROGRAMMING A MICROCHIP ID REGISTER - A method is disclosed for programming an ID register of a microchip. The method comprises the step, prior to packaging, of attaching at least one additional ID pin to the die of the microchip. The at least one pin being so attached that, when the microchip is packaged, the at least one pin is sealed within the package. At least a portion of the microchip identity data is programmed by providing a plurality of unique combinations of binary data to the at least one additional pin. Each unique combination of binary data corresponds to a unique identity of the microchip. The at least one pin is coupled to a respective module of the microchip layout for providing, via the at least one pin, information associated with the particular identity of the microchip. The at least one pin is also coupled to the identification register, so as to, upon testing, include the respective combination of binary data in the ID register data of the microchip.02-12-2009
20090158105IN SYSTEM DIAGNOSTICS THROUGH SCAN MATRIX - A method of in system diagnostics through scan matrix, and an integrated circuit chip in which the diagnostics are performed, are disclosed. The integrated circuit chip operable in a plurality of Boundary Scan test modes in which at least a part of the circuitry in the integrated circuit chip is tested, the integrated circuit chip comprises a scan matrix controller and an instruction register. The scan matrix controller is provided for partitioning said circuitry into multiple matrices, each of the matrices having a plurality of scan elements. The instruction register is provided for holding instructions for the scan matrix controller for partitioning the chip into said multiple matrices. The scan matrix controller is further arranged to test each of said matrices according to instructions in the instruction register by applying a test signal to the tested part of the circuitry.06-18-2009

Jagadishbabu Konda, Andra Pradesh IN

Patent application numberDescriptionPublished
201000416735-(HETEROCYCLYL)ALKYL-N-(ARYLSULFONYL)INDOLE COMPOUNDS AND THEIR USE AS 5-HT6 LIGANDS - Compounds including 5-(Heterocyclyl)alkyl-N-(arylsulfonyl)indole, their derivatives, their stereoisomers, their pharmaceutically acceptable salts and pharmaceutically acceptable compositions containing them and a process for the preparation of these compounds, their derivatives, their stereoisomers, their pharmaceutically acceptable salts and pharmaceutically acceptable compositions containing them. These compounds are useful in the treatment of various disorders that are related to 5-HT6 receptor functions. Specifically, the compounds of this invention are also useful in the treatment of various CNS disorders, hematological disorders, eating disorders, diseases associated with pain, respiratory diseases, genito-urological disorders, cardiovascular diseases and cancer.02-18-2010

Krishna Reddy Konda, Hyderabad IN

Patent application numberDescriptionPublished
20100158127METHOD OF FAST MODE DECISION OF ENHANCEMENT LAYER USING RATE-DISTORTION COST IN SCALABLE VIDEO CODING (SVC) ENCODER AND APPARATUS THEREOF - A method of fast mode decision of an enhancement layer using a bitrate-distortion cost in an SVC encoder includes: calculating a bitrate-distortion cost for a current macro block of an enhancement layer and a bitrate-distortion cost for a previous macro-block of the current macro block of an enhancement layer based on an optimal motion mode and an motion vector for a macro block of a base layer of a current frame; correcting the bitrate-distortion cost for the previous macro block calculated at the calculating by a correction value for reflecting relationship with the previous frame to calculate a final bitrate-distortion cost for the previous macro block; and comparing the bitrate-distortion cost for the current macro block calculated at the calculating with the final bitrate-distortion cost calculated at the correcting and selecting a motion mode that will be removed from the current macro block according to the comparison result.06-24-2010
20100158128APPARATUS AND METHOD FOR SCALABLE ENCODING - A scalable encoding apparatus that determines a motion mode of an enhanced layer using motion information of a base layer in a scalable video coding having a structure of the base layer and the enhanced layer. The scalable encoding apparatus includes: a second image detector that detects a current image frame from images input to the enhanced layer; a second motion detector that assigns weight to motion modes of a macro block and macro blocks adjacent to the macro block of the current image frame based on motion mode information and motion vector information obtained from the current image frame of the BASE LAYER, determines motion modes for the current image frame of the enhanced layer by applying the weight and comparing a sum of calculated mode values and a plurality of thresholds, and detects the corresponding motions; and a second motion compensator that compensates the motions detected in the second motion detector to compress the current image frame.06-24-2010