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Marinkovic
Djordje Marinkovic, Munchen DE
| Patent application number | Description | Published |
|---|---|---|
| 20120133419 | TRIGGER CIRCUIT AND RECTIFIER, IN PARTICULAR FOR A SELF-POWERED MICROSYSTEM HAVING A PIEZOELECTRIC MICROGENERATOR - For detecting a sufficiently large voltage level and providing sufficient output power, a trigger circuit is provided. A rectifier can also be provided, providing effectively greater output power compared to known solutions at the same input voltage. Two competing field effect transistors are used in the trigger circuit. A field effect transistor connected as a diode is connected in parallel to an active rectifier in the rectifier circuit. The trigger circuit and rectifier are useable in a self-powered microsystem including a piezoelectric microgenerator. | 05-31-2012 |
Goran Marinkovic, Kirkland, WA US
| Patent application number | Description | Published |
|---|---|---|
| 20090177829 | INTERRUPT REDIRECTION WITH COALESCING - An interrupt redirection and coalescing system for a multi-processor computer. Devices interrupt a processor or group of processors using pre-defined message address and data payloads communicated with a memory write transaction over a PCI, PCI-X, or PCI Express bus. The efficiency of processing may be improved by combining multiple interrupt notifications into a single interrupt message to a processor. For some interrupts on a multi-processor computer, such as those signaling completion of an input/output (I/O) operation assigned to a device, the efficiency of processing the interrupt may vary from processor to processor. Processing efficiency and overall computer system operation may be improved by appropriately coalescing interrupt messages within and/or across a plurality of queues, where interrupts are queued on the basis of which processor they target. | 07-09-2009 |
Marina Marinkovic, Sesvete HR
| Patent application number | Description | Published |
|---|---|---|
| 20110184030 | Pharmaceutically acceptable salt and polymorphic forms of flupirtine maleate - The present invention is concerned with new polymorphic forms of flupirtine maleate, processes for preparing the new polymorphic forms, pharmaceutical compositions containing them, therapeutic uses thereof and methods of treatment employing them. | 07-28-2011 |
Marina Marinkovic, Sesvete-Zagreb HR
| Patent application number | Description | Published |
|---|---|---|
| 20110275687 | SAXAGLIPTIN INTERMEDIATES, SAXAGLIPTIN POLYMORPHS, AND PROCESSES FOR PREPARATION THEREOF - The invention provides Saxagliptin Schiff bases, polymorphs of Saxagliptin and (1S,3S,5S)-2-[(2S)-2-propan-2-ylideneamino-2-(3-hydroxy-1-adamantyl)acetyl]-2-azabicyclo[3.1.0]hexane-3-carbonitrile, processes for preparing Saxagliptin hydrates, and pharmaceutical compositions thereof. | 11-10-2011 |
| 20110275812 | PROCESS FOR THE PREPARATION AND PURIFICATION OF ETRAVIRINE AND INTERMEDIATES THEREOF - In one embodiment the present invention encompasses 4-(2,6-dichloropyrimidin-4-yloxy)-3,5-dimethylbenzonitrile (“ETHER”), 4-(4,6-dichloropyrimidin-2-yloxy)-3,5-dimethyl-benzonitrile (“ETHER C-2 isomer”), mixtures and salts thereof of. The present invention encompasses the use of ETHER and salts thereof to prepare Etravirine and Etravirine intermediates, and salts thereof. In another embodiment the present invention encompasses the use of ETHER and salts thereof to prepare debrometravirine (“DEBETV”) and salts thereof. In yet another embodiment the present invention encompasses the use of ETHER and salts thereof to prepare 4-(6-chloro-2-(4-cyanophenylamino)pyrimidin-4-yloxy)-3,5-dimethyl-benzonitrile (“ARCPBN”) and salts thereof. The compound, 4-(2,6-dichloropyrimidin-4-yloxy)-3,5-dimethylbenzonitrile “ETHER” of formula (A) wherein n is either 0 or 1 and HA is an acid. | 11-10-2011 |
| 20120083517 | POLYMORPHS OF SAXAGLIPTIN HYDROCHLORIDE AND PROCESSES FOR PREPARING THEM - The invention provides polymorphs of Saxagliptin hydrochloride, processes for preparing polymorphs of Saxagliptin hydrochloride, and pharmaceutical compositions of polymorphs of Saxagliptin hydrochloride. | 04-05-2012 |
Sasa Marinkovic, Toronto CA
| Patent application number | Description | Published |
|---|---|---|
| 20080204460 | DEVICE HAVING MULTIPLE GRAPHICS SUBSYSTEMS AND REDUCED POWER CONSUMPTION MODE, SOFTWARE AND METHODS - Many computing device may now include two or more graphics subsystems. The multiple graphics subsystems may have different abilities, and may, for example, consume differing amount of electrical power, with one subsystem consuming more average power than the others. The higher power consuming graphics subsystem may be coupled to the device and used instead of, or in addition to, the lower power consuming graphics subsystem, resulting in higher performance or additional capabilities, but increased overall power consumption. By transitioning from the use of the higher power consuming graphics subsystem to the lower power consuming graphics subsystem, while placing the higher power consuming graphics subsystem in a lower power consumption mode, overall power consumption is reduced. | 08-28-2008 |
| 20100293402 | DEVICE HAVING MULTIPLE GRAPHICS SUBSYSTEMS AND REDUCED POWER CONSUMPTION MODE, SOFTWARE AND METHODS - Many computing device may now include two or more graphics subsystems. The multiple graphics subsystems may have different abilities, and may, for example, consume differing amount of electrical power, with one subsystem consuming more average power than the others. The higher power consuming graphics subsystem may be coupled to the device and used instead of, or in addition to, the lower power consuming graphics subsystem, resulting in higher performance or additional capabilities, but increased overall power consumption. By transitioning from the use of the higher power consuming graphics subsystem to the lower power consuming graphics subsystem, while placing the higher power consuming graphics subsystem in a lower power consumption mode, overall power consumption is reduced. | 11-18-2010 |
Sinisa Marinkovic, Avancon FR
| Patent application number | Description | Published |
|---|---|---|
| 20100234320 | EMULSIFYING COMPOSITIONS BASED ON ALKYL POLYGLYCOSIDES AND ESTERS - Emulsifying composition containing 1 to 98% of a mixture of alkyl glycosides, a mixture of alcohol esters, a mixture of alcohol esters, 1 to 90% of an alcohol and 0 to 97% of a mixture of alkyl glycoside esters. | 09-16-2010 |
Sinisa Marinkovic, Avancons FR
| Patent application number | Description | Published |
|---|---|---|
| 20120027824 | Preparations facilitated by vesicles using alkyl polypentosides and uses of said preparations - Surfactant system capable of forming a dispersion of vesicles or liposomes constituted of alkyl polyglycoside of formula RO(X)n, in which R is a linear or branched alkyl chain, with or without unsaturation, and having 8 to 12 carbon atoms, X being a pentose residue, and n, representing the average degree of oligomerization, is between 1 and 3, and of a hydrotrope or co-solvent. | 02-02-2012 |
Sinisa V. Marinkovic, Skokie, IL US
| Patent application number | Description | Published |
|---|---|---|
| 20090288003 | Cost effective system and method for monitoring machinery units - The present software and hardware system provides monitoring and adaptive operator communication and software for a plurality of machinery units ( | 11-19-2009 |
Vladan Z. Marinkovic, Woodland Hills, CA US
| Patent application number | Description | Published |
|---|---|---|
| 20090210431 | Load Sharing Cluster File Systems - Load sharing clusters in which each node is responsible for one or more non-overlapping subset(s) of the cluster namespace and will process only those requests that access file or directory objects in the partitioned namespace that the node controls while redirecting requests designated for other nodes. A non-overlapping subset may be migrated from a source node to a destination node, for example, for load sharing or hotspot mitigation. Migration typically includes maintaining a file virtualization link from the destination node to the source node to permit forwarding of requests by the destination node to the source node during migration of metadata and then migration of data from the source node. After migration is complete, the file virtualization link is broken and the destination node services requests for the non-overlapping subset from the migrated metadata and data. | 08-20-2009 |
| 20090254592 | Non-Disruptive File Migration - Non-disruptive migration of the native volume from the source server to the destination server performed by a file switch involves converting the source native volume to a native with metadata volume; converting the native with metadata volume to a mirrored native with metadata volume including the source server and the destination server, the destination server including a mirror copy of the native with metadata volume; removing the source server from the mirrored native with metadata volume; and converting the mirror copy of the native with metadata volume on the destination server to a destination native volume on the destination server. | 10-08-2009 |
