Olmo
Beatriz Dominguez Olmo, Bury St Edmunds GB
Patent application number | Description | Published |
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20130102782 | PROCESSES AND INTERMEDIATES FOR PRODUCING AZAINDOLES - The present invention relates to processes and intermediates for the preparation of compounds useful as inhibitors of Janus kinases (JAK). | 04-25-2013 |
20130303764 | PROCESSES AND INTERMEDIATES FOR PRODUCING AZAINDOLES - The present invention relates to processes and intermediates for the preparation of compounds useful as inhibitors of Janus kinases (JAK). | 11-14-2013 |
20140309421 | PROCESSES AND INTERMEDIATES FOR PRODUCING AZAINDOLES - The present invention relates to processes and intermediates for the preparation of compounds useful as inhibitors of Janus kinases (JAK). | 10-16-2014 |
Catalina Olmo, Isabel Colbrand ES
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20140254375 | METHOD FOR TERMINATING VOICE CALLS IN A WIRELESS COMMUNICATION NETWORK - A method to reduce signalling loads in wireless communication networks in a wireless communication network comprising an IMS (IP Multimedia Subsystem) application server allocated on a server by implementing a new voice call terminating procedure. The method comprises determining whether a Mobile Station Roaming Number (MSRN) is related to a foreign network and, based on this determination, performing a number of operations. | 09-11-2014 |
Fabio Olmo, Asti IT
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20130115087 | Axial Fan - An axial fan has a hub whose axis coincides with the rotational axis of the fan, a plurality of vanes that extend from the hub, and an outer ring which is coaxial with the hub. The ring has a front portion and a rear portion. The outer ring defines within itself a passage towards the rear portion. The radially outermost ends of the vanes are connected to the inner surface of the passage. The rear portion of the ring has a plurality of appendages that extend axially away from the front portion of the ring, and which alternate circumferentially with corresponding intermediate recesses. Each vane has its radially outermost end connected to an inner surface of one of the appendages. | 05-09-2013 |
Marco Olmo, Olcenengo IT
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20110017083 | DRYING EQUIPMENT WITH FALSE AIR TREATMENT FOR PRINTING MACHINES - A ventilation and drying equipment for printing machines, including ovens operable to dry solvent on a printed support travelling through the ovens passages into and out of the ovens through which false or ambient air can enter the oven from the outside. At least one false air suppression device for which each printing unit covers at least one of the passages and which is maintained at a pressure lower than the air pressure inside the oven, to prevent false air from entering the oven through the at least one passage. Each false air suppression device is connected with a common recirculation duct in order to share the false air coming from each printing unit with the whole press. | 01-27-2011 |
Massimiliano Olmo, Novara IT
Patent application number | Description | Published |
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20140141537 | PRODUCTION OF HIGH PRECIPITATE DENSITY WAFERS BY ACTIVATION OF INACTIVE OXYGEN PRECIPITATE NUCLEI - Processes for the treatment of silicon wafers to form a high density non-uniform distribution of oxygen precipitate nuclei therein such that, upon being subjected to the heat treatment cycles of essentially any arbitrary electronic device manufacturing process, the wafers form oxygen precipitates in the bulk and a precipitate-free zone near the surface are disclosed. The processes involve activation of inactive oxygen precipitate nuclei by performing heat treatments between about 400° C. and about 600° C. for at least about 1 hour. | 05-22-2014 |
Mauro Olmo, Aosta IT
Patent application number | Description | Published |
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20100156375 | CONTROL DEVICE FOR A SWITCHING CONVERTER - A control device for a switching converter, the converter having at least one transistor supplied by an input voltage and adapted to supply a load by means of an output voltage. The converter also including a circuit adapted to turn on and off the at least one transistor. The control device includes an operation circuit adapted to change the state of the at least one transistor from turned on to turned off or vice versa, respectively when the output voltage goes down or goes up by a first voltage of a given value by defining a first state; the operation circuit including a further circuit adapted to generate a ramp signal and to change the first state of the at least one transistor from turned on to turned off or vice versa when the ramp voltage is equal to the output voltage of the converter. | 06-24-2010 |
Olivier Olmo, Morges CH
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20080233540 | POWDER BLAST TOOL, POWDER RESERVOIR, INSERT FOR POWDER RESERVOIR AND METHOD OF DENTAL TREATMENT - A powder blast tool for mixing a powder with a pressurised gas, having at least one powder reservoir, with supply lines for the pressurised gas, and a discharge line, which is connected to a discharge nozzle, at which a powder-gas mixture and optionally pressurised water are discharged, wherein the powder blast tool can preferably be connected to plural powder reservoirs simultaneously and exchangeably, wherein at least one receiving region with at least one mixture terminal and at least one gas terminal is disposed on the powder blast tool and wherein the powder reservoir has a coupling region for exchangeable connection of the powder reservoir to the powder blast tool. Also disclosed are a suitable powder reservoir and an insert for such powder reservoirs and a corresponding method of dental treatment. | 09-25-2008 |
20120329005 | MIXING DEVICE FOR A DENTAL POWDER JET APPARATUS, AND DENTAL HAND-HELD INSTRUMENT FOR A POWDER JET APPARATUS INCLUDING A RESPECTIVE MIXING DEVICE - A mixing device for a dental powder jet device, comprising a receptacle for receiving a powder, an inlet for a transport fluid, and an outlet for a powder/transport fluid mixture, the outlet comprising at least one outlet nozzle, the inlet comprising at least one first and at least one second inlet nozzles wherein the outflow direction of the first inlet nozzle intersects the inflow direction of the outlet nozzle, and wherein the outflow direction of the second inlet nozzle is arranged in an offset manner with respect to the outflow direction of the first inlet nozzle. | 12-27-2012 |