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Ochoa, TX

Arnold Ochoa, Garland, TX US

Patent application numberDescriptionPublished
20120130358LASER SURGERY DEVICE AND METHOD - Laser surgery devices and methods of performing laser surgery using laser surgery devices are described. The laser surgery device may rotate a laser fiber along a longitudinal axis of the laser fiber in a repeating pattern through a user-specified rotational pattern. The laser surgery device may be optionally attached to a surgical device to implement hands-free operation of the laser surgery device.05-24-2012

Brian Ochoa, Houston, TX US

Patent application numberDescriptionPublished
20080264625LINEAR ELECTRIC MOTOR FOR AN OILFIELD PUMP - An oilfield pump employing a linear electric motor. The linear electric motor replaces a conventional crankshaft or hydraulic techniques for driving a plunger of the pump. This may reduce the number of equipment parts and amount of maintenance expenses associated with the operation of oilfield pumps. Furthermore, the use of a linear electric motor may also increase the precision and control over the fluid delivery provided by the pump assembly.10-30-2008

Carl M. Ochoa, Plano, TX US

Patent application numberDescriptionPublished
20090194752Releasable Highway Safety Structures - Consistent and reliable releasing of a guardrail during a vehicle impact is enabled by a releasable fastener for safety structures along a highway. The release of secured components such as guardrail is controlled, and precise positional cooperation is provided between securing members and the guardrail. Forces may be attenuated to further optimize response.08-06-2009

James A. Ochoa, College Station, TX US

Patent application numberDescriptionPublished
20110007167High-Update Rate Estimation of Attitude and Angular Rates of a Spacecraft - System and method are provided for estimating attitude and angular rate of a spacecraft with greater accuracy by obtaining star field image data at smaller exposure times and processing the data using algorithms that allow attitude and angular rate to be calculated during the short exposure times.01-13-2011

Luis Ochoa, Sugar Land, TX US

Patent application numberDescriptionPublished
20080202325PROCESS OF IMPROVING A GUN ARMING EFFICIENCY - A process is disclosed for assembling a gun tube for use in a perforating system. At a first location, which is not the site where perforating operations are to be conducted, the gun tube is completely assembled except for an initiating device. After transporting the gun tube to the site where perforating operations are to be conducted, an initiator is connected and installed via port in the gun tube.08-28-2008
20090084535APPARATUS STRING FOR USE IN A WELLBORE - An apparatus string for use in a wellbore is disclosed comprising a plurality of activation modules having first and second ends and containing devices to be activated/initiated downhole. An apparatus string according to the present invention also comprises a plurality of initiator modules where at least initiator is operatively connected to each activation module and is addressable. Each initiator module may comprise a safety initiator which when the initiator module is addressed initiates the firing of the shaped charges in the gun module to which it is operatively connected. A wireless transmitter is provided which is operatively connected in and integral to the apparatus string for use in transmitting signals to address any initiator module in the apparatus string. An apparatus string according to the present invention may be especially useful in perforating operations.04-02-2009
20100012312THROUGH TUBING PERFORATING GUN - An apparatus for perforating wells having a plurality of perforating charges; means for retaining the perforating charges in a first array, the first array having a first maximum cross sectional area; and means for expanding the perforating charges into a second three dimensional array, the second array having a second maximum cross sectional area larger than the first maximum cross sectional area. Also an apparatus for perforating wells having a plurality of perforating charges; means for retaining the perforating charges in a first array, the first array having a primary axis and a first maximum cross sectional area and the perforating charges having firing directions oriented approximately perpendicular to the primary axis; and means for expanding the perforating charges into a second array, the second array having a second maximum cross sectional area larger than the first maximum cross sectional area. It is emphasized that this abstract is provided to comply with the rules requiring an abstract which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.01-21-2010
20100252323PROCESS FOR ASSEMBLING A LOADING TUBE - A process is disclosed for assembling a loading tube for a perforating gun for use in a perforating system. At a first location, e.g., a shop, which is not the location at which perforating operations will be conducted, the loading tube is completely assembled. The completely assembled loading tubing is then transported to a second location where perforating operations are to be conducted. In one embodiment, an RF-safe initiator, wiring, a detonating cord and a plurality of shaped charges are installed into the loading tube at a first location. The RF-safe initiators may comprise an exploding foil initiator or an exploding bridge wire. A process for assembling a loading tube for a single-shot perforating gun is also disclosed.10-07-2010
20100305927UPDATING A RESERVOIR MODEL USING ORIENTED CORE MEASUREMENTS - A method of updating a model of a subsurface reservoir using a sidewall core obtained from within the reservoir that comprises: making one or more directionally dependent measurements on said sidewall core, determining the in-situ position and orientation of the sidewall core, and updating a reservoir model of the reservoir using the directionally dependent measurements and the in-situ position and orientation of said sidewall core. It is emphasized that this abstract is provided to comply with the rules requiring an abstract which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.12-02-2010
20110088903INSTRUMENTED DISCONNECTING TUBULAR JOINT - A method and equipment for an instrumented tubular joint apparatus for use in a pipe string comprising an upper tubular section with a threaded connection thereabove and an axial passage for fluid to flow through connected to a lower tubular section with a threaded connection therebelow and an axial passage for fluid to flow through, a sensor to measure strain at the instrumented tubular joint, a data recording and transmitting unit operatively connected to the sensor, means to relate the data acquired by the sensor to a surface processing unit; and a mechanism to disconnect the upper section from the lower section after receiving a signal from the surface processing unit. It is emphasized that this abstract is provided to comply with the rules requiring an abstract which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.04-21-2011

Patent applications by Luis Ochoa, Sugar Land, TX US

Luis Ochoa, El Paso, TX US

Patent application numberDescriptionPublished
20110059292HYDROGEL CONSTRUCTS USING STEREOLITHOGRAPHY - A preferred embodiment of the present invention provides a method and system for building cost-efficient biocompatible hydrogel constructs using stereolithography. Hydrogel constructs may be used in, for example, multi-lumen nerve regeneration conduits and other tissue engineering scaffolds with embedded channel architecture that facilitate tissue regeneration through possible incorporation of precisely located bioactive agents, cells, and other desired inert and/or active chemical agents and devices. Another preferred embodiment of the present invention provides a method of fabricating a hydrogel construct comprising: solidifying a first solution into a first construct layer with a first energy dosage using stereolithography, the first solution comprising: a first polymer; and a first photoinitiator, wherein the first polymer and first photoinitiator are of a first concentration.03-10-2011

Ozden O. Ochoa, College Station, TX US

Patent application numberDescriptionPublished
20120037748AIRSHIP - An airship system having a flexible envelope and at least one bladder positioned therein is described. The bladder(s) provide an impervious barrier between the gas within the bladder(s) and the air exterior to the bladder(s). The envelope includes longitudinal and hoops straps weaved together in a criss-cross manner. The envelope also includes rings positioned thereon that include truss members for receiving struts for removably coupling the airship to another airship. A tri-hull delta dirigible system is also described, comprising three airships coupled together using struts and arranged in an equilateral triangle formation. The tri-hull delta dirigible system has a similar lift capacity (volume) as a conventional large mono-hull dirigible, while minimizing the detrimental bending in the center of the conventional mono-hull dirigible.02-16-2012

Rolando Ochoa, Garland, TX US

Patent application numberDescriptionPublished
20090260329PACKING INSERT FOR DISC-SHAPED OBJECTS - A packing insert for disc-shaped objects comprising a ring and a deformable contacting portion supported by the ring and extending from a circumference of the ring. The contacting portion can comprise one or more solid portions extending from the circumference. The solid portions can define a plurality of radially arranged members separated by a plurality of void regions, where the solid portions extending radially from a circumference of the ring.10-22-2009