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Hiner, US
David J. Hiner, Chandler, AZ US
| Patent application number | Description | Published |
|---|---|---|
| 20090000815 | CONFORMAL SHIELDING EMPLOYING SEGMENT BUILDUP - In one embodiment, a meta-module having circuitry for two or more modules is formed on a substrate, which is preferably a laminated substrate. The circuitry for the different modules is initially formed on the single meta-module. Each module will have one or more component areas in which the circuitry is formed. A metallic structure is formed on or in the substrate for each component area to be shielded. A single body, such as an overmold body, is then formed over all of the modules on the meta-module. At least a portion of the metallic structure for each component area to be shielded is then exposed through the body by a cutting, drilling, or like operation. Next, an electromagnetic shield material is applied to the exterior surface of the body of each of the component areas to be shielded and in contact with the exposed portion of the metallic structures. | 01-01-2009 |
| 20090000816 | CONFORMAL SHIELDING PROCESS USING FLUSH STRUCTURES - In one embodiment, a meta-module having circuitry for two or more modules is formed on a substrate, which is preferably a laminated substrate. The circuitry for the different modules is initially formed on the single meta-module. Each module will have one or more component areas in which the circuitry is formed. A metallic structure is formed on or in the substrate for each component area to be shielded. A single body, such as an overmold body, is then formed over all of the modules on the meta-module. At least a portion of the metallic structure for each component area to be shielded is then exposed through the body by a cutting, drilling, or like operation. Next, an electromagnetic shield material is applied to the exterior surface of the body of each of the component areas to be shielded and in contact with the exposed portion of the metallic structures. | 01-01-2009 |
| 20090025211 | ISOLATED CONFORMAL SHIELDING - In one embodiment, a meta-module having circuitry for two or more modules is formed on a substrate, which is preferably a laminated substrate. The circuitry for the different modules is initially formed on the single meta-module. Each module will have one or more component areas in which the circuitry is formed. A metallic structure is formed on or in the substrate for each component area to be shielded. A single body, such as an overmold body, is then formed over all of the modules on the meta-module. At least a portion of the metallic structure for each component area to be shielded is then exposed through the body by a cutting, drilling, or like operation. Next, an electromagnetic shield material is applied to the exterior surface of the body of each of the component areas to be shielded and in contact with the exposed portion of the metallic structures. | 01-29-2009 |
| 20100199492 | CONFORMAL SHIELDING EMPLOYING SEGMENT BUILDUP - A meta-module having circuitry for two or more modules is formed on a substrate, which is preferably a laminated substrate. The circuitry for the different modules is initially formed on the single meta-module. Each module will have one or more component areas in which the circuitry is formed. A metallic structure is formed on or in the substrate for each component area to be shielded. A single body, such as an overmold body, is then formed over all of the modules on the meta-module. At least a portion of the metallic structure for each component area to be shielded is then exposed through the body by a cutting, drilling, or like operation. Next, an electromagnetic shield material is applied to the exterior surface of the body of each of the component areas to be shielded and in contact with the exposed portion of the metallic structures. | 08-12-2010 |
| 20110225803 | CONFORMAL SHIELDING EMPLOYING SEGMENT BUILDUP - A meta-module having circuitry for two or more modules is formed on a substrate, which is preferably a laminated substrate. The circuitry for the different modules is initially formed on the single meta-module. Each module will have one or more component areas in which the circuitry is formed. A metallic structure is formed on or in the substrate for each component area to be shielded. A single body, such as an overmold body, is then formed over all of the modules on the meta-module. At least a portion of the metallic structure for each component area to be shielded is then exposed through the body by a cutting, drilling, or like operation. Next, an electromagnetic shield material is applied to the exterior surface of the body of each of the component areas to be shielded and in contact with the exposed portion of the metallic structures. | 09-22-2011 |
Hellene Hiner, Houston, TX US
| Patent application number | Description | Published |
|---|---|---|
| 20110259178 | Machine and method for teaching music and piano - A system for teaching music with input and output devices, musical representations presented on vertically and horizontally oriented musical staffs, output responsive to selective application of input data, confirmation of propriety of input choice, and scrolling presentation of sequential musical representations constituting music. A method to develop a positive association of correct learning input to music representation presented and a negative association of improper response, to music presented in a scrolling manner along a center bar for timing visual change in musical representation upon input. Musical representations such as notes, lines and bars may be presented and the user is required to make choices through input devices to correctly identify or play the musical representation. The system and method use both visual and audio responses to input and uses color and graphical associations between the staff and notes to teach intervals and music. | 10-27-2011 |
Kevin L. Hiner, Canton, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20090199782 | Modular Animalia Housing Apparatus - A modular animalia housing apparatus is disclosed. The modular animalia housing apparatus includes one or more housing portions, wherein the one or more housing portions each includes a substantially tube-shaped body member having a first end connected to a second end, wherein the substantially tube-shaped body member is formed from a substantially planar member including a length, a width, and a thickness, wherein the length includes a first length segment, a second length segment, and a third length segment, wherein the second length segment is joined to the first length segment and the third length segment, where the first end includes the first length segment, wherein the second end includes the third length segment, wherein the second length segment includes the thickness, wherein the first length segment includes a first thickness portion that is less than the thickness, wherein the third length segment includes a second thickness portion that is less than the thickness, wherein a sum of the first thickness portion and the second thickness portion is approximately equal to the thickness. A kit for assembling modular animalia housing apparatus is also disclosed. | 08-13-2009 |
Larry A. Hiner, Orrville, OH US
| Patent application number | Description | Published |
|---|---|---|
| 20090241860 | ENHANCED STEAM CYCLE UTILIZING A DUAL PRESSURE RECOVERY BOILER WITH REHEAT - An enhanced steam cycle utilizing a dual pressure recovery boiler with reheat allows a large increase in electrical generation with various turbine cycles while overcoming traditional lower furnace material limitations. A dual pressure designed recovery boiler furnace is provided with a lower furnace and an upper furnace. The lower furnace is operated at a lower temperature to prevent or reduce corrosion of the lower furnace wall tubes caused by the reducing environment. The lower furnace can be either a low pressure natural circulation steam generating (drum) system or economizer. Unlike the lower furnace, the upper furnace is not exposed to a reducing environment and is therefore not as susceptible to severe corrosion rates. The upper furnace is operated at higher temperatures and pressures which permit implementation of higher efficiency reheat steam cycles. The upper furnace thus operates as a high pressure natural circulation steam generating (drum) system, or as a once-through supercritical steam generating system. The dual pressure recovery boiler can thus be coupled to a variety of condensing, non-condensing or a combination of condensing and non-condensing turbine cycles to provide a large increase in electrical generation. | 10-01-2009 |
| 20090252665 | ENHANCEMENT OF CONVENTIONAL SCR AND SNCR PROCESSES WITH AMMONIA DESTRUCTION CATALYST - An apparatus and method for achieving increased NO | 10-08-2009 |
Larry C. Hiner, Naperville, IL US
| Patent application number | Description | Published |
|---|---|---|
| 20080223859 | Storage tank with inventory reduction - The disclosed floating-roof storage tank has an articulated floor with an annular outer portion, an intermediate transition portion, and a raised inner portion. Pipe elements or equipment that may hang from an outer, annular section on the roof or extend from the tank wall fit around the outside of the transition portion. Liquid-tight seams connect the transition portion of the floor to the outer portion and to the raised inner portion of the floor, sealing off an inventory-reduction compartment beneath the raised portion of the floor. The inventory-reduction compartment is supported by a solid or liquid fill or by a metal support structure. The raised inner portion of the floor may support the floating roof in a low position, and may support columns or the like that are used to support a fixed roof above the floating roof. | 09-18-2008 |
Nicholas Andrew Hiner, Georgetown, IN US
| Patent application number | Description | Published |
|---|---|---|
| 20100111720 | HIGH DISPLACEMENT AIR PUMP - The prior art has used pitched blades attached to a stationary motor normally electric to move air within the confines of a structure or room. The preferred invention incorporates a series of solid discs. The discs are affixed to a stationary electric motor and thus rotate around a central axis. The discs are equally spaced and centrally perforated in a manner that will allow air to flow in high volumes through the perforations and pass along the discs thus exiting symmetrically between each disc perpendicularly to the flow of air that is at its entrance. | 05-06-2010 |
