Woods, Jr., US
James Woods, Jr., Lagrange, GA US
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20100051169 | Low Weight Carpet and Carpet Tile and Methods of Manufacture - Low weight and non-square carpet tile suitable for use in mass transit vehicles, particularly passenger aircraft. The carpet tile preferably weighs less than about 82 ounces per square yard. The carpet tile of this invention may have a carpet pile and at least one backing layer. The backing layer may use low weight filler material. Secondary backing plastic material may be compressed into the tile structure with pressure rollers or other pressure applying process on an improved tile production line. | 03-04-2010 |
20100170991 | Low Weight Carpet Tile - Low weight and non-square carpet tile suitable for use in mass transit vehicles, particularly passenger aircraft. The carpet tile preferably weighs less than about 82 ounces per square yard. The carpet tile of this invention may have a carpet pile and at least one backing layer. The backing layer may use a low weight filler material. The carpet tiles satisfy transportation industry standards for flame, smoke and toxicity. | 07-08-2010 |
20120117777 | METHODS OF CUTTING AND INSTALLING CARPET TILES - Methods of cutting and installing carpet tiles in, among other applications, mass transit vehicles, particularly including aircraft. In some embodiments, the tile lengths in an installation are the same and the tile widths are customized to a particular section of the aircraft or other vehicle in which they are installed. | 05-17-2012 |
James D. Woods, Jr., Vista, CA US
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20090035110 | Backfilling apparatus with dual telescopically positionable material dispensers - A vehicle for transport and placement of fill material in trenches and for backfilling. The vehicle features a tiltable hopper connected to a central portion of a chassis which may be tilted to adjust the vehicle's center of gravity. Two conveyors deposit two independent volumes of fill material on or adjacent to a target through the positioning of one conveyor a distance from the hopper further than the other. The speed of the conveyors or the volume of fill material placed thereon may be varied to vary each respective discharged volume of material from each conveyor. The conveyors and hopper may be engaged to the base of the vehicle on a chassis that is rotatable on the base and fluid dispensers may be positioned over each conveyor to dampen the fill material. | 02-05-2009 |
Lemuel Jackson Woods, Jr., Evans, GA US
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20100229845 | Bow hunting attachment for use in hunting alligators - A bow hunting attachment is provided that includes a mounting bracket configured for attachment to a bow. A spool is attached to the mounting bracket and has an outer surface a portion of which is configured for having a line wrapped thereon. A keeper is present and is configured for retaining the line onto the outer surface of the spool and is resilient so as to be capable of being displaced to allow the line to be removed from the outer surface of the spool upon firing of an arrow and pulling of the line that is attached to the arrow. | 09-16-2010 |
Wayne H. Woods, Jr., Essex Junction, VT US
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20110043299 | Compact On-Chip Branchline Coupler Using Slow Wave Transmission Line - Branchline coupler structure using slow wave transmission line effect having both large inductance and large capacitance per unit length. The branchline coupler structure includes a plurality of quarter-wavelength transmission lines, at least one of which includes a high impedance arm and a low impedance arm. The high and low impedances are relative to each other. The high impedance arm includes a plurality of narrow cells and having an inductance of nL and a capacitance of C/n, and the low impedance arm includes a plurality of wide cells and having an inductance of L/n and capacitance of nC. The wide and narrow cells are relative to each other, and the wide and narrow cells are adjacent each other to form a signal layer having step discontinuous alternative widths. | 02-24-2011 |
20110077916 | Method of Distributing a Random Variable Using Statistically Correct Spatial Interpolation Continuously With Spatially Inhomogeneous Statistical Correlation Versus Distance, Standard Deviation, and Mean - Methods for modeling a random variable with spatially inhomogenous statistical correlation versus distance, standard deviation, and mean by spatial interpolation with statistical corrections. The method includes assigning statistically independent random variable to a set of seed points in a coordinate frame and defining a plurality of test points at respective spatial locations in the coordinate frame. A equation for a random variable is determined for each of the test points by spatial interpolation from one or more of the random variable assigned to the seed points. The method further includes adjusting the equation of the random variable at each of the test point with respective correction factor equations. | 03-31-2011 |
Wayne Harvey Woods, Jr., Essex Junction, VT US
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20100276809 | T-CONNECTIONS, METHODOLOGY FOR DESIGNING T-CONNECTIONS, AND COMPACT MODELING OF T-CONNECTIONS - T-connections, methodology for designing T-connections, and compact modeling of T-connections. The T-connections include an electrically conductive T-junction comprising a body and first, second and third integral arms projecting from mutually perpendicular sides of the body, each arm of the three integral arms having a same first width abutting the body and a same length extending away from the body; an electrically conductive step-junction comprising a first section having the first width and an integral and abutting second section having a second width, the second width different from the first width, the first section smoothly abutting and integral with the first arm of the T-junction; and wherein top surfaces of the T-junction and the step-junction are coplanar. | 11-04-2010 |
Wayne Harvey Woods, Jr., Burlington, VT US
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20120193121 | HIGH PERFORMANCE ON-CHIP VERTICAL COAXIAL CABLE, METHOD OF MANUFACTURE AND DESIGN STRUCTURE - A high performance on-chip vertical coaxial cable structure, method of manufacturing and design structure thereof is provided. The coaxial cable structure includes an inner conductor and an insulating material that coaxially surrounds the inner conductor. The structure further includes an outer conductor which surrounds the insulating material. Both the inner and outer conductors comprise a plurality of metal layers formed on different wiring levels and interconnected between the different wiring levels by conductors. The coaxial cable structure is formed upon a surface of a semiconductor substrate and is oriented in substantially perpendicular alignment with the surface. | 08-02-2012 |
William L. Woods, Jr., Kaufman, TX US
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20100122458 | PRINTED WIRING BOARD CONNECTOR PIN HAVING AN ACIRCULAR PROFILE - One aspect of this disclosure provides an electrical connector pin for a printed wiring board. This embodiment includes an unmachined, collar having an acircular configuration and including a side wall. This embodiment further includes a machined first cylindrical connector shaft integrally formed with the collar and extending from collar along the longitudinal axis, and a machined second cylindrical connector shaft integrally formed with the collar and extending from the collar and along the longitudinal axis in a direction opposite to that of the first cylindrical connector shaft. | 05-20-2010 |
20130003304 | CONICAL HEADED FASTENER FOR A PRINTED WIRING BOARD ASSEMBLY - One aspect includes an electronics assembly, including: (1) printed wiring board, (2) a mount and (3) a fastener for securing the printed wiring board to the mount, the fastener including a body configured to pass through a mounting hole on the printed wiring board and engage the mount, the fastener further including a conical head configured to receive a driver torque and further configured to engage a rim of the mounting hole and produce an increasing frictional torque to countervail and eventually balance the driver torque. | 01-03-2013 |
20140268608 | COMPONENT HOLDING STRUCTURES, SYSTEM, AND METHOD - A component holding structure for holding a plurality of through-hole components having an axial lead includes a pair of opposing end walls that define a cavity between them. The cavity is configured to receive the through-hole components. The through-hole components are positioned between the pair of opposing end walls in a vertically-stacked configuration. Each one of the end walls includes at least one slot that is configured to receive the axial lead of each through-hole component when the plurality of through-hole components are inserted into the component holding structure. Each one of the end walls also includes a plurality of lead guides that are configured to guide the axial lead of each through-hole component when the plurality of through-hole components are inserted into the component holding structure. | 09-18-2014 |
William Lonzo Woods, Jr., Kaufman, TX US
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20110025446 | APPARATUS AND METHOD FOR EFFECTING INDUCTIVE COUPLING AMONG A PLURALITY OF ELECTRICAL ELEMENTS - An apparatus for effecting inductive coupling among a plurality of electrical elements includes: (a) an electrically non-conductive core member oriented about an axis; (b) at least one first electrical element of the plurality of electrical elements substantially nestingly surrounding the core member oriented about the axis; each respective first electrical element being in spaced relation vis-à-vis other first electrical elements in an installed orientation; and (c) at least one second electrical element of the plurality of electrical elements disposed in surrounding relation with respect to the core member about the axis sufficiently proximal with at least one selected said first electrical element in the installed orientation to establish the inductive coupling. | 02-03-2011 |
20110206956 | ROUND CELL BATTERY - A round cell battery comprising a stack of substantially cylindrically-shaped electrically conductive grid plates and two or more bus bars. One or more of the bus bars is electrically connected to outer rims of a set of alternating ones of the grid plates in the stack and to a positive voltage post of the battery. A different one or more of the bus bars is electrically connected to outer rims of a different set of alternate ones of the grid plates in the stack and to a negative voltage post of the battery. | 08-25-2011 |