Jordy
Christian Jordy, St Louis De Montferrand FR
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20100270497 | ACTIVE MATERIAL COMPOSITION FOR THE NEGATIVE ELECTRODE OF A LITHIUM-ION ACCUMULATOR - An alloy comprising tin, silicon and carbon, and containing a crystalline M-Sn phase, M being an inert metal. | 10-28-2010 |
20120295162 | POSITIVE ELECTRODE MATERIAL FOR A LITHIUM-ION ACCUMULATOR - A compound of formula Li | 11-22-2012 |
Christian Jordy, St Louis De Monteferrand FR
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20150214547 | POSITIVE ELECTRODE MATERIAL FOR LITHIUM-ION BATTERY - A compound of formula Li | 07-30-2015 |
Daniel Edward Jordy, Glenville, NY US
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20130034428 | SEGMENTED SEAL ASSEMBLY - Systems and devices for sealing portions of a rotary machine are disclosed. In one embodiment, a seal assembly element includes: a head flange; an axial neck connected to the head flange, wherein the axial neck includes a mating flange extending circumferentially from a distal end of the seal assembly element, the mating flange configured to form a multidirectional seal with a recessed portion of a complementary seal assembly element; and a set of axial seal teeth connected to the axial neck. | 02-07-2013 |
20130058765 | ROTARY MACHINE SEAL ASSEMBLY WITH BUTT GAP SEAL ELEMENTS - Systems and devices for substantially fluidly isolating portions of a rotary machine are disclosed. In one embodiment, a seal assembly for a rotary machine includes: a complementary set of seal segments configured relative one another so as to form a substantially continuous body with butt gaps between the seal segments, the segments including: a head flange; and an axial neck connected to the head flange, wherein the axial neck extends radially inboard and includes an axial slot formed substantially there through; and at least one butt gap seal element, wherein the at least one butt gap seal element includes an axial flange and a radial flange, the axial flange disposed within the axial slots of adjacent seal segments; and the radial flange extending radially inboard from the axial slots to a proximity of the rotary machine substantially forming a barrier to axial flow through the butt gap. | 03-07-2013 |
Dustin Jordy, Cypress, TX US
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20100096127 | FLOW REGULATOR ASSEMBLY - A system for and method of supplying an injection fluid to a well assembly so that the injection fluid flows at a substantially constant flow rate. The fluid can be injected at a single site in the well assembly or multiple sites. A flow control regulator is included that attaches to the well assembly and provides a self adjusting flow control for the fluid being injected. The regulator includes a slidable floating sleeve having an orifice through which the fluid flows. The sleeve includes an inlet port that can register with a fluid supply port to allow the injection fluid to make its way into the sleeve. The fluid exits the sleeve through the orifice to generate a pressure differential across the orifice that in turn exerts a sliding force onto the sleeve. Moving the sleeve misaligns the inlet port and fluid supply port thereby throttling flow through the regulator to a predetermined flow rate. | 04-22-2010 |
Dustin R. Jordy, Thibodaux, LA US
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20140318765 | Mechanically Locked Debris Barrier - A debris barrier is installed and locked to the liner tieback extension. When it is time to check release from the liner before initiating a cement job the inner running string is lifted. The lock stays engaged to the liner tieback extension tube as the inner running string is lifted. In that manner the debris barrier remains in position during the lifting to determine release from the liner before cementing. After cementing, the inner running string is lifted further to eventually undermine the lock and capture the debris barrier to bring the debris barrier to the surface with the inner running string. The lock can be dogs or collets or the like. An inner sleeve or a lift sub with an upset can be the support whose axial movement beyond a predetermined value undermines the lock to release the debris barrier. | 10-30-2014 |
George Jordy, Hopewell Junction, NY US
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20090033433 | Circuits, Systems, and Methods for a Voltage Controlled Oscillator with Coarse, Fine, and Center Tuning - Circuits, systems, and methods for generating a variable oscillator output. The circuits generally comprise a capacitor configured to receive first and second currents of a first polarity (e.g., charging currents) and a third current of a second polarity opposite to the first polarity (e.g., a discharge current). The circuit further comprises a first circuit configured to receive a bias input, a second circuit configured to receive a coarse control input, and a third circuit configured to receive a fine control input. The first circuit is further configured to provide the first current in response to the bias input. The second circuit is further configured to provide the second current in response to the coarse control input, such that the second current generally has a magnitude of from zero to a multiple of the magnitude of the first current. The third circuit is further configured to provide the third current when the capacitor has a voltage that passes a threshold voltage determined by the fine control input. The present invention advantageously provides for producing a variable oscillator output over a broad range with the coarse control input, while also having low gain with the fine control input. The present invention is also advantageously suitable for standard integrated circuit manufacturing processes because the bias input can be adjusted to compensate for process variations. | 02-05-2009 |