Chan, GA
Anthony Wing Sang Chan, Norcross, GA US
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20090311194 | METHODS AND COMPOSITIONS FOR THE PRODUCTION AND USE OF MAGNETOSOMES - Methods and compositions for using magnetosomes as cellular contrast agents and markers for magnetic resonance imaging are provided. Certain methods involve synthesizing magnetosomes in a cell as directed by a nucleotide construct comprising an exogenous polynucleotide sequence, wherein the magnetosome serves as a contrast agent or marker for magnetic resonance imaging. Methods of synthesizing and isolating magnetosomes for introduction into immune-matched cells within a tissue or subject for use as a contrast agent or marker for magnetic resonance imaging are also provided. Also provided are methods for stably transfecting cells to express a polypeptide that drives or modulates magnetosome production in the cell, cells produced by such methods and methods for their isolation, transgenic animals comprising at least one eukaryotic cell produced by such methods, and vectors and delivery systems for the transfection of such cells. Further provided are methods for non-invasively generating a visible image of a tissue or subject containing at least one cell such transfected cell, as well as use of such methods to monitor the location, migration, or proliferation of cells in a tissue or subject or to detect or monitor gene expression in a tissue or subject. | 12-17-2009 |
Charles C. Chan, Snellville, GA US
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20080293911 | ANHYDRIDE AND RESORCINOL LATENT CATALYST SYSTEM FOR IMPROVING CURE CHARACTERISTICS OF PHENOLIC RESINS - An anhydride and resorcinol latent catalyst system for a phenolic resole resin provides a resin having long pot life and long shelf life, yet cures quickly thereafter. | 11-27-2008 |
20140148560 | PREPARATION OF PHENOL-FORMALDEHYDE RESIN BEADS USING SUSPENSION OR EMULSION POLYMERIZATION - Methods for making polymer particles in gel form via an emulsion and/or suspension polymerization are provided. In at least one specific embodiment, the method can include reacting a first reaction mixture comprising a phenolic monomer, an aldehyde monomer, and a first catalyst to produce a prepolymer. The method can also include combining the prepolymer with a carrier fluid and a second catalyst to produce a second reaction mixture. The second catalyst can include a dicarboxylic acid, an anhydride, a dihydroxybenzene, or any mixture thereof. The method can also include polymerizing the prepolymer to form polymer particles in gel form. | 05-29-2014 |
Cheong-Wo Hunter Chan, Lawrenceville, GA US
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20100270645 | THIN-FILM CAPACITOR STRUCTURES EMBEDDED IN SEMICONDUCTOR PACKAGES AND METHODS OF MAKING - Provided are semiconductor packages comprising at least one thin-film capacitor attached to a printed wiring board core through build-up layers, wherein a first electrode of the thin-film capacitor comprises a thin nickel foil, a second electrode of the thin-film capacitor comprises a copper electrode, and a copper layer is formed on the nickel foil. The interconnections between the thin-film capacitor and the semiconductor device provide a low inductance path to transfer charge to and from the semiconductor device. Also provided are methods for fabricating such semiconductor packages. | 10-28-2010 |
20100270646 | THIN-FILM CAPACITOR STRUCTURES EMBEDDED IN SEMICONDUCTOR PACKAGES AND METHODS OF MAKING - Provided are semiconductor packages comprising at least one thin-film capacitor attached to a printed wiring board core through build-up layers, wherein a first electrode of the thin-film capacitor comprises a thin nickel foil, a second electrode comprises a copper electrode, and a copper layer is formed on the nickel foil. The interconnections between the thin-film capacitor and the semiconductor device provide a low inductance path to transfer charge to and from the semiconductor device. Also provided are methods for fabricating such semiconductor packages. | 10-28-2010 |
Chun Wah Chan, Peachtree City, GA US
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20110110085 | Light Emitting Diode Module - A light fixture includes multiple light emitting diode (“LED”) modules. Each LED module includes a substrate on which one or more LED's are disposed. The LED modules can interface with one another in a variety of different configurations including an end-to-end configuration in which adjacent ends of the LED modules interface with one another. When adjacent LED modules interface with one another, there is a substantially continuous array of LED's across the LED modules. For example, one or more rows or alignment patterns of the LED's may continue, substantially uninterrupted, within and across the LED modules. Electrical connectors or other means for powering the LED modules are disposed remote from the interfacing locations. For example, electrical connectors may couple to side ends of the LED modules, away from interfacing ends of the LED modules. Thus, the electrical connectors do not impact the continuity of light across adjacent LED modules. | 05-12-2011 |
20110285314 | Linkable Linear Light Emitting Diode System - A linkable linear light emitting diode (LED) system provides apparatus and method for mechanically, optically, and electrically linking multiple LED modules disposed over a wide and separated area of a ceiling system. Openings can be cut in ceiling tiles of a drop ceiling system and the LED lighting modules are coupled to the tile through the opening, with the tile being sandwiched between different portions of the module. A remote driver system is placed within the drop ceiling above the tiles and provide multiple connectors for powering a multitude of lighting modules. Certain of the LED lighting modules include both input and output connectors for both receiving power or data and providing power or data to other modules. In this manner, some of the modules act as master LED lighting modules and those receiving power and/or data therefrom are act as slave modules. | 11-24-2011 |
20110286207 | Linear LED Light Module - A linear light emitting diode (“LED”) light fixture includes LED modules that interface with one another to provide a substantially continuous array of LED's. This continuous array allows for substantially uniform light output from the LED light fixture. The LED modules can interface with one another via one or more connectors, which allow two or more LED modules to be electrically and mechanically coupled together. The connectors may be disposed beneath the LED's so that the connectors are not visible when the LED modules are coupled together. The connectors may be disposed along opposite ends of the modules to allow for end-to-end configurations of the modules and/or along side ends of the modules to allow for angled or curved configurations of the modules. The LED modules can be powered via one or more wires, magnets, or clips, which are coupled to a power source. | 11-24-2011 |
20110310600 | Expandable LED Board Architecture - A light emitting diode (LED) module having a configurable LED substrate capable of receiving varying numbers and layouts of LEDs are described herein. The LED substrate includes LED coupling points for receiving the LEDs and electrical traces etched into the substrate for routing power to the LEDs. The LED module can include a multi-LED over-optic having multiple over-optics that are configured to match the number and configuration of the LEDs positioned on the substrate. The LED coupling points and over-optics can be arranged symmetrically to enable the LED module to be rotated to adjust the light output distribution and direction. The LED module can include a power connection mechanism, for example located at the center of the substrate, that also allows the LED module to be rotated. One or more of the LED modules may be mounted on a heat sink and incorporated into a light fixture. | 12-22-2011 |
20140177209 | Linkable Linear Light Emitting Diode System - A linkable linear light emitting diode (LED) system provides apparatus and method for mechanically, optically, and electrically linking multiple LED modules disposed over a wide and separated area of a ceiling system. Openings can be cut in ceiling tiles of a drop ceiling system and the LED lighting modules are coupled to the tile through the opening, with the tile being sandwiched between different portions of the module. A remote driver system is placed within the drop ceiling above the tiles and provide multiple connectors for powering a multitude of lighting modules. Certain of the LED lighting modules include both input and output connectors for both receiving power or data and providing power or data to other modules. In this manner, some of the modules act as master LED lighting modules and those receiving power and/or data therefrom are act as slave modules. | 06-26-2014 |
Jack Chan, Peachtree City, GA US
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20140188089 | SINTERED POROUS POLYMERIC CAPS AND VENTS FOR COMPONENTS OF MEDICAL DEVICES - The present application provides a device and methods of making and using these devices. The devices comprise porous caps and porous vents made from sintered porous polymeric media comprising plastic particles, elastomeric particles or a combination thereof. These devices are used with medical devices or components thereof to provide ease of use, resistance to infection, sterilization and venting. | 07-03-2014 |
Sam Chan, Atlanta, GA US
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20090320852 | Tracheostomy Tube Butterfly Flange - There is provided a novel tracheostomy tube flange. The flange is made of a flexible material and has a large open area for viewing of the underlying skin. The flange has holes for suturing the flange to the skin and slots for attachment of a strap to surround the neck and keep the flange and tube in place. The flange may swivel on the tube to allow for greater flexibility in attaching it to the skin. A stoma pad may be used with the flange to help keep the skin under the flange healthy. | 12-31-2009 |
Sam Chan, Alpharetta, GA US
Sam C. Chan, Atlanta, GA US
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20100300449 | Position Indicator for Tracheostomy Tube - There is provided an improved tracheostomy tube having a proximal section over-molded by a distal section, where the sections have a differential in the degree of radio-opacity. The radio-opaque material allows a medical professional to determine the location of the tube in the trachea non-invasively, using an x-ray or similar device. In addition, aligning the top (proximal end) of the balloon with the transition between the distal and proximal sections of the tube allows a medical professional to know the exact location of the balloon. The length of the proximal section may be set so that the balloon is place in a pre-determined position so that the transition point between the distal and proximal sections may be used as a position indicator. | 12-02-2010 |
20100300451 | Punch Dilator - There is provided a device for performing an initial piercing and dilating of a patient's trachea. The device has a needle within and extending beyond a sheath which in turn is within and extends beyond an introducer dilator. After the needle is used to pierce the trachea, it may be removed and a guide wire (J-wire) inserted through the introducer dilator and sheath in its place. The sheath is slidable within the introducer dilator once the needle is removed. The introducer dilator is then moved forward, into the site of the initial piercing to expand it. As the introducer dilator is moved forward, the sheath may remain stationary, sliding within the introducer dilator and thus reducing trauma to the stoma site. | 12-02-2010 |
20110098687 | Cam Action Detachment for Tracheostomy Tube - There is provided a mechanism for gently detaching a loading catheter from a tracheostomy tube once the tube is placed in the trachea of a patient. After dilating the trachea, a loading catheter is inserted into a tracheostomy tube with which it desirably engages. Once the loading catheter and tracheostomy tube are attached to each other, the entire unit is passed through the stoma until the flange of the tracheostomy tube is in contact with the throat. The loading catheter may then be removed by rotating or twisting the loading catheter handle. The loading catheter and tracheostomy tube have a cam-action mechanism that gently forces the two parts apart as they are rotated relative to each other. This “cam action” disengagement allows for the removal of the loading catheter without subjecting the trachea or throat to undue pressure or forces that might cause trauma or increase recovery time. Other accessories like cannulas and obturators may attach and detach from the tracheostomy tube in a like manner. | 04-28-2011 |
20120017913 | Tracheostomy Tube Loading Catheter - There is provided a tracheostomy tube loading catheter with a handle, mid-section, tip portion and guiding catheter portion, where the guiding catheter and tip portions are non-detachably attached to the mid-section, and where the loading catheter has a cannula therethrough. | 01-26-2012 |
20120017916 | Dilator With Integrated Guiding Catheter - There is provided a device for performing a tracheotomy. The tracheostomy dilator has a body, tip and guiding catheter which are non-detachably attached to each other. The dilator has a cannula sized to accommodate a guide wire. After the trachea has been dilated, the entire device may be removed, leaving only the guide wire in the stoma, and a tracheostomy tube may be inserted over the guide wire and into the trachea. This substantially reduces the number of components and steps required for a successful tracheostomy procedure. | 01-26-2012 |
Sam C. Chan, Alpharetta, GA US
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20090090365 | BALLOON CUFF TRACHEOSTOMY TUBE WITH GREATER EASE OF INSERTION - There is provided a balloon cuffed tracheostomy tube with a balloon designed so as to enhance the tube's anchorability without sealing the tracheal stoma and to allow for an easier insertion into the trachea than a comparable tube with a thicker balloon. The tracheostomy tube device includes a conventional hollow tube having a proximal end portion, a distal end portion, and a bend region intermediate of the end portions. The distal end portion of the tube is arranged for insertion through a patient's throat and tracheal stoma and into the tracheal lumen. The device further includes an inflatable balloon enveloping a portion of the tube. More particularly, the balloon is equal to or less than 30 microns in thickness, allowing for a greater ease of insertion and insertion through a smaller stoma opening, than a comparable tube with a balloon having a thickness greater than 30 microns. | 04-09-2009 |
20090090366 | BALLOON CUFF TRACHEOSTOMY TUBE - There is provided a balloon cuffed tracheostomy tube with a balloon designed so as to enhance the tube's anchorability without sealing the tracheal stoma. The tracheostomy tube device includes a conventional curved hollow tube. The distal end of the tube is adapted for insertion through a tracheal stoma and into the tracheal lumen of a patient's throat. The device further includes an inflatable balloon enveloping a portion of the tube. The balloon has a distal portion substantially centered about and attached to the distal end portion of the tube. The balloon also has a proximal portion attached to the bend region of the tube and positioned substantially off-center relative to the proximal portion of the tube and about the bend region below the proximal plane of the device. Upon inflation, this configuration provides for expansion of the balloon around the distal end portion of the tube and the proximal end portion of the tube below the proximal plane of the device to seal the trachea below the tracheal stoma and to avoid sealing the trachea above the tracheal stoma. This configuration of the balloon should allow secretions to exit the stoma so that they do not accumulate and become a possible source of ventilator acquired pneumonia. | 04-09-2009 |
Seng Chan, Suwanee, GA US
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20150149311 | COMPACT POINT-OF-SALE SYSTEM - Various systems, methods, and apparatuses are described for facilitating a customer transaction via a point-of-sale terminal. One example system may comprise a point-of-sale terminal for facilitating a customer transaction. The system may further comprise a receipt printer for printing a receipt associated with the customer transaction. The printer may be built into the point-of-sale terminal. The point-of-sale terminal may be configured to be positioned on a substantially horizontal surface elevated above the ground. Similar and related methods, apparatuses, systems, and computer program products are also provided. | 05-28-2015 |
Sze Bun Chan, Roswell, GA US
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20090035146 | Airfoil shape for a turbine bucket and turbine incorporating same - Third stage turbine buckets have airfoil profiles substantially in accordance with Cartesian coordinate values of X, Y and Z′ set forth Table I wherein X and Y values are in inches and the Z′ values are non-dimensional values from 0 to 1 convertible to Z distances in inches by multiplying the Z′ values by the height of the airfoil in inches. The X and Y values are distances which, when connected by smooth continuing arcs, define airfoil profile sections at each distance Z. The profile sections at each distance Z are joined smoothly to one another to form a complete airfoil shape. The X, Y and Z distances may be scalable as a function of the same constant or number to provide a scaled up or scaled down airfoil section for the bucket. The nominal airfoil given by the X, Y and Z distances lies within an envelope of +/−.0.040 inches in directions normal to the surface of the airfoil. | 02-05-2009 |
20090053047 | Turbine bucket tip shroud edge profile - A turbine bucket includes a bucket airfoil having a tip shroud with a leading edge comprising two scalloped faces and a trailing edge comprising a third scalloped face defining leading and trailing edge profiles substantially in accordance with Cartesian coordinate values of X and Y as points 1-41 set forth in Table I. The X and Y values are distances in inches which, when respective points are connected by smooth, continuing arcs define the leading and trailing edge tip shroud scalloped profiles. The tip shroud further has first and second, upper and lower, Z form edge profiles substantially in accordance with Cartesian coordinate values of X and Y as points 42-59 and 60-77, respectively of Table II. | 02-26-2009 |