Korean Business & Litigation Group Class Action & Mass Tort Consumer Litigation Defense & Financial Services Transportation Arbitration Architects & Engineers Appeals Accountants Errors & Omissions Construction Healthcare Commercial Litigation Consumer and Class Action Litigation Legal Malpractice Products Liability Professional Liability
ISLN:
912631361
Admitted:
1996
University:
Oberlin College, B.A., 1990
Law School:
The John Marshall Law School, J.D.; The John Marshall Law School, J.D.; The John Marshall Law School, J.D.; The John Marshall Law School, J.D.; The John Marshall Law School, J.D., 1996; The John Marshall Law School, J.D., 1996; The John Marshall Law School, J.D., 1996; The John Marshall Law School, J.D., 1996
Dr. Yu graduated from the Loyola University Chicago Stritch School of Medicine in 1979. He works in Springfield, IL and specializes in Internal Medicine. Dr. Yu is affiliated with Saint Johns Hospital.
Dr. Yu graduated from the University of Santo Tomas Faculty of Medicine and Surgery, Manila, Philippines in 1982. He works in Jersey City, NJ and 2 other locations and specializes in Pediatrics and Adolescent Medicine. Dr. Yu is affiliated with Clara Maass Medical Center and Jersey City Medical Center.
Dr. Yu graduated from the Boston University School of Medicine in 1994. He works in Landover, MD and specializes in Nephrology. Dr. Yu is affiliated with Prince Georges Hospital Center.
Vascular Access Centers Jan 2006 - Jul 2018
Medical Director
William D Yu Md Jan 2006 - Jul 2018
Interventional Nephrologist
Mid Atlantic Nephrology Associates Jul 1999 - Dec 2005
Physician and Partner
Vice President, Area Sales, NE APAC at UTi Worldwide Inc.
Location:
Shanghai City, China
Industry:
Logistics and Supply Chain
Work:
UTi Worldwide Inc. - Shanghai City, China since Apr 2013
Vice President, Area Sales, NE APAC
UTi Worldwide Inc. - Shanghai Mar 2012 - Mar 2013
Regional Vice President, Area Sales, Asia Pacific
UTi Worldwide Inc. - Shanghai Nov 2010 - Feb 2012
Vice President, Sales, Greater China
UTi, United States, Inc - Greater Los Angeles Area Oct 2009 - Nov 2010
Director of Business Development, Western Region
UTi, United States, Inc Oct 2008 - Nov 2010
Route Development Director, Greater China
Education:
The University of Texas at Austin
BSEE, Electrical Engineering
Skills:
International Logistics Ocean 3PL Air Freight Supply Chain Management Asia Pacific Freight Forwarding Logistics International Business
Us Patents
Body Height Adjustable Electric Bulb For Illuminated Signs
A body height adjustable electric bulb for illuminated sign wherein the bulb comprises a height adjusting unit inserted into an open end of a bulb body against friction between them such that the height of the bulb body can be adjusted by a force against such friction. A connector is fixed on a bulb head and connects to a joint end of the height adjusting unit such that the bulb body can be rotated by a proper torque.
Electronic Ballast Suitable For Lighting Control In Fluorescent Lamp
Changgen Yang - Shanghai, P.R., CN William Yu - Silver Spring MD 20904
International Classification:
H05B 3702
US Classification:
315224, 315247, 315DIG 5
Abstract:
An electronic ballast suitable for lighting control for a fluorescent lamp which includes a bridge rectifier for rectifying input commercial power supply voltage and a high frequency oscillator for feeding the fluorescent lamp a high frequency supply voltage, wherein the electronic ballast further comprises a linear active switching mode filter circuit for filtering the output of bridge rectifier by a linear active switching mode and feeding a supply voltage to the high frequency oscillator. With such configuration, the electronic ballast can be combined with a conventional thyristor lighting controller.
Lamp Body For A Fluorescent Compact Spot And Flood Light Source
A lamp body of the compact spot and flood light type suitable for use with a compact fluorescent light source, wherein the lamp body includes a lamp head, a lampshade for reflecting the light emitted from the light source, and an adapter connected to the lamp head, wherein the lampshade is formed by the integration of at least two coaxial conical surfaces with different vertex angles.
An eccentric planar fluorescent tube includes an outer planar fluorescent tubular member that extends substantially but not completely about a center point and which is extended by two inner portions that extend from a first peripheral portion of the outer tubular member and on opposite sides of the center point and terminate at ends proximate to an opposite peripheral portion of the outer tubular member and wherein the ends are connected by a leg member for supplying power to the fluorescent tube. In one embodiment, the leg member includes electrical contacts that extend substantially in a plane of the outer tubular member and, in another embodiment, a central adapter may be provided including electrical contacts that extend transversely with respect to the plane of the outer tubular member.
Emergency signs and combination emergency signs and emergency lights wherein the combination signs are compact for shipment and are energy efficient using first interior light emitting diodes, powered by an AC power source, for illumination of messages formed in at least one side wall of the emergency signs and having at least one emergency light emitting diode lamp for providing emergency lighting in the event of AC power failure and wherein the at least one emergency light emitting diode lamp, in some embodiments, is selectively deployable and adjustable relative to the signs, and in others, is fixedly mounted relative to the signs.
Kind Of Method Of Constituting Light Source Using Multiple Light-Emitting Units
A method for forming a light source by plurality of light-emitting units, includes: step (A), determining the number of the light-emitting units based on following factors: the factors include a maximum supply voltage of a power supply circuit and a working voltage of each of the light-emitting units; step (B), determining a set power of each of the light-emitting units based on a set power of the light source and the number of the light-emitting units determined in the step (A); step (C), fabricating or selecting each of the light-emitting units based on the working voltage of each of the light emitting units and the set power of each of the light-emitting units determined in the step (B); step D), forming the light source by connecting each of the light-emitting units obtained in the step (C) in series according to the number of the light-emitting units determined in the step (A). For the light source formed as the above method, the high efficient power supply with the maximum output voltage, to the light source load, can be realized and the same power supply circuit can supply power to the light source with different set power with maximum supply efficiency.
Light Emitting Diode And Method For Fabricating Thereof
The present invention provides a light-emitting diode (LED) and a method for manufacturing said LED. The LED is characterized that, the silica gel as the interlayer is provided between the transparent organic material and the chip. The method for manufacturing is characterized that, a gel applying step for applying the silica gel and the solidifying step for solidifying the semi-finished product of LED applied with the silica gel are included prior to the material packaging step for packaging using the transparent organic material. The LED of this invention and the LED manufactured by the method of this invention have no light decay for the low-power, such as Ø5 mm or less LED, and little light decay for the high-power LED, and have the advantages of excellent weathering resistance and low production cost.
Architecture Of A Power Supply Circuit With Power Factor Correction
An improved architecture of a power supply circuit with power factor correction, the power supply circuit includes power supply circuit output terminals and a voltage negative feedback circuit, the power supply circuit output terminals include a high potential terminals and a low potential terminals, the voltage negative feedback circuit includes a first feedback circuit and a second feedback circuit connected in series in order from the high potential terminal to the low potential terminal, a connection point of the first feedback circuit and the second feedback circuit acts as a feedback signal output terminal through which the voltage negative feedback circuit outputs a feedback signal, in the improved architecture, the first feedback circuit is replaced by a light source branch including a constant-current light source, and the second feedback circuit is replaced by a resistor branch for determining a working current of the light source branch. This improved architecture can perform a constant-current supply with high power factor and high efficiency for the light source.