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Fellingham, US

George Fellingham, San Jose, CA US

Patent application numberDescriptionPublished
20090029069WAVEFORM GENERATOR FOR MICRODEPOSITION CONTROL SYSTEM - A microdeposition system and method includes a head with a plurality of nozzles. A controller generates nozzle firing commands that selectively fire the nozzles to create a desired feature pattern. Configuration memory stores voltage waveform parameters that define a voltage waveform for each of the nozzles. A digital to analog converter (DAC) sequencer communicates with the configuration memory and the controller and outputs a first voltage waveform for a first nozzle when a nozzle firing command for the first nozzle is received from the controller. A resistive ladder DAC receives the voltage waveforms from the DAC sequencer. An operational amplifier (opamp) communicates with the resistive ladder DAC and amplifies the voltage waveforms. The nozzles fire droplets when the voltage waveforms received from the opamp exceed a firing threshold of the nozzle.01-29-2009
20090261178SUBMINIATURE THERMOELECTRIC FRAGRANCE DISPENSER - A dispenser for dispensing a liquid includes a chamber holding a supply of liquid, an annular conduit substantially filled with liquid from the chamber, and a thermoelectric transducer near one end of the annular conduit. Upon application of electrical current to the thermoelectric transducer, the transducer operates to cause boiling of a quantity of liquid in the annular conduit. Expansion of a resulting bubble forces liquid out the end of the annular conduit. The dispenser may include battery powered electronic control circuit that includes a supercapacitor. The liquid may be dispensed in periodic bursts. In one application, the dispenser is especially suited to automatically and unobtrusively dispense a fragrance, perfume, or other personal care liquid worn by a person. In some applications, the dispenser may be worn on or under an article of clothing, or attached to an article of jewelry.10-22-2009

Paul J. Fellingham, Holmdel, NJ US

Patent application numberDescriptionPublished
20100220715TECHNIQUE FOR PROVIDING TRANSLATION BETWEEN THE PACKET ENVIRONMENT AND THE PSTN ENVIRONMENT - Voice over Internet Protocol (VoIP) calls received in a Hybrid Fiber Coax (HFC) network (09-02-2010

Paul James Fellingham, Holmdel, NJ US

Patent application numberDescriptionPublished
20100132054System and Method for Securing a Computer System - A secured computer system includes a communication interface and an intrusion detection module. The computer system may be portable and configured for wireless communication with a user of the system. The user may activate and configure an alarm monitor, which may be triggered by motion of the computer system. If the triggered alarm is not deactivated, an alarm sequence is activated. If the alarm sequence is not cancelled, then security measures for protecting sensitive data on the computer system from unauthorized access may be executed. The security measures may include removing data or rendering a storage device inaccessible.05-27-2010

Peter J. Fellingham, San Diego, CA US

Patent application numberDescriptionPublished
20090079778INTELLIGENT PRINT MASK - A multi swath printing method for printing an image on an ink jet printing system is used to reduce image banding. The ink jet printing system includes a printhead with one or more ink ejection nozzles. The method entails forming a set of individual print masks. Each individual print mask has one or more groupings of two dimensional patterns of different frequencies and is assigned to a color of the ink jet printing system. The method ends by inputting the set of individual print masks formed into the ink jet printing system to form an input mask set and printing images using the input mask set to create an out-of-phase composite of the image printed. Banding is substantially reduced in the printed image and the printed image comprises a resolution between 300 dpi and 4800 dpi.03-26-2009
20100078870MEDIA ADVANCE CALIBRATION - A method of calibrating a media advance in a printer includes providing a mask to specify a printing configuration of a calibration target; forming a media feed calibration target on the print media by: i. printing the calibration target on a print media using an array of the marking elements, ii. advancing the print media by a media advance amount, iii. printing the calibration target on the print media using the array of the marking elements; iv. advancing the print media by the previous media advance amount plus an offset amount, and v. repeating steps iii. and iv. until the media feed calibration target is complete; measuring the optical reflectance of the media feed calibration target as a function of position along the media feed calibration target; identifying a position along the media feed calibration target corresponding to the location at which a maximum in the optical reflectance occurs; and comparing the location at which a maximum in the optical reflectance occurs to a predetermined location of the media feed calibration target to calibrate media advance in the printer.04-01-2010
20100079534MARKING ELEMENT REGISTRATION - A method of measuring a relative offset between a first array of marking elements and a second array of marking elements in a printer; a registration target; and a printer are provided. The method includes printing a target by printing a first group of pixels using a plurality of marking elements from the first array and printing a second group of pixels using a plurality of marking elements from the second array; scanning the target to measure an optical characteristic of the target as a function of position along the target; and identifying a position at which an extreme in the optical characteristic of the target occurs.04-01-2010
20100271416MEDIA ADVANCE CALIBRATION - A method of calibrating a media advance in a printer includes providing a mask to specify a printing configuration of a calibration target; forming a media feed calibration target on the print media by: i. printing the calibration target on a print media using an array of the marking elements, ii. advancing the print media by a media advance amount, iii. printing the calibration target on the print media using the array of the marking elements; iv. advancing the print media by the previous media advance amount plus an offset amount, and v. repeating steps iii. and iv. until the media feed calibration target is complete; measuring the optical reflectance of the media feed calibration target as a function of position along the media feed calibration target; identifying a position along the media feed calibration target corresponding to the location at which a maximum in the optical reflectance occurs; and comparing the location at which a maximum in the optical reflectance occurs to a predetermined location of the media feed calibration target to calibrate media advance in the printer.10-28-2010

Patent applications by Peter J. Fellingham, San Diego, CA US