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Marxer

Christian Marxer, Mauren Fuerstentum LI

Patent application numberDescriptionPublished
20100221421POWDER SPRAY COATING METHOD AND DEVICE THEREFOR - A powder spraycoating method and powder spraycoating equipment. A dense phase powder pump is used. According to a predetermined conveying-air function in a control unit, different rates of compressed conveying air can be defined for different powder rates. In one predetermined total-air function in the control unit, the sum of total-air rate composed of the rate of compressed conveying air and of the rate of supplemental compressed air can be kept constant even if the rate of compressed conveying air changes.09-02-2010
20110162579POWDER FEEDING METHOD, POWDER FEEDING APPARATUS AND ELECTROSTATICAL POWDER SPRAY COATING APPARATUS - A coating powder feed method, coating powder feeding device, electrostatic powder spraycoating apparatus containing such a coating powder feeding device. The invention includes a dense phase powder pump fitted with at least one feed chamber. A control signal to create a partial vacuum in the feed chamber is generated no earlier than simultaneously with, preferably by a predetermined delay time after, a control signal opening a powder intake valve of the feed chamber, as a result of which the beginning of partial vacuum buildup in the feed chamber shall take place no earlier than simultaneously with the initial opening of the powder intake valve or by a defined time delay after the opening of the powder intake valve.07-07-2011

Christian Marxer, Fuerstentum LI

Patent application numberDescriptionPublished
20100212589POWDER SPRAYCOATING CONTROL SYSTEM AND ITS COMBINATION WITH POWDER FEEDING DEVICE OR WITH POWDER SPRAYCOATING DEVICE - A powder spraycoating control system and its combination with a powder pump or with a powder spraycoating unit. The control system contains an controller programmed to alternatingly operate a powder spraycoating unit in turn containing an injector serving as the powder pump or a powder spraycoating unit containing a dense phase powder pump serving as the powder pump.08-26-2010
20100213281FEEDING DEVICE FOR POWDER SPRAY COATING DEVICE - A powder spraycoating equipment's powder feed apparatus containing a dense phase powder pump fitted with at least one, preferably two feed chambers each of which comprises at one chamber end a powder intake valve and at the opposite chamber end a powder outlet valve and further comprises at least one air exchange aperture to alternatingly apply compressed conveying air or a partial vacuum to the feed chamber, characterized by an integral structural block, by the feed chambers being constituted in the structural block, by all those first control valves that are connected in fluid communication to the minimum of one feed chamber for the purpose of applying compressed conveying air and a partial vacuum to it, being configured at the structural block and being directly connected, in fluid communication and by means of ducts constituted in the structural block, to the minimum of one feed chamber.08-26-2010
20100243759POWDER SPRAY COATING DEVICE AND POWDER TRANSPORT DEVICE THEREFOR - The invention relates to a powder feed apparatus of a powder spraycoating equipment, containing a dense phase powder pump fitted with at least one feed chamber, preferably two feed chambers, alternatingly discharging coating powder, each feed chamber having one powder intake valve at a powder intake to aspirate coating powder during a suction stage and one powder outlet valve at a powder outlet to discharge coating powder during a discharge stage; further control valves to operate the dense phase powder pump; further an electric control unit containing at least one computer controlling the dense phase powder pump by means of said control valves, characterized in that a dependence mode of the total open time (t09-30-2010

Cornel Marxer, Neucahtel CH

Patent application numberDescriptionPublished
20110072646WAFER LEVEL HERMETICALLY SEALED MEMS DEVICE - A hermetically sealed microelectromechanical system (MEMS) package includes a MEMS switch having a movable portion and a stationary portion with an electrical contact thereon. A glass lid is anodically bonded to the MEMS switch to form a sealed cavity over the movable portion of the MEMS switch. The glass lid includes a contact aperture to allow access to the electrical contact on the stationary portion of the MEMS switch. A family of body-implantable hermetically-sealed MEMS packages are provided according to certain aspects and embodiments of the present invention.03-31-2011

Patent applications by Cornel Marxer, Neucahtel CH

Cornel Marxer, Neuchatel CH

Patent application numberDescriptionPublished
20090059344MICROMIRROR DEVICE - A micromirror device (03-05-2009
20110013870COUPLING DEVICE FOR OPTICAL FIBRES - A coupling device (01-20-2011
20120140303MICROMECHANICAL ELEMENT MOBILE ALONG AT LEAST ONE AXIS OF ROTATION - The invention concerns a micromechanical element (06-07-2012

Patent applications by Cornel Marxer, Neuchatel CH

John E. Marxer, Eagan, MN US

Patent application numberDescriptionPublished
20110135537CONTAINER AND SYSTEM FOR DECONTAMINATING A MEDICAL DEVICE WITH A FOG - A pouch for retaining an endoscope during and after a decontamination process includes a first pouch side, a second pouch side attached to the first pouch side to form the pouch that is configured to retain the endoscope, and a port member coupled to the second pouch side. The second pouch side is securable to the first pouch side to seal the endoscope within the pouch. The second pouch side is configured to permit passage of a decontaminating substance. The port member is coupled to the second pouch side and includes an external interface configured to be connected to a device that provides the decontaminating substance for passage through the port member into an interior of the pouch.06-09-2011
20140369887CONTAINER AND SYSTEM FOR DECONTAMINATING A MEDICAL DEVICE WITH A FLUID - A method for decontaminating a medical device includes enclosing the medical device in an enclosure including a fog-permeable layer and an exterior port member coupled to the fog-permeable layer. The exterior port member of the enclosure is coupled to a chemical dispersing interface in a decontamination chamber. A pressure in the decontamination chamber is reduced to a sub-atmospheric pressure in a first evacuation step. A room temperature decontaminating fluid is introduced as a fog into the decontamination chamber. The fog is held in the decontamination chamber for a decontaminating time. The pressure in the decontamination chamber is reduced to a sub-atmospheric pressure in a second evacuation step. The decontamination chamber is vented to atmospheric pressure.12-18-2014

Ricard Marxer, Barcelona ES

Patent application numberDescriptionPublished
20120106746Technique for Estimating Particular Audio Component - Candidate frequencies per unit segment of an audio signal are identified. First processing section identifies an estimated train that is a time series of candidate frequencies, each selected for a different one of the segments, arranged over a plurality of the unit segments and that has a high likelihood of corresponding to a time series of fundamental frequencies of a target component. Second processing section identifies a state train of states, each indicative of one of sound-generating and non-sound-generating states of the target component in a different one of the segments, arranged over the unit segments. Frequency information which designates, as a fundamental frequency of the target component, a candidate frequency corresponding to the unit segment in the estimated train is generated for each unit segment corresponding to the sound-generating state. Frequency information indicative of no sound generation is generated for each unit segment corresponding to the non-sound-generating state.05-03-2012
20120106758Technique for Suppressing Particular Audio Component - A coefficient train processing section, which sequentially generates per unit segment a processing coefficient train for suppressing a target component of an audio signal, includes a basic coefficient train generation section and coefficient train processing section. The basic coefficient train generation section generates a basic coefficient train where basic coefficient values corresponding to frequencies within a particular frequency band range are each set at a suppression value that suppresses the audio signal while coefficient values corresponding to frequencies outside the particular frequency band range are each set at a pass value that maintains the audio signal. The coefficient train processing section generates the processing coefficient train, per unit segment, by changing, to the pass value, each of the coefficient values corresponding to frequencies other than the target component among the coefficient values corresponding to the frequencies within the particular frequency band range.05-03-2012
20120201385Graphical Audio Signal Control - Signal processing section of a terminal converts acquired audio signals of a plurality of channels into frequency spectra set, calculates sound image positions corresponding to individual frequency components, and displays, on a display screen, the calculated sound image positions results by use of a coordinate system having coordinate axes of the frequency components and sound image positions. User-designated partial region of the coordinate system is set as a designated region and an amplitude-level adjusting amount is set for the designated region, so that the signal processing section adjusts amplitude levels of frequency components included in the frequency spectra and in the designated region, converts the adjusted frequency components into audio signals and outputs the converted audio signals.08-09-2012

Simon Marxer, Oro Valley, AZ US

Patent application numberDescriptionPublished
20140052034PORTABLE MASSAGE CHAMBER - A portable massage chamber for is provided. The portable massage chamber may include a plurality of support legs and a top frame coupled to an end of each of the legs. The top frame may be positioned above a floor surface and may include at least one support member. At least one attachment element may be moveably coupled to the at least one support member. At least one strand of fabric may be secured to the at least one attachment element. The strand of fabric may be a warp-knit fabric material.02-20-2014
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