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With control responsive to sensed condition

Subclass of:

204 - Chemistry: electrical and wave energy

204000000 - PROCESSES AND PRODUCTS

204450000 - Electrophoresis or electro-osmosis processes and electrolyte compositions therefor when not provided for elsewhere

204471000 - Coating or forming of object

Patent class list (only not empty are listed)

Deeper subclasses:

Class / Patent application numberDescriptionNumber of patent applications / Date published
204472000 With control responsive to sensed condition 7
20090188797Drag Through Electro-Deposition System - A drag through electro-deposition system and a method of performing a drag through electro-deposition process on a vehicle body is disclosed. The system may include pairs of anodes, with each pair having a corresponding anode pair power supply. As a vehicle body is carried through the electro-deposition tank, the electric power to each pair is individually adjusted relative to the vehicle body position in the tank.07-30-2009
20110247936TECHNOLOGY FOR THE DEPOSITION OF ELECTRICALLY AND CHEMICALLY ACTIVE LAYERS FOR USE IN BATTERIES, FUEL CELLS AND OTHER ELECTROCHEMICAL DEVICES - A process and method is described for the deposition of the enhanced chemical and electrochemical activity layers essential for the operation of a battery, fuel cell or other electrochemical devices like sensors.10-13-2011
204473000 Temperature sensed 1
20120211365ELECTROPHORETIC-DEPOSITED SURFACES - A method of altering a property of a surface includes suspending a plurality of low surface energy particles in a solvent, agglomerating the suspension of particles, and subjecting the suspension of particle agglomerates to electrophoretic deposition onto a substrate for a predetermined time. The altered surface may be superhydrophilic or superhydrophobic.08-23-2012
204474000 Current sensed 4
20100200403METROLOGY METHODS AND APPARATUS FOR NANOMATERIAL CHARACTERIZATION OF ENERGY STORAGE ELECTRODE STRUCTURES - Embodiments described herein generally relate to methods and apparatus for forming an electrode structure used in an energy storage device. More particularly, embodiments described herein relate to methods and apparatus for characterizing nanomaterials used in forming high capacity electrode structures for energy storage devices. In one embodiment a process for forming an electrode structure for an energy storage device is provided. The process comprises depositing a columnar metal structure over a substrate at a first current density by a diffusion limited deposition process, measuring a capacitance of the columnar metal structure to determine a surface area of the columnar metal structure, and depositing three dimensional porous metal structures over the columnar metal structure at a second current density greater than the first current density.08-12-2010
20120085647APPARATUS AND METHOD FOR MINERALISING BIOLOGICAL MATERIALS - An apparatus and method for mineralising demineralised and hypo-mineralised biological material such as tooth or bone. The apparatus has a probe electrode for receiving a mineralisation agent and a counter electrode. It is also provided with a controller to control the electrical signal provided to the probe such that the extent of mineralisation of the biological material is controlled by modulating or changing the electrical signal provided by the probe based upon the measured output of the circuit formed from the probe, counter electrode and biological material. The electrical output provides a measure of the extent of mineralisation of the biological material which is compared with data from a reference technique which gives 3D structural information on an area of interest in the biological material.04-12-2012
20150329984THIN FILM DEPOSITION APPARATUS AND THIN FILM DEPOSITION METHOD USING ELECTRIC FIELD - A thin film deposition apparatus and a thin film deposition method using an electric field are provided. The thin film deposition apparatus includes: a first substrate; a plurality of electrodes in a 2D arrangement on the first substrate; and a solution provided on the plurality of electrodes and in which charged nanoparticles are distributed, wherein the charged nanoparticles are selectively deposited on at least a part of the plurality of electrodes by independently applying a voltage to each of the plurality of electrodes.11-19-2015
20160016336EQUIPMENT AND METHOD FOR THE GENERATIVE MANUFACTURE AND/OR REPAIR OF COMPONENTS - The present invention relates to equipment for the generative manufacture and/or repair of components, in particular of gas turbines, having a solidifying means (01-21-2016
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