Fyson
John R. Fyson, Hackney London GB
Patent application number | Description | Published |
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20090094188 | FACILITATING IDENTIFICATION OF AN OBJECT RECORDED IN DIGITAL CONTENT RECORDS - Embodiments of the present invention facilitate identification of one or more objects in digital content records at least by knowing or estimating what region of space-time was captured by the digital content records and where the objects were located at various points in time. An object's location versus time is referred to herein as a space-time line. Any digital content record whose captured space-time region intersects with a particular object's space-time line is identified as having a possibility of having recorded the particular object. | 04-09-2009 |
20090231670 | DISPLAY ELEMENTS - A device comprises one or more dielectric layers, one side of the layer or layers being conductive. A hydrophobic layer is provided on the other side of the dielectric layer. First and second fluids are located on the surface of the hydrophobic layer, the fluids being immiscible with each other. The first fluid comprises at least one ionic liquid. The conductive layer and first fluid are arranged such that they can be electrically connected. | 09-17-2009 |
John R. Fyson, Hackney GB
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20090081360 | OLED DISPLAY ENCAPSULATION WITH THE OPTICAL PROPERTY - A process of making an optical film or optical array comprises: a) simultaneously directing a series of gas flows along elongated substantially parallel channels to form a first thin film on a substrate; wherein the series of gas flows comprises, in order, at least a first reactive gaseous material, an inert purge gas, and a second reactive gaseous material; wherein the first reactive gaseous material is capable of reacting with a substrate surface treated with the second reactive gaseous material to form the first thin film; b) repeating step a) a plurality of times to produce a first thickness of a first film layer with a first optical property; wherein the process is carried out at or above atmospheric pressure; c) repeating steps a) and b) to produce a second film layer; and wherein the process is carried out substantially at or above atmospheric pressure. | 03-26-2009 |
20090127120 | Method of Forming Mirrors on a Conducting Substrate - The invention provides a method of producing a mirror under a layer of hydrophilic colloid ( | 05-21-2009 |
20120076929 | THIN FILM ELECTRONIC DEVICE FABRICATION PROCESS - A thin film electronic device fabrication process includes providing an electronic device on a substrate, a first reactant gaseous material, a second reactant gaseous material, an inert gaseous material; and a delivery head through which the reactant gaseous materials and the inert gaseous material are simultaneously directed toward the electronic device and the substrate. One or more of the reactant gaseous materials and the inert gaseous material flows through the delivery head. The flow of the one or more of the reactant gaseous materials and the inert gaseous material generates a pressure to create a gas fluid bearing that maintains a substantially uniform distance between the delivery head and the substrate. Relative motion between the delivery head and the substrate causes the second reactant gaseous material to react with at least a portion of the electronic device and the substrate that has been treated with the first reactant gaseous material. | 03-29-2012 |
John Richard Fyson, London GB
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20140230885 | PHOTOVOLTAIC DEVICES - In order to mitigate tampering with a solar cell, the present invention provides a photovoltaic device comprising at least one photovoltaic cell housed within an encapsulant forming a protective barrier for the at least one photovoltaic cell; a switch operable to allow delivery of electricity from the device; and means, also housed within the encapsulant, to render the device inoperable, preferably permanently inoperable, upon tampering with the device. | 08-21-2014 |
John Richard Fyson, Uxbridge, Middlesex GB
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20150340169 | SUPERCAPACITOR - A supercapacitor comprises a single core (preferably an electrically conducting fibre core) having sequential coaxial layers of: (i) a first electrode, (ii) a gelled electrolyte which functions as a separator for the supercapacitor, (iii) a second electrode, and (iv) a conductor for collecting current. A further supercapacitor layer can be provided. The supercapacitor fibre can be incorporated into fabric to form articles of clothing. | 11-26-2015 |