John E. Rogers, Vero Beach US
John E. Rogers, Vero Beach, FL US
Patent application number | Description | Published |
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20110102105 | MEMS-BASED TUNABLE FILTER - A filter device is provided including a substrate ( | 05-05-2011 |
20110188168 | HIGH ACCURACY MEMS-BASED VARACTORS - Systems including varactor devices are provided. A varactor device ( | 08-04-2011 |
20110198202 | MEMS-BASED ULTRA-LOW POWER DEVICES - A gap closing actuator (GCA) device ( | 08-18-2011 |
20130032570 | METHOD OF MANUFACTURING A SWITCH SYSTEM - A method for manufacturing a micro electro-mechanical system (MEMS) switch system ( | 02-07-2013 |
20140054143 | SWITCHES FOR USE IN MICROELECTROMECHANICAL AND OTHER SYSTEMS, AND PROCESSES FOR MAKING SAME - Embodiments of switches ( | 02-27-2014 |
20140055215 | DISTRIBUTED ELEMENT FILTERS FOR ULTRA-BROADBAND COMMUNICATIONS - A method for constructing a radio frequency filter ( | 02-27-2014 |
20140076698 | SWITCHES FOR USE IN MICROELECTROMECHANICAL AND OTHER SYSTEMS, AND PROCESSES FOR MAKING SAME - Embodiments of switches ( | 03-20-2014 |
20140076699 | MEMS SWITCHES AND OTHER MINIATURIZED DEVICES HAVING ENCAPSULATING ENCLOSURES, AND PROCESSES FOR FABRICATING SAME - Miniaturized devices such as MEMS switches ( | 03-20-2014 |
20140104114 | WAFER-LEVEL RF TRANSMISSION AND RADIATION DEVICES - Method for constructing a dipole radio frequency antenna includes depositing on a dielectric substrate at least one layer each of a conductive material, a dielectric material, and a sacrificial material. The deposit of conductive material is controlled to form a transmission line, antenna radiating element and associated antenna feed. The transmission line includes a shield formed of one or more walls and a center conductor disposed coaxially within the shield. An antenna feed portion is electrically connected to the center conductor and extends through a feed port on the transmission line to connect with an antenna radiating element. The radiating element has an elongated form which extends a first predetermined length transverse to an axis of the transmission line. The method also includes dissolving at least one layer of the sacrificial material to form a clearance space between the surface of the dielectric substrate and the antenna radiating element. | 04-17-2014 |
20140111285 | DIRECTIONAL COUPLERS WITH VARIABLE FREQUENCY RESPONSE - Embodiments of coupler systems ( | 04-24-2014 |
20140152143 | CONTROL CIRCUITRY ROUTING CONFIGURATION FOR MEMS DEVICES - A method for constructing a MEMS system includes first depositing on a surface of a substrate a first plurality of thin film layers formed of dielectric material. The first plurality of thin-film layers includes at least one conductive trace extending a distance on the substrate, parallel to the surface. A second plurality of layers is then deposited to form at least one MEMS device. The MEMS device is responsive to a control signal applied to a first input terminal and an electrical connection is formed from the conductive trace to the input terminal. | 06-05-2014 |
20140152400 | NOVEL PHASE SHIFTERS AND TUNING ELEMENTS - Embodiments of phase shifters ( | 06-05-2014 |
20140160706 | MONOLITHICALLY INTEGRATED RF SYSTEM AND METHOD OF MAKING SAME - Radio frequency system ( | 06-12-2014 |