Terrel
Lamont Roscoe Terrel, King Of Prussia, PA US
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20120252805 | NOVEL COMPOUNDS - The present invention relates to novel NADPH oxidase II inhibitors and their use in the treatment of diseases mediated by the NADPH oxidase II enzyme. | 10-04-2012 |
Mark Terrel, Denver, CO US
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20140052838 | SCRIPTING FOR IMPLEMENTING POLICY-BASED TRAFFIC STEERING AND MANAGEMENT - Methods, systems, and devices are described for managing network communications. A traffic manager module may receive a script over a management plane of a packet core, interpret the script to identify a traffic management policy; and dynamically modify at least one aspect of a proxy connection over a bearer plane of the packet core at the traffic manager module based on the identified traffic management policy. | 02-20-2014 |
20140056144 | NETWORK TRAFFIC MANAGEMENT USING STREAM-SPECIFIC QoS BITS - Methods, systems, and devices are described for managing network communications. A traffic manager module configured to serve as a proxy between a plurality of client devices and a network service may receive a plurality of messages for the network service. Each message may be associated with at least one QoS parameter. The traffic manager module may transmit the plurality of messages to the network service over a connection between the traffic manager module and the network service. The QoS of the connection between the traffic manager module and the network service may be dynamically altered during the transmission of a first message of the plurality of messages based on the at least one QoS parameter associated with the first message. | 02-27-2014 |
20140056161 | NETWORK TRAFFIC MANAGER ARCHITECTURE - Methods, systems, and devices are described for managing network communications. A traffic manager module may receive a message from a first network device to a second network device. The traffic manager module may serve as a proxy between the first network device and the second network device. The traffic manager module may perform an application layer inspection at the traffic manager module on at least one of the message or a response to the message from the second network device, and forward the message or the response to the message to a third network device based on the application layer inspection at the traffic manager module. | 02-27-2014 |
20140059247 | NETWORK TRAFFIC MANAGEMENT USING SOCKET-SPECIFIC SYN REQUEST CACHES - Methods, systems, and devices are described for managing network communications at a traffic manager module serving as a proxy to at least one network service for at least one client device. The traffic manager module may maintaining a SYN request cache for a socket implemented by the traffic manager module. Active SYN request messages may be stored at the socket in the SYN request cache. The traffic manager module may determine a status of the SYN request cache and ignore additional SYN request messages at the socket based on the determined status of the SYN request cache. | 02-27-2014 |
20140068103 | STATEFUL FAILOVER MANAGEMENT IN A NETWORK TRAFFIC MANAGER - Methods, systems, and devices are described for stateful failover in traffic manager module functioning as a proxy between at least one first network device and at least one server. In a first set of embodiments, an amount of synchronized state information may be reduced through a controlled use of acknowledgment messages. In a second set of embodiments, state information may be synchronized to a standby traffic manager module in response to changes in a sequence number delta between two logically paired connections. In a third set of embodiments, connections may be restored at a standby traffic manager module based on stored connection information, a synchronized sequence number delta stack, and rediscovered sequence numbers. | 03-06-2014 |
Matthew Terrel, Los Altos, CA US
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20120086934 | SLOW-LIGHT FIBER BRAGG GRATING SENSOR - In certain embodiments, an optical device and a method of use is provided. The optical device can include a fiber Bragg grating and a narrowband optical source. The narrowband optical source can be configured to generate light. A first portion of light can be transmitted along a first optical path extending along and through the length of the fiber Bragg grating at a group velocity. The light can have a wavelength at or in the vicinity of a wavelength at which one or more of the following quantities is at a maximum value: (a) the product of the group index spectrum and a square root of the power transmission spectrum, (b) the slope of a product of the group index spectrum and one minus the power transmission spectrum, and (c) the slope of a product of the group index spectrum and the power transmission spectrum. | 04-12-2012 |
20140340688 | SLOW-LIGHT SENSOR UTILIZING AN OPTICAL FILTER AND A NARROWBAND OPTICAL SOURCE - An optical device and a method of using an optical filter are provided. The optical device includes an optical filter and a narrowband optical source. The optical filter has a refractive index that varies along a length of the optical filter. The narrowband optical source is in optical communication with the optical filter and is configured to generate light having a wavelength at or in the vicinity of at least one of a wavelength corresponding to a local transmission maximum and a wavelength corresponding to a maximum slop of the group index spectrum of the optical filter. | 11-20-2014 |
Matthew A. Terrel, Los Altos, CA US
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20110001981 | FIBER BRAGG GRATING DEVICES UTILIZING SLOW LIGHT - In certain embodiments, an optical device and a method of use is provided. The optical device includes a fiber Bragg grating having a substantially periodic refractive index modulation along a length of the fiber Bragg grating. The fiber Bragg grating has a power transmission spectrum with a plurality of local transmission minima, wherein each pair of neighboring local transmission minima has a local transmission maximum therebetween. The local transmission maximum has a maximum power at a transmission peak wavelength. The optical device further includes a narrowband optical source in optical communication with a first optical path and a second optical path. The narrowband optical source is configured to generate light having a wavelength at or in the vicinity of a local transmission maximum or at or in the vicinity of a wavelength at which the power transmission spectrum has a maximum slope between a local transmission maximum and either one of two local transmission minima neighboring the local transmission maximum. | 01-06-2011 |
20110134432 | SYSTEM AND METHOD FOR USING SLOW LIGHT IN OPTICAL SENSORS - An optical sensor includes at least one optical coupler and an optical waveguide in optical communication with the at least one optical coupler. The optical waveguide is configured to receive a first optical signal from the at least one optical coupler. The first optical signal has a group velocity and a phase velocity while propagating through at least a portion of the optical waveguide, the group velocity less than the phase velocity. An interference between the first optical signal and a second optical signal is affected by relative movement between the optical waveguide and the at least one optical coupler. | 06-09-2011 |
Matthew A. Terrel, Houston, TX US
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20090052829 | OPTICAL DEVICE USING A HOLLOW-CORE PHOTONIC BANDGAP FIBER - An optical device includes a hollow-core photonic-bandgap fiber, wherein at least a portion of the hollow-core photonic-bandgap fiber has a longitudinal axis and is twisted about the longitudinal axis. | 02-26-2009 |
20100021115 | OPTICAL DEVICE USING A HOLLOW-CORE PHOTONIC-BANDGAP FIBER - An optical device includes a hollow-core photonic-bandgap fiber, wherein at least a portion of the hollow-core photonic-bandgap fiber is adjustably axially twisted. | 01-28-2010 |
Matthew A. Terrel, Stanford, CA US
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20090059238 | SYSTEM AND METHOD FOR USING SLOW LIGHT IN OPTICAL SENSORS - An optical sensor includes at least one optical coupler and an optical waveguide in optical communication with the at least one optical coupler. The optical waveguide is configured to receive a first optical signal from the at least one optical coupler. The first optical signal has a group velocity and a phase velocity while propagating through at least a portion of the optical waveguide, the group velocity less than the phase velocity. An interference between the first optical signal and a second optical signal is affected by perturbations to at least a portion of the optical sensor. | 03-05-2009 |
20090244544 | UNIDIRECTIONAL CROW GYROSCOPE - An optical waveguide gyroscope includes at least one optical coupler configured to receive a first optical signal at a first port, to transmit a second optical signal to a second port, and to transmit a third optical signal to a third port. The optical waveguide gyroscope further includes a plurality of resonant waveguides optically coupled to the second port and the third port. The resonant waveguides are generally adjacent to one another and optically coupled to one another. At least a portion of the second optical signal propagates from the second port to the third port by propagating through the plurality of resonant waveguides, and at least a portion of the third optical signal propagates from the third port to the second port by propagating through the plurality of resonant waveguides. The at least a portion of the second optical signal propagates through each resonant waveguide of the plurality of resonant waveguides in a clockwise direction and the at least a portion of the third optical signal propagates through each resonant waveguide of the plurality of resonant waveguides in a counterclockwise direction. | 10-01-2009 |
20120069346 | METHOD OF USING A UNIDIRECTIONAL CROW GYROSCOPE - A method for detecting rotation includes providing a plurality of resonant waveguides generally adjacent to one another and optically coupled to one another. Each resonant waveguide of the plurality of resonant waveguides is configured to allow light to propagate along the resonant waveguide in a planar path. The method further includes propagating light along each path in a clockwise direction or along each path in a counterclockwise direction. | 03-22-2012 |
Michael Terrel, London GB
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20140169573 | AUDIO FORMAT - Mechanisms for obtaining an audio signal and information relating to the recording conditions of the audio signal are provided, the method comprising: obtaining an audio signal, wherein the audio signal is a voltage signal representation of sound, the voltage signal having been converted from a pressure signal; obtaining first information indicative of at least one objective feature and/or at least one perceptual feature associated with the conversion of the pressure signal into the audio signal in the form of a voltage signal representation; storing the audio signal, the first information, and second information identifying a relationship between the audio signal and the first information; determining an error adjustment for adjusting the audio signal based on the obtained information; applying the error adjustment to the audio signal to create an error-adjusted audio signal; and obtaining an audio signal and information relating to the recording conditions of the audio signal. | 06-19-2014 |
Ronald Lee Terrel, Edmonds, WA US
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20080287570 | METHOD OF MAKING AND USE OF A HEAVY DUTY PAVEMENT STRUCTURE - The present invention is directed to a heavy duty pavement structure comprising an open-graded asphalt layer fortified with a non-segregating grout mixture. The heavy duty pavement structure is made through the steps including forming an open-graded asphalt layer and then fortifying the layer with a non-segregating grout mixture that includes a predetermined amount of portland cement, sand and cement binder system. | 11-20-2008 |
Ronald Lee Terrel, Edmond, WA US
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20130036947 | METHOD OF MAKING AND USE OF A HEAVY DUTY PAVEMENT STRUCTURE - The present invention is directed to a heavy duty pavement structure comprising an open-graded asphalt layer fortified with a non-segregating grout mixture. The heavy duty pavement structure is made through the steps including forming an open-graded asphalt layer and then fortifying the layer with a non-segregating grout mixture that includes a predetermined amount of portland cement, sand and cement binder system. | 02-14-2013 |
William Lee Terrel, Austin, TX US
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20090049305 | METHOD AND SYSTEM FOR HIERARCHICAL PLATFORM BOOT MEASUREMENTS IN A TRUSTED COMPUTING ENVIRONMENT - An architecture for a distributed data processing system comprises a system-level service processor along with one or more node-level service processors; each are uniquely associated with a node, and each is extended to comprise any components that are necessary for operating the nodes as trusted platforms, such as a TPM and a CRTM in accordance with the security model of the Trusted Computing Group. These node-level service processors then inter-operate with the system-level service processor, which also contains any components that are necessary for operating the system as a whole as a trusted platform. A TPM within the system-level service processor aggregates integrity metrics that are gathered by the node-level service processors, thereafter reporting integrity metrics as requested, e.g., to a hypervisor, thereby allowing a large distributed data processing system to be validated as a trusted computing environment while allowing its highly parallelized initialization process to proceed. | 02-19-2009 |