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Dawe, US

Angela Dawe, Vero Beach, FL US

Patent application numberDescriptionPublished
20090188442Decorative Accessories for Pets - A decorative accessory for a pet includes a harnessing member, a leash member, and a plurality of charm elements. The harnessing member includes at least one strap element, each having a plurality of engagement locations, and a fastening element. The plurality of engagement locations is configured on the each strap element. The fastening element is disposed on the each strap element. The leash member includes a strip element having a first end segment and a second end segment, a plurality of engagement emplacements configured on the strip element, and a connecting element disposed at the first end segment for connecting the leash member with the harnessing member. Each charm element of the plurality of charm elements includes an attaching mechanism having a female engagement element and a male engagement element adapted to secure the each charm element to at least one of the harnessing member and the leash member.07-30-2009

Brandon Dawe, Farmington Hills, MI US

Patent application numberDescriptionPublished
20090218160Adjustable Vehicle Transmission Shifters - Disclosed herein are embodiments of a vehicle transmission shifter and methods of adjusting the vehicle transmission shifter. The vehicle transmission shifter comprises a stalk, a paddle extending from the stalk, and an adjustment mechanism responsive to a driver input to position the paddle in relation to the steering wheel. The paddle is configured to receive a driver's fingers while manually engaging the steering wheel. The method comprises providing driver input to the adjustment mechanism through a user control and adjusting the adjustment mechanism in response to the driver input to position the paddle in relation to the steering wheel.09-03-2009

Daniel J. Dawe, Austin, TX US

Patent application numberDescriptionPublished
20080200300CONTINUOUSLY VARIABLE TRANSMISSION - A continuously variable transmission (CVT) having a main shaft configured to support and position various components of the CVT. Shift cam discs cooperate with ball-leg assemblies to shift the transmission ration of the CVT. Load cam discs, a torsion disc, rolling elements, and a hub cap shell are configured to generate axial force, transmit torque, and manage reaction forces. In one embodiment, a splined input shaft and a torsion disc having a splined bore cooperate to input torque into the variator of the CVT. Among other things, various ball axles, axle-ball combinations, and reaction force grounding configurations are disclosed. In one embodiment, a CVT having axial force generation means at both the input and output elements is disclosed.08-21-2008
20080236319CONTINUOUSLY VARIABLE TRANSMISSION - Inventive embodiments are directed to components, subassemblies, systems, and/or methods for continuously variable transmissions (CVT). In one embodiment, a main axle is adapted to receive a shift rod that cooperates with a shift rod nut to actuate a ratio change in a CVT. In another embodiment, an axial force generating mechanism can include a torsion spring, a traction ring adapted to receive the torsion spring, and a roller cage retainer configured to cooperate with the traction ring to house the torsion spring. Various inventive idler-and-shift-cam assemblies can be used to facilitate shifting the ratio of a CVT. Embodiments of a hub shell and a hub cover are adapted to house components of a CVT and, in some embodiments, to cooperate with other components of the CVT to support operation and/or functionality of the CVT. Among other things, shift control interfaces and braking features for a CVT are disclosed.10-02-2008
20080248917CONTINUOUSLY VARIABLE TRANSMISSION - Inventive embodiments are directed to components, subassemblies, systems, and/or methods for continuously variable transmissions (CVT). In one embodiment, a main axle is adapted to receive a shift rod that cooperates with a shift rod nut to actuate a ratio change in a CVT. In another embodiment, an axial force generating mechanism can include a torsion spring, a traction ring adapted to receive the torsion spring, and a roller cage retainer configured to cooperate with the traction ring to house the torsion spring. Various inventive idler-and-shift-cam assemblies can be used to facilitate shifting the ratio of a CVT. Embodiments of a hub shell and a hub cover are adapted to house components of a CVT and, in some embodiments, to cooperate with other components of the CVT to support operation and/or functionality of the CVT. Among other things, shift control interfaces and braking features for a CVT are disclosed.10-09-2008
20080261771CONTINUOUSLY VARIABLE TRANSMISSION - Inventive embodiments are directed to components, subassemblies, systems, and/or methods for continuously variable transmissions (CVT). In one embodiment, a main axle is adapted to receive a shift rod that cooperates with a shift rod nut to actuate a ratio change in a CVT. In another embodiment, an axial force generating mechanism can include a torsion spring, a traction ring adapted to receive the torsion spring, and a roller cage retainer configured to cooperate with the traction ring to house the torsion spring. Various inventive idler-and-shift-cam assemblies can be used to facilitate shifting the ratio of a CVT. Embodiments of a hub shell and a hub cover are adapted to house components of a CVT and, in some embodiments, to cooperate with other components of the CVT to support operation and/or functionality of the CVT. Among other things, shift control interfaces and braking features for a CVT are disclosed.10-23-2008
20100093476INFINITELY VARIABLE TRANSMISSIONS, CONTINUOUSLY VARIABLE TRANSMISSIONS, METHODS, ASSEMBLIES, SUBASSEMBLIES, AND COMPONENTS THEREFOR - Inventive embodiments are directed to components, subassemblies, systems, and/or methods for infinitely variable transmissions (IVT) having a variator provided with a plurality of tilting spherical planets. In one embodiment, a variator is provided with multiple planet arrays. In another embodiment, a hydraulic system is configured to control the transmission ratio of the IVT. Various inventive idler assemblies and planet-pivot arm assemblies can be used to facilitate adjusting the transmission speed ratio of an IVT. Embodiments of a transmission housing and bell housing are adapted to house components of an IVT and, in some embodiments, to cooperate with other components of the IVT to support operation and/or functionality of the IVT. Various related devices include embodiments of, for example, a control feedback mechanism, axial force generation and management mechanisms, a control valve integral with an input shaft, and a rotatable carrier configured to support planet-pivot arm assemblies.04-15-2010
20100093485CLAMPING FORCE GENERATOR - Mechanisms and methods for clamping force generation are disclosed. In one embodiment, a clamping force generator includes a spring coupled to a traction ring and to a load cam roller cage. The traction ring can be provided with a recess to receive the spring. In some embodiments, a relatively short spring is provided. In other embodiments, a spring couples to a wire and the spring-wire combination couples to the traction ring and the load cam roller cage. In some embodiments, the load cam roller cage is provided with tabs adapted to engage the wire and/or the spring. In yet other embodiments, the traction ring is configured to receive a dowel pin for coupling to the spring. One or more of the tabs can include a tab notch that cooperates with a stop pin coupled to the traction ring to provide adjustment of the travel of the load cam roller cage.04-15-2010
20100173743CONTINUOUSLY VARIABLE TRANSMISSION - Inventive embodiments are directed to components, subassemblies, systems, and/or methods for continuously variable transmissions (CVT). In one embodiment, a main axle is adapted to receive a shift rod that cooperates with a shift rod nut to actuate a ratio change in a CVT. In another embodiment, an axial force generating mechanism can include a torsion spring, a traction ring adapted to receive the torsion spring, and a roller cage retainer configured to cooperate with the traction ring to house the torsion spring. Various inventive power roller-leg assemblies can be used to facilitate shifting the ratio of a CVT. Embodiments of a hub shell and a hub cover are adapted to house components of a CVT and, in some embodiments, to cooperate with other components of the CVT to support operation and/or functionality of the CVT. Among other things, shift control interfaces and braking features for a CVT are disclosed.07-08-2010

Patent applications by Daniel J. Dawe, Austin, TX US

Doug Dawe, Farmington Hills, MI US

Patent application numberDescriptionPublished
20090218840Console Lid Dual Latch Differentiation - Disclosed herein are a vehicle console and a latching system for a vehicle console with dual latch differentiation. The latching system comprises at least one lid pivotally attached to the console to move between a closed position and an open position relative to the opening. First and second latches are mounted to the lid. The first latch is configured to detach the lid from the first coupling to permit the lid to move to the open position while still attached to the secondary compartment, thereby exposing the primary compartment. The second latch is configured to detach the lid from both the first coupling and second coupling to permit the lid to move to the open position, detached from the secondary compartment. The first and second latches each comprise a hand engageable contact surface and the contact surface of one of the first and second latches comprises a tactile differentiator.09-03-2009
20100013260COVERING FOR INTERIOR VEHICLE SURFACES AND METHOD OF APPLYING COVERING - Disclosed herein are interior vehicle surfaces having a substrate and a covering having imposed thereon a decorative pattern. The covering is applied to the substrate oriented so that a segment of the decorative pattern forms an angle of less than ninety degrees with a visual reference line. Application of the covering includes determining a visual reference line with respect to the interior vehicle surface to be covered, rotating the covering less than ninety degrees such that a segment of the pattern originally parallel to the visual reference line is now angled with respect to the visual reference line and applying the rotated covering to the interior vehicle surface.01-21-2010

Geoffrey C. Dawe, Newburyport, MA US

Patent application numberDescriptionPublished
20080290947RECONFIGURABLE TUNABLE RF POWER AMPLIFIER - A multi-band, multi-standard programmable power amplifier having tunable impedance matching input and output networks and programmable device characteristics. The impedance of either or both of the impedance matching input and output networks is tunable responsive to one or more control signals. In one example, the programmable power amplifier incorporates a feedback control loop and the control signal(s) are varied responsive to the feedback loop.11-27-2008
20090079524MULTI-BAND TUNABLE RESONANT CIRCUIT - A fully integrated, programmable mixed-signal radio transceiver comprising a radio frequency integrated circuit (RFIC) which is frequency and protocol agnostic with digital inputs and outputs, the radio transceiver being programmable and configurable for multiple radio frequency bands and standards and being capable of connecting to many networks and service providers. The RFIC includes a tunable resonant circuit that includes a transmission line having an inductance, a plurality of switchable capacitors configured to be switched into and out of the tunable resonant circuit in response to a first control signal, and at least one variable capacitor that can be varied in response to a second control signal, wherein a center resonant frequency of the resonant circuit is electronically tunable responsive to the first and second control signals that control a first capacitance value of the plurality of switchable capacitors and a second capacitance value of the at least one variable capacitor.03-26-2009
20100171542RECONFIGURABLE MIXER WITH GAIN CONTROL - A frequency mixer or modulator circuit that is reconfigurable through electronic programming among active and passive operation, and/or harmonic and sub-harmonic operation, and/or up-conversion and down-conversion, and/or no-overlap, off-overlap, and on-overlap mixing, and/or upper-sideband modulation and lower-sideband modulation. In one example, the frequency mixer or modulator circuit also includes automatic gain control.07-08-2010

Patent applications by Geoffrey C. Dawe, Newburyport, MA US

Russell B. Dawe, Shenandoah Junction, WV US

Patent application numberDescriptionPublished
20100034471METHOD AND APPARATUS THAT ENABLES REMOTE OPERATION OF A PLEASURING DEVICE THROUGH A COMMUNICATIONS NETWORK - A method and apparatus that enables remote operation of a pleasuring device through a communications network is disclosed. The method may include receiving one or more text strings at a first communication device from a second communication device through the communications network, recognizing one or more words or phrases from the received one or more text strings, determining if the recognized one or more words or phrases are found in a lexicon, matching the recognized one or more words or phrases with its corresponding action stored in the lexicon, and signaling the pleasuring device to perform the corresponding action.02-11-2010

Ryan Robert Dawe, Atlanta, GA US

Patent application numberDescriptionPublished
20100205284Client Application Installer - Methods, systems, and apparatus, including computer program products, for installing client application. In one aspect, a method includes receiving user identification data at the client device, determining a client application configuration based on the user identification data, and configure a client application on the client device according to the specified client application configuration.08-12-2010