Abstract:
One embodiment of the present invention is related to a harness system including a waist member and a leg loop member. The waist member is configured to encircle the naval region of the user and form a continuous loop. The leg loop member is configured to encircle the legs of the user. The leg loop member nay also be coupled to the waist member via a third loop. The leg loop member includes a continuous cord with at least two unbraided regions and at least one splice coupling. The unbraided regions are disposed between braided regions and are disposed on the leg loop member to correspond to the user's legs. The unbraided regions further comprise a plurality of separated strands oriented substantially parallel and equidistant to one another.
Abstract:
One embodiment of the present invention is related to a harness system including a waist member and a leg loop member. The waist member is configured to encircle the naval region of the user and form a continuous loop. The leg loop member is configured to encircle the legs of the user. The leg loop member nay also be coupled to the waist member via a third loop. The leg loop member includes a continuous cord with at least two unbraided regions and at least one splice coupling. The unbraided regions are disposed between braided regions and are disposed on the leg loop member to correspond to the user's legs. The unbraided regions further comprise a plurality of separated strands oriented substantially parallel and equidistant to one another.
Abstract:
The present invention relates to compositions comprising blends of alkenyl aromatic polymers such as styrenic polymers (i.e. PS and HIPS) and bio-based or biodegradable polymers (i.e. PLA, PGA, PHA, PBS, PCL) compatibilized with styrene-based copolymers (i.e. styrene-ethylene-butylene-styrene (SEBS) block copolymers, maleated SEBS, styrene-maleic anhydride (SMA) copolymer, styrene-methyl methacrylate (SMMA) copolymer) or a mixture of two or more styrene-based copolymers such as SEBS and SMA. These novel compositions can be extruded and thermoformed to produce very low density food service and consumer foam articles such as plates, hinged lid containers, trays, bowls, and egg cartons with good mechanical properties.
Abstract:
A system comprises an accessory, a mobile unit module, and a battery pack module. The accessory is worn one of on and near a portion of a body of a user. The mobile unit module removably couples to the accessory. The battery pack module removably couples to one of the mobile unit and the accessory.
Abstract:
A method for providing wireless communications between a locomotive control unit (LCU) (14) on board a locomotive (16) and a portable operator control unit (OCU) (12) for use in controlling operation of the locomotive from an off-board location includes calculating a transmit bit error check value for a wireless message. The wireless message includes an explicit sequence number assigned to the message so that the explicit sequence number is implicitly encoded in the transmit bit error check value. The method also includes transmitting an encoded message between the OCU and the LCU with the transmit bit error check value and without the explicit sequence number effective to reduce a total amount information needed to be transmitted compared to a message including the explicit sequence number.
Abstract:
A system and method for wireless dictation and transcription includes an input device which is connected by the Internet to a computer. The user dictates into the input device which is stored as an audio file which is then sent to the computer for voice recognition training and/or batch transcription. After the audio file has been transcribed into a processed document, the document is available to the user either through the Internet or by e-mail.
Abstract:
A railway communication system (10) includes a transmitter (12) receiving an input and producing a communication signal (18). The communication signal (18) includes at least two different portions (20,22) for separately encoding respective indications (38,40) of the input. The system also includes a receiver (14) coupled to a controlled device, the receiver (14) extracting at least one of the respective indications (38,40) from the communication signal (18). The receiver controls the device responsive to the at least one extracted indications (38,40).
Abstract:
A lateral brace for stabilizing a bunk on a boat trailer. The brace includes an anchor bracket attached to 3 rigid portion of the trailer and a bunk bracket attached to a bunk or to a bracket connecting the bunk to the trailer. An adjustable link connects the anchor bracket to the bunk bracket. The length of the adjustable link can be varied in order to place a desired lateral force on the bunk. This lateral force counteracts the splaying force applied by a boat hull resting on the bunk.
Abstract:
A railway communication system (10) includes a transmitter (12) receiving an input and producing a communication signal (18). The communication signal (18) includes at least two different portions (20,22) for separately encoding respective indications (38,40) of the input. The system also includes a receiver (14) coupled to a controlled device, the receiver (14) extracting at least one of the respective indications (38,40) from the communication signal (18). The receiver controls the device responsive to the at least one extracted indications (38,40).
Abstract:
A data acquisition system and method are described that may be used with various spectrometers. The data acquisition system may include an ion detector and a processing circuit. The processing circuit may include an initial processing module and a spectra processing module. According to one embodiment, the spectra processing module generates stick spectra and supplies the stick spectra to an external processor. The stick spectra comprise a peak intensity, resolution, and a location in the spectra for each detected peak. The initial processing module may contiguously sample the ion detection signals at a rate matched to the capabilities of the ion detector (up to at least 1.5 GHz) over a full spectral range. The spectra processing module may receive the processed signals and generate spectra from the processed signals at a rate matched to the time response of the separation techniques (up to 200 spectra/second).