Abstract:
A system and method for reviewing inputted voice instructions in a vehicle-based telematics control unit. The system includes a microphone, a speech recognition processor, and an output device. The microphone receives voice instructions from a user. Coupled to the microphone is the speech recognition processor that generates a voice signal by performing speech recognition processing of the received voice instructions. The output device outputs the generated voice signal to the user. The system also includes a user interface for allowing the user to approve the outputted voice signal, and a communication component for wirelessly sending the generated voice signal to a server over a wireless network upon approval by the user.
Abstract:
A system and method for reviewing inputted voice instructions in a vehicle-based telematics control unit. The system includes a microphone, a speech recognition processor, and an output device. The microphone receives voice instructions from a user. Coupled to the microphone is the speech recognition processor that generates a voice signal by performing speech recognition processing of the received voice instructions. The output device outputs the generated voice signal to the user. The system also includes a user interface for allowing the user to approve the outputted voice signal, and a communication component for wirelessly sending the generated voice signal to a server over a wireless network upon approval by the user.
Abstract:
A vehicle includes left-hand and right-hand video monitors. Each of the video monitors includes opposing top and bottom edges and opposing left-hand and right-hand lateral edges extending between the top and bottom edges. A translation mechanism couples the video monitors to a vehicle body. The video monitors are movable between a first position wherein the right-hand lateral edge of the left-hand video monitor is spaced apart from the left-hand lateral edge of the right-hand video monitor, and a second position wherein the right-hand lateral edge of the left-hand video monitor is adjacent to the left-hand lateral edge of the right-hand video monitor.
Abstract:
A system and method for reviewing inputted voice instructions in a vehicle-based telematics control unit. The system includes a microphone, a speech recognition processor, and an output device. The microphone receives voice instructions from a user. Coupled to the microphone is the speech recognition processor that generates a voice signal by performing speech recognition processing of the received voice instructions. The output device outputs the generated voice signal to the user. The system also includes a user interface for allowing the user to approve the outputted voice signal, and a communication component for wirelessly sending the generated voice signal to a server over a wireless network upon approval by the user.
Abstract:
An electronic system includes an electronic apparatus having a port with a restricted-access feature. A writeable memory device is removeably connected to the port. The memory device updateably stores operating software for the electronic apparatus.
Abstract:
A system, method, and computer program product for automatically adjusting the output of presentation content based upon vehicle conditions. The method determines whether one of a plurality of vehicle conditions exists, such as conditions related to vehicle speed, rate of change in vehicle speed, rate of change in vehicle direction, vehicle emergencies, cellular phone or headphone activation, radar detector activation, noise level decibels above a certain value, etc. The method determines an output format based on the determined vehicle conditions. The method outputs at least a portion of the presentation content based on the determined output format. The determined output format includes display format information, such as text font or icon size information or map detail. The presentation content can also include audio content.
Abstract:
A vehicle includes left-hand and right-hand video monitors. Each of the video monitors includes opposing top and bottom edges and opposing left-hand and right-hand lateral edges extending between the top and bottom edges. A translation mechanism couples the video monitors to a vehicle body. The video monitors are movable between a first position wherein the right-hand lateral edge of the left-hand video monitor is spaced apart from the left-hand lateral edge of the right-hand video monitor, and a second position wherein the right-hand lateral edge of the left-hand video monitor is adjacent to the left-hand lateral edge of the right-hand video monitor.
Abstract:
Methods, systems, devices and/or apparatus relate to vehicle media and communications systems and/or providing communications network and/or satellite network access in a vehicle. Specifically, the disclosed methods, systems, devices and/or apparatus relate to providing access to data, communications and/or satellites using a modular vehicle media and communications system.
Abstract:
A system, method, and computer program product for automatically adjusting the output of presentation content based upon vehicle conditions. The method determines whether one of a plurality of vehicle conditions exists, such as conditions related to vehicle speed, rate of change in vehicle speed, rate of change in vehicle direction, vehicle emergencies, cellular phone or headphone activation, radar detector activation, noise level decibels above a certain value, etc. The method determines an output format based on the determined vehicle conditions. The method outputs at least a portion of the presentation content based on the determined output format. The determined output format includes display format information, such as text font or icon size information or map detail. The presentation content can also include audio content.