Abstract:
A flexible package for a liquid-based food item and a packaged liquid-based food item, such as a soup. A flexible package or pouch includes an outer member or pouch and an inner dividing member or pouch that is disposed or positioned inside the outer member to define inner and outer cavities. A liquid, such as water or broth, and one or more seasonings are placed in the inner cavity. Particulates, such as meat and vegetable particulates and, if necessary, water, are placed in the outer cavity. Seasonings are separated from particulates, and the seasoning does not diffuse into the particulates. Thus, the tastes of the individual ingredients are maintained. A sealing member extends across a tops of the inner and outer members to close the package. When the sealing member is removed to open the package, the water or broth with the seasoning, and the particulates and any water can be poured from their respective cavities in a single motion. By reducing or eliminating diffusion of seasonings into particulates, reduced quantities of salt and other seasonings can be added to processed soup products and allows salt and other seasonings to be added just prior to cooking, providing more natural flavor. Separating broth and particulates within a container can also reduce sterilization times.
Abstract:
The present invention provides a modular headset operable to support both voice communications and voice activated commands. This may involve the use of multiple voice CODECs to process voice communications and voice activated commands. The modular headset includes both a microphone and wireless earpiece. The earpiece may further include an interface, a processing circuit, a speaker, a user interface, a pairing circuit, and a registration circuit. The interface allows the earpiece to communicate with the base unit that couples the modular headset to a servicing network. This coupling to the servicing network and base unit only occurs when the headset is successfully registered to the base unit. The pairing circuit and registration circuit allow the exchange of pairing or registration information between various components. The pairing circuit allows the wireless earpiece and microphone to exchange pairing information which is then compared to determine whether or not a successful pairing can be achieved. Analog to digital converts (ADCs), which may be located within either the microphone or earpiece are operable to process the transduced voice communications in accordance with either a voice CODEC or voice recognition CODEC depending on the selected mode of operation.
Abstract:
The present invention provides a modular wireless headset to support voice communications when registered to a base unit. This modular wireless headset includes both a wireless microphone and wireless earpiece. The wireless earpiece may further include a wireless interface, a processing circuit, a speaker, a user interface, a pairing circuit, and a registration circuit. The wireless interface allows the wireless earpiece to wirelessly communicate with the base unit that couples the modular wireless headset to a servicing network. This coupling to the service network and base unit only occurs when the headset is successfully registered to the base unit. The pairing circuit and registration circuit allow the exchange of pairing or registration information between various wireless components. The pairing circuit allows the wireless earpiece and microphone to exchange pairing information which is then compared to determine whether or not a successful pairing can be achieved. Successfully paired wireless earpieces and wireless microphones wirelessly communicate. The registration circuit registers the modular wireless headset to the base unit when the registration information associated with the modular wireless headset and base unit compare favorably. Components of the modular wireless headset that do not pair successfully are uncoupled from the headset. Similarly, wireless headsets that fail to register are communicatively uncoupled from the base unit.
Abstract:
The present invention provides a modular wireless headset with which to service multiple incoming audio streams. This modular wireless headset includes a wireless microphone and wireless earpiece. The wireless earpiece may exchange radio frequency (RF) signals with a base unit and render content contained within the exchanged RF signals to a user. This wireless earpiece further includes a wireless interface, a processor, a speaker, a user interface, and an authentication module. The wireless interface allows the earpiece to wirelessly communicate with the base unit. The processor recovers communications exchanged with the base unit that the speaker then renders audible. A user interface coupled to the processor may alert the user to any additional incoming audio communications. Having received the alert, the user may select between the communications. The authentication module allows the wireless earpiece and microphone to pair (forming the modular wireless headset) and register the headset with the base unit.
Abstract:
A wireless terminal tracks a tracked wireless terminal and displays tracking information to a user. The tracking wireless terminal sends a tracking request for the tracked wireless terminal via a supporting wireless network infrastructure. When the tracking request is valid, the tracking wireless terminal receives a tracking response for the tracked wireless terminal. Based upon the tracking response, the tracking wireless terminal accesses a map segment corresponding to received location coordinates. The tracking wireless terminal determines a relative position of the location coordinates of the tracked wireless terminal with respect to the map segment. With this determination made, operation concludes with the tracking wireless terminal displaying the map segment and an icon on the map segment that represents the tracked wireless terminal. The icon representing the tracked wireless terminal is displayed at the relative position of the location coordinates of the tracked wireless terminal.
Abstract:
A method and apparatus for measuring properties of a liquid composition includes a mechanical resonator, such as a cantilever, connected to a measurement circuit. The mechanical resonator can be covered with a coating to impart additional special detection propertied to the resonator, and multiple resonators can be attached together as a single sensor to obtain multiple frequency responses. The invention is particularly suitable for combinatorial chemistry applications, which require rapid analysis of chemical properties for screening. In one embodiment, the resonator is operated at a frequency of less than 1 MHz.
Abstract:
The present invention is directed to a wireless telephone having a first microphone and a second microphone and a method for processing audio signal in a wireless telephone having a first microphone and a second microphone. The wireless telephone includes a first microphone, a second microphone, and a signal processor. The first microphone outputs a first audio signal, the first audio signal comprising a voice component and a background noise component. The second microphone outputs a second audio signal. The signal processor increases a ratio of the voice component to the noise component of the first audio signal based on the content of at least one of the first audio signal and the second audio signal to produce a third audio signal.
Abstract:
A method for analyzing a fluid contained within a machine, comprising the steps of providing a machine including a passage for containing a fluid; placing a sensor including a mechanical resonator in the passage; operating the resonator to have a portion thereof translate through the fluid; and monitoring the response of the resonator to the fluid in the passage. A preferred sensor includes a tuning fork resonator.
Abstract:
A method and apparatus for calculating employee expenses is disclosed herein. One embodiment of the method may comprise transferring first data from a first computer to a second computer. The first data causes the second computer to display text, wherein a portion of the text is a first inquiry related to at least one expense item of the employee. Second data is transferred from the second computer to the first computer, wherein the second data is representative of a response to the first inquiry and wherein the second data is smaller than the first data. A second inquiry related to the at least one expense item based on the response to the first inquiry is then determined. Third data representative of the second inquiry is transmitted from the first computer to the second computer. A portion of the text is modified upon receipt of the third data by the second computer, wherein the modified portion of the text is related to the second inquiry.
Abstract:
A method and system supporting handoff of a multimedia call session using background network scanning is disclosed. A mobile multimedia handset may engage in the exchange of a multimedia information stream via a first wireless network, and may sniff a portion of radio frequency spectrum for a second wireless network. Information about available services and network quality of service for the second network may be received by querying the second wireless network or from advertising by the second wireless network. Hand-off between the two networks may be based upon the results of the comparison and one or more user-defined criteria, and the handoff may be synchronized according to predefined events in the stream of multimedia information.