摘要:
A mobile communication (100) can include a mobile device (160) to measure and send sound pressure level data. The Mobile device (160) can initiate the collection of audio information responsive to detecting a trigger event. Mobile device (160) can measure or calculate the sound pressure level from the audio information. Metadata including time information and geographic location information can be captured with the collected audio information. Mobile device (160) can send the sound pressure level data and metadata through wired or wireless communication path to a database (614).
摘要:
A mobile communication environment (100) can include a mobile device (160) to measure and send sound pressure level data. The mobile device (160) can initiate the collection of audio information responsive to detecting a trigger event. Mobile device (160) can measure or calculate the sound pressure level from the audio information. Metadata including time information and geographic location information can be captured with the collected audio information. Mobile device (160) can send the sound pressure level data and metadata through a wired or wireless communication path to a database (614).
摘要:
At least one exemplary embodiment is directed to a website configured to collect sound signatures from around the world and beyond. A communication device automatically stores acoustic information received by a microphone of the communication device. The acoustic information is analyzed for a trigger event. The trigger event stores the acoustic information, attaches metadata, creates a Gaussian Mixture Model, and measures sound pressure level. The communication device automatically sends the sound signature to a database when a communication path is opened to communication device. Each sound signature has associated metadata including a time stamp and geocode. Automatically collecting sounds using a communication device adapted for the process enables a database that captures sounds globally on a continuous basis.
摘要:
At least one exemplary embodiment is directed to a website configured to collect sound signatures from around the world and beyond. A communication device automatically stores acoustic information received by a microphone of the communication device. The acoustic information is analyzed for a trigger event. The trigger event stores the acoustic information, attaches metadata, creates a Gaussian Mixture Model, and measures sound pressure level. The communication device automatically sends the sound signature to a database when a communication path is opened to communication device. Each sound signature has associated metadata including a time stamp and geocode. Automatically collecting sounds using a communication device adapted for the process enables a database that captures sounds globally on a continuous basis.
摘要:
At least one exemplary embodiment is directed to an eartip or earplug configured to inserted in an ear canal of a user. The eartip or earplug is configured to occlude or partially occlude the ear canal of the user. The eartip or earplug includes a projected tip with various support structures designed to provide enhanced stability, comfort, and/or firmer insertion.
摘要:
At least one exemplary embodiment is directed to a system configured to occlude an ear canal. The system comprises a support structure, an expandable device, a housing, a resilient reservoir, and a threaded device. Resilient reservoir resides within housing and is filled with a medium. The threaded device couples to a threaded region of support structure. Threaded device fits in an opening of housing. Rotating threaded device reduces an interior volume of housing thereby transferring the medium from resilient reservoir to expandable device. Threaded device is rotated to displace sufficient medium within resilient reservoir to expand expandable device to occlude the ear canal. Resilient reservoir is passively filled when expandable device is in an un-expanded state.
摘要:
Methods for personalized sound management are provided. A module comprising hardware and software is provided to manufacturers to build a device. A process is architected for remote enabling of a device with personalized sound management applications. Consumers select applications for managing their sound environment through purchased and subscription hardware and applications via a web environment. All products developed by manufacturers are tested and certified running the personalized sound management applications. Manufacturers and consumers may both be covered under liability insurance. Users may remotely purchase, update hardware, and add and download subscription based applications through the web environment.
摘要:
Earphone devices with a sealing section for acoustically sealing the meatus of a human ear are provided. An earphone device includes an inner ear canal speaker and an inner ear canal microphone, each connected to a logic circuit which can include a digital signal processor (DSP). A sealant element is operatively attached to an outer section of the earphone and acoustically seals the meatus of a human ear canal.
摘要:
The present invention relates to systems and methods for monitoring the amplification of DNA molecules and the dissociation behavior of the DNA molecules.
摘要:
At least one exemplary embodiment is directed to an earpiece comprising: an ambient sound microphone (ASM); an ear canal microphone (ECM); an ear canal receiver (ECR); and an inflatable sealing section, where the sealing section includes at least one pressure valve, where the at least one pressure valve opens when the pressure in the sealing section is greater than an ambient pressure.