Gateway 711 Sigmatel Audio Driver
SPECIFICATIONS Gateway RGH Notebook Specifications are subject to chipset Sigmatel Soft Audio AC97 rev codec (STAC) Sound support PCI. I really don't care about anything but the audio, however I figured one of these Router Motorola DHCP Server, Gateway, Domain Name Server .. G Codec,0x,1,1,, Actually according to the Sony Driver List it is a Sigmatel Audio Chipset (IDT. c:\windows\system32\msgacm Microsoft Corporation OK C:\Windows\system32\MSGACM KB Name SigmaTel High Definition Audio CODEC Manufacturer Default IP Gateway Not Available.
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Gateway 711 Sigmatel Audio Driver
The ear level module includes logic that controls switching among the first, second and third signal processing modes according to predetermined priority, in response to user input, and in response to control signals from the plurality of sources.
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Other embodiments include fewer or more processing modes as suits the need of the particular implementation. Gateway 711 Sigmatel Audio is provided for communication with a configuration host using the radio. Resources establish a configuration channel with the configuration host and use the channel for retrieving the second link parameter and storing a second link parameter in the memory.
Logic on the device establishes a first audio channel using the first link parameter and a second audio channel using the second link parameter. The first link parameter is used for establishment of the configuration channel, for example, and channels with phones or other rich platform devices. The second audio channel established with the second link parameter is used for Gateway 711 Sigmatel Audio private communication with thin platform devices such as a companion microphone.
In embodiments of Gateway 711 Sigmatel Audio technology, the second link parameter is a private shared secret unique to the pair of devices, and provides a privacy of the audio channel between the ear module and the companion microphone.
The companion module is also adapted to store at least two link parameters, including the second link parameter mentioned above in connection with the ear-module. The companion module, in an embodiment described herein, comprises a lapel microphone and is adapted for transmitting sound picked up by the lapel microphone using the communication channel to the ear-level module.
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The companion module can be used for other types of thin platform audio sources as well. In addition, the kit may include a recharging cradle that is adapted to hold both devices. Thus an embodiment of the invention upconverts audio data received using the radio to a higher sampling rate which Gateway 711 Sigmatel Audio the sampling rate of data retrieved from the microphone on the ear-level module.
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This common sampling rate is then utilized by the processing resources on the ear-level module. According to the method, a configuration host computer is used to establish a link parameter for connecting the ear-level module with the companion module in the field. The configuration host establishes a radio communication link with the ear-level module, using the public first link parameter, and delivers the second link parameter, along with other necessary network parameters, Gateway 711 Sigmatel Audio a radio communication link to the ear-level module, which then stores the second link parameter in nonvolatile memory.
The configuration host also establishes a radio communication link with the companion module using the public link parameter associated with the companion module. Using the radio communication link to the companion module, the configuration host delivers the private second link parameter, along with other necessary network parameters, to the companion module, which then stores it in nonvolatile memory for use in linking with the ear- level module.
An extension of the interior lobe is adapted to extend into the exterior opening of the ear canal, and includes a forward surface adapted to fit against the forward wall Gateway 711 Sigmatel Audio the ear canal, and a rear surface facing the anti-helix. The width of the extension in a dimension orthogonal to the forward surface of the extension between the forward surface and the rear surface from at least the opening of the ear canal to the tip of the extension is substantially less than the width of the ear canal, leaving an open Gateway 711 Sigmatel Audio passage.
The extension fits within the cavum conchae and beneath the tragus, without filling the cavum conchae and leaving a region within the cavum conchae that is in air flow communication with the open ear air passage in the ear canal. The compressive member tends to force Gateway 711 Sigmatel Audio forward surface of the extension against the forward wall of the ear canal, securing the ear module in the ear comfortably and easily.
The ear module 10 preferably includes a hearing aid mode having hearing aid functionality. The network facilitates techniques for providing personalized sound from a plurality of audio sources such as mobile phones 11, other audio sources 22 such as televisions and radios, and with a linked companion microphone 12 See Figure 3A-3B.
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In addition, wireless network provides communication channels for configuring the ear module 10 and other audio sources "companion modules" in the network using a configuration host 13, which comprises a program executed on a computer that includes an interface to the wireless network. In one embodiment described herein, the wireless audio links 14, 15, 21 between the ear Gateway 711 Sigmatel Audio 10 and the linked companion microphone 12, between the ear module 10 and the companion mobile phone 11, and between the ear module 10 and other companion audio sources 22, respectively, are implemented according to Bluetooth compliant synchronous connection-oriented SCO channel protocol See, for example, Specification of the Gateway 711 Sigmatel Audio System, Version 2.
The wireless configuration links 17, 18, 19, 20 between the configuration host 13 and the ear module 10, the mobile phone 11, the linked companion microphone 12, and the other audio sources 22 are implemented using a control channel, such as a modified version of the Bluetooth compliant serial port profile SPP protocol or a combination of the control channel and SCO channels.
Of course, a wide variety of other wireless communication technologies may be applied in alternative embodiments.
For example, thin platforms in this context do not include a keyboard or touch pad practically suitable for the entry of personal identification numbers or other authentication factors, network addresses, and so on. Thus, to establish Gateway 711 Sigmatel Audio private connection pairing with the ear module, the radio is utilized in place of the user interface.
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The configuration Gateway 711 Sigmatel Audio 13 is also utilized for setting variables utilized by the ear module 10 for processing audio data from the various sources. Thus in embodiments described herein, each of the audio sources in communication with the ear module 10 may operate with a different subset of the set of variables stored on the ear module for audio processing, where each different subset is optimized for the particular audio source, and for the hearing profile of the user.
The set of variables on the ear module 10 is stored in non- volatile memory on the ear module, and includes for example, indicators for selecting data processing algorithms to be applied and parameters used by data processing Gateway 711 Sigmatel Audio. The ear module 10 includes an exterior lobe 30, containing most of the microelectronics including a rechargeable battery and a radio, and an interior lobe 31, containing an audio transducer and adapted to fit within the ear canal of the user. Figure 2 A is a front view of the exterior lobe The front view of the Gateway 711 Sigmatel Audio lobe 30 illustrates the man-machine interface for the ear module Thus, a status light 32, a main button 33, one or more microphones 34, and buttons 35 and Gateway 711 Sigmatel Audio are used for various functions, such as up volume and down volume.
The one or more microphones 34 include an omnidirectional microphone mainly used for the hearing aid functionality, and a directional microphone utilized when the ear module 10 is operating as a headpiece for a mobile phone or other two-way communication device.
The device is adapted to be secured on the ear by placement of a front surface of the interior lobe 31 in contact with the forward wall of the ear canal, and the flexible ear loop 37 in contact with the anti-helix of the user's exterior ear. Gateway 711 Sigmatel Audio, an ear module 10 is described herein including an interior lobe 31 housing a speaker and adapted to fit within the cavum conchae of the outer ear, an exterior lobe 30 housing data processing resources, and a compressive member or ear loop 37 coupled to the interior lobe and providing a holding force between the anti-helix and the forward Gateway 711 Sigmatel Audio of the ear canal near the tragus.