Abstract:
Disclosed is a codec (coder/decoder) system with shadow buffers and method of performing a Power Down/Suspend mode operation on this codec system, which allows all the codecs in the codec system to know the operating status of each other so that system crash can be prevented during a power down/suspend operation. The codec system includes two or more codecs and associated codec controllers, with each codec controller including a status data buffer and a shadow buffer; and each codec controller utilizes the status data buffer therein for registering the operating status thereof and meanwhile utilizes the shadow buffer therein for storing a copy of the operating status data stored in the status data buffer of the other codec controller. The provision of the shallow buffers allows all the codecs in the codec system to be capable of knowing the operating status of each other. This feature can help prevent system crash during power down/suspend operation.
Abstract:
Disclosed is a codec (coder/decoder) system with shadow buffers and method of performing a Power Down/Suspend mode operation on this codec system, which allows all the codecs in the codec system to know the operating status of each other so that system crash can be prevented during a power down/suspend operation. The codec system includes two or more codecs and associated codec controllers, with each codec controller including a status data buffer and a shadow buffer; and each codec controller utilizes the status data buffer therein for registering the operating status thereof and meanwhile utilizes the shadow buffer therein for storing a copy of the operating status data stored in the status data buffer of the other codec controller. The provision of the shallow buffers allows all the codecs in the codec system to be capable of knowing the operating status of each other. This feature can help prevent system crash during power down/suspend operation.
Abstract:
A method for guiding to solve system errors is applied to a computer system. The method of the invention includes the step of calling a debugging application software to check a system state of the computer system when a request for detecting errors inputted by a user is received. When a system error occurring in the computer system is detected, a client database is connected to determine whether a corresponding solution for the user to debug the computer system exists. When the solution corresponding to the system error is not searched out from the client database, a network is connected to transfer a detected error message to a client service terminal.
Abstract:
A voice over Internet protocol (VoIP) system. The system includes a first device and a second device. The first device is disposed in a wireless local area network (WLAN) and connected to an Internet, for performing voice communication with a remote device through the Internet. Additionally, the first device processes audio information received during the voice communication to generate at least a playback audio packet, sends out the playback audio packet through the WLAN, receives at least a captured audio packet through the WLAN, and processes the captured audio packet to generate audio information to be sent out during the voice communication. The second device is disposed in the WLAN, for receiving the playback audio packet through the WLAN, playing audio information contained in the playback audio packet, capturing outside audio information to generate the captured audio packet, and sending out the captured audio packet through the WLAN.
Abstract:
A wireless communication system transmits and receives electronic voice signals between a wireless communication device and a wireless networking device at a call bitrate stored in the wireless communication device. By using the call bitrate when transmitting and receiving call signals, the wireless communication system is able to eliminate delays in the call signals caused if the signal becomes worse.
Abstract:
A voice over Internet protocol (VoIP) system. The system includes a first device and a second device. The first device is disposed in a wireless local area network (WLAN) and connected to an Internet, for performing voice communication with a remote device through the Internet. Additionally, the first device processes audio information received during the voice communication to generate at least a playback audio packet, sends out the playback audio packet through the WLAN, receives at least a captured audio packet through the WLAN, and processes the captured audio packet to generate audio information to be sent out during the voice communication. The second device is disposed in the WLAN, for receiving the playback audio packet through the WLAN, playing audio information contained in the playback audio packet, capturing outside audio information to generate the captured audio packet, and sending out the captured audio packet through the WLAN.
Abstract:
A wireless communication system transmits and receives electronic voice signals between a wireless communication device and a wireless networking device at a call bitrate stored in the wireless communication device. By using the call bitrate when transmitting and receiving call signals, the wireless communication system is able to eliminate delays in the call signals caused if the signal becomes worse.
Abstract:
The present invention provides a network system supporting a plurality of physical layers and the method thereof. The driver system and the method thereof utilizes the basic input/output system of the computer system to setup the network physical layer that is physically connected, and to calculate the simulation device code corresponding to the selected network physical layer according to the setup and the device code read from the network interface adapter, so that the computer system is able to recognize and enable the appropriate device driver of the physical layer. Therefore, the user is able to change the physical layer that is physically connected without reloading the device driver corresponding to the physical layer that is physically connected again and again, and also doesn't have to reconfigure the communication protocol parameters.
Abstract:
A method for operating a computer having at least an operating system is provided. The method includes the steps of building a plurality of working platforms each of which has a corresponding user interface in the operating system and providing at least a calling link for each working platform to allow each working platform to have at least a piece of usable application software. In addition, a platform selected sub-interface is provided to receive the input of a user. Thus, the corresponding working platform may be called according to the input of the user to allow the user to operate the computer under the user interface corresponding to the selected working platform.
Abstract:
A transmission method for identifying infrared transmission head is provided. The infrared transmission head is coupled to an infrared controller. The infrared controller is set to a test circuit mode. The infrared controller is programmed according to the test transmission mode associated with the test brand name of the infrared transmission head and test transmission data is transmitted. In the meantime, the infrared controller receives reception test data from the infrared transmission head according to the test transmission mode associated with the test brand name of the infrared transmission head. If the transmission test data and the reception test data are identical, the test brand name and associated test transmission mode are registered. The infrared transmission head operates according to the registered test brand name and associated test transmission mode of the infrared transmission head.