H04L25/03987

Determining a high data rate for backchannel communications for initialization of high-speed networks
09742523 · 2017-08-22 · ·

One embodiment provides a network controller having physical interface (PHY) circuitry that includes transmitter circuitry configured to transmit data frames to a link partner over a channel link. The network controller also includes a link speed cycling module configured to cause the transmitter circuitry to transmit data frames to the link partner using at least one high rate link speed. The network controller also includes an equalization presets module configured to apply at least one equalization preset setting to the transmitter circuitry while the transmitter circuitry is transmitting the data frames to the link partner. The link speed module is further configured to cause the transmitter circuitry to dwell, for a transmitter dwell time period, for the at least one equalization preset setting at the at least one high rate link speed. The transmitter dwell time period allows the link partner to lock on to the transmitted data frames.

Telecommunication networks

A mobile telecommunications network includes a core and a radio access network having a radio for wireless communication with mobile terminals registered with the network. The radio access network includes a controller operable to control the use of network resources by the mobile terminals. The controller may include an application programming interface, API, which provides a consistent interface to a multiplicity of applications hosted on the control mean. The controller may be provided at an access node site and/or a gateway site.

Devices and methods for processing one or more received radio signals

A method for processing one or more received radio signals is provided. The method may include performing a channel estimation of a transmission channel for at least a portion of the one or more radio signals received, to identify at least one soft channel parameter representing a channel impulse response of the transmission channel, and identifying at least one soft intercarrier interference parameter representing an interference for the one or more radio signals received using a first frequency carrier. The interference is caused by the one or more radio signals received using a second frequency carrier. The method may further include detecting soft data from the one or more radio signals based at least on the at least one soft channel parameter and the at least one soft intercarrier interference parameter.

DETERMINING A HIGH DATA RATE FOR BACKCHANNEL COMMUNICATIONS FOR INITIALIZATION OF HIGH-SPEED NETWORKS
20170085337 · 2017-03-23 · ·

One embodiment provides a network controller having physical interface (PHY) circuitry that includes transmitter circuitry configured to transmit data frames to a link partner over a channel link. The network controller also includes a link speed cycling module configured to cause the transmitter circuitry to transmit data frames to the link partner using at least one high rate link speed. The network controller also includes an equalization presets module configured to apply at least one equalization preset setting to the transmitter circuitry while the transmitter circuitry is transmitting the data frames to the link partner. The link speed module is further configured to cause the transmitter circuitry to dwell, for a transmitter dwell time period, for the at least one equalization preset setting at the at least one high rate link speed. The transmitter dwell time period allows the link partner to lock on to the transmitted data frames.

REDRIVER AND OPERATION METHOD THEREOF
20250202741 · 2025-06-19 · ·

Disclosed is a redriver and an operation method thereof. The redriver includes an equalizer, an auxiliary channel detector, and a control circuit. The equalizer improves the signal quality of a main channel of a signal transmission system. The auxiliary channel detector detects level toggling of an auxiliary channel of the signal transmission system. When an auxiliary channel detection result indicates that the auxiliary channel is at an unconnected level, the control circuit controls the equalizer to enter a disconnection phase to save power. When the auxiliary channel detection result indicates that the auxiliary channel changes from the unconnected level to a connected level, and a command form toggling event occurs, the control circuit controls the equalizer to enter a connected phase from the disconnection phase. The equalizer is turned on in the connected phase.