Patent classifications
H04L7/02
Information deletion assurance system using distributed ledger
The technology disclosed herein facilitates the providing assurance for deletion of information from client systems using a distributed ledger network. One or more implementations disclosed herein provide using a user interface (UI) client to allow users to upload and delete information and a rest application programming interface (API) communicatively connected to the distributed ledger network logs the uploading and/or deletion of the information.
Wired communication system including asymmetrical physical layer devices
A first physical layer device includes a first transmitter and a first receiver. The first transmitter transmits first data to a second physical layer device over a medium at a first line rate during a first transmit period. The first receiver is configured to not receive data during the first transmit period and an echo reflection period occurring after the first transmit period. The echo reflection period is based on a length of the medium between the first physical layer device and the second physical layer device. The first receiver is configured to, after the echo reflection period, receive second data from the second physical layer device over the medium at a second line rate that is less than the first line rate.
Wired communication system including asymmetrical physical layer devices
A first physical layer device includes a first transmitter and a first receiver. The first transmitter transmits first data to a second physical layer device over a medium at a first line rate during a first transmit period. The first receiver is configured to not receive data during the first transmit period and an echo reflection period occurring after the first transmit period. The echo reflection period is based on a length of the medium between the first physical layer device and the second physical layer device. The first receiver is configured to, after the echo reflection period, receive second data from the second physical layer device over the medium at a second line rate that is less than the first line rate.
System and method of running an agent guide script-flow in an employee desktop web client
In the field of government engagement management, an agent guide or script-flow in an employee desktop web client is implemented. In such a system and method, when agents create interactions with clients they can follow a script-flow which will guide the agent through the interaction through a series of menu selections and automated sets of instructions. This feature of the government engagement management system allows existing customer investment from the rich desktop client or non-web client in developing specific scripts, that can also now function in the web client atmosphere. This system and method also enables an agent to handle calls with the web client more efficiently, and allows agents on the web client to automatically classify.
System and method of running an agent guide script-flow in an employee desktop web client
In the field of government engagement management, an agent guide or script-flow in an employee desktop web client is implemented. In such a system and method, when agents create interactions with clients they can follow a script-flow which will guide the agent through the interaction through a series of menu selections and automated sets of instructions. This feature of the government engagement management system allows existing customer investment from the rich desktop client or non-web client in developing specific scripts, that can also now function in the web client atmosphere. This system and method also enables an agent to handle calls with the web client more efficiently, and allows agents on the web client to automatically classify.
Method, apparatus and system to amplify and transport analog and digital signals
A system and method for improving for amplifying an electronic signal by using high efficiency amplifiers to amplify one analog or digital signal at a time. The system further improves performance by providing parallel communication pathways throughout the entire transport and distribution chain. By creating parallel processing paths, both optically and electrically, the interaction of multiple signals are limited thereby avoiding unwanted intermodulation and noise.
Method, apparatus and system to amplify and transport analog and digital signals
A system and method for improving for amplifying an electronic signal by using high efficiency amplifiers to amplify one analog or digital signal at a time. The system further improves performance by providing parallel communication pathways throughout the entire transport and distribution chain. By creating parallel processing paths, both optically and electrically, the interaction of multiple signals are limited thereby avoiding unwanted intermodulation and noise.
Method for transmitting signals between domains having different clocks, circuit, and electronic apparatus thereof
A signal transmitting circuit providing compatibility and stability in signal transmissions across domains with different clock frequencies includes an edge detection circuit, a flip circuit, a synchronization circuit, and an edge extraction circuit. The edge detection circuit detects an edge of an initial interrupt signal and generates an event trigger signal in a faster clock domain. The flip circuit converts the event trigger signal into an edge signal. The synchronization circuit synchronizes the edge signal under a slower clock domain and generates a synchronization signal. The edge extraction circuit generates a trigger signal based on the synchronization signal in the slower clock domain to a target circuit in the slower clock domain. A method and an electronic apparatus related to the signal transmitting circuit are also disclosed.
SIGNAL RECEIVING DEVICE, AND A SEMICONDUCTOR APPARATUS AND A SEMICONDUCTOR SYSTEM INCLUDING THE SIGNAL RECEIVING DEVICE
A signal receiving device may include a high-speed receiving circuit, a low-speed receiving circuit, a low-speed synchronization circuit and a low-speed synchronization circuit. The high-speed receiving circuit receives an input signal and generate a high-speed received signal in a first operation mode. The high-speed synchronization circuit generates a high-speed synchronized signal to synchronize the high-speed received signal with a clock signal. The low-speed receiving circuit receives the input signal and generate a low-speed received signal in a second operation mode. The low-speed synchronization circuit generates a low-speed synchronized signal to synchronize the low-speed received signal with the clock signal. According to an operation mode, one of the high-speed synchronized signal and the low-speed synchronized signal is selected as an internal signal.
SIGNAL RECEIVING DEVICE, AND A SEMICONDUCTOR APPARATUS AND A SEMICONDUCTOR SYSTEM INCLUDING THE SIGNAL RECEIVING DEVICE
A signal receiving device may include a high-speed receiving circuit, a low-speed receiving circuit, a low-speed synchronization circuit and a low-speed synchronization circuit. The high-speed receiving circuit receives an input signal and generate a high-speed received signal in a first operation mode. The high-speed synchronization circuit generates a high-speed synchronized signal to synchronize the high-speed received signal with a clock signal. The low-speed receiving circuit receives the input signal and generate a low-speed received signal in a second operation mode. The low-speed synchronization circuit generates a low-speed synchronized signal to synchronize the low-speed received signal with the clock signal. According to an operation mode, one of the high-speed synchronized signal and the low-speed synchronized signal is selected as an internal signal.