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    • 1. 发明授权
    • Communication system for a control channel, and corresponding method and computer program product
    • 控制通道的通信系统,以及相应的方法和计算机程序产品
    • US08762590B2
    • 2014-06-24
    • US12830162
    • 2010-07-02
    • Ugo MariFrancesco BombaciPietro CusmanoSonia Sfasciotti
    • Ugo MariFrancesco BombaciPietro CusmanoSonia Sfasciotti
    • G06F3/00
    • G09G5/006G06F1/3237G09G2370/12Y02D10/128Y02D50/20
    • A communication system for an HDMI communication interface CEC channel includes a communication module for receiving messages via the CEC channel, a processing unit for processing the received messages and an oscillator for driving the communication module. When the interface is in an active mode, the system is operative to activate the timer upon detection of the start of transmission of a first message, detect the initial bit of the first message, reconstruct and process the first message, and switch the interface from the active mode to standby by deactivating the oscillator. When the interface is in standby, the system is operative to switch the interface to the active condition by activating the oscillator and the timer when the start of a transmission of a second message is detected, detect the initial bit of a transmission of the second message, and reconstruct and process the second message.
    • 用于HDMI通信接口CEC通道的通信系统包括用于经由CEC信道接收消息的通信模块,用于处理接收的消息的处理单元和用于驱动通信模块的振荡器。 当接口处于活动模式时,系统可操作以在检测到第一消息的发送开始时检测定时器,检测第一消息的初始位,重新构建和处理第一消息,并将接口从 通过停用振荡器来激活待机模式。 当接口处于待机状态时,系统通过在检测到第二个消息的发送开始时激活振荡器和定时器来将接口切换到活动状态,检测第二消息的传输的初始位 ,并重建和处理第二个消息。
    • 2. 发明申请
    • COMMUNICATION SYSTEM FOR A CONTROL CHANNEL, AND CORRESPONDING METHOD AND COMPUTER PROGRAM PRODUCT
    • 用于控制信道的通信系统,以及相应的方法和计算机程序产品
    • US20110026613A1
    • 2011-02-03
    • US12830162
    • 2010-07-02
    • Ugo MARIFrancesco BombaciPietro CusmanoSonia Sfasciotti
    • Ugo MARIFrancesco BombaciPietro CusmanoSonia Sfasciotti
    • H04L27/00
    • G09G5/006G06F1/3237G09G2370/12Y02D10/128Y02D50/20
    • A communication system for an HDMI communication interface CEC channel includes a communication module for receiving messages via the CEC channel, a processing unit for processing the received messages and an oscillator for driving the communication module. When the interface is in an active mode, the system is operative to activate the timer upon detection of the start of transmission of a first message, detect the initial bit of the first message, reconstruct and process the first message, and switch the interface from the active mode to standby by deactivating the oscillator. When the interface is in standby, the system is operative to switch the interface to the active condition by activating the oscillator and the timer when the start of a transmission of a second message is detected, detect the initial bit of a transmission of the second message, and reconstruct and process the second message.
    • 用于HDMI通信接口CEC通道的通信系统包括用于经由CEC信道接收消息的通信模块,用于处理接收的消息的处理单元和用于驱动通信模块的振荡器。 当接口处于活动模式时,系统可操作以在检测到第一消息的发送开始时检测定时器,检测第一消息的初始位,重新构建和处理第一消息,并将接口从 通过停用振荡器来激活待机模式。 当接口处于待机状态时,系统通过在检测到第二个消息的发送开始时激活振荡器和定时器来将接口切换到活动状态,检测第二消息的传输的初始位 ,并重建和处理第二个消息。
    • 6. 发明申请
    • CIRCUIT FOR PROGRAMMING SAMPLING TIME IN A MULTICHANNEL ANALOG-TO-DIGITAL CONVERTER
    • 用于在多通道模拟数字转换器中编程采样时间的电路
    • US20080224907A1
    • 2008-09-18
    • US12035606
    • 2008-02-22
    • Santi Carlo AdamoVincent OndeFrancesco Bombaci
    • Santi Carlo AdamoVincent OndeFrancesco Bombaci
    • H03M1/12
    • H03M1/1245H03M1/1225
    • The sampling time in a multichannel analog-to-digital converter is programmed with a circuit comprising a memory register with memory locations, which can be respectively coupled to the channels of the converter. The memory locations of the register are able to store a signal identifying a sampling-time value selected for each individual channel of the converter. The circuit likewise comprises a converter module coupled to the memory register for converting the signal identifying the sampling-time value into a corresponding signal for driving the respective channel of the converter for a sampling time corresponding to the sampling time selected. The circuit can be actuated in a synchronized way with the converter so as to vary selectively the sampling time applied to the channels of the converter in the course of operation.
    • 多通道模数转换器中的采样时间由包括存储器位置的存储器寄存器的电路编程,存储器位置可以分别耦合到转换器的通道。 寄存器的存储器位置能够存储识别为转换器的每个独立通道选择的采样时间值的信号。 电路同样包括耦合到存储器寄存器的转换器模块,用于将标识采样时间值的信号转换成对应的信号,用于驱动转换器的相应通道,以对应于所选择的采样时间。 该电路可以与转换器同步地启动,以便在操作过程中选择性地改变施加到转换器通道的采样时间。
    • 9. 发明授权
    • Digital interface for driving at least a couple of power elements, in particular in PWM applications
    • 用于驱动至少一对功率元件的数字接口,特别是在PWM应用中
    • US07034479B2
    • 2006-04-25
    • US10746118
    • 2003-12-24
    • Francesco BombaciAlessandro Inglese
    • Francesco BombaciAlessandro Inglese
    • H02P7/29
    • H02M7/53873
    • A digital interface for driving at least one complementary pair of first and second power elements connected in an inverter configuration between first and second voltage references is provided. The digital interface includes a first input terminal for receiving a PWM input signal, a first counter stage connected to the first input terminal, and a second counter stage connected to an output of the first counter stage. A toggle stage is connected to the first input terminal and to an output of the second counter stage. A first output terminal is connected to an output of the toggle stage, and is to be connected to a control terminal of the first power element. A second output terminal is connected to the output of the first counter stage for receiving a delayed PWM output signal therefrom, and is to be connected to a control terminal of the second power element. The toggle stage generates a second PWM output signal for the first output terminal. The second PWM output signal is kept at a desired low level in correspondence with switching of the PWM input signal having a lower duration than a predetermined duration.
    • 提供了用于驱动在第一和第二电压基准之间以逆变器配置连接的至少一对互补互补对的第一和第二功率元件的数字接口。 数字接口包括用于接收PWM输入信号的第一输入端,连接到第一输入端的第一计数级,以及连接到第一计数级的输出的第二计数级。 触发级连接到第一输入端子和第二计数器级的输出端。 第一输出端子连接到肘节级的输出,并且连接到第一功率元件的控制端子。 第二输出端子连接到第一计数器级的输出端,用于从其接收延迟的PWM输出信号,并且连接到第二功率元件的控制端子。 触发级产生用于第一输出端的第二PWM输出信号。 对应于具有比预定持续时间更短的持续时间的PWM输入信号的切换,第二PWM输出信号保持在期望的低电平。