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ST8500TR датащи(PDF) 7 Page - STMicroelectronics |
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ST8500TR датащи(HTML) 7 Page - STMicroelectronics |
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7 / 37 page ![]() DocID031029 Rev 3 7/37 ST8500 Device architecture 37 2.1.1 Digital front-end (DFE) Transmission and reception filter chains The DFE includes programmable transmission/reception digital filter chains to fit the signal bandwidth in different PLC modulation cases. The ADC and DAC clock frequencies are controlled by the DFE to get the right sample rate fitting the filter chain configuration. Automatic gain control (AGC) The DFE implements the automatic gain control (AGC) block for the PGA, whose purpose is to adapt the signal to the ADC dynamic range. 2.1.2 Analog front-end (AFE) Reception chain The ST8500 AFE features a programmable gain amplifier (PGA) and a dedicated analog-to- digital converter (ADC) to achieve high RX sensitivity and a wide input range. Transmission chain The transmitted signal, generated in the digital domain, is fed into a dedicated digital-to- analog converter (DAC). The DAC output is then fed into a pre-driver for buffering and applying an additional gain. Zero crossing comparator The mains line zero crossing can be detected by providing a mains synchronous bipolar (AC) signal at the input of this comparator. The zero crossing comparator provides positive and negative event information (rising/falling edge or high/low level). Zero crossing information can also trigger an event for the GPT0 timer in order to capture the zero crossing timestamp for the application purpose. Line driver thermal sense The AFE also includes the thermal sense (TS) block to detect the temperature of the line driver. Line driver current sense The AFE also includes the current sense (CS) block to detect the output current of the line driver. 2.1.3 Real-time engine (RTE) To effectively and flexibly target the performance required by different PLC standards, the ST8500 embeds a dedicated high performance fully programmable real-time engine (RTE). It is able to address specific real-time PLC functionalities such as modulation and demodulation according to different modulation schemes, advanced correction coding algorithms (Viterbi, Convolutional, Reed-Solomon, etc.) and several other time-constrained communication services. |
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