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UCD3138128APFCR Folha de dados(PDF) 42 Page - Texas Instruments |
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UCD3138128APFCR Folha de dados(HTML) 42 Page - Texas Instruments |
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42 / 83 page ![]() Digital Comparator 0 Control Digital Comparator 1 Control Digital Comparator 2 Control Digital Comparator 3 Control Front End Control 0 Front End Control 1 Front End Control 2 Analog Comparator 0 Analog Comparator 0 Control Analog Comparator 1 Analog Comparator 1 Control Analog Comparator 2 Analog Comparator 2 Control Analog Comparator 3 Analog Comparator 3 Control Analog Comparator 4 Analog Comparator 4 Control Analog Comparator 5 Analog Comparator 5 Control Analog Comparator 6 Analog Comparator 6 Control External GPIO Detection fault[2:0] DPWM 0 DPWM 1 DPWM 2 DPWM 3 DPWM 0 Fault Control DPWM 1 Fault Control DPWM 2 Fault Control DPWM 3 Fault Control Analog Comparator Automated Ramp DCM Detection HFO/LFO Fail Detect 42 UCD3138128A SLUSC99 – JULY 2016 www.ti.com Product Folder Links: UCD3138128A Submit Documentation Feedback Copyright © 2016, Texas Instruments Incorporated Figure 29. Fault Mux Block Diagram 9.3.7 Communication Ports 9.3.7.1 SCI (UART) Serial Communication Interface A maximum of two independent Serial Communication Interface (SCI) or Universal Asynchronous Receiver/Transmitter (UART) interfaces are included within the device for asynchronous start-stop serial data communication (see the pin out sections for details). Each interface has a 24 bit pre-scaler for supporting programmable baud rates, a programmable data word and stop bit options. Half or full duplex operation is configurable through register bits. A loop back feature can also be setup for firmware verification. Both SCI-TX and SCI-RX pin sets can be used as GPIO pins when the peripheral is not being used. 9.3.7.2 PMBUS/I2C The UCD3138xA has two independent interfaces which both support PMBus and I2C in master and slave modes. Only one of the interfaces has control of the address pin current sources as well as support for the optional Control and Alert lines described in the PMBus specification. Other than these differences, the interfaces are identical. The PMBus/I2C interface is designed to minimize the processor overhead required for interface. It can automatically detect and acknowledge addresses. It handles start and stop conditions automatically, and can clock stretch until the processor has time to poll the PMBus status. It will automatically receive and send up to 4 bytes at a time. It can automatically verify and generate a PEC. This means that a write byte command can be received by the processor with only one function call. The interface also supports automatic ACK of two independent addresses. If both PMBus/I2C interfaces are used at the same time a total of 4 independent addresses can be automatically detected. |
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