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UCD3138128APFC датащи(PDF) 46 Page - Texas Instruments |
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UCD3138128APFC датащи(HTML) 46 Page - Texas Instruments |
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46 / 83 page ![]() ADC Channels S/H 12-bit SAR ADC 12-bit SAR ADC ADC12 Block ADC12 Control ADC Channel ADC Averaging Digital Comparators DPWM Modules ADC12 Registers Analog Comparators ADC External Trigger (from pin) 46 UCD3138128A SLUSC99 – JULY 2016 www.ti.com Product Folder Links: UCD3138128A Submit Documentation Feedback Copyright © 2016, Texas Instruments Incorporated • Post conversion averaging capability, ranging from 4X, 8X, 16X or 32X samples • Configurable triggering for ADC conversions from the following sources: firmware, DPWM rising edge, ADC_EXT_TRIG pin or Analog Comparator results • Interrupt capability to embedded processor at completion of ADC conversion • Six digital comparators on the first 6 channels of the conversion sequence using either raw ADC data or averaged ADC data • Two 10 µA current sources for excitation of PMBus addressing resistors • Dual sample and hold for accurate power measurement • Internal temperature sensor for temperature protection and monitoring The control module (ADC12 Contol Block Diagram) contains the control and conversion logic for auto- sequencing a series of conversions. The sequencing is fully configurable for any combination of 16 possible ADC channels through an analog multiplexer embedded in the ADC12 block. Once converted, the selected channel value is stored in the result register associated with the sequence number. Input channels can be sampled in any desired order or programmed to repeat conversions on the same channel multiple times during a conversion sequence. Selected channel conversions are also stored in the result registers in order of conversion, where the result 0 register is the first conversion of a 16-channel sequence and result 15 register is the last conversion of a 16-channel sequence. The number of channels converted in a sequence can vary from 1 to 16. Unlike EADC0 through EADC2, which are primarily designed for closing high speed compensation loops, the ADC12 is not usually used for loop compensation purposes. The EADC converters have a substantially faster conversion rate, thus making them more attractive for closed loop control. The ADC12 features make it best suited for monitoring and detection of currents, voltages, temperatures and faults. Please see the Typical Characteristics plots for the temperature variation associated with this function. Figure 32. ADC12 Control Block Diagram 9.3.12 Miscellaneous Analog The Miscellaneous Analog Control (MAC) Registers control and monitor a wide variety of functions. These functions include device supervisory features such as Brown-Out and power saving configuration, general purpose input/output configuration and interfacing, internal temperature sensor control and current sharing control. |
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