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UCD3138064ARGCR Folha de dados(PDF) 70 Page - Texas Instruments |
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UCD3138064ARGCR Folha de dados(HTML) 70 Page - Texas Instruments |
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70 / 83 page ![]() Voltage Loop Filter Vout Loop Mux Ramp Module PCM Comparator Ipri Front End Loop Mux Fault Mux DPWM Loop Mux 70 UCD3138064A SLUSCA5A – DECEMBER 2015 – REVISED AUGUST 2016 www.ti.com Submit Documentation Feedback Product Folder Links: UCD3138064A Applications, Implementation, and Layout Copyright © 2015–2016, Texas Instruments Incorporated 7.2.2.5.2 Peak Current Detection Peak current detection involves all the major modules of the DPPs, the Front End, Filter, Loop Mux, Fault Mux and the DPWMs. A drawing of the major elements is shown in Figure 7-8. Figure 7-8. Peak Current Detection Function All signals without arrows flow from left to right. The voltage loop is used to select a peak current level. This level is fed to the Ramp module to generate a compensation ramp. The compensation ramp is compared to the primary current by the PCMC comparator in the Front End. When the ramp value is greater than the primary current, the APCMC signal is sent to the DPWM, causing the events described in the previous sections. The DPWM frame start and output pin signals can be used to trigger the Ramp Module. In this case, unlike in the case of other ramp module functions, each DPWM frame triggers the start of the ramp. The ramp steps every 32 ns. The Filter is configured normally, there is no real difference for PCMC. The PCM_FILTER_SEL bits in the LoopMux.PCMCTRL register are used to select which filter is connected to the ramp module: LoopMuxRegs.PCMCTRL.bit.PCM_FILTER_SEL =0; //select filter0 With Firmware Constant Power/Constant current, Filter 1 and Front End 1 are used as a current control loop, with the EADCDAC set to high current. If the voltage loop value becomes higher than the current loop value, then Filter 1 is used to control the PCM ramp start value: LoopMuxRegs.PCMCTRL.bit.PCM_FILTER_SEL =1; S P A C E //select filter1 for slope compensation source In the ramp module, there are 2 bitfields in the RAMPCTRL register which must be configured. The PCM_START_SEL must be set to a 1 to enable the Filter to be used as a ramp start source. The RAMP_EN bit must be set, of course. The DAC_STEP register sets the slope of the compensation ramp. The DAC value is in volts, of course, so it is necessary to calculate the slope after the current to voltage conversion. Here is the formula for converting from millivolts per microsecond to DACSTEP. m = compensation slope in millivolts per microsecond ACSTEP = 335.5 × M In C, this can be written: #define COMPENSATION_SLOPE 150 //compensation slope in millivolts per microsecond #define DACSTEP_COMP_VALUE ((int) (COMPENSATION_SLOPE*335.5) ) S P A C E //value in DACSTEP for desired compensation slope S P A C E FeCtrl0Regs.DACSTEP.all = DACSTEP_COMP_VALUE; |
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