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UCD3138ARMHT датащи(PDF) 30 Page - Texas Instruments |
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UCD3138ARMHT датащи(HTML) 30 Page - Texas Instruments |
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30 / 83 page ![]() UCD3138A SLUSC66B – MARCH 2015 – REVISED MAY 2015 www.ti.com Table 6-1. Interrupt Priority Table (continued) MODULE COMPONENT OR NAME DESCRIPTION PRIORITY REGISTER CAPTURE_0_INT 24-bit timer control 24-bit Timer capture 0 interrupt 21 COMP_0_INT 24-bit timer control 24-bit Timer compare 0 interrupt 22 Mode switched in CPCC module Flag needs to be read CPCC_INT Constant power constant current 23 for details ADC_CONV_INT 12-bit ADC control ADC end of conversion interrupt 24 Analog comparator interrupts, overvoltage detection, FAULT_INT Fault Mux interrupt 25 undervoltage detection, LLM load step detection DPWM3 DPWM3 Same as DPWM1 26 DPWM2 DPWM2 Same as DPWM1 27 1) Every (1 to 256) switching cycles DPWM1 DPWM1 2) Fault detection 28 3) Mode switching DPWM0 DPWM0 Same as DPWM1 29 EXT_FAULT_INT External Faults Fault pin interrupt 30 SYS_SSI_INT System Software System software interrupt 31 (highest) 6.5 DPWM Modes of Operation The DPWM is a complex logic system which is highly configurable to support several different power supply topologies. The discussion below will focus primarily on waveforms, timing and register settings, rather than on logic design. The DPWM is centered on a period counter, which counts up from 0 to PRD, and then is reset and starts over again. The DPWM logic causes transitions in many digital signals when the period counter hits the target value for that signal. 6.5.1 Normal Mode In Normal mode, the Filter output determines the pulse width on DPWM A. DPWM B fits into the rest of the switching period, with a dead time separating it from the DPWM A on-time. It is useful for buck topologies. The drawing of the Normal Mode waveforms is shown in Figure 6-1. Cycle adjust A can be used to adjust pulse widths on individual phases of a multi-phase system. This can be used for functions like current balancing. The Adaptive Sample Triggers can be used to sample in the middle of the on-time (for an average output), or at the end of the on-time (to minimize phase delay) The Adaptive Sample Register provides an offset from the center of the on-time. This can compensate for external delays, such as MOSFET and gate driver turn on times. Blanking A-Begin and Blanking A-End can be used to blank out noise from the MOSFET turn on at the beginning of the period (DPWMA rising edge). Blanking B could be used at the turn off time of DPWMB. The other edges are dynamic, so blanking is more difficult. Cycle Adjust B has no effect in Normal Mode. 30 Detailed Description Copyright © 2015, Texas Instruments Incorporated Submit Documentation Feedback Product Folder Links: UCD3138A |
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