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STOD13AMTPUR Fiches technique(PDF) 17 Page - STMicroelectronics |
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STOD13AMTPUR Fiches technique(HTML) 17 Page - STMicroelectronics |
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17 / 25 page ![]() STOD13AM Detailed description Doc ID 023747 Rev 1 17/25 8 Detailed description 8.1 General description The STOD13AM is a high efficiency dual DC-DC converter which integrates a step-up and inverting power stage suitable for supplying AMOLED panels. Thanks to the high level of integration it needs only 6 external components to operate and it achieves very high efficiency using a synchronous rectification technique for each of the two DC-DC converters. The controller uses an average current mode technique in order to obtain good stability and precise voltage regulation in all possible conditions of input voltage, output voltage, and output current. In addition, the peak inductor current is monitored in order to avoid saturation of the coils. The STOD13AM implements a power saving technique in order to maintain high efficiency at very light load and it switches to PWM operation as the load increases in order to guarantee the best dynamic performance and low noise operation. The STOD13AM avoids battery leakage thanks to the true-shutdown feature and it is self protected from overtemperature. Undervoltage lockout and soft-start guarantee proper operation during startup. 8.1.1 Multiple operation modes Both the step-up and the inverting stage of the STOD13AM operate in three different modes: pulse-skipping (PSM), discontinuous conduction mode (DCM) and continuous conduction mode (CCM). It switches automatically between the three modes according to input voltage, output current, and output voltage conditions. 8.1.2 Pulse-skipping operation The STOD13AM works in pulse-skipping mode when the load current is below a few mA. The load current level at which this way of operation occurs depends on input voltage only for the step-up converter and on input voltage and negative output voltage (VO2) for the inverting converter. 8.1.3 Discontinuous conduction mode When the load increases above a few mA, the STOD13AM enters DCM operation. In order to obtain this type of operation the controller must avoid the inductor current going negative. The discontinuous mode detector (DMD) blocks sense the voltage across the synchronous rectifiers (P1B for the step-up and N2 for the inverting) and turn off the switches when the voltage crosses a defined threshold which, in turn, represents a certain current in the inductor. This current can vary according to the slope of the inductor current which depends on input voltage, inductance value, and output voltage. 8.1.4 Continuous conduction mode At medium/high output loads, the STOD13AM enters full CCM at constant switching frequency mode for each of the two DC-DC converters. |
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