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ST1S03APMR Datasheet(PDF) 7 Page - STMicroelectronics |
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ST1S03APMR Datasheet(HTML) 7 Page - STMicroelectronics |
7 / 14 page ST1S03A Typical application 7/14 5 Typical application Application notes The ST1S03A is an adjustable current mode PWM step-down DC/DC converter with internal 1.5A power switch, packaged in a 6-lead DFN 3x3. It’s a complete 1.5A switching regulator with its internal compensation eliminating additional component. The constant frequency, current mode, PWM architecture and stable operation with ceramic capacitors results in low, predictable output ripple. However, in order to maximize the power conversion efficiency with light load, the regulator reduces automatically the switching frequency when the output load becomes less than 250mA typically. To clamp the error amplifier reference voltage a Soft Start control block generating a voltage ramp, has been implemented. Besides an On-Chip Power on Reset of 50=100µs ensure the proper operation when switching on the power supply. Other circuits fitted to the device protection are the Thermal Shut down block which turn off the regulator when the junction temperature exceeds 150°C typically and the Cycle- by-cycle Current Limiting that provides protection against shorted outputs. Being the ST1S03A an adjustable regulator, the output voltage is determined by an external resistor divider. The desired value is given by the following equation: VO = VFB[1+R1/R2] To make the device working, only other four external components are required: an inductor a schottky and two capacitors. The chosen inductor must be able to not saturate at the peak current level. Besides, its value can be selected keeping in account that a large inductor value increases the efficiency at low output current and reduces output voltage ripple, while a smaller inductor can be chosen when it is important to reduce the package size and the total cost of the application. Finally, the ST1S03A has been designed to work properly with X5R or X7R SMD ceramic capacitors both at the input and at the output this kind of capacitors, thanks to their very low series resistance (ESR), minimize the output voltage ripple. Other low ESR capacitors can be used according to the need of the application without invalidate the right functioning of the device. Figure 3. Application circuit |
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