Datenblatt-Suchmaschine für elektronische Bauteile |
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SS6341CSTR Datenblatt(PDF) 8 Page - Silicon Standard Corp. |
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SS6341CSTR Datenblatt(HTML) 8 Page - Silicon Standard Corp. |
8 / 14 page www.SiliconStandard.com 8 of 14 SS6341 n BLOCK DIAGRAM + + + + + + + + + + POR - + 3.6V Q R S Q R S - + 0.2V 5V SD POR 2.6V COUNT 3 VIN2 VCC 1.3V 200uA 9.5V FB2 GATE2 OCSET COMP1 R R Q S 1.3V FB3 OSCILLATOR GATE CONTROL SS SLOW DISCHARGE FAST DISCHARGE 20uA 10uA ERROR AMP PWM COMP 200KHz 70K 4V SS INHIBIT LUV OC1 LUV OC1 PHASE UGATE VCC PGND LGATE VCC 0.3V 1.26V FB1 GATE3 GND n APPLICATIONS INFORMATION The SS6341 is designed for applications with multiple voltage demand. This IC has one PWM controller and two linear controllers. The PWM controller is designed to regulate the voltage (VOUT1) by driving 2 MOSFETs (through UGATE and LGATE) in a synchronous rectified buck converter configuration. The regulated voltage level is decided by a resistor divider network. The Power-On Reset (POR) function continually monitors the +12V input supply voltage at VCC pin, the 5V input voltage at OCSET pin, and the 3.3V input at VIN2 pin. The POR function initiates soft-start operation after all three input supply voltage exceed their POR thresholds. Soft-Start The POR function initiates the soft-start sequence. Initially, the voltage on the SS pin rapidly increases to approximate 1V. Then an internal 10µA current source charges an external capacitor (CSS) on the SS pin to 4V. As the SS pin voltage slews from 1V to 4V, the PWM error amplifier reference input (non-inverting terminal) and output (COMP1 pin) are clamped to a level proportional to the SS pin voltage. As the SS pin voltage slews from 1V to 4V, the output clamp generates PHASE pulses of increasing width that charge the output capacitors. Additionally both linear regulators’ reference inputs are clamped to a voltage proportional to the SS pin voltage. This method provides a controlled smooth rise in output voltage. Fig. 2 shows the soft-start sequence for a typical application. The internal oscillator’s triangular waveform is compared to the clamped error amplifier output voltage. As the SS pin voltage increases, the pulse width on the PHASE pin increases. The period of increasing pulse Rev.2.01 6/26/2003 |
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