Data SheetADP1853SIMPLIFIED BLOCK DIAGRAMVINVCCOOVTHERMALLDOREF0.6VSHUTDOWNUVAGNDUVLOSL_TH0.6VSLAVEFBLOGICEN_SWVCCOENOVLOGICCLKOUTUVSYNC12.5kΩ1MΩOV_THPGOODOSCILLATORFREQSLAVEFBCOMPVCCOUV_THFB–ERROR+AMPLIFIERTRKCLKSS+BST+EN_SWDHVREF = 0.6VOVER_LIMDRIVER LOGICOVVCCO–CONTROL ANDSWPULSE SKIPSTATE6.5µA0.9VMACHINECS+VCCOLOGICOVFAULT–DL3kΩEN OVER_LIM+ PWMCOMPARATORCS GAINDCM+SLOPE COMPENSATIONPGNDZERO–RAMPAND RAMP GENERATORCROSSDETECTAV = 0,* 3, 6, 12– CURRENT SENSEAMPLIFIER+VCCO+CURRENT-LIMIT50µAOVER_LIMCONTROL–ILIM 002 *0 (ZERO) GAIN IS FOR VOLTAGE MODE WITH RAMP FROM 0.7V TO 2.2V. 10594- Figure 2. Rev. A | Page 7 of 28 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS ESD CAUTION SIMPLIFIED BLOCK DIAGRAM PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION CONTROL ARCHITECTURE OSCILLATOR FREQUENCY SYNCHRONIZATION PWM OR PULSE SKIP MODE OF OPERATION CLKOUT SIGNAL SYNCHRONOUS RECTIFIER AND DEAD TIME INPUT UNDERVOLTAGE LOCKOUT INTERNAL LINEAR REGULATOR OVERVOLAGE PROTECTION POWER GOOD SHORT-CIRCUIT AND CURRENT-LIMIT PROTECTION ENABLE/DISABLE CONTROL THERMAL OVERLOAD PROTECTION INTERLEAVED DUAL-PHASE OPERATION APPLICATIONS INFORMATION ADISIMPOWER DESIGN TOOL SETTING THE OUTPUT VOLTAGE SOFT START SETTING THE CURRENT LIMIT ACCURATE CURRENT-LIMIT SENSING INPUT CAPACITOR SELECTION VIN PIN FILTER BOOST CAPACITOR SELECTION INDUCTOR SELECTION OUTPUT CAPACITOR SELECTION MOSFET SELECTION LOOP COMPENSATION—VOLTAGE MODE Type III Compensation LOOP COMPENSATION—CURRENT MODE Setting the Slope Compensation Setting the Current Sense Gain Type II Compensation SWITCHING NOISE AND OVERSHOOT REDUCTION VOLTAGE TRACKING Coincident Tracking Ratiometric Tracking PCB LAYOUT GUIDLINES TYPICAL OPERATING CIRCUITS OUTLINE DIMENSIONS ORDERING GUIDE