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The input voltage range is 3.0V to 5.5VThe output voltage range is 0.8V to 4.5VEach output current value is 2.0A outputHigh switching frequency 
 
 
0.55MHz(LM26420Y)75mΩ PMOS switch50mΩ NMOS switch0.8V, 1.5% internal voltage referenceInternal soft startEach output is independently poweredEnabled for each output precision independentlyCurrent mode, PWM operationThermal shutdownOvervoltage protectionStart into the pre-biased output loadThe output is 180° out of phase illustrate The LM26420 regulator is a monolithic, high-frequency, dual PWM step-down DC/DC 16-pin LLP and 20-pin eTSSOP package conversion. It offers all the positive features, providing local DC/DC fast transient response and minimal PCB area for precisely regulated conversion. LM26420 with a minimum number of external components is ease of use. The driver's ability to switch on top of its internal 75mΩ PMOS tube and an internal 50mΩ NMOS switch on the bottom of the state of the state at the highest power density available for a state-of-the-art 0.5 μm BiCMOS technology binary value 2.0A load. The world-class control circuitry allows for as low as 30ns, thus supporting the entire abnormal input voltage range of 0.8V to the lowest output voltage and high frequency conversion from 0.8V. The switching frequency is set internally to 550 kHz or 2.2 MHz, allowing for very small surface-mount inductors and capacitors. Although the operating frequency is high, the efficiency of up to 93% is easy to achieve. External shutdown is included with ultra-low standby current. The LM26420 uses current mode control and internal compensation to provide high-performance regulation over a wide range of operating conditions. Other features include internal soft-start circuitry to reduce inrush current, pulse through pulse current limit, thermal shutdown, power good indicator, precision enable, output overvoltage protection. apply
 
Local 5V to core step-down converterAt the heart of the hard driveStbUSB-powered devicesDSL modemThe core power supply and I/O voltage for FPGAs, CPLDs and ASICs |