• Part: MIC61150
  • Description: Low Input Voltage Single-Supply High-Current LDO
  • Category: LDO Regulator
  • Manufacturer: Micrel Semiconductor
  • Size: 1.01 MB
Download MIC61150 Datasheet PDF
Micrel Semiconductor
MIC61150
MIC61150 is Low Input Voltage Single-Supply High-Current LDO manufactured by Micrel Semiconductor.
Low Input Voltage, Single-Supply High-Current LDO General Description The Micrel MIC61150 is a 1.5A output, low input voltage, single-supply regulator. This regulator operates over a single input voltage range of 1.1V to 3.6V and offers an ultra-low dropout less than 200m V over the entire operating temperature range. The MIC61150 is designed to drive digital circuits requiring low voltages at high currents such as DSPs, FPGAs, microcontrollers, etc. The regulator is available as a 1.0V fixed-output voltage option or as an adjustable-output voltage option. The MIC61150 is stable with a 22µF, low-ESR ceramic output capacitor, and includes protection Features such as thermal shutdown, current limiting and logic enable. The MIC61150 is offered in two different packages: a lowprofile, leadless 10-pin 3mm x 3mm MLF® and a 10-pin e Pad MSOP. The MIC61150 has an operating junction temperature range of - 40°C to +125°C. Data sheets and support documentation can be found on Micrel’s web site at: .micrel.. Features - Single VIN rail: 1.1V to 3.6V - Output voltage accuracy: ±2.5% over temperature - Typical dropout of 75m V at room temperature - Maximum dropout of 200m V at full load over temperature - COUT as low as 22µF (ceramic capacitor) - Output voltage adjustable down to 0.5V - Soft-start control via external capacitor - Excellent line and load regulation - Logic controlled shutdown - Thermal-shutdown and current-limit protection - 10-pin 3mm × 3mm MLF® package - 10-pin e Pad MSOP package - Junction temperature range from - 40°C to +125°C Applications - Point-of-load applications - ASIC / Microprocessor power supply - FPGA power supply - Tele / Networking cards - Wireless infrastructure ____________________________________________________________________________________________________________ Typical Application Dropout Voltage vs. Output Current 100 DROPOUT VOLTAGE (m V) 80 60 40 20 0 0.0 0.5 1.0 1.5 VIN = 1.5V VFB = 0V TA =...