Microchip Technology MIC2800 Digital Power Management ICs

Microchip Technology MIC2800 Digital Power Management ICs are designed to integrate a 2MHz DC/DC converter with an LDO post-regulator to provide two high-efficiency outputs. These ICs feature the LOWQ mode that reduces the total current drawn to 30µA and reduces the output noise of the DC/DC converter to 75µVRMS. The DC/DC converter retains efficiencies of over 90% at load currents of up to 600mA by using small values of L and C.

The MIC2800 ICs reduce required board space, component cost, and increases stability by operating with very small ceramic output capacitors and inductors. These ICs are available in a tiny 16-pin 3mm x 3mm QFN package. Typical applications include low-power RF systems, backup power systems, embedded MPU, and MCU power.

Features

  • 2.7V to 5.5V input voltage range
  • 2MHz DC/DC converter and two LDOs
  • Integrated Power-on Reset (POR):
    • Adjustable POR delay time
  • LOWQ mode:
    • 30µA total IQ when in LOWQ mode
  • DC/DC converter:
    • Up to 600mA of output current in PWM mode
    • LOWQ mode:
      • NO RIPPLE light load mode
    • 75µVRMS output noise in LOWQ mode
    • 2MHz PWM mode operation
    • >90% efficiency
  • LDO1 input voltage directly connected to DC/DC converter output voltage for maximum efficiency:
    • Ideal for 1.8V to 1.5V conversion
    • 300mA output current from 1.8V input
    • Output voltage down to 0.8V
  • LDO2 - 300mA output current capable
  • Thermal shutdown protection
  • Current limit protection
  • Simple, leakage-free interfacing to host MPU in applications with backup power
  • Tiny 16-pin 3mm x 3mm QFN package

Applications

  • Embedded MPU and MCU power
  • Portable and wearable applications
  • Low-power RF systems
  • Backup power systems

Block Diagram

Block Diagram - Microchip Technology MIC2800 Digital Power Management ICs

Typical Application Circuit

Application Circuit Diagram - Microchip Technology MIC2800 Digital Power Management ICs
Published: 2019-01-20 | Updated: 2023-05-11