The LM2738 regulator is a monolithic, high-frequency, PWM step-down DC-DC converter in an
8-pin WSON or 8-pin MSOP-PowerPAD package. It provides all the active functions for local DC-DC
conversion with fast transient response and accurate regulation in the smallest possible PCB
area.
With a minimum of external components, the LM2738 is easy to use. The ability to drive
1.5-A loads with an internal 250-mΩ NMOS switch using state-of-the-art 0.5-µm BiCMOS technology
results in the best power density available. Switching frequency is internally set to 550 kHz
(LM2738Y) or 1.6 MHz (LM2738X), allowing the use of extremely small surface-mount inductors and
chip capacitors. Even though the operating frequencies are very high, efficiencies up to 90% are
easy to achieve. External enable is included, featuring an ultralow standby current of 400 nA. The
LM2738 utilizes current-mode control and internal compensation to provide high-performance
regulation over a wide range of operating conditions. Additional features include internal
soft-start circuitry to reduce in-rush current, cycle-by-cycle current limit, thermal shutdown, and
output over-voltage protection.
The LM2738 regulator is a monolithic, high-frequency, PWM step-down DC-DC converter in an
8-pin WSON or 8-pin MSOP-PowerPAD package. It provides all the active functions for local DC-DC
conversion with fast transient response and accurate regulation in the smallest possible PCB
area.
With a minimum of external components, the LM2738 is easy to use. The ability to drive
1.5-A loads with an internal 250-mΩ NMOS switch using state-of-the-art 0.5-µm BiCMOS technology
results in the best power density available. Switching frequency is internally set to 550 kHz
(LM2738Y) or 1.6 MHz (LM2738X), allowing the use of extremely small surface-mount inductors and
chip capacitors. Even though the operating frequencies are very high, efficiencies up to 90% are
easy to achieve. External enable is included, featuring an ultralow standby current of 400 nA. The
LM2738 utilizes current-mode control and internal compensation to provide high-performance
regulation over a wide range of operating conditions. Additional features include internal
soft-start circuitry to reduce in-rush current, cycle-by-cycle current limit, thermal shutdown, and
output over-voltage protection.