0
ACTIVE
Rating |
Catalog |
Topology |
Buck, Step-Down Converter, Synchronous Buck |
Iout (max) (A) |
12 |
Vin (max) (V) |
5.5 |
Vin (min) (V) |
2.95 |
Vout (max) (V) |
5.5 |
Vout (min) (V) |
0.6 |
Switch current limit (typ) (A) |
17 |
Features |
Enable, Frequency synchronization, Power good, Pre-Bias Start-Up, Synchronous Rectification, Tracking |
Control mode |
Voltage mode |
Operating temperature range (°C) |
-40 to 125 |
Iq (typ) (A) |
0.0015 |
Duty cycle (max) (%) |
100 |
HTSSOP (PWP)-20-41.6 mm² 6.5 x 6.4
The LM21212-1 is a monolithic synchronous point-of-load buck regulator that is capable of delivering up to 12 A of continuous output current while producing an output voltage down to 0.6 V with outstanding efficiency. The device is optimized to work over an input voltage range of 2.95 V to 5.5 V, making it suited for a wide variety of low voltage systems. The voltage mode control loop provides high noise immunity, narrow duty-cycle capability and can be compensated to be stable with any type of output capacitance, providing maximum flexibility and ease of use.
The LM21212-1 features internal overvoltage protection (OVP) and overcurrent protection (OCP) for increased system reliability. A precision enable pin and integrated UVLO allow turnon of the device to be tightly controlled and sequenced. Start-up inrush currents are limited by both an internally fixed and externally adjustable soft-start circuit. Fault detection and supply sequencing are possible with the integrated power good circuit.
The LM21212-1 is designed to work well in multi-rail power supply architectures. The output voltage of the device can be configured to track an external voltage rail using the SS/TRK pin. The switching frequency can be synchronized to the falling edge of a clock between frequencies of 300 kHz to 1.5 MHz.
If the output is prebiased at start-up, it does not sink current, allowing the output to smoothly rise past the prebiased voltage. The regulator is offered in a 20-pin HTSSOP package with an exposed pad that can be soldered to the PCB, eliminating the need for bulky heat sinks.