Features: * 3.3V, 5V, 12V and adjustable output versions* Adjustable version output voltage range, 1.23V to 37V ±4% max over line and load conditions* Guaranteed 3A output current* Wide input voltage range up to 40V* Requires only 4 external components* 52kHz fixed frequency internal oscillator* T...
WT2576M: Features: * 3.3V, 5V, 12V and adjustable output versions* Adjustable version output voltage range, 1.23V to 37V ±4% max over line and load conditions* Guaranteed 3A output current* Wide input voltag...
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Parameter |
Rating |
Unit |
Maximum Supply Voltage |
45 |
V |
ON/OFF Pin Input voltage |
0.3~+ VIN |
V |
Output Voltage to Ground (Steady state) |
1 |
V |
Power Dissipation Internally |
limited |
-- |
Storage Temperature Range |
65~150 |
|
ESD Susceptibility (Human Body Model) |
2 |
KV |
Maximum Junction Temperature |
150 |
The WT2576M series of regulators are monolithic integrated circuits that provide all the active functions for a step-down (buck) switching regulator, capable of driving 3A load with excellent line and load regulation. These devices are available in fixed output voltages of 3.3V, 5V, 12V and an ADJ output version.
Requiring a minimum number of external components, these regulators are simple to use and include internal frequency compensation and a fixed-frequency oscillator.
The WT2576M series offers a high-efficiency replacement for popular three-terminal linear regulators. It substantially reduces the size of the heat sink, and in some cases no heat sink is required. A standard series of inductors optimized for use with the WT2576 are available from several different manufacturers. This feature greatly simplifies the design of switch-mode power supplies.
Other features include a guaranteed ±4% tolerance on output voltage within specified input voltages and output load conditions, and ±10% on the oscillator frequency. External shutdown is included, featuring 50 A (typical) standby current. The output switch includes cycle-by-cycle current limiting, as well as thermal shutdown for full protection under fault conditions.p;