DescriptionThe MAX15036 high-frequency, DC-DC converters with an integrated n-channel power MOSFET provide up to 3A of load current.It includes an internal power MOSFET to enable the design of a nonsynchronous buck or boost topology power supply.Thedevice protects against overcurrent conditions by...
MAX15036: DescriptionThe MAX15036 high-frequency, DC-DC converters with an integrated n-channel power MOSFET provide up to 3A of load current.It includes an internal power MOSFET to enable the design of a non...
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The MAX15036 high-frequency, DC-DC converters with an integrated n-channel power MOSFET provide up to 3A of load current. It includes an internal power MOSFET to enable the design of a nonsynchronous buck or boost topology power supply.The device protects against overcurrent conditions by utilizing a peak current limit as well as overtemperature shutdown providing a very reliable and compact power source for point-of-load regulation applications.
Features of the MAX15036 are:(1)4.5V to 5.5V or 5.5V to 23V input voltage range; (2)output voltage adjustable down to 0.6V (buck) or up to 28V (boost); (3)3A output current; (4)resistor-programmable switching frequency from 200kHz to 2.2MHz; (5)external synchronization and enable (on/off) inputs; (6)clock output for driving second converter 180° out-of-phase (MAX15036); (7)integrated 150m high-side n-channel power MOSFET.
The absolute maximum ratings of the MAX15036 can be summarized as:(1)V+ to GND:-0.3V to +25V;(2)storage temperature range:-65 to +150;(3)junction temperature:-65 to 150;(4)operating temperature range:-40 to 125;(5)SGND to PGND:-0.3V to +0.3V;(6)continuous power dissipation:2666mW.Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.In the case of the MAX15036 boost operation, the MOSFET is a low-side switch. During each on-time, the inductor current ramps up. During the second half of the switching cycle, the low-side switch turns off and forward biases the Schottky diode. During this time, the DRAIN voltage is clamped to 0.4V (VD) above VOUT and the inductor provides energy to the output as well as replenishes the output capacitor charge.
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