Details
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| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Input Voltage | VIN | Operating | 2.5 | - | 5.5 | V |
| Output Voltage | VOUT | Fixed | - | 3.3 | - | V |
| Output Current | IOUT | Continuous | - | 1.5 | 2 | A |
| Quiescent Current | IQ | VIN = 5V | - | 40 | - | μA |
| Shutdown Current | ISD | VIN = 5V | - | 1 | - | μA |
| Efficiency | η | VIN = 5V, IOUT = 1A | - | 90 | - | % |
| Switching Frequency | fSW | Default Setting | - | 2.1 | - | MHz |
| Load Transient Response | ΔVOUT | 1A Step, VIN = 5V | - | 50 | - | mV |
| Line Regulation | ΔVOUT | VIN: 2.5V to 5.5V | - | 2 | - | mV |
| Dropout Voltage | VDROPOUT | IOUT = 1A | - | 300 | - | mV |
| Thermal Shutdown | TSD | - | 160 | - | °C |
Instructions for MAX17079GTL+TCAZ
- Input Voltage Connection: Connect the input voltage (VIN) within the range of 2.5V to 5.5V to ensure proper operation.
- Output Configuration: The device provides a fixed output voltage of 3.3V. No external components are required for this setting.
- Output Current Capability: The device can deliver up to 2A continuously. Ensure that the load does not exceed this limit to prevent damage.
- Quiescent and Shutdown Current: The quiescent current is typically 40μA under normal operation, and the shutdown current is around 1μA when the device is in shutdown mode.
- Efficiency Optimization: For optimal efficiency, operate at the recommended switching frequency and ensure the load conditions align with the efficiency specifications.
- Transient Response Management: The device can handle load transients up to 1A steps with minimal output voltage deviation (typically 50mV).
- Line Regulation: Ensure the input voltage changes do not cause significant variations in the output voltage, which should be less than 2mV.
- Dropout Voltage Consideration: Keep the dropout voltage in mind, especially during high current operations where it can reach up to 300mV.
- Thermal Protection: The device includes thermal shutdown protection that activates at approximately 160°C to prevent overheating.
For detailed design considerations and specific application circuits, refer to the datasheet or official documentation provided by Maxim Integrated.
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