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Product Detailed Parameters
- Description:BUFFER/INVERTER BASED MOSFET DRI
- Series:*
- Mfr:Analog Devices Inc./Maxim Integrated
- Package:Bulk
- Driven Configuration:-
- Channel Type:-
- Number of Drivers:-
- Gate Type:-
- Voltage - Supply:-
- Logic Voltage - VIL, VIH:-
- Current - Peak Output (Source, Sink):-
- Input Type:-
- Rise / Fall Time (Typ):-
- Operating Temperature:-
- Mounting Type:-
- Package / Case:-
- Supplier Device Package:-
- Grade:-
- Qualification:-
- High Side Voltage - Max (Bootstrap):-
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Overview
The MAX5054AATA+ is a dual low-side MOSFET gate driver manufactured by Analog Devices Inc./Maxim Integrated. It operates from a supply voltage range of 4V to 15V and provides peak output drive currents of 4A. The device features both inverting and non-inverting outputs, with typical rise and fall times of 85ns and 75ns respectively. It is housed in an 8-pin TDFN package with an exposed pad for thermal management.
Feature Summary
- Dual channel configuration providing independent control signals
- Integrated low-side topology optimized for N-channel MOSFETs
- Simultaneous inverting and non-inverting output availability
Applications
- Synchronous rectification circuits
- DC-DC converter power stages
- Motor control bridge drivers
Procurement Notes
Verify the specific suffix 'T' indicates tape and reel packaging when sourcing. Confirm the manufacturer designation as Analog Devices Inc. or Maxim Integrated to ensure component authenticity. Check for RoHS compliance documentation corresponding to the '+' suffix before finalizing procurement orders.
Selection Notes
Select this component for applications requiring compact dual low-side driving capabilities within a small footprint. Ensure the input logic levels are compatible with the controller IC. Verify that the PCB layout supports the thermal requirements of the TDFN package for sustained operation.
Part Context
This part belongs to the Maxim Integrated line of power management integrated circuits, specifically within the gate driver category. It is designed to interface between low-voltage logic controllers and high-current power switches, facilitating efficient power conversion in modern electronic systems.
Replacement Considerations
Check for direct pin-compatible alternatives within the same family. Verify that any substitute maintains the 4A drive current capability and similar propagation delays to ensure circuit stability without redesign.
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