Download LTM4601AHV Datasheet PDF
Linear Technology
LTM4601AHV
LTM4601AHV is DC/DC uModule Regulator manufactured by Linear Technology.
12A, 28VIN DC/DC µModule Regulator with PLL, Output Tracking and Margining Features Description n plete Switch Mode Power Supply n Wide Input Voltage Range: 4.5V to 28V n 12A DC Typical, 14A Peak Output Current n 0.6V to 5V Output Voltage n Output Voltage Tracking and Margining n Redundant Mounting Pads for Enhanced Solder-Joint Strength n Parallel Multiple µModule® Regulators for Current Sharing n Differential Remote Sensing for Precision Regulation n PLL Frequency Synchronization n±1.5% Total DC Error n Current Foldback Protection (Disabled at Start-Up) n Sn Pb or Ro HS pliant Finish n - 55°C to 125°C Operating Temperature Range (LTM4601AHVMPV) n Ultrafast™ Transient Response n Up to 95% Efficiency at 5VIN, 3.3VOUT n Programmable Soft-Start n Output Overvoltage Protection n Enhanced (15mm × 15mm × 2.82mm) Surface Mount LGA and (15mm × 15mm × 3.42mm) BGA Packages Applications The LTM®4601AHV is a plete 12A step-down switch mode DC/DC power supply with onboard switching controller, MOSFETs, inductor and all support ponents. The µModule regulator is housed in a small surface mount 15mm × 15mm × 2.82mm LGA or 15mm × 15mm × 3.42mm BGA package. The LTM4601AHV LGA and BGA packages are designed with redundant mounting pads to enhance solder-joint strength for extended temperature cycling endurance. Operating over an input voltage range of 4.5V to 28V, the LTM4601AHV supports an output voltage range of 0.6V to 5V as well as output voltage tracking and margining. The high efficiency design delivers 12A continuous current (14A peak). Only bulk input and output capacitors are needed to plete the design. The low profile and light weight package easily mounts in unused space on the back side of PC boards for high density point of load regulation. The µModule regulator can be synchronized with an external clock for reducing undesirable frequency harmonics and allows Poly Phase® operation for high load currents. An onboard...