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LTM4622 Regulator: Datasheet, Pinout, Applications [FAQ]

  • Contents

Product Overview

LTM4622 is a complete dual 2.5 A step-down switching mode μModule (micromodule) regulator in a tiny ultrathin 6.25 mm × 6.25 mm × 1.82 mm LGA package. Included in the package are the switching controller, power FETs, inductor, and support components. Operating over an input voltage range of 3.6 V to 20 V, the LTM4622 supports an output voltage range of 0.6 V to 5.5 V, set by a single external resistor. Its high efficiency design delivers dual 2.5 A continuous, 3 A peak, output current. Only a few ceramic input and output capacitors are needed. The LTM4622 supports selectable Burst Mode operation and output voltage tracking for supply rail sequencing. Its high switching frequency and current mode control enable a very fast transient response to line and load changes without sacrificing stability. Fault protection features include input overvoltage, output overcurrent, and overtemperature protection. The LTM4622 is RoHS-compliant with Pb-free finish.

 

This blog will introduce LTM4622 systematically from its features, pinout to its specifications, applications, also including LTM4622 datasheet and so much more.

 

Catalog

Product Overview

LTM4622 Features

LTM4622 Pinout

LTM4622 Applications

LTM4622 Block Diagram

LTM4622 Typical Applications

LTM4622IY Specification

LTM4622 Manufacturer

LTM4622 Datasheet

Using Warnings

LTM4622 FAQ

 

LTM4622 Features

  • Complete solution in <1 cm2
  • Wide input voltage range: 3.6 V to 20 V
  • 3 V input compatible with VIN tied to INTVCC
  • 6 V to 5.5 V output voltage
  • Dual 2.5 A DC, 3 A peak output current
  • ±5%  maximum total output voltage regulation error over load, line, and temperature
  • Current mode control, fast transient response
  • External frequency synchronization
  • Multiphase parallelable with current sharing
  • Output voltage tracking and soft-start capability
  • Selectable Burst Mode®  operation
  • Overvoltage input and overtemperature protection
  • Power good indicators
  • 25 mm × 6.25 mm × 1.82 mm LGA package

 

LTM4622 Pinout

The following figure is the diagram of LTM4622 pinout.

 

LTM4622 Pinout1

LTM4622 Pinout1

 

LTM4622 Pinout2

LTM4622 Pinout2

 

LTM4622 Applications

  • General purpose point of load conversion
  • Telecom, networking, and industrial equipment
  • Medical diagnostic equipment
  • Test and debug systems

 

LTM4622 Block Diagram

The following figure shows the block diagram of LTM4622.

 

LTM4622 Block Diagram

LTM4622 Block Diagram

 

LTM4622 Typical Applications

The following figures shows the typical applications of LTM4622, which shows the compact solution dimensions.

 

LTM4622 Typical Applications1

1.5v And 1v Dual Output Dc/dc Step-down Μmodule Regulator

 

1.5V Output Efficiency vs Load Current

1.5V Output Efficiency vs Load Current

 

LTM4622IY Specification

Number of Outputs 2
Voltage - Input (Min) 3.6V
Voltage - Input (Max) 20V
Voltage - Output 1 0.6 ~ 5.5V
Voltage - Output 2 0.6 ~ 5.5V
Voltage - Output 3 -
Voltage - Output 4 -
Current - Output (Max) 2.5A, 2.5A
Applications ITE (Commercial)
Features OCP, OTP, OVP
Operating Temperature -40°C ~ 125°C
Efficiency -
Mounting Type Surface Mount
Package / Case 25-PowerBBGA Module
Size / Dimension 0.25" L x 0.25" W x 0.10" H (6.3mm x 6.3mm x 2.4mm)
Supplier Device Package 25-BGA (6.25x6.25)

 

LTM4622 Manufacturer

Linear Technology and Analog Devices have joined together. Analog Devices is a world leader in the design, manufacture, and marketing of a broad portfolio of high performance analog, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs) used in virtually all types of electronic equipment.

 

LTM4622 Datasheet

You can download this datasheet for LTM4622–Datasheet from the link given below:

LTM4622 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

LTM4622 FAQ

What is the working principle of regulator?

The main principle behind the working of such a regulator is that a large proportion of the change in supply or input voltage appears across the transistor and thus the utput voltage tends to remain constant.

 

What is the difference between LDO and switching regulator?

LDOs are low-noise alternatives to switching regulators. They are simpler to layout and tend to cost less. LDOs are sometimes used downstream from a switching regulator to further step down the voltage to a low level. In fact, some switching regulator components include an LDO on the output; see ADP5037 for an example.

 

Why do we use switching regulators?

A switching regulator can convert input direct current (DC) voltage to the desired direct current (DC) voltage. In an electronic or other device, a switching regulator takes the role of converting the voltage from a battery or other power source to the voltages required by subsequent systems.

 

What is the advantage of switching regulator?

Switching regulators are efficient because the series element is either fully conducting or switched off so it dissipates almost no power. Switching regulators are able to generate output voltages that are higher than the input voltage or of opposite polarity, unlike linear regulators.

 

Is the IOUT ltm4622a compatible with SnPb?

The LTM4622A is available with SnPb (BGA) or RoHS compliant terminal finish.

 

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