BD71847AMWV-E2

ROHM Semiconductor

BD71847AMWV-E2

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Semiconductors

Power Management Circuits

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Semiconductors

Power Management Circuits

Lead time 16 weeks
Data sheet BD71847AMWV-E2

Power Management IC 2.7V to 5.5V 56-Pin UQFN-V EP T/R

Technical Data
Width (mm) 7
Length (mm) 7
JESD-30 Code S-XQCC-N56
Package Code HVQCCN
Package Shape SQUARE
Package Style (Meter) CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE
Surface Mount YES
Terminal Form NO LEAD
Temperature Grade INDUSTRIAL
Terminal Position QUAD
Number of Channels 12
Number of Functions 1
Number of Terminals 56
Terminal Pitch (mm) 0.4
Adjustable Threshold YES
Package Body Material UNSPECIFIED
Analog IC - Other Type INTEGRATED POWER MANAGEMENT UNIT
Seated Height-Max (mm) 1
Supply Voltage-Max (V) 5.5
Supply Voltage-Min (V) 2.7
Supply Voltage-Nom (V) 5
Peak Reflow Temperature (Cel) NOT SPECIFIED
Operating Temperature-Max (Cel) 85
Operating Temperature-Min (Cel) -40
Time@Peak Reflow Temperature-Max (s) NOT SPECIFIED

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Sourceability North America, LLC

9715 Burnet Rd, Ste 200
Austin, TX 78758-5215

Frequently Asked Questions

What documentation is available for ROHM Semiconductor BD71847AMWV-E2?

You can download the user manual and technical specifications for ROHM Semiconductor BD71847AMWV-E2 in the documentation section.

What are the key features of ROHM Semiconductor BD71847AMWV-E2?

Power Management IC 2.7V to 5.5V 56-Pin UQFN-V EP T/R

How does ROHM Semiconductor BD71847AMWV-E2 contribute to energy efficiency?

As part of the category Semiconductors and subcategory Semiconductors, BD71847AMWV-E2 optimizes energy distribution in electronic devices. Its Power Management IC 2.7V to 5.5V 56-Pin UQFN-V EP T/R allows minimizing losses and increasing the overall system efficiency.

Why is BD71847AMWV-E2 suitable for complex power management systems?

As a component of the subcategory Semiconductors, BD71847AMWV-E2 ensures stable output voltage even when the load changes. Its Power Management IC 2.7V to 5.5V 56-Pin UQFN-V EP T/R makes it a reliable element in multi-level power systems.