PIP201-12M

Features: ·Input conversion range from 3.3 V to 12 V·Output voltages from 0.8 V to 5 V·Capable of up to 20 A continuous output current·Operating frequency up to 1 MHz·Peak system efficiency >92% at 500 kHz·High efficiency·Low-profile, surface mount package (10 ´ 10 ´ 0.85 mm)·Compat...

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PIP201-12M Picture
SeekIC No. : 004462641 Detail

PIP201-12M: Features: ·Input conversion range from 3.3 V to 12 V·Output voltages from 0.8 V to 5 V·Capable of up to 20 A continuous output current·Operating frequency up to 1 MHz·Peak system efficiency >92% ...

floor Price/Ceiling Price

Part Number:
PIP201-12M
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/12/25

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Product Details

Description



Features:

·Input conversion range from 3.3 V to 12 V
·Output voltages from 0.8 V to 5 V
·Capable of up to 20 A continuous output current
·Operating frequency up to 1 MHz
·Peak system efficiency >92% at 500 kHz
·High efficiency
·Low-profile, surface mount package (10 ´ 10 ´ 0.85 mm)
·Compatible with any single or multi-phase PWM controller.



Application

·High-current DC to DC point-of-load converters
·Small form-factor Voltage Regulator Modules
·Microprocessor and memory voltage regulators.



Pinout

  Connection Diagram


Specifications

Symbol Parameter Conditions Min Max Unit
VDDC control circuit supply voltage   -0.5 +7 V
VDDO output stage supply voltage   -0.5 +7 V
VO output voltage   -0.5 +VDDO+0.5 V
VCB bootstrap voltage   -0.5 VO+14 V
IO(AV) average output current VDDC = 12 V; Tpcb 112 °C;
fi = 500 kHz; Figure 5
- 20 A
IORM repetitive peak output current VDDC = 12 V; tp £ 10 ms - 200 A
Ptot total power dissipation Tpcb = 25 °C - 25 W
Tpcb = 90 °C - 12 W
Tj junction temperature   -55 +150 °C
Tstg storage temperature   -55 +150 °C



Description

The PIP201-12M is designed for use as the power output stage of a synchronous buck DC to DC converter.PIP201-12Mcontains a MOSFET control IC and two power MOSFET transistors. By combining the power MOSFETs and the driver circuit into a single component, stray inductances are virtually eliminated, resulting in higher switching frequency, lower switching losses and a compact, efficient design. 




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