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...
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% ...
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Features: ·Input conversion range from 3.3 V to 12 V·Output voltages from 0.8 V to 5 V·Capable of ...
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 |
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.