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IP1201PBFIRN/a10avaiDual Output Full Function 2 Phase Synchronous Power Block, Integrated Power Semiconductors, PWM Controller and Passives.
IP1201PBFIORN/a1938avaiDual Output Full Function 2 Phase Synchronous Power Block, Integrated Power Semiconductors, PWM Controller and Passives.
IP1201TRPBFIORN/a1938avaiDual Output Full Function 2 Phase Synchronous Power Block, Integrated Power Semiconductors, PWM Controller and Passives.


IP1201PBF ,Dual Output Full Function 2 Phase Synchronous Power Block, Integrated Power Semiconductors, PWM Controller and Passives.features minimize layout sensitivity *iP1201PbF Power Block• Very small outline 15.5mm x 9.25mm x 2 ..
IP1201PBF ,Dual Output Full Function 2 Phase Synchronous Power Block, Integrated Power Semiconductors, PWM Controller and Passives.Features• 3.14V to 5.5V input voltagePWM Control & Passives• 0.8V to 3.3V output voltage• 2 Phase S ..
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IP1201PBF-IP1201TRPBF
Dual Output Full Function 2 Phase Synchronous Power Block, Integrated Power Semiconductors, PWM Controller and Passives.
. PD-97109
International
TOR Rectifier iP1201PbF
tpa/Wi"' Dual Output Full Function 2 Phase
Synchronous Buck Power Block
Features TECHNOLOGY Integrated Power Semiconductors,
. 3.14V to 5.5V input voltage PWM Control & Passives
. 0.8V to 3.3V output voltage
2 Phase Synchronous Buck Power Block
180° out of phase operation
Single or Dual output capability
Dual 15A maximum load capability
Single 2 phase 30A maximum load capability
200-400kHz per channel nominal switching frequency
Over Current Hiccup or Over Current Latch
External Synchronization capability
Overvoltage protection
Independent soft start per output
Over Temperature protection
Internal features minimize layout sensitivity * .
Very small outline 15.5mm x 9.25mm x 2.6mm iP1201PbF Power Block
Description
The iP1201 PbF is a fully optimized solution for medium current synchronous buck applications requiring upto15A
or 30A. The iP1201PbF is optimized for 2 phase single output applications up to 30A or dual output, each up to
15A with interleaved input. It includes full function PWM control, with optimized powersemiconductorchip-sets and
associated passives, achieving high power density. Very few external components are required to create a complete
synchronous buck power supply.
iPOWlR technology offers designers an innovative space-saving solution for applications requiring high power
densities. iPOWlR technology eases design for applications where component integration offers benefits in
performance and functionality. iPOWlR technology solutions are also optimized internally for layout, heat
transfer and component selection.
iP1201PbF Configurations
' Channel 1
' Channel 2
Single Output Dual Output
* Although, all of the dimcult PCB layout and bypassing issues have been addressed with the internal design of the iPOWIR block, proper layout techniques should be applied
for the design of the power supply board. There are no concerns about unwanted shutdowns common to switching power supplies, if operated as specified. The iPOWlR block
will function normally, but not optimally without any additional input decoupling capacitors. Input decoupling capacitors should be added at Vin pin for stable and reliable long
term operation. See layout guidelines in datasheet for more detailed information.
8/1 1/06 1

i P 1 201 Pb F All specifications © 25°C (unless otherwise specified)
International
TOR Rectifier
Absolute Maximum Ratings
Parameter Symbol Min Typ Max Units Conditions
VIN VIN -0.3 - 5.8
Feedback VFB1NFB2 -0.3 - 6
Output Overvoltage Sense VFB1s/VFB2s -0.3 - 6
PGOOD -0.3 - 6
ENABLE -0.3 - 5.8 V
Soft Start SS1/SS2 -0.3 - 6
Vp-ref -0.3 - 6
HICCUP HICCUP -O.3 - 6
SYNC -0.3 - 6
Output RMS Current Per Channel loutvsW - - 15 A 2 Independent outputs. See Fig. 3
o Capable of start up over full
Block Temperature TBLK -4O - 125 C temperature ranqe. See Note 1.
Recommended Operating Conditions
Parameter Symbol Min Typ Max Units Conditions
Input Voltage Range VIN 3.14 - 5.5
2 Independent outputs
- - 15 A TPCE = TCASE = 90°C. See Fig. 3
Output RMS Current Per Channel loutvsw 2 Independent outputs
- - 11.5 A Tracie = 90°C, TCASE = no airflow, no
heatsink. See Fig. 3
0.8 - 3.3 For v.N= 5V
Output Voltage Range Vow 0.8 - 2.5 V For V.N= 3.3V
Electrical Specifications @ VIN = 5V
Parameter Symbol Min Typ Max Units Conditions
Power Loss PLOSS - 6.7 8.4 W W = 300kHz, VIN = 5V, VOUT= ISV,
IOUT = 15A
" = 5v, vOUT = 1.5V,
Over Current Shutdown loc - 20 - A fsw = 300KHz, HICCUP pin pulled
o HICCUP pin pulled high, output
HICCUP duty cycle DHICCUP - 5 - 'lo short circuited.
" = 5V, l/OUT = 1.5V,
Soft Start Time tss - 5 - ms ' = Cve, = 0.1uF
Reference Voltage VREF - 0.80 - V low = 2A
V 3 3 TBLK = -40°C to 125°C, See Note 1.
OUT_ACC1 - - - _
Vow Accuracy V 2 5 2 % IT/gs-- fgécv otga1sis)/ See Note 1.
OUT_ACC2 - . - .5 VIN = 5V, VouT = 1.5V
Error Am ifier 1 & 2 in ut offset
voltage p p Vom, Vos, -4 - 4 mV VIN = 5V, VOUT = 1.5V
FB1 / FB2 Input bias current lm, u, - -0.1 - "
Error Amplifier
source/sink Current IERR - 60 - ”A
Error Amplifier
Transconductance gm, gms - 2000 - pmho
Output Overvoltage Shutdown See OVP note in Design Guidelines
Threshold OVP - 1.15 x VOUT - V
OVP Fault Propagation Delay tovp - 25 - Ms Outputforcedto1.125Vref
PGOOD Trip Threshold VTcesooD - 0.85 x VOUT - V FBI or FB2 ramping down
PGOOD Output Low Voltage VLo_PGOOD - 0.25 - V ISINK= 2mA
2

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