IP1206TRPBF International Rectifier, IP1206TRPBF Datasheet - Page 13

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IP1206TRPBF

Manufacturer Part Number
IP1206TRPBF
Description
IC PWR BLOCK MULTIPHASE 30A LGA
Manufacturer
International Rectifier
Series
iPOWIR™r
Type
Step-Down (Buck), PWM - Voltage Moder
Datasheet

Specifications of IP1206TRPBF

Internal Switch(s)
Yes
Synchronous Rectifier
Yes
Number Of Outputs
1 or 2
Voltage - Output
0.8 V ~ 5.5 V
Current - Output
30A, 15A
Frequency - Switching
200kHz ~ 600kHz
Voltage - Input
7.5 V ~ 14.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
*
Package / Case
*
Package
LGA - 15.5 x 9.25
Circuit
Single Output or Dual Ch
Iout (a)
30
Switch Freq (khz)
200 - 600
Input Range (v)
7.5 - 14.5
Output Range (v)
0.8 - 5.5
Ocp Otp Uvlo Pre-bias Soft Start And
Pre-Bias + SEQ + SYNC + Tracking
Pbf
PbF Option Available
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IP1206TRPBF
Manufacturer:
IR
Quantity:
4 216
Part Number:
IP1206TRPBF
Manufacturer:
NEC
Quantity:
200
www.irf.com
Soft-Start (cont.)
During power up, the converter output starts at
zero and thus the voltage at Fb is about 0V. A
current (64µA) injects into the Fb pin and
generates a voltage about 1.6V (64µAx25K)
across the negative input of error amplifier, see
Fig. 10.
The magnitude of this current is inversely
proportional to the voltage at the soft-start pin.
The 28µA current source starts to charge up the
external capacitor. In the mean time, the soft-
start voltage ramps up, the current flowing into
Fb pin starts to decrease linearly and so does the
voltage at negative input of error amplifier.
When the soft-start capacitor is around 1V, the
voltage at the negative input of the error amplifier
is approximately 0.8V.
As the soft-start capacitor voltage charges up,
the current flowing into the Fb pin keeps
decreasing.
The feedback voltage increases linearly as the
injecting current decreases. The injecting current
drops to zero when soft-start voltage is around
1.8V and the output voltage goes into steady
state. Fig. 11 shows the theoretical operational
waveforms during soft-start.
The output start-up time is the time period when
soft-start capacitor voltage increases from 1V to
2V. The start-up time will be dependent on the
size of the external soft-start capacitor. The start-
up time can be estimated by:
For a given start up time, the soft-start capacitor
(nF) can be estimated as:
For normal start up the Seq pin should be pulled
high (usually can be connected to Vout3).
C
SS
20
28
μA
(
μ
A
0
T
* )
C
.
start
8
ss
T
(
V
=
start
1
)
.
8
(
V
ms
1
)
V
- -
- -
5 (
2/26/2008
)
Voltage at negative input
SS1/SD1
SS2/SD2
Seq
Track
VP1
Fb1
VP2
Fb2
Fig. 11: Theoretical operation waveforms
Fig. 10: Soft-Start circuit for iP1206
Voltage at Fb pin
Current flowing
Output of POR
of Error Amp
into Fb pin
Soft-Start
Voltage
POR
64uA
POR
64uA
during soft-start
64uA
≅ 1.6V
0V
0V
E/A1
iP1206PbF
E/A2
3V
3V
I
SS2 = 28uA
I
SS1 = 28uA
I
hiccup2 = 3uA
0uA
0.8V
I
0.8V
hiccup1 = 3uA
≅ 1.8V
OCP2
≅ 1V
3V
OCP1
13

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