IR3081AMTRPBF International Rectifier, IR3081AMTRPBF Datasheet - Page 32

IC CTRLR XPHASE VR10.0 28MLPQ

IR3081AMTRPBF

Manufacturer Part Number
IR3081AMTRPBF
Description
IC CTRLR XPHASE VR10.0 28MLPQ
Manufacturer
International Rectifier
Series
XPhase™r
Datasheet

Specifications of IR3081AMTRPBF

Applications
Processor
Current - Supply
11mA
Voltage - Supply
9.5 V ~ 14 V
Operating Temperature
0°C ~ 100°C
Mounting Type
Surface Mount
Package / Case
28-MLPQ
Ic Function
Control IC
Supply Voltage Range
9.5V To 14V
Operating Temperature Range
0°C To +100°C
Digital Ic Case Style
MLPQ
No. Of Pins
28
Filter Terminals
SMD
Supply Voltage Min
9.5V
Rohs Compliant
Yes
Controller Type
PWM
Package
28-Lead MLPQ
Circuit
X-Phase Controller IC
Switch Freq (khz)
150kHz to 1.0MHz
Pbf
PbF Option Available
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3081AMPBFTR
IR3081AMTRPBFTR
IR3081AMTRPBFTR
IR3086A EXTERNAL COMPONENTS
PWM Ramp Resistor R
Set PWM ramp magnitude V
resistor R
Inductor Current Sensing Capacitor C
Choose 47nF for capacitor C
The bias currents of CSIN+ and CSIN- are 0.25uA and 0.4uA respectively. Calculate resistor R
Combined Over Temperature and Phase Delay Setting Resistors R
The over temperature setting resistor divider is combined with the phase delay resistor divider. Set the temperature
threshold at 115 ºC, which corresponds to the IC die temperature of 116 ºC, and calculate the HOTSET threshold
voltage corresponding to the temperature thresholds.
The phase delay resistor ratios for phases 1 to 6 at 800kHz of switching frequencies are RA
RA
slope.
The over temperature setting voltage of phases 1, 2, 5, and 6 is lower than the phase delay setting voltage,
VBIAS*RA
R
R
R
The over temperature setting voltage of Phases 3 and 4 is higher than the phase delay setting voltage,
VBIAS*RA
V
R
R
R
R
R
R
R
CS
HOTSET
PHASE21
PHASE51
PHASE61
PWMRMP
PHASEx
PHASEx
PHASE
CS
PHASE
PHASE2
+
Page 32 of 39
=
=
33
32
3
2
L
C
=
. 0
0
=
CS
=
=
=
4 .
=
=
12
25
PWMRMP
R
=10kΩ, R
=10kΩ, R
=10kΩ, R
=0.432, RA
. 4
PHASEx.
V
PHASEx.
(
L
+
V
RA
(
RA
V
V
BIAS
73
IN
=
HOTSET
800
HOTSET
R
PHASE
PHASEx
*
*
100
CS
10
*
V
f
*
+
1 (
SW
BIAS
10
,
*
3
Pre-select R
V
Pre-select R
=
3
PHASE22
PHASE52
PHASE62
10
*
BIAS
3
47
. 0
RA
R
V
C
0
V
T
PHASE3
RA
V
25
4 .
PHASEx
BIAS
9
V
PWMRMP
100
BIAS
J
*
PHASEx
BIAS
/(
HOTSET
PWMRMP
10
PHASE
+
1 (
0
. 1
*
*
5 .
. 4
=2.94kΩ, R
=2.32kΩ, R
=8.25kΩ, R
10
9
R
1
241
22
V
*
CS+,
=0.198, RA
RA
)
PHASE
PWMRMP
V
3
10
HOTSET
*
=
HOTSET
*
PHASEX1
PHASE11
[ln(
12
PHASEx
=
10
V
. 1
6
3
and Capacitor C
BIAS
and calculate R
. 4
)
8 .
31
3
79
V
. 1
[ln(
=
73
*
IN
=
* )
=
28
. 4
1 (
)
)
=0.75V. Choose 100pF for PWM ramp capacitor C
. 2
*
12
12
R
. 0
22
10
PHASE23
PHASE53
PHASE63
61
=10kΩ,
=10kΩ,
V
PHASEx
V
R
198
.
PHASE4
CS+
. 0
* 1
O
DAC
k
PHASE
k
3
665
. 1
6
10
) 3
8 .
)
and Resistors R
116
6
1
3
)
31
8 .
=
ln(
=
=4.64kΩ
=4.42kΩ
=6.49kΩ
=0.206, RA
. 1
ln(
+
(
=
. 7
79
CS+,
10
V
. 0
12
. 1
87
. 1 (
PWMRMP
IN
665
*
241
k
79
10
1
6
V
3
3 .
8 .
=
DAC
6
=
. 0
. 1
8 .
. 2
. 0
1 (
198
79
PHASE5
6
8 .
67
75
. 1
V
V
CS+
. 0
PWMRMP
79
)]
k
. 1
. 6
665
)
=
79
) 8
=0.401 and RA
and R
18
10
)
.
10
k 2
)]
*
10
*
PHASEx1,
10
CS-
3
=
3
12
=
1 .
887
k
R
PHASE5
PHASEx2
=0.597 starting from down-
PWMRMP
IR3081APBF
and R
CS-
PHASEx3
, and calculate the
,
1/31
PHASE1
/05
=0.665,

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