IR3810MTRPBF International Rectifier, IR3810MTRPBF Datasheet - Page 15

IC REG SYNC 12A 15-QFN

IR3810MTRPBF

Manufacturer Part Number
IR3810MTRPBF
Description
IC REG SYNC 12A 15-QFN
Manufacturer
International Rectifier
Series
SupIRBuck™r
Type
Step-Down (Buck)r
Datasheet

Specifications of IR3810MTRPBF

Internal Switch(s)
Yes
Synchronous Rectifier
Yes
Number Of Outputs
1
Voltage - Output
0.6 ~ 12 V
Current - Output
12A
Frequency - Switching
600kHz
Voltage - Input
2.5 ~ 21 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
15-PowerVQFN
Power - Output
3.7W
Part Status
Active
Package
PQFN / 5 x 6
Circuit
Single Output
Iout (a)
12
Switch Freq (khz)
600
Input Range (v)
2.5 - 21
Output Range (v)
0.6 - 12
Ocp Otp Uvlo Pre-bias Soft Start And
Tracking
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3810MTRPBFTR
11/04/08
Based on the frequency of the zero generated by
the output capacitor and its ESR versus
crossover frequency, the compensation type can
be different. The table below shows the
compensation types and location of crossover
frequency.
Table1- The compensation type and location
The details of these compensation types are
discussed in application note AN-1043 which can
be downloaded from IR’s website at www.irf.com.
For this design we have:
V
V
V
V
g
L
C
F
The value of the capacitance used in the
compensator design must be the small signal
value. For instance, the small signal capacitance
of the 22uF capacitor used in this design is 12uF
at 1.8 VDC bias and 600 kHz frequency. It is this
value that must be used for all computations
related to the compensation. The small signal
value may be obtained from the manufacturer’s
datasheets, design tools or SPICE models.
Alternatively, they may also be inferred from
measuring the power stage transfer function of
the converter and measuring the double pole
frequency FLC and using equation (11) to
compute the small signal Co.
These result to:
F
F
F
Compensator
type
m
o
in
o
osc
ref
s
LC
ESR
s/2
o
Type III(PID)
Type III(PID)
=0.36uH
=600kHz
=0.75V
=1000umoh
=6x22uF, ESR=0.5mOhm
=12V
Type II(PI)
Method A
Method B
=0.6V
=31.26kHz
=300kHz
=1.25V
=4.4MHz
of F
ESR
F
F
F
LC
LC
LC
F
versus F
<F
<F
<F
ESR
ESR
o
o
<F
<F
vs. F
<F
ESR
s/2
o
<F
o
<F
<F
o
ESR
s/2
s/2
Output
capacitor
Electrolytic
, Tantalum
Tantalum,
Ceramic
ceramic
Select crossover frequency:
Fo=80kHz
Since: FLC<Fo<Fs/2<FESR , typeIII method B is
selected to place the poles and zeros.
The following design rules will give a crossover
frequency approximately one-tenth of the
switching frequency. The higher the band width,
the potentially faster the load transient response.
The DC gain will be large enough to provide high
DC-regulation accuracy (typically -5dB to -12dB).
The phase margin should be greater than 45
overall stability.
Desired Phase Boost:
Select
Select
Select
Calculate
C
C
Calculate
Select
Select
F
F
F
F
R
R
R
R
F
Z
Z
P
P
4
3
10
o
3
8
9
2
2
2
2
=
=
<
=
=
=
=
=
=
=
=
V
F
2
2
2
2
F
21
F
298
2
ESR
o
π
π
π
π
o
o
V
:
:
:
:
:
π
-
*
.
*
C
R
R
*
*
R
ref
*
*
44
F
V
*
.
7
10
and
3
C
Z1
F
1
F
F
8
56
ref
C
C
1
1
R
1
1
o
Z1
P
1
1
kHz
1
=
=
7
=
3
7
=
4
10
=
*
C
+
*
*
+
kHz
180pF
-
-
*
7.68K
*
*
38
and
L
7
,
. 2
Sin
Sin
0
R
F
F
Sin
Sin
R
R
F
R
o
*
5 .
Z
o
94
8
3 .
P
*
2
V
3
3
8
;
2
Θ
Θ
Θ
C
Θ
*
in
;
K
R
C
;
and
-
K
;
C
C
Ω
R
(
F
o
Ω
9
1/5
3
R
Ω
Z
4
*
3
10
10
=
:
2
V
=
=
R
;
153
OSC
=
R
~
1.93nF,
69
9
and
8
1/10
Θ
. 2
IR3810MPbF
:
2 .
pF
,
=
96
max
R
K
38
3
,
F
K
=
Ω
)
=
P3
Select
. 7
.
*
Ω
31
,
Select
60
F
54
,
=
Select
s
check
K
o
0.5
KΩ
Ω
:
*
,
:
C
check
PD-60344
C
F
3
R
:
s
4
R
10
=
=
9
22
1
=
5 .
R
g
150
pF
1
m
3
nF
K
o
g
Ω
2
for
m
15

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