IR3624MTRPBF International Rectifier, IR3624MTRPBF Datasheet - Page 11

IC CTRLR PWM SYNC BUCK 10-MLPD

IR3624MTRPBF

Manufacturer Part Number
IR3624MTRPBF
Description
IC CTRLR PWM SYNC BUCK 10-MLPD
Manufacturer
International Rectifier
Datasheet

Specifications of IR3624MTRPBF

Package / Case
10-MLPD
Voltage - Supply
4.5 V ~ 14 V
Frequency-max
660kHz
Operating Temperature
-40°C ~ 125°C
Number Of Outputs
1
Duty Cycle
71%
Pwm Type
Voltage Mode
Buck
Yes
Boost
No
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
No
Frequency
600kHz
Supply Voltage Range
4.5V To 14V
Digital Ic Case Style
MLPD
No. Of Pins
10
Operating Temperature Range
-40°C To +125°C
Termination Type
SMD
Input Voltage Primary Min
5V
Rohs Compliant
Yes
Filter Terminals
SMD
Control Mode
Voltage
Controller Type
PWM
Package
10-Lead MLPD
Circuit
Sync PWM Controller
Vcc (min)
4.0
Vcc (max)
14
Vout (min)
0.6
Vout (max)
Vcc * 0.71
Iout (a)
10
Switch Freq (khz)
Internal 600kHz
Pbf
PbF Option Available
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3624MPBFTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IR3624MTRPBF
Manufacturer:
IR
Quantity:
20 000
V
V
I
F
Application Information
Design Example:
The following example is a typical application for
IR3624. The application circuit is shown in
page17.
Output Voltage Programming
Output voltage is programmed by reference
voltage and external voltage divider. The Fb pin
is the inverting input of the error amplifier, which
is internally referenced to 0.6V. The divider is
ratioed to provide 0.6V at the Fb pin when the
output is at its desired value. The output voltage
is defined by using the following equation:
When an external resistor divider is connected to
the output as shown in figure 10.
Equation (4) can be rewritten as:
For the calculated values of R
feedback compensation section.
o
Fig. 10: Typical application of the IR3624 for
o
s
in
V
=
=
=
o
=
6
R
1
600
12
A
9
.
30
8
V
=
V
kHz
( ,
mV
R
V
programming the output voltage
13
8
IR3624
o
.
=
2
⎜ ⎜
V
V
V
ref
,
V
O
max)
ref
V
⎜ ⎜
ref
1
Fb
⎟ ⎟
+
R
R
8
9
--(
⎟ ⎟
) 5
--(
) 4
V
8
OUT
R
R
and R
9
8
9
see
Soft-Start Programming
The soft-start timing can be programmed by
selecting the soft-start capacitance value. The
start-up time of the converter can be calculated
by using:
Where T
For a start-up time of 5ms, the soft-start
capacitor will be 0.1uF. Choose a ceramic
capacitor at 0.1uF.
Vc supply for single input voltage
To drive the high side switch, it is necessary to
supply a gate voltage at least 4V grater than the
bus voltage. This is achieved by using a charge
pump configuration as shown in figure 11. This
method is simple and inexpensive. The operation
of the circuit is as follows: when the lower
MOSFET is turned on, the capacitor
pulled down to ground and charges, up to V
value, through the diode (D1). The bus voltage
will be added to this voltage when upper
MOSFET turns on in next cycle, and providing
supply voltage (Vc) through diode (D2). Vc is
approximately:
Capacitors in the range of 0.1uF is generally
adequate for most applications. The diodes must
be a fast recovery device to minimize the amount
of charge fed back from the charge pump
capacitor into V
to block the full power rail voltage, which is seen
when the high side MOSFET is switched on. For
low voltage application, schottky diodes can be
used to minimize forward drop across the diodes
at start up.
Fig. 11: Charge pump circuit to generate
IR3624
V
start
C
is the desired start-up time (ms)
2
V
C
BUS
V
SS
BUS
bus
. The diodes need to be able
Vc voltage
20
(
V
D
µ
1
C3
Vc
HDrv
A
+
IR3624MPBF
*
V
C2
T
D
start
2
)
D2
D1
C1
--(
--(
) 6
) 1
V
BUS
Q2
Q1
L
(C1) is
BUS
11

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