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IRU431L / IRU431AL
4Rev. 1.8
02/20/02
www.irf.com
APPLICATION INFORMATION
An example is given below on how to properly select the
biasing resistor.
Assuming:
VMIN = 4.5V
VMAX = 6V
VKA = 3.3V
IL = 10mA
The maximum value for the biasing resistor is calcu-
lated using the following equations:
Where:
VMIN = Minimum supply voltage
IL(MAX) = Maximum load current
IB(MAX) = Maximum bias current
IK(MIN) = Maximum value for the minimum
cathode current spec
IR = Current through R1
Assuming R1 = 2KV as before,
The maximum power dissipation of the resistor is
calculated under the maximum supply voltage as
follows:
Output Voltage Setting
The IRU431L can be programmed to any voltages in the
range of 1.24 to 15V with the addition of R1 and R2
external resistors according to the following formula:
The IRU431L keeps a constant voltage of 1.240V be-
tween the Ref pin and ground pin. By placing a resistor
R2 across these two pins a constant current flows
through R2, adding to the IREF current and into the R1
resistor producing a voltage equal to:
which will be added to the 1.240V to set the output volt-
age as shown in the above equation. Since the input
bias current of the Ref pin is 0.5mA max, it adds a very
small error to the output voltage and for most applica-
tions can be ignored. For example, in a typical 5V to
3.3V application where R2=1.21KV and R1=2KV the
error due to the IADJ is only 1mV which is about 0.03% of
the nominal set point.
Figure 3 - Typical application of the
IRU431L for programming the output voltage.
Biasing Resistor (RB) Selection
The biasing resistor RB is selected such that it does not
limit the input current under the minimum input supply
and maximum load and biasing current.
PRB(MAX) =
Where:
VMAX = Maximum supply voltage
PRB(MAX) = Maximum RB power dissipation
PRB(MAX) = = 73mW
(6 - 3.3)
100
2
(VMAX - VKA)
RB
2
RB(MAX) =
IB(MAX) = IK(MIN) + IR
VMIN - VKA
IB(MAX) + IL(MAX)
IR = = 1.03mA
IB(MAX) = 0.08 + 1.03 = 1.11mA
RB(MAX) = = 108V
Select RB = 100V
3.3 - 1.24
2
4.5 - 3.3
1.11 +10
V
IN
R2
Co
R1
R
B
IRU431L
I
K
R
L
I
LV
KA
= V
OUT
o po p3 R1 + IREF 3 R1
1.240
R2
Vo = VKA = VREF 3oo1 + pp+ IREF 3 R1
R1
R2