LM2587T-ADJ/NOPB National Semiconductor, LM2587T-ADJ/NOPB Datasheet - Page 22

IC REG SIMPLE SWITCHER TO-220-5

LM2587T-ADJ/NOPB

Manufacturer Part Number
LM2587T-ADJ/NOPB
Description
IC REG SIMPLE SWITCHER TO-220-5
Manufacturer
National Semiconductor
Series
SIMPLE SWITCHER®r
Type
Step-Up (Boost), Flyback, Forward Converterr
Datasheets

Specifications of LM2587T-ADJ/NOPB

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
Adjustable
Current - Output
5A
Frequency - Switching
100kHz
Voltage - Input
4 ~ 40 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Through Hole
Package / Case
TO-220-5 (Bent and Staggered Leads)
Current, Input Bias
125 nA
Current, Output
5 A
Current, Supply
11 mA
Frequency, Oscillator
100 kHz
Package Type
TO-220
Regulation, Line
20 mV
Regulation, Load
20 mV
Regulator Type
Boost (Step-Up)
Resistance, Thermal, Junction To Case
2 °C/W
Temperature, Operating, Range
-40 to +125 °C
Transconductance
3.2
Voltage, Gain
670 V/V
Voltage, Input
4 to 40 V
Primary Input Voltage
40V
No. Of Outputs
1
Output Voltage
37V
Output Current
5A
No. Of Pins
5
Operating Temperature Range
-40°C To +125°C
Msl
MSL 1 - Unlimited
Filter Terminals
Through Hole
Rohs Compliant
Yes
For Use With
551011367-061 - BOARD WEBENCH LM2577,LM2585/87LM2587EVAL - EVALUATION BOARD FOR LM2587
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device
Other names
*LM2587T-ADJ
*LM2587T-ADJ/NOPB
LM2587T-ADJ

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM2587T-ADJ/NOPB
Manufacturer:
SANKEN
Quantity:
30 000
Part Number:
LM2587T-ADJ/NOPB
Manufacturer:
NS/国半
Quantity:
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Application Hints
PROGRAMMING OUTPUT VOLTAGE
(SELECTING R
Referring to the adjustable regulator in
voltage is programmed by the resistors R
lowing formula:
Resistors R
can be compared with the 1.23V internal reference. With R
between 1k and 5k, R
For best temperature coefficient and stability with time, use
1% metal film resistors.
SHORT CIRCUIT CONDITION
Due to the inherent nature of boost regulators, when the out-
put is shorted (see
input, through the inductor and the diode, to the output, by-
passing the switch. The current limit of the switch does not
limit the output current for the entire circuit. To protect the load
and prevent damage to the switch, the current must be ex-
ternally limited, either by the input supply or at the output with
an external current limit circuit. The external limit should be
set to the maximum switch current of the device, which is 5A.
V
R
OUT
1
= R
= V
2
1
(V
and R
REF
OUT
1
AND R
(1 + R
/V
2
Figure
divide the output voltage down so that it
REF
1
is:
1
2
− 1)
/R
)
41), current flows directly from the
2
)
where V
where V
Figure
1
and R
REF
REF
41, the output
= 1.23V
= 1.23V
FIGURE 41. Boost Regulator
2
by the fol-
2
22
In a flyback regulator application
dard transformers, the LM2587 will survive a short circuit to
the main output. When the output voltage drops to 80% of its
nominal value, the frequency will drop to 25 kHz. With a lower
frequency, off times are larger. With the longer off times, the
transformer can release all of its stored energy before the
switch turns back on. Hence, the switch turns on initially with
zero current at its collector. In this condition, the switch current
limit will limit the peak current, saving the device.
FLYBACK REGULATOR INPUT CAPACITORS
A flyback regulator draws discontinuous pulses of current
from the input supply. Therefore, there are two input capaci-
tors needed in a flyback regulator; one for energy storage and
one for filtering (see
inherent operation of a flyback regulator. To keep a stable or
constant voltage supply to the LM2587, a storage capacitor
(
supply and/or the application has a wide temperature range,
the required rms current rating of the capacitor might be very
large. This means a larger value of capacitance or a higher
voltage rating will be needed of the input capacitor. The stor-
age capacitor will also attenuate noise which may interfere
with other circuits connected to the same input supply voltage.
100 μF) is required. If the input source is a recitified DC
Figure
42). Both are required due to the
(Figure
1231626
42), using the stan-

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