LM2575S-12/NOPB National Semiconductor, LM2575S-12/NOPB Datasheet - Page 15

IC REG SIMPLE SWITCHER TO-263-5

LM2575S-12/NOPB

Manufacturer Part Number
LM2575S-12/NOPB
Description
IC REG SIMPLE SWITCHER TO-263-5
Manufacturer
National Semiconductor
Series
SIMPLE SWITCHER®r
Type
Step-Down (Buck)r
Datasheet

Specifications of LM2575S-12/NOPB

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
12V
Current - Output
1A
Frequency - Switching
52kHz
Voltage - Input
4 ~ 40 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
D²Pak, TO-263 (5 leads + tab)
Primary Input Voltage
25V
No. Of Outputs
1
Output Voltage
12V
Output Current
1A
No. Of Pins
5
Operating Temperature Range
-40°C To +125°C
Msl
MSL 3 - 168 Hours
Supply Voltage Range
4V To 40V
Rohs Compliant
Yes
Filter Terminals
SMD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Other names
*LM2575S-12
*LM2575S-12/NOPB
LM2575S-12

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM2575S-12/NOPB
Manufacturer:
TI/NS
Quantity:
12 000
Given:
V
V
I
F = Switching Frequency (Fixed at 52 kHz)
1. Programming Output Voltage (Selecting R1 and R2, as shown
in Figure 2 )
Use the following formula to select the appropriate resistor values.
R
stability with time, use 1% metal film resistors)
2. Inductor Selection (L1)
A. Calculate the inductor Volt • microsecond constant,
E • T (V • μs), from the following formula:
B. Use the E • T value from the previous formula and match it with
the E • T number on the vertical axis of the Inductor Value Selec-
tion Guide shown in Figure 7.
C. On the horizontal axis, select the maximum load current.
D. Identify the inductance region intersected by the E • T value and
the maximum load current value, and note the inductor code for that
region.
E. Identify the inductor value from the inductor code, and select an
appropriate inductor from the table shown in Figure 9. Part numbers
are listed for three inductor manufacturers. The inductor chosen
must be rated for operation at the LM2575 switching frequency (52
kHz) and for a current rating of 1.15 × I
information, see the inductor section in the application hints section
of this data sheet.
3. Output Capacitor Selection (C
A. The value of the output capacitor together with the inductor de-
fines the dominate pole-pair of the switching regulator loop. For
stable operation, the capacitor must satisfy the following require-
ment:
The above formula yields capacitor values between 10 μF and 2000
μF that will satisfy the loop requirements for stable operation. But
to achieve an acceptable output ripple voltage, (approximately 1%
of the output voltage) and transient response, the output capacitor
may need to be several times larger than the above formula yields.
B. The capacitor's voltage rating should be at last 1.5 times greater
than the output voltage. For a 10V regulator, a rating of at least 15V
or more is recommended.
Higher voltage electrolytic capacitors generally have lower ESR
numbers, and for this reason it may be necessary to select a ca-
pacitor rate for a higher voltage than would normally be needed.
(Continued)
LOAD
OUT
IN
1
can be between 1k and 5k. (For best temperature coefficient and
(Max) = Maximum Input Voltage
(Max) = Maximum Load Current
PROCEDURE (Adjustable Output Voltage Versions)
= Regulated Output Voltage
OUT
LOAD
)
. For additional inductor
15
Given:
V
V
I
F = 52 kHz
1.Programming Output Voltage (Selecting R1 and R2)
R2 = 1k (8.13 − 1) = 7.13k, closest 1% value is 7.15k
2. Inductor Selection (L1)
A. Calculate E • T (V • μs)
B. E • T = 115 V • μs
C. I
D. Inductance Region = H470
E. Inductor Value = 470 μH Choose from AIE part #430-0634,
Pulse Engineering part #PE-53118, or Renco part #RL-1961.
3. Output Capacitor Selection (C
A.
However, for acceptable output ripple voltage select
C
C
(Continued)
LOAD
OUT
IN
OUT
OUT
(Max) = 25V
LOAD
(Max) = 1A
= 10V
= 220 μF electrolytic capacitor
EXAMPLE (Adjustable Output Voltage Versions)
220 μF
(Max) = 1A
OUT
)
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