The LM2675 series of regulators are monolithic integrated
circuits built with a LMDMOS process. These regulators provide all the active functions for a step-down (buck) switching
regulator, capable of driving a 1A load current with excellent
line and load regulation. These devices areavailableinfixed
output voltages of 3.3V, 5.0V, 12V, and an adjustable output
version.
Requiring a minimumnumberofexternal components, these
regulators are simple to use and include patented internal
frequency compensation (Patent Nos. 5,382,918 and
5,514,947) and a fixed frequency oscillator.
The LM2675 series operates at a switching frequency of
260 kHz, thus allowing smaller sized filter components than
what would be needed with lower frequency switching regulators. Because of its very high efficiency (
per traces on the printed circuit board are the only heat sinking needed.
A family of standard inductors for use with the LM2675 are
available from several different manufacturers. This feature
greatly simplifies the design of switch-mode power supplies
using these advanced ICs. Also included in the datasheet
are selector guides for diodes and capacitors designed to
work in switch-mode power supplies.
Other features include a guaranteed
output voltage within specified input voltages and output
load conditions, and
ternal shutdown is included, featuring typically 50 µA
stand-by current. The output switch includes current limiting,
as well as thermal shutdown for full protection under fault
conditions.
±
10%on the oscillator frequency. Ex-
>
90%), the cop-
±
1.5%tolerance on
To simplify the LM2675 buck regulator design procedure,
there exists computer design software,
Simple
Features
n Efficiency up to 96
n Available in SO-8 and 8-pin DIP packages
n Computer Design Software
n Simple and easy to design with
n Requires only 5 external components
n Uses readily available standard inductors
n 3.3V, 5.0V, 12V, and adjustable output versions
n Adjustable version output voltage range: 1.21V to 37V
±
n
1.5%max output voltage tolerance over line and load
conditions
n Guaranteed 1A output load current
n 0.25Ω DMOS Output Switch
n Wide input voltage range: 8V to 40V
n 260 kHz fixed frequency internal oscillator
n TTL shutdown capability, low power standby mode
n Thermal shutdown and current limit protection
Typical Applications
n Simple High Efficiency (>90%) Step-Down (Buck)
Regulator
n Efficient Pre-Regulator for Linear Regulators
n Positive-to-Negative Converter
LM2675 SIMPLE SWITCHER Power Converter High Efficiency 1A Step-Down Voltage Regulator
September 1998
LM267X Made
version 1.0.
%
LM267X Made Simple
Typical Application
DS012803-1
SIMPLE SWITCHER®is a registered trademark of National Semiconductor Corporation.
®
Windows
is a registered trademark of Microsoft Corporation.
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Supply Voltage45V
ON/OFF Pin Voltage
Switch Voltage to Ground−1V
Boost Pin VoltageV
Feedback Pin Voltage−0.3V ≤ V
ESD Susceptibility
Human Body Model (Note 2)2 kV
Power DissipationInternally Limited
−0.1V ≤ VSH≤ 6V
+8V
SW
≤ 14V
FB
Storage Temperature Range−65˚C to +150˚C
Lead Temperature
M Package
Vapor Phase (60s)+215˚C
Infrared (15s)+220˚C
N Package (Soldering, 10s)+260˚C
Maximum Junction Temperature+150˚C
Operating Ratings
Supply Voltage6.5V to 40V
Junction Temperature Range−40˚C ≤ T
≤ +125˚C
J
Electrical Characteristics Specifications with standard type face are for T
type face apply over full Operating Temperature Range.
=
25˚C, and those with bold
J
LM2675-3.3
SymbolParameterConditionsTypicalMinMaxUnits
(Note 4)(Note 5)(Note 5)
SYSTEM PARAMETERS Test Circuit
V
V
Output VoltageV
OUT
Output VoltageV
OUT
ηEfficiencyV
Figure 2
=
8V to 40V, I
IN
=
6.5V to 40V, I
IN
=
12V, I
IN
(Note 3)
=
20 mA to 1A3.33.251/3.2013.350/3.399V
LOAD
=
20 mA to 500 mA3.33.251/3.2013.350/3.399V
LOAD
=
1A86
LOAD
%
LM2675-5.0
SymbolParameterConditionsTypicalMinMaxUnits
(Note 4)(Note 5)(Note 5)
SYSTEM PARAMETERS Test Circuit
V
V
Output VoltageV
OUT
Output VoltageV
OUT
ηEfficiencyV
Figure 2
=
8V to 40V, I
IN
=
6.5V to 40V, I
IN
=
12V, I
IN
(Note 3)
=
20 mA to 1A5.04.925/4.8505.075/5.150V
LOAD
=
20 mA to 500 mA5.04.925/4.8505.075/5.150V
LOAD
=
1A90
LOAD
%
LM2675-12
SymbolParameterConditionsTypicalMinMaxUnits
(Note 4)(Note 5)(Note 5)
SYSTEM PARAMETERS Test Circuit
V
Output VoltageV
OUT
ηEfficiencyV
=
15V to 40V, I
IN
=
24V, I
IN
Figure 2
LOAD
(Note 3)
=
20 mA to 1A1211.82/11.6412.18/12.36V
LOAD
=
1A94
%
LM2675-ADJ
SymbolParameterConditionsTypMinMaxUnits
(Note 4)(Note 5)(Note 5)
SYSTEM PARAMETERS Test Circuit
V
V
Feedback
FB
Voltage
Feedback
FB
Voltage
ηEfficiencyV
www.national.com2
Figure 3
=
V
8V to 40V, I
IN
Programmed for 5V
V
OUT
(see Circuit of
=
V
6.5V to 40V, I
IN
Programmed for 5V
V
OUT
(see Circuit of
=
12V, I
IN
(Note 3)
=
20 mA to 1A
LOAD
Figure 3
)
=
20 mA to 500 mA
LOAD
Figure 3
)
=
1A90
LOAD
1.2101.192/1.1741.228/1.246V
1.2101.192/1.1741.228/1.246V
%
All Output Voltage Versions
Electrical Characteristics
Specifications with standard type face are for T
ture Range. Unless otherwise specified, V
sion, and I
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is intended to be functional, but device parameter specifications may not be guaranteed under these conditions. For guaranteed specifications and test conditions, see
the Electrical Characteristics.
Note 2: The human body model is a 100 pF capacitor discharged through a 1.5 kΩ resistor into each pin.
Note 3: External components such as the catch diode, inductor, input and output capacitors, and voltage programming resistors can affect switching regulator per-
formance. When the LM2675 is used as shown in
Characteristics.
Note 4: Typical numbers are at 25˚C and represent the most likely norm.
Note 5: All limits guaranteed at room temperature (standard type face) and at temperature extremes (bold type face). All room temperature limits are 100%pro-
duction tested. All limits at temperature extremes are guaranteed via correlation using standard Statistical Quality Control (SQC) methods. All limits are used to calculate Average Outgoing Quality Level (AOQL).
Note 6: Junction to ambient thermal resistance with approximately 1 square inch of printed circuit board copper surrounding the leads. Additional copper area will
lower thermal resistance further. See Application Information section in the application note accompanying this datasheet and the thermal model in
software.
Simple
Figures 2, 3
=
25˚C, and those with bold type face apply over full Operating Tempera-
J
=
12V for the 3.3V, 5V, and Adjustable versions and V
IN
=
FEEDBACK
FEEDBACK
8V2.53.6mA
=
15V2.5mA
=
24V for the 12V ver-
IN
50100/150µA
=
40V, ON/OFF Pin=0V
IN
SWITCH
SWITCH
SWITCH
FEEDBACK
=
0V
=
−1V, ON/OFF Pin=0V
=
1A0.250.30/0.50Ω
=
1.3V
125µA
615mA
85nA
1.40.82.0V
test circuits, system performance will be as specified by the system parameters section of the Electrical