LM2676T-ADJ National Semiconductor, LM2676T-ADJ Datasheet - Page 11

DC/DC Converter IC

LM2676T-ADJ

Manufacturer Part Number
LM2676T-ADJ
Description
DC/DC Converter IC
Manufacturer
National Semiconductor
Datasheets

Specifications of LM2676T-ADJ

Input Voltage
40V
Output Current
3A
Output Voltage
37V
No. Of Pins
7
Termination Type
Through Hole
Mounting Type
Through Hole
Voltage Regulator Type
Switching
Output Current Max
3A
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Application Hints
DESIGN CONSIDERATIONS
Power supply design using the LM2676 is greatly simplified
by using recommended external components. A wide range
of inductors, capacitors and Schottky diodes from several
manufacturers have been evaluated for use in designs that
cover the full range of capabilities (input voltage, output
voltage and load current) of the LM2676. A simple design
procedure using nomographs and component tables pro-
vided in this data sheet leads to a working design with very
little effort. Alternatively, the design software, LM267X Made
Simple (version 6.0), can also be used to provide instant
component selection, circuit performance calculations for
evaluation, a bill of materials component list and a circuit
schematic.
The individual components from the various manufacturers
called out for use are still just a small sample of the vast
array of components available in the industry. While these
components are recommended, they are not exclusively the
only components for use in a design. After a close compari-
FIGURE 2. Basic circuit for adjustable output voltage applications
FIGURE 1. Basic circuit for fixed output voltage applications.
(Continued)
11
son of component specifications, equivalent devices from
other manufacturers could be substituted for use in an ap-
plication.
Important considerations for each external component and
an explanation of how the nomographs and selection tables
were developed follows.
INDUCTOR
The inductor is the key component in a switching regulator.
For efficiency the inductor stores energy during the switch
ON time and then transfers energy to the load while the
switch is OFF.
Nomographs are used to select the inductance value re-
quired for a given set of operating conditions. The nomo-
graphs assume that the circuit is operating in continuous
mode (the current flowing through the inductor never falls to
zero). The magnitude of inductance is selected to maintain a
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