LM2578AM/NOPB National Semiconductor, LM2578AM/NOPB Datasheet - Page 7

IC REG SIMPLE SWITCHER 8-SOIC

LM2578AM/NOPB

Manufacturer Part Number
LM2578AM/NOPB
Description
IC REG SIMPLE SWITCHER 8-SOIC
Manufacturer
National Semiconductor
Type
Step-Down (Buck), Step-Up (Boost), Inverting, Flybackr
Datasheet

Specifications of LM2578AM/NOPB

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Current - Output
750mA
Frequency - Switching
20kHz
Voltage - Input
2 ~ 40 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Primary Input Voltage
40V
No. Of Outputs
1
Output Current
750mA
No. Of Pins
8
Operating Temperature Range
-40°C To +85°C
Msl
MSL 1 - Unlimited
Input Voltage Primary Max
40V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Output
-
Power - Output
-
Other names
*LM2578AM
*LM2578AM/NOPB
LM2578AM
Test Circuit*
Op amp supplies are
DVM input resistance
*LM2578 max duty cycle is 90%
Definition of Terms
Input Reference Voltage: The voltage (referred to ground)
that must be applied to either the inverting or non-inverting
input to cause the regulator switch to change state (ON or
OFF).
Input Reference Current: The current that must be drawn
from either the inverting or non-inverting input to cause the
regulator switch to change state (ON or OFF).
Input Level Shift Accuracy: This specification determines
the output voltage tolerance of a regulator whose output
control depends on drawing equal currents from the inverting
and non-inverting inputs (see the Inverting Regulator of Fig-
ure 21, and the RS-232 Line Driver Power Supply of Figure
23).
Level Shift Accuracy is tested by using two equal-value
resistors to draw current from the inverting and non-inverting
input terminals, then measuring the percentage difference in
the voltages across the resistors that produces a controlled
duty cycle at the switch output.
Collector Saturation Voltage: With the inverting input ter-
minal grounded thru a 10 kΩ resistor and the output transis-
tor’s emitter connected to ground, the Collector Saturation-
Voltage is the collector-to-emitter voltage for a given
collector current.
Emitter Saturation Voltage: With the inverting input termi-
nal grounded thru a 10 kΩ resistor and the output transistor’s
collector connected to V
the collector-to-emitter voltage for a given emitter current.
Collector Emitter Sustaining Voltage: The collector-
emitter breakdown voltage of the output transistor, mea-
sured at a specified current.
±
>
15V
100 MΩ
(Continued)
in
, the Emitter Saturation Voltage is
7
Current Limit Sense Voltage: The voltage at the Current
Limit pin, referred to either the supply or the ground terminal,
which (via logic circuitry) will cause the output transistor to
turn OFF and resets cycle-by-cycle at the oscillator fre-
quency.
Current Limit Sense Current: The bias current for the
Current Limit terminal with the applied voltage equal to the
Current Limit Sense Voltage.
Supply Current: The IC power supply current, excluding the
current drawn through the output transistor, with the oscilla-
tor operating.
Functional Description
The LM2578A is a pulse-width modulator designed for use
as a switching regulator controller. It may also be used in
other applications which require controlled pulse-width volt-
age drive.
A control signal, usually representing output voltage, fed into
the LM2578A’s comparator is compared with an internally-
generated reference. The resulting error signal and the os-
cillator’s output are fed to a logic network which determines
when the output transistor will be turned ON or OFF. The
following is a brief description of the subsections of the
LM2578A.
COMPARATOR INPUT STAGE
The LM2578A’s comparator input stage is unique in that both
the inverting and non-inverting inputs are available to the
user, and both contain a 1.0V reference. This is accom-
plished as follows: A 1.0V reference is fed into a modified
voltage follower circuit (see FUNCTIONAL DIAGRAM).
When both input pins are open, no current flows through R1
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