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LT1500CS Datasheet(PDF) 8 Page - Linear Technology

Part # LT1500CS
Description  Adaptive-Frequency Current Mode Switching Regulators
PDF  16 Pages
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LT1500CS Datasheet(HTML) 8 Page - Linear Technology

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8
LT1500/LT1501
BLOCK DIAGRAM
–
+
–
+
–
+
BIAS
1.265V
REFERENCE
+
BURST
COMPARATOR
NEGATIVE
ERROR AMP
ERROR AMP
CURRENT
COMPARATOR
FIXED
HYSTERESIS
100k
150pF
VC
FB
NFB
GND
100k
S1
I1
I2
VARIABLE
HYSTERESIS
ISENSE
SW
PGND
R2
Q1
R1
18mV
RSENSE
0.28
Ω
Rh
IN
SYNC
LBO
1.24V
0.75V
SHDN
LBI
OUTPUT
LTC1500/01 • BD
APPLICATIONS INFORMATION
OPERATION (SEE BLOCK DIAGRAM)
The LT1500 uses a current mode architecture without the
need for an internal oscillator. Switching frequency is
determined by the value of the external inductor used. This
technique allows the selection of an operating frequency
best suited to each application and considerably simplifies
the internal circuitry needed. It also eliminates a
subharmonic oscillation problem common to all fixed
frequency (clocked) current mode switchers. In addition,
it allows for high efficiency micropower operation while
maintaining higher operating frequencies. Because the
power switch (Q1) is grounded, the basic topology used
will normally be a boost converter with output voltage
always higher than the input voltage. Special topologies
such as the SEPIC, flyback and Cuk converter can also be
used when the output voltage may not always be higher
than the input or when full shutdown of the output voltage
is needed. Operation as a boost converter is as follows.
Assume that inductor current is continuous, meaning that
it never drops to zero. When the switch is on, inductor
current will increase with voltage across the inductor
equal to VIN. When the switch is off inductor current will
decrease with inductor voltage equal to VOUT – VIN.
Switching frequency will be determined by the inductor



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