LTC1872BES6 LINER [Linear Technology], LTC1872BES6 Datasheet - Page 5

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LTC1872BES6

Manufacturer Part Number
LTC1872BES6
Description
Constant Frequency Current Mode Step-Up DC/DC Controller in ThinSOT
Manufacturer
LINER [Linear Technology]
Datasheet

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OPERATIO
Figure 2 illustrates this result for the circuit of Figure 1
using both an LTC1872 in Burst Mode operation and an
LTC1872B (non-Burst Mode operation). At an output
current of 50mA, the Burst Mode operation part exhibits
an output ripple of approximately 80mV
non-Burst Mode operation part has an output ripple of
ment is even greater. This comes at a trade off of slightly
lower efficiency for the non-Burst Mode operation part.
Also notice the constant frequency operation of the
LTC1872B, even at 5% of maximum output current.
Undervoltage Lockout
To prevent operation of the N-channel MOSFET below safe
input voltage levels, an undervoltage lockout is incorpo-
rated into the LTC1872B. When the input supply voltage
drops below approximately 2.0V, the N-channel MOSFET
and all circuitry is turned off except the undervoltage
block, which draws only several microamperes.
Overvoltage Protection
The overvoltage comparator in the LTC1872B will turn the
external MOSFET off when the feedback voltage has risen
7.5% above the reference voltage of 0.8V. This compara-
tor has a typical hysteresis of 20mV.
20mV AC/DIV
45mV
P-P
V
V
I
OUT
IN
OUT
. At lower output current levels, the improve-
= 3.3V
= 50mA
= 5V
(2a) V
Using LTC1872 Burst Mode Operation
U
OUT
Ripple for Figure 1 Circuit
(Refer to Functional Diagram)
5 s/DIV
Figure 2. Output Ripple Waveforms for the Circuit of Figure 1
P-P
, whereas the
1872B F02a
Slope Compensation and Inductor’s Peak Current
The inductor’s peak current is determined by:
when the LTC1872B is operating below 40% duty cycle.
However, once the duty cycle exceeds 40%, slope com-
pensation begins and effectively reduces the peak induc-
tor current. The amount of reduction is given by the curves
in Figure 3.
20mV AC/DIV
I
PK
Figure 3. Maximum Output Current vs Duty Cycle
10
V
V
I
V
OUT
IN
OUT
(2b) V
LTC1872B Non-Burst Mode Operation
ITH
= 3.3V
110
100
R
= 50mA
90
80
70
60
50
40
30
20
10
= 5V
SENSE
0
OUT
0 7
V
10 20 30 40 50
IN
.
= 4.2V
I
AT 5% DUTY CYCLE
I
AT 5% DUTY CYCLE
Ripple for Figure 1 Circuit Using
RIPPLE
RIPPLE
= 0.4I
= 0.2I
DUTY CYCLE (%)
5 s/DIV
PK
PK
60
70 80 90 100
LTC1872B
1872B F03
1872B F02b
5

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