LTC1142CG#PBF Linear Technology, LTC1142CG#PBF Datasheet - Page 10

IC SW REG STEP-DOWN DUAL 28-SSOP

LTC1142CG#PBF

Manufacturer Part Number
LTC1142CG#PBF
Description
IC SW REG STEP-DOWN DUAL 28-SSOP
Manufacturer
Linear Technology
Type
Step-Down (Buck)r
Datasheet

Specifications of LTC1142CG#PBF

Internal Switch(s)
No
Synchronous Rectifier
Yes
Number Of Outputs
2
Voltage - Output
3.3V, 5V
Current - Output
50mA
Frequency - Switching
250kHz
Voltage - Input
3.5 ~ 18 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-SSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC1142CG#PBFLTC1142CG
Manufacturer:
LT/凌特
Quantity:
20 000
APPLICATIO S I FOR ATIO
LTC1142/LTC1142L/LTC1142HV
both track I
I
The LTC1142 automatically extends t
circuit to allow sufficient time for the inductor current to
decay between switch cycles. The resulting ripple current
causes the average short-circuit current I
reduced to approximately I
L and C
Each regulator section of the LTC1142 uses a constant off-
time architecture with t
timing capacitor C
switch turns on, the voltage on C
3.3V. During the off-time, C
which is proportional to V
analogous to the current in inductor L, which likewise
decays at a rate proportional to V
value must track the timing capacitor value.
The value of C
mode operating frequency:
Assumes V
10
SC(PK)
I
I
C
BURST
SC(PK)
T
can be predicted from the following:
T
2 6 10
Selection for Operating Frequency
.
=
MAX
IN
0.20
0.15
0.10
0.05
150mV
R
R
15mV
0
= 2V
SENSE
T
SENSE
1
. Once R
0
is calculated from the desired continuous
Figure 2. Selecting R
4
OUT
T
MAXIMUM OUTPUT CURRENT (A)
U
. Each time the P-channel MOSFET
f
1
, Figure 1 circuit.
SENSE
OFF
U
2
MAX
T
OUT
has been chosen, I
determined by an external
is discharged by a current
.
T
. The voltage on C
3
is reset to approximately
OUT
SENSE
W
. Thus the inductor
OFF
4
1142 F02
during a short
SC(AVG)
5
BURST
U
to be
T
and
is
A graph for selecting C
effects of input voltage is given in Figure 3.
As the operating frequency is increased the gate charge
losses will be higher, reducing efficiency (see Efficiency
Considerations section). The complete expression for
operating frequency of the circuit in Figure 1 is given by:
where:
V
is the measured output voltage. Thus V
regulation.
Note that as V
When the input-to-output voltage differential drops below
1.5V for a particular section, the LTC1142 reduces t
that section by increasing the discharge current in C
prevents audible operation prior to dropout.
Once the frequency has been set by C
be chosen to provide no more than 25mV/R
to-peak inductor ripple current. This results in a minimum
required inductor value of:
As the inductor value is increased from the minimum
value, the ESR requirements for the output capacitor are
REG
f
t
L
OFF
MIN
is the desired output voltage (i.e., 5V, 3.3V). V
t
OFF
1
= 5.1 • 10
1 3 10
1000
.
800
600
400
200
1
0
Figure 3. Timing Capacitor Value
0
IN
V
V
V
OUT
4
IN
5
IN
decreases, the frequency decreases.
50
= 7V
• R
C
T
SENSE
T
100
FREQUENCY (kHz)
versus frequency including the
V
V
V
IN
REG
OUT
150
• C
= 12V
V
SENSE
T
• V
200
T
= V
, the inductor L must
REG
OUT
V
IN
250
REG
= 10V
= 5V
1142 F03
SENSE
/ V
300
OUT
of peak-
T
= 1 in
OFF
. This
OUT
in

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