LTC3406B Linear Technology, LTC3406B Datasheet - Page 7

no-image

LTC3406B

Manufacturer Part Number
LTC3406B
Description
Dual DC/DC Converter with USB Power Manager and Li-Ion Battery Charger
Manufacturer
Linear Technology
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LTC3406B-2ES5
Manufacturer:
LINEAR
Quantity:
2 153
Part Number:
LTC3406B-2ES5
Manufacturer:
LT/凌特
Quantity:
20 000
Company:
Part Number:
LTC3406B-2ES5
Quantity:
2 400
Part Number:
LTC3406B-2ES5#TRMPBF
Manufacturer:
LT/凌特
Quantity:
20 000
Part Number:
LTC3406BES5
Manufacturer:
LT
Quantity:
5 321
Part Number:
LTC3406BES5
Manufacturer:
LT
Quantity:
10 000
Part Number:
LTC3406BES5
Manufacturer:
LT
Quantity:
20 000
Part Number:
LTC3406BES5#TR
Manufacturer:
LINEAR
Quantity:
20 000
Part Number:
LTC3406BES5#TRMPBF
0
Part Number:
LTC3406BES5#TRPBF
Manufacturer:
Linear
Quantity:
2 500
Part Number:
LTC3406BES5-1.2
Manufacturer:
LT
Quantity:
5 321
Part Number:
LTC3406BES5-1.2
Manufacturer:
LINEAR/凌特
Quantity:
20 000
www.DataSheet4U.com
Short-Circuit Protection
When the output is shorted to ground, the frequency of the
oscillator is reduced to about 210kHz, 1/7 the nominal
frequency. This frequency foldback ensures that the in-
ductor current has more time to decay, thereby preventing
runaway. The oscillator’s frequency will progressively
increase to 1.5MHz when V
Dropout Operation
As the input supply voltage decreases to a value approach-
ing the output voltage, the duty cycle increases toward the
maximum on-time. Further reduction of the supply voltage
forces the main switch to remain on for more than one cycle
until it reaches 100% duty cycle. The output voltage will then
be determined by the input voltage minus the voltage drop
across the P-channel MOSFET and the inductor.
An important detail to remember is that at low input supply
voltages, the R
(see Typical Performance Characteristics). Therefore, the
user should calculate the power dissipation when the
LTC3406 is used at 100% duty cycle with low input voltage
(See Thermal Considerations in the Applications Informa-
tion section).
Low Supply Operation
The LTC3406 will operate with input supply voltages as
low as 2.5V, but the maximum allowable output current is
reduced at this low voltage. Figure 2 shows the reduction
OPERATIO
DS(ON)
U
(Refer to Functional Diagram)
of the P-channel switch increases
FB
or V
OUT
rises above 0V.
in the maximum output current as a function of input
voltage for various output voltages.
Slope Compensation and Inductor Peak Current
Slope compensation provides stability in constant fre-
quency architectures by preventing subharmonic oscilla-
tions at high duty cycles. It is accomplished internally by
adding a compensating ramp to the inductor current
signal at duty cycles in excess of 40%. Normally, this
results in a reduction of maximum inductor peak current
for duty cycles > 40%. However, the LTC3406 uses a
patent-pending scheme that counteracts this compensat-
ing ramp, which allows the maximum inductor peak
current to remain unaffected throughout all duty cycles.
Figure 2. Maximum Output Current vs Input Voltage
1200
1000
800
600
400
200
0
2.5
LTC3406-1.5/LTC3406-1.8
V
V
OUT
OUT
3.0
= 1.8V
= 1.5V
SUPPLY VOLTAGE (V)
3.5
V
OUT
4.0
= 2.5V
4.5
5.0
3406 F02
LTC3406
5.5
sn3406 3406fs
7

Related parts for LTC3406B