LT3431EFE#PBF Linear Technology, LT3431EFE#PBF Datasheet - Page 13

IC SW REG STEP-DOWN 3A 16TSSOP

LT3431EFE#PBF

Manufacturer Part Number
LT3431EFE#PBF
Description
IC SW REG STEP-DOWN 3A 16TSSOP
Manufacturer
Linear Technology
Type
Step-Down (Buck)r
Datasheet

Specifications of LT3431EFE#PBF

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
1.2 ~ 48 V
Current - Output
3A
Frequency - Switching
500kHz
Voltage - Input
5.5 ~ 60 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
16-TSSOP Exposed Pad, 16-eTSSOP, 16-HTSSOP
Primary Input Voltage
60V
No. Of Outputs
1
Output Voltage
48V
Output Current
6.5A
No. Of Pins
16
Operating Temperature Range
-40°C To +125°C
Msl
MSL 1 - Unlimited
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-

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APPLICATIO S I FOR ATIO
time involved in both the current comparator and turnoff
of the output switch. These result in a minimum on time
t
(V
voltage drop, the potential exists for a loss of control.
Expressed mathematically the requirement to maintain
control is:
where:
f = switching frequency
t
V
V
I • R = inductor I • R voltage drop
If this condition is not observed, the current will not be
limited at I
higher value. Using the nominal LT3431 clock frequency
of 500KHz, a V
maximum t
100ns, an unacceptably short time.
The solution to this dilemma is to slow down the oscilla-
tor when the FB pin voltage is abnormally low thereby
indicating some sort of short-circuit condition. Oscillator
frequency is unaffected until FB voltage drops to about 2/3
of its normal value. Below this point the oscillator fre-
quency decreases roughly linearly down to a limit of about
100kHz. This lower oscillator frequency during short-
circuit conditions can then maintain control with the
effective minimum on time. Even with frequency foldback,
however, the LT3431 will not survive a permanent output
short at the absolute maximum voltage rating of V
this is defined solely by internal semiconductor junction
breakdown effects.
For the maximum input voltage allowed during an output
short to ground, the previous equation defining minimum
on-time can be used. Assuming V
0.52V at 2.5A (short-circuit current is folded back to
typical switch current limit • 0.5), I (inductor) • DCR = 2.5A
• 0.027 = 0.068V (L = UP2B-100), typical f = 100kHz
(folded back) and typical minimum on-time = 275ns, the
ON(MIN)
ON
F
IN
F
f t
= diode forward voltage
+ I • R), the diode forward voltage plus inductor I • R
= switch minimum on time
= Input voltage
ON
. When combined with the large ratio of V
PK
ON
V
, but will cycle-by-cycle ratchet up to some
F
to maintain control would be approximately
IN
V
IN
I R
of 12V and a (V
U
U
F
+ I • R) of say 0.6V, the
W
F
(D1 catch diode) =
U
IN
= 60V;
IN
to
maximum allowable input voltage during an output short
to ground is typically:
Increasing the DCR of the inductor will increase the
maximum V
but will also drop overall efficiency during normal opera-
tion.
It is recommended that for [V
soft-start circuit should be used to control the output
capacitor charge rate during start-up or during recovery
from an output short circuit, thereby adding additional
control over peak inductor current. See Buck Converter
with Adjustable Soft-Start later in this data sheet.
OUTPUT CAPACITOR
The LT3431 will operate with either ceramic or tantalum
output capacitors. The output capacitor is normally cho-
sen by its effective series resistance (ESR), because this
is what determines output ripple voltage. The ESR range
for typical LT3431 applications using a tantalum output
capacitor is 0.05 to 0.2 . A typical output capacitor is an
AVX type TPS, 100 F at 10V, with a guaranteed ESR less
than 0.1 . This is a “D” size surface mount solid tantalum
capacitor. TPS capacitors are specially constructed and
tested for low ESR, so they give the lowest ESR for a given
volume. The value in microfarads is not particularly criti-
cal, and values from 22 F to greater than 500 F work well,
but you cannot cheat mother nature on ESR. If you find a
tiny 22 F solid tantalum capacitor, it will have high ESR,
and output ripple voltage will be terrible. Table 3 shows
some typical solid tantalum surface mount capacitors.
Table 3. Surface Mount Solid Tantalum Capacitor ESR
and Ripple Current
E Case Size
AVX TPS, Sprague 593D
D Case Size
AVX TPS, Sprague 593D
C Case Size
AVX TPS
V
V
IN
IN(MAX)
= (0.52V + 0.068V)/(100kHz • 275ns)
= 21V
IN
allowed during an output short to ground
ESR (Max.,
0.1 to 0.3
0.1 to 0.3
0.2 (typ)
IN
/(V
OUT
)
+ V
Ripple Current (A)
F
)] ratios > 4, a
0.7 to 1.1
0.7 to 1.1
0.5 (typ)
LT3431
sn3431 3431fs
13

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