LTC1772CS6#TR Linear Technology, LTC1772CS6#TR Datasheet - Page 8

IC CTRLR DC/DC STEPDOWN SOT23-6

LTC1772CS6#TR

Manufacturer Part Number
LTC1772CS6#TR
Description
IC CTRLR DC/DC STEPDOWN SOT23-6
Manufacturer
Linear Technology
Type
Step-Down (Buck)r
Datasheet

Specifications of LTC1772CS6#TR

Internal Switch(s)
No
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
0.8 ~ 9.8 V
Current - Output
1A
Frequency - Switching
550kHz
Voltage - Input
2.5 ~ 9.8 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
TSOT-23-6, TSOT-6
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Power - Output
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC1772CS6#TRLTC1772CS6
Manufacturer:
LINEAR
Quantity:
5 321
Company:
Part Number:
LTC1772CS6#TRLTC1772CS6
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC1772CS6#TR
Manufacturer:
CS
Quantity:
3
Company:
Part Number:
LTC1772CS6#TR
Manufacturer:
LT/凌特
Quantity:
20 000
Company:
Part Number:
LTC1772CS6#TRPBF
Manufacturer:
LINEAR/凌特
Quantity:
20 000
APPLICATIONS
LTC1772
Output Diode Selection
The catch diode carries load current during the off-time.
The average diode current is therefore dependent on the
P-channel switch duty cycle. At high input voltages the
diode conducts most of the time. As V
the diode conducts only a small fraction of the time. The
most stressful condition for the diode is when the output
is short-circuited. Under this condition the diode must
safely handle I
it is important to adequately specify the diode peak current
and average power dissipation so as not to exceed the
diode ratings.
Under normal load conditions, the average current con-
ducted by the diode is:
The allowable forward voltage drop in the diode is calcu-
lated from the maximum short-circuit current as:
where P
determined by efficiency and/or thermal requirements.
A fast switching diode must also be used to optimize
efficiency. Schottky diodes are a good choice for low
forward drop and fast switching times. Remember to keep
lead length short and observe proper grounding (see
Board Layout Checklist) to avoid ringing and increased
dissipation.
C
In continuous mode, the source current of the P-channel
MOSFET is a square wave of duty cycle (V
(V
input capacitor sized for the maximum RMS current must
be used. The maximum RMS capacitor current is given by:
8
IN
IN
I
V
C
D
and C
F
+ V
IN
=
Required
D
I
D
V
SC MAX
). To prevent large voltage transients, a low ESR
IN
OUT
V
is the allowable power dissipation and will be
IN
P
(
D
+
PEAK
Selection
V
OUT
V
)
D
I
RMS
at close to 100% duty cycle. Therefore,
U
I
OUT
INFORMATION
I
MAX
U
[
V
OUT
W
(
IN
V
IN
approaches V
V
IN
V
OUT
OUT
U
)
]
1 2 /
+ V
OUT
D
)/
This formula has a maximum value at V
I
monly used for design because even significant deviations
do not offer much relief. Note that capacitor manufacturer’s
ripple current ratings are often based on 2000 hours of life.
This makes it advisable to further derate the capacitor, or
to choose a capacitor rated at a higher temperature than
required. Several capacitors may be paralleled to meet the
size or height requirements in the design. Due to the high
operating frequency of the LTC1772, ceramic capacitors
can also be used for C
if there is any question.
The selection of C
series resistance (ESR). Typically, once the ESR require-
ment is satisfied, the capacitance is adequate for filtering.
The output ripple (∆V
where f is the operating frequency, C
capacitance and I
tor. The output ripple is highest at maximum input voltage
since ∆I
Manufacturers such as Nichicon, United Chemicon and
Sanyo should be considered for high performance through-
hole capacitors. The OS-CON semiconductor dielectric
capacitor available from Sanyo has the lowest ESR (size)
product of any aluminum electrolytic at a somewhat
higher price. Once the ESR requirement for C
met, the RMS current rating generally far exceeds the
I
In surface mount applications, multiple capacitors may
have to be paralleled to meet the ESR or RMS current
handling requirements of the application. Aluminum elec-
trolytic and dry tantalum capacitors are both available in
surface mount configurations. In the case of tantalum, it is
critical that the capacitors are surge tested for use in
switching power supplies. An excellent choice is the AVX
TPS, AVX TPSV and KEMET T510 series of surface mount
tantalum, available in case heights ranging from 2mm to
4mm. Other capacitor types include Sanyo OS-CON,
Nichicon PL series and Panasonic SP.
RMS
RIPPLE(P-P)
∆V
= I
OUT
OUT
L
increases with input voltage.
/2. This simple worst-case condition is com-
requirement.
I
RIPPLE
RIPPLE
OUT
IN
ESR
OUT
is driven by the required effective
. Always consult the manufacturer
is the ripple current in the induc-
) is approximated by:
+
4
fC
1
OUT
IN
OUT
= 2V
is the output
OUT
OUT
has been
, where
1772fb

Related parts for LTC1772CS6#TR