LTC3721EUF-1 Linear Technology, LTC3721EUF-1 Datasheet - Page 13

IC CTRLR PWM PUSH PULL HE 16QFN

LTC3721EUF-1

Manufacturer Part Number
LTC3721EUF-1
Description
IC CTRLR PWM PUSH PULL HE 16QFN
Manufacturer
Linear Technology
Datasheet

Specifications of LTC3721EUF-1

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
1MHz
Duty Cycle
50%
Buck
No
Boost
No
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
-40°C ~ 85°C
Package / Case
16-QFN
Frequency-max
1MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Voltage - Supply
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LTC3721EUF-1
Manufacturer:
LT
Quantity:
10 000
OPERATIO
The duty cycle of these square waves is guaranteed to
never exceed 50% by the LTC3721-1. In steady state
operation, the duty ratio is given by:
To calculate the transformer turns ratio, first determine
the minimum input voltage (V
duty ratio (D
worst case condition. An example is provided below:
The required transformer turns ratio is given by:
D = V
V
system voltage drops.
V
Maximum duty cycle (D
use 45% for margin.
Turns ratio (Ns/Np) = V
IN
OUT
= 32V to 75V, use V
OUT
= 7V
/(2 • V
(MAX)
Ns/Np = (1/3.86)
U
IN
) of the controller IC. This will be the
• N)
= 7V/(30V • 2 • 0.45)
OUT
MAX
IN(MIN)
/(V
IN(MIN)
) = 47% (per datasheet),
IN(MIN)
= 30V to account for
) and the maximum
• 2 • D
(MAX)
)
Note that this is a simplified equation that does not take
into account primary and secondary side voltage drops
due to diodes, power MOSFETs, and resistive elements in
the power paths. By margining down V
suggested above, the equation becomes closer to reality.
An alternative secondary winding configuration uses a
single non-center tapped winding and two filter inductors.
Each end of the secondary winding alternately drives an
inductor with <50% duty cycle square wave. The two
inductors are connected together at the opposite ends to
common output filter capacitor(s). This configuration is
also called the current doubler rectifier. The current dou-
bler utilizes half of the secondary windings compared to
the center tapped case. The two out of phase inductors
reduce the ripple current seen by the output and input
capacitors, possibly allowing fewer capacitors in some
applications. In addition, each output inductor carries half
of the total load current, making them physically smaller,
which can help to optimize the power stage layout. How-
ever, the total combined size may be slightly larger than
the single inductor configuration.
LTC3721-1
IN(MIN)
and D
sn37211 37211fs
13
MAX
as

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