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LTC3725IMSE#PBF

Description
- 10-MSOP-EP
Categorysemiconductor    Application-specific Integrated Circuit   
File Size532KB,18 Pages
ManufacturerADI
Websitehttps://www.analog.com
Environmental Compliance
Download Datasheet Parametric View All

LTC3725IMSE#PBF Overview

- 10-MSOP-EP

LTC3725IMSE#PBF Parametric

Parameter NameAttribute value
category
MakerADI
series-
PackagePipe fittings
type-
applicationsecondary side controller
Installation typesurface mount type
Package/casing10-TFSOP, 10-MSOP (0.118", 3.00mm wide) exposed pad
Supplier device packaging10-MSOP-EP
Basic product numberLTC3725
QUICK START GUIDE FOR DEMONSTRATION CIRCUIT 1031A-B
36V-72VIN, SYNCHRONOUS FORWARD CONVERTER
LTC3725 / LTC3726
DESCRIPTION
Demonstration circuit 1031A-B is a 36V-72Vin, syn-
chronous forward converter featuring the
LTC3725/LTC3726. This circuit was designed spe-
cifically to attain a high current, low ripple, synchro-
nously rectified forward converter to efficiently
power 3.3V loads at up to 20A from a typical telecom
input voltage range. This circuit features secondary-
side control of the supply eliminating the need for an
optocoupler, self-starting architecture, input under-
voltage lockout, and output overvoltage protection.
Design files for this circuit board are available.
Call the LTC factory.
,
LTC and LT are registered trademarks of Linear Technology Corporation.
Table 1. Performance Summary (T
A
= 25°C)
PARAMETER
Minimum Input Voltage
Maximum Input Voltage
Output Voltage V
OUT
Maximum Output Current
Typical Output Ripple V
OUT
Size
Load Transient Response
Nominal Switching Frequency
Efficiency
V
IN
= 48V, I
OUT
= 20A
V
IN
= 36V to 72V, I
OUT
= 0A to 20A
200LFM Airflow
V
IN
= 72V, I
OUT
= 20A
Component Area x Top Component Height
Peak Deviation with Load Step of 10A to 20A (10A/us)
Settling Time
CONDITION
VALUE
36V
72V
3.3V
20A
100mV
P–P
2.3” x 0.9” x 0.394”
±200mV
40us
200kHz
91.5% Typical
OPERATING PRINCIPLES
The LTC3726 controller is used on the secondary and
the LTC3725 driver with self-starting capability is
used on the primary. When an input voltage is ap-
plied, the LTC3725 begins a controlled soft-start of
the output voltage. As this voltage begins to rise, the
LTC3726 secondary controller is quickly powered up
via T1, D25, and Q27. The LTC3726 then assumes
control of the output voltage by sending encoded
PWM gate pulses to the LTC3725 primary driver via
the small signal transformer, T2. The LTC3725 then
operates as a simple driver receiving both input sig-
nals and bias power through T2.
The transition from primary to secondary control oc-
curs seamlessly at a fraction of the output voltage.
From that point on, operation and design simplifies to
that of a simple buck converter. Secondary sensing
eliminates delays, tames large-signal overshoot and
reduces output capacitance while utilizing off-the-
shelf magnetics and attaining high efficiency.
For large values of input inductance, a 100V, 47uF elec-
trolytic capacitor can be added across the input termi-
nals to damp the input filter and provide adequate stabil-
ity. See Linear Technology Application Note AN19 for a
discussion on input filter stability analysis. A recom-
mended part is the Sanyo 100MV39AX.
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