LTC3721EGN-1#PBF Linear Technology, LTC3721EGN-1#PBF Datasheet - Page 9

IC CTLR PWM PUSH PULL HE 16SSOP

LTC3721EGN-1#PBF

Manufacturer Part Number
LTC3721EGN-1#PBF
Description
IC CTLR PWM PUSH PULL HE 16SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC3721EGN-1#PBF

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-SSOP
Frequency-max
1MHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Supply
-

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Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
LTC3721EGN-1#PBFLTC3721EGN-1
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC3721EGN-1#PBFLTC3721EGN-1
Manufacturer:
LINEAR/凌特
Quantity:
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OPERATIO
Please refer to the detailed Block Diagram for this discus-
sion. The LTC3721-1 is a PWM push-pull controller that
operates with pulse-by-pulse peak current mode control.
It is best suited for moderate to high power isolated power
systems where small size and high efficiency are required.
The push-pull topology delivers excellent transformer
utilization and requires only two low side power MOSFET
switches. The controller generates 180° out of phase
0% to < 50% duty cycle drive signals on DRVA and DRVB.
The external MOSFETs are driven directly by these power-
ful on-chip drivers. The external MOSFETs typically con-
trol opposite primary windings of a centertapped power
transformer. The centertap primary winding is connected
to the input DC feed. The secondary of the transformer can
be configured in different synchronous or nonsynchronous
configurations depending on the application needs.
The duty ratio is controlled by the voltage on COMP. A
switching cycle commences with the falling edge of the
internal oscillator clock pulse. The LTC3721-1 attenuates
the voltage on COMP and compares it to the current sense
signal to terminate the switching cycle. If the voltage on CS
exceeds 300mV, the present cycle is terminated. If the
voltage on CS exceeds 600mV, all switching stops and a
soft-start sequence is initiated.
A host of other features including an error amplifier,
system UVLO programming, adjustable leading edge blank-
ing, slope compensation and programmable dead-time
provide flexibility for a variety of applications.
Programming Driver Dead-Time
The LTC3721-1 includes a feature to program the mini-
mum time between the output signals on DRVA and DRVB
commonly referred to as the driver dead-time. This func-
tion will come into play if the controller is commanded for
maximum duty cycle. The dead-time is set with an
external resistor connected between DPRG and V
Figure 1). The nominal regulated voltage on DPRG is 2V.
The external resistor programs a current which flows into
DPRG. The dead-time can be adjusted from 90ns to 300ns
with this resistor. The dead-time can also be modulated
based on an external current source that feeds current into
DPRG. Care must be taken to limit the current fed into
DPRG to 350µA or less. An internal 10µA current source
U
REF
(see
sets a maximum deadtime if DPRG is floated. The internal
current source causes the programmed deadtime to vary
non-linearly with increasing values of R
Performance Characteristics). An external 200k resistor
connected from DPRG to GND will compensate for the
internal 10µA current source and linearize the deadtime
delay vs R
Powering the LTC3721-1
The LTC3721-1 utilizes an integrated V
to serve the dual purposes of limiting the voltage applied
to V
sufficient to begin switching operation (under voltage
lockout). With its typical 10.2V turn-on voltage and 4.2V
UVLO hysteresis, the LTC3721-1 is tolerant of loosely
regulated input sources such as an auxiliary transformer
winding. The V
of externally applied current. The UVLO turn-on and turn-
off thresholds are derived from an internally trimmed
reference making them extremely accurate. In addition,
the LTC3721-1 exhibits very low (145µA typ) start-up
current that allows the use of 1/8W to 1/4W trickle charge
start-up resistors.
The trickle charge resistor should be selected as follows:
Adding a small safety margin and choosing standard
values yields:
APPLICATION
DC/DC
Off-Line
PFC Preregulator
OPTIONAL
R
CC
200k
START(MAX)
R
as well as signaling that the chip’s bias voltage is
DPRG
DPRG
DPRG
V
REF
CC
= V
characteristic.
Figure 1. Deadtime Adjust
shunt is capable of sinking up to 40mA
V
+
IN(MIN)
2V
85V to 270V
V
36V to 72V
– 10.7V/250µA
IN
390V
RANGE
2.5V
DC
RMS
+
LTC3721-1
CC
DPRG
shunt regulator
(see Typical
R
sn37211 37211fs
1.4M
100k
430k
START
TURN-ON
OUTPUT
37211 F01
9

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