L6599N STMicroelectronics, L6599N Datasheet - Page 25

IC RESONANT CONVERTR CTRLR 16DIP

L6599N

Manufacturer Part Number
L6599N
Description
IC RESONANT CONVERTR CTRLR 16DIP
Manufacturer
STMicroelectronics
Type
Phase Shift Resonant Controllerr
Datasheet

Specifications of L6599N

Applications
Resonant Converter Controller
Voltage - Supply
8.85 V ~ 16 V
Current - Supply
3.5mA
Operating Temperature
0°C ~ 105°C
Mounting Type
Through Hole
Package / Case
16-DIP (0.300", 7.62mm)
Number Of Pwm Outputs
1
Switching Freq
500KHz
Operating Supply Voltage (max)
16V
Output Current
800A
Operating Temperature Classification
Automotive
Mounting
Through Hole
Pin Count
16
Package Type
PDIP
Number Of Outputs
Single Output
Switching Frequency
500 KHz
Operating Supply Voltage
8.85 V to 16 V
Maximum Operating Temperature
+ 150 C
Minimum Operating Temperature
- 40 C
Mounting Style
Through Hole
Supply Voltage Range
8.85V To 16V
Digital Ic Case Style
DIP
No. Of Pins
16
Operating Temperature Range
-40°C To +150°C
Svhc
No SVHC (15-Dec-2010)
Base Number
6599
Device Type
Power
Rohs Compliant
Yes
For Use With
497-10542 - BOARD EVAL BASED ON L6599497-8429 - BOARD ADAPTER L6599/STP12NM50N497-8265 - BOARD EVAL BASED ON L6599497-5857 - DEMO BOARD FOR L6599497-5856 - DEMO BOARD FOR L6599497-5497 - EVAL BOARD FOR L6599497-5496 - EVAL BOARD FOR L6599
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Input
-
Lead Free Status / Rohs Status
Compliant
Other names
497-5723
L6599NR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
L6599N
Manufacturer:
TI
Quantity:
15 700
Part Number:
L6599N
Manufacturer:
ST
0
Part Number:
L6599N/PB-FREE
Manufacturer:
ST
0
L6599
The circuit shown in
series to C
operates like a capacitive current divider; C
less and will be a low-loss type, the sense resistor R
and C
If the resistor R
kΩ ), the circuit operates like a divider of the ripple voltage across the resonant capacitor Cr,
which, in turn, is related to its current through the reactance of Cr. Again, C
selected equal to C
(provided it is << R
where the reactance of C
I
Whichever circuit one is going to use, the calculated values of R
considered just a first cut value that needs to be adjusted after experimental verification.
OCP is effective in limiting primary-to-secondary energy flow in case of an overload or an
output short circuit, but the output current through the secondary winding and rectifiers
under these conditions might be so high to endanger converter's safety if continuously
flowing. To prevent any damage during these conditions it is customary to force converter's
intermittent operation, in order to bring the average output current to values such that the
thermal stress for the transformer and the rectifiers can be easily handled.
With the L6599 the designer can program externally the maximum time T
converter is allowed to run overloaded or under short circuit conditions. Overloads or short
circuits lasting less than T
with immunity to short duration phenomena. If, instead, T
protection (OLP) procedure is activated that shuts down the device and, in case of
continuous overload/short circuit, results in continuous intermittent operation with a user-
defined duty cycle.
Crpk
= I
B
Crpkx
will be such that R
A
. Again, C
is small (not above some hundred Ω, just to limit current spiking) the circuit
A
in series to C
A
R
) according to:
Figure 31
/100 or less, this time not necessarily a low-loss type, while R
B
will be such that R
A
SH
B
(X
·C
will not cause any other action, hence providing the system
CA
B
A
can be operated in two different ways. If the resistor R
is in the range of 10 /f
is not small (in this case it will be typically selected in the ten
) and C
R
B
R
B
=
R
=
-------------- -
I
0.8π
Crpkx
(X
-------------- - 1
I
0.8π
Crpkx
B
A
Cr
·C
will be typically selected equal to C
) should be calculated at the frequency where
B
--------------------------- -
is in the range of 10 /f
R
+
2
A
X
------ -
C
+
C
C
B
A
r
min
r
X
will be selected as:
2
C
A
.
SH
is exceeded an overload
S
or R
Application information
min
B
should be
.
SH
A
will be typically
that the
R
/100 or
B
A
25/36
in

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