L6599ADTR STMicroelectronics, L6599ADTR Datasheet - Page 23

IC RESONANT CONVRTR CTRLR 16SOIC

L6599ADTR

Manufacturer Part Number
L6599ADTR
Description
IC RESONANT CONVRTR CTRLR 16SOIC
Manufacturer
STMicroelectronics
Datasheets

Specifications of L6599ADTR

Applications
Resonant Converter Controller
Voltage - Supply
8.85 V ~ 16 V
Current - Supply
3.5mA
Operating Temperature
0°C ~ 105°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (3.9mm Width)
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
16
Operating Supply Voltage
8.15 V, 10.7 V, 17 V
Maximum Operating Temperature
+ 150 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
For Use With
497-10542 - BOARD EVAL BASED ON L6599497-8429 - BOARD ADAPTER L6599/STP12NM50N497-5496 - EVAL BOARD FOR L6599
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Input
-
Lead Free Status / Rohs Status
Compliant
Other names
497-8519-2

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L6599A
7.3
Soft-start
Generally speaking, purpose of soft-start is to progressively increase converter's power
capability when it is started up, so as to avoid excessive inrush current. In resonant
converters the deliverable power depends inversely on frequency, then soft- start is done by
sweeping the operating frequency from an initial high value until the control loop takes over.
With the L6599A converter's soft start-up is simply realized with the addition of an R-C
series circuit from pin 4 (RFmin) to ground (see
Initially, the capacitor CSS is totally discharged, so that the series resistor RSS is effectively
in parallel to RFmin and the resulting initial frequency is determined by RSS and RFmin
only, since the optocoupler's phototransistor is cut off (as long as the output voltage is not
too far away from the regulated value):
Equation 4
The C
(2 V) and, consequently, the current through R
times constants R
regulated value and the feedback loop taken over, so that it will be the optocoupler's
phototransistor to determine the operating frequency from that moment onwards.
During this frequency sweep phase the operating frequency will decay following the
exponential charge of C
change will get slower and slower. This counteract the non-linear frequency dependence of
the tank circuit that makes converter's power capability change little as frequency is away
from resonance and change very quickly as frequency approaches resonance frequency
(see
Figure 27. Soft-start circuit (left) and power vs. frequency curve in an resonant
As a result, the average input current will smoothly increase, without the peaking that occurs
with linear frequency sweep, and the output voltage will reach the regulated value with
almost no overshoot.
Typically, R
Figure 27
SS
capacitor is progressively charged until its voltage reaches the reference voltage
SS
half-bridge (right)
and C
, right).
SS
SS
·C
SS
will be selected based on the following relationships:
SS
but, before that time, the output voltage will have got close to the
, that is, initially it will change relatively quickly but the rate of
Doc ID 15308 Rev 5
f
start
=
3
CF
(
SS
RF
Figure 27
1
goes to zero. This conventionally takes 5
min
//
R
SS
, left).
)
Application information
23/36

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