ICE2QS01 Infineon Technologies, ICE2QS01 Datasheet - Page 10

IC PWM CONTROLLER 8DIP

ICE2QS01

Manufacturer Part Number
ICE2QS01
Description
IC PWM CONTROLLER 8DIP
Manufacturer
Infineon Technologies
Type
Quasi-resonant PWM Controllerr
Datasheet

Specifications of ICE2QS01

Package / Case
8-DIP (0.300", 7.62mm)
Frequency - Switching
80kHz
Current - Startup
300µA
Voltage - Supply
11 V ~ 25 V
Operating Temperature
-25°C ~ 125°C
Mounting Type
Through Hole
Switching Frequency
80 KHz
Maximum Operating Temperature
+ 125 C
Mounting Style
Through Hole
Minimum Operating Temperature
- 25 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Mode
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
SP000269328

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3.4
At very low load condition, the IC enters active burst
mode operation to minimize the input power. Details
about active burst mode operation are explained in the
following paragraphs.
3.4.1
For determination of entering active burst mode
operation, three conditions apply:
the regulation voltage is lower than the threshold of
V
shunt resistor is 0.11V;
the up/down counter has its maximal value of 7; and
a certain blanking time (24ms).
Once all of these conditions are fulfilled, the active
burst mode flip-flop is set and the controller enters
burst
determination for entering active burst mode operation
prevents mistriggering of entering active burst mode
operation, so that the controller enters active burst
mode operation only when the output power is really
low during the preset blanking time.
3.4.2
After entering the Active Burst Mode the regulation
voltage rises as V
inactive PWM section. One comparator observes the
regulation signal if the voltage level V
exceeded. In that case the internal circuit is again
activated by the internal bias to start with swtiching.
Turn-on of the power MOSFET is triggered by the
timer. The PWM generator for burst mode operation
composes of a timer with a fixed frequency of 80kHz,
typically, and an analog comparator. Turn-off is
resulted by comparison of the voltage signal v
internal threshold, by which the voltage across the
shunt resistor V
also be triggered by the maximal duty ratio controller
which sets the maximal duty ratio to 50%. In operation,
the output flip-flop will be reset by one of these signals
which come first.
If the output load is still low, the regulation signal
decreases as the PWM section is operating. When
regulation signal reaches the low threshold V
the internal bias is reset again and the PWM section is
disabled until next time regultaion siganl increases
beyond the V
mode the regulation signal is changing like a saw tooth
between 3.0V and 3.6V shown in Figure 6.
3.4.3
The regulation voltage immediately increases if there is
a high load jump. This is observed by one comparator.
As the current limit is 25% during active burst mode a
certain load is needed so that regulation voltage can
Version 2.1
EB
(1.1V). Accordingly, the peak voltage across the
mode
Active Burst Mode Operation
Entering Active Burst Mode Operation
During Active Burst Mode Operation
Leaving Active Burst Mode
BH
csB
operation.
threshold. If working in active burst
is 0.25V, accordingly. A turn-off can
OUT
starts to decrease due to the
This
multi-conditional
BH
(3.6V) is
BL
1
with an
(3.0V),
10
exceed V
maximum current can now be provided to stabilize V
In addition, the up/down counter will be set to 1
immediately after leaving active burst mode. This is
helpful to decrease the output voltage undershoot.
3.4.4
During active burst mode operation, the power cell is
activated again. Once the power from the auxiliary
winding is not high enough to keep the VCC voltage
above the preset value of V
the VCC voltage at the preset value V
if the VCC voltage is still above this value, no current
flows through the power cell though it is activated.
Figure 6 Signals in active burst mode
V
12.5V
0.25V
4.4V
3.6V
3.0V
1.1V
1.0V
V
V
V
REG
O
CS
VCC
Quasi-Resonant PWM Controller
Current limit level
during Active Burst
Mode
LB
Blanking Window (24ms)
IC Power Supply During Active Burst
Mode
(4.5V). After leaving active busrt mode,
Max. Ripple < 1%
Entering
Active Burst
Mode
Functional Description
VCCBL
Leaving
Active Burst
Mode
, the power cell keeps
VCCBL
October 2007
ICE2QS01
. Otherwise,
t
t
t
t
O
.

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