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AN557 датащи(PDF) 10 Page - STMicroelectronics

номер детали AN557
подробное описание детали  EASY APPLICATION DESIGN WITH THE L4970A
PDF  52 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN557 датащи(HTML) 10 Page - STMicroelectronics

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AN557 APPLICATION NOTE
10/52
Figure 7. Voltage Feeforward Waveform.
Fig. 7 shows the duty-cycle varies as a result of the changes in slope of the ramp with the input voltage
Vi. The output of the error amplifier should not change to maintain the output voltage in regulation. This
function allows for the increase of speed in response to the rapid change of the supply voltage and for a
greatly reduced ouput ripple at the mains frequency.
In fact, the slope of the ramp is modulated by the ripple, generally present in the order of several volts on
the input of the regulator, particularly when the solution with a mains transformer is used.
Fig. 8 shows the simplified electrical diagram of the oscillator.
A resistor, connected between the Rosc pin and GND, sets the current that is internally reflected in the pin
Cosc, in order to charge the external capacitor to which it is connected. The voltage to the Rosc pin is not
fixed, but is tied to the instantaneous value of Vi; this is needed to achieve the feedforward voltage func-
tion, in which the slope of the ramp is directly proportional to the supply voltage. A comparator senses the
voltage at the Cosc capacitor. When the voltage reaches the value present at the inverting input of the
comparator, the output from the comparator goes high and is sent to the two transistors Q1 and Q2. Q1
is responsible for discharging the external Cosc capacitor with a current of approx. 20mA, while Q2 im-
poses at the inverted input of the comparator a voltage of 2Vbe (approx. 1.3V) that is the low-threshold of
the ramp. Some useful formulas for calculating the various parameters of the oscillator block are:
Figure 8. Oscillator Circuit.
V2
V7
D93IN006
Vi=30V
Vi=15V
Vc
t
Vi=30V
Vi=15V
t
Vi
2R
13
2R
R
Rosc
Cosc
PWM
COMP.
Q1
R
Q2
CLOCK
D93IN007
-
+



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