參數(shù)資料
型號: FA13842
廠商: FUJI ELECTRIC HOLDINGS CO., LTD.
元件分類: 基準(zhǔn)電壓源/電流源
英文描述: CMOS IC(For Switching Power Supply Control)
中文描述: CMOS集成電路開關(guān)電源控制(對)
文件頁數(shù): 13/15頁
文件大小: 151K
代理商: FA13842
FA13842, 13843, 13844, 13845
13
Fig. 20
Fig. 21
+
+
PC2
R19
MOSFET
Rs
R
2R
3
2
1
2.5V
C11
C10
R18
C1
T1
D6
+
C7
R20
R22
C12
R23
R21
PC2
+
Fig. 18
+
+
R24
R25
C13
D1
C2
+
MOSFET
Rs
R
R1
2R
3
2
1
2.5V
C10
R18
C1
T1
D6
+C7
+
R26
Fig.19
Is
Lu
-Ld
T
ON
T
OFF
T
T
T
T
to
t1
Diverge
iL′
iL
7. Feedback circuit
7-1 A method that does not use an internal ER AMP
A method that does not use an internal ER AMP is shown in
Fig. 18. Connect the FB terminal to GND and connect an
optocoupler to the COMP terminal of the ER AMP output for
feedback control.
It is possible to obtain a precise power supply output voltage,
because the output voltage is monitored directly on the
secondary side.
Be sure to connect the FB terminal to the GND in this case.
There is the possibility of a malfunction occuring if the FB
terminal is open.
7-2 A method using an internal ER AMP
A method using an internal ER AMP is shown in Fig. 19.
In the flyback circuit, the bias winding voltages of the
transformer are proportional to the secondary winding voltage.
Therefore, V
CC
is approximately proportional to the DC output
voltage on the secondary side.
V
CC
is divided by resistors and monitored at the FB terminal to
control the output voltage.
This feedback circuit consists of a minimal number of external
components. However, regulation of the DC output voltage is
poor because the output voltage is not monitored directly.
8. Slope compensation
It is well known that a current mode converter that controls
peak current can oscillate irregularly when the inductor current
is continuous and the duty cycle is greater than 50%.
This irregular oscillation is called subharmonic oscillation.
The period of subharmonic oscillation is equal to the integral
number of the switching periods.
This phenomenon is shown in Fig. 20.
Lu indicates the positive slope of the inductor current. The
slope is determined by the input voltage and the primary
inductance value of the transformer. –Ld indicates the
negative slope, which is determined by the rate of energy
discharge to the secondary side.
Fig. 20 shows the inductor current waveform when T reveals
the oscillation period and Is reveals the control signal of the
peak inductor current. T
ON
and T
OFF
vary even when having the
same T, Is, Lu and –Ld.
If it is assumed in Fig. 21 that the inductor current varies
i
L
at
t0, the variation
i
L
’ of the inductor current at t1 is larger than
i
L
at t0. Thereafter, this inductor current variation gradually
increases, and as a result, subharmonic oscillation occurs.
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