參數(shù)資料
型號(hào): NCP1654BD133R2G
廠商: ON Semiconductor
文件頁數(shù): 13/23頁
文件大?。?/td> 228K
描述: IC PFC CCM 133KHZ 8-SOIC
標(biāo)準(zhǔn)包裝: 2,500
模式: 連續(xù)導(dǎo)電(CCM)
頻率 - 開關(guān): 120kHz ~ 146kHz
電流 - 啟動(dòng): 75µA
電源電壓: 9 V ~ 20 V
工作溫度: -40°C ~ 125°C
安裝類型: 表面貼裝
封裝/外殼: 8-SOIC(0.154",3.90mm 寬)
供應(yīng)商設(shè)備封裝: 8-SOICN
包裝: 帶卷 (TR)
其它名稱: NCP1654BD133R2G-ND
NCP1654BD133R2GOSTR
NCP1654
http://onsemi.com
13
PRINCIPLE OF NCP1654 SCHEME
CCM PFC Boost
A CCM PFC boost converter is shown in Figure 31. The
input voltage is a rectified 50 ro 60 Hz sinusoidal signal.
The MOSFET is switching at a high frequency (typically
65/133/200 kHz in NCP1654) so that the inductor current
I
L
   basically   consists   of   high   and   lowfrequency
components.
Filter capacitor C
filter
 is an essential and very small value
capacitor in order to eliminate the highfrequency
component of the inductor I
L
. This filter capacitor cannot
be too bulky because it can pollute the power factor by
distorting the rectified sinusoidal input voltage.
Figure 31. CCM PFC Boost Converter
+
C
bulk
V
in
R
SENSE
C
filter
L
I
in
I
L
V
out
Output
Voltage
PFC Methodology
The NCP1654 uses a proprietary PFC methodology
particularly designed for CCM operation. The PFC
methodology is described in this section.
Figure 32. Inductor Current in CCM
Time
I
in
I
L
t
1
t
2
T
As shown in Figure 32, the inductor current I
L
  in a
switching period T includes a charging phase for duration
t
1
 and a discharging phase for duration t
2
. The voltage
conversion ratio is obtained in (Equation 1).
V
out
V
in
+
t
1
) t
2
t
2
+
T
T * t
1
(eq. 1)
V
in
+
T * t
1
T
V
out
where
V
out
 is the output voltage of PFC stage,
V
in
 is the rectified input voltage,
T is the switching period,
t
1
 is the MOSFET on time, and
t
2
 is the MOSFET off time.
The input filter capacitor C
filter
 and the frontended EMI
filter absorbs the highfrequency component of inductor
current I
L
. It makes the input current I
in
 a lowfrequency
signal only of the inductor current.
(eq. 2)
I
in
+ I
L*50
where
I
in
 is the input AC current.
I
L
 is the inductor current.
I
L50
 supposes a 50 Hz operation. The suffix 50 means
it is with a 50 Hz bandwidth of the original I
L
.
From (Equation 1) and (Equation 2), the input
impedance Z
in
 is formulated.
(eq. 3)
Z
in
+
V
in
I
in
+
T * t
1
T
V
out
I
L*50
where Z
in
 is input impedance.
Power factor is corrected when the input impedance Z
in
in (Equation 3) is constant or varies slowly in the 50 or 60
Hz bandwidth.
Figure 33. PFC Duty Modulation and Timing Diagram
+
-
+
I
ch
V
M
V
ref
PFC Modulation
V
ramp
C
ramp
R
S
Q
Clock
0
1
V
ramp
V
ref
V
M
V
M
 without
Filtering
Clock
Latch Set
Latch Reset
Output
Inductor
Current
The PFC modulation and timing diagram is shown in
Figure 33. The MOSFET on time t
1
 is generated by the
intersection of reference voltage V
REF
 and ramp voltage
V
ramp
. A relationship in (Equation 4) is obtained.
(eq. 4)
V
ramp
+ V
m
)
I
ch
t
1
C
ramp
+ V
REF
where
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