欢迎访问ic37.com |
会员登录 免费注册
发布采购

ML4813CP 参数 Datasheet PDF下载

ML4813CP图片预览
型号: ML4813CP
PDF下载: 下载PDF文件 查看货源
内容描述: 反激式功率因数控制器 [Flyback Power Factor Controller]
分类和应用: 光电二极管控制器
文件页数/大小: 15 页 / 267 K
品牌: MICRO-LINEAR [ MICRO LINEAR CORPORATION ]
 浏览型号ML4813CP的Datasheet PDF文件第4页浏览型号ML4813CP的Datasheet PDF文件第5页浏览型号ML4813CP的Datasheet PDF文件第6页浏览型号ML4813CP的Datasheet PDF文件第7页浏览型号ML4813CP的Datasheet PDF文件第9页浏览型号ML4813CP的Datasheet PDF文件第10页浏览型号ML4813CP的Datasheet PDF文件第11页浏览型号ML4813CP的Datasheet PDF文件第12页  
ML4813  
APPLICATIONS  
The ML4813 is used to implement a discontinuous mode  
flyback (buck-boost) power factor regulator as shown in  
Figure 7. This topology is particularly well suited for low  
power applications such as fluorescent ballasts and low  
power switching supplies. It is also a useful topology  
when there is a requirement for the output voltage to be  
lower than the peak input voltage, or where an isolated  
output is required. This is not possible with a boost  
topology, where the output voltage must always be higher  
than the maximum peak of the input voltage range. The  
typical input range for the flyback power factor regulator  
is from 90VAC to 260VAC.  
RFI  
FILTER  
V
V
RL1  
RH1  
OUT-  
L1  
C1  
OUT+  
V
D1  
S
ML4813  
CONTROLLER  
+
The regulator operates in the discontinuous current  
conduction mode. The inductor energy stored during the  
ON time of the power switch Q is completely delivered  
to the output capacitance during the OFF time. Under  
steady state conditions, the inductor current at the  
beginning of the ON time starts to ramp-up from 0 Amps  
to a value that is determined by the instantaneous value  
of the input full wave rectified voltage; the ON time as it  
is set by the error amplifier and the PWM comparator;  
and finally by the inductor itself.  
RH2  
RL2  
Q1  
RS  
Figure 7. Simplified Application Circuit  
The expression for the inductor peak current is given by:  
waveforms has not been preserved. Normally for 60Hz  
input line and 100kHz switching frequency, each half of  
the sine wave contains approximately 833 high frequency  
triangular waveforms.  
V
q ™ t  
ON  
IN0 5  
I q =  
L 0 5  
(4)  
L
Where:  
I (q) = instantaneous peak inductor current  
The envelope of the peaks of the switch current, which in  
this case represents the current drawn from the input  
source, has a sinewave shape. This relationship is shown  
as:  
L
t
= Power MOSFET "ON" time  
ON  
(5)  
IL q = I ™ sinq  
0
5
P
V (q) = V sin q = Instantaneous input voltage  
IN  
P
By combining (4) and (5), the following useful  
relationship is obtained:  
V = Input peak voltage  
P
L ™ IP  
Figure 8 shows the relationship between the low  
frequency envelope and the high frequency inductor  
current. Note that for clarity the scale between the two  
tON  
=
(6)  
2 ™ VRMS  
INDUCTOR CURRENT  
SWITCH CURRENT  
SINUSOIDAL PEAK ENVELOPE  
AVERAGE CURRENT  
Figure 8. Switch and Line Currents in the Flyback PFC Circuit  
8