欢迎访问ic37.com |
会员登录 免费注册
发布采购

ML4804IP 参数 Datasheet PDF下载

ML4804IP图片预览
型号: ML4804IP
PDF下载: 下载PDF文件 查看货源
内容描述: 功率因数校正和PWM控制器组合 [Power Factor Correction and PWM Controller Combo]
分类和应用: 功率因数校正光电二极管信息通信管理控制器
文件页数/大小: 14 页 / 242 K
品牌: MICRO-LINEAR [ MICRO LINEAR CORPORATION ]
 浏览型号ML4804IP的Datasheet PDF文件第4页浏览型号ML4804IP的Datasheet PDF文件第5页浏览型号ML4804IP的Datasheet PDF文件第6页浏览型号ML4804IP的Datasheet PDF文件第7页浏览型号ML4804IP的Datasheet PDF文件第9页浏览型号ML4804IP的Datasheet PDF文件第10页浏览型号ML4804IP的Datasheet PDF文件第11页浏览型号ML4804IP的Datasheet PDF文件第12页  
ML4804  
FUNCTIONAL DESCRIPTION (Continued)  
The output of the gain modulator is a current signal, in the  
form of a full wave rectified sinusoid at twice the line  
frequency. This current is applied to the virtual-ground  
(negative) input of the current error amplifier. In this way  
the gain modulator forms the reference for the current  
error loop, and ultimately controls the instantaneous  
current draw of the PFC from the power line. The general  
form for the output of the gain modulator is:  
boost diode. As stated above, the inverting input of the  
current error amplifier is a virtual ground. Given this fact,  
and the arrangement of the duty cycle modulator  
polarities internal to the PFC, an increase in positive  
current from the gain modulator will cause the output  
stage to increase its duty cycle until the voltage on  
I
is adequately negative to cancel this increased  
SENSE  
current. Similarly, if the gain modulators output  
decreases, the output duty cycle will decrease, to  
IAC × VEAO  
achieve a less negative voltage on the I  
pin.  
SENSE  
IGAINMOD  
=
× 1V  
(1)  
2
VRMS  
Cycle-By-Cycle Current Limiter  
More exactly, the output current of the gain modulator is  
given by:  
The I  
pin, as well as being a part of the current  
SENSE  
feedback loop, is a direct input to the cycle-by-cycle  
current limiter for the PFC section. Should the input  
voltage at this pin ever be more negative than -1V, the  
output of the PFC will be disabled until the protection  
flip-flop is reset by the clock pulse at the start of the next  
PFC power cycle.  
IGAINMOD = K × (VEAO 0.625V) ×IAC  
-1  
where K is in units of V .  
Note that the output current of the gain modulator is  
limited to 500µA.  
TM  
TriFault Detect  
Current Error Amplifier  
To improve power supply reliability, reduce system  
component count, and simplify compliance to UL 1950  
safety standards, the ML4800 (ML4804) includes TriFault  
Detect. This feature monitors VFB (Pin 15) for certain PFC  
fault conditions.  
The current error amplifiers output controls the PFC duty  
cycle to keep the average current through the boost  
inductor a linear function of the line voltage. At the  
inverting input to the current error amplifier, the output  
current of the gain modulator is summed with a current  
which results from a negative voltage being impressed  
In the case of a feedback path failure, the output of the  
PFC could go out of safe operating limits. With such a  
failure, VFB will go outside of its normal operating area.  
Should VFB go too low, too high, or open, TriFault Detect  
senses the error and terminates the PFC output drive.  
upon the I  
pin. The negative voltage on I  
SENSE  
SENSE  
represents the sum of all currents flowing in the PFC  
circuit, and is typically derived from a current sense  
resistor in series with the negative terminal of the input  
bridge rectifier. In higher power applications, two current  
transformers are sometimes used, one to monitor the I of  
TriFault detect is an entirely internal circuit. It requires no  
external components to serve its protective function.  
D
the boost MOSFET(s) and one to monitor the I of the  
F
16  
1
IEAO  
VEAO  
OVP  
+
TRI-FAULT  
2.75V  
0.5V  
+
V
OVP  
CC  
V
+
CC  
V
VEA  
FB  
IEA  
1.6k  
15  
16.4V  
+
+
2.5V  
AC  
+
S
Q
I
2
4
3
–1V  
+
GAIN  
MODULATOR  
V
R
S
Q
Q
RMS  
PFC OUT  
12  
1.6kΩ  
PFC I  
I
LIMIT  
SENSE  
R
Q
RAMP 1  
OSCILLATOR  
7
Figure 1. PFC Section Block Diagram  
8