參數(shù)資料
型號: ICE1PCS02G
廠商: INFINEON TECHNOLOGIES AG
元件分類: 基準電壓源/電流源
英文描述: Standalone Power Factor Correction (PFC) Controller in Continuous Conduction Mode (CCM) with Input Brown-Out Protection
中文描述: 單機功率因數(shù)校正在連續(xù)導(dǎo)通模式(CCM)(PFC)控制器具有輸入欠壓保護
文件頁數(shù): 9/18頁
文件大小: 404K
代理商: ICE1PCS02G
CCM-PFC
ICE1PCS02/G
Functional Description
Version 1.1
9
28 Dec 2004
3.4.2
The IC is designed
not
to support any output power
that corresponds to a voltage lower than -0.73V at the
ISENSE pin. A further increase in the inductor current,
which results in a lower ISENSE voltage, will activate
the Soft Over Current Control (SOC). This is a soft
control as it does not directly switch off the gate drive
like the PCL. It acts on the nonlinear gain block to result
in a reduced PWM duty cycle.
Soft Over Current Control (SOC)
3.4.3
The IC provides a cycle by cycle peak current limitation
(PCL). It is active when the voltage at pin 3 (ISENSE)
reaches -1.08V. This voltage is amplified by OP1 by a
factor of -1.43 and connected to comparator C2 with a
reference voltage of 1.5V as shown in Figure 8. A
deglitcher with 300ns after the comparator improves
noise immunity to the activation of this protection.
Peak Current Limit (PCL)
Figure8
Peak Current Limit (PCL)
3.4.4
Whenever VSENSE voltage falls below 0.8V, or
equivalently V
falls below 16% of its rated value, it
indicates an open loop condition (i.e. VSENSE pin not
connected) or an insufficient input voltage V
for
normal operation. In this case, most of the blocks within
the IC will be shutdown. It is implemented using
comparator C3 with a threshold of 0.8V as shown in the
IC block diagram in Figure 2.
Open Loop Protection (OLP)
3.4.5
Whenever V
exceeds the rated value by 5%, the
over-voltage protection OVP is active as shown in
Figure 6. This is implemented by sensing the voltage at
pin VSENSE with respect to a reference voltage of
5.25V. A VSENSE voltage higher than 5.25V will
immediately reduce the output duty cycle, bypassing
the normal voltage loop control. This results in a lower
input power to reduce the output voltage V
OUT
.
Over-Voltage Protection (OVP)
3.5
Fixed Switching Frequency
ICE1PCS02/G has an internally fixed switching
frequency as opposed to the ICE1PCS01/G which can
be externally set. This frequency is trimmed to 65kHz
with an accuracy +/-7.7% at 25
o
C.
3.6
Average Current Control
3.6.1
The complete system current loop is shown in Figure 9.
Complete Current Loop
Figure9
Complete System Current Loop
It consists of the current loop block which averages the
voltage at pin ISENSE, resulted from the inductor
current flowing across R1. The averaged waveform is
compared with an internal ramp in the ramp generator
and PWM block. Once the ramp crosses the average
waveform, the comparator C1 turns on the driver stage
through the PWM logic block. The Nonlinear Gain block
defines the amplitude of the inductor current. The
following sections describe the functionality of each
individual blocks.
3.6.2
The compensation of the current loop is done at the
ICOMP pin. This is the OTA2 output and a capacitor C3
has to be installed at this node to ground (see Figure
9). Under normal mode of operation, this pin gives a
voltage which is proportional to the averaged inductor
current. This pin is internally shorted to 4V in the event
of standby mode.
Current Loop Compensation
3.6.3
The IC employs an average current control scheme in
continuous conduction mode (CCM) to achieve the
power factor correction.
Pulse Width Modulation (PWM)
ISENSE
R2
ICE1PCS02/G
R1
I
INDUCTOR
OP1
1.43x
Current Limit
300ns
C2
Deglitcher
Turn Off
Driver
1.5V
Full-wave
Rectifier
R
S
ICE1PCS02/G
Vout
L1
C2
R3
R4
Gate
Driver
D1
From
Full-wave
Retifier
GATE
R1
R2
OTA2
ICOMP
4V
Current Loop
Compensation
Current Loop
Nonlinear
Gain
1.1mS
+/-50uA (linear range)
C3
S2
Fault
ISENSE
C1
PWM
Comparator
PWM Logic
Q
Input From
Voltage Loop
voltage
proportional to
averaged
Inductor current
R7
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