參數(shù)資料
型號: ICE3B5065P
廠商: INFINEON TECHNOLOGIES AG
英文描述: TVS BIDIRECT 400W 11V SMA
中文描述: 離線式開關(guān)電源電流模式控制器,集成了?650V啟動單元/的CoolMOS
文件頁數(shù): 14/30頁
文件大小: 1223K
代理商: ICE3B5065P
CoolSET-F3
Functional Description
Version 1.3
14
15 Sep 2004
3.5
Current Limiting
Figure 12
Current Limiting Block
There is a cycle by cycle Current Limiting realized by
the Current-Limit comparator C10 to provide an
overcurrent detection. The source current of the
external Power Switch is sensed via an external sense
resistor R
. By means of R
the source current
is transformed to a sense voltage V
Sense
which is fed
into the pin CS. If the voltage V
exceeds the
internal threshold voltage V
the comparator C10
immediately turns off the gate drive by resetting the
PWM Latch FF1. A Propagation Delay Compensation
is added to support the immediate shut down without
delay of the Power Switch in case of Current Limiting.
The influence of the AC input voltage on the maximum
output power can thereby be avoided.
To prevent the Current Limiting from distortions caused
by leading edge spikes a Leading Edge Blanking is
integrated in the current sense path for the
comparators C10, C12 and the PWM-OP.
The output of comparator C12 is activated by the Gate
G10 if Active Burst Mode is entered. Once activated the
current limiting is thereby reduced to 0.257V. This
voltage level determines the power level when the
Active Burst Mode is left if there is a higher power
demand.
3.5.1
Leading Edge Blanking
Figure 13
Leading Edge Blanking
Each time when the external Power Switch is switched
on, a leading edge spike is generated due to the
primary-side capacitances and secondary-side rectifier
reverse recovery time. This spike can cause the gate
drive to switch off unintentionally. To avoid a premature
termination of the switching pulse, this spike is blanked
out with a time constant of t
= 220ns. During this
time, the gate drive will not be switched off.
3.5.2
In case of overcurrent detection, the switch-off of the
external Power Switch is delayed due to the
propagation delay of the circuit. This delay causes an
overshoot of the peak current I
which depends on
the ratio of dI/dt of the peak current (see Figure 13).
Propagation Delay Compensation
Figure 14
Current Limiting
The overshoot of Signal2 is bigger than of Signal1 due
to the steeper rising waveform. This change in the
slope is depending on the AC input voltage.
Propagation Delay Compensation is integrated to limit
the overshoot dependency on dI/dt of the rising primary
current. That means the propagation delay time
between exceeding the current sense threshold V
and the switch off of the external Power Switch is
compensated over temperature within a wide range.
C10
C12
&
0.257V
Leading
Edge
Blanking
220ns
G10
Propagation-Delay
Compensation
V
csth
Active Burst
Mode
PWM Latch
FF1
10k
D1
1pF
PWM-OP
CS
Current Limiting
t
V
Sense
V
csth
t
LEB
= 220ns
t
I
Sense
I
Limit
t
Propagation Delay
I
Overshoot1
I
peak1
Signal2
Signal1
I
Overshoot2
I
peak2
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