参数资料
型号: FSFR1600L
厂商: Fairchild Semiconductor
文件页数: 11/18页
文件大小: 0K
描述: IC FPS POWER SWITCH 9-SIP
标准包装: 19
系列: FPS™
输出隔离: 隔离
频率范围: 94kHz ~ 106kHz
输入电压: 9.6 V ~ 25 V
输出电压: 500V
功率(瓦特): 160W
工作温度: -40°C ~ 130°C
封装/外壳: 9-SIP
供应商设备封装: 9-SIP
包装: 管件
in Figure 19. FSFR-series also has an internal soft-start
for 3ms to reduce the current overshoot during the initial
cycles, which adds 40kHz to the initial frequency of the
external soft-start circuit, as shown in Figure 20. The
initial frequency of the soft-start is given as:
f ISS = (
5.2 k Ω
R min
+
5.2 k Ω
R SS
) × 100 + 40 ( kHz )
(3)
It is typical to set the initial frequency of soft-start two ~
three times the resonant frequency ( f O ) of the resonant
network.
The soft-start time is three to four times of the RC time
constant. The RC time constant is as follows:
T SS = R SS ? C SS
f s
(4)
Figure 22. Control Pin Configuration for
Pulse Skipping
Remote On / Off : When an auxiliary power supply is
used for standby, the main power stage using FSFR-
series can be shut down by pulling down the control pin
f ISS
40kHz
Control loop
take over
time
voltage, as shown in Figure 23. R1 and C1 are used to
ensure soft-start when switching resumes.
Main
OP1
Output
R1
Figure 20. Frequency Sweeping of Soft-start
4. Control Pin : The FSFR-series has a control pin for
FPS
C1
Main Off
protection, cycle skipping, and remote on/off. Figure 21
shows the internal block diagram for control pin.
R T
R min
Aux
Output
CON
OP1
Figure 23. Remote On / Off Circuit
Figure 21. Internal Block of Control Pin
Protection : When the control pin voltage exceeds 5V,
protection is triggered. Detailed applications are
described in the protection section.
Pulse Skipping : FSFR-series stops switching when the
control pin voltage drops below 0.4V and resumes
switching when the control pin voltage rises above 0.6V.
To use pulse-skipping, the control pin should be
connected to the opto-coupler collector pin. The
frequency that causes pulse skipping is given as:
4. Current Sensing Method
Current Sensing Using Resistor: FSFR-series senses
drain current as a negative voltage, as shown in Figure
24 and Figure 25. Half-wave sensing allows low power
dissipation in the sensing resistor, while full-wave
sensing has less switching noise in the sensing signal.
SKIP
=
5 . 2 k
R min
+
4 . 16 k
R max
x 100 ( kHz )
(5)
? 2007 Fairchild Semiconductor Corporation
FSFR series Rev.1.0.9
11
www.fairchildsemi.com
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