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VIPER53ESPTR-E 数据表(PDF) 9 Page - STMicroelectronics

部件名 VIPER53ESPTR-E
功能描述  OFF-line Primary Switch
PDF  31 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

VIPER53ESPTR-E 数据表(HTML) 9 Page - STMicroelectronics

Back Button VIPER53ESPTR-E Datasheet HTML 5Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 6Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 7Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 8Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 9Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 10Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 11Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 12Page - STMicroelectronics VIPER53ESPTR-E Datasheet HTML 13Page - STMicroelectronics Next Button
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VIPer53EDIP - E / VIPer53ESP - E
Secondary Feedback Configuration Example
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5
Secondary Feedback Configuration Example
The secondary feedback is implemented through an optocoupler driven by a programmable
zener diode (TL431 type) as shown in Figure 3 on page 8
The optocoupler is connected in parallel with the compensation network on the COMP pin
which delivers a constant biasing current of 0.6mA to the optotransistor. This current does
not depend on the compensation voltage, and so it does not depend on the output load
either. Consequently, the gain of the optocoupler ensures a constant biasing of the TL431
device (U3), which is responsible for secondary regulation. If the optocoupler gain is
sufficiently low, no additional components are required to a minimum current biasing of U3.
Additionally, the low biasing current protects the optocoupler from premature failure.
The constant current biasing can be used to simplify the secondary circuit: instead of a
TL431, a simple zener and resistance network in series with the optocoupler diode can
insure a good secondary regulation. Current flowing in this branch remains constant just as
it does by using a TL431, so typical load regulation of 1% can be achieved from zero to full
output current with this simple configuration.
Since the dynamic characteristics of the converter are set on the secondary side through
components associated to U3, the compensation network has only a role of gain
stabilization for the optocoupler, and its value can be freely chosen. R5 can be set to a fixed
value of 2.2k
Ω, offering the possibility of using C7 as a soft start capacitor: When starting up
the converter, the VIPer53E device delivers a constant current of 0.6mA on the COMP pin,
creating a constant voltage of 1.3V in R5 and a rising slope across C7. This voltage shape,
together with the operating range of 0.5V to 4.5V provides a soft startup of the converter.
The rising speed of the output voltage can be set through the value of C7. The C4 and C6
values must be adjusted accordingly in order to ensure a correct startup.



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