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VIPER16LN 数据表(PDF) 15 Page - STMicroelectronics |
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VIPER16LN 数据表(HTML) 15 Page - STMicroelectronics |
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15 / 25 page ![]() VIPER16 FB pin and COMP pin Doc ID 15232 Rev 5 15/25 12 FB pin and COMP pin The device can be used both in non-isolated and in isolated topology. In case of non- isolated topology, the feedback signal from the output voltage is applied directly to the FB pin as inverting input of the internal error amplifier having the reference voltage, VREF_FB, see the Table 8 on page 7. The output of the error amplifier sources and sinks the current, ICOMP, respectively to and from the compensation network connected on the COMP pin. This signal is then compared, in the PWM comparator, with the signal coming from the SenseFET; the power MOSFET is switched off when the two values are the same on cycle by cycle basis. See the Figure 2 on page 3 and the Figure 22 on page 15. When the power supply output voltage is equal to the error amplifier reference voltage, VREF_FB, a single resistor has to be connected from the output to the FB pin. For higher output voltages the external resistor divider is needed. If the voltage on FB pin is accidentally left floating, an internal pull-up protects the controller. The output of the error amplifier is externally accessible through the COMP pin and it’s used for the loop compensation: usually an RC network. As reported on Figure 22 on page 15, in case of isolated power supply, the internal error amplifier has to be disabled (FB pin shorted to GND). In this case an internal resistor is connected between an internal reference voltage and the COMP pin, see the Figure 22 on page 15. The current loop has to be closed on the COMP pin through the opto-transistor in parallel with the compensation network. The VCOMP dynamics ranges is between VCOMPL and VCOMPH as reported on Figure 23 on page 16. When the voltage VCOMP drops below the voltage threshold VCOMPL, the converter enters burst mode, see Section 13 on page 16. When the voltage VCOMP rises above the VCOMPH threshold, the peak drain current will reach its limit, as well as the deliverable output power. Figure 22. Feedback circuit FB COMP Without Isolation: switch open & E/A enabled With Isolation: switch closed & E/A disabled No Isolation V OUT + - PWM stop from R SENSE R Isolation R L nR SW V REF R COMP E/A BUS + - to PWM V COMPL R H V REF_FB |
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