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AN2242 Datasheet(PDF) 16 Page - STMicroelectronics

Part # AN2242
Description  This document describes a reference design
PDF  31 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN2242 Datasheet(HTML) 16 Page - STMicroelectronics

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4 Functional Checking
AN2242
16/31
To avoid spurious start-up attempts when power supply is plugged in with abnormal, lower
voltage mains, the HV current source has a turn-on threshold so that it is not activated if the
input voltage is lower than the Start voltage (typ. value is 80V).
As visible in Figure 14. and Figure 15. captured at the nominal mains voltages there is not any
overshoot, undershoot, dip or abnormal behaviour during the power supply start-up phase.
The power supply has been checked over the entire input voltage range with same positive
results as in the above figures.
4.3
Power-down
Even at turn off the transition is clean, without any abnormal behaviour like restart or glitches on
both the auxiliary and the output voltages. This is still provided by the HV start-up circuitry that
controls the power down sequence: at converter power-down the system loses regulation, then
Vcc drops and IC activity is stopped as it falls below the UVLO threshold (8.7V typ.). To prevent
restart attempts of the converter and to ensure monotonic output voltage decay at power-down
an internal logic re-enables the HV current source only if the Vcc voltage goes below the
threshold Vccrest located at about 5V. Thus, the HV generator can restart but, if Vin is lower
than Vinstart, the HV generator is disabled.
Figure 16. and Figure 17. also the hold-up time at both nominal mains voltages is measured
115 Vac the input Elcap stores enough energy to keep the regulation for 20mS at full load. After
that the converter loses regulation and the output voltages drop. The measured time is enough
to provide the required immunity of the Set-Top box against standard mains dip or short
interruptions tests, required by the standard rules such as the IEC1000 and protecting the unit
Figure 14. at 115 VAC - 60Hz
Figure 15. at 230 VAC - 50Hz
CH1: VDD
CH2: VC19 (Vaux)
CH3: +12 Vout
CH4: +1.8 Vout



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