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VIPERGAN65 データシート(PDF) 16 Page - STMicroelectronics

部品番号 VIPERGAN65
部品情報  Advanced quasi-resonant offline high voltage converter with E-mode GaN HEMT
PDF  35 Pages
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メーカー  STMICROELECTRONICS [STMicroelectronics]
ホームページ  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

VIPERGAN65 データシート(HTML) 16 Page - STMicroelectronics

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(2)
ROPP=NAUXNPRI∙ αFFG1∙VFBH∙ VMIN+VMAX+VMIN∙VMAX
VR
With a proper compensation, it is possible to optimize the power capability change, as shown in the diagram of
Figure 16.
Feed-forward compensation affects the power level to enter burst-mode, thus the current IFF is linearly reduced,
starting from 100 % (at VFB ≥ 1.2 V) to 20 % (at VFB < 0.8 V). The residual IFF in burst-mode ensures a certain
level of compensation against the propagation delay TD.
Figure 16. Typical power capability variation vs. input voltage in QR flyback
5.7
Dynamic blanking time
Since the capacitive losses in a power system increase with the frequency, the tendency of the QR converters to
increase the switching frequency with the input line is one of the major limitations to consider when designing high
efficiency converters.
To solve this issue, the VIPERGAN65 offers a special dynamic blanking time function, which reduces the
maximum permitted switching frequency as a function of the input line.
Connecting the pin TB to the auxiliary winding through the resistor
RTB,thecurrentsourcedbythepinduringthe
on-time, which is proportional to the input voltage, is sampled and used to adjust the blanking time during the
off-time.
The advantage of this technique is that the frequency reduction is higher where mostly required, i.e., at high line,
and minimum at low line.
The following equation can be used to dynamically adjust the dynamic blanking time
TBLANKdyn:
Equation 3
(3)
RTB=NAUXNPRI∙ KBLANK∙VIN
TBLANKdyn −TBLANK
In this formula,
TBLANKisthedefaultvalueatVFB≥VFRandKBLANKistheblankingtimegain.
VIPERGAN65
Dynamic blanking time
DS14005 - Rev 2
page 16/35



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