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L4985 Datasheet(PDF) 11 Page - STMicroelectronics

Part # L4985
Description  CCM PFC controller with high voltage startupv
PDF  27 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L4985 Datasheet(HTML) 11 Page - STMicroelectronics

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The VG(θ) voltage is then managed by the “THD-DCM optimizer” circuitry that acts as a simple gain (K2) in CCM
operation whereas in DCM operation opportunely shapes the VG(θ) voltage in order to achieve ideally sinusoidal
input current.
Considering the CCM operation, the VCS_REF(θ) voltage is then expressed by:
Equation 2
(2)
VCS_REFθCCM=VGθ  K2= KMVOUT VC  VINθ
where
KM=K1 K2istheequivalentmultipliergain(seeElectricalcharacteristicstablefordetails).
The internal current reference voltage VCS_REF(θ) is then compared with the current sense VCS(θ) pin voltage
(which is internally translated due to negative inductor current sensing) that is opportunely shaped by the “THD-
CCM optimizer” in order to achieve sinusoidal input current in CCM operation.
In particular, referring to Section 5.1 Figure 4 and Section 5.1 Figure 5, during the power switch-on time
the “THD-CCM optimizer“ circuitry sources a current ITHD_CCM(θ) to the CS pin, generating a voltage across the
external RTHD_CCM resistor that is subtracted to the inductor current sense voltage
 RS  ILθ.
The resulting VCS(θ) voltage, at external power switch turn-off condition, is then:
Equation 3
(3)
VCSθ = RS  IL,PKθ −  RTHD_CCM  ITHDCCMθ =VCS_REFθ
where the sourced ITHD_CCM(θ) current is:
Equation 4
E
(4)
ITHD_CCMθ = LP2 KCCM ΔILθ
LP is the inductor value, ∆IL(θ) is the inductor current ripple, KCCM (0.55 typ.) is the circuitry gain.
Figure 5. Left key waveforms of the circuit in figure
4
Figure 6. Right key waveforms of the circuit in
figure 4
L4985
Theory of operation
DS13769 - Rev 3
page 11/27



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