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HVLED007TR 데이터시트(PDF) 16 Page - STMicroelectronics

부품명 HVLED007TR
상세설명  Transition mode PFC controller for flyback converters
PDF  33 Pages
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
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HVLED007TR 데이터시트(HTML) 16 Page - STMicroelectronics

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Application information
HVLED007
16/33
DS12866 Rev 1
As to the dynamic properties of a HVLED007-based Hi-PF QR flyback converter, the ICS
circuit is essentially transparent: it only affects the DC gain of the feedback loop. This is
intuitive if one recalls that one of the basic assumptions was that the time constant
associated to the ICS circuit were << 1/(2 fline) and that in Hi-PF converters the crossover
frequency of the loop is typically much lower than fline.
Assuming 100% efficiency and that the Hi-PF QR flyback converter powers one or more
downstream switching regulators that drive the LED strings, the control-to-output transfer
function is:
Equation 8
4.4
Shaping capacitor (Ct) selection (pin CT)
As previously mentioned, one fundamental assumption for proper operation of the novel
control method implemented in the HVLED007 is that the time constant Rt Ct associated to
the ICS meets the constraints:
Equation 9
The left-hand side inequality ensures that the voltage across the shaping capacitor Ct is
essentially a DC level in any given switching cycle; the right-hand inequality ensures that
this DC level is able to change quickly enough to closely follow the ideal reference given by
(Equation 6) and depicted in Figure 7.
7
Secondary rms current
8
Secondary DC current
9
Secondary AC current
10
Low-frequency secondary current
11
Low-frequency output voltage ripple
Eq. #
Parameter
Expression
Isrms = Iout 2
64
9
 K
v
--------------
+
Isdc = Iout
Isac = Iout 1
64
9
K
v
-------------
+
Io
 = 2 I
out sin
2  = I
out (1 - cos 2
V
o pk
= Iout
1
22
 f
line
 C
out
--------------------------------------- =
I out
4
 f
line Cout
-------------------------------
G s
 =
Iout
V c
-------- 1
sCout
-------------= 1
2
----
N pri
N sec
------------- Kv


2
KM KP
V out
Rs
------------ 1
sCout
-------------
T
 << R
t Ct << 1/ 2 f line




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