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UCC28C53 датащи(PDF) 26 Page - Texas Instruments

номер детали UCC28C53
подробное описание детали  UCCx8C5x BiCMOS Low-Power Current-Mode PWM Controller
PDF  48 Pages
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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UCC28C53 датащи(HTML) 26 Page - Texas Instruments

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9.2.1 Design Requirements
Table 9-1 shows a typical set of performance requirements for an off-line flyback converter capable of providing
48 W at 12-V output voltage from a universal AC input. The design uses peak primary current control in a
continuous current mode PWM converter.
Table 9-1. Design Parameters
PARAMETER
TEST CONDITIONS
MIN
NOM
MAX
UNIT
VIN
Input Voltage
85
115/230
265
VRMS
fLINE
Line Frequency
47
50/60
63
Hz
VOUT
Output Voltage
IVOUT(min) ≤ IVOUT ≤ IVOUT(max)
11.75
12
12.25
V
VRIPPLE
Output Ripple Voltage
IVOUT(min) ≤ IVOUT ≤ IVOUT(max)
100
mVpp
IVOUT
Output Current
0
4
A
fSW
Switching Frequency
110
kHz
η
Efficiency
85%
9.2.2 Detailed Design Procedure
This procedure outlines the steps to design an off-line universal input continuous current mode (CCM) flyback
converter. See Figure 9-3 for component names referred to in the design procedure.
9.2.2.1 Input Bulk Capacitor and Minimum Bulk Voltage
Bulk capacitance may consist of one or more capacitors connected in parallel, often with some inductance
between them to suppress differential-mode conducted noise. The value of the input capacitor sets the minimum
bulk voltage;. Setting the bulk voltage lower by using minimal input capacitance results in higher peak primary
currents leading to more stress on the MOSFET switch, the transformer, and the output capacitors. Setting
the bulk voltage higher by using a larger input capacitor results in higher peak current from the input source
and the capacitor itself is physically larger. Compromising between size and component stresses determines
the acceptable minimum input voltage. The total required value for the primary-side bulk capacitance (CIN) is
selected based upon the power level of the converter (POUT), the efficiency target (η), the minimum input voltage
(VIN(min)), and is chosen to maintain an acceptable minimum bulk voltage level (VBULK(min)), using Equation 3.
CIN =
2 × PIN ×
F0.25+1
N × arcsin
F VBULK(min)
¾2 × V
IN (min )GG
k2 × V
IN (min )
2
F V
BULK (min )
2
o × fLINE (min )
(3)
where
• VIN(min) is the RMS value of the minimum AC input voltage (85 VRMS) whose minimum line frequency is
denoted as fLINE(min), equal to 47 Hz
Based on Equation 3, to achieve a minimum bulk voltage of 75 V, assuming 85% converter efficiency, the bulk
capacitor must be larger than 126 µF. this design uses a value of 180 µF, with consideration for component
tolerances and efficiency estimation.
9.2.2.2 Transformer Turns Ratio and Maximum Duty Cycle
The transformer design begins with selecting a suitable switching frequency for the given application. The
UCC28C42 is capable of switching up to 1 MHz but considerations such as overall converter size, switching
losses, core loss, system compatibility, and interference with communication frequency bands generally
determine an optimum frequency that should be used. For this off-line converter, the switching frequency (fSW) is
selected to be 110 kHz as a compromise to minimize the transformer size and the EMI filter size, and still have
acceptable losses.
UCC28C53, UCC28C54, UCC28C55
UCC28C56H, UCC28C57H, UCC28C57L, UCC28C59
SLUSER8 – JUNE 2022
www.ti.com
26
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Product Folder Links: UCC28C53 UCC28C54 UCC28C55 UCC28C56H UCC28C57H UCC28C57L UCC28C59



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