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LT8331 датащи(PDF) 16 Page - Analog Devices |
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LT8331 датащи(HTML) 16 Page - Analog Devices |
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16 / 24 page ![]() LT8334 16 Rev. 0 For more information www.analog.com SEPIC CONVERTER APPLICATIONS The LT8334 can be configured as a SEPIC (single-ended primary inductance converter), as shown in Figure 6. This topology allows for the input to be higher, equal, or lower than the desired output voltage. The conversion ratio as a function of duty cycle is given by Equation 17. VOUT + VD VIN = D 1 − D (17) in continuous conduction mode (CCM) In a SEPIC converter, no DC path exists between the input and output. This is an advantage over the boost converter for applications requiring the output to be disconnected from the input source when the circuit is in shutdown. D1 CIN L1 L2 CDC COUT VOUT INTVCC GND LT8334 EN/UVLO FBX VIN SW VIN 8334 F06 Figure 6. LT8334 Configured in a SEPIC Topology SEPIC Converter: Switch Duty Cycle and Frequency For a SEPIC converter operating in CCM, the duty cycle of the main switch can be calculated based on the output voltage (VOUT), the input voltage (VIN) and the diode for- ward voltage (VD). The maximum duty cycle (DMAX) occurs when the converter operates at the minimum input voltage (Equation 18). DMAX = VOUT + VD VIN(MIN) + VOUT + VD (18) Conversely, the minimum duty cycle (DMIN) occurs when the converter operates at the maximum input volt- age(Equation 19). DMIN = VOUT + VD VIN(MAX) + VOUT + VD (19) Be sure to check that DMAX and DMIN obey Equation 20. DMAX < 1 – Minimum Off-Time(MAX) • fOSC(MAX) and DMIN > Minimum On-Time(MAX) • fOSC(MAX) (20) where Minimum Off-Time, Minimum On-Time and fOSC are specified in the Electrical Characteristics table. SEPIC Converter: The Maximum Output Current Capability and Inductor Selection As shown in Figure 6, the SEPIC converter contains two inductors: L1 and L2. L1 and L2 can be independent, but can also be wound on the same core, since iden- tical voltages are applied to L1 and L2 throughout the switching cycle. For the SEPIC topology, the current through L1 is the con- verter input current. Because, ideally, the output power is equal to the input power, the maximum average inductor currents of L1 and L2 are given by Equation 21. IL1(MAX)(AVG) = IIN(MAX)(AVG) = IO(MAX) • DMAX 1 − DMAX IL2(MAX)(AVG) = IO(MAX) (21) In a SEPIC converter, the switch current is equal to IL1 + IL2 when the power switch is on, therefore, the maximum average switch current is defined defined with Equation 22. ISW(MAX)(AVG) = IL1(MAX)(AVG) + IL2(MAX)(AVG) = IO(MAX) • 1 1 − DMAX (22) APPLICATIONS INFORMATION |
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