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UCC28056CDBVT Datasheet(PDF) 29 Page - Texas Instruments |
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UCC28056CDBVT Datasheet(HTML) 29 Page - Texas Instruments |
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29 / 55 page ![]() u P u 2 InRMSMin ONMAX0 BST0 OutMax V T L 255 H 110% P 2 u 2 InRMSMin InMax OutMax InEqMin V P 110% P R u u BST InEqMin1 ONMAX0 FF1 2 L R T G u BST InEqMin0 ONMAX0 2 L R T 29 UCC28056 www.ti.com SLUSD37E – OCTOBER 2017 – REVISED NOVEMBER 2019 Product Folder Links: UCC28056 Submit Documentation Feedback Copyright © 2017–2019, Texas Instruments Incorporated 9.2.1 Design Requirements For this design example, use the parameters listed in the table below as the input parameters. Table 1. System Design Specifications PARAMETER TEST CONDITIONS MIN TYP MAX UNITS INPUT CHARACTERISTICS AC Voltage range 85 265 VAC AC Voltage frequency 47 63 Hz OUTPUT CHARACTERISTICS Output Power, POutMax 85 VAC to 265 VAC 165 W 9.2.2 Detailed Design Procedure 9.2.2.1 Custom Design With WEBENCH® Tools Click here to create a custom design using the UCC28056 controller with the WEBENCH® Power Designer. 1. Start by entering the input voltage (VIN), output voltage (VOUT), and output current (IOUT) requirements. 2. Optimize the design for key parameters (efficiency, footprint,cost) using the optimizer dial. 3. Compare the generated design with other possible solutions from Texas Instruments. The WEBENCH Power Designer provides a customized schematic along with a list of materials with real-time pricing and component availability. In most cases, these actions are available: • Run electrical simulations to see important waveforms and circuit performance • Run thermal simulations to understand board thermal performance • Export customized schematic and layout into popular CAD formats • Print PDF reports for the design, and share the design with colleagues Get more information about WEBENCH tools at www.ti.com/WEBENCH. 9.2.2.2 Power Stage Design The first step in the power stage design is to calculate the PFC inductor value needed to achieve the specification, then the ratings for all other power components can be computed. 9.2.2.2.1 Boost Inductor Design The minimum equivalent resistance presented, to the Line, by the input of the Boost PFC stage changes according to the current Line Feed-Forward setting. RInEqMin0 and RInEqMin1 present the minimum equivalent input resistance for the first two Line Feed-Forward levels. (13) (14) Equation 15 calculates the maximum input power that can be drawn from a given Line voltage. The maximum input power is set to 110% of POutMax to account for power stage efficiency. (15) Equation 16 calculates the Boost inductance value required to ensure that maximum load can be delivered from minimum Line voltage. (16) |
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