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LP5523 Datenblatt(PDF) 13 Page - Texas Instruments |
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LP5523 Datenblatt(HTML) 13 Page - Texas Instruments |
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13 / 61 page ![]() REG 1.5X V , 1.5 x V , ROUT VIN VOUT -25 0 25 50 75 TEMPERATURE °C 0 25 50 75 100 MAXIMUM SLOPE VALUE MINIMUM SLOPE VALUE NO COMP. 13 LP5523 www.ti.com SNVS550E – SEPTEMBER 2009 – REVISED JANUARY 2017 Product Folder Links: LP5523 Submit Documentation Feedback Copyright © 2009–2017, Texas Instruments Incorporated Feature Description (continued) Figure 13. Temperature Compensation Principle Compensation is effective over the temperature range −40°C to +90°C. 7.3.5 Charge Pump Operational Description 7.3.5.1 Overview The LP5523 includes a pre-regulated switched-capacitor charge pump with a programmable voltage multiplication of 1× and 1.5×. In 1.5× mode, by combining the principles of a switched-capacitor charge pump and a linear regulator, a regulated 4.5-V output is generated from the Li-Ion input voltage range. A two-phase non-overlapping clock generated internally controls the operation of the charge pump. During the charge phase, both flying capacitors (C1 and C2) are charged from input voltage. In the pump phase that follows, the flying capacitors are discharged to output. A traditional switched-capacitor charge pump operating in this manner uses switches with very low on-resistance, ideally 0 Ω, to generate an output voltage that is 1.5× the input voltage. The LP5523 regulates the output voltage by controlling the resistance of the input-connected pass-transistor switches in the charge pump. 7.3.5.2 Output Resistance At lower input voltages, the charge pump output voltage may degrade due to effective output resistance (ROUT) of the charge pump. The expected voltage drop can be calculated by using a simple model for the charge pump shown in Figure 14. Figure 14. Charge Pump Output Resistance Model The model shows a linear pre-regulation block (REG), a voltage multiplier (1.5×), and an output resistance (ROUT). Output resistance models the output voltage drop that is inherent to switched capacitor converters. The output resistance is 3.5 Ω (typical), and it is a function of switching frequency, input voltage, capacitance value of the flying capacitor, internal resistances of the switches, and ESR of the flying capacitors. When the output voltage is in regulation, the regulator in the model controls the voltage V’ to keep the output voltage equal to 4.5 V (typical). |
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