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MP1531DM データシート(PDF) 9 Page - Monolithic Power Systems |
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MP1531DM データシート(HTML) 9 Page - Monolithic Power Systems |
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9 / 12 page ![]() MP1531 – LOW POWER, TRIPLE OUTPUT STEP-UP PLUS CHARGE PUMP FOR TFT BIAS MP1531 Rev. 1.2 www.MonolithicPower.com 9 5/22/2006 MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. © 2006 MPS. All Rights Reserved. To insure stable operation place the input capacitor as close to the IC as possible. Alternately a smaller high quality 0.1µF ceramic capacitor may be placed closer to the IC if the larger capacitor is placed further away. Selecting the Rectifier Diodes Schottky diodes are recommended for most applications because of their fast recovery time and low forward voltage. Use Schottky diodes with a current rating equal to or greater than 4 times the average output current, and a voltage rating at least 1.5 times VGH for the positive charge-pump and VGL for the negative charge- pump. 100mA Schottky diodes such as Central Semiconductor CMPSH-3 are recommended for low current charge-pump circuits. Selecting the Output Capacitor of the Step- Up Converter The output capacitor is required to maintain the DC output voltage. Low ESR capacitors are preferred to keep the output voltage ripple to a minimum. The characteristics of the output capacitor also affect the stability of the regulation control system. A 10-22µF ceramic capacitor works well in most applications. In the case of ceramic capacitors, the impedance of the capacitor at the switching frequency is dominated by the capacitance, and so the output voltage ripple is mostly independent of the ESR. The output voltage ripple is estimated to be: SW MAIN LOAD IN MAIN RIPPLE f 2 C V I ) V V ( V × × × − ≅ Where VRIPPLE is the output ripple voltage, ILOAD is the load current, and C2 is the capacitance of the output capacitor of the step-up converter. Selecting the Number of Charge-Pump Stages For highest efficiency, always choose the lowest number of charge-pump stages that meets the output requirement. The number of positive charge-pump stages NPOS is approximately given by: () D MAIN MAIN DROPOUT GH POS V 2 V V V V N × − − + ≅ Where VD is the forward voltage drop of the charge-pump diode, and VDROPOUT is the dropout margin for the linear regulator. The positive charge-pump can also be configured based on VIN for better efficiency. Then the equation will be: ( ) D MAIN IN DROPOUT GH POS V 2 V V V V N × − − + ≅ The number of negative charge-pump stages NNEG is approximately given by: D MAIN DROPOUT GL NEG V 2 V V V N × − + − ≅ Use VDROPOUT = 0.5V for positive charge-pump and VDROPOUT = 0.15V for negative charge-pump. Selecting the Flying Capacitor in Charge- Pump Stages Increasing the flying capacitor CX values increases the output current capability. A 0.33µF ceramic capacitor works well in most low current applications. The flying capacitor’s voltage rating must exceed the following: MAIN CX V N V × > Where N is the stage number in which the flying capacitor appears. Step-Up Converter Compensation The MP1531 uses current-mode control which unlike voltage mode has only a single pole roll off due to the output filter. The DC gain (AVDC) is equated from the product of current control to output gain (AVCSCONTROL), error amplifier gain (AVEA), and the feedback divider. 1 FB EA CSCONTROL DC A Av A Av × × = LOAD IN CSCONTROL I V 4 A × = MAIN 1 FB 1 FB V V A = MAIN LOAD 1 FB IN DC V I V V 1600 Av × × × = The output filter pole is given in hertz by: 2 C V I f MAIN LOAD FILTERPOLE × × π = |
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