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LT3074AVPBF 数据表(PDF) 33 Page - Analog Devices |
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LT3074AVPBF 数据表(HTML) 33 Page - Analog Devices |
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33 / 62 page ![]() Data Sheet LT3074 analog.com Rev 0. 33 of 62 Figure 83. Output Capacitor, SETCAP Capacitor, and SETRES Resistor Connections for Best Performance Stability and Output Capacitance The LT3074 requires a minimum output capacitance of 10µF for stability. Analog Devices recommends the use of low ESR, X5R, or X7R ceramic capacitors near the LT3074 OUT and GND pins. Include wide routing planes for OUT and GND to minimize inductance. If possible, mount the regulator immediately adjacent to the application load to minimize distributed inductance for optimal load transient performance. Point-of-load applications present the best case layout scenario for extracting the full LT3074 performance. Additional ceramic capacitors distributed beyond the immediate decoupling capacitors are acceptable and recommended at the point of load because the distributed PCB inductance isolates them from primary compensation capacitors. Many of the applications in which the LT3074 excels, such as field programmable gate arrays (FPGA), application- specific integrated circuit (ASIC) processors, or digital signal processors (DSP) supplies, typically require a high- frequency decoupling capacitor network for the device being powered. This network generally consists of many low- value ceramic capacitors in parallel. In parallel, multiple low-value capacitors present a favorable frequency characteristic that reduces the parasitic inductance of the capacitors. Given the high PSRR and low noise performance attained using a single 10µF ceramic output capacitor, larger values of output capacitors are not necessary. However, these capacitors can still improve the performance. See the Typical Performance Characteristics section for additional information. Moreover, larger output capacitance does decrease peak output deviations during a load transient. Note that bypass capacitors used to decouple individual components powered by the LT3074 increase the effective output capacitance. Give extra consideration to the type of ceramic capacitors used. The capacitors are manufactured with a variety of dielectrics, each with different behaviors across temperature and applied voltage. The most common dielectrics used are specified with electronic industries alliance (EIA) temperature characteristic codes of Z5U, Y5V, X5R, and X7R. The Z5U and Y5V dielectrics are good for providing high capacitance in the small packages, but these dielectrics tend to have stronger voltage and temperature coefficients, as shown in Figure 84 and Figure 85. When used with a 5V regulator, a 16V, 10µF Y5V capacitor can exhibit an effective value as low as 1µF to 3µF for the DC bias voltage applied over the operating temperature range. CSETCAP 4.7µF COUT 10µF CIN 47µF CBIASDF 0.47µF MPWR RPG IREF RFS RSETRES RASELBOT RASELTOP RSMBALERT RSCL RSDA CBIASAF 2.2µF RPG2 RPG1 RPAR LT3074 BIAS BIASDF IN OUT SENSE SETCAP IMON SDA SCL ALERT ASEL AGND EN/UV VIN VOUT +0.1V TO 5.5V VBIAS 2.375V TO 5.5V VOUT 0.5V TO 4.2V 3A MAX IOUT VIOC PG CLKDIS SETRES BIASAF TO PMBus CONTROLLER DGND PGFB PARASITIC TRACE RESISTANCE |
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