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EL7516 データシート(PDF) 11 Page - Renesas Technology Corp |
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EL7516 データシート(HTML) 11 Page - Renesas Technology Corp |
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11 / 12 page ![]() EL7516 FN7333 Rev 6.00 Page 11 of 12 October 9, 2007 where: IL = MOSFET current limit IL-AVG = average inductor current IL = inductor ripple current VDIODE = Schottky diode forward voltage, typically, 0.6V fS = switching frequency, 600kHz or 1.2MHz D = MOSFET turn-on ratio: Table 1 gives typical maximum IOUT values for 1.2MHz switching frequency and 22µH inductor: Thermal Performance The EL7516 uses a fused-lead package, which has a reduced JA of 100°C/W on a four-layer board and 115°C/W on a two-layer board. Maximizing copper around the ground pins will improve the thermal performance. This device also has internal thermal shut-down set at around +130°C to protect the component. Layout Considerations To achieve highest efficiency, best regulation and the most stable operation, a good printed circuit board layout is essential. It is strongly recommended that the demoboard layout be followed as closely as possible. Use the following general guidelines when laying out the print circuit board: 1. Place C4 as close to the VDD pin as possible. C4 is the supply bypass capacitor of the device. 2. Keep the C1 ground, GND pin and C2 ground as close as possible. 3. Keep the two high current paths a) from C1 through L1, to the LX pin and GND and b) from C1 through L1, D1, and C2 as short as possible. 4. High current traces should be as short and as wide as possible. 5. Place the feedback resistor close to the FB pin to avoid noise pickup. 6. Place the compensation network close to the COMP pin. The demo board is a good example of layout based on these principles; it is available upon request. Differences Between EL7516 and ISL97516 ISL97516 is the replacement for EL7516, and it is pin-to-pin compatible to EL7516, but there are differences between the two parts, as shown in the Table 2: From Table 2, it shows that ISL97516 can provide more output current at the same conditions, and work in higher ambient temperature. The fixed logic level also helps reduce the system design complexity. TABLE 1. VIN (V) VOUT (V) IOMAX (mA) 2.5 5 570 2.5 9 325 2.5 12 250 3.3 5 750 3.3 9 435 3.3 12 330 5 9 650 5 12 490 I L VIN VO VDIODE + V IN – LVO VDIODE fS + ------------------------------------------------------------------------------ = (EQ. 8) IL-AVG IOUT 1D – ------------- = (EQ. 9) D1 VIN VOUT VDIODE + -------------------------------------------- – = (EQ. 10) TABLE 2. DIFFERENCES BETWEEN EL7516 AND ISL97516 ISL97516 EL7516 Current Limit 2.0A (typical value) 1.5A (typical value) Over-Temperature Protection +150°C +130°C Logic High or Low Level Refer to Ground, Fixed. Refer to input voltage, Varying |
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