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SC1480AEVB Datasheet(PDF) 14 Page - Semtech Corporation |
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SC1480AEVB Datasheet(HTML) 14 Page - Semtech Corporation |
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14 / 23 page ![]() 14 2003 Semtech Corp. www.semtech.com SC1480A POWER MANAGEMENT Application Information (Cont.) Layout Guidelines One (or more) ground planes is/are recommended to minimize the effect of switching noise and copper losses, and maximize heat dissipation. The IC ground reference, VSSA, should be kept separate from power ground. All components that are referenced to VSSA should connect to it locally at the chip. VSSA should connect to power ground at the output capacitor(s) only. .eedback traces must be kept far away from noise sources such as switching nodes, inductors and gate drives. Route the feedback trace with VSSA as a differential pair from the output capacitor back to the chip. Run them in a quiet layer if possible. Chip decoupling capacitors (VDDP, VCCA) should be located next to the pins (VDDP and PGND, VCCA and VSSA) and connected directly to them on the same side. Power sections should connect directly to the ground plane(s) using multiple vias as required for current handling (including the chip power ground connections). Power components should be placed to minimize loops and reduce losses. Make all the connections on one side of the PCB using wide copper filled areas if possible. Do not use minimum land patterns for power components. Minimize trace lengths between the gate drivers and the gates of the MOS.ETs to reduce parasitic impedances (and MOS.ET switching losses), the low-side MOS.ET is most critical. Maintain a length to width ratio of <20:1 for gate drive signals. Use multiple vias as required by current handling requirement (and to reduce parasitics) if routed on more than one layer Current sense connections must always be made using Kelvin connections to ensure an accurate signal. We will examine the SC1480A DDR2 reference design used in the Design Procedure section while explaining the layout guidelines in more detail. 4 1 2 3 5 6 7 8 Q1 FDS6982S C3 0u1 C1 10u 0402 0402 0603 0402 0402 0402 0402 0402 0402 0402 7343 1210 0603 0402 0402 0603 SOD323 0603 2525 R8 0R 0402 REFIN 1 TON 2 REFOUT 3 VCCA 4 FB 5 PGD 6 VSSA 7 PGND 8 DL 9 VDDP 10 ILIM 11 LX 12 DH 13 BST 14 U1 SC1480A C9 1u C8 1n R7 10R R4 10R R3 470k R2 715k R1 10k0 R6 10k0 VTT VBAT VDDQ 5VSUS PGOOD C2 1u REFOUT C10 1u R5 9k09 D1 C5 0u1 5VRUN C4 2n2 VBAT L1 2u2 + C6 220u/15mOhm VTT C7 0u1 .igure 3: Reference Design and Layout Example for VBAT = 8V to 20V, VTT = 0.9V, 3A Note R8 is present to facilitate isolation of power ground and VSSA during layout. |
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