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SC185LEVB bảng dữ liệu(PDF) 16 Page - Semtech Corporation

tên linh kiện SC185LEVB
Giải thích chi tiết về linh kiện  4A Synchronous Step-Down Regulator
PDF  18 Pages
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nhà sản xuất  SEMTECH [Semtech Corporation]
Trang chủ  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC185LEVB bảng dữ liệu(HTML) 16 Page - Semtech Corporation

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SC185
© 2010 Semtech Corp.
Figure 2 — Recommended PCB Layout (Top Layer)
Figure 3 — Bottom Layer Detail
PCB Layout Considerations
The layout diagram in Figure 2 shows a recommended
top-layer PCB for the SC185 and supporting components.
Figure 3 shows the bottom layer for this PCB. Fundamental
layout rules must be followed since the layout is critical
for achieving the performance specified in the Electrical
Characteristics table. Poor layout can degrade the
performance of the DC-DC converter and can contribute
to EMI problems, ground bounce, and resistive voltage
losses. Poor regulation and instability can result.
The following guidelines are recommended when
developing a PCB layout:
The input capacitor, C
IN should be placed as close to
the PVIN and PGND pins as possible. This capacitor
provides a low impedance loop for the pulsed currents
present at the buck converter’s input. Use short wide
traces to connect as closely to the IC as possible.
This will minimize EMI and input voltage ripple by
localizing the high frequency current pulses.
Keep the LX pin traces as short as possible to minimize
pickup of high frequency switching edges to other
parts of the circuit. C
OUT and L should be connected as
close as possible between the LX and PGND pins, with
a direct return to the PGND pin from C
OUT.
Route the output voltage feedback/sense path away
from the inductor and LX node to minimize noise and
magnetic interference.
Use a ground plane referenced to the SC185 PGND
pin. Use several vias to connect to the component
side ground to further reduce noise and interference
on sensitive circuit nodes.
If possible, minimize the resistance from the VOUT
and PGND pins to the load. This will reduce the
voltage drop on the ground plane and improve the
load regulation. And it will also improve the overall
efficiency by reducing the copper losses on the output
and ground planes.
1.
2.
3.
4.
5.
Applications Information (continued)
GND
GND
VIN
VOUT
VIN
GND
GND
VOUT
L
U1
R1
C1
CSS
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