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ADP1613ARMZ-R7 数据表(PDF) 24 Page - Analog Devices

部件名 ADP1613ARMZ-R7
功能描述  650 kHz /1.3 MHz Step-Up PWM DC-to-DC Switching Converters
PDF  28 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP1613ARMZ-R7 数据表(HTML) 24 Page - Analog Devices

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ADP1612/ADP1613
Rev. A | Page 24 of 28
PCB LAYOUT GUIDELINES
For high efficiency, good regulation, and stability, a well-
designed printed circuit board layout is required.
Use the following guidelines when designing printed circuit
boards (also see Figure 34 for a block diagram and Figure 3
for a pin configuration).
Keep the low ESR input capacitor, CIN (labeled as C7 in
Figure 76), close to VIN and GND. This minimizes noise
injected into the part from board parasitic inductance.
Keep the high current path from CIN (labeled as C7 in
Figure 76) through the L1 inductor to SW and GND as
short as possible.
Keep the high current path from VIN through L1, the
rectifier (D1) and the output capacitor, COUT (labeled as
C4 in Figure 76) as short as possible.
Keep high current traces as short and as wide as possible.
Place the feedback resistors as close to FB as possible to
prevent noise pickup. Connect the ground of the feedback
network directly to an AGND plane that makes a Kelvin
connection to the GND pin.
Figure 76. Example Layout for ADP1612/ADP1613 Boost Application
(Top Layer)
Place the compensation components as close as possible to
COMP. Connect the ground of the compensation network
directly to an AGND plane that makes a Kelvin connection
to the GND pin.
Connect the softstart capacitor, CSS (labeled as C1 in
Figure 76) as close to the device as possible. Connect the
ground of the softstart capacitor to an AGND plane that
makes a Kelvin connection to the GND pin.
Avoid routing high impedance traces from the compensa-
tion and feedback resistors near any node connected to SW
or near the inductor to prevent radiated noise injection.
Figure 77. Example Layout for ADP1612/ADP1613 Boost Application
(Bottom Layer)



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