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PAM8303CBSC Datasheet(PDF) 12 Page - Diodes Incorporated

Part # PAM8303CBSC
Description  ULTRA LOW EMI, 3W FILTERLESS MONO CLASS-D AUDIO POWER AMPLIFIER
PDF  16 Pages
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Manufacturer  DIODES [Diodes Incorporated]
Direct Link  http://www.diodes.com
Logo DIODES - Diodes Incorporated

PAM8303CBSC Datasheet(HTML) 12 Page - Diodes Incorporated

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PAM8303C
Document number: DS36438 Rev.2 - 2
12 of 16
www.diodes.com
May 2018
© Diodes Incorporated
PAM8303C
Application Information (cont.)
PCB Layout Guidelines
Grounding
It is recommended to use plain grounding or separate grounds. Do not use one-line connecting-power GND and analog GND. Noise currents in
the output power stage must be returned to output noise ground and nowhere else. When these currents circulate elsewhere, the currents can
get into the power supply, the signal ground, and so on, or even worse, the currents can form a loop and radiate noise. Any of these instances
results in degraded-amplifier performance. The output-noise ground that the logical returns for the output noise currents associated with Class-D
switching must tie to system ground at the power exclusively. Signal currents for the inputs
’ reference must be returned to quiet ground. This
ground only ties to the signal components and the GND pin. GND then ties to system ground.
Power Supply Line
Similar to the ground, VDD and PVDD must be separately connected to the system power supply. It is recommended that all of the trace be routed
as short and thick as possible. For the power-line layout, a water stream, or any barricade, placed in the trace can result in the bad performance
of the amplifier (as shown in Figure 2).
Figure 2. Power Line
Components Placement
Decoupling capacitors
—as previously described, the high-frequency, 1µF decoupling capacitors should be placed as close to the power supply
terminals (VDD and PVDD) as possible. Large bulk power supply decoupling capacitors (10µF or greater) must be placed near the PAM8303C on
the PVDD terminal.
Input resistors and capacitors must be placed very close to input pins.
Output filter
—the ferrite EMI filter must be placed as close to the output terminals as possible for the best EMI performance, and the capacitors
used in the filters must be grounded to system ground.



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