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TPA3110D2-Q1 Datasheet(PDF) 26 Page - Texas Instruments

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Part # TPA3110D2-Q1
Description  Filter-Free Stereo Class-D Audio Power Amplifier
Download  36 Pages
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

TPA3110D2-Q1 Datasheet(HTML) 26 Page - Texas Instruments

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TPA3110D2-Q1
SLOS794B – SEPTEMBER 2012 – REVISED SEPTEMBER 2015
www.ti.com
10 Layout
10.1 Layout Guidelines
The TPA3110D2-Q1 can be used with a small, inexpensive ferrite bead output filter for most applications.
However, since the Class-D switching edges are fast, it is necessary to take care when planning the layout of the
printed circuit board. The following suggestions help to meet EMC requirements.
Decoupling capacitors—The high-frequency decoupling capacitors should be placed as close to the PVCC
and AVCC terminals as possible. Large (220-µF or greater) bulk power supply decoupling capacitors should
be placed near the TPA3110D2-Q1 on the PVCCL and PVCCR supplies. Local, high-frequency bypass
capacitors should be placed as close to the PVCC pins as possible. These caps can be connected to the
thermal pad directly for an excellent ground connection. Consider adding a small, good quality low ESR
ceramic capacitor between 220 pF and 1000 pF and a larger good quality mid-frequency cap of value
between 0.1
μF and 1 μF to the PVCC connections at each end of the chip.
Keep the current loop from each of the outputs through the ferrite bead and the small filter cap and back to
PGND as small and tight as possible. The size of this current loop determines its effectiveness as an
antenna.
Grounding—The AVCC (pin 7) decoupling capacitor should be grounded to analog ground (AGND). The
PVCC decoupling capacitors should connect to PGND. Analog ground and power ground should be
connected at the thermal pad, which should be used as a central ground connection or star ground for the
TPA3110D2-Q1.
Output filter—The ferrite EMI filter (Figure 41) should be placed as close to the output terminals as possible
for the best EMI performance. The LC Filter (Figure 39 and Figure 40) should be placed close to the outputs.
The capacitors used in both the ferrite and LC Filters should be grounded to power ground.
Thermal pad—The thermal pad must be soldered to the PCB for proper thermal performance and optimal
reliability. The dimensions of the thermal pad and thermal land should be 6.46 mm by 2.35 mm. Seven rows
of solid vias (three vias per row, 0,3302 mm or 13 mils diameter) should be equally spaced underneath the
thermal land. The vias should connect to a solid copper plane, either on an internal layer or on the bottom
layer of the PCB. The vias must be solid vias, not thermal relief or webbed vias. See the TI Application
Report SLMA002 for more information about using the TSSOP thermal pad. For recommended PCB
footprints, see the figures at the end of this data sheet.
For an example layout, see the TPA3110D2-Q1 Evaluation Module User's Guide, SLOU263. Both the EVM
user's guide and the thermal pad application report are available on the TI website at http://www.ti.com.
26
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