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LPA2164ASOF датащи(PDF) 12 Page - Lowpower Semiconductor inc |
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LPA2164ASOF датащи(HTML) 12 Page - Lowpower Semiconductor inc |
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12 / 15 page ![]() Preliminary Datasheet LPA2164A LPA2164A–00 Version 1.0 May.-2013 Email: marketing@lowpowersemi.com www.lowpowersemi.com Page 12 of 15 PCB Layout notices 1, In the path of the power supply, plus a 1uF and a 10uF to ground high-frequency filter capacitor. 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 may achieve better sound effects. 2, Large (470 µF or greater) bulk power supply decoupling capacitors should be placed near the LPA2164A on the VDD supplies. Local, high-frequency bypass capacitors should be placed as close to the VDD pins as possible. 3, The power line, ground line and filter capacitor and bypass capacitors as close to the chip's pins, remember not to put the capacitor on the back of the board, through tiny holes through the jumper even over. 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. 4, Power, ground, and a large current line must try to be wide enough, if you want to add vias, the number of through-holes must be at least 6. The thermal pad must be soldered to the PCB for proper thermal performance and optimal reliability. 5, GND and VDD should be put independently, high-power signals to avoid interference. 6, If you want to pursue as large as the effect of power, a large selection of speakers or sound chamber with low resistance (such as 3.6Ù) speakers, or added to improve the supply voltage boost circuit. 7, Including the line between large current cell and chip, the inductor should be as close and short as possible to chip for a high performance. Adding a coil to this pin would be helpful for EMI certification. If there is a high standards needed in LPA2164A application, we could add a coil and capacitor between chip and speaker constituting a LC filter which coil would be 100MHz, 100~150Ω and its DCI beyond 3A placing as close as possible to chip, the capacitor should be 1nF connecting the PGND. 8, The position under the amplifier chip on the board must be added vents and large areas of exposed copper and tin to enhance heat dissipation. 9, In case of fixed gain and meeting demand, it should make CIN small as possible as we can because it constitute a high through filter with Rin which cutoff frequency is 1/2*3.414*Cin*Rin. A high capacitance cap could make POP worse. PCB LAYOUT |
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