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TAS5760LDAPR Datasheet(PDF) 54 Page - Texas Instruments |
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TAS5760LDAPR Datasheet(HTML) 54 Page - Texas Instruments |
54 / 77 page TAS5760L SLOS782B – JULY 2013 – REVISED SEPTEMBER 2015 www.ti.com 2. Pull SPK_SLEEP/ADR HIGH 3. Pull SPK_SD LOW 4. The clocks can now be stopped and the power supplies brought down 5. The device is now fully shutdown and powered off 10.2.6.2.3 Digital I/O Connectivity The digital I/O lines of the TAS5760L are described in previous sections. As discussed, whenever a static digital pin (that is a pin that is hardwired to be HIGH or LOW) is required to be pulled HIGH, it should be connected to DVDD through a pullup resistor in order to control the slew rate of the voltage presented to the digital I/O pins. It is not, however, necessary to have a separate pullup resistor for each static digital I/O line. Instead, a single resistor can be used to tie all static I/O lines HIGH to reduce BOM count. For instance, if Software Control Mode is desired both the GAIN[1:0] and the PBTL/SCL pins can both be pulled HIGH through a single pullup resistor. 10.2.6.3 Application Curve Table 20. Relevant Performance Plots PLOT TITLE PLOT NUMBER Figure 1. Output Power vs PVDD G001 Figure 2. THD+N vs Frequency With PVDD = 12 V, POSPK = 1 W G024 Figure 4. Idle Channel Noise vs PVDD G026 Figure 5. THD+N vs Output Power With PVDD = 12 V, Both Channels Driven G027 Figure 7. Efficiency vs Output Power G030 Figure 8. Crosstalk vs Frequency G031 Figure 22. PVDD PSRR vs Frequency G019 Figure 10. DVDD PSRR vs Frequency G020 Figure 11. Idle Current Draw vs PVDD (Filterless) G042 Figure 12. Idle Current Draw vs PVDD (With LC Filter as Shown on the EVM) G023 Figure 13. Shutdown Current Draw vs PVDD (Filterless) G022 Figure 14. Output Power vs PVDD G039 Figure 15. THD+N vs Frequency With PVDD = 12 V, POSPK = 1 W G002 Figure 17. Idle Channel Noise vs PVDD G006 Figure 18. THD+N vs Output Power With PVDD = 12 V, Both Channels Driven G008 Figure 7. Efficiency vs Output Power G014 Figure 21. Crosstalk vs Frequency G018 Figure 22. PVDD PSRR vs Frequency G019 Figure 23. Idle Current Draw vs PVDD (Filterless) G045 Figure 24. Idle Current Draw vs PVDD (With LC Filter as Shown on EVM) G044 Figure 25. Shutdown Current Draw vs PVDD (Filterless) G022 54 Submit Documentation Feedback Copyright © 2013–2015, Texas Instruments Incorporated Product Folder Links: TAS5760L |
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