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TDA4VE...ALZQ1 数据表(PDF) 119 Page - Texas Instruments |
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TDA4VE...ALZQ1 数据表(HTML) 119 Page - Texas Instruments |
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119 / 251 page ![]() 7.10.2.3 Combined MCU and Main Domains Power- Down Sequencing Figure 7-4 describes the device power-down sequencing. J7VCL_ELCH_02 T0 T1 T2 T3 T4 VDD_CPU MCU_PORz (J) OSC1_XI, OSC1_XO (optional) WKUP_LFOSC0_XI, WKUP_LFOSC0_XO (optional) WKUP_OSC0_XI, WKUP_OSC0_XO VDDS_DDR_BIAS, VDDS_DDR, VDDS_DDR_C MCU_BOOTMODE[9:0], BOOTMODE[7:0] T Δ1 (VDDSHV0_MCU, VDDSHV1_MCU, VDDSHV2_MCU, VDDSHV0, VDDSHV2, VDDSHV5 ) , VDDA_3P3_USB (D) (B) (E) (VDDSHV0_MCU, VDDSHV1_MCU, VDDSHV2_MCU, VDDSHV0, VDDSHV2, VDDSHV5 ) ,VDDS_MMC0 (D) (C) VDD_MCU , VDD_MCU_WAKE1, VDD_CORE, (I) VDD_WAKE0, VDDA_0P8_SERDES, VDDA_0P8_SERDES_C, VDDA_0P8_USB, VDDAR_CORE, VDDAR_CPU, VDDAR_MCU (I) VDDA_0P8_PLL_DDR, VDDA_0P8_DLL_MMC0 (H) (VDDA_MCU_PLLGRP0, VDDA_MCU_TEMP, VDDA_ADC_MCU, VDDA_POR_WKUP, VDDA_WKUP, VDDA_OSC1, VDDA_PLLGRP8, VDDA_PLLGRP6,VDDA_PLLGRP4, VDDA_PLLGRP0, VDDA_TEMP0, VDDA_TEMP1) (F) (VDDA_1P8_SERDES, VDDA_1P8_USB) (G) PORz (J) Valid Configuration A. Time stamp markers: • T0 – MCU_PORz & PORz assert low to put all processor resources in safe state. (0 ms) • T1 – Main DDR, SRAM Core, and SRAM CPU power supplies start ramp-down. (0.5 ms) • T2 – Low voltage core supplies start supply ramp-down. (2.5 ms) • T3 - 1.8-V voltages start supply ramp-down. (3.0 ms) • T4 – 3.3V voltages start supply ramp-down. (3.5 ms) B. Any MCU or Main dual voltage IO domains (VDDSHVn_MCU or VDDSHVn) being supplied by 3.3 V to support 3.3-V digital interfaces. C. Any MCU or Main dual voltage IO domains (VDDSHVn_MCU or VDDSHVn) being supplied by 1.8 V to support 1.8-V digital interfaces. D. VDDSHV5 supports MMC1 signaling for SD memory cards. A dual voltage (3.3 V/1.8 V) power rail is required for compliant, high-speed SD card operations. If SD card is not needed or standard data rates with fixed 3.3-V operation is acceptable, then domain can be grouped with digital IO 3.3-V power rail. If a SD card is capable of operating with fixed 1.8 V, then domain can be grouped with digital IO 1.8-V power rail. E. VDDA_3P3_USB is 3.3-V analog domain used for USB 2.0 differential interface signaling. A low noise, analog supply is recommended to provide best signal integrity for USB data eye mask compliance. If USB interface is not needed or data bit errors can be tolerated, then domain can be grouped with 3.3-V digital IO power rail either directly or through a supply filter. F. VDDA_1P8_<clk/pll/ana> are 1.8V analog domains supporting clock oscillator, PLL and analog circuitry needing a low noise supply for optimal performance. It is not recommended to combine digital VDDSHVn_MCU and VDDSHVn IO domains since high frequency switching noise could negatively impact jitter performance of clock, PLL and DLL signals. Combining analog VDDA_1p8_<phy> domains should be avoided but if grouped, then in-line ferrite bead supply filtering is required . www.ti.com TDA4VE-Q1, TDA4AL-Q1, TDA4VL-Q1 SPRSP62 – DECEMBER 2022 Copyright © 2023 Texas Instruments Incorporated Submit Document Feedback 119 Product Folder Links: TDA4VE-Q1 TDA4AL-Q1 TDA4VL-Q1 |
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