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AM652X Folha de dados(PDF) 265 Page - Texas Instruments

Nome de Peças AM652X
Descrição Electrónicos  AM654x, AM652x Sitara™ Processors Silicon Revision 2.1
PDF  284 Pages
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Fabricante Electrônico  TI [Texas Instruments]
Página de início  http://www.ti.com
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9.2.4 High Speed Differential Signal Routing Guidance
The High-Speed Interface Layout Guidelines provides guidance for successful routing of the high speed
differential signals. This includes PCB stackup and materials guidance as well as routing skew, length and
spacing limits. TI supports only designs that follow the board design guidelines contained in the application
report.
9.2.5 System Power Supply Monitor Design Guidelines
The VDDA_VSYS_MON pin provides a way to monitor the system power supply and is not fail-safe, unless
implemented with the appropriate resistor voltage divider source. This pin should be sourced with a resistor
voltage divider that receives its power from the system power supply.
The output of the resistor voltage divider is connected to the VDDA_VSYS_MON pin which has a trigger voltage
of 0.5 V ± 5%. The resistor voltage divider should be implemented such that it has a reference current in the
range of 1 µA to 50 µA, output voltage that never exceeds the maximum value defined in Section 7.1, Absolute
Maximums Ratings, and output voltage of 0.54 V when the system supply drops to its lowest desired operating
voltage.
The recommended output voltage of 0.54 V provides 40 mV of margin that includes 5% for tolerance of the
voltage monitor, 1% for tolerance of each resistor, plus 5 mV of potential error introduced by input leakage
current. This value ensures the voltage monitor will never trigger before reaching the expected trigger voltage.
Figure 9-5 presents an example, when the system power supply voltage is nominally 5 V and the desired trigger
threshold is -10% or 4.5 V.
Device
VDDA_VSYS_MON
SPRSP08_VSYS_MON_01
VSS
30 k
1%
±
220 k
1%
±
VSYS
(System Power Suplpy)
Figure 9-5. System Supply Monitor Voltage Divider Circuit
In this example the voltage divider ratio should be (4.5 V / 0.54 V) = 8.33 V. This ratio produces a 0.54 V
potential on the VDDA_VSYS_MON pin when the system power supply is 4.5 V. In this case, the voltage
monitor will trigger in the range of 3.88 V to 4.5 V. Precision 1% resistors with similar thermal coefficient are
recommended for implementing the resistor voltage divider.
9.2.6 MMC Design Guidelines
The MMC peripheral on this device contains an integrated SDIO LDO for handling automatic voltage transitions
for SD Interfaces. For details about how to connect the device pins associated with the SDIO LDO, refer to
Figure 9-10 through Figure 9-12.
9.2.7 Integrated Power Management Features
The device offers integrated power management features that simplify design and cost/BOM of the system level
power solution. Simplicity of the system design enables modular and scalable solutions suitable for platform
design and re-use. The AM65x Power Management Features User Guide introduces the integrated power
management features and advantages for system level power solution.
www.ti.com
AM6548, AM6528, AM6546, AM6526
SPRSP52B – DECEMBER 2019 – REVISED JUNE 2021
Copyright © 2022 Texas Instruments Incorporated
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Product Folder Links: AM6548 AM6528 AM6546 AM6526



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