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AM69AX 数据表(PDF) 136 Page - Texas Instruments

部件名 AM69AX
功能描述  AM69Ax Processors, Silicon Revision 1.0
PDF  299 Pages
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制造商  TI [Texas Instruments]
网页  http://www.ti.com
标志 TI - Texas Instruments

AM69AX 数据表(HTML) 136 Page - Texas Instruments

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IP(1) (2) (3) VOLTAGE DOMAIN
VOLTAGE (V)
(MAX)
FREQUENCY
(MHz) (MAX)
Tj(°C)
POH
All
100%
All
All Supported OPPs
Extended -40°C to 105°C
100000
All
100%
All
All Supported OPPs
Commercial 0°C to 90°C
100000
(1)
The information in the section below is provided solely for your convenience and does not extend or modify the warranty provided
under TI’s standard terms and conditions for TI semiconductor products.
(2)
Unless specified in the table above, all voltage domains and operating conditions are supported in the device at the noted
temperatures
(3)
POH is a functional of voltage, temperature and time. Usage at higher voltages and temperatures will result in a reduction in POH to
achieve the same reliability performance. For assessment of alternate use cases, contact your local TI representative.
(4)
Automotive profile is defined as 20000 power on hours with junction temperature as follows: 5%@-40°C, 65%@70°C, 20%@110°C,
10%@125°C.
7.4 Recommended Operating Conditions
over operating free-air temperature range (unless otherwise noted)
SUPPLY NAME
DESCRIPTION
MIN(1)
NOM
MAX(1)
UNIT
VDD_CORE
Boot/Active voltage for MAIN domain core supply
0.76
0.8
0.84
V
VDD_MCU
Boot/Active voltage for MCUSS core supply
0.76
0.8
0.89
V
VDD_CPU
Boot voltage for CPU core supply, applied at cold
power up event
0.76
0.8
0.84
V
Active voltage for CPU core supply, after AVS mode
enabled in software
AVS(3)–5%
AVS(3) AVS(3)+5%
V
VDD_CPU AVS Range
AVS valid voltage range for VDD_CPU
0.6
0.9
V
VDDAR_*(5)
RAM supplis
0.81
0.85
0.89
V
VDDA_0P8_*(5)
Analog supplies for 0.8V domains
0.76
0.8
0.84
V
VDDA_1P8_*(5)
Analog supplies for 1.8V PHY domains
1.71
1.8
1.89
V
VDDA_3P3_USB(5)
Analog supply for 3.3V USB domain
3.14
3.3
3.46
V
VDDA_*(5)
Analog supply for 1.8V PLL and other domains
1.71
1.8
1.89
V
VDDS_DDR_*(5)
DDR inteface power supply
1.06
1.1
1.15
V
VDDS_MMC0
MMC0 IO supply
1.71
1.8
1.89
V
VDDSHV*(5)
Dual Voltage LVCMOS IO
supplies
1.8-V operation
1.71
1.8
1.89
V
3.3-V operation
3.14
3.3
3.46
V
USB0_VBUS
Voltage range for USB VBUS comparator input
0
See (4)
3.46
V
USB0_ID
Voltage range for the USB ID input
See (2)
V
VSS
Ground
0
V
TJ
Operating junction temperature
range
Automotive
–40
125
°C
Extended
-40
105
°C
Commercial
0
90
°C
(1)
The voltage at the device ball must never be below the MIN voltage or above the MAX voltage for any amount of time. This
requirement includes dynamic voltage events such as AC ripple, voltage transients, voltage dips, and so forth.
(2)
This terminal is connected to analog circuits in the respective USB PHY. The circuit sources a known current while measuring the
voltage to determine if the terminal is connected to VSS with a resistance less than 10 Ω or greater than 100 kΩ. The terminal should
be connected to ground for USB host operation or open-circuit for USB peripheral operation, and should never be connected to any
external voltage source.
(3)
The AVS Voltages are device-dependent, voltage domain-dependent, and OPP-dependent. They must be read from the
VTM_DEVINFO_VDn. For information about VTM_DEVINFO_VDn Registers address, please refer to Voltage and Thermal Manager
section in the device TRM. The power supply should be adjustable over the ranges shown in the VDD_CPU AVS Range entry.
(4)
An external resistor divider is required to limit the voltage applied to this device pin. For more information, see USB VBUS Design
Guidelines.
(5)
VDD_* includes: VDD_CORE, VDD_CPU, VDD_MCU, VDD_MCU_WAKE1, VDD_WAKE0
VDDAR_* includes: VDDAR_CORE, VDDAR_CPU, VDDAR_MCU
VDDA_0P8_* includes: VDDA_0P8_CSIRX0_1, VDDA_0P8_CSIRX2, VDDA_0P8_DLL_MMC0, VDDA_0P8_DSITX,
VDDA_0P8_DSITX_C, VDDA_0P8_PLL_DDR0, VDDA_0P8_PLL_DDR1, VDDA_0P8_PLL_DDR2, VDDA_0P8_PLL_DDR3,
VDDA_0P8_SERDES_C0_1, VDDA_0P8_SERDES_C2, VDDA_0P8_SERDES_C4, VDDA_0P8_SERDES0_1,
VDDA_0P8_SERDES2, VDDA_0P8_SERDES4, VDDA_0P8_UFS, VDDA_0P8_USB
AM69A
SPRSP92 – FEBRUARY 2023
www.ti.com
136
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Copyright © 2023 Texas Instruments Incorporated
Product Folder Links: AM69A



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