AM3359, AM3358, AM3357, AM3356, AM3354, AM3352
SPRS717H – OCTOBER 2011 – REVISED MAY 2015
(1) Not available on the ZCE package.
(2) Typical values consist of 1 cap of 10
μ
F and 4 caps of 10 nF.
(3) For more details on decoupling capacitor requirements for the mDDR(LPDDR), DDR2, DDR3, DDR3L memory interface, see
and
when using mDDR(LPDDR) memory devices,
and
when using DDR2 memory devices, or
and
when using DDR3 or DDR3L memory devices.
(4) VDDS_SRAM_CORE_BG supply powers an internal LDO for SRAM supplies. Inrush currents could cause voltage drop on the
VDDS_SRAM_CORE_BG supplies when the SRAM LDO is enabled after powering up VDDS_SRAM_CORE_BG terminals. A 10 µF is
recommended to be placed close to the terminal and routed with widest traces possible to minimize the voltage drop on
VDDS_SRAM_CORE_BG terminals.
(5) VDDS_SRAM_MPU_BB supply powers an internal LDO for SRAM supplies. Inrush currents could cause voltage drop on the
VDDS_SRAM_MPU_BB supplies when the SRAM LDO is enabled after powering up VDDS_SRAM_MPU_BB terminals. A 10 µF is
recommended to be placed close to the terminal and routed with widest traces possible to minimize the voltage drop on
VDDS_SRAM_MPU_BB terminals.
(6) Typical values consist of 1 cap of 10
μ
F and 2 caps of 10 nF.
(7) Typical values consist of 1 cap of 10
μ
F and 6 caps of 10 nF.
5.9.2
Output Capacitors
Internal low dropout output (LDO) regulators require external capacitors to stabilize their outputs. These
capacitors should be placed as close as possible to the respective terminals of the AM335x device.
summarizes the LDO output capacitor recommendations.
Table 5-15. Output Capacitor Characteristics
PARAMETER
TYP
UNIT
C
CAP_VDD_SRAM_CORE
1
μ
F
C
CAP_VDD_RTC
1
μ
F
C
CAP_VDD_SRAM_MPU
1
μ
F
C
CAP_VBB_MPU
1
μ
F
(1) LDO regulator outputs should not be used as a power source for any external components.
(2) The CAP_VDD_RTC terminal operates as an input to the RTC core voltage domain when the RTC_KLDO_ENn terminal is high.
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Specifications
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