MCIMX6U5EVM10AB Freescale Semiconductor, MCIMX6U5EVM10AB Datasheet - Page 27

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MCIMX6U5EVM10AB

Manufacturer Part Number
MCIMX6U5EVM10AB
Description
Processors - Application Specialized i.MX6 DualLite
Manufacturer
Freescale Semiconductor
Type
Multimedia Applicationsr
Datasheet

Specifications of MCIMX6U5EVM10AB

Rohs
yes
Core
ARM Cortex A9
Processor Series
i.MX6
Data Bus Width
32 bit
Maximum Clock Frequency
1 GHz
Data Ram Size
128 KB
Operating Supply Voltage
1.175 V to 1.5 V
Maximum Operating Temperature
+ 105 C
Mounting Style
SMD/SMT
Package / Case
MAPBGA-624
Interface Type
I2C, I2S, UART, USB
Memory Type
L1/L2 Cache, ROM, SRAM
Minimum Operating Temperature
- 20 C
Number Of Timers
2

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9
4.1.5
The Power Virus numbers shown in
maximum current consumption possible. All cores are running at the defined maximum frequency and are
limited to L1 cache accesses only to ensure no pipeline stalls. Although a valid condition, it would have a
very limited practical use case, if at all, and be limited to an extremely low duty cycle unless the intention
was to specifically show the worst case power consumption.
The MMPF0100xxxx, Freescale’s power management IC targeted for the i.MX 6x family, supports the
Power Virus mode operating at 1% duty cycle. Higher duty cycles are allowed, but a robust thermal design
is required for the increased system power dissipation.
See the i.MX 6Solo/6DualLite Power Consumption Measurement Application Note (AN4576) for more
details on typical power consumption under various use case definitions.
Freescale Semiconductor
VDDARM_IN
VDDSOC_IN
VDDHIGH_IN
VDD_SNVS_IN
USB_OTG_VBUS/USB_H1_VBUS (LDO 3P0)
4
The typical values shown in
keeping and USB operation. For RTC_XTAL operation, two clock sources are available.
The decision of choosing a clock source should be taken based on real-time clock use and precision
timeout.
External oscillator or a fundamental frequency crystal with internal oscillator amplifier.
On-chip 40 kHz ring oscillator—this clock source has the following characteristics:
External crystal oscillator with on-chip support circuit:
Approximately 25 µA more Idd than crystal oscillator
Approximately ±50% tolerance
No external component required
Starts up quicker than 32 kHz crystal oscillator
At power up, ring oscillator is utilized. After crystal oscillator is stable, the clock circuit
Higher accuracy than ring oscillator
If no external crystal is present, then the ring oscillator is utilized
Maximal Supply Currents
switches over to the crystal oscillator automatically.
i.MX 6Solo/6DualLite Applications Processors for Consumer Products, Rev. 1
Power Line
Table 11
Table 12. Maximal Supply Currents
Table 12
Primary Interface (IO) Supplies
are required for use with Freescale BSPs to ensure precise time
represent a use case designed specifically to show the
996 MHz ARM clock
based on Power Virus
operation
996 MHz ARM clock
Conditions
Max Current
2200
1260
125
275
25
3
1
2
Electrical Characteristics
Unit
mA
mA
mA
mA
μA
27

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