MCIMX6D7CVT08AC Freescale Semiconductor, MCIMX6D7CVT08AC Datasheet - Page 24

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MCIMX6D7CVT08AC

Manufacturer Part Number
MCIMX6D7CVT08AC
Description
Processors - Application Specialized i.MX6D
Manufacturer
Freescale Semiconductor
Type
Multimedia Applicationsr
Datasheet

Specifications of MCIMX6D7CVT08AC

Rohs
yes
Core
ARM Cortex A9
Processor Series
i.MX6
Data Bus Width
32 bit
Maximum Clock Frequency
800 MHz
Data Ram Size
16 KB
Maximum Operating Temperature
+ 105
Mounting Style
SMD/SMT
Package / Case
FCBGA
Interface Type
I2C, I2S, UART, USB
Memory Type
L1/L2 Cache, ROM, SRAM
Minimum Operating Temperature
- 40 C
Number Of Timers
2

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0
Electrical Characteristics
24
1
2
3
4
5
NVCC_DRAM
NVCC_ENET
NVCC_LCD
NVCC_GPIO
NVCC_CSI
NVCC_EIM0
NVCC_EIM1
NVCC_EIM2
NVCC_JTAG
NVCC_RGMII
NVCC_SD1
NVCC_SD2
NVCC_SD3
NVCC_NAND
NVCC_MIPI
DRAM_VREF
The actual maximum current drawn from VDD_HIGH_IN will be as shown plus any additional current drawn from the
VDD_HIGH_CAP outputs, depending upon actual application configuration (for example, NVCC_LVDS_2P5, NVCC_MIPI, or
HDMI, PCIe, and SATA VPH supplies).
Under normal operating conditions, the maximum current on VDD_SNVS_IN is shown
current may be higher depending on specific operating configurations, such as BOOT_MODE[1:0] not equal to 00, or use of
the Tamper feature. During initial power on, VDD_SNVS_IN can draw up to 1 mA if the supply is capable of sourcing that
current. If less than 1 mA is available, the VDD_SNVS_CAP charge time will increase.
This is the maximum current per active USB physical interface.
The DRAM power consumption is dependent on several factors such as external signal termination. DRAM power calculators
are typically available from memory vendors which take into account factors such as signal termination.
See the i.MX 6Dual/6Quad Power Consumption Measurement Application Note (AN4509) for examples of DRAM power
consumption during specific use case scenarios.
General equation for estimated, maximum power consumption of an IO power supply:
Imax = N x C x V x (0.5 x F)
Where:
N—Number of IO pins supplied by the power line
C—Equivalent external capacitive load
V—IO voltage
(0.5 xF)—Data change rate. Up to 0.5 of the clock rate (F)
In this equation, Imax is in Amps, C in Farads, V in Volts, and F in Hertz.
Power Supply
i.MX 6Dual/6Quad Applications Processors for Industrial Products, Rev. 2
Table 9. Maximum Supply Currents (continued)
Primary Interface (IO) Supplies
MISC
Conditions
N=10
N=29
N=24
N=20
N=19
N=14
N=20
N=12
N=11
N=26
N=6
N=6
N=6
Table
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
Use maximum IO equation
9. The maximum VDD_SNVS_IN
Max Current
Freescale Semiconductor
(see
25.5
1
4
)
5
5
5
5
5
5
5
5
5
5
5
5
5
Unit
mA
mA

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