MCIMX6D6AVT10AC Freescale Semiconductor, MCIMX6D6AVT10AC Datasheet - Page 118
MCIMX6D6AVT10AC
Manufacturer Part Number
MCIMX6D6AVT10AC
Description
Processors - Application Specialized i.MX6D
Manufacturer
Freescale Semiconductor
Type
Multimedia Applicationsr
Datasheet
1.MCIMX6Q6AVT10AC.pdf
(166 pages)
Specifications of MCIMX6D6AVT10AC
Rohs
yes
Core
ARM Cortex A9
Processor Series
i.MX6
Data Bus Width
32 bit
Operating Supply Voltage
1.05 V to 1.5 V
Memory Type
L1/L2 Cache, ROM, SRAM
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Electrical Characteristics
118
1
2
3
4
Common-mode output voltage:
(V
Difference in common-mode output between
(high/low) steady-states:
I V
Variations on common-mode output during a
logic state transitions
Short circuit current
Differential output impedance
Differential clock input:
Differential signal/data input:
Signal-ended input voltage (steady-state):
• logic low steady-state
• logic high steady-state
• hysteresis
• logic low steady-state
• logic high steady-state
• MLB_SIG_P, MLB_DATA_P
• MLB_SIG_N, MLB_DATA_N
The signal-ended output voltage of a driver is defined as V
signal-ended output voltage of a driver is defined as V
Variations in the common-mode voltage can occur between logic states (for example, during state transitions) as a result of
differences in the transition rate of V
Short circuit current is applicable when V
The logic state of the receiver is undefined when -50 mV < V
O+
OCM, high
- V
O-
) / 2
- V
OCM, low
Parameter
Table 77. MediaLB 6-Pin Interface Electrical DC Specifications (continued)
i.MX 6Dual/6Quad Automotive and Infotainment Applications Processors, Rev. 2
I
O+
and V
O+
and V
O-
Symbol
V
V
V
V
V
|I
V
V
V
.
V
V
Z
Receiver Characteristics
OCM
CMV
HSC
OS
IHC
OCM
ILC
IHS
IN+
ILS
IN-
O
O-
|
are shorted together and/or shorted to ground.
O-
on MLB_CLK_N, MLB_SIG_N, and MLB_DATA_N.
O+
ID
Test Conditions
on MLB_CLK_P, MLB_SIG_P, and MLB_DATA_P. The
< 50 mV.
See Note
See Note
See Note
—
—
—
—
—
2
3
4
Min
-50
-25
1.0
1.6
0.5
0.5
50
50
—
—
—
Freescale Semiconductor
Max
150
1.5
-50
-50
2.0
2.0
50
43
25
—
—
mVpp
Unit
mV
mA
mV
mV
mV
mV
mV
k
V
V
V
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