MCIMX6Q6AVT10AC Freescale Semiconductor, MCIMX6Q6AVT10AC Datasheet - Page 11

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MCIMX6Q6AVT10AC

Manufacturer Part Number
MCIMX6Q6AVT10AC
Description
Processors - Application Specialized i.MX6Q
Manufacturer
Freescale Semiconductor
Type
Multimedia Applicationsr
Datasheet

Specifications of MCIMX6Q6AVT10AC

Rohs
yes
Core
ARM Cortex A9
Processor Series
i.MX6
Data Bus Width
32 bit
Maximum Clock Frequency
1 GHz
Data Ram Size
16 KB
Operating Supply Voltage
1.05 V to 1.5 V
Maximum Operating Temperature
+ 125 C
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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Freescale Semiconductor
Mnemonic
FlexCAN-1
FlexCAN-2
GPIO-1
GPIO-2
GPIO-3
GPIO-4
GPIO-5
GPIO-6
GPIO-7
EPIT-1
EPIT-2
Block
GPMI
ESAI
GPT
Enhanced Periodic
Interrupt Timer
Enhanced Serial
Audio Interface
Flexible Controller
Area Network
General Purpose I/O
Modules
General Purpose
Media Interface
General Purpose
Timer
i.MX 6Dual/6Quad Automotive and Infotainment Applications Processors, Rev. 2
Block Name
Table 2. i.MX 6Dual/6Quad Modules List (continued)
Timer
Peripherals
Connectivity
Peripherals
Connectivity
Peripherals
System
Control
Peripherals
Connectivity
Peripherals
Timer
Peripherals
Subsystem
Each EPIT is a 32-bit “set and forget” timer that starts counting after the
EPIT is enabled by software. It is capable of providing precise interrupts
at regular intervals with minimal processor intervention. It has a 12-bit
prescaler for division of input clock frequency to get the required time
setting for the interrupts to occur, and counter value can be programmed
on the fly.
The Enhanced Serial Audio Interface (ESAI) provides a full-duplex serial
port for serial communication with a variety of serial devices, including
industry-standard codecs, SPDIF transceivers, and other processors.
The ESAI consists of independent transmitter and receiver sections, each
section with its own clock generator. All serial transfers are synchronized
to a clock. Additional synchronization signals are used to delineate the
word frames. The normal mode of operation is used to transfer data at a
periodic rate, one word per period. The network mode is also intended for
periodic transfers; however, it supports up to 32 words (time slots) per
period. This mode can be used to build time division multiplexed (TDM)
networks. In contrast, the on-demand mode is intended for non-periodic
transfers of data and to transfer data serially at high speed when the data
becomes available.
The ESAI has 12 pins for data and clocking connection to external
devices.
The CAN protocol was primarily, but not only, designed to be used as a
vehicle serial data bus, meeting the specific requirements of this field:
real-time processing, reliable operation in the Electromagnetic
interference (EMI) environment of a vehicle, cost-effectiveness and
required bandwidth. The FlexCAN module is a full implementation of the
CAN protocol specification, Version 2.0 B, which supports both standard
and extended message frames.
Used for general purpose input/output to external devices. Each GPIO
module supports 32 bits of I/O.
The GPMI module supports up to 8x NAND devices. 40-bit ECC
encryption/decryption for NAND Flash controller (GPMI2). The GPMI
supports separate DMA channels per NAND device.
Each GPT is a 32-bit “free-running” or “set and forget” mode timer with
programmable prescaler and compare and capture register. A timer
counter value can be captured using an external event and can be
configured to trigger a capture event on either the leading or trailing
edges of an input pulse. When the timer is configured to operate in “set
and forget” mode, it is capable of providing precise interrupts at regular
intervals with minimal processor intervention. The counter has output
compare logic to provide the status and interrupt at comparison. This
timer can be configured to run either on an external clock or on an internal
clock.
Brief Description
Modules List
11

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