ATMEGA64M1-15MZ Atmel, ATMEGA64M1-15MZ Datasheet - Page 210

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ATMEGA64M1-15MZ

Manufacturer Part Number
ATMEGA64M1-15MZ
Description
MCU AVR 64KB FLASH 3PSC 32-VQFN
Manufacturer
Atmel
Series
AVR® ATmegar
Datasheet

Specifications of ATMEGA64M1-15MZ

Package / Case
32-VQFN
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Speed
16MHz
Eeprom Size
2K x 8
Core Processor
AVR
Program Memory Type
FLASH
Ram Size
4K x 8
Program Memory Size
64KB (64K x 8)
Data Converters
A/D 11x10b; D/A 1x10b
Oscillator Type
Internal
Peripherals
Brown-out Detect/Reset, POR, PWM, Temp Sensor, WDT
Connectivity
CAN, LIN, SPI, UART/USART
Core Size
8-Bit
Processor Series
ATMEGA64x
Core
AVR8
Data Bus Width
8 bit
Data Ram Size
4 KB
3rd Party Development Tools
EWAVR, EWAVR-BL
Development Tools By Supplier
ATAVRDRAGON, ATSTK500, ATSTK600, ATAVRISP2, ATAVRONEKIT, ATADAPCAN01
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Number Of I /o
-
Lead Free Status / Rohs Status
 Details
17.4.6.2
17.4.6.3
210
Atmel ATmega16/32/64/M1/C1
Tx Header Function
Rx & TX Response Functions
In accordance with the LIN protocol, only the master task must enable this function. The
header is sent in the appropriate timed slots at the programmed baud rate (c.f. LINBRR & LIN-
BTR registers).
The controller is responsible for:
At the end of this transmission, the controller automatically returns to Rx Header / LIN Abort
state (i.e. LCMD[1..0] = 00) after setting the appropriate flags. This function leaves the control-
ler in the same setting as after the Rx Header function. This means that, in LIN 1.3, the
LINDLR register is set with the uncoded length value at the end of the Tx Header function.
During this function, the controller is also responsible for:
These functions are initiated by the slave task of a LIN node. They must be used after sending
an header (master task) or after receiving an header (considered as belonging to the slave
task). When the TX Response order is sent, the transmission begins. A Rx Response order
can be sent up to the reception of the last serial bit of the first byte (before the stop-bit).
In LIN 1.3, the header slot configures the LINDLR register. In LIN 2.1, the user must configure
the LINDLR register, either LRXDL[3..0] for Rx Response either LTXDL[3..0] for Tx Response.
When the command starts, the controller checks the LIN13 bit of the LINCR register to apply
the right rule for computing the checksum. Checksum calculation over the DATA bytes and the
PROTECTED IDENTIFIER byte is called enhanced checksum and it is used for communica-
tion with LIN 2.1 slaves. Checksum calculation over the DATA bytes only is called classic
checksum and it is used for communication with LIN 1.3 slaves. Note that identifiers 60 (0x3C)
to 63 (0x3F) shall always use classic checksum.
At the end of this reception or transmission, the controller automatically returns to Rx Header /
LIN Abort state (i.e. LCMD[1..0] = 00) after setting the appropriate flags.
If an LIN error occurs, the reception or the transmission is stopped, the appropriate flags are
set and the LIN bus is left to recessive state.
During these functions, the controller is responsible for:
While the controller is sending or receiving a response, BREAK and SYNCH fields can be
detected and the identifier of this new header will be recorded. Of course, specific errors on
the previous response will be maintained with this identifier reception.
• The transmission of the BREAK field - 13 dominant bits,
• The transmission of the SYNCH field - character 0x55,
• The transmission of the PROTECTED IDENTIFIER field. It is the full content of the LINIDR
• The starting of the Frame_Time_Out,
• The checking of the LIN communication integrity.
• The initialization of the checksum operator,
• The transmission or the reception of ‘
• The transmission or the checking of the CHECKSUM field,
• The checking of the Frame_Time_Out,
• The checking of the LIN communication integrity.
register (automatic check bits included).
n
’ data with the update of the checksum calculation,
7647G–AVR–09/11

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