ATmega164P Automotive Atmel Corporation, ATmega164P Automotive Datasheet - Page 143

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ATmega164P Automotive

Manufacturer Part Number
ATmega164P Automotive
Description
Manufacturer
Atmel Corporation

Specifications of ATmega164P Automotive

Flash (kbytes)
16 Kbytes
Pin Count
44
Max. Operating Frequency
16 MHz
Cpu
8-bit AVR
# Of Touch Channels
16
Hardware Qtouch Acquisition
No
Max I/o Pins
32
Ext Interrupts
32
Usb Speed
No
Usb Interface
No
Spi
3
Twi (i2c)
1
Uart
2
Graphic Lcd
No
Video Decoder
No
Camera Interface
No
Adc Channels
8
Adc Resolution (bits)
10
Adc Speed (ksps)
15
Analog Comparators
1
Resistive Touch Screen
No
Temp. Sensor
No
Crypto Engine
No
Sram (kbytes)
1
Eeprom (bytes)
512
Self Program Memory
YES
Dram Memory
No
Nand Interface
No
Picopower
Yes
Temp. Range (deg C)
-40 to 125
I/o Supply Class
2.7 to 5.5
Operating Voltage (vcc)
2.7 to 5.5
Fpu
No
Mpu / Mmu
no / no
Timers
3
Output Compare Channels
6
Input Capture Channels
1
Pwm Channels
6
32khz Rtc
Yes
Calibrated Rc Oscillator
Yes
18.6
18.6.1
18.6.2
7701E–AVR–02/11
Changing Channel or Reference Selection
ADC Input Channels
ADC Voltage Reference
The MUX5:0 and REFS1:0 bits in the ADMUX register are single-buffered through a tempo-
rary register to which the CPU has random access. This ensures that the channel and
reference selection only takes place at a safe point during the conversion. The channel and
reference selection is continuously updated until a conversion is started. Once the conversion
starts, the channel and reference selection is locked to ensure a sufficient sampling time for
the ADC. Continuous updating resumes in the last ADC clock cycle before the conversion
completes (ADIF in ADCSRA is set). Note that the conversion starts on the following rising
ADC clock edge after ADSC is written. The user is thus advised not to write new channel or
reference selection values to ADMUX until one ADC clock cycle after ADSC is written.
If auto triggering is used, the exact time of the triggering event can be indeterministic. Special
care must be taken when updating the ADMUX register in order to control which conversion
will be affected by the new setting.
If both ADATE and ADEN are written to logical one, an interrupt event can occur at any time. If
the ADMUX register is changed in this period, the user cannot tell if the next conversion is
based on the old or the new setting. The ADMUX register can be safely updated in the follow-
ing ways:
When updating the ADMUX register in one of these conditions, the new setting will affect the
next ADC conversion.
When changing channel selections, the user should observe the following guidelines to ensure
that the correct channel is selected:
In single-conversion mode, always select the channel before starting the conversion. The
channel selection may be changed one ADC clock cycle after writing logical one to ADSC.
However, the simplest method is to wait for the conversion to complete before changing the
channel selection.
In free running mode, always select the channel before starting the first conversion. The chan-
nel selection may be changed one ADC clock cycle after writing logical one to ADSC.
However, the simplest method is to wait for the first conversion to complete, and then change
the channel selection. Because the next conversion has already started automatically, the
next result will reflect the previous channel selection. Subsequent conversions will reflect the
new channel selection.
The reference voltage for the ADC (V
gle-ended channels that exceed V
as either V
after switching the reference voltage source may be inaccurate, and the user is advised to dis-
card this result.
a. When ADATE or ADEN is cleared.
b. During conversion, minimum one ADC clock cycle after the trigger event.
c. After a conversion, before the Interrupt Flag used as the trigger source is cleared.
CC
, internal 1.1V reference, or external AREF pin. The first ADC conversion result
Atmel ATtiny24/44/84 [Preliminary]
REF
will result in codes close to 0x3FF. V
REF
) indicates the conversion range for the ADC. Sin-
REF
can be selected
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