ATmega324PA Atmel Corporation, ATmega324PA Datasheet - Page 34

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ATmega324PA

Manufacturer Part Number
ATmega324PA
Description
Manufacturer
Atmel Corporation
Datasheets

Specifications of ATmega324PA

Flash (kbytes)
32 Kbytes
Pin Count
44
Max. Operating Frequency
20 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)
2
Eeprom (bytes)
1024
Self Program Memory
YES
Dram Memory
No
Nand Interface
No
Picopower
Yes
Temp. Range (deg C)
-40 to 85
I/o Supply Class
1.8 to 5.5
Operating Voltage (vcc)
1.8 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

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9.4
8272C–AVR–06/11
Full Swing Crystal Oscillator
Notes:
This Crystal Oscillator is a full swing oscillator, with rail-to-rail swing on the XTAL2 output. This is
useful for driving other clock inputs and in noisy environments. The current consumption is
higher than the
Oscillator will only operate for Vcc = 2.7 - 5.5 volts.
Some initial guidelines for choosing capacitors for use with crystals are given in
crystal should be connected as described in
The operating mode is selected by the fuses CKSEL3..1 as shown in
Table 9-5.
Notes:
Table 9-6.
Notes:
Frequency Range
Oscillator Source /
Power Conditions
Ceramic resonator, fast
rising power
Ceramic resonator, slowly
rising power
Ceramic resonator, BOD
enabled
Ceramic resonator, fast
rising power
Ceramic resonator, slowly
rising power
Crystal Oscillator, BOD
enabled
Crystal Oscillator, fast
rising power
Crystal Oscillator, slowly
rising power
1. These options should only be used when not operating close to the maximum frequency of the
2. These options are intended for use with ceramic resonators and will ensure frequency stability
1. If the crystal frequency exceeds the specification of the device (depends on V
1. These options should only be used when not operating close to the maximum frequency of the
device, and only if frequency stability at start-up is not important for the application. These
options are not suitable for crystals.
at start-up. They can also be used with crystals when not operating close to the maximum fre-
quency of the device, and if frequency stability at start-up is not important for the application.
Fuse can be programmed in order to divide the internal frequency by 8. It must be ensured
that the resulting divided clock meets the frequency specification of the device.
device, and only if frequency stability at start-up is not important for the application. These
options are not suitable for crystals.
ATmega164A/PA/324A/PA/644A/PA/1284/P
0.4 - 20
Full Swing Crystal Oscillator Operating Modes
Start-up Times for the Full Swing Crystal Oscillator Clock Selection
”Low Power Crystal Oscillator” on page
(1)
(MHz)
Start-up Time from
Power-down and
Power-save
16K CK
16K CK
16K CK
258 CK
258 CK
1K CK
1K CK
1K CK
CKSEL3..1
011
”Clock Source Connections” on page
Additional Delay
14CK + 4.1ms
14CK + 4.1ms
Recommended Range for Capacitors C1
14CK + 65ms
14CK + 65ms
14CK + 4.1ms
14CK + 65ms
(V
from Reset
CC
14CK
33. Note that the Full Swing Crystal
14CK
= 5.0V)
(2)
(1)
(2)
(1)
(2)
and C2 (pF)
Table
12 - 22
CKSEL0
9-5.
0
0
0
0
1
1
1
1
CC
Table
32.
), the CKDIV8
SUT1..0
9-6. The
00
01
10
11
00
01
10
11
34

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