ATA6617-P3QW Atmel, ATA6617-P3QW Datasheet - Page 226

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ATA6617-P3QW

Manufacturer Part Number
ATA6617-P3QW
Description
MCU W/LIN TX/5V REG/WTCDG 38VQFN
Manufacturer
Atmel
Series
AVR® ATA66 LIN-SBCr
Datasheet

Specifications of ATA6617-P3QW

Core Processor
AVR
Core Size
8-Bit
Speed
16MHz
Connectivity
I²C, LIN, SPI, UART/USART, USI
Peripherals
Brown-out Detect/Reset, POR, PWM, Temp Sensor, WDT
Number Of I /o
16
Program Memory Size
16KB (16K x 8)
Program Memory Type
FLASH
Eeprom Size
512 x 8
Ram Size
512 x 8
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Data Converters
A/D 11x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 125°C
Package / Case
38-VQFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Manufacturer
Quantity
Price
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ATA6617-P3QW
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ATMEL
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4.18.8
4.18.8.1
4.18.8.2
4.18.8.3
226
Atmel ATA6616/ATA6617
ADC Conversion Result
Single Ended Conversion
Unipolar Differential Conversion
Bipolar Differential Conversion
After the conversion is complete (ADIF is high), the conversion result can be found in the ADC
Result Registers (ADCL, ADCH). The form of the conversion result depends on the type of the
conversion as there are three types of conversions: single ended conversion, unipolar differ-
ential conversion and bipolar differential conversion.
For single ended conversion, the result is:
where V
Table 4-58 on page 229
0x3FF represents the selected voltage reference minus one LSB. The result is presented in
one-sided form, from 0x3FF to 0x000.
If differential channels and an unipolar input mode are used, the result is:
where V
and V
230). The voltage on the positive pin must always be larger than the voltage on the negative
pin or otherwise the voltage difference is saturated to zero. The result is presented in
one-sided form, from 0x000 (0
As default the ADC converter operates in the unipolar input mode, but the bipolar input mode
can be selected by writing the BIN bit in the ADCSRB register to one. In the bipolar input mode
two-sided voltage differences are allowed and thus the voltage on the negative input pin can
also be larger than the voltage on the positive input pin. If differential channels and a bipolar
input mode are used, the result is:
where V
and V
from 0x200 (-512
However, if the signal is not bipolar by nature (9 bits + sign as the 10th bit), this scheme loses
one bit of the converter dynamic range. Then, if the user wants to perform the conversion with
the maximum dynamic range, the user can perform a quick polarity check of the result and use
the unipolar differential conversion with selectable differential input pair. When the polarity
check is performed, it is sufficient to read the MSB of the result (ADC9 in ADCH register). If the
bit is one, the result is negative, and if this bit is zero, the result is positive.
ADC
ADC
ADC
=
=
=
REF
REF
V
---------------------------- -
-----------------------------------------------------------
------------------------------------------------------- -
IN
POS
POS
V
V
IN
the selected voltage reference (see
the selected voltage reference. The result is presented in two’s complement form,
POS
POS
is the voltage on the selected input pin and V
V
REF
is the voltage on the positive input pin, V
is the voltage on the positive input pin, V
1024
V
V
V
V
REF
NEG
NEG
REF
d
) through 0x000 (+0
1024
512
and
Table 4-59 on page
GAIN
d
GAIN
) to 0x3FF (+1023
d
) to 0x1FF (+511
Table 4-58 on page 229
d
230). 0x000 represents analog ground, and
). The GAIN is either 8x or 20x.
NEG
NEG
REF
d
). The GAIN is either 8x or 20x.
the voltage on the negative input pin,
the voltage on the negative input pin,
the selected voltage reference (see
and
Table 4-59 on page
9132D–AUTO–12/10

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