ADUC816 Analog Devices, ADUC816 Datasheet - Page 28

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ADUC816

Manufacturer Part Number
ADUC816
Description
Precision Analog Microcontroller: 1MIPS 8052 MCU + 8kB Flash + Dual 16-Bit ADC + 12-Bit DAC
Manufacturer
Analog Devices
Datasheet

Specifications of ADUC816

Mcu Core
8052
Mcu Speed (mips)
1.3
Sram (bytes)
256Bytes
Gpio Pins
34
Adc # Channels
4

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ADC1CON (Auxiliary ADC Control Register)
Used to configure the Auxiliary ADC for channel selection, external Ref enable and unipolar or bipolar coding. It should be noted that the
Auxiliary ADC only operates on a fixed input range of ± V
SFR Address
Power-On Default Value
Bit Addressable
Bit
7
6
5
4
3
2
1
0
1. When the temperature sensor is selected, user code must select internal reference via XREF1 bit above and clear the UNI1 bit (ADC1CON.3) to select bipolar coding.
2. The temperature sensor is factory calibrated to yield conversion results 8000H at 0 °C.
3. A +1°C change in temperature will result in a +1 LSB change in the ADC1H register ADC conversion result.
SF (Sinc Filter Register)
The number in this register sets the decimation factor and thus
the output update rate for the Primary and Auxiliary ADCs.
This SFR cannot be written by user software while either ADC is
active. The update rate applies to both Primary and Auxiliary
ADCs and is calculated as follows:
Where:
The allowable range for SF is 0Dhex to FFhex. Examples of SF
values and corresponding conversion update rate (f
version time (t
NOTES
-
- -
ADC
Name
---
XREF1
ACH1
ACH0
UNI1
---
---
---
=
=
= Modulator Clock Frequency = 32.768 kHz
) are shown in Table VII, the power-on default
X
ADC Output Update Rate
Decimal Value of SF Register
R
E
F
1
1
3
8.
1
Auxiliary ADC External Reference Bit.
Auxiliary ADC Channel Selection Bits.
D3H
00H
No
Description
Reserved for Future Use.
Written by the user to select the single-ended input pins used to drive the Auxiliary ADC as follows:
ACH1
0
0
1
1
Auxiliary ADC Unipolar Bit.
Reserved for Future Use.
Reserved for Future Use.
Reserved for Future Use.
A
C
by user to enable the Auxiliary ADC to use the external reference via REFIN(+)/REFIN(–).
by user to enable unipolar coding, i.e., zero input will result in 0000 hex output.
H
1
Table VI. ADC1CON SFR Bit Designations
by user to enable the Auxiliary ADC to use the internal bandgap reference.
by user to enable bipolar coding, zero input will result in 8000 hex output.
ACH0
0
1
0
1
ADC
) and con-
A
C
REF
H
0
.
Positive Input
AIN3
AIN4
Temp Sensor
AIN5
value for the SF register is 45 hex, resulting in a default ADC
update rate of just under 20 Hz. Both ADC inputs are chopped
to minimize offset errors, which means that the settling time for
a single conversion or the time to a first conversion result in
continuous conversion mode is 2 × t
all calibration cycles will be carried out automatically with a
maximum, i.e., FFhex, SF value to ensure optimum calibra-
tion performance. Once a calibration cycle has completed, the
value in the SF register will be that programmed by user software.
SF(dec)
13
69
255
U
N
1 I
Negative Input
AGND
AGND
AGND (Temp. Sensor routed to the ADC input)
AGND
Table VII. SF SFR Bit Designations
SF(hex)
45
FF
0D
-
- -
f
105.3
19.79
5.35
ADC
ADC
-
- -
. As mentioned earlier,
(Hz)
t
9.52
50.34
186.77
ADC
-
- -
REV. A
(ms)

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