EVAL-ADUC836QS AD [Analog Devices], EVAL-ADUC836QS Datasheet - Page 11

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EVAL-ADUC836QS

Manufacturer Part Number
EVAL-ADUC836QS
Description
MicroConverter, Dual 16-Bit ADCs with Embedded 62 kB Flash MCU
Manufacturer
AD [Analog Devices]
Datasheet
Pin No. Pin No.
52-Lead 56-Lead
MQFP
5
6
7
8
13
14
15
16–19,
22–25
20, 34, 48 22, 36, 51, DV
21, 35, 47 23, 37, 38, DGND
26
27
28–31
36–39
32
33
REV. 0
CSP
4, 5
6, 7, 8
9
10
15
16
17
18–21,
24–27
50
30–33
39–42
34
35
Mnemonic
P1.4/AIN1
P1.5/AIN2
P1.6/AIN3
P1.7/AIN4/DAC
AV
AGND
REFIN(–)
REFIN(+)
MISO
RESET
P3.0–P3.7
P3.0/RXD
P3.1/TXD
P3.2/
P3.3/
P3.4/T0/PWMCLK I/O
P3.5/T1
P3.6/
P3.7/
SCLOCK
MOSI/SDATA
P2.0–P2.7
(A8–A15)
(A16–A23)
XTAL1
XTAL2
DD
DD
S
I
I
Type* Description
I
I
I
I/O
S
I
I/O
I
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
S
S
I/O
I/O
I/O
I
O
PIN FUNCTION DESCRIPTIONS (continued)
and middle and high order address bytes during accesses to the 24-bit external data
Primary ADC, Positive Analog Input
Primary ADC, Negative Analog Input
Auxiliary ADC Input or Muxed Primary ADC, Positive Analog Input
Auxiliary ADC Input or Muxed Primary ADC, Neg a tive An a log Input. The volt age
output from the DAC can also be con fi g ured to appear at this pin.
An a log Supply Voltage, 3 V or 5 V
An a log Ground. Ground reference pin for the analog circuitry.
Reference Input, Negative Terminal
Reference Input, Positive Terminal
Slave Select Input for the SPI Interface. A weak pull-up is present on this pin.
Master Input/Slave Output for the SPI Interface. A weak pull-up is present on this input pin.
Reset Input. A high level on this pin for 16 core clock cycles while the oscillator is
running resets the device. There is an internal weak pull-down and a Schmitt trigger
input stage on this pin.
P3.0–P3.7 are bidirectional port pins with internal pull-up resistors. Port 3 pins that
have 1s written to them are pulled high by the internal pull-up resistors, and in that
state can be used as inputs. As inputs, Port 3 pins being pulled externally low will
source cur rent because of the internal pull-up resistors. When driv ing a 0-to-1 output
transition, a strong pull-up is active for two core clock periods of the instruction
cycle. Port 3 pins also have various sec ond ary functions including:
Receiver Data for UART Serial Port
Transmitter Data for UART Serial Port
External Interrupt 0. This pin can also be used as a gate control input to Timer 0.
External Interrupt 1. This pin can also be used as a gate control input to Timer 1.
Timer/Counter 0 External Input. If the PWM is enabled, an external clock may be
input at this pin.
Timer/Counter 1 External Input
External Data Memory Write Strobe. Latches the data byte from Port 0 into an
external data mem o ry.
External Data Memory Read Strobe. Enables the data from an ex ter nal data memory
to Port 0.
Digital Supply, 3 V or 5 V
Digital Ground. Ground reference point for the digital circuitry.
Serial Interface Clock for either the I
Schmitt-triggered input, and a weak in ter nal pull-up is present on this pin unless it is
outputting logic low. This pin can also be directly controlled in software as a digital
output pin.
Serial Data I/O for the I
SPI Interface. A weak internal pull-up is present on this pin unless it is out put ting
logic low. This pin can also be directly controlled in software as a digital out put pin.
Port 2 is a bidirectional port with internal pull-up resistors. Port 2 pins that have 1s
writ ten to them are pulled high by the internal pull-up re sis tors, and in that state can
be used as inputs. As inputs, Port 2 pins being pulled ex ter nal ly low will source current
because of the in ter nal pull-up resistors.
Port 2 emits the high order address bytes during fetch es from external program memory
memory space.
Input to the Crystal Oscillator Inverter
Output from the Crystal Oscillator Inverter. (See the Hardware Design Con siderations
section for description.)
–11–
2
C Interface or Master Output/Slave Input for the
2
C or SPI Interface. As an input, this pin is a
ADuC836

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