C8051T322-GQR Silicon Labs, C8051T322-GQR Datasheet - Page 135

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C8051T322-GQR

Manufacturer Part Number
C8051T322-GQR
Description
8-bit Microcontrollers - MCU USB-OTP-16K-LQFP32
Manufacturer
Silicon Labs
Datasheet

Specifications of C8051T322-GQR

Rohs
yes
Core
8051
Processor Series
C8051
Data Bus Width
8 bit

Available stocks

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Part Number
Manufacturer
Quantity
Price
Part Number:
C8051T322-GQR
Manufacturer:
Silicon Laboratories Inc
Quantity:
10 000
22.1.3. Interfacing Port I/O to 5V Logic
All Port I/O configured for digital, open-drain operation are capable of interfacing to digital logic operating at
a supply voltage higher than V
age is typically required for most systems.
Important Note: In a multi-voltage interface, the external pull-up resistor should be sized to allow a current
of at least 150uA to flow into the Port pin when the supply voltage is between (V
1.0V). Once the Port pin voltage increases beyond this range, the current flowing into the Port pin is mini-
mal.
22.2. Assigning Port I/O Pins to Analog and Digital Functions
Port I/O pins can be assigned to various analog, digital, and external interrupt functions. The Port pins
assigned to analog functions should be configured for analog I/O, and Port pins assigned to digital or exter-
nal interrupt functions should be configured for digital I/O.
22.2.1. Assigning Port I/O Pins to Analog Functions
Table 22.1 shows all available analog functions that require Port I/O assignments. Port pins selected for
these analog functions should have their corresponding bit in PnSKIP set to 1. This reserves the pin
for use by the analog function and does not allow it to be claimed by the Crossbar. Table 22.1 shows the
potential mapping of Port I/O to each analog function.
22.2.2. Assigning Port I/O Pins to Digital Functions
Any Port pins not assigned to analog functions may be assigned to digital functions or used as GPIO. Most
digital functions rely on the Crossbar for pin assignment; however, some digital functions bypass the
Crossbar in a manner similar to the analog functions listed above. Port pins used by these digital func-
tions and any Port pins selected for use as GPIO should have their corresponding bit in PnSKIP set
to 1. Table 22.2 shows all available digital functions and the potential mapping of Port I/O to each digital
function.
Analog Function
ADC Input
Comparator Input
Voltage Reference (VREF0)
External Oscillator in Crystal Mode (XTAL1, XTAL2)
External Oscillator in RC or C Mode (XTAL2)
Table 22.1. Port I/O Assignment for Analog Functions
IO
and less than 5.25V. An external pull-up resistor to the higher supply volt-
C8051T620/621/320/321/322/323
Rev. 1.1
Potentially Assignable
P0.0, P0.1, P0.4, P0.5,
P0.0, P0.1, P0.4, P0.5,
P1.0-P1.7, P2.0-P2.5
P1.0- P3.0
P0.2, P0.3
Port Pins
P0.7
P0.3
CPT0MX, CPT1MX,
IO
OSCXCN, PnSKIP
OSCXCN, PnSKIP
REF0CN, PnSKIP
Suffers) used for
AMX0P, PnSKIP
+ 0.6V) and (V
Assignment
PnSKIP
IO
135
+

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