PIC24FJ16MC102-I/SP Microchip Technology, PIC24FJ16MC102-I/SP Datasheet - Page 108

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PIC24FJ16MC102-I/SP

Manufacturer Part Number
PIC24FJ16MC102-I/SP
Description
16-bit Motor Control Family, 16 MIPS, 16KB Flash, 1KB RAM 28 SPDIP .300in TUBE
Manufacturer
Microchip Technology
Series
PIC® 24Fr
Datasheet

Specifications of PIC24FJ16MC102-I/SP

Featured Product
PIC24FJ/33FJ MCUs & dsPIC® DSCs
Core Processor
PIC
Core Size
16-Bit
Speed
16 MIPs
Connectivity
I²C, IrDA, LIN, SPI, UART/USART
Peripherals
Brown-out Detect/Reset, Motor Control PWM, POR, PWM, WDT
Number Of I /o
21
Program Memory Size
16KB (5.5K x 24)
Program Memory Type
FLASH
Eeprom Size
-
Ram Size
1K x 8
Voltage - Supply (vcc/vdd)
3 V ~ 3.6 V
Data Converters
A/D 6x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
28-DIP (0.300", 7.62mm)
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
PIC24FJ16MC101/102
10.1.1
In addition to the PORT, LAT, and TRIS registers for
data control, some port pins can also be individually
configured for either digital or open-drain output. This
is controlled by the Open-Drain Control register,
ODCx, associated with each port. Setting any of the
bits configures the corresponding pin to act as an
open-drain output.
The open-drain feature allows the generation of
outputs higher than V
tolerant pins by using external pull-up resistors. The
maximum open-drain voltage allowed is the same as
the maximum V
See
functionality.
10.2
The AD1PCFG and TRIS registers control the opera-
tion of the analog-to-digital port pins. The port pins that
are to function as analog inputs must have their corre-
sponding TRIS bit set (input). If the TRIS bit is cleared
(output), the digital output level (V
converted.
The AD1PCFGL register has a default value of 0x0000;
therefore, all pins that share ANx functions are analog
(not digital) by default.
When the PORT register is read, all pins configured as
analog input channels will read as cleared (a low level).
Pins configured as digital inputs will not convert an
analog input. Analog levels on any pin defined as a
digital input (including the ANx pins) can cause the
input buffer to consume current that exceeds the
device specifications.
10.2.1
One instruction cycle is required between a port
direction change or port write operation and a read
operation of the same port. Typically this instruction
would be an NOP. An demonstration is shown in
Example
EXAMPLE 10-1:
DS39997B-page 108
MOV
MOV
NOP
btss
“Pin
0xFF00, W0
W0, TRISBB
PORTB, #13
Configuring Analog Port Pins
10-1.
Diagrams” for the available pins and their
OPEN-DRAIN CONFIGURATION
I/O PORT WRITE/READ TIMING
IH
specification.
DD
PORT WRITE/READ EXAMPLE
(e.g., 5V) on any desired 5V
; Configure PORTB<15:8> as inputs
; and PORTB<7:0> as outputs
; Delay 1 cycle
; Next Instruction
OH
or V
OL
) will be
Preliminary
10.3
The input change notification function of the I/O ports
allows the PIC24FJ16MC101/102 devices to generate
interrupt requests to the processor in response to a
change-of-state on selected input pins. This feature
can detect input change-of-states even in Sleep mode,
when the clocks are disabled. Depending on the device
pin count, up to 21 external signals (CNx pin) can be
selected (enabled) for generating an interrupt request
on a change-of-state.
Four control registers are associated with the CN mod-
ule. The CNEN1 and CNEN2 registers contain the
interrupt enable control bits for each of the CN input
pins. Setting any of these bits enables a CN interrupt
for the corresponding pins.
Each CN pin also has a weak pull-up connected to it.
The pull-ups act as a current source connected to the
pin, and eliminate the need for external resistors when
push-button or keypad devices are connected. The
pull-ups are enabled separately using the CNPU1 and
CNPU2 registers, which contain the control bits for
each of the CN pins. Setting any of the control bits
enables the weak pull-ups for the corresponding pins.
Note:
Input Change Notification
Pull-ups on change notification pins
should always be disabled when the port
pin is configured as a digital output.
© 2011 Microchip Technology Inc.

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