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PIC16F720-E/ML Fiches technique(PDF) 122 Page - Microchip Technology

No de pièce PIC16F720-E/ML
Description  20-Pin Flash Microcontrollers with nanoWatt XLP Technology
PDF  244 Pages
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Fabricant  MICROCHIP [Microchip Technology]
Site Internet  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

PIC16F720-E/ML Fiches technique(HTML) 122 Page - Microchip Technology

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PIC16F/LF720/721
DS41430A-page 122
 2010 Microchip Technology Inc.
16.1.1.4
TSR Status
The TRMT bit of the TXSTA register indicates the
status of the TSR register. This is a read-only bit. The
TRMT bit is set when the TSR register is empty and is
cleared when a character is transferred to the TSR
register from the TXREG. The TRMT bit remains clear
until all bits have been shifted out of the TSR register.
No interrupt logic is tied to this bit, so the user has to
poll this bit to determine the TSR status.
16.1.1.5
Transmitting 9-Bit Characters
The AUSART supports 9-bit character transmissions.
When the TX9 bit of the TXSTA register is set, the
AUSART will shift 9 bits out for each character transmit-
ted. The TX9D bit of the TXSTA register is the ninth,
and Most Significant, data bit. When transmitting 9-bit
data, the TX9D data bit must be written before writing
the 8 Least Significant bits into the TXREG. All nine bits
of data will be transferred to the TSR shift register
immediately after the TXREG is written.
A special 9-bit Address mode is available for use with
multiple receivers. Refer to Section 16.1.2.7 “Address
Detection” for more information on the Address mode.
16.1.1.6
Asynchronous Transmission Setup:
1.
Initialize the SPBRG register and the BRGH bit to
achieve
the
desired
baud rate (Refer
to
Section 16.2 “AUSART Baud Rate Generator
(BRG)”).
2.
Enable the asynchronous serial port by clearing
the SYNC bit and setting the SPEN bit.
3.
If 9-bit transmission is desired, set the TX9 con-
trol bit. A set ninth data bit will indicate that the 8
Least Significant data bits are an address when
the receiver is set for address detection.
4.
Enable the transmission by setting the TXEN
control bit. This will cause the TXIF interrupt bit
to be set.
5.
If interrupts are desired, set the TXIE interrupt
enable bit of the PIE1 register. An interrupt will
occur immediately provided that the GIE and
PEIE bits of the INTCON register are also set.
6.
If 9-bit transmission is selected, the ninth bit
should be loaded into the TX9D data bit.
7.
Load 8-bit data into the TXREG register. This
will start the transmission.
FIGURE 16-3:
ASYNCHRONOUS TRANSMISSION
FIGURE 16-4:
ASYNCHRONOUS TRANSMISSION (BACK-TO-BACK)
Note:
The TSR register is not mapped in data
memory, so it is not available to the user.
Word 1
Stop bit
Word 1
Transmit Shift Reg
Start bit
bit 0
bit 1
bit 7/8
Write to TXREG
Word 1
BRG Output
(Shift Clock)
TX/CK pin
TXIF bit
(Transmit Buffer
Empty Flag)
TRMT bit
(Transmit Shift
Reg. Empty Flag)
1 TCY
Transmit Shift Reg.
Write to TXREG
BRG Output
(Shift Clock)
TX/CK pin
TRMT bit
(Transmit Shift
Reg. Empty Flag)
Word 1
Word 2
Word 1
Word 2
Start bit
Stop bit
Start bit
Transmit Shift Reg.
Word 1
Word 2
bit 0
bit 1
bit 7/8
bit 0
Note:
This timing diagram shows two consecutive transmissions.
1 TCY
1 TCY
TXIF bit
(Transmit Buffer
Empty Flag)



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