13.1.2 SCI Related Collateral
Foundational Materials
•
One Minute RS-485 Introduction
(Video)
•
RS-232, RS-422, RS-485: What Are the Differences?
(Video)
Getting Started Materials
•
[FAQ] My C2000 SCI is not Transmitting and/or Receiving data correctly, how do I fix this?
13.1.3 Block Diagram
shows the SCI module block diagram. The SCI port operation is configured and controlled by the
registers listed in
.
13.2 Architecture
The major elements used in full-duplex operation are shown in
and include:
• A transmitter (TX) and its major registers (upper half of
– SCITXBUF — transmitter data buffer register. Contains data (loaded by the CPU) to be transmitted
– TXSHF register — transmitter shift register. Accepts data from register SCITXBUF and shifts data onto the
SCITXD pin, one bit at a time
• A receiver (RX) and its major registers (lower half of
)
– RXSHF register — receiver shift register. Shifts data in from SCIRXD pin, one bit at a time
– SCIRXBUF — receiver data buffer register. Contains data to be read by the CPU. Data from a remote
processor is loaded into register RXSHF and then into registers SCIRXBUF and SCIRXEMU
• A programmable baud generator
• Control and status registers
The SCI receiver and transmitter can operate either independently or simultaneously.
13.3 SCI Module Signal Summary
A summarized description of each SCI signal name is shown in
Table 13-1. SCI Module Signal Summary
Signal Name
Description
External signals
SCIRXD
SCI Asynchronous Serial Port receive data
SCITXD
SCI Asynchronous Serial Port transmit data
Control
Baud clock
LSPCLK Prescaled clock
Interrupt signals
TXINT
Transmit interrupt
RXINT
Receive Interrupt
Serial Communications Interface (SCI)
SPRUH18I – JANUARY 2011 – REVISED JUNE 2022
TMS320x2806x Microcontrollers
801
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Содержание TMS320 2806 Series
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