Section 16 Serial Communication Interface (SCI, IrDA, and CRC)
Rev. 3.00 Jan 25, 2006 page 387 of 872
REJ09B0286-0300
Section 16 Serial Communication Interface
(SCI, IrDA, and CRC)
This LSI has three independent serial communication interface (SCI) channels. The SCI can
handle both asynchronous and clocked synchronous serial communication. Asynchronous serial
data communication can be carried out with standard asynchronous communication chips such as
a Universal Asynchronous Receiver/Transmitter (UART) or Asynchronous Communication
Interface Adapter (ACIA). A function is also provided for serial communication between
processors (multiprocessor communication function). The SCI also supports the smart card (IC
card) interface based on ISO/IEC 7816-3 (Identification Card) as an enhanced asynchronous
communication function.
SCI_1 can handle communication using the waveform based on the Infrared Data Association
(IrDA) standard version 1.0. SCI_0 and SCI_2 provide high-speed communication at an average
transfer rate of a specific system clock frequency. Reliable fast data transfers are secured using the
internal cyclic redundancy check (CRC) operation circuit. Since the CRC operation circuit is not
connected to the SCI, data is transferred to the circuit using the MOV instruction to be operated
there.
16.1
Features
•
Choice of asynchronous or clocked synchronous serial communication mode
•
Full-duplex communication capability
The transmitter and receiver are mutually independent, enabling transmission and reception to
be executed simultaneously. Double-buffering is used in both the transmitter and the receiver,
enabling continuous transmission and continuous reception of serial data.
•
On-chip baud rate generator allows any bit rate to be selected
The External clock can be selected as a transfer clock source (except for the smart card
interface).
•
Choice of LSB-first or MSB-first transfer (except in the case of asynchronous mode 7-bit data)
•
Four interrupt sources
Four interrupt sources — transmit-end, transmit-data-empty, receive-data-full, and receive
error — that can issue requests.
The transmit-data-empty and receive-data-full interrupt sources can activate DTC. SCI_0 and
SCI_2 can activate the RFU using the transmit-data-empty and receive-data-full interrupt
sources.
•
Module stop mode availability
SCI0022A_000020020300
Содержание H8S/2158
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Страница 440: ...Section 15 Watchdog Timer WDT Rev 3 00 Jan 25 2006 page 386 of 872 REJ09B0286 0300...
Страница 606: ...Section 17 I 2 C Bus Interface IIC Rev 3 00 Jan 25 2006 page 552 of 872 REJ09B0286 0300...
Страница 742: ...Section 19 Multimedia Card Interface MCIF Rev 3 00 Jan 25 2006 page 688 of 872 REJ09B0286 0300...
Страница 744: ...Section 20 Encryption Operation Circuit DES and GF Rev 3 00 Jan 25 2006 page 690 of 872 REJ09B0286 0300...
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Страница 768: ...Section 22 A D Converter Rev 3 00 Jan 25 2006 page 714 of 872 REJ09B0286 0300...
Страница 770: ...Section 23 RAM Rev 3 00 Jan 25 2006 page 716 of 872 REJ09B0286 0300...
Страница 824: ...Section 26 Clock Pulse Generator Rev 3 00 Jan 25 2006 page 770 of 872 REJ09B0286 0300...
Страница 844: ...Section 27 Power Down Modes Rev 3 00 Jan 25 2006 page 790 of 872 REJ09B0286 0300...
Страница 878: ...Section 28 List of Registers Rev 3 00 Jan 25 2006 page 824 of 872 REJ09B0286 0300...
Страница 926: ...Index Rev 3 00 Jan 25 2006 page 872 of 872 REJ09B0286 0300...