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SH7032 Datasheet, PDF (388/687 Pages) Renesas Technology Corp – 32-Bit RISC Microcomputer
Section 13 Serial Communication Interface (SCI)
Bit 3—Multiprocessor Interrupt Enable (MPIE): MPIE enables or disables multiprocessor
interrupts. The MPIE setting is used only in asynchronous mode, and only if the multiprocessor
mode bit (MP) in the serial mode register (SMR) is set to 1 during reception. The MPIE setting is
ignored in synchronous mode or when the MP bit is cleared to 0.
Bit 3: MPIE
0
1
Description
Multiprocessor interrupts are disabled (normal receive operation) (Initial value)
MPE is cleared to 0 when:
1. MPIE is cleared to 0, or
2. Multiprocessor bit (MPB) is set to 1 in receive data.
Multiprocessor interrupts are enabled: Receive-data-full interrupt requests
(RXI), receive-error interrupt requests (ERI), and setting of the RDRF, FER,
and ORER status flags in the serial status register (SSR) are disabled until the
multiprocessor bit is set to 1.
The SCI does not transfer receive data from RSR to RDR, does not detect
receive errors, and does not set the RDRF, FER, and ORER flags in the serial
status register (SSR). When it receives data that includes MPB = 1, MPB is set
to 1, and the SCI automatically clears MPIE to 0, generates RXI and ERI
interrupts (if the TIE and RIE bits in SCR are set to 1), and allows FER and
ORER to be set.
Bit 2—Transmit-End Interrupt Enable (TEIE): TEIE enables or disables the transmit-end
interrupt (TEI) requested if TDR does not contain new transmit data when the MSB is transmitted.
Bit 2: TEIE
0
1
Description
Transmit-end interrupt (TEI) requests are disabled
(Initial value)
The TEI request can be cleared by reading the TDRE bit in the serial status
register (SSR) after it has been set to 1, then clearing TDRE to 0; by clearing
the transmit end (TEND) bit to 0; or by clearing the TEIE bit to 0.
Transmit-end interrupt (TEI) requests are enabled.
Bits 1 and 0—Clock Enable 1 and 0 (CKE1 and CKE0): CKE1 and CKE0 select the SCI clock
source and enable or disable clock output from the SCK pin. Depending on the combination of
CKE1 and CKE0, the SCK pin can be used for general-purpose input/output, serial clock output,
or serial clock input. The SCK pin function should be selected in advance with the pin function
controller (PFC).
The CKE0 setting is valid only in asynchronous mode, and only when the SCI is internally
clocked (CKE1 = 0). The CKE0 setting is ignored in synchronous mode, or when an external
clock source is selected (CKE1 = 1). Select the SCI operating mode in the serial mode register
Rev. 7.00 Jan 31, 2006 page 362 of 658
REJ09B0272-0700