•
Unexpected Transmit Frame-Synchronization Pulse
(
15.2.4.7 Interrupts and DMA Events Generated by a McBSP
The McBSP sends notification of important events to the CPU and the DMA controller via the internal signals
shown in
.
Table 15-3. Interrupts and DMA Events Generated by a McBSP
Internal Signal
Description
RINT
Receive interrupt
The McBSP can send a receive interrupt request to CPU based upon a selected condition in the receiver of the
McBSP (a condition selected by the RINTM bits of SPCR1).
XINT
Transmit interrupt
The McBSP can send a transmit interrupt request to CPU based upon a selected condition in the transmitter of the
McBSP (a condition selected by the XINTM bits of SPCR2).
REVT
Receive synchronization event
An REVT signal is sent to the DMA when data has been received in the data receive registers (DRRs).
XEVT
Transmit synchronization event
An XEVT signal is sent to the DMA when the data transmit registers (DXRs) are ready to accept the next serial
word for transmission.
15.3 McBSP Sample Rate Generator
Each McBSP contains a sample rate generator (SRG) that can be programmed to generate an internal data
clock (CLKG) and an internal frame-synchronization signal (FSG). CLKG can be used for bit shifting on the data
receive (DR) pin and/or the data transmit (DX) pin. FSG can be used to initiate frame transfers on DR and/or DX.
is a conceptual block diagram of the sample rate generator.
15.3.1 Block Diagram
FSR
GSYNC
synchronization
and clock
detection
Frame pulse
SRGR1
[CLKGDV]
CLKSRG
0
1
CLKXP
MCLKX pin
CLKRP
MCLKR pin
0
1
LSPCLK
SRGR2 [CLKSM]
0
1
PCR
[SCLKSME]
SRGR1
[FWID]
CLKG
FSG
pulse
Frame
SRGR2
[FPER]
÷
Reserved
/( 1)
Figure 15-17. Conceptual Block Diagram of the Sample Rate Generator
The source clock for the sample rate generator (labeled CLKSRG in the diagram) can be supplied by the
LSPCLK, or by an external pin (MCLKX or MCLKR). The source is selected with the SCLKME bit of PCR and
Multichannel Buffered Serial Port (McBSP)
890
TMS320x2806x Microcontrollers
SPRUH18I – JANUARY 2011 – REVISED JUNE 2022
Copyright © 2022 Texas Instruments Incorporated
Summary of Contents for TMS320 2806 Series
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