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MPC563XM Reference Manual, Rev. 1
Freescale Semiconductor
1149
Preliminary—Subject to Change Without Notice
transmitted and data received reside in separate FIFOs. The FIFOs can be popped and pushed by host
software or by a DMA controller.
26.2.3.2
DSI Configuration
In the DSI Configuration the DSPI serializes up to 16 Parallel Input signals or register bits. The DSPI also
deserializes the received data to Parallel Output signals or to a memory-mapped register. The data is
transferred using a SPI-like protocol.
Specifically in the TSB configuration, detailed on
Section 26.5.9, “Timed Serial Bus (TSB)
serializes from 4 to 32 Parallel Input signals or register bits. The TSB downstream frame used to
communicate with a single slave is shown in
.
26.2.3.3
CSI Configuration
The CSI configuration is a combination of the SPI and DSI configuration. In this configuration the DSPI
interleaves DSI data with SPI data. Interleaving is done on the frame boundaries. In this configuration
transmission of SPI data has higher priority than DSI data.
26.2.4
Modes of Operation
The DSPI has six modes of operation that can be divided into two categories; block-specific modes such
as Master, Slave, and Module Disable Modes, and MCU-specific modes like External Stop, Factory Test
and Debug Modes.
The block-specific modes are entered by host software writing to a register. The MCU-specific modes are
controlled by signals external to the DSPI. The MCU-specific modes are modes that the entire MCU may
enter, in parallel to the DSPI being in one of its block-specific modes.
26.2.4.1
Master Mode
Master Mode allows the DSPI to initiate and control serial communication. In this mode, the SCK signal
and the PCS[
x
] signals are controlled by the DSPI and configured as outputs.
26.2.4.2
Slave Mode
The Slave Mode allows the DSPI to communicate with SPI/DSI bus masters. In this mode the DSPI
responds to externally controlled serial transfers. The DSPI cannot control serial transfers in Slave Mode.
In this mode, the SCK signal and the PCS[0]/SS signal are configured as inputs and provided by a bus
master.
26.2.4.3
Module Disable Mode
The Module Disable Mode is used for MCU power management. The clock to the non-memory mapped
logic in the DSPI can be stopped while in the Module Disable Mode. Logic external to the DSPI is needed
to fully implement the Module Disable Mode.
Содержание MPC5632M
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