AT89C51CC03U-S3SIM ATMEL [ATMEL Corporation], AT89C51CC03U-S3SIM Datasheet - Page 134
AT89C51CC03U-S3SIM
Manufacturer Part Number
AT89C51CC03U-S3SIM
Description
Enhanced 8-bit MCU with CAN Controller and Flash Memory
Manufacturer
ATMEL [ATMEL Corporation]
Datasheet
1.AT89C51CC03U-S3SIM.pdf
(195 pages)
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Figure 60. Data Transmission Format (CPHA = 0)
Figure 61. Data Transmission Format (CPHA = 1)
Figure 62. CPHA/SS Timing
Queuing transmission
134
AT89C51CC03
MOSI (from Master)
SCK Cycle Number
MISO (from Slave)
MOSI (from Master)
SCK (CPOL = 0)
SCK (CPOL = 1)
MISO (from Slave)
SCK Cycle Number
SPEN (Internal)
SCK (CPOL = 0)
SCK (CPOL = 1)
Capture Point
SPEN (Internal)
SS (to Slave)
Capture Point
SS (to Slave)
MISO/MOSI
(CPHA = 0)
(CPHA = 1)
Master SS
Slave SS
Slave SS
As shown in Figure 60, the first SCK edge is the MSB capture strobe. Therefore, the
Slave must begin driving its data before the first SCK edge, and a falling edge on the SS
pin is used to start the transmission. The SS pin must be toggled high and then low
between each Byte transmitted (Figure 62).
Figure 61 shows an SPI transmission in which CPHA is ’1’. In this case, the Master
begins driving its MOSI pin on the first SCK edge. Therefore, the Slave uses the first
SCK edge as a start transmission signal. The SS pin can remain low between transmis-
sions (Figure 62). This format may be preferred in systems having only one Master and
only one Slave driving the MISO data line.
For an SPI configured in master or slave mode, a queued data byte must be transmit-
ted/received immediately after the previous transmission has completed.
MSB
MSB
MSB
1
MSB
1
2
bit6
bit6
2
bit6
bit6
Byte 1
3
bit5
bit5
3
bit5
bit5
bit4
bit4
4
bit4
bit4
4
Byte 2
bit3
bit3
5
bit3
bit3
5
6
bit2
bit2
6
bit2
bit2
Byte 3
7
bit1
bit1
7
bit1
bit1
LSB
8
8
LSB
LSB
LSB
4182I–CAN–06/05
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