ST72C334N2B6 STMicroelectronics, ST72C334N2B6 Datasheet - Page 72

Microcontrollers (MCU) Flash 8K SPI/SCI

ST72C334N2B6

Manufacturer Part Number
ST72C334N2B6
Description
Microcontrollers (MCU) Flash 8K SPI/SCI
Manufacturer
STMicroelectronics
Datasheet

Specifications of ST72C334N2B6

Data Bus Width
8 bit
Program Memory Type
Flash
Program Memory Size
8 KB
Data Ram Size
384 B
Interface Type
SCI, SPI
Maximum Clock Frequency
8 MHz
Number Of Programmable I/os
44
Number Of Timers
16 bit
Operating Supply Voltage
3.2 V to 5.5 V
Maximum Operating Temperature
+ 85 C
Mounting Style
Through Hole
Package / Case
SDIP-56
Minimum Operating Temperature
- 40 C
On-chip Adc
8 bit
Lead Free Status / Rohs Status
No

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ST72334J/N, ST72314J/N, ST72124J
SERIAL PERIPHERAL INTERFACE (Cont’d)
6.5.4 Functional Description
Figure 46 shows the serial peripheral interface
(SPI) block diagram.
This interface contains 3 dedicated registers:
Refer to the CR, SR and DR registers in Section
6.5.7for the bit definitions.
6.5.4.1 Master Configuration
In a master configuration, the serial clock is gener-
ated on the SCK pin.
Procedure
72/125
– A Control Register (CR)
– A Status Register (SR)
– A Data Register (DR)
– Select the SPR0 & SPR1 bits to define the se-
– Select the CPOL and CPHA bits to define one
– The SS pin must be connected to a high level
– The MSTR and SPE bits must be set (they re-
rial clock baud rate (see CR register).
of the four relationships between the data
transfer and the serial clock (see Figure 49).
signal during the complete byte transmit se-
quence.
main set only if the SS pin is connected to a
high level signal).
In this configuration the MOSI pin is a data output
and to the MISO pin is a data input.
Transmit sequence
The transmit sequence begins when a byte is writ-
ten the DR register.
The data byte is parallel loaded into the 8-bit shift
register (from the internal bus) during a write cycle
and then shifted out serially to the MOSI pin most
significant bit first.
When data transfer is complete:
During the last clock cycle the SPIF bit is set, a
copy of the data byte received in the shift register
is moved to a buffer. When the DR register is read,
the SPI peripheral returns this buffered value.
Clearing the SPIF bit is performed by the following
software sequence:
1. An access to the SR register while the SPIF bit
2. A write or a read of the DR register.
Note: While the SPIF bit is set, all writes to the DR
register are inhibited until the SR register is read.
– The SPIF bit is set by hardware
– An interrupt is generated if the SPIE bit is set
is set
and the I bit in the CCR register is cleared.

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