ST10F276-4T3 STMicroelectronics, ST10F276-4T3 Datasheet - Page 96

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ST10F276-4T3

Manufacturer Part Number
ST10F276-4T3
Description
MCU 16BIT 832K FLASH 144-LQFP
Manufacturer
STMicroelectronics
Series
ST10r
Datasheet

Specifications of ST10F276-4T3

Core Processor
ST10
Core Size
16-Bit
Speed
40MHz
Connectivity
ASC, CAN, EBI/EMI, I²C, SSC, UART/USART
Peripherals
POR, PWM, WDT
Number Of I /o
111
Program Memory Size
832KB (832K x 8)
Program Memory Type
FLASH
Ram Size
68K x 8
Voltage - Supply (vcc/vdd)
4.5 V ~ 5.5 V
Data Converters
A/D 24x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 125°C
Package / Case
144-LQFP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

Available stocks

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Part Number
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Quantity
Price
Part Number:
ST10F276-4T3
Manufacturer:
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Quantity:
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Part Number:
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0
Serial channels
Table 54.
Table 55.
Note:
14.4
96/231
Baud rate
Baud rate
8 000 000
112 000
(baud)
(baud)
56 000
38 400
19 200
9 600
4 800
2 400
1 200
900
612
977
ASC synchronous baud rates by reload value and deviation errors (f
ASC synchronous baud rates by reload value and deviation errors (f
The deviation errors given in the
errors use a Baud rate crystal (providing a multiple of the ASC0 sampling frequency)
High speed synchronous serial interfaces
The High-Speed Synchronous Serial Interfaces (SSC0 and SSC1) provides flexible high-
speed serial communication between the ST10F276E and other microcontrollers,
microprocessors or external peripherals.
The SSCx supports full-duplex and half-duplex synchronous communication. The serial
clock signal can be generated by the SSCx itself (master mode) or be received from an
external master (slave mode). Data width, shift direction, clock polarity and phase are
programmable.
This allows communication with SPI-compatible devices. Transmission and reception of data
is double-buffered. A 16-bit Baud rate generator provides the SSCx with a separate serial
clock signal. The serial channel SSCx has its own dedicated 16-bit Baud rate generator with
16-bit reload capability, allowing Baud rate generation independent from the timers.
Table 56
the resulting bit times for 40 MHz and 64 MHz CPU clock respectively. The maximum is
anyway limited to 8 Mbaud.
S0BRS = ‘0’, f
S0BRS = ‘0’, f
Deviation error
Deviation error
+0.6% / -0.8%
+0.6% / -0.1%
+0.2% / -0.3%
+0.2% / -0.1%
+0.0% / -0.1%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
and
0.0% / 0.0%
0.0% / 0.0%
CPU
CPU
Table 57
= 40 MHz
= 64 MHz
list some possible Baud rates against the required reload values and
Reload value
Reload value
1FFB / 1FFC
1FE8 / 1FE9
00CF / 00D0
0D04 / 0D05
1A09 / 1A0A
15B2 / 15B3
008D / 008E
019F / 01A0
0000 / 0000
0046 / 0047
0340 / 0341
0681 / 0682
(hex)
(hex)
Table 54
and
Baud rate
Baud rate
5 333 333
112 000
(baud)
(baud)
56 000
38 400
19 200
9 600
4 800
2 400
1 200
Table 55
600
407
900
652
S0BRS = ‘1’, f
S0BRS = ‘1’, f
are rounded. To avoid deviation
Deviation error
Deviation error
+1.3% / -0.8%
+0.3% / -0.8%
+0.6% / -0.1%
+0.3% / -0.1%
+0.1% / -0.1%
0.0% / -0.1%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
0.0% / 0.0%
CPU
CPU
= 40 MHz
= 64 MHz
CPU
CPU
Reload value
Reload value
1FFD / 1FFE
08AD / 08AE
15B2 / 15B3
002E / 002F
005E / 005F
022A / 022B
115B / 115C
1FF2 / 1FF3
= 40 MHz)
= 64 MHz)
0089 / 008A
0000 / 0000
0114 / 0115
0456 / 0457
1724 / 1725
ST10F276E
(hex)
(hex)

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