ST10F276Z5T3 STMicroelectronics, ST10F276Z5T3 Datasheet - Page 57

MCU 16BIT 832KBIT FLASH 144-TQFP

ST10F276Z5T3

Manufacturer Part Number
ST10F276Z5T3
Description
MCU 16BIT 832KBIT FLASH 144-TQFP
Manufacturer
STMicroelectronics
Series
ST10r
Datasheet

Specifications of ST10F276Z5T3

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-TQFP, 144-VQFP
Cpu Family
ST10
Device Core Size
16b
Frequency (max)
40MHz
Interface Type
CAN/I2C
Total Internal Ram Size
68KB
# I/os (max)
111
Number Of Timers - General Purpose
5
Operating Supply Voltage (typ)
5V
Operating Supply Voltage (max)
5.5V
Operating Supply Voltage (min)
4.5V
On-chip Adc
24-chx10-bit
Instruction Set Architecture
CISC/RISC
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
144
Package Type
LQFP
Processor Series
ST10F27x
Core
ST10
Data Bus Width
16 bit
Data Ram Size
68 KB
Maximum Clock Frequency
40 MHz
Number Of Programmable I/os
111
Number Of Timers
5
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
For Use With
497-6399 - KIT DEV STARTER ST10F276Z5
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Lead Free Status / Rohs Status
Compliant

Available stocks

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Quantity
Price
Part Number:
ST10F276Z5T3
Manufacturer:
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Quantity:
10 000
Part Number:
ST10F276Z5T3
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ST10F276Z5
5.3.5
Note:
This process may go through several iterations or may directly execute the final application.
In all cases the device still runs in BSL mode, that is, with the watchdog timer disabled and
limited access to the internal Flash area. All code fetches from the internal IFLASH area
(01’0000
access the internal Flash of the device.
Choosing the baud rate for the BSL via UART
The calculation of the serial baud rate for ASC0 from the length of the first zero byte that is
received allows the operation of the bootstrap loader of the device with a wide range of baud
rates. However, the upper and lower limits must be kept to ensure proper data transfer.
The device uses timer T6 to measure the length of the initial zero byte. The quantization
uncertainty of this measurement implies the first deviation from the real baud rate; the next
deviation is implied by the computation of the S0BRL reload value from the timer contents.
The formula below shows the association:
For a correct data transfer from the host to the device, the maximum deviation between the
internal initialized baud rate for ASC0 and the real baud rate of the host should be below
2.5%. The deviation (F
calculated using the formula below:
Function (F
the serial communication.
This baud rate deviation is a nonlinear function depending on the CPU clock and the baud
rate of the host. The maxima of the function (F
the smaller baud rate prescaler factors and the implied higher quantization error (see
Figure
Figure 10. Baud rate deviation between host and ST10F276Z5
The minimum baud rate (B
of timer T6, when measuring the zero byte, that is, it depends on the CPU clock. Using the
maximum T6 count 2
2.5%
10).
H
B
F
...08’FFFF
Low
B
B
) does not consider the tolerances of oscillators and other devices supporting
H
16
) are redirected to the special Test-Flash. Data read operations
B
F B
in the formula the minimum baud rate is calculated. The lowest
, in percent) between host baud rate and device baud rate can be
=
S0BRL
B
Low
High
B Contr B Host
------------------------------------------- 100
B
in
ST10F276
B Contr
Figure
=
T6 36
------------------- -
I
72
=
10) is determined by the maximum count capacity
II
--------------------------------------------- -
32
,
B
) increases with the host baud rate due to
T6
(
S0BRL
f CPU
%
=
,
9
-- -
4
---------------- -
B Host
f CPU
+
F B
1
)
2.5
%
Bootstrap loader
B
HOST
57/239

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