ST7FMC2R6T6 STMicroelectronics, ST7FMC2R6T6 Datasheet - Page 175

MCU 8BIT 32K FLASH 64TQFP

ST7FMC2R6T6

Manufacturer Part Number
ST7FMC2R6T6
Description
MCU 8BIT 32K FLASH 64TQFP
Manufacturer
STMicroelectronics
Series
ST7r
Datasheet

Specifications of ST7FMC2R6T6

Core Processor
ST7
Core Size
8-Bit
Speed
8MHz
Connectivity
LINSCI, SPI
Peripherals
LVD, Motor Control PWM, POR, PWM, WDT
Number Of I /o
44
Program Memory Size
32KB (32K x 8)
Program Memory Type
FLASH
Ram Size
1K x 8
Voltage - Supply (vcc/vdd)
3.8 V ~ 5.5 V
Data Converters
A/D 16x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
64-TQFP, 64-VQFP
Processor Series
ST7FMC2x
Core
ST7
Data Bus Width
8 bit
Data Ram Size
1 KB
Interface Type
SCI, SPI
Maximum Clock Frequency
8 MHz
Number Of Programmable I/os
60
Number Of Timers
3
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Development Tools By Supplier
ST7MC-KIT/BLDC, ST7MDT50-EMU3, STX-RLINK
Minimum Operating Temperature
- 40 C
On-chip Adc
10 bit, 16 Channel
For Use With
497-8402 - BOARD EVAL COMPLETE INVERTER497-8400 - KIT IGBT PWR MODULE CTRL ST7MC497-6408 - BOARD EVAL BLDC SENSORLESS MOTOR497-4734 - EVAL KIT 3KW POWER DRIVER BOARD497-4733 - EVAL KIT 1KW POWER DRIVER BOARD497-4732 - EVAL KIT 300W POWER DRIVER BOARD497-4731 - EVAL KIT PWR DRIVER CONTROL BRD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Lead Free Status / Rohs Status
 Details
Other names
497-4868

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ST7FMC2R6T6
Manufacturer:
STMicroelectronics
Quantity:
10 000
Part Number:
ST7FMC2R6T6
Manufacturer:
ST
0
MOTOR CONTROLLER (Cont’d)
10.6.7.4 Built-in Checks and Controls for
simulated events
As described in
MDREG and MCOMP registers are capture/com-
pare registers. The Compare registers are write
accessible and can be used to generate simulated
events. The value of the MTIM timer is compared
with the value written in the registers and when the
MTIM value reaches the corresponding register
value, the simulated event is generated. Simulated
event generation is enabled when the correspond-
ing bits are set:
– In the MCRB register for simulated demagneti-
– In the MCRC register for simulated zero-crossing
To avoid a system stop, special attention is need-
ed when writing in the register to generate the cor-
responding simulated event. The value written in
Figure 95. Simulated demagnetisation / zero-crossing event generation
sation
and commutation.
– SDM for simulated demagnetisation
– SC for simulated commutation
– SZ for simulated zero-crossing event.
Z
H
During C interrupt
Simulated or Hardware D/Z events
Value written in MDREG/MZREG if
simulated event generation
After C interrupt
MDREG value checked
if MDREG<=MTIM
Immediate D
C
H
Figure 91. on page
S
D
generation
S
168, MZREG,
Z
H
C
H
After D interrupt
MZREG value checked
if MZREG<=MTIM
Immediate Z
D
H
the register has to be greater than the current val-
ue of the MTIM timer when writing in the registers.
If the value written in the registers (MDREG,
MZREG or MCOMP) is already less than the cur-
rent value of MTIM, the simulated event will never
be generated and the system will be stopped.
For this reason, built-in checks and controls have
been implemented in the MTIM timer.
If the value written in one of those registers in sim-
ulated event generation mode is less than or equal
to the current value of the timer when it is com-
pared, the simulated event is generated immedi-
ately and the value of the MTIM timer at the time
the simulated event occurs overwrites the value in
the registers. Like that the value in the register re-
ally corresponds to the simulated event generation
and can be re-used to generate the next simulated
event.
So, the value written in the registers able to gener-
ate simulated events is checked by hardware and
compare to the current MTIM value to verify that it
is greater.
S
generation
Z
S
C
Z
D
Z
C
H
S
H
S
H
Simulated zero-crossing
Hardware zero-crossing
Simulated demagnetisation
Hardware commutation
(SC=0)
ST7MC1xx/ST7MC2xx
D
S
Z
S
t
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