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ST7FMC1M2T3 View Datasheet(PDF) - STMicroelectronics

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Description
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ST7FMC1M2T3 Datasheet PDF : 309 Pages
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ST7MC1xx/ST7MC2xx
MOTOR CONTROLLER (Cont’d)
10.6.5 Functional Description
The MTC can be split into five main parts as
shown in the simplified block diagram in Figure 77.
Each of these parts may be configured for different
purposes:
INPUT DETECTION BLOCK with a comparator,
an input multiplexer and an incremental encoder
interface, which may work as:
– A BEMF zero-crossing detector
– A Speed Sensor Interface
The DELAY MANAGER with an 8/16-bit timer
and an 8x8 bit multiplier, which may work as a:
– 8-bit delay manager
– Speed Measurement unit
The PWM MANAGER, including a
measurement window generator, a mode
selector and a current comparator.
The CHANNEL MANAGER with the PWM
multiplexer, polarity programming, deadtime
insertion and high frequency chopping
capability and emergency HiZ configuration
input.
The THREE-PHASE PWM GENERATOR with
12-bit free-running counter and repetition
counter.
10.6.6 Input Detection Block
This block can operate in Position sensor mode, in
sensorless mode or in Speed Sensor mode. The
mode is selected via the SR bit in the MCRA reg-
ister and the TES[1:0] bits in MPAR register (refer
to Table 35 for set-up information). The block dia-
gram is shown in Figure 78 for the Position Sen-
sor/Sensorless modes (TES[1:0] = 00) and in Fig-
ure 88 for the Speed Sensor mode (TES[1:0] = 01,
10, 11).
10.6.6.1 Input Pins
The MCIA, MCIB and MCIC input pins can be
used as analog or as digital pins.
– In sensorless mode, the analog inputs are used
to measure the BEMF zero crossing and to de-
tect the end of demagnetization if required.
– In sensor mode, the analog inputs are used to
get the Hall sensor information.
– In speed sensor mode (e.g. tachogenerator), the
inputs are used as digital pins. When using an
AC tachogenerator, a small external circuit may
be needed to convert the incoming signal into a
square wave signal which can be treated by the
MTC.
Due to the presence of diodes, these pins can per-
manently support an input current of 5mA. In sen-
sorless mode, this feature enables the inputs to be
connected to each motor phase through a single
resistor.
A multiplexer, programmed by the IS[1:0] bits in
the MPHST register selects the input pins and
connects them to the control logic in either sensor-
less or tachogenerator mode. In encoder mode, it
is mandatory to connect sensor digital outputs to
the MCIA and MCIB pins.
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