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ST7LITE1XB Datasheet(PDF) 61 Page - STMicroelectronics

Part # ST7LITE1XB
Description  8-BIT MCU WITH SINGLE VOLTAGE FLASH MEMORY, DATA EEPROM, ADC, 5 TIMERS, SPI
PDF  159 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ST7LITE1XB Datasheet(HTML) 61 Page - STMicroelectronics

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DUAL 12-BIT AUTORELOAD TIMER 4 (Cont’d)
11.2.3.2 Dead Time Generation
A dead time can be inserted between PWM0 and
PWM1 using the DTGR register. This is required
for half-bridge driving where PWM signals must
not be overlapped. The non-overlapping PWM0/
PWM1 signals are generated through a program-
mable dead time by setting the DTE bit.
Dead time value = DT[6:0] x Tcounter1
DTGR[7:0] is buffered inside so as to avoid de-
forming the current PWM cycle. The DTGR effect
will take place only after an overflow.
Notes:
1. Dead time is generated only when DTE=1 and
DT[6:0]
≠ 0. If DTE is set and DT[6:0]=0, PWM out-
put signals will be at their reset state.
2. Half Bridge driving is possible only if polarities of
PWM0 and PWM1 are not inverted, i.e. if OP0 and
OP1 are not set. If polarity is inverted, overlapping
PWM0/PWM1 signals will be generated.
3. Dead Time generation does not work at 1 ms
timebase.
Figure 40. Dead Time Generation
In the above example, when the DTE bit is set:
– PWM goes low at DCR0 match and goes high at
ATR1+Tdt
– PWM1 goes high at DCR0+Tdt and goes low at
ATR match.
With this programmable delay (Tdt), the PWM0
and PWM1 signals which are generated are not
overlapped.
DCR0+1
ATR1
DCR0
Tdt
Tdt
Tdt = DT[6:0] x Tcounter1
PWM 0
PWM 1
CNTR1
CK_CNTR1
Tcounter1
OVF
PWM 0
PWM 1
counter = DCR0
counter = DCR1
1



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