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ST10F280 Fiches technique(PDF) 83 Page - STMicroelectronics

No de pièce ST10F280
Description  16-bit MCU with MAC unit, 512 Kbyte Flash memory and 18 Kbyte RAM
PDF  239 Pages
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Fabricant  STMICROELECTRONICS [STMicroelectronics]
Site Internet  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ST10F280 Fiches technique(HTML) 83 Page - STMicroelectronics

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ST10F280
PWM module
Doc ID 8673 Rev. 3
83/239
11.2.1
Operating modes
The XPWM module provides four different operating modes:
Mode 0 Standard PWM generation (edge aligned PWM) available on all four channels
Mode 1 Symmetrical PWM generation (center aligned PWM) available on all four
channels
Burst mode combines channels 0 and 1
Single shot mode available on channels 2 and 3
Note:
The output signals of the XPWM module are XORed with the outputs of the respective bits
of XPOLAR register. After reset these bits are cleared, so the PWM signals are directly
driven to the output pins. By setting the respective bits of XPOLAR register to ‘1’ the PWM
signal may be inverted (XORed with ‘1’) before being driven to the output pin. The
descriptions below refer to the standard case after reset, i.e. direct driving.
Mode 0: standard PWM generation (edge aligned PWM)
Mode 0 is selected by clearing the respective bit XPMx in register XPWMCON1 to ‘0’. In this
mode the timer XPTx of the respective XPWM channel is always counting up until it reaches
the value in the associated period shadow register. Upon the next count pulse the timer is
reset to 0000h and continues counting up with subsequent count pulses. The XPWM output
signal is switched to high level when the timer contents are equal to or greater than the
contents of the pulse width shadow register. The signal is switched back to low level when
the respective timer is reset to 0000h, i.e. below the pulse width shadow register. The period
of the resulting PWM signal is determined by the value of the respective XPPx shadow
register plus 1, counted in units of the timer resolution.
PWM_PeriodMode0 = [XPPx] + 1
The duty cycle of the XPWM output signal is controlled by the value in the respective pulse
width shadow register. This mechanism allows the selection of duty cycles from 0% to 100%
including the boundaries. For a value of 0000h the output will remain at a high level,
representing a duty cycle of 100%. For a value higher than the value in the period register
the output will remain at a low level, which corresponds to a duty cycle of 0%.
The Figure 20 illustrates the operation and output waveforms of a XPWM channel in mode 0
for different values in the pulse width register.
This mode is referred to as Edge Aligned PWM, because the value in the pulse width
(shadow) register only effects the positive edge of the output signal. The negative edge is
always fixed and related to the clearing of the timer.



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