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ST7MC1K2-Auto 数据表(PDF) 94 Page - STMicroelectronics |
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ST7MC1K2-Auto 数据表(HTML) 94 Page - STMicroelectronics |
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94 / 371 page ![]() Obsolete Product(s) - Obsolete Product(s) On-chip peripherals ST7MC1K2-Auto, ST7MC1K6-Auto, ST7MC2S4-Auto, ST7MC2S6-Auto 94/371 10.2.2 Functional description Counter The free running 8-bit counter is fed by the output of the prescaler, and is incremented on every rising edge of the clock signal. It is possible to read or write the contents of the counter on the fly by reading or writing the counter access register (ARTCAR). When a counter overflow occurs, the counter is automatically reloaded with the contents of the auto-reload register (ARTARR). The prescaler is not affected. Counter clock and prescaler The counter clock frequency is given by: fCOUNTER =fINPUT/2 CC[2:0] The timer counter’s input clock (fINPUT) feeds the 7-bit programmable prescaler, which selects one of the eight available taps of the prescaler, as defined by CC[2:0] bits in the ARTCSR. Thus the division factor of the prescaler can be set to 2n (where n = 0, 1, ...7). This fINPUT frequency source is selected through the EXCL bit of the ARTCSR register and can be either the fCPU or an external input frequency fEXT. The clock input to the counter is enabled by the TCE (timer counter enable) bit in the ARTCSR register. When TCE is reset, the counter is stopped and the prescaler and counter contents are frozen. When TCE is set, the counter runs at the rate of the selected clock source. Counter and prescaler initialization After reset, the counter and the prescaler are cleared and fINPUT =fCPU. The counter can be initialized by: ● Writing to the ARTARR register and then setting the FCRL (force counter re-load) and the TCE (timer counter enable) bits in the ARTCSR register. ● Writing to the ARTCAR counter access register, In both cases the 7-bit prescaler is also cleared, whereupon counting starts from a known value. Direct access to the prescaler is not possible. Output compare control The timer compare function is based on four different comparisons with the counter (one for each PWMx output). Each comparison is made between the counter value and an output compare register (OCRx) value. This OCRx register can not be accessed directly, it is loaded from the duty cycle register (PWMDCRx) at each overflow of the counter. This double buffering method avoids glitch generation when changing the duty cycle on the fly. Obsolete Product(s) - Obsolete Product(s) |
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