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CYT4DNJBJS датащи(PDF) 14 Page - Infineon Technologies AG |
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CYT4DNJBJS датащи(HTML) 14 Page - Infineon Technologies AG |
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14 / 209 page ![]() Datasheet 14 002-24601 Rev. *I 2023-02-14 TRAVEO™ T2G 32-bit Automotive MCU Based on Arm® Cortex®-M7 dual Functional description 3.2.4.1 IMO clock source The IMO is the frequency reference in CYT4DN when no external reference is available or enabled. The IMO operates at a frequency of around 8 MHz. 3.2.4.2 ILO clock source An ILO is a low-power oscillator, nominally 32.768 kHz, which generates clocks for a watchdog timer when in DeepSleep mode. There are two ILOs to ensure clock supervisor (CSV) capability in DeepSleep mode. ILO-driven counters can be calibrated to the IMO, WCO, or ECO to improve their accuracy. ILO1 is also used for clock supervision. 3.2.4.3 PLL and FLL A PLL (three 200 MHz and five 400 MHz) or FLL may be used to generate high-speed clocks from the IMO, ECO, or an EXT_CLK. The FLL provides a much faster lock than the PLL (5 µs instead of 35 µs) in exchange for a small amount (±2%) of frequency error[10] and a lower max output frequency (100 MHz instead of up to 400 MHz). 400-MHz PLLs supports spread spectrum clock generation (SSCG) with down spreading. 3.2.4.4 Clock supervisor Each clock supervisor (CSV) allows one clock (reference) to supervise the behavior of another clock (monitored). Each CSV has counters for both the monitored and reference clocks. Parameters for each counter determine the frequency of the reference clock as well as the upper and lower frequency limits of the monitored clock. If the frequency range comparator detects a stopped clock or a clock outside the specified frequency range, an abnormal state is signaled and either a reset or an interrupt is generated. 3.2.4.5 EXT_CLK One of three GPIO_STD I/Os can be used to provide an external clock input of up to 100 MHz. This clock can be used as the source clock for either the PLL or FLL, or can be used directly by the CLK_HF domain. 3.2.4.6 ECO The ECO provides high-frequency clocking using an external crystal connected to the ECO_IN and ECO_OUT pins. It supports fundamental mode (non-overtone) quartz crystals, in the range of 7.2 to 33.34 MHz. When used in conjunction with the PLL, it generates CPU and peripheral clocks up to device’s maximum frequency. ECO accuracy depends on the selected crystal. If the ECO is disabled, the associated pins can be used for any of the available I/O functions. CLK_HF4 Ethernet Internal Clock CLK_HF5 Sound Subsystem #0 (TDM, SG, PWM, MIXER, DAC), Ethernet TSU CLK_HF6 Sound Subsystem #1 (TDM, SG, PWM, MIXER) CLK_HF7 Sound Subsystem #2 (TDM, SG, PWM) CLK_HF8 SMIF #0 CLK_HF9 SMIF #1 CLK_HF10 Video Subsystem CLK_HF11 Video Display #0 CLK_HF12 Video Display #1 CLK_HF13 CSV Table 3-1 CLK_HF destinations (continued) Name Description Note 10.Operation of reference-timed peripherals (such as a UART) with an FLL-based reference is not recommended due to the allowed. |
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