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STM32H533CE 데이터시트(PDF) 128 Page - STMicroelectronics |
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STM32H533CE 데이터시트(HTML) 128 Page - STMicroelectronics |
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128 / 231 page ![]() Electrical characteristics STM32H533xx 128/231 DS14539 Rev 1 As a consequence, it is recommended to add a serial resistor (1 kΩ), located as close as possible to the MCU, to the pins exposed to noise (connected to tracks longer than 50 mm on PCB). Designing hardened software to avoid noise problems EMC characterization and optimization are performed at component level with a typical application environment and simplified MCU software. It should be noted that good EMC performance is highly dependent on the user application and the software in particular. Therefore it is recommended that the user applies EMC software optimization and prequalification tests in relation with the EMC level requested for his application. Software recommendations The software flowchart must include the management of runaway conditions such as: • Corrupted program counter • Unexpected reset • Critical data corruption (such as control registers) Prequalification trials Most of the common failures (unexpected reset and program counter corruption) can be reproduced by manually forcing a low state on the NRST or on the oscillator pins for 1 s. To complete these trials, ESD stress can be applied directly on the device, over the range of specification values. When unexpected behavior is detected, the software can be hardened to prevent unrecoverable errors occurring (see application note AN1015 “Software techniques for improving microcontrollers EMC performance”). Electromagnetic Interference (EMI) The electromagnetic field emitted by the device is monitored while a simple application, executing EEMBC code, is running. This emission test is compliant with SAE IEC61967-2 standard, which specifies the test board and the pin loading. Table 52. EMS characteristics Symbol Parameter Conditions Level/Class VFESD Voltage limits to apply on any I/O pin to induce a functional disturbance VDD = 3.3 V, TA = 25 °C, LQFP144, frcc_cpu_ck = 250 MHz, conform to IEC 61000-4-2 3B VFTB Fast transient voltage burst limits to apply through 100 pF on VDD and VSS pins to induce a functional disturbance VDD = 3.3 V, TA = 25 °C, LQFP144, frcc_cpu_ck = 250 MHz, conform to IEC 61000-4-4 5A |
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