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STM32L443CC Arkusz danych(PDF) 86 Page - STMicroelectronics |
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STM32L443CC Arkusz danych(HTML) 86 Page - STMicroelectronics |
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86 / 207 page ![]() Electrical characteristics STM32L443CC STM32L443RC STM32L443VC 86/207 DocID028739 Rev 2 6.3.2 Operating conditions at power-up / power-down The parameters given in Table 21 are derived from tests performed under the ambient temperature condition summarized in Table 20. 6.3.3 Embedded reset and power control block characteristics The parameters given in Table 22 are derived from tests performed under the ambient temperature conditions summarized in Table 20: General operating conditions. TA Ambient temperature for the suffix 6 version Maximum power dissipation –40 85 °C Low-power dissipation(5) –40 105 Ambient temperature for the suffix 7 version Maximum power dissipation –40 105 Low-power dissipation(5) –40 125 Ambient temperature for the suffix 3 version Maximum power dissipation –40 125 Low-power dissipation(5) –40 130 TJ Junction temperature range Suffix 6 version –40 105 °C Suffix 7 version –40 125 Suffix 3 version –40 130 1. When RESET is released functionality is guaranteed down to VBOR0 Min. 2. This formula has to be applied only on the power supplies related to the IO structure described by the pin definition table. Maximum I/O input voltage is the smallest value between MIN(VDD, VDDA, VDDUSB, VLCD)+3.6 V and 5.5V. 3. For operation with voltage higher than Min (VDD, VDDA, VDDUSB, VLCD) +0.3 V, the internal Pull-up and Pull-Down resistors must be disabled. 4. If TA is lower, higher PD values are allowed as long as TJ does not exceed TJmax (see Section 7.9: Thermal characteristics). 5. In low-power dissipation state, TA can be extended to this range as long as TJ does not exceed TJmax (see Section 7.9: Thermal characteristics). Table 20. General operating conditions (continued) Symbol Parameter Conditions Min Max Unit Table 21. Operating conditions at power-up / power-down Symbol Parameter Conditions Min Max Unit tVDD VDD rise time rate - 0 ∞ µs/V VDD fall time rate 10 ∞ tVDDA VDDA rise time rate - 0 ∞ VDDA fall time rate 10 ∞ tVDDUSB VDDUSB rise time rate - 0 ∞ VDDUSB fall time rate 10 ∞ |
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