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LQFP100 Datasheet(PDF) 60 Page - STMicroelectronics |
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LQFP100 Datasheet(HTML) 60 Page - STMicroelectronics |
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60 / 133 page ![]() Electrical characteristics SPC560B54x/6x 60/133 DocID15131 Rev 9 Note: RAM data retention is guaranteed with VDD_LV not below 1.08 V. Table 14. Recommended operating conditions (5.0 V) Symbol Parameter Conditions Value Unit Min Max VSS S R Digital ground on VSS_HV pins — 0 0 V VDD (1) S R Voltage on VDD_HV pins with respect to ground (VSS) —4.5 5.5 V Voltage drop(2) 3.0 5.5 VSS_LV (3) S R Voltage on VSS_LV (low voltage digital supply) pins with respect to ground (VSS) —VSS 0.1 VSS + 0.1 V VDD_BV (4) S R Voltage on VDD_BV pin (regulator supply) with respect to ground (VSS) —4.5 5.5 V Voltage drop(2) 3.0 5.5 Relative to VDD 3.0 VDD + 0.1 VSS_ADC S R Voltage on VSS_HV_ADC0, VSS_HV_ADC1 (ADC reference) pin with respect to ground (VSS) —VSS 0.1 VSS + 0.1 V VDD_ADC (5) S R Voltage on VDD_HV_ADC0, VDD_HV_ADC1 (ADC reference) with respect to ground (VSS) —4.5 5.5 V Voltage drop(2) 3.0 5.5 Relative to VDD VDD 0.1 VDD + 0.1 VIN S R Voltage on any GPIO pin with respect to ground (VSS) —VSS 0.1 — V Relative to VDD —VDD + 0.1 IINJPAD S R Injected input current on any pin during overload condition — 55 mA IINJSUM S R Absolute sum of all injected input currents during overload condition — 50 50 TVDD S R VDD slope to ensure correct power up (6) —3.0(7) 250 x 103 (0.25 [V/µs]) V/s 1. 100 nF capacitance needs to be provided between each VDD/VSS pair. 2. Full device operation is guaranteed by design when the voltage drops below 4.5 V down to 3.0 V. However, certain analog electrical characteristics will not be guaranteed to stay within the stated limits. 3. 330 nF capacitance needs to be provided between each VDD_LV/VSS_LV supply pair. 4. 470 nF capacitance needs to be provided between VDD_BV and the nearest VSS_LV (higher value may be needed depending on external regulator characteristics). While the supply voltage ramps up, the slope on VDD_BV should be less than 0.9VDD_HV in order to ensure the device does not enter regulator bypass mode. 5. 100 nF capacitance needs to be provided between VDD_ADC/VSS_ADC pair. 6. Guaranteed by device validation. 7. Minimum value of TVDD must be guaranteed until VDD reaches 2.6 V (maximum value of VPORH). |
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