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STM32F078CB Datasheet(PDF) 52 Page - STMicroelectronics |
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STM32F078CB Datasheet(HTML) 52 Page - STMicroelectronics |
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52 / 120 page ![]() Electrical characteristics STM32F078CB, STM32F078RB, STM32F078VB 52/120 DocID026006 Rev 4 6.3.3 Embedded reference voltage The parameters given in Table 25 are derived from tests performed under the ambient temperature and supply voltage conditions summarized in Table 23: General operating conditions . 6.3.4 Supply current characteristics The current consumption is a function of several parameters and factors such as the operating voltage, ambient temperature, I/O pin loading, device software configuration, operating frequencies, I/O pin switching rate, program location in memory and executed binary code. The current consumption is measured as described in Figure 13: Current consumption measurement scheme . All Run-mode current consumption measurements given in this section are performed with a reduced code that gives a consumption equivalent to CoreMark code. Table 24. 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 20 ∞ tVDDA VDDA rise time rate - 0 ∞ VDDA fall time rate 20 ∞ Table 25. Embedded internal reference voltage Symbol Parameter Conditions Min Typ Max Unit VREFINT Internal reference voltage –40 °C < TA < +105 °C 1.2 1.23 1.25 V tSTART ADC_IN17 buffer startup time -- - 10(1) µs tS_vrefint ADC sampling time when reading the internal reference voltage - 4(1) 1. Guaranteed by design, not tested in production. -- µs ∆VREFINT Internal reference voltage spread over the temperature range VDDA = 3 V - - 10(1) mV TCoeff Temperature coefficient - - 100(1) - 100(1) ppm/°C TVREFINT_RDY (2) 2. Guaranteed by design, not tested in production. This parameter is the latency between the time when pin NPOR is set to 1 by the application and the time when the VREFINTRDYF status bit is set to 1 by the hardware. Internal reference voltage temporization - 1.5 2.5 4.5 ms |
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