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STM32L151VD Datasheet(PDF) 112 Page - STMicroelectronics |
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STM32L151VD Datasheet(HTML) 112 Page - STMicroelectronics |
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112 / 140 page ![]() Electrical characteristics STM32L151xD STM32L152xD 112/140 Doc ID 022027 Rev 6 tS Sampling time Direct channels 2.4 V ≤ VDDA ≤ 3.6 V 0.25(5) -- µs Multiplexed channels 2.4 V ≤ VDDA ≤ 3.6 V 0.56(5) -- Direct channels 1.8 V ≤ VDDA ≤ 2.4 V 0.56(5) -- Multiplexed channels 1.8 V ≤ VDDA ≤ 2.4 V 1(5) -- 4- 384 1/fADC tCONV Total conversion time (including sampling time) fADC = 16 MHz 1 - 24.75 µs 4 to 384 (sampling phase) +12 (successive approximation) 1/fADC CADC Internal sample and hold capacitor Direct channels - 16 - pF Multiplexed channels - - fTRIG External trigger frequency Regular sequencer 12-bit conversions - - Tconv+1 1/fADC 6/8/10-bit conversions - - Tconv 1/fADC fTRIG External trigger frequency Injected sequencer 12-bit conversions - - Tconv+2 1/fADC 6/8/10-bit conversions - - Tconv+1 1/fADC RAIN (6) External input impedance -- 50 k Ω -- 0.5 tlat Injection trigger conversion latency fADC = 16 MHz 219 - 281 ns 3.5 - 4.5 1/fADC tlatr Regular trigger conversion latency fADC = 16 MHz 156 - 219 ns 2.5 - 3.5 1/fADC tSTAB Power-up time - - 3.5 µs 1. The Vref+ input can be grounded if neither the ADC nor the DAC are used (this allows to shut down an external voltage reference). 2. The current consumption through VREF is composed of two parameters: - one constant (max 300 µA) - one variable (max 400 µA), only during sampling time + 2 first conversion pulses So, peak consumption is 300+400 = 700 µA and average consumption is 300 + [(4 sampling + 2) /16] x 400 = 450 µA at 1Msps 3. VREF+ can be internally connected to VDDA and VREF- can be internally connected to VSSA, depending on the package. Refer to Section 4: Pin descriptions for further details. 4. VSSA or VREF- must be tied to ground. 5. Minimum sampling and conversion time is reached for maximum Rext = 0.5 k Ω. 6. For 1 Msps, maximum Rext is 0.5 k Ω. Table 64. ADC characteristics (continued) Symbol Parameter Conditions Min Typ Max Unit |
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