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SPC56EL54x Scheda tecnica(PDF) 124 Page - STMicroelectronics |
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SPC56EL54x Scheda tecnica(HTML) 124 Page - STMicroelectronics |
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124 / 165 page ![]() Electrical characteristics SPC56ELx, SPC564Lx 124/165 DocID15457 Rev 12 twice the conversion period (TC). Again the conversion period TC is longer than the sampling time TS, which is just a portion of it, even when fixed channel continuous conversion mode is selected (fastest conversion rate at a specific channel): in conclusion it is evident that the time constant of the filter RFCF is definitively much higher than the sampling time TS, so the charge level on CS cannot be modified by the analog signal source during the time in which the sampling switch is closed. The considerations above lead to impose new constraints on the external circuit, to reduce the accuracy error due to the voltage drop on CS; from the two charge balance equations above, it is simple to derive Equation 11 between the ideal and real sampled voltage on CS: Equation 11 From this formula, in the worst case (when VA is maximum, that is for instance 5 V), assuming to accept a maximum error of half a count, a constraint is evident on CF value: Equation 12 V A2 V A ------------ C P1 C P2 +C F + C P1 C P2 +C F C S ++ -------------------------------------------------------- = C F 8192 C S Table 27. ADC conversion characteristics Symbol Parameter Conditions(1) Min Typ Max Unit fCK S R ADC Clock frequency (depends on ADC configuration) (The duty cycle depends on AD_CK(2) frequency) —3 — 60 MHz fs S R Sampling frequency — — — 983. 6(3) KHz tsample D Sample time(4) 60 MHz 383 — — ns teval D Evaluation time(5) 60 MHz 600 — — ns CS(6) D ADC input sampling capacitance — — — 7.32 pF CP1(6) D ADC input pin capacitance 1 — — — 5(7) pF CP2(6) D ADC input pin capacitance 2 — — — 0.8 pF RSW1(6) D Internal resistance of analog source VREF range = 4.5 to 5.5 V — — 0.3 k VREF range = 3.0 to 3.6 V — — 875 W RAD(6) D Internal resistance of analog source — — — 825 W INL P Integral non linearity — –3 — 3 LSB DNL P Differential non linearity(8) —–1 — 2 LSB OFS T Offset error — –6 — 6 LSB GNE T Gain error — –6 — 6 LSB IS1WINJ (single ADC channel) C Max positive/negative injection –3 — 3 mA |
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