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PXR40 Datasheet(PDF) 69 Page - Freescale Semiconductor, Inc |
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PXR40 Datasheet(HTML) 69 Page - Freescale Semiconductor, Inc |
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69 / 100 page ![]() Electrical characteristics PXR40 Microcontroller Data Sheet, Rev. 1 Freescale Semiconductor 69 5.9.1 ADC internal resource measurements 8 Exceeding limit may cause conversion error on stressed channels and on unstressed channels. Transitions within the limit do not affect device reliability or cause permanent damage. 9 Input must be current limited to the value specified. To determine the value of the required current-limiting resistor, calculate resistance values using VPOSCLAMP =VDDA + 0.5 V and VNEGCLAMP = –0.3 V, then use the larger of the calculated values. 10 Condition applies to two adjacent pins at injection limits. 11 Performance expected with production silicon. 12 All channels have same 10 k <Rs<100 kChannel under test has Rs = 10 k, I INJ=IINJMAX,IINJMIN. 13 The TUE specification is always less than the sum of the INL, DNL, offset, and gain errors due to cancelling errors. 14 TUE does not apply to differential conversions. 15 Voltages between VRL and VRH will not cause damage to the pins. However, they may not be converted accurately if the differential voltage is above the maximum differential voltage. In addition, conversion errors may occur if the common mode voltage of the differential signal violates the Differential Input common mode voltage specification. Table 18. Power Management Control (PMC) specification Spec Characteristic Symbol Min Typical Max Unit PMC Normal Mode 1 Bandgap 0.62 V ADC0 channel 145 VADC145 — 0.62 — V 2 Bandgap 1.2 V ADC0 channel 146 VADC146 — 1.22 — V 3 Vreg1p2 Feedback ADC0 channel 147 VADC147 — VDD /2.045 — V 4LVD 1.2 V ADC0 channel 180 VADC180 — VDD /1.774 — V 5 Vreg3p3 Feedback ADC0 channel 181 VADC181 — Vreg3p3 / 5.460 — V 6LVD 3.3 V ADC0 channel 182 VADC182 — Vreg3p3 / 4.758 —V 7LVD 5.0 V ADC0 channel 183 — LDO mode — SMPS mode VADC183 — VDDREG / 4.758 VDDREG/7.032 — V |
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