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XC164CS-16F Datasheet(PDF) 61 Page - Infineon Technologies AG |
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XC164CS-16F Datasheet(HTML) 61 Page - Infineon Technologies AG |
61 / 78 page XC164-16 Derivatives Electrical Parameters Data Sheet 59 V2.2, 2006-03 4.3 Analog/Digital Converter Parameters Table 14 A/D Converter Characteristics (Operating Conditions apply) Parameter Symbol Limit Values Unit Test Condition Min. Max. Analog reference supply V AREF SR 4.5 V DDP + 0.1 V 1) 1) TUE is tested at VAREF = VDDP + 0.1 V, VAGND = 0 V. It is verified by design for all other voltages within the defined voltage range. If the analog reference supply voltage drops below 4.5 V (i.e. VAREF ≥ 4.0 V) or exceeds the power supply voltage by up to 0.2 V (i.e. VAREF = VDDP + 0.2 V) the maximum TUE is increased to ±3 LSB. This range is not subject to production test. The specified TUE is guaranteed only, if the absolute sum of input overload currents on Port 5 pins (see IOV specification) does not exceed 10 mA, and if VAREF and VAGND remain stable during the respective period of time. During the reset calibration sequence the maximum TUE may be ±4 LSB. Analog reference ground V AGND SR V SS - 0.1 V SS + 0.1 V – Analog input voltage range V AIN SR V AGND V AREF V 2) 2) VAIN may exceed VAGND or VAREF up to the absolute maximum ratings. However, the conversion result in these cases will be X000H or X3FFH, respectively. Basic clock frequency f BC 0.5 20 MHz 3) Conversion time for 10-bit result4) t C10P CC 52 × t BC + tS + 6 × tSYS – Post-calibr. on t C10 CC 40 × t BC + tS + 6 × tSYS – Post-calibr. off Conversion time for 8-bit result4) t C8P CC 44 × t BC + tS + 6 × tSYS – Post-calibr. on t C8 CC 32 × t BC + tS + 6 × tSYS – Post-calibr. off Calibration time after reset t CAL CC 484 11,696 t BC 5) Total unadjusted error TUE CC – ±2LSB 1) Total capacitance of an analog input C AINT CC – 15 pF 6) Switched capacitance of an analog input C AINS CC – 10 pF 6) Resistance of the analog input path R AIN CC – 2 k Ω 6) Total capacitance of the reference input C AREFT CC – 20 pF 6) Switched capacitance of the reference input C AREFS CC – 15 pF 6) Resistance of the reference input path R AREF CC – 1 k Ω 6) |
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