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EVAL-ADM1062TQEBZ Datasheet(PDF) 6 Page - Analog Devices |
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EVAL-ADM1062TQEBZ Datasheet(HTML) 6 Page - Analog Devices |
6 / 36 page ADM1062 Rev. C | Page 6 of 36 Parameter Min Typ Max Unit Test Conditions/Comments Conversion Time 0.44 ms One conversion on one channel 84 ms All 12 channels selected, 16× averaging enabled Offset Error ±2 LSB VREFIN = 2.048 V Input Noise 0.25 LSB rms Direct input (no attenuator) TEMPERATURE SENSOR2 Local Sensor Accuracy ±3 °C VDDCAP = 4.75 V Local Sensor Supply Voltage Coefficient −1.7 °C/V Remote Sensor Accuracy ±3 °C VDDCAP = 4.75 V Remote Sensor Supply Voltage Coefficient −3 °C Remote Sensor Current Source 200 μA High level 12 μA Low level Temperature for Code 0x800 0 °C VDDCAP = 4.75 V Temperature for Code 0xC00 128 °C VDDCAP = 4.75 V Temperature Resolution per Code 0.125 °C BUFFERED VOLTAGE OUTPUT DACs Resolution 8 Bits Code 0x80 Output Voltage Six DACs are individually selectable for centering on one of four output voltage ranges Range 1 0.592 0.6 0.603 V Range 2 0.796 0.8 0.803 V Range 3 0.996 1 1.003 V Range 4 1.246 1.25 1.253 V Output Voltage Range 601.25 mV Same range, independent of center point LSB Step Size 2.36 mV INL ±0.75 LSB Endpoint corrected DNL ±0.4 LSB Gain Error 1 % Maximum Load Current (Source) 100 μA Maximum Load Current (Sink) 100 μA Maximum Load Capacitance 50 pF Settling Time to 50 pF Load 2 μs Load Regulation 2.5 mV Per mA PSRR 60 dB DC 40 dB 100 mV step in 20 ns with 50 pF load REFERENCE OUTPUT Reference Output Voltage 2.043 2.048 2.053 V No load Load Regulation −0.25 mV Sourcing current, IDACxMAX = −100 μA +0.25 mV Sinking current, IDACxMAX = +100 μA Minimum Load Capacitance 1 μF Capacitor required for decoupling, stability PSRR 60 dB DC PROGRAMMABLE DRIVER OUTPUTS (PDOs) High Voltage (Charge Pump) Mode (PDO1 to PDO6) Output Impedance 500 kΩ VOH 11 12.5 14 V IOH = 0 μA 10.5 12 13.5 V IOH = 1 μA IOUTAVG 20 μA 2 V < VOH < 7 V Standard (Digital Output) Mode (PDO1 to PDO10) VOH 2.4 V VPU (pull-up to VDDCAP or VPx) = 2.7 V, IOH = 0.5 mA 4.5 V VPU to VPx = 6.0 V, IOH = 0 mA VPU − 0.3 V VPU ≤ 2.7 V, IOH = 0.5 mA VOL 0 0.50 V IOL = 20 mA |
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