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## ADR363B Datasheet(HTML) 10 Page - Analog Devices

 10 / 20 pageADR360/ADR361/ADR363/ADR364/ADR365/ADR366Rev. A | Page 10 of 20TERMINOLOGYTemperature CoefficientThe change of output voltage with respect to operatingtemperature changes normalized by the output voltage at 25°C.This parameter is expressed in ppm/°C and can be determinedby( )( )()()61212O10C25C]ppm/[×−×°−=°TTVTVTVTCVOOOwhere:VO (25°C) = VO at 25°C.VO (T1) = VO at Temperature 1.VO (T2) = VO at Temperature 2.Line RegulationThe change in output voltage due to a specified change in inputvoltage. This parameter accounts for the effects of self-heating.Line regulation is expressed in either percent per volt, parts-per-million per volt, or microvolts per volt change in inputvoltage.Load RegulationThe change in output voltage due to a specified change in loadcurrent. This parameter accounts for the effects of self-heating.Load regulation is expressed in either microvolts permilliampere, parts-per-million per milliampere, or ohms of dcoutput resistance.Long-Term StabilityTypical shift of output voltage at 25°C on a sample of partssubjected to a test of 1,000 hours at 25°C.( )( )10tVtVVOOO−=Δ[]( ) ( )()⎟⎟⎠⎞⎜⎜⎝⎛×=Δ601010ppmtVt–VtVVOOOOwhere:VO (t0) = VO at 25°C at Time 0.VO (t1) = VO at 25°C after 1,000 hours operation at 25°C.Thermal HysteresisThe change of output voltage after the device is cycled throughtemperature from +25°C to –40°C to +125°C and back to+25°C. This is a typical value from a sample of parts putthrough such a cycle.()TCOOHYSOVVV__C25−°=[]()()6__10C25C25ppm×°−°=OTCOOHYSOVVVVwhere:VO (25°C) = VO at 25°C.VO_TC = VO at 25°C after temperature cycle at +25°C to –40°C to+125°C and back to +25°C.

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