ADR390/ADR391/ADR392/ADR395TYPICAL PERFORMANCE CHARACTERISTICS2.0605.0065.0042.056SAMPLE 3SAMPLE 25.002)2.052)SAMPLE 2(V T(VSAMPLE 3T 5.000OUVOU2.048VSAMPLE 1SAMPLE 14.9982.0444.9962.0404.994–40–53065100125 03 06 -0 –40–53065100125 0 19 9- TEMPERATURE (°C) 04 TEMPERATURE (°C) 41 0 00 Figure 2. ADR390 Output Voltage vs. Temperature Figure 5. ADR395 Output Voltage vs. Temperature 2.506140SAMPLE 2+125°C2.504120SAMPLE 1)+85°C2.502(µA+25°CSAMPLE 3T)100EN(VRT 2.500ROUU–40°CVC LY802.498PP U S602.496 007 9- 2.494 041 4 40 0 –40–53065100125 00 2.55.07.510.012.515.0 9- TEMPERATURE (°C) 41 INPUT VOLTAGE (V) 00 Figure 3. ADR391 Output Voltage vs. Temperature Figure 6. ADR390 Supply Current vs. Input Voltage 4.1001404.098120SAMPLE 3) A4.096µ+125°C(SAMPLE 2100)NT+85°C(V T 4.094 SAMPLE 1OU+25°CVCURRE LY80P4.092–40°CUP S604.090 8 00 9- 041 4.08840 0 –4004080125 05 0 2.55.07.510.012.515.0 9- TEMPERATURE (°C) 41 INPUT VOLTAGE (V) 00 Figure 4. ADR392 Output Voltage vs. Temperature Figure 7. ADR391 Supply Current vs. Input Voltage Rev. G | Page 9 of 20 Document Outline FEATURES APPLICATIONS PIN CONFIGURATION GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ADR390 ELECTRICAL CHARACTERISTICS ADR391 ELECTRICAL CHARACTERISTICS ADR392 ELECTRICAL CHARACTERISTICS ADR395 ELECTRICAL CHARACTERISTICS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE ESD CAUTION TERMINOLOGY TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION DEVICE POWER DISSIPATION CONSIDERATIONS SHUTDOWN MODE OPERATION APPLICATIONS INFORMATION BASIC VOLTAGE REFERENCE CONNECTION Stacking Reference ICs for Arbitrary Outputs A Negative Precision Reference without Precision Resistors General-Purpose Current Source High Power Performance with Current Limit CAPACITORS Input Capacitor Output Capacitor OUTLINE DIMENSIONS ORDERING GUIDE