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5 / 19 page 5 FN6327.7 September 16, 2009 Electrical Specifications (ISL21009-25, VOUT = 2.50V) VIN = 5.0V, TA = -40°C to +125°C, IOUT = 0, unless otherwise specified. PARAMETER DESCRIPTION CONDITIONS MIN TYP MAX UNIT VOUT Output Voltage 2.500 V VIN Input Voltage Range 3.5 16.5 V ΔV OUT/ΔVIN Line Regulation 3.5V < VIN < 5.5V 50 150 µV/V 5.5V < VIN < 16.5V 10 50 µV/V ΔV OUT/ΔIOUT Load Regulation Sourcing: 0mA ≤ I OUT ≤ 7mA 10 50 µV/mA Sinking: -7mA ≤ I OUT ≤ 0mA 20 100 µV/mA ΔV OUT/ΔTA Thermal Hysteresis (Note 6) ΔT A = +165°C 50 ppm ΔV OUT/Δt Long Term Stability (Note 7) TA = +25°C 50 ppm Electrical Specifications (ISL21009-41, VOUT = 4.096V) VIN = 5.0V, TA = -40°C to +125°C, IOUT = 0 unless otherwise specified. PARAMETER DESCRIPTION CONDITIONS MIN TYP MAX UNIT VOUT Output Voltage 4.096 V VIN Input Voltage Range 4.5 16.5 V ΔV OUT/ΔVIN Line Regulation 4.5V < VIN < 16.5V 50 200 µV/V ΔV OUT/ΔIOUT Load Regulation Sourcing: 0mA ≤ I OUT ≤ 5mA 20 100 µV/mA Sinking: -5mA ≤ I OUT ≤ 0mA 20 150 µV/mA ΔV OUT/ΔTA Thermal Hysteresis (Note 6) ΔT A = +165°C 50 ppm ΔV OUT/Δt Long Term Stability (Note 7) TA = +25°C 50 ppm Electrical Specifications (ISL21009-50, VOUT = 5.0V) VIN = 10.0V, TA = -40°C to +125°C, IOUT = 0 unless otherwise specified. PARAMETER DESCRIPTION CONDITIONS MIN TYP MAX UNIT VOUT Output Voltage 5.000 V VIN Input Voltage Range 5.5 16.5 V ΔV OUT/ΔVIN Line Regulation 5.5V < VIN < 16.5V 20 90 µV/V ΔV OUT/ΔIOUT Load Regulation Sourcing: 0mA ≤ I OUT ≤ 7mA 10 100 µV/mA Sinking: -7mA ≤ I OUT ≤ 0mA 20 150 µV/mA ΔV OUT/ΔTA Thermal Hysteresis (Note 6) ΔT A = +165°C 50 ppm ΔV OUT/Δt Long Term Stability (Note 7) TA = +25°C 50 ppm NOTES: 5. Over the specified temperature range. Temperature coefficient is measured by the box method whereby the change in VOUT is divided by the temperature range; in this case, -40°C to +125°C = +165°C. 6. Thermal Hysteresis is the change of VOUT measured @ TA = +25°C after temperature cycling over a specified range, ΔTA. VOUT is read initially at TA = +25°C for the device under test. The device is temperature cycled and a second VOUT measurement is taken at +25°C. The difference between the initial VOUT reading and the second VOUT reading is then expressed in ppm. For Δ TA = +165°C, the device under test is cycled from +25°C to +125°C to -40°C to +25°C. 7. Long term drift is logarithmic in nature and diminishes over time. Drift after the first 1000 hours will be approximately 10ppm/ √(1kHrs). ISL21009 |
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