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LT1460CCMS8-10 Datasheet(PDF) 3 Page - Linear Technology |
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LT1460CCMS8-10 Datasheet(HTML) 3 Page - Linear Technology |
3 / 12 page 3 LT1460-10 PARAMETER CONDITIONS MIN TYP MAX UNITS Output Voltage (Note 2) LT1460ACN8, ACS8 9.9925 10.000 10.0075 V – 0.075 0.075 % LT1460BIN8, BIS8, CCMS8, DCN8, DCS8 9.990 10.000 10.010 V – 0.10 0.10 % LT1460EIN8, EIS8 9.9875 10.000 10.0125 V – 0.125 0.125 % LT1460FCMS8 9.985 10.000 10.015 V – 0.15 0.15 % LT1460GCZ, GIZ 9.975 10.000 10.025 V – 0.25 0.25 % Output Voltage Temperature Coefficient (Note 3) TMIN ≤ TJ ≤ TMAX LT1460ACN8, ACS8, BIN8, BIS8 q 5 10 ppm/ °C LT1460CCMS8 q 7 15 ppm/ °C LT1460DCN8, DCS8, EIN8, EIS8 q 10 20 ppm/ °C LT1460FCMS8, GCZ, GIZ q 12 25 ppm/ °C Line Regulation 10.9V ≤ VIN ≤ 12.5V 30 60 ppm/V q 80 ppm/V 12.5V ≤ VIN ≤ 20V 10 25 ppm/V q 35 ppm/V Load Regulation Sourcing (Note 4) IOUT = 100µA 1500 2800 ppm/mA q 3500 ppm/mA IOUT = 10mA 80 135 ppm/mA q 180 ppm/mA IOUT = 20mA 70 100 ppm/mA 0 °C to 70°C q 140 ppm/mA Thermal Regulation (Note 5) ∆P = 200mW 0.5 2.5 ppm/mW Dropout Voltage (Note 6) VIN – VOUT, ∆VOUT ≤ 0.1%, IOUT = 0 q 0.9 V VIN – VOUT, ∆VOUT ≤ 0.1%, IOUT = 10mA 1.3 V q 1.4 V Output Current Short VOUT to GND 40 mA Reverse Leakage VIN = – 15V q 0.5 10 µA Supply Current 190 270 µA q 360 µA Output Voltage Noise (Note 7) 0.1Hz ≤ f ≤ 10Hz 40 µVP-P 10Hz ≤ f ≤ 1kHz 35 µVRMS Long-Term Stability of Output Voltage, S8 Pkg (Note 8) 40 ppm/ √kHr Hysteresis (Note 9) ∆T = –40°C to 85°C 160 ppm ∆T = 0°C to 70°C 25 ppm The q denotes specifications which apply over the specified temperature range. Note 1: If the part is stored outside of the specified temperature range, the output may shift due to hysteresis. Note 2: ESD (Electrostatic Discharge) sensitive device. Extensive use of ESD protection devices are used internal to the LT1460-10, however, high electrostatic discharge can damage or degrade the device. Use proper ESD handling precautions. Note 3: Temperature coefficient is measured by dividing the change in output voltage by the specified temperature range. Incremental slope is also measured at 25 °C. Note 4: Load regulation is measured on a pulse basis from no load to the specified load current. Output changes due to die temperature change must be taken into account separately. Note 5: Thermal regulation is caused by die temperature gradients created by load current or input voltage changes. This effect must be added to normal line or load regulation. This parameter is not 100% tested. ELECTRICAL CHARACTERISTICS V IN = 12.5V, IOUT = 0, TA = 25°C unless otherwise specified. |
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