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EL5411TILZ-T13 Datasheet(PDF) 5 Page - Intersil Corporation |
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EL5411TILZ-T13 Datasheet(HTML) 5 Page - Intersil Corporation |
5 / 16 page 5 FN6837.1 October 8, 2009 EL5411T Electrical Specifications VS+ = +18V, VS- = 0V, RL = 1kΩ to 9V, TA = +25°C, Unless Otherwise Specified. PARAMETER DESCRIPTION CONDITION MIN TYP MAX UNIT INPUT CHARACTERISTICS VOS Input Offset Voltage VCM = 9V 3.5 17 mV TCVOS Average Offset Voltage Drift (Note 3) 14 LD HTSSOP package 21 µV/°C 16 LD TQFN package 5 µV/°C IB Input Bias Current VCM = 9V 2 60 nA RIN Input Impedance 1G Ω CIN Input Capacitance 2pF CMIR Common-Mode Input Range -0.5 +18.5 V CMRR Common-Mode Rejection Ratio For VIN from -0.5V to 18.5V 53 75 dB AVOL Open-Loop Gain 0.5V ≤ V OUTx ≤ 17.5V 62 104 dB OUTPUT CHARACTERISTICS VOL Output Swing Low IL = -6mA 80 150 mV VOH Output Swing High IL = +6mA 17.85 17.92 V ISC Short-circuit Current VCM = 9V, Source: VOUTx short to VS-, Sink: VOUTx short to VS+ ±300 mA IOUT Output Current ±70 mA POWER SUPPLY PERFORMANCE (VS+) - (VS-) Supply Voltage Range 4.5 19 V IS Supply Current VCM = 9V, No load 12.3 15 mA PSRR Power Supply Rejection Ratio Supply is moved from 4.5V to 19V 60 75 dB DYNAMIC PERFORMANCE SR Slew Rate (Note 4) 1V ≤ VOUTx ≤ 17V, 20% to 80% 100 V/µs tS Settling to +0.1% (Note 5) AV = +1, VOUTx = 2V step, RL = 1kΩ || 1kΩ (probe), CL = 1.5pF 100 ns BW -3dB Bandwidth RF = 1kΩ, CL = 1.5pF 60 MHz GBWP Gain-Bandwidth Product AV = -10, RF = 1kΩ, RG = 100Ω RL = 1kΩ || 1kΩ (probe), CL = 1.5pF 32 MHz PM Phase Margin AV = -10, RF = 1kΩ, RG = 100Ω RL = 1kΩ || 1kΩ (probe), CL = 1.5pF 50 ° CS Channel Separation f = 5MHz 90 dB NOTES: 3. Measured over -40°C to +85°C ambient operating temperature range. See the typical TCVOS production distribution shown in the “Typical Performance Curves” on page 6. 4. Typical slew rate is an average of the slew rates measured on the rising (20% to 80%) and the falling (80% to 20%) edges of the output signal. 5. Settling time measured as the time from when the output level crosses the final value on rising/falling edge to when the output level settles within a ±0.1% error band. The range of the error band is determined by: Final Value(V)±[Full Scale(V)*0.1%]. |
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