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LT1357CS8 数据表(PDF) 5 Page - Linear Technology |
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LT1357CS8 数据表(HTML) 5 Page - Linear Technology |
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5 / 12 page ![]() 5 LT1357 ELECTRICAL CHARACTERISTICS The q denotes specifications that apply over the full specified temperature range. Note 1: Differential inputs of ±10V are appropriate for transient operation only, such as during slewing. Large, sustained differential inputs will cause excessive power dissipation and may damage the part. See Input Considerations in the Applications Information section of this data sheet for more details. Note 2: A heat sink may be required to keep the junction temperature below absolute maximum when the output is shorted indefinitely. Note 3: Slew rate is measured between ±10V on the output with ±6V input for ±15V supplies and ±1V on the output with ±1.75V input for ±5V supplies. Note 4: Full power bandwidth is calculated from the slew rate measurement: FPBW = SR/2 πVP. Note 5: This parameter is not 100% tested. Note 6: The LT1357 is designed, characterized and expected to meet these extended temperature limits, but is not tested at – 40 °C and at 85°C. Guaranteed I grade parts are available; consult factory. TYPICAL PERFORMANCE CHARACTERISTICS Input Common-Mode Range vs Supply Voltage Input Bias Current vs Input Common-Mode Voltage SUPPLY VOLTAGE ( ±V) 0.5 1.5 1.0 3.0 2.5 2.0 10 5 015 20 1357 G01 –55 °C 25 °C 125 °C INPUT COMMON-MODE VOLTAGE (V) –200 0 –100 400 300 200 100 –15 –10 0 10 15 5 –5 1357 G03 VS = ±15V TA = 25°C IB = IB + + I B – ———— 2 SUPPLY VOLTAGE ( ±V) V – 2.0 0.5 1.0 1.5 V + –1.0 – 0.5 –2.0 –1.5 10 5 015 20 1357 G02 TA = 25°C ∆VOS < 1mV Supply Current vs Supply Voltage and Temperature Open-Loop Gain vs Resistive Load TEMPERATURE ( °C) 0 150 100 50 450 400 300 350 200 250 – 50 –25 25 100 125 50 75 0 VS = ±15V IB = IB + + I B – ———— 2 1358/1359 G04 LOAD RESISTANCE ( Ω) 10 50 60 100 100 10k 1357 G06 80 70 1k 90 VS = ±5V VS = ±15V TA = 25°C FREQUENCY (Hz) 10 1 10 100 0.1 1 10 en 1k 100 100k 10k 1357 G05 VS = ±15V TA = 25°C AV = 101 RS = 100k in Input Noise Spectral Density Input Bias Current vs Temperature |
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