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LMV641MF/NOPB Datasheet(PDF) 5 Page - Texas Instruments |
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LMV641MF/NOPB Datasheet(HTML) 5 Page - Texas Instruments |
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5 / 40 page ![]() 5 LMV641 www.ti.com SNOSAW3D – SEPTEMBER 2007 – REVISED AUGUST 2016 Product Folder Links: LMV641 Submit Documentation Feedback Copyright © 2007–2016, Texas Instruments Incorporated (1) Limits are 100% production tested at 25°C. Limits over the operating temperature range are specified through correlations using Statistical Quality Control (SQC) method. (2) Typical values represent the most likely parametric norm as determined at the time of characterization. Actual typical values may vary over time and also depend on the application and configuration. The typical values are not tested and are not specified on shipped production material. (3) Positive current corresponds to current flowing into the device. (4) The part is not short-circuit protected and is not recommended for operation with low resistive loads. Typical sourcing and sinking output current curves are provided in Typical Characteristics and should be consulted before designing for heavy loads. 6.5 DC Electrical Characteristics: 2.7 V Unless otherwise specified, all limits are specified for TA = 25°C, V + = 2.7 V, V− = 0 V, V O = VCM = V +/2, and R L > 1 MΩ. PARAMETER TEST CONDITIONS MIN (1) TYP (2) MAX (1) UNIT VOS Input offset voltage TA = 25°C 30 500 µV Temperature extremes 750 TC VOS Input offset average drift 0.1 µV/°C IB Input bias current TA = 25°C (3) 75 95 nA Temperature extremes 110 IOS Input offset current 0.9 5 nA CMRR Common-mode rejection ratio 0 V ≤ VCM ≤ 1.7 V TA = 25°C (3) 89 114 dB Temperature extremes 84 PSRR Power supply rejection ratio 2.7 V ≤ V+ ≤ 10 V, VCM = 0.5 TA = 25°C (3) 94.5 105 dB Temperature extremes 92.5 2.7 V ≤ V+ ≤ 12 V, VCM = 0.5 TA = 25°C (3) 94 100 Temperature extremes 92 CMVR Input common-mode voltage range CMRR ≥ 80 dB TA = 25°C (3) 0 1.8 V CMRR ≥ 68 dB Temperature extremes 0 1.8 AVOL Large signal voltage gain 0.3 V ≤ VO ≤ 2.4 V, RL = 2 kΩ to V +/2 82 88 dB 0.4 V ≤ VO ≤ 2.3 V, RL = 2 kΩ to V +/2 78 0.3 V ≤ VO ≤ 2.4 V, RL = 10 kΩ to V+/2 TA = 25°C (3) 86 98 0.4 V ≤ VO ≤ 2.3 V, RL = 10 kΩ to V+/2 Temperature extremes 82 VO Output swing high RL = 2 kΩ to V +/2, V IN = 100 mV TA = 25°C (3) 42 58 mV from rail Temperature extremes 68 RL = 10 kΩ to V +/2, V IN = 100 mV TA = 25°C (3) 22 35 Temperature extremes 40 Output swing low RL = 2 kΩ to V +/2, V IN = 100 mV TA = 25°C (3) 38 48 Temperature extremes 58 RL = 10 kΩ to V +/2, V IN = 100 mV 18 30 35 IOUT Sourcing and sinking output current VIN_DIFF = 100 mV to VO = V+/2 (4) Sourcing 22 mA Sinking 25 IS Supply current TA = 25°C (3) 138 170 µA Temperature extremes 220 SR Slew rate AV = 1, VO = 1 VPP Rising (10% to 90%) 2.3 V/µs Falling (90% to 10%) 1.6 GBW Gain bandwidth product 10 MHz en Input-referred voltage noise f = 1 kHz 14 nV/ √Hz in Input-referred current noise f = 1 kHz 0.15 pA/ √Hz THD Total harmonic distortion f = 1 kHz, AV = 2, RL = 2 kΩ 0.014% |
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