Download LMC6024 Datasheet PDF
National Semiconductor
LMC6024
LMC6024 is Low Power CMOS Quad Operational Amplifier manufactured by National Semiconductor.
Description The LMC6024 is a CMOS quad operational amplifier which can operate from either a single supply or dual supplies. Its performance features include an input mon-mode range that reaches V- , low input bias current and voltage gain (into 100 kΩ and 5 kΩ loads) that is equal to or better than widely accepted bipolar equivalents, while the power supply requirement is less than 1 m W. This chip is built with National’s advanced Double-Poly Silicon-Gate CMOS process. See the LMC6022 datasheet for a CMOS dual operational amplifier with these same features . n n n n n n Ultra low input bias current 40 f A Input mon-mode range includes V- Operating range from +5V to +15V supply Low distortion 0.01% at 1 k Hz Slew rate 0.11 V/µs Micropower operation 1 m W Applications n n n n n n n High-impedance buffer or preamplifier Current-to-voltage converter Long-term integrator Sample-and-hold circuit Peak detector Medical instrumentation Industrial controls Features n Specified for 100 kΩ and 5 kΩ loads n High voltage gain 120 d B n Low offset voltage drift 2.5 µV/˚C Connection Diagram 14-Pin DIP/SO DS011235-1 Top View Ordering Information Temperature Range Industrial - 40˚C ≤ TJ ≤ +85˚C LMC6024IN LMC6024IM 14-Pin Molded DIP 14-Pin Small Outline M14A Rail Tape and Reel Package NSC Drawing N14A Transport Media Rail © 1999 National Semiconductor Corporation DS011235 .national. Absolute Maximum Ratings (Note 1) If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Differential Input Voltage Supply Voltage (V+ - V- ) Lead Temperature (Soldering, 10 sec.) Storage Temperature Range Voltage at Output/Input Pin Current at Input Pin Current at Output Pin Current at Power Supply Pin Output Short Circuit to V+ Output Short Circuit to V- Junction Temperature ESD Tolerance (Note 4) Power Dissipation (Note 2) 150˚C 1000V (Note 3) ± Supply Voltage 16V 260˚C - 65˚C to +150˚C (V+) +...