Download LMH6624 Datasheet PDF
National Semiconductor
LMH6624
LMH6624 is Single/Dual Ultra Low Noise Wideband Operational Amplifier manufactured by National Semiconductor.
Description The LMH6624/LMH6626 offer wide bandwidth (1.5GHz for single, 1.3GHz for dual) with very low input noise (0.92n V/ , 2.3p A/ ) and ultra low dc errors (100µV VOS, ± 0.1µV/˚C drift) providing very precise operational amplifiers with wide dynamic range. This enables the user to achieve closed-loop gains of greater than 10, in both inverting and non-inverting configurations. The LMH6624 (single) and LMH6626’s (dual) traditional voltage feedback topology provide the following benefits: balanced inputs, low offset voltage and offset current, very low offset drift, 81d B open loop gain, 95d B mon mode rejection ratio, and 88d B power supply rejection ratio. The LMH6624/LMH6626 operate from ± 2.5V to ± 6V in dual supply mode and from +5V to +12V in single supply configuration. LMH6624 is offered in SOT23-5 and SOIC-8 packages. The LMH6626 is offered in SOIC-8 and MSOP-8 packages. Features VS = ± 6V, TA = 25˚C, AV = 20, (Typical values unless specified) n Gain bandwidth (LMH6624) 1.5GHz n Input voltage noise 0.92n V/ n Input offset voltage (limit over temp) 700u V n Slew rate 350V/µs n Slew rate (AV = 10) 400V/µs n HD2 @ f = 10MHz, RL = 100Ω - 63d Bc n HD3 @ f = 10MHz, RL = 100Ω - 80d Bc ± 2.5V to ± 6V n Supply voltage range (dual supply) n Supply voltage range (single supply) +5V to +12V n Improved replacement for the CLC425 (LMH6624) n Stable for closed loop |AV| ≥ 10 Applications n n n n n n n Instrumentation sense amplifiers Ultrasound pre-amps Magnetic tape & disk pre-amps Wide band active filters Professional Audio Systems Opto-electronics Medical diagnostic systems Connection Diagrams 5-Pin SOT23 8- Pin SOIC 8- Pin SOIC/MSOP Top View Top View Top View © 2003 National Semiconductor Corporation DS200589 .national. LMH6624/LMH6626 Absolute Maximum Ratings (Note 1) Wave Soldering (10 sec.) Storage Temperature Range Junction Temperature (Note 3), (Note 4) 260˚C - 65˚C to +150˚C +150˚C If Military/Aerospace specified devices are...