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LMH6624MDC Datasheet(PDF) 1 Page - Texas Instruments |
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LMH6624MDC Datasheet(HTML) 1 Page - Texas Instruments |
1 / 29 page Product Folder Order Now Technical Documents Tools & Software Support & Community An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications, intellectual property matters and other important disclaimers. PRODUCTION DATA. LMH6624-MIL SNOSD63 – JUNE 2017 LMH6624-MIL Single Ultra-Low-Noise Wideband Operational Amplifier 1 1 Features 1 • VS = ±6 V, TA = 25°C, AV = 20 (Typical Values Unless Specified) • Gain Bandwidth 1.5 GHz • Input Voltage Noise 0.92 nV/ √Hz • Input Offset Voltage (Limit Over Temp) 700 µV • Slew Rate 350 V/μs • Slew Rate (AV = 10) 400 V/μs • HD2 at f = 10 MHz, RL = 100 Ω –63 dBc • HD3 at f = 10 MHz, RL = 100 Ω –80 dBc • Supply Voltage Range 5 V to 12 V • Improved Replacement for the CLC425 • Stable for Closed Loop |AV| ≥ 10 2 Applications • Instrumentation Sense Amplifiers • Ultrasound Preamplifiers • Magnetic Tape & Disk Preamplifers • Wide Band Active Filters • Professional Audio Systems • Opto-Electronics • Medical Diagnostic Systems 3 Description The LMH6624-MIL device offers wide bandwidth (1.5 GHz) with very-low-input noise (0.92 nV/ √Hz, 2.3 pA/ √Hz) and ultra-low DC errors (100-μV VOS, ±0.1- μV/°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-MIL traditional voltage feedback topology provides the following benefits: balanced inputs, low-offset voltage and offset current, very-low- offset drift, 81-dB open loop gain, 95-dB common- mode rejection ratio, and 88-dB power supply rejection ratio. The LMH6624-MIL device operates from 5 V to 12 V and is offered in SOT-23-5 and SOIC-8 packages. Device Information(1) PART NUMBER PACKAGE BODY SIZE (NOM) LMH6624-MIL SOT-23 (5) 2.90 mm × 1.60 mm SOIC (8) 4.90 mm × 3.91 mm (1) For all available packages, see the orderable addendum at the end of the datasheet. Voltage Noise vs. Frequency |
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