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Texas Instruments LMH6724MA/NOPB — Logic ICs

LMH6724MA/NOPB Texas Instruments Current Feedback Op Amp

MPNLMH6724MA/NOPB
End of Life

Texas Instruments LMH® series LMH6724MA/NOPB, dual current-feedback operational amplifier, 600V/µs slew rate, 370 MHz -3dB bandwidth, 1 mA supply per channel, 8-SOIC package, -40°C to 85°C operating temperature.

$4.98Ref. price · indicative, final on quote
Packaging8-SOIC (0.154", 3.90mm Width)
StockContact for availability
MOQ1 pcs
  • 100% new & originalTraceable channels only — no refurbs, no pulls, no remarked parts.
  • Date & lot codes on quoteStated per line before you commit; label photos on request.
  • MSL-compliant ESD packingMoisture-sealed bags with indicator cards; reels photo-verified.
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Specifications

LMH6724MA/NOPB Technical Specifications
ParameterValue
SeriesLMH®
Mounting typeSurface Mount
Amplifier typeCurrent Feedback
Voltage - input offset1 mV
Voltage - supply span4.5 V
Current - supply1mA (x2 Channels)
Current - input bias2 µA
Current - output (Channel)110 mA
Operating temperature-40°C ~ 85°C
-3db bandwidth370 MHz
PackageBulk
Slew rate600V/µs
Case8-SOIC (0.154\", 3.90mm Width)
Number of circuits2

Product details

The LMH6724MA/NOPB: Current-feedback topology means the slew rate stays high even with larger output swings — useful for video line drivers, pulse amplifiers, or high-speed ADC front-ends where a voltage-feedback amp would roll off. Each channel draws 1 mA supply current, so the dual package totals 2 mA quiescent, which is efficient for a part at this speed grade.

Supply range and single-supply operation

Supply span runs from 4.5 V minimum to 12 V maximum. Input offset voltage is 1 mV typical, input bias current 2 µA.

The product status is Active. The NOPB suffix confirms lead-free (NiPdAu) finish, RoHS-compliant.

Frequently asked questions

Can LMH6724MA/NOPB be used with a single supply?

Yes. The supply span minimum is 4.5 V, so a single 5 V rail works. The 12 V maximum also covers split supplies up to ±6 V. Current-feedback topology doesn't rail-to-rail on input or output, so check the common-mode and output swing limits against your signal range.