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Analog Devices LT1494IS8#PBF — Discrete Semiconductors

LT1494IS8#PBF op-amp, 2.7 kHz GBP, 1.4 µA supply, 8-SOIC

MPNLT1494IS8#PBF
End of Life

Analog Devices Over-The-Top® series, LT1494IS8#PBF general-purpose op-amp, single-channel, 2.7 kHz GBP, 1.4 µA supply, rail-to-rail output, 8-SOIC package, tube.

$6.18Ref. price · indicative, final on quote
Packaging8-SOIC (0.154", 3.90mm Width)
StockContact for availability
Lead time3-5 Days wk
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.
  • PayPal buyer protectionPay by T/T, PayPal or Payoneer — card payments covered end to end.

Specifications

LT1494IS8#PBF Technical Specifications
ParameterValue
SeriesOver-The-Top®
Output typeRail-to-Rail
Mounting typeSurface Mount
Amplifier typeGeneral Purpose
Voltage - input offset200 µV
Voltage - supply span2.2 V
Current - supply1.4µA
Current - input bias25 pA
Current - output (Channel)1.5 mA
Operating temperature-40°C ~ 85°C
Gain bandwidth product2.7 kHz
PackageTube
Slew rate0.001V/µs
Case8-SOIC (0.154\", 3.90mm Width)
Number of circuits1

Product details

1.4 µA supply — always-on sensor front-end fit

The LT1494IS8#PBF draws 1.4 µA typical supply current — low enough to leave on continuously in a battery-powered node without draining the cell between measurement intervals. This is the headline figure that decides the part's fit: a 3.6 V lithium cell driving the op-amp 24/7 consumes roughly 5 µW in the amplifier alone, which is negligible for a year-long deployment on a CR2032. Supply span runs from 2.2 V minimum to 36 V maximum — one lithium cell at end-of-discharge (2.5 V) still gives headroom, and a 24 V industrial rail is within the upper end without an external regulator. The single-channel (1-circuit) package means one op-amp per 8-SOIC footprint; a multi-channel design uses multiple devices.

2.7 kHz GBP — bandwidth budget for DC and low-frequency signals

Gain-bandwidth product is 2.7 kHz. For a gain-of-10 stage, the closed-loop bandwidth is about 270 Hz — fine for thermocouple conditioning, strain-gauge amplification, or battery-voltage monitoring, but not for audio or switching-frequency loops. The slew rate of 0.001 V/µs sets the large-signal response: a 1 V step at the output takes roughly 1 ms to settle, which is acceptable for DC measurement but rules out pulse-width-modulated signals or fast transients. Input offset voltage is 200 µV typical — this is the DC error at the output for a unity-gain buffer. For a 10× gain stage, the output offset is 2 mV, which is within the noise floor of a 10-bit ADC on a 2.5 V reference but matters if the signal itself is in the microvolt range. Input bias current is 25 pA typical; a 1 MΩ source resistor drops 25 µV across the bias current — negligible unless the source impedance exceeds 10 MΩ. Output type is rail-to-rail — the output swings within a few millivolts of each supply rail at light load. At the rated 1.5 mA output current per channel, the rail-to-rail swing holds within about 100 mV of the rails, which preserves dynamic range in single-supply designs where the signal spans nearly the full supply range.

Active, ROHS3, industrial temperature grade

Operating temperature range is -40°C to 85°C — the industrial grade covers outdoor enclosures, engine-bay-adjacent electronics, and unconditioned factory-floor panels. The 8-SOIC package (3.90 mm width) is a standard surface-mount footprint; the supplier device package is 8-SO. The tube packaging is the factory-shipping format — for reel quantities, confirm the tape-and-reel suffix with the distributor.

Frequently asked questions

What supply voltage range does LT1494IS8#PBF support?

The supply span is 2.2 V minimum to 36 V maximum. This covers single lithium-ion cells through 24 V industrial rails. The 1.4 µA supply current is typical across the full voltage range.