LMH6609MF/NOPB

LMH6609MF/NOPB

$2.85
  • Description:IC OPAMP VFB 1 CIRCUIT SOT23-5
  • Series:VIP10™
  • Mfr:Texas Instruments
  • Package:Tape & Reel (TR),Cut Tape (CT)

SKU:7bc858834a2a Category: Brand:

  
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Product Detailed Parameters

  • Description:IC OPAMP VFB 1 CIRCUIT SOT23-5
  • Series:VIP10™
  • Mfr:Texas Instruments
  • Package:Tape & Reel (TR),Cut Tape (CT)
  • Amplifier Type:Voltage Feedback
  • Number of Circuits:1
  • Output Type:-
  • Slew Rate:1400V/µs
  • Gain Bandwidth Product:-
  • Current - Input Bias:2 µA
  • Voltage - Input Offset:800 µV
  • Current - Supply:7mA
  • Current - Output / Channel:90 mA
  • Voltage - Supply Span (Min):6 V
  • Voltage - Supply Span (Max):12 V
  • Operating Temperature:-40°C ~ 85°C
  • Grade:-
  • Qualification:-
  • Mounting Type:Surface Mount
  • Package / Case:SC-74A, SOT-753
  • Supplier Device Package:SOT-23-5
  • -3db Bandwidth:900 MHz

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LMH6609MF/NOPB

Buying Guide
Summary

Texas Instruments LMH6609MF-NOPB is selected in Instrumentation, Op Amps, Buffer Amps category when gain/offset/noise margins must hold across temperature and production variance. Key specs include Description (IC OPAMP VFB 1 CIRCUIT SOT23-5), Temperature (-40°C ~ 85°C), Package/case (SC-74A, SOT-753), and Mounting (Surface Mount).

Selection Notes
  • For LMH6609MF-NOPB, confirm the mounting type (Surface Mount) matches your assembly process and reliability requirements.
  • Double-check the slew rate (1400V/µs) for your high-speed or step-response requirements.
  • Confirm the operating frequency (900 MHz) is compatible with your clocking architecture.
Alternates & Substitutions
  • For Instrumentation, Op Amps, Buffer Amps substitutions, lock footprint/pinout and operating envelope first, then verify the critical performance conditions on your hardware.
  • Start by confirming the physical match (package/case SC-74A, SOT-753, supplier package SOT-23-5, mounting Surface Mount) so the swap does not create a footprint risk.
  • Verify the alternate stays within temperature -40°C ~ 85°C across startup, load steps, and worst-case temperature.
  • When in doubt, treat the swap as an ECO: define acceptance criteria, then validate under worst-case operating corners.
FAQ

What Supplier Device Package does LMH6609MF-NOPB have?
SOT-23-5

What is the Slew Rate of LMH6609MF-NOPB?
1400V/µs

What package type does LMH6609MF-NOPB come in?
SC-74A, SOT-753

Is LMH6609MF-NOPB surface-mount or through-hole?
Surface Mount

Application Scenarios

In many Instrumentation, Op Amps, Buffer Amps builds, Texas Instruments LMH6609MF-NOPB is reviewed for predictable behavior, supportability, and stable qualification evidence. Engineers generally validate gain-setting, filtering, and EMI robustness because common-mode interference is usually the dominant error source. Design decisions usually revolve around dynamic range, linearity, reference stability, and how the part connects to an MCU, DSP, or FPGA. They often include analog front-end functions such as filtering, buffering, multiplexing, or isolation that reduce external component count. In energy metering, accuracy is maintained across noisy mains and wide temperature swings. Within medical instruments, low-drift in-amps condition biopotential and low-level sensor signals where noise and offset stability dominate the error budget. In practice, teams look for a path to verify the key assumptions without turning the integration into a one-off tuning exercise.

Compatibility Advice
  • For Texas Instruments LMH6609MF-NOPB in Instrumentation, Op Amps, Buffer Amps, verify ratings, interface levels, thermal headroom, and a repeatable test plan in the real system. This keeps qualification evidence reproducible later.
Project Fit
  • A weaker fit when integrating Texas Instruments LMH6609MF-NOPB for Instrumentation, Op Amps, Buffer Amps, the input environment is poorly controlled and protection/filtering are not planned, because the remaining risk is system-level and cannot be bounded by datasheet checks alone.
LMH6609MF/NOPBLMH6609MF/NOPB
$2.85
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