LTL2H3FX1K

LTL2H3FX1K

  • Description:LED RED-ORANGE CLEAR T-1 3/4 T/H
  • Series:-
  • Mfr:Lite-On Inc.
  • Package:Bulk

SKU:ddcbb3660a71 Category: Brand:

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Product Detailed Parameters

  • Description:LED RED-ORANGE CLEAR T-1 3/4 T/H
  • Series:-
  • Mfr:Lite-On Inc.
  • Package:Bulk
  • Color:Red-Orange
  • Configuration:Standard
  • Lens Color:Colorless
  • Lens Transparency:Clear
  • Millicandela Rating:4200mcd
  • Lens Style:Round with Domed Top
  • Lens Size:5mm, T-1 3/4
  • Voltage - Forward (Vf) (Typ):2V
  • Current - Test:20mA
  • Viewing Angle:15°
  • Mounting Type:Through Hole
  • Wavelength - Dominant:605nm
  • Wavelength - Peak:611nm
  • Features:-
  • Package / Case:Radial
  • Supplier Device Package:T-1 3/4
  • Size / Dimension:-
  • Height (Max):8.60mm
  • Grade:-
  • Qualification:-

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LTL2H3FX1K

Buying Guide
Summary

Lite-On Inc. LTL2H3FX1K is used in LED Indication - Discrete category where optical output and mechanical fit must be validated in the real enclosure. Key specs include Description (LED RED-ORANGE CLEAR T-1 3/4 T/H), Package/case (Radial), and Mounting (Through Hole).

Selection Notes
  • For LTL2H3FX1K, validate Lens Color (Colorless) under the expected test conditions in your application.
  • Make sure the mounting type (Through Hole) matches how the part will be installed and inspected.
  • Ensure the supply current (20mA) is acceptable for battery life and thermal limits.
  • Verify the optical wavelength (605nm) matches your sensor or visual display requirements.
Alternates & Substitutions
  • For LED Indication - Discrete, validate alternates under worst-case corners rather than assuming typical-only conditions represent production builds.
  • Verify the alternate can be tested with your existing fixtures and acceptance criteria so production verification stays repeatable.
  • When evaluating alternates, treat package/case Radial, supplier package T-1 3/4, mounting Through Hole as non-negotiable unless you are re-spinning the PCB.
  • For optoelectronics, validate brightness and color in your real enclosure and ambient conditions.
FAQ

How do I optimize the life of LTL2H3FX1K?
Provide adequate thermal management and strictly control the drive current to prevent premature degradation.

What Lens Style does LTL2H3FX1K have?
Round with Domed Top

Which Lens Transparency is specified for LTL2H3FX1K?
Clear

Which Wavelength - Peak is listed for LTL2H3FX1K?
611nm

Application Scenarios

For many LED Indication - Discrete designs, Lite-On Inc. LTL2H3FX1K is vetted against electrical margins, thermal headroom, and mechanical integration before the BOM is frozen. In practice, engineers generally validate polarity, resistor/driver choice, and thermal rise to avoid color shift and uneven brightness across production units. For isolation, engineers validate CMTI, propagation delay, and aging; for indicators, they validate readability across ambient light and temperature. In practice, optoelectronics are judged by stability in the enclosure: thermal rise, optics, alignment, and contamination over time. In industrial HMIs, indicators and optical sensing support fast diagnostics under high ambient light and high EMI. Across outdoor equipment, indicators must remain legible under UV exposure, moisture, and condensation, so sealing and derating are treated as part of the design. Across industrial control panels, indicator LEDs provide clear status feedback near motors and switching supplies, where EMI and ambient light can hide weak indicators.

Compatibility Advice
  • In practice, confirm isolation or optical path assumptions in the final layout so noise coupling and safety margins are bounded with the final enclosure and cabling.
  • Before committing to volume builds, validate thermal rise and optical or luminous output under the real duty cycle so performance does not drift after heat soak. This avoids one-off tuning in production.
  • To reduce integration risk, validate optical uniformity and diffuser assumptions because mechanics often dominate perceived output. This reduces the chance that substitutions push hidden limits.
Project Fit
  • Best fit for LED Indication - Discrete when you can validate the key assumptions on the assembled system and keep acceptance criteria measurable.
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