LW T673-M1N1-HN0-U626-2-R18-Z-KS

LW T673-M1N1-HN0-U626-2-R18-Z-KS

  • Description:LED TOPLED SMD
  • Series:TOPLED
  • Mfr:ams-OSRAM USA INC.
  • Package:Tape & Reel (TR)

SKU:8230d2c08dde Category: Brand:

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Product Detailed Parameters

  • Description:LED TOPLED SMD
  • Series:TOPLED
  • Mfr:ams-OSRAM USA INC.
  • Package:Tape & Reel (TR)
  • Color:White
  • Configuration:-
  • Lens Color:Yellow
  • Lens Transparency:Diffused
  • Millicandela Rating:26.75mcd
  • Lens Style:Round with Flat Top
  • Lens Size:2.40mm Dia
  • Voltage - Forward (Vf) (Typ):2.8V
  • Current - Test:2mA
  • Viewing Angle:120°
  • Mounting Type:Surface Mount
  • Wavelength - Dominant:-
  • Wavelength - Peak:-
  • Features:-
  • Package / Case:2-PLCC
  • Supplier Device Package:2-PLCC
  • Size / Dimension:3.20mm L x 2.80mm W
  • Height (Max):2.10mm
  • Grade:-
  • Qualification:-

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LW T673-M1N1-HN0-U626-2-R18-Z-KS

Buying Guide
Summary

ams-OSRAM USA INC. LW-T673-M1N1-HN0-U626-2-R18-Z-KS is selected in LED Indication - Discrete category when brightness/color and thermal behavior need to remain consistent over time. Key specs include Description (LED TOPLED SMD), Package/case (2-PLCC), and Mounting (Surface Mount).

Selection Notes
  • For LW-T673-M1N1-HN0-U626-2-R18-Z-KS, verify the supply current (2mA) under your operating conditions and modes.
  • Double-check Lens Style (Round with Flat Top) against your specification and operating conditions.
  • Confirm the mounting type (Surface Mount) matches your assembly process and reliability requirements.
Alternates & Substitutions
  • For LED Indication - Discrete, treat alternates as an integration task and validate the assumptions that matter on the assembled system.
  • Start with mechanical equivalence and keep package/case 2-PLCC, supplier package 2-PLCC, mounting Surface Mount aligned so the alternate is footprint-safe.
  • Confirm the alternate stays inside the electrical and environmental envelope, not only the headline spec.
  • For LEDs/opto parts, match optical output requirements and confirm drive current and thermal limits to avoid early degradation.
FAQ

Which supply current is specified for LW-T673-M1N1-HN0-U626-2-R18-Z-KS?
2mA

What is the Millicandela Rating of LW-T673-M1N1-HN0-U626-2-R18-Z-KS?
26.75mcd

Can you confirm the Color for LW-T673-M1N1-HN0-U626-2-R18-Z-KS?
White

Which Lens Style is specified for LW-T673-M1N1-HN0-U626-2-R18-Z-KS?
Round with Flat Top

Application Scenarios

In real deployments, selecting ams-OSRAM USA INC. LW-T673-M1N1-HN0-U626-2-R18-Z-KS for LED Indication - Discrete usually comes down to meeting the system constraints that matter most: limits, interfaces, and testability in the real build. They emit, detect, or modulate light for indication, sensing, and isolation in systems that span electrical noise and temperature extremes. Designers generally verify wavelength/color, intensity, viewing angle, response behavior, and thermal limits so performance remains stable in the enclosure. In consumer products, optical feedback enables compact UI features while managing thermal rise. In industrial control panels, indicator LEDs provide clear status feedback near motors and switching supplies, where EMI and ambient light can hide weak indicators. In automotive dashboards and interior modules, LED indication must remain readable across temperature extremes and vibration while meeting uniformity and lifetime targets. In many projects, this is what turns a good prototype into a reliable production design.

Compatibility Advice
  • Before release to production, validate CTR or optical transfer behavior across temperature and aging so margins remain stable over life. This keeps qualification evidence reproducible later.
  • For second-source planning, validate CTR or optical transfer behavior across temperature and aging so margins remain stable over life. This keeps integration from depending on typical-only conditions.
Project Fit
  • Good fit when you can measure and verify ams-OSRAM USA INC. LW-T673-M1N1-HN0-U626-2-R18-Z-KS for LED Indication - Discrete integration under realistic load and noise, and you need predictable optical or isolation behavior that can be validated across temperature and aging.
  • Poor fit when transfer behavior and drift cannot be measured, making long-term margins fragile, because the behavior cannot be verified in a repeatable way.
LW T673-M1N1-HN0-U626-2-R18-Z-KSLW T673-M1N1-HN0-U626-2-R18-Z-KS

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