5973301102F

5973301102F

  • Description:LED GREEN CLEAR 1210 SMD
  • Series:597
  • Mfr:Dialight
  • Package:Strip

SKU:de90479a08ec Category: Brand:

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Product Detailed Parameters

  • Description:LED GREEN CLEAR 1210 SMD
  • Series:597
  • Mfr:Dialight
  • Package:Strip
  • Color:Green
  • Configuration:Standard
  • Lens Color:Colorless
  • Lens Transparency:Clear
  • Millicandela Rating:12mcd
  • Lens Style:Square with Flat Top
  • Lens Size:1.70mm
  • Voltage - Forward (Vf) (Typ):2V
  • Current - Test:20mA
  • Viewing Angle:170°
  • Mounting Type:Surface Mount
  • Wavelength - Dominant:565nm
  • Wavelength - Peak:565nm
  • Features:-
  • Package / Case:4-SMD, No Lead
  • Supplier Device Package:1210
  • Size / Dimension:2.54mm L x 3.00mm W
  • Height (Max):1.21mm
  • Grade:-
  • Qualification:-

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5973301102F

Buying Guide
Summary

Dialight 5973301102F 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 GREEN CLEAR 1210 SMD), Package/case (4-SMD, No Lead), and Mounting (Surface Mount).

Selection Notes
  • For 5973301102F, confirm Height (Max) (1.21mm) meets your design constraints and system-level expectations.
  • Make sure the mounting type (Surface Mount) 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 (565nm) matches your sensor or visual display requirements.
Alternates & Substitutions
  • For LED Indication - Discrete, treat alternates as an integration task and validate the assumptions that matter on the assembled system.
  • Compare not just numbers but also the conditions: rails, loads, timing, and temperature points behind the spec table.
  • Begin with the constraints that are hardest to change later: package/case 4-SMD, No Lead, supplier package 1210, mounting Surface Mount.
  • For LEDs/opto parts, match optical output requirements and confirm drive current and thermal limits to avoid early degradation.
FAQ

How do I optimize the life of 5973301102F?
Provide adequate thermal management and strictly control the drive current to prevent premature degradation.

Which Lens Color is listed for 5973301102F?
Colorless

Which Millicandela Rating is specified for 5973301102F?
12mcd

How is 5973301102F packaged?
Strip

Application Scenarios

In the LED Indication - Discrete category, Dialight 5973301102F is often evaluated by how well it fits electrical, thermal, and mechanical constraints in the target system. In practice, within practice, optoelectronics are judged by stability in the enclosure: thermal rise, optics, alignment, and contamination over time. In real deployments, a good opto choice keeps sensing and indication repeatable across lots by staying inside thermal and optical margins. Engineers generally validate polarity, resistor/driver choice, and thermal rise to avoid color shift and uneven brightness across production units. With the fundamentals covered, engineers usually validate the remaining assumptions in the exact use-case and mechanical stack-up. From there, teams map those constraints to the real deployment environment and a practical validation plan. Within networking equipment and data-center racks, high-visibility indicators support fast field diagnostics and reduce mean time to repair during maintenance windows.

Compatibility Advice
  • In practice, validate optical uniformity and diffuser assumptions because mechanics often dominate perceived output before release to production.
  • In board-level integration, validate optical uniformity and diffuser assumptions because mechanics often dominate perceived output with the final enclosure and cabling.
Project Fit
  • Good fit when you can bench-verify Dialight 5973301102F for LED Indication - Discrete integration across temperature and supply corners, and you can control mechanical integration and test coverage so drift and degradation are measurable.
  • Poor fit when mechanical integration is uncertain, making optical assumptions difficult to reproduce, because it becomes difficult to prove margin across production variance.
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