HLMP-EG30-PS0DD

HLMP-EG30-PS0DD

  • Description:LED RED CLEAR T-1 3/4 T/H
  • Series:-
  • Mfr:Broadcom Limited
  • Package:Tape & Box (TB)

SKU:86b4bb79ca8d Category: Brand:

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Product Detailed Parameters

  • Description:LED RED CLEAR T-1 3/4 T/H
  • Series:-
  • Mfr:Broadcom Limited
  • Package:Tape & Box (TB)
  • Color:Red
  • Configuration:Standard
  • Lens Color:Colorless
  • Lens Transparency:Clear
  • Millicandela Rating:1690mcd
  • Lens Style:Round with Domed Top
  • Lens Size:5mm, T-1 3/4
  • Voltage - Forward (Vf) (Typ):1.9V
  • Current - Test:20mA
  • Viewing Angle:30°
  • Mounting Type:Through Hole
  • Wavelength - Dominant:626nm
  • Wavelength - Peak:635nm
  • Features:-
  • Package / Case:Radial
  • Supplier Device Package:T-1 3/4
  • Size / Dimension:-
  • Height (Max):8.91mm
  • Grade:-
  • Qualification:-

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HLMP-EG30-PS0DD

Buying Guide
Summary

Broadcom Limited HLMP-EG30-PS0DD 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 CLEAR T-1 3/4 T/H), Package/case (Radial), and Mounting (Through Hole).

Selection Notes
  • For HLMP-EG30-PS0DD, verify the optical wavelength (626nm) matches your sensor or visual display requirements.
  • Make sure Voltage - Forward (Vf) (Typ) (1.9V) aligns with your design targets and verification plan.
  • Ensure the package/case (Radial) and land pattern match your PCB layout before procurement.
  • Check the supply current (20mA) in your power budget and thermal plan.
Alternates & Substitutions
  • In LED Indication - Discrete, confirm that alternates preserve startup states and fault behavior so system behavior does not change quietly.
  • Start with mechanical equivalence and keep package/case Radial, supplier package T-1 3/4, mounting Through Hole aligned so the alternate is footprint-safe.
  • For LEDs/opto parts, match optical output requirements and confirm drive current and thermal limits to avoid early degradation.
  • If substitutions are likely, write down the non-negotiables and re-check them when the supply chain changes, not after field failures.
FAQ

What details help you quote HLMP-EG30-PS0DD quickly?
Send the part number (HLMP-EG30-PS0DD), quantity, target delivery date, and any required packaging or documentation.

Can you confirm the package/case for HLMP-EG30-PS0DD?
Radial

Can you confirm the mounting type for HLMP-EG30-PS0DD?
Through Hole

What Wavelength - Peak is listed for HLMP-EG30-PS0DD?
635nm

Application Scenarios

For many LED Indication - Discrete designs, Broadcom Limited HLMP-EG30-PS0DD is vetted against electrical margins, thermal headroom, and mechanical integration before the BOM is frozen. In practice, engineers typically 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. Within outdoor equipment, indicators must remain legible under UV exposure, moisture, and condensation, so sealing and derating are treated as part of the design. In practice, within 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, validate optical uniformity and diffuser assumptions because mechanics often dominate perceived output with the real source, load, and wiring.
  • In practice, confirm isolation or optical path assumptions in the final layout so noise coupling and safety margins are bounded across temperature and supply corners.
Project Fit
  • Good fit when you can measure and verify Broadcom Limited HLMP-EG30-PS0DD for LED Indication - Discrete integration with the real wiring and cabling, and you can control mechanical integration and test coverage so drift and degradation are measurable.
  • Poor fit when thermal rise and aging are not validated, increasing field brightness or coupling drift risk, because integration risk stays high when key margins cannot be measured.
HLMP-EG30-PS0DDHLMP-EG30-PS0DD

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