209-3SURSYGW_S530-A3_R2 Bicolor LED Lamp

EVERLIGHT LED — specifications, applications, sourcing support and RFQ.

209-3SURSYGW_S530-A3_R2 Bicolor LED Lamp

RFQ Available Sourcing Support Alternative Matching RoHS
Part Number
209-3SURSYGW_S530-A3_R2
Manufacturer
EVERLIGHT
Package
Through-hole LED lamp; package drawing provided, dimensions in mm; flange height <1.5 mm; general tolerance ±0.25 mm
Category
LED
Product Type
SMD LED

Quick Sourcing Note

209-3SURSYGW_S530-A3_R2 from EVERLIGHT is a bicolor LED lamp in the LED category. The device uses two integral AlGaInP chips: a Brilliant Red SUR chip and a Brilliant Yellow Green SYG chip, housed in a white diffused through-hole LED lamp package with flange height under 1.5 mm. Both colors are rated for 25 mA continuous forward current and 60 mA peak forward current at Ta=25°C. Typical forward voltage is 2.0 V at 20 mA, with 80 degree viewing angle, red/yellow-green indicator use, panel indication, and dual-color status display applications.

Specifications

TypeDescription
Part Number209-3SURSYGW_S530-A3_R2
ManufacturerEVERLIGHT
Product TypeSMD LED
CategoryLED
Package / CaseThrough-hole LED lamp; package drawing provided, dimensions in mm; flange height <1.5 mm; general tolerance ±0.25 mm
LED ConfigurationTwo integral chips
Chip Material - SURAlGaInP
Emitted Color - SURBrilliant Red
Chip Material - SYGAlGaInP
Emitted Color - SYGBrilliant Yellow Green
Resin ColorWhite Diffused
Continuous Forward Current - SUR25 mA, Ta=25°C
Continuous Forward Current - SYG25 mA, Ta=25°C
Peak Forward Current - SUR60 mA, duty 1/10 @ 1 kHz, Ta=25°C
Peak Forward Current - SYG60 mA, duty 1/10 @ 1 kHz, Ta=25°C
Reverse Voltage5 V, Ta=25°C
Power Dissipation - SUR60 mW, Ta=25°C
Power Dissipation - SYG60 mW, Ta=25°C
Operating Temperature-40 to +85 °C
Storage Temperature-40 to +100 °C
Soldering Temperature260 °C for 5 sec
Forward Voltage - SURmin 1.7 V, typ 2.0 V, max 2.4 V at IF=20 mA, Ta=25°C
Forward Voltage - SYGmin 1.7 V, typ 2.0 V, max 2.4 V at IF=20 mA, Ta=25°C
Reverse Current - SURmax 10 μA at VR=5 V, Ta=25°C
Reverse Current - SYGmax 10 μA at VR=5 V, Ta=25°C
Luminous Intensity - SURmin 25 mcd, typ 50 mcd at IF=20 mA, Ta=25°C
Luminous Intensity - SYGmin 10 mcd, typ 20 mcd at IF=20 mA, Ta=25°C
Viewing Angle - SURtyp 80 deg, 2θ1/2, IF=20 mA, Ta=25°C
Viewing Angle - SYGtyp 80 deg, 2θ1/2, IF=20 mA, Ta=25°C
Peak Wavelength - SURtyp 632 nm at IF=20 mA, Ta=25°C
Peak Wavelength - SYGtyp 575 nm at IF=20 mA, Ta=25°C
Dominant Wavelength - SURtyp 624 nm at IF=20 mA, Ta=25°C
Dominant Wavelength - SYGtyp 573 nm at IF=20 mA, Ta=25°C
Spectrum Radiation Bandwidth - SURtyp 20 nm at IF=20 mA, Ta=25°C
Spectrum Radiation Bandwidth - SYGtyp 20 nm at IF=20 mA, Ta=25°C
Datasheet Statusrequest_only

Product Overview

The 209-3SURSYGW_S530-A3_R2 is an EVERLIGHT bicolor LED lamp built with two integral chips. The SUR channel emits Brilliant Red using AlGaInP material, while the SYG channel emits Brilliant Yellow Green, also using AlGaInP material. The resin color is white diffused, supporting a visibly blended through-hole indicator format.

Electrical ratings are specified at Ta=25°C. Each color channel supports 25 mA continuous forward current, 60 mA peak forward current at duty 1/10 and 1 kHz, and 60 mW power dissipation. Reverse voltage is rated at 5 V, and reverse current is limited to 10 μA maximum at VR=5 V.

At IF=20 mA and Ta=25°C, both channels have 1.7 V minimum, 2.0 V typical, and 2.4 V maximum forward voltage. The SUR channel provides 25 mcd minimum and 50 mcd typical luminous intensity, while the SYG channel provides 10 mcd minimum and 20 mcd typical luminous intensity. The package drawing uses millimeter dimensions, with general tolerance ±0.25 mm and flange height below 1.5 mm.

Key Features

  • Bicolor LED lamp with two integral chips
  • SUR channel emits Brilliant Red light
  • SYG channel emits Brilliant Yellow Green light
  • AlGaInP chip material for both color channels
  • White diffused resin through-hole lamp package
  • 25 mA continuous forward current per channel
  • 60 mA peak forward current per channel
  • Typical 2.0 V forward voltage at 20 mA
  • Typical 80 degree viewing angle for both channels
  • Operating temperature range from -40 to +85 °C

Typical Applications

  • Dual-color status indicators
  • Panel indicator lamps
  • Mode or fault indication
  • Red and yellow-green signal displays
  • Through-hole LED assemblies
  • Equipment front-panel indicators

Procurement Notes

When requesting a quote for 209-3SURSYGW_S530-A3_R2, buyers should confirm the manufacturer, package or case, required quantity, target date code, compliance documents, packing method, destination country and expected delivery schedule.

If alternatives are acceptable, buyers should share the approved vendor list, required electrical or optical limits, package constraints and qualification requirements. Any alternative part should be reviewed by the buyer's engineering team before production use.

For LED and optoelectronic sourcing, brightness bin, wavelength or color temperature bin, forward voltage range, viewing angle, moisture sensitivity level and soldering process limits may affect final selection, availability and lead time.

FAQ

What LED configuration does 209-3SURSYGW_S530-A3_R2 use?

209-3SURSYGW_S530-A3_R2 uses two integral chips in a bicolor LED lamp structure. The SUR chip emits Brilliant Red, and the SYG chip emits Brilliant Yellow Green.

What are the forward voltage ratings for both colors?

At IF=20 mA and Ta=25°C, both the SUR and SYG channels have the same forward voltage range: 1.7 V minimum, 2.0 V typical, and 2.4 V maximum.

What current ratings apply to each LED channel?

Each channel is rated for 25 mA continuous forward current at Ta=25°C. Peak forward current is 60 mA per channel under duty 1/10 at 1 kHz and Ta=25°C.

Technical Review & Sourcing Note

Prepared by LDeepAI Component Sourcing Team. Reviewed for RFQ, documentation and alternative sourcing use. Last updated: July 30, 2026.

This page is based on manufacturer datasheet information and LDeepAI sourcing review. Specifications should be verified against the official manufacturer datasheet before final procurement or design approval. Final electrical, optical and reliability approval should be confirmed by the buyer's engineering team.

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