XLM302X-E Random-Phase Triac Driver Photocouple

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

XLM302X-E Random-Phase Triac Driver Photocouple

RFQ Available Sourcing Support Alternative Matching RoHS
Part Number
XLM302X-E
Manufacturer
XINGLIGHT
Package
SOP4; package outline dimensions referenced but numeric dimensions not present in provided text
Category
LED
Product Type
SMD LED

Quick Sourcing Note

XLM302X-E from XINGLIGHT is an LED-category random-phase triac driver photocouple supplied in an SOP4 package. Datasheet parameters identify 400 V peak breakdown and off-state terminal voltage ratings for the XLM302X variant, 3750 Vrms input-to-output isolation, and operation across -55 to +110 °C by thermal rating. Electrical limits include 60 mA input forward current, 6 V input reverse voltage, 100 mA RMS turn-on current, and 1 A peak repetitive surge current. It is suited to isolated triac triggering, AC load switching interfaces, optically isolated control circuits, and SOP4 surface-mount assemblies using the stated reflow, wave, or hand-soldering limits.

Specifications

TypeDescription
Part NumberXLM302X-E
ManufacturerXINGLIGHT
Product TypeSMD LED
CategoryLED
Package / CaseSOP4; package outline dimensions referenced but numeric dimensions not present in provided text
Peak Breakdown Voltage400 V; XLM302X variant
Isolation Voltage3750 Vrms; input-to-output isolation
Operating Temperature-55 to +100 °C; feature summary
PackageSOP4; case / package type
Molding Compound FlammabilityUL 94V-0; mechanical data
Terminal FinishMatte tin-plated leads; solderability per MIL-STD-202 Method 208
Shipping Quantity3000 pcs/tape & reel; SOP4 ordering information
Input Forward Current60 mA; maximum rating, TA=25°C unless otherwise specified
Input Reverse Voltage6 V; maximum rating, TA=25°C unless otherwise specified
Input Power Dissipation100 mW; maximum rating, TA=25°C unless otherwise specified
Input Power Dissipation Derating3.8 mW/°C; above TA=85°C
Output Power Dissipation300 mW; maximum rating, TA=25°C unless otherwise specified
Output Power Dissipation Derating7.4 mW/°C; above TA=85°C
Output Off-State Terminal Voltage400 V; VDRM, XLM302X
Peak Repetitive Surge Current1 A; ITSM, pulse width=100 us, 120 pps
Turn-On Current RMS100 mA; IT(RMS), maximum rating
Total Power Dissipation330 mW; PTOT thermal characteristic
Isolation Voltage, VISO3750 Vrms; 40-60% RH, AC for 1 minute
Operating Temperature Range-55 to +110 °C; TOPR thermal characteristic
Storage Temperature Range-55 to +125 °C; TSTG thermal characteristic
Soldering Temperature260 °C; TSOL, for 10 seconds
Forward VoltageTyp 1.23 V, Max 1.5 V; VF, IF=20 mA, TA=25°C
Reverse Leakage CurrentMax 10 uA; IR, VR=6 V, TA=25°C
Peak Blocking CurrentMax 100 nA; IDRM, VDRM=rated VDRM, IF=0 mA, TA=25°C
Peak On-State VoltageMax 2.5 V; VTM, ITM=100 mA, IF=rated IFT, TA=25°C
Critical Rate of Rise of Off-State VoltageMin 100 V/us; dv/dt, XLM302X, VPEAK=rated VDRM, IF=0 mA
LED Trigger Current, XLM3020Max 30 mA; main terminal voltage=3 V
LED Trigger Current, XLM3021Max 15 mA; main terminal voltage=3 V
LED Trigger Current, XLM3022Max 10 mA; main terminal voltage=3 V
LED Trigger Current, XLM3023Max 5 mA; main terminal voltage=3 V
LED Trigger Current, XLM3024Max 3 mA; main terminal voltage=3 V
Holding CurrentTyp 250 uA; IH, TA=25°C unless otherwise specified
Reflow Preheat Temperature150 to 200 °C; Ts, reflow soldering
Reflow Preheat Time60 to 120 s; ts, reflow soldering
Reflow Ramp-Up RateMax 3 °C/s; TL to TP
Reflow Liquidus Temperature217 °C; TL
Reflow Time Above Liquidus60 to 150 s; tL, above TL
Reflow Peak Temperature260 °C; TP
Reflow Peak TimeMax 30 s; tp, temperature between TP-5 and TP
Reflow Ramp-Down RateMax 6 °C/s; TP to TL
Maximum Reflow Cycles3 times; recommended reflow soldering limit
Wave Soldering Peak Temperature260 °C; TP, wave soldering
Hand Soldering Temperature360 +5 °C; within 3 s, for product rework or sample testing
Reel Quantity3000 pcs/reel; SOP4 reel packing
Box Quantity6000 pcs/box; 2 reels per box
Carton Quantity60000 pcs/carton; 10 boxes per carton
Datasheet Statusrequest_only

Product Overview

XLM302X-E is a XINGLIGHT random-phase triac driver photocouple listed under the LED category. The device uses an SOP4 case and is specified for input-to-output isolation of 3750 Vrms, with the same isolation value also rated as VISO under 40-60% RH for one minute AC testing. The XLM302X variant carries 400 V peak breakdown voltage and 400 V output off-state terminal voltage ratings.

Input-side maximum ratings include 60 mA forward current, 6 V reverse voltage, and 100 mW input power dissipation with 3.8 mW/°C derating above 85 °C. Output-side limits include 300 mW output power dissipation, 7.4 mW/°C derating above 85 °C, 100 mA RMS turn-on current, 1 A peak repetitive surge current at 100 us pulse width and 120 pps, and 330 mW total power dissipation.

Assembly data covers SOP4 tape-and-reel packing at 3000 pieces per reel, 6000 pieces per box, and 60000 pieces per carton. Reflow guidance specifies 150 to 200 °C preheat, 217 °C liquidus, 260 °C peak, and a maximum of three reflow cycles. These facts support use in isolated AC control and triac triggering designs.

Key Features

  • Random-phase triac driver photocouple product type
  • SOP4 case with referenced package outline dimensions
  • 400 V XLM302X peak breakdown voltage
  • 3750 Vrms input-to-output isolation rating
  • -55 to +110 °C operating temperature range
  • UL 94V-0 molding compound flammability rating
  • Matte tin-plated leads per MIL-STD-202 Method 208
  • 100 mA RMS turn-on current maximum rating
  • Minimum 100 V/us off-state dv/dt rating
  • 260 °C reflow peak temperature limit
  • 3000 pieces per SOP4 reel packing

Typical Applications

  • Isolated triac triggering
  • AC load switching interfaces
  • Random-phase AC control circuits
  • Optically isolated output control
  • SOP4 surface-mount assemblies
  • Reflow-soldered control boards
  • Wave-soldered sample assemblies

Procurement Notes

When requesting a quote for XLM302X-E, 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 type of device is XLM302X-E?

XLM302X-E is described in the extracted datasheet facts as a XINGLIGHT random-phase triac driver photocouple in the LED category. The package is SOP4, with package outline dimensions referenced but numeric dimensions not provided in the supplied text.

What isolation rating is specified for XLM302X-E?

The extracted facts list 3750 Vrms input-to-output isolation. The maximum ratings also specify VISO as 3750 Vrms under 40-60% relative humidity with AC applied for one minute.

What are the key output-side ratings?

For the XLM302X variant, the output off-state terminal voltage is 400 V. Other output-side facts include 1 A peak repetitive surge current, 100 mA RMS turn-on current, 300 mW output power dissipation, and maximum 2.5 V peak on-state voltage.

What soldering profile limits are provided?

Reflow soldering data includes 150 to 200 °C preheat, 60 to 120 s preheat time, 217 °C liquidus, 60 to 150 s above liquidus, 260 °C peak temperature, and a maximum of three reflow cycles.

Technical Review & Sourcing Note

Prepared by LDeepAI Component Sourcing Team. Reviewed for RFQ, documentation and alternative sourcing use. Last updated: July 3, 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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