XL-3216PDC SMD Phototransistor Receiver

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

XL-3216PDC SMD Phototransistor Receiver

RFQ Available Sourcing Support Alternative Matching RoHS
Part Number
XL-3216PDC
Manufacturer
XINGLIGHT
Package
1206 SMD, 3.2 x 1.6 x 0.8 mm
Category
LED
Product Type
SMD LED

Quick Sourcing Note

XL-3216PDC from XINGLIGHT is an LED-category SMD phototransistor receiver in a 1206 surface-mount package measuring 3.2 x 1.6 x 0.8 mm. The device uses black colloid and provides collector, base, and emitter terminals. Key optical and electrical parameters include 880 nm typical peak sensitive wavelength, 700 nm to 1100 nm spectral bandwidth, 30 V maximum collector-emitter voltage, 5 V maximum emitter-collector voltage, 30 nA maximum collector dark current, and 15 µs typical rise and fall times. Assembly limits include 260°C reflow for 6 s, 300°C manual soldering for 3 s, and a maximum of two reflow cycles.

Specifications

TypeDescription
Part NumberXL-3216PDC
ManufacturerXINGLIGHT
Product TypeSMD LED
CategoryLED
Package Case1206 SMD, 3.2 x 1.6 x 0.8 mm
Outline Dimensions3.2 x 1.6 x 0.8 mm; L/W/H
Package Style1206 SMD; surface-mount device
Colloid ColorBlack colloid
Moisture Sensitivity LevelMSL 3-4
RoHS ComplianceComplied with RoHS Directive; environmental protection products
Collector-Emitter Voltage30 V max; Ta=25°C
Emitter-Collector Voltage5 V max; Ta=25°C
Operating Ambient Temperature-40°C to +85°C; Ta=25°C absolute maximum rating table
Storage Ambient Temperature-40°C to +85°C; Ta=25°C absolute maximum rating table
Reflow Soldering Condition260°C, 6 s; Tsol
Manual Soldering Condition300°C, 3 s; Tsol
Collector-Emitter Breakdown Voltage85 V min; ICEO=100 µA, Ee=0 mW/cm², Ta=25°C
Emitter-Collector Breakdown Voltage8.2 V min; IECO=10 µA, Ee=0 mW/m², Ta=25°C
Collector-Base Breakdown Voltage85 V min; ICBO=100 µA, Ee=0 mW/cm², Ta=25°C
Collector Dark Current30 nA max; VCE=20 V, Ee=0 mW/cm², Ta=25°C
Collector-Emitter Saturation Voltage0.3 V max; IC=2 mA, IB=100 µA, Ee=1 mW/cm², Ta=25°C
Peak Sensitive Wavelength880 nm typ; Ta=25°C
Current Amplification Factor200 min, 2300 max; VCE=5 V, IC=2 mA, Ta=25°C
Photocurrent 1300 µA min, 400 µA max; Ee=1 mW/cm², λp=850 nm, VCE=5 V, Ta=25°C
Photocurrent 2500 µA min, 600 µA max; Ee=1 mW/cm², λp=940 nm, VCE=5 V, Ta=25°C
Spectral Bandwidth700 nm min, 1100 nm max; λ0.5, Ta=25°C
Rise Time15 µs typ; VCE=5 V, IC=1 mA, RL=1000 Ω, Ta=25°C
Fall Time15 µs typ; VCE=5 V, IC=1 mA, RL=1000 Ω, Ta=25°C
Photocurrent Grading0.3 mA min, 0.6 mA max; Code IC6-12
Terminal ConfigurationCollector, Base, Emitter; outline dimensions drawing
Dimensional Tolerance±0.10 mm; unless otherwise specified
Tape/Reel Dimensional Tolerance±0.1 mm; belt and disk dimensions
Maximum Hand Soldering Iron Power<30 W; hand soldering recommended only for repair/rework
Hand Soldering Limit<300°C, <3 s per terminal, one time only; manual welding
Maximum Reflow Cycles2 times max; reflow soldering
Cleaning ConditionAlcohol cleaning under 30°C for 3 min or 50°C for 30 s; after soldering
Ultrasonic Cleaning Power300 W max; pretest recommended before cleaning
Unopened Storage Condition≤30°C, <60% RH, use within 1 year; before opening moisture-proof anti-electrostatic package
Opened Storage Condition≤30°C, <40% RH, solder within 168 hours / 7 days; after opening package
Recommended Workshop Condition≤30°C, <60% RH; product operation/workshop environment
Baking Condition60±5°C for 24 hours; if moisture absorbent faded or storage time exceeded
Datasheet Statusrequest_only

Product Overview

XL-3216PDC is a XINGLIGHT SMD phototransistor receiver in the LED category. It is supplied in a 1206 SMD package with 3.2 x 1.6 x 0.8 mm outline dimensions, black colloid, and collector, base, and emitter terminal configuration. Unless otherwise specified, dimensional tolerance is ±0.10 mm.

Electrical ratings include 30 V maximum collector-emitter voltage and 5 V maximum emitter-collector voltage at Ta=25°C. Breakdown ratings include 85 V minimum collector-emitter breakdown voltage, 8.2 V minimum emitter-collector breakdown voltage, and 85 V minimum collector-base breakdown voltage under the stated datasheet test conditions.

Optical response is specified with an 880 nm typical peak sensitive wavelength and 700 nm to 1100 nm spectral bandwidth. Photocurrent is specified at 300 µA to 400 µA at 850 nm and 500 µA to 600 µA at 940 nm, both at Ee=1 mW/cm², VCE=5 V, and Ta=25°C. The part is suited to infrared receiver and optical sensing circuits where these response bands and phototransistor timing limits apply.

Key Features

  • 1206 SMD package, 3.2 x 1.6 x 0.8 mm
  • Black colloid SMD phototransistor receiver construction
  • Collector, base, and emitter terminal configuration
  • 880 nm typical peak sensitive wavelength
  • 700 nm to 1100 nm specified spectral bandwidth
  • 30 V maximum collector-emitter voltage at Ta=25°C
  • 30 nA maximum collector dark current
  • 15 µs typical rise and fall times
  • MSL 3-4 moisture sensitivity level
  • RoHS Directive compliance stated in datasheet

Typical Applications

  • Infrared receiver circuits
  • Optical sensing modules
  • Reflective object detection
  • Optical interruption sensing
  • 850 nm emitter receiver pairing
  • 940 nm emitter receiver pairing
  • Compact surface-mount sensor assemblies

Procurement Notes

When requesting a quote for XL-3216PDC, 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.

Alternatives

LITEON

LTP-C1503

Cross-reference candidate from XINGLIGHT replacement table; validate package, optical/electrical parameters, binning and sourcing requirements before substitution.

LITEON

PD15-21B/TR8

Cross-reference candidate from XINGLIGHT replacement table; validate package, optical/electrical parameters, binning and sourcing requirements before substitution.

Application Verification Recommended

FAQ

What type of device is XL-3216PDC?

XL-3216PDC is specified as a XINGLIGHT SMD phototransistor receiver in the LED category. It uses a 1206 surface-mount package with black colloid and collector, base, and emitter terminals.

What package size does XL-3216PDC use?

The datasheet specifies a 1206 SMD package with outline dimensions of 3.2 x 1.6 x 0.8 mm for length, width, and height. The stated general dimensional tolerance is ±0.10 mm unless otherwise specified.

What optical wavelength range is specified?

XL-3216PDC has a typical peak sensitive wavelength of 880 nm at Ta=25°C. Its spectral bandwidth is specified from 700 nm minimum to 1100 nm maximum under the λ0.5 condition.

What soldering limits apply to this part?

The datasheet lists 260°C for 6 s reflow soldering and 300°C for 3 s manual soldering. Handling notes also limit reflow to two cycles maximum and hand soldering to less than 300°C for less than 3 s per terminal, one time only.

How should opened packages be stored before soldering?

After opening the package, the datasheet specifies storage at ≤30°C and less than 40% RH, with soldering within 168 hours or 7 days. Baking is specified at 60±5°C for 24 hours if the moisture indicator faded or storage time was exceeded.

Technical Review & Sourcing Note

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