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Lensed Fiber Array for PIC Edge Coupling – 1 to 48 Channels

Categories Lensed Fiber Array
Beam Waist: 2–5 µm
Channel Count: 1 / 2 / 4 / 8 / 12 / 16 / 24 / 32 / 48
Working Distance: 10–30 µm
Insertion Loss: ≤1.2 dB, typical 1.0 dB
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Lensed Fiber Array for PIC Edge Coupling – 1 to 48 Channels

1. Product Title

Lensed Fiber Array for PIC Edge Coupling – 1 to 48 Channels

2. Product Overview

GracyFiber Lensed Fiber Arrays are precision multi-channel optical interfaces designed for efficient coupling between optical fibers and photonic integrated circuits (PICs). Micro-lenses integrated at the fiber end face provide controlled beam shaping and mode matching while expanding alignment tolerance for edge-coupling architectures. Available in 1 to 48 channels, the product supports SM, MM, and PM fiber configurations and offers customizable beam waist, working distance, core pitch, polishing angle, fiber length, and connector options for silicon photonics, optical engines, CPO, and high-speed optical interconnect applications.

3. Key Features
  • 1 to 48 channel configurations
  • Micro-lens structure designed for PIC edge coupling
  • Beam waist: 2–5 µm, customizable to match PIC mode field diameter
  • Working distance: 10–30 µm
  • Compatible with single-mode, multimode, and polarization-maintaining fibers
  • Expanded alignment tolerance and excellent channel uniformity
  • Insertion loss ≤1.2 dB, typical 1.0 dB
  • Channel-dependent core pitch and precision pitch tolerance

The supplied product description also specifies low optical crosstalk, high manufacturing repeatability, and optimization for photonic-chip edge coupling. No numerical crosstalk specification is provided.

4. Applications
  • Optical Engines
  • Silicon Photonics
  • LiNbO₃ Modulators
  • Co-Packaged Optics (CPO)
  • AI / GPU Optical Interconnect
  • High-Speed Data Center Networks

These applications are explicitly listed in the supplied product documentation.

5. FAQ
What is a lensed fiber array used for?

A lensed fiber array provides a multi-channel optical interface between fibers and photonic devices. In this product, micro-lenses are integrated at the fiber end faces to provide mode matching and increase alignment tolerance for edge coupling to photonic integrated circuits.

What beam waist and working distance are available?

The specified beam waist is 2–5 µm and can be customized to match the PIC mode field diameter. The specified working distance is 10–30 µm.

Is the Lensed Fiber Array compatible with PM fiber?

The supplied product description states that the Lensed Fiber Array is compatible with SM, MM, and PM fibers. Specific PM fiber types are [Need confirmation].

What is the insertion loss of the Lensed Fiber Array?

The supplied specification lists an insertion loss of ≤1.2 dB, with 1.0 dB typical. Return loss is specified as UPC ≥40 dB and APC ≥50 dB.

Can the beam size, polishing angle and fiber length be customized?

Yes. The documentation specifically states that the beam waist can be customized to match the PIC MFD, polishing angles can be customized, and fiber length can also be customized.

6. Technical Specifications
General Specifications
ParameterSpecification
Product TypeLensed Fiber Array
Channel Count1 / 2 / 4 / 8 / 12 / 16 / 24 / 32 / 48
Operating Wavelength[Need confirmation]
Substrate MaterialPyrex / Tempax / Quartz; Silicon [Need confirmation]
Lid OptionLid
Polish Angle8° / 90° or customized, e.g. 12° / 21°
Polish Angle Tolerance±0.5°
Beam Waist / Spot Size2–5 µm
Beam Waist CustomizationCustomizable to match PIC MFD
Working Distance10–30 µm
Mode MatchingOptimized for PIC
Insertion Loss≤1.2 dB, typical 1.0 dB
Return LossUPC ≥40 dB; APC ≥50 dB
Fiber CompatibilitySM / MM / PM
Fiber Coating / Protection250 µm / 900 µm loose tube / ribbon
Fiber Length100 ±10 cm or customized
ConnectorFC / LC / SC / E2000 / MT / MPO / MMC
Operating Temperature-5°C to +65°C
Storage Temperature-40°C to +85°C

The main optical and mechanical specifications above are taken from the supplied Lensed Fiber Array specification table.

Core Pitch by Channel Count
Channel CountCore Pitch
1—
2250 µm
4127 / 350 µm
8127 / 250 µm
12127 / 250 µm
16127 µm
24127 µm
32127 µm
48127 µm

The supplied specification table shows channel-dependent core-pitch configurations, including 127/350 µm for the 4-channel version.

Core Pitch Tolerance
Channel CountCore Pitch Tolerance
1–8CH±0.3 µm
12–32CH±0.5 µm
48CH±0.7 µm
Fiber Array Dimensions
ChannelsWidth WHeight HLength L
12.5 mm2.5 mm10 mm
22.5 mm2.5 mm10 mm
42.5 mm2.5 mm10 mm
82.5 mm2.5 mm10 mm
123.5 mm2.5 mm10 mm
163.5 mm2.5 mm12 mm
245.7 mm2.5 mm12 mm
325.7 mm2.5 mm12 mm
489 mm2.5 mm12 mm

The dimensional matrix is provided in the page 3 specification table.

7. Configuration & Customization Options
Available Channel Counts
  • 1CH
  • 2CH
  • 4CH
  • 8CH
  • 12CH
  • 16CH
  • 24CH
  • 32CH
  • 48CH
Core Pitch

Available according to channel configuration:

  • 127 µm
  • 250 µm
  • 350 µm in the documented 4CH 127/350 configuration
Beam Waist

Available Options:

  • 2–5 µm
  • Customizable to match PIC MFD
Working Distance
  • 10–30 µm
Polish Angle

Available Options:

  • 8°
  • 90°
  • Customized angles such as 12° and 21°
  • Other angles: [Need confirmation]
Fiber Type

The product is documented as compatible with:

  • Single-mode fiber
  • Multimode fiber
  • Polarization-maintaining fiber

The specification table also lists:

  • OM1
  • OM2
  • OM3
  • OM4
  • OM5
  • G67A1 [Need confirmation]
  • A2
  • B3
  • Customized fiber

Fiber Protection

Available Options:

  • 250 µm fiber
  • 900 µm loose tube
  • Ribbon
Fiber Length
  • Standard: 100 ±10 cm
  • Customized length available
Connector

Available Options:

  • FC
  • LC
  • SC
  • E2000
  • MT
  • MPO
  • MMC
Lid Configuration
  • Lid

Other housing or lidless configurations: [Need confirmation]

Operating Wavelength

[Need confirmation — conflicting values in the supplied Word and Excel specifications]

8. Detailed Product Description

The GracyFiber Lensed Fiber Array is designed to provide a controlled optical interface between multiple fibers and photonic integrated devices. Unlike a conventional polished fiber array, this configuration integrates micro-lens structures at the fiber end faces to shape the emitted or received optical beam before it reaches the photonic chip.

This optical structure is particularly relevant to edge-coupled PIC architectures, where fiber-to-chip coupling depends on mode-field matching, working distance, beam size, and mechanical alignment. The documented Lensed FA supports a 2–5 µm beam waist, customizable to match the PIC mode field diameter, together with a 10–30 µm working distance.

Channel configurations range from 1 to 48 fibers, with core-pitch options determined by channel count. The array uses precision pitch control with specified tolerances ranging from ±0.3 µm to ±0.7 µm. These parameters define the physical relationship between adjacent optical channels and the corresponding interfaces on the photonic device.

The product supports multiple polishing geometries, including 8° and 90°, as well as customized angles. It is also described as compatible with single-mode, multimode, and polarization-maintaining fibers, enabling the optical interface to be configured according to the corresponding photonic platform.

Specified optical performance includes insertion loss of ≤1.2 dB with 1.0 dB typical, together with return loss of ≥40 dB for UPC and ≥50 dB for APC.

The Lensed Fiber Array is therefore intended for photonic systems where multi-channel fiber alignment, beam shaping, mode matching, and controlled fiber-to-chip coupling are required in a compact interface.

9. Application Scenario
Application 1 — Silicon Photonics Edge Coupling

In a silicon photonics package, multiple optical channels must be coupled between the external fibers and the PIC edge interface.

The Lensed Fiber Array provides an organized multi-channel fiber interface while the integrated micro-lenses control the optical beam between the fibers and chip.

The customizable 2–5 µm beam waist allows the interface to be configured according to the PIC mode-field requirement, while the 10–30 µm working distance defines the optical spacing between the lensed fiber interface and photonic device.

Application 2 — Optical Engines and Co-Packaged Optics

Optical engines and CPO architectures require compact multi-channel fiber interfaces between photonic devices and the external optical interconnect.

A Lensed Fiber Array can be positioned at the optical engine or PIC interface to provide multiple aligned optical channels in a single array structure.

The available 1–48 channel configurations allow the array geometry to be selected according to the optical-channel architecture.

Application 3 — LiNbO₃ Modulator Coupling

The supplied product documentation specifically identifies LiNbO₃ modulators as an application.

In this configuration, the Lensed Fiber Array provides a multi-fiber optical interface to the photonic device, with adjustable optical parameters suchs as beam waist, working distance, pitch, and polish angle selected according to the required coupling geometry.

10. Why GracyFiber

GracyFiber focuses on passive optical components and precision fiber-interface products for optical communication and photonics applications.

The broader product portfolio includes:

  • Fiber Arrays and FAUs
  • Lensed Fiber Arrays
  • PM Fiber Arrays
  • MFD Fiber Arrays
  • MPO/MTP Interconnects
  • WDM / CWDM / DWDM Components
  • AAWG
  • PLC and FBT Components
  • Polarization-Maintaining Optical Components

For the Lensed Fiber Array family, the supplied specifications include both standard and customized configurations for channel count, optical beam size, fiber type, fiber length, connector interface, polish angle, and other fiber-array parameters.

This allows the fiber interface to be specified around the requirements of the corresponding PIC or photonic assembly rather than relying on a single fixed configuration.

11. Related Products
Related ProductWhy It Is Related
SM/MM Fiber ArraySuitable when the application requires a precision multi-channel fiber interface without integrated micro-lenses.
PM Fiber ArrayRelevant to photonic systems requiring controlled polarization and polarization-maintaining fiber channels.
MFD Fiber ArrayRelated option for applications where fiber mode-field characteristics must be matched to the optical interface.
Fiber Array Unit (FAU)Provides a packaged precision fiber interface for integration with photonic devices and optical assemblies.
MPO/MTP Cable AssemblyCan provide the high-density multi-fiber interconnect between the optical subsystem and other equipment interfaces.

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