1260nm - 1625nm MFD Matched Fiber Array Low Coupling Loss High Precision Waveguide Chip Coupling
Mode Field Matched Fiber Array Silicon Photonics Fiber Array Low Coupling Loss High Precision Waveguide Chip Coupling for Optical Module and SiPh Packaging
This high-quality mode-field matched fiber array solves the problem of low coupling efficiency between standard single-mode fiber and waveguide chips with small mode field diameters (MFDs).
Key features of this product include:
Mode Field Conversion Principle: Achieving perfect matching between the fiber mode field and the chip waveguide mode field through precise fusion splicing of standard single-mode fiber (such as SMF28e) and high numerical aperture fiber (such as UHNA1, UHNA2, or other specialty fibers).
High Precision: Extremely high pitch accuracy, with an error controlled within <0.5μm.
Customization Service: Custom designs are available to meet specific application requirements, such as combinations of different fiber types.
Key Specifications:
Number of Channels: 2, 4, 8, 12 channels, etc.
Pitch: 250μm, 500μm, or other.
Mode Field Diameter (MFD): Available in 3.2μm, 5.5μm, or other specific sizes for mode field matching.
Fiber Type: Single-mode (SM) fiber.
Advantages: High reliability and low cost.
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Material |
Quartz& Silicon |
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V-groove core pitch |
μm |
127/250/500(±0.5)or customer specified |
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wavelength |
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460 780 980 1060 1310 |
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Polishing angle |
degree |
90°(±0.3°) |
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Number of channels |
1 |
2 |
4 |
8 |
16 |
32 |
64 |
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Channel spacing |
μm |
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250 |
127 |
127 |
127 |
127 |
127 |
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Package |
mm |
6x2.5x2.5 |
10x2.5x2.5 |
10x2.5x2.5 |
10x2.5x2.5 |
12x3.5x2.5 |
12x5.7x2.5 |
12X9.7X2.5 |
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Extinction ratio |
dB |
≥25 |
≥25 |
≥23 |
≥21 |
≥20 |
≥16 |
≥15 |
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PM Fiber Alignment |
PM orientation Ⅱ |
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Fiber Type |
Corning PM15-U25D |
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Fiber Length |
1+/-0.1m |
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Connector |
FC/APC(Slow Axis Alignment Key) |
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Operating Temperature (℃) |
-5~65 |
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Storage Temperature (℃) |
-40~85 |
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Optical Devices/Modules: Used for packaging various integrated optical components.
High-speed Transceivers with Silicon Photonics: This is its core application, addressing the mismatch between the extremely small mode field of silicon photonic chip waveguides (typically around 3-4μm) and the mode field of ordinary transmission fibers, thereby significantly reducing insertion loss and improving module performance.
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