YT-2120 Optical Fiber-Grade Synthetic Quartz Tube — Low-OH Fused Silica with Customisable Refractive Index

LUMIGLAS® YT-2120 is an optical fiber-grade synthetic quartz tube produced from 6N fused silica (SiO₂ ≥99.9999%) with OH hydroxyl content <1 ppm and all metallic impurities controlled below 0.005 ppm (wt). Refractive index (Δn) is customisable for specialty fiber preform design. Available in three sub-grades — liner tube, small sleeve and large sleeve — covering OD φ10–90 mm with lengths up to 3000 mm. Used in OVD, VAD, MCVD and PCVD fiber preform processes and specialty optical fiber manufacturing.

Description

The LUMIGLAS® YT-2120 optical fiber quartz tube is an optical-grade synthetic fused silica tube engineered for optical fiber preform fabrication and specialty optical fiber manufacturing. Produced from 6N-grade synthetic fused silica (SiO₂ ≥99.9999%), the YT-2120 controls OH hydroxyl content to below 1 ppm — eliminating the water peak absorption at 1383 nm that limits optical transmission in the E-band and directly affects single-mode fiber attenuation. Furthermore, all ten major metallic impurities are held below 0.005 ppm (wt), meeting the contamination requirements of telecommunications-grade and specialty fiber preform processes.

Unlike semiconductor-grade quartz tubes that prioritise diffusion contamination control, the YT-2120 is specifically formulated for optical fiber applications — combining ultra-low OH with a customisable relative refractive index (Δn) that allows process engineers to tailor the preform substrate to their target fiber refractive index profile. The YT-2120 covers three sub-grades in a single model: liner tube (OD 10–40 mm), small sleeve tube (OD 40–60 mm) and large sleeve tube (OD 60–90 mm), all produced to tight geometric tolerances suitable for OVD, VAD, PCVD and MCVD fiber preform deposition processes.

Technical Specifications — YT-2120 Optical Fiber Quartz Tube

YT-2120 — Key Specification Summary
Parameter Value / Grade
Product Type Optical fiber-grade synthetic quartz tube / low-OH fused silica tube
Material Synthetic fused silica — SiO₂ ≥99.9999% (6N grade)
OH Hydroxyl Content <1 ppm — eliminates the 1383 nm water peak absorption band
Metallic Impurities All major elements (Li, Na, K, Mg, Ca, Cu, Al, Cr, Fe, Ti) <0.005 ppm (wt)
Relative Refractive Index (Δn) Customisable — specify target Δn for specialty fiber preform design
Max. Service Temperature ~1200°C continuous service
Thermal Expansion 0.55 × 10⁻⁶ /°C — near-zero thermal expansion
OD Range φ10–90 mm (three sub-grades)
Wall Thickness 1.0–30 mm
Max. Length Up to 3000 mm (sub-grade dependent)
Material Certificate Full impurity analysis Certificate of Conformity (CoC), supplied as standard

Major Metallic Impurity Content & Hydroxyl — YT-2120

All values in ppm (wt). OH hydroxyl content is a critical parameter for optical fiber applications — the YT-2120 controls OH to <1 ppm to eliminate the 1383 nm water peak. Full impurity analysis CoC provided as standard.

Grade Li Na K Mg Ca Cu Al Cr Fe Ti OH (ppm)
YT-2120 <0.001 <0.005 <0.002 <0.001 <0.003 <0.001 <0.003 <0.001 <0.002 <0.001 <1

Optical Material Parameters

Parameter YT-2120 Value
Relative Refractive Index (Δn) Customisable — specify target Δn when ordering
OH Hydroxyl Content (ppm) <1 ppm

OH <1 ppm eliminates the water peak absorption at 1383 nm, which is critical for E-band transmission and low-loss single-mode fiber. Customisable Δn enables refractive index profile design for polarisation-maintaining, photonic crystal and other specialty fiber types.

Geometric Specifications & Dimensional Tolerances — Three Sub-Grades

OD = outer diameter · WT = wall thickness. Three sub-grades in one model — specify sub-grade and OD × WT × Length (mm) when ordering. Custom dimensions available.

Parameter Sub-Grade
Liner Tube
OD 10–40 mm
Small Sleeve
OD 40–60 mm
Large Sleeve
OD 60–90 mm
OD (mm) 10–40 40–60 60–90
WT (mm) 1.0–10 2–15 2–30
OD Tolerance (mm) ±0.50 ±0.80 ±2.00
WT Tolerance (mm) ±0.30 ±0.30 ±3.00
Out-of-Roundness (mm) ≤0.15 ≤0.40 ≤0.40
Wall Eccentricity (mm) ≤0.15 ≤0.45 ≤0.45
CSA Relative Difference ≤6.0% ≤6.0% ≤6.0%
Bow (mm/m) ≤0.70 ≤0.70 ≤0.70
Length (mm) ≤3000 ≤3000 ≤2000

* Custom OD, WT, length and refractive index available on request. Specify sub-grade + OD × WT × Length (mm) + target Δn when enquiring.

Why Low-OH Synthetic Quartz Tube Matters for Optical Fiber

OH hydroxyl groups in fused silica create a characteristic absorption peak at 1383 nm — precisely within the E-band used in wavelength-division multiplexing (WDM) telecommunications systems. Even small concentrations of OH at the ppm level in the preform substrate tube can increase fiber attenuation at this wavelength, narrowing the usable transmission bandwidth of the deployed fiber. Because the YT-2120 controls OH to below 1 ppm, it eliminates this water peak at source — allowing fiber manufacturers to produce low-water-peak (LWP) and zero-water-peak (ZWP) fiber to ITU-T G.652D and G.657 specifications.

OH <1 ppm — Zero Water Peak

OH content below 1 ppm eliminates the 1383 nm water peak absorption — enabling E-band transmission and supporting ITU-T G.652D / G.657 low-water-peak fiber specifications.

Customisable Refractive Index (Δn)

The relative refractive index Δn can be specified to order — critical for polarisation-maintaining fiber, photonic crystal fiber, sensing fiber and other specialty fiber types requiring a precise substrate-core index contrast.

6N Purity — ppb Metallic Impurity Control

All metallic impurities are held below 0.005 ppm (wt) — preventing transition metal absorption and scattering loss contributions that degrade fiber attenuation in the O, E, S, C and L transmission bands.

Three Sub-Grades — One Model

Liner tube (OD 10–40 mm), small sleeve (OD 40–60 mm) and large sleeve (OD 60–90 mm) sub-grades are available within the YT-2120 model — covering inner and outer preform substrate roles in a single qualified material grade.

Typical Applications

  • Optical fiber preform substrate tubes — OVD, VAD, PCVD and MCVD deposition processes for telecommunications single-mode and multi-mode fiber preforms
  • Low-water-peak and zero-water-peak fiber — ITU-T G.652D and G.657 compliant fiber preform substrate where OH <1 ppm at the substrate eliminates the 1383 nm water peak
  • Polarisation-maintaining (PM) fiber preforms — high-precision liner and sleeve tubes with specified Δn for PANDA, bow-tie and elliptical-core PM fiber preform designs
  • Specialty and sensing fiber preforms — photonic crystal fiber, erbium-doped fiber, distributed sensing fiber and other specialty fiber types requiring custom refractive index profile design
  • Fiber preform drawing tower quartz components — sleeve tubes and liner tubes used as structural and containment components in fiber drawing tower assemblies

Technical Document & Download

📄 Technical Datasheet — YT-2120

Full impurity data, OH content, optical parameters, geometric tolerance table and sub-grade reference.

Download PDF →

Frequently Asked Questions

What is the difference between YT-2120 and YT-2230 synthetic quartz tubes?

Both types share 6N purity (SiO₂ ≥99.9999%) and the same metallic impurity limits (<0.005 ppm for all major elements). However, they target different application areas. The YT-2230 is a semiconductor-grade tube for diffusion furnaces, CVD chambers and quartz boat holders — where contamination control during thermal processing is the primary requirement. The YT-2120, by contrast, is formulated specifically for optical fiber preform applications: it adds OH control to <1 ppm (to eliminate the 1383 nm water peak) and offers a customisable relative refractive index (Δn) — two parameters that are irrelevant for semiconductor applications but critical for fiber preform design.

Why does OH content matter for optical fiber quartz tubes?

OH groups in fused silica create an absorption peak at 1383 nm — precisely within the E-band (1360–1460 nm) used in WDM telecommunications systems. Because the preform substrate tube becomes part of the fiber’s cladding during the draw process, OH contamination from the substrate directly contributes to the fiber’s water peak attenuation. Even low-ppm OH levels can increase attenuation at 1383 nm by several dB/km, narrowing the usable transmission bandwidth of deployed fiber. Consequently, the YT-2120 controls OH to below 1 ppm to support G.652D and G.657 low-water-peak and zero-water-peak fiber manufacturing.

What does “customisable refractive index” mean for the YT-2120?

The refractive index of fused silica can be adjusted by incorporating dopants (such as fluorine to lower the index, or germanium to raise it) during the synthesis process. For specialty fiber preforms — including polarisation-maintaining, photonic crystal, erbium-doped and distributed sensing fiber — the substrate tube’s relative refractive index (Δn) relative to the fiber core is a critical design parameter. When ordering the YT-2120, engineers can specify their target Δn so that Lumistar produces the tube with the matching refractive index profile. Contact Lumistar with your target Δn and fiber design specification for a feasibility assessment.

Which sub-grade should I specify — liner, small sleeve or large sleeve?

The three sub-grades correspond to different OD ranges and roles in the fiber preform assembly. Liner tubes (OD 10–40 mm) are used as inner substrate tubes in MCVD and PCVD deposition processes, or as precision-bore tubes in preform assembly. Small sleeve tubes (OD 40–60 mm) and large sleeve tubes (OD 60–90 mm) are used as outer containment and overcladding tubes in OVD and VAD processes, and as structural components in drawing tower assemblies. All three sub-grades share the same OH and impurity specifications — only the OD range and associated tolerances differ.

How do I order a YT-2120 optical fiber quartz tube?

To order, provide: sub-grade (Liner / Small Sleeve / Large Sleeve), OD × WT × Length (mm), target refractive index Δn (if applicable), quantity, and whether a Certificate of Conformity with full impurity analysis is required. For standard dimensions within the OD φ10–90 mm range, lead times are typically 3–6 weeks. Custom OD, WT, length and Δn specifications are available on request — contact Lumistar with your drawing or specification for a feasibility assessment.

Request a Quote — LUMIGLAS® YT-2120 Optical Fiber Quartz Tube

Specify: Sub-grade + OD × WT × Length (mm) + Target Δn · Custom RI and dimensions welcome

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