Vicinal / Off‑Cut Single‑Crystal Sapphire Substrates

微信扫码联系(或添加sicwafer)

Vicinal / Off‑Cut Single‑Crystal Sapphire Substrates

1. What are Vicinal / Off‑Cut Substrates

Off‑Cut Single‑Crystal Sapphire Substrates:Vicinal substrates, also known as off‑cut, miscut or off‑axis single‑crystal substrates, are monocrystalline wafers intentionally sliced with a small tilt angle (typically 0.5°‑10°) relative to standard low‑index crystal planes such as sapphire C‑plane, SiC (0001) or β‑Ga₂O₃ (100). This intentional mis‑orientation generates periodic atomic step‑terrace structures on wafer surfaces, which precisely regulate epitaxial growth modes and improve crystal quality for semiconductor epitaxy.

Off‑Cut Single‑Crystal Sapphire Substrates

2. Core Advantages of Off‑Cut / Vicinal Substrates

  • Reduction of dislocation density: Guiding atomic arrangement along surface steps and suppressing dislocations caused by lattice mismatch. For instance, GaN grown on 5° off‑cut sapphire achieves roughly 1/3 lower dislocation density compared with on‑axis flat substrates.
  • Polarity & crystal orientation tuning:
    • Sapphire: C‑plane off‑cut for polar GaN growth; A‑plane / R‑plane off‑cut enables semi‑polar or non‑polar GaN, improving LED efficiency and wavelength stability.
    • SiC: Specific off‑cut angles eliminate hexagonal hillock defects of N‑polar GaN, drop dislocation density down to 10⁸ cm⁻² and nearly double breakdown voltage.
  • Defect suppression: β‑Ga₂O₃ (100) substrate off‑cut 4° along [00‑1] direction exposes (−201) step surfaces to eliminate twin defects, supporting high‑voltage power devices with breakdown field up to 2.7 MV/cm.
  • Superior surface morphology: Step‑flow epitaxy delivers surface roughness close to original substrate, enhancing device uniformity and production yield.

3. Common Off‑Cut Materials & Typical Parameters

Other custom single‑crystal vicinal substrates are available upon inquiry.

Item Specification
Material >99.99% High‑purity mono‑crystalline Al₂O₃ (KY method)
Crystal Orientation Options C‑axis (0001): off‑cut 0.5°‑10° ±0.1° toward M‑axis (1‑100)

C‑axis (0001): off‑cut 0.5°‑8° ±0.1° toward A‑axis (11‑20)

A‑axis (11‑20): off‑cut 0.5°‑6° ±0.1° toward M‑axis (1‑100)

A‑axis (11‑20): off‑cut 0.5°‑6° ±0.1° toward C‑axis (0001)

R‑axis (1‑102): off‑cut 0.5°‑6° ±0.1° toward M‑axis (1‑100)

R‑axis (1‑102): off‑cut 0.5°‑6° ±0.1° toward C‑axis (0001)

M‑axis (1‑100): off‑cut 0.5°‑6° ±0.1° toward C‑axis (0001)

Diameter 50.8 mm (2 inch), 100 mm (4 inch), 150 mm (6 inch)
Standard Thickness 430 μm (2″), 650 μm (4″), 1000 μm (6″)
Primary Flat Orientation A‑plane ±0.3°
Primary Flat Length 16 mm (2″), 30 mm (4″), 47.5 mm (6″)
Front‑Side Finish Epi‑polished, Ra<0.3 nm (epi‑ready surface)
Back‑Side Finish SSP: Fine‑ground, Ra 0.8‑1.2 μm; DSP: Epi‑polished, Ra<0.3 nm
Total Thickness Variation (TTV) <10 μm (2″); <20 μm (4″); <25 μm (6″)
BOW −15~0 μm (2″); −25~0 μm (4″); −35~0 μm (6″)
WARP <15 μm (2″); <30 μm (4″); <40 μm (6″)
Edge Exclusion ≤ 2 mm

5. Key Selection Guidelines for Vicinal / Off‑Cut Substrates

  1. Off‑cut angle selection
    • Small angle (0.5°‑2°): Wider atomic terraces, suitable for thick‑film epitaxy with ultra‑smooth surface.
    • Medium angle (2°‑6°): Balanced step density and defect suppression, most widely adopted for mass‑production epitaxy.
    • Large angle (>6°): Dense atomic steps, ideal for ultra‑thin‑film growth and polarity control, with slightly increased surface roughness.
  2. Off‑cut direction: Decides step alignment and exposed crystal facets, directly controls epitaxial polarity and defect modes. For sapphire substrates, off‑cut toward A‑axis and M‑axis produce completely different epitaxy performance.

Contact & Customization

Custom special‑orientation single‑crystal vicinal substrates are supported. Welcome to send inquiry for datasheet, quotation and technical consultation.

4‑Inch Custom Ultra‑Thick Silicon Wafers|Custom Ultra‑Thin & Ultra‑Flat Silicon Wafers   C‑Plane Sapphire Substrate | High Purity α‑Al₂O₃ Wafer for LED & Power Electronics   12 Inch FZ High Resistivity Silicon Wafer | Float‑Zone Substrate  Silicon Thermal Oxide Wafer  蓝宝石偏角度单晶衬底-斜切角晶向衬底   A-R-M特殊晶向蓝宝石衬底