Double-side AR coating is applied to both optical surfaces to reduce reflection and increase transmission through the substrate. It is suitable for optical glass, fused silica, quartz, sapphire, CaF₂, silicon, germanium, ZnSe and glass-ceramic substrates.
Available coating designs can include single-wavelength AR, broadband AR, dual-band AR and wavelength-specific custom coatings. Coating parameters can be configured by wavelength range, angle of incidence, substrate material and reflectance target.
Typical applications include optical windows, laser optics, camera lenses, microscope optics, sensor covers, imaging systems, spectroscopy components and semiconductor optical assemblies. Double-side AR coating can be supplied for custom dimensions, shapes and optical specifications.
Broadband anti-reflection (BBAR) coating is a multi-layer thin-film design optimized to minimize surface reflectance simultaneously across a wide wavelength range — typically spanning 100 nm or more — rather than at a single design wavelength. Unlike a V-coat, which achieves extremely low reflectance (< 0.2%) at one specific wavelength but rises sharply on either side, a broadband design uses a more complex layer stack (typically 5–9 layers) with graded refractive index transitions to distribute the destructive interference condition across the full target band. The trade-off is a slightly higher minimum reflectance compared to a V-coat, but with dramatically better uniformity across the spectrum. This makes BBAR coatings the standard choice for white-light imaging systems, broadband laser platforms, multi-wavelength instruments, and any optical system where performance must be maintained across a range of wavelengths rather than optimized for a single line. Deposition is performed by ion-beam sputtering (IBS) or magnetron sputtering with real-time optical monitoring, ensuring layer thickness accuracy to ±0.5 nm and coating uniformity within ±0.5% reflectance across a 200 mm substrate.
コーティング性能仕様
Design Band
波長範囲
Ravg
Rmax
VIS BBAR
400~700 nm
< 0.5%
< 1.0%
NIR BBAR
700~1100 nm
< 0.5%
< 1.0%
VIS-NIR BBAR
400~1100 nm
< 1.0%
< 1.5%
UV-VIS BBAR
350 – 700 nm
< 0.8%
< 1.2%
UV-VIS-NIR BBAR
350 – 1100 nm
< 1.5%
< 2.0%
Extended NIR BBAR
600 – 1600 nm
< 1.0%
< 1.5%
Custom BBAR
Customer-specified
Design-dependent
Design-dependent
Layer count: 5–9 layers · Thickness accuracy: ±0.5 nm · Uniformity: ±0.5% R across 200 mm · AOI: 0°–30° standard
対応基材
基板
代表的な等級
1
溶融石英
コーニング 7980 / 東ソー ES-2000
2
石英ガラス
SCHOTT Lithosil Q / Heraeus Suprasil 1
3
ホウケイ酸ガラス
パイレックス 7740 / ボロフロート 33
4
光学ガラス
BK7 / N-BK7 / N-SF11 / N-LAKシリーズ
5
サファイア
C面/A面
6
CaF₂
UV対応グレード/IR対応グレード
7
MgF₂
UV対応グレード
8
ZnSe
CVDグレード
9
ゲルマニウム
単結晶/多結晶
10
シリコン
フロートゾーン/チョクラルスキー法
11
結晶化ガラス
ZERODUR / PYROCERAM 9606
層構造と設計
デザイン
層の材料
層数
堆積法
VIS BBAR
TiO₂ / SiO₂
4 – 5
IBS / マグネトロン
NIR BBAR
TiO₂ / SiO₂
4 – 5
IBS / マグネトロン
VIS-NIR BBAR
Ta₂O₅ / SiO₂
6 – 7
IBS
UV-VIS BBAR
HfO₂ / SiO₂ / MgF₂
5 – 6
IBS(イオンアシスト)
UV-VIS-NIR BBAR
Nb₂O₅ / SiO₂ / MgF₂
7 – 9
IBS
Extended NIR BBAR
Ta₂O₅ / SiO₂
5 – 7
IBS / マグネトロン
All designs optimized via needle synthesis and transfer matrix method · Custom AOI and substrate available
代表的な用途
Scientific Imaging: VIS-NIR BBAR on microscope objectives and spectrometer optics for broadband detection
Machine Vision: VIS BBAR on industrial camera lenses for consistent throughput across white-light illumination
Multi-Wavelength Laser Systems: VIS-NIR BBAR on shared-aperture optics handling 532 nm, 1064 nm, and 1550 nm simultaneously
Astronomy & Telescope Optics: UV-VIS-NIR BBAR on corrector plates and field flatteners for broadband sky surveys
Defense & Surveillance: Dual-band VIS/NIR BBAR on sensor windows for day/night imaging systems
Photovoltaics: UV-VIS-NIR BBAR on solar concentrator lenses and cover glass for maximum light harvesting
環境および耐久性基準
テスト
状態
標準
結果
接着
テープ剥離試験
MIL-C-48497A
剥離なし
摩耗
50ストロークの消しゴム
MIL-C-48497A
コーティングの剥離なし
湿度
95% RH · 49°C · 24時間
MIL-STD-810
水ぶくれが生じない
温度サイクル試験
–65°C ~ +125°C · 10サイクル
MIL-STD-810
ひび割れ・剥がれなし
塩霧
5% NaCl・35°C・24時間
MIL-STD-810G
腐食なし
レーザーによる損傷
1064 nm・10 nsパルス
ISO 11254
LDT > 5 J/cm²
溶解度
蒸留水・24時間の浸漬
ISO 9211-3
解散なし
Reflectance vs Wavelength: Broadband AR Design Comparison