高出力ファイバ
Fiberguide’s高出力コンポーネントは、レーザ光源とターゲットを接続するための光ファイバを提供する高出力SMAと高出力産業FD−80コネクタを使用しています。これらは、レーザー切断、溶接、ドリル、マーキングに理想的なアプリケーションです。Fiberguideは、高電力コンポーネントの破損修理サービスを提供します。詳細については、デルの販売チームにお問い合わせください。
標準製品仕様:
光ファイバタイプ:段放射率マルチモード
コアサイズ:100µm 200µm 300µm 400µm 600µm 800µm、1000µm 1500µm
波長:標準OH:UV - Vis:190 nm - 1250 nm /Low OH:Vis - IR:300 nm - 2400 nm
開口数(NA):0.20、0.22
コネクタオプション:高出力SMA、高出力FD-80
コネクタはピールを統合するかどうかを選択できます
コーティング層オプション:PVC Coated Stainless Steel Monocoil, Bare Stainless Steel Monocoil
電力処理能力:750 wまで光ファイバサイズとレーザー仕様に依存
標準温度範囲:-40°Cから+100°C/-40°Fから+212°F
長さ:100メートル未満
製品の利点:
• High Power SMA and FD-80 Compatible connector options that offer superior thermal management while minimizing connector stress for NA conservation • Epoxy Free Cantilevered Nose design allows thermal energy to safely dissipate without burning the surrounding material |
• Laser Polished end faces maximize power handling capability • Available with Anti-Reflective (AR) coating |
「製品詳細パラメータ」テーブル:
SPECIFICATIONS: |
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ファイバタイプ |
Step Index Multimode |
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コア/ クラッド寸法 (μm) |
1:1.1 Ratio: 200/220, 300/330, 400/440, 600/660, 800/880, 1000/1100, 1500/1650 1:1.2 Ratio: 105/125, 200/240, 300/360, 400/480, 600/720, 800/960, 1000/1200, 1500/1800 500μm Uni-Clad: 100/500, 200/500, 300/500, 400/500 Other: 100/250, 600/750, 800/1000 |
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光ファイバコーティング層タイプ |
Nylon, Tefzel, Acrylate, Polyimide, Aluminum, Gold |
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開口数(NA) |
0.12 ±0.02 (14º Full Acceptance Angle) 0.20 ±0.02 (23º Full Acceptance Angle) 0.22 ±0.02 (25º Full Acceptance Angle) 0.26 ±0.02 (30º Full Acceptance Angle) |
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動作波長 (λ) |
High OH / Ultraviolet (UV) ~ Visible: λ = 190nm ~ 1250nm Low OH / Visible ~ Infrared (IR): λ = 300nm ~ 2400nm |
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おんどはんい |
-40ºC to 100ºC / -40ºF to 212ºF |
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コネクタタイプ |
HP SMA: High Power SMA (Maximum Power = 650W) MSHP SMA: Mode Stripped High Power SMA (Maximum Power = 650W) HP FD-80: High Power FD-80 (Maximum Power = 750W) MSHP FD-80: Mode Stripped High Power FD-80 (Maximum Power = 750W) NOTE: FD-80 Connectors are available with and without sapphire |
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シェルタイプ |
HP SMA: 5.5mm ~ 8.0mm OD Polymer Coated Stainless Steel Monocoil MSHP SMA: 3.8mm OD Stainless Steel Monocoil HP FD-80: 7mm OD Stainless Steel Monocoil, 8mm OD Polymer coated Stainless Steel Monocoil MSHP FD-80: 7mm OD Stainless Steel Monocoil, 8mm OD Polymer coated Stainless Steel Monocoil |
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ピーラー性能 |
MSHP SMA: Removes up to 25W of Cladding Power (λ = 532nm ~ 1064nm) MSHP FD-80: Removes up to 30W of Cladding Power (λ = 532nm ~ 1064nm) |
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でんりょくしょりのうりょく |
Core Size |
100μm |
200μm |
300μm |
400μm |
600μm |
800μm |
1000μm |
1500μm |
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HP SMA |
85W |
340W |
650W |
650W |
650W |
650W |
650W |
650W |
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MSHP SMA |
85W |
340W |
650W |
650W |
N/A |
N/A |
N/A |
N/A |
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HP FD-80 |
85W |
340W |
750W |
750W |
750W |
750W |
750W |
750W |
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MSHP FD-80 |
85W |
340W |
750W |
750W |
N/A |
N/A |
N/A |
N/A |
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光ファイバ使用環境:
れんぞくは Air-Silica Fusedインタフェース損傷閾値 |
~1.5 MW/cm2 (CW Laser @ λ: 1064nm) Damage Threshold is λ dependent, and behaves relatively linearly in the range from 190nm ~ 2400nm with the shorter wavelengths being more destructive. |
インパルス Air-Fused Silicaインタフェース損傷閾値 |
~16.0 J/cm2 (Pulsed Laser @ λ: 1064nm and τ: 1ns) Damage Threshold is λ dependent, and behaves relatively linearly in the range from 190nm ~ 2400nm with the shorter wavelengths being more destructive. Damage Threshold is τ dependent, and scales with the square root of the pulse duration from 10ps to 1μs with the shorter pulse durations being more destructive. NOTE: The CW and Pulsed Air-Fused Silica Interface Damage Thresholds above have been adjusted to compensate for the peak intensity in the Gaussian Beam Profile. |
スポット直径 |
≤ 85% of the Fiber Core Diameter |
Alignment&ビームウエスト |
X & Y Alignment within ± 5% of the core diameter / Z Position beyond source beam waist |
開口数(NA) |
Fiber NA ≥ Source NA + 10% |
ビーム形状&質量 |
The spatial profile and quality of the beam will greatly affect high power performance. This analysis assumes a Gaussian Beam where the peak fluence is given by 2 E/p*( Wo)2“, meaning that the peak power is approximately double the 1/e2 specified power. |
コネクタ研磨、端面、&フラット |
The connector end face must be factory laser polished to reduce microscopic inclusions and be cleaned prior to use. The endface must also be flat, <10% of the core diameter peak to valley, so it doesn’t act like a lens and focus the laser energy inside the fiber. |
AR Coating |
None; when AR Coatings are applied to optical fibers, they will always become the limiting factor to power |
参考資料:
最大連続波電力計:
コアサイズ(μm) |
波長(nm) |
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λ: 193nm |
λ: 405nm |
λ: 532nm |
λ: 808nm |
λ: 980nm |
λ: 1064nm |
λ: 1900nm |
λ: 2100nm |
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100 |
15 |
32 |
43 |
65 |
78 |
85 |
152 |
168 |
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200 |
62 |
130 |
170 |
259 |
314 |
340 |
608 |
672 |
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300 |
139 |
292 |
383 |
582 |
706 |
766 |
1368 |
1512 |
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400 |
247 |
518 |
681 |
1034 |
1254 |
1362 |
2432 |
2688 |
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600 |
556 |
1166 |
1532 |
2327 |
2822 |
3064 |
5472 |
6048 |
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800 |
988 |
2074 |
2724 |
4137 |
5017 |
5448 |
9728 |
10752 |
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1000 |
1544 |
3240 |
4256 |
6464 |
7840 |
8512 |
15200 |
16800 |
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1500 |
3474 |
7290 |
9576 |
14544 |
17639 |
19151 |
34199 |
37799 |
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λにおける最大単一パルスエネルギー(mJ):1064nm and τ: 1ns for Core Sizes 100μm ~ 1500μm
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コア径(μm) |
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100 |
200 |
300 |
400 |
600 |
800 |
1000 |
1500 |
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最大等価単一パルスエネルギー(mJ) |
0.9 |
3.6 |
8.1 |
14.5 |
32.6 |
58.1 |
90.7 |
204.2 |
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コネクタ仕様:
Connector Type |
Maximum Power |
HP SMA |
650W |
HP FD-80 |
750W |