P h o t o n i c s a n d I n s t r u m e n t a t i o n 391 Email: [email protected] • Web: newport.com Step Index Multimode Fibers Core (pure silica) Cladding (bonded hard polymer) Tefzel® Buffer Coating Bend-insensitive, pure silica, multimode Sensor Grade Fibers feature core diameters ranging from 100–1000 ìm. A bonded hard polymer cladding enhances the fibers’ strength and fatigue resistance. A high NA of 0.37 allows greater coupling efficiencies, while making these fibers optimal for applications requiring tight bending or coiling of fibers. Their typical applications include medical, industrial and avionic sensors and instruments. The operating temperature of bare fibers ranges from -65°C to +125°C. Cabled multimode fibers having a 900 ìm outer jacket, surrounded by an Aramid yarn layer and a 3 mm diameter polyurethane cable jacket, provide additional strength and environmental protection. The cabled fibers have an operating temperature of -40°C to +85°C, and are identified by the -C suffix in their model number. High-temperature, all-silica, high OH-sensor grade fibers are available in 100 and 200 ìm core diameters for use in harsher environments. Featuring a polyimide buffer coating, the fibers’ upper operating range is extended to +375°C, while its chemical and abrasion resistance is increased. Typical applications for these fibers include medical and industrial sensors, spectroscopy and radiation analysis. High-temperature fibers are identified by the -T suffix in their model number. Fiber Performance: The typical attenuation you can expect when using our sensor grade fibers with various light sources is listed in the following table. Multimode Sensor Fiber Transmission High-Temperature Sensor Fiber Transmission ë (nm) dB/m ë (nm) dB/m 633 HeNe 0.008 248 Krypton Fluoride 1.1 820 LED 0.006 308 Eximer 0.27 1064 ND:YAG 0.012 488 Argon Blue 0.013 1300 Diode Laser 0.030 515 Argon Green 0.014 532 KTP 0.013 647 Krypton Red 0.008 850 LED 0.013 • Bend-insensitive, high NA fibers, for applications requiring high coupling efficiencies or tight fiber bending radii • High-temperature, all-silica fibers, frequently used in medical and industrial fiber sensors • Fibers available in any length • Standard patchcords available in several length with various type connector terminations. Fiber Construction Multimode Sensor Fiber Bare Bare Fiber Jacket (900 ìm) Outer Jacket (3.0 mm) Aramid Yarn Cabled High-Temperature Fiber Core Cladding Polyimide Coating Fiber Specifications/Ordering Table Notes: F-XXX-C — Cabled Fiber F-XXX-T — High-Temperature Fiber POLARIZATION MEASUREMENT AND CONTROL LASER DIODE CONTROL LASER DIODE MOUNTS FIBER OPTIC COMPONENTS OPTICAL FIBERS AND ACCESSORIES EDUCATIONAL KITS Model Operating Wavelength (nm) NA Core Diameter (ìm) Cladding Diameter (ìm) Coating Diameter (ìm) Bent Radius, Minimum 60 min./20 yrs. (mm) Bandwidth (MHz/km) F-MBB 500–1100 0.37 200 ±4 230 +0/-10 500 ±30 10/16 20 F-MBB-C 500–1100 0.37 200 ±4 230 +0/-10 500 ±30 20 F-MBC 500–1100 0.37 400 ±8 430 +5/-10 730 ±30 29/47 13 F-MBD 500–1100 0.37 600 ±10 630 ±10 1040 ±30 58/94 9 F-MBE 500–1100 0.37 1000 ±15 1035 ±15 1400 ±50 73/118 F-MCB-T 250–1100 0.22 100 ±3 110 ±3 140 ±5 9/14 25 F-MCC-T 250–1100 0.22 200 ±5 220 ±5 250 ±5 17/28 25
Open the catalog to page 1392 Phone: 1-800-222-6440 • Fax: 1-949-253-1680 P h o t o n i c s a n d I n s t r u m e n t a t i o n POLARIZATION MEASUREMENT AND CONTROL OPTICAL FIBERS FIBER OPTIC COMPONENTS LASER DIODE MOUNTS LASER DIODE CONTROL AND ACCESSORIES EDUCATIONAL KITS Patchcord Ordering Table Model Length (m) Fiber Model Connector Type F-MBB-C-1SMA 1 F-MBB SMA-SMA F-MBB-C-2SMA 2 F-MBB-C SMA-SMA F-MBB-C-3SMA 3 F-MBB-C SMA-SMA F-MBB-C-5SMA 5 F-MBB-C SMA-SMA F-MBB-C-10SMA 10 F-MBB-C SMA-SMA F-MBB-C-1FC 1 F-MBB-C FC-FC F-MBB-C-2FC 2 F-MBB-C FC-FC F-MBB-C-3FC 3 F-MBB-C FC-FC F-MBB-C-10FC 10 F-MBB-C FC-FC F-MBB-C-1SMA-FC...
Open the catalog to page 2P h o t o n i c s a n d I n s t r u m e n t a t i o n 393 Email: [email protected] • Web: newport.com Power Delivery Fibers Core (pure silica) Cladding (silica) Bonded Hard Coat Tefzel® Buffer Coat High-Power Density Fibers have a pure silica core and a silica cladding, providing an ultra-high damage threshold. In addition, a chemically bonded hard coat adds high strength and increases fatigue resistance. The fibers’ low OH- content makes them most suitable for operation in the 500–2100 nm wavelength ranges. Fibers in this category, offered in 365 and 550 ìm core diameters, can tolerate peak...
Open the catalog to page 327 Pages
6 Pages
1 Page
1 Page
1 Page
1 Page
1 Page
16 Pages
6 Pages
5 Pages
55 Pages
1640 Pages
24 Pages
2 Pages
40 Pages
9 Pages
34 Pages
35 Pages
33 Pages
2 Pages
1 Page
1 Page
1 Page
1 Page
2 Pages
3 Pages
1 Page
2 Pages
1 Page
3 Pages
2 Pages
1 Page
1 Page
1 Page
1 Page
2 Pages
1 Page
1 Page
2 Pages
1 Page
1 Page
2 Pages
6 Pages
2 Pages
1 Page
1 Page
1 Page
2 Pages
1 Page
2 Pages
1 Page
2 Pages
4 Pages
2 Pages
1 Page
2 Pages
1 Page
4 Pages
1 Page
1 Page
2 Pages
2 Pages
2 Pages
2 Pages
2 Pages
2 Pages
2 Pages
1 Page
1 Page
1 Page
5 Pages
1 Page
2 Pages
2 Pages
3 Pages
3 Pages
3 Pages
2 Pages
2 Pages
1 Page
1 Page
1 Page
1 Page
2 Pages
2 Pages
1 Page
1 Page
1 Page
1 Page
2 Pages
1 Page
2 Pages
1 Page
2 Pages
1 Page
1 Page
1 Page
1 Page
3 Pages
1 Page
2 Pages
1 Page
1 Page
2 Pages
1 Page
1 Page
2 Pages
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
2 Pages
1 Page
1 Page
5 Pages
1 Page
1 Page
4 Pages
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
1 Page
2 Pages
3 Pages
2 Pages
2 Pages
1 Page
1 Page
1 Page
1 Page
1 Page
2 Pages
2 Pages
2 Pages
1 Page
2 Pages
2 Pages
1 Page
1 Page
1 Page
2 Pages
7 Pages
2 Pages
2 Pages
2 Pages
2 Pages
2 Pages
2 Pages
1 Page
3 Pages
4 Pages
2 Pages
2 Pages
1 Page
2 Pages
2 Pages
4 Pages
1 Page
2 Pages
1 Page
2 Pages
1 Page
3 Pages
2 Pages
2 Pages
1 Page
2 Pages
1 Page
1 Page
1 Page
1 Page
2 Pages
2 Pages
1 Page
1 Page
2 Pages
6 Pages
4 Pages
3 Pages
2 Pages
2 Pages
4 Pages
1 Page
3 Pages
2 Pages
2 Pages
2 Pages
3 Pages
2 Pages
4 Pages
2 Pages
3 Pages
1 Page
2 Pages
2 Pages
3 Pages
3 Pages
2 Pages
3 Pages
2 Pages
1 Page
1 Page
2 Pages
2 Pages
2 Pages
2 Pages
1 Page
1 Page
4 Pages
1 Page
1 Page
1 Page
2 Pages
2 Pages
2 Pages
1 Page
2 Pages
4 Pages
2 Pages
1 Page
1 Page
1 Page
2 Pages
1 Page
1 Page
1 Page
2 Pages
2 Pages
1 Page
1 Page