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Mass Splice Method for Single-Mode Fiber Ribbons
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Akihiko Ishikura,
Published/Copyright:
June 1, 1989
Published Online: 1989-06
©2011 by Walter de Gruyter GmbH & Co.
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Articles in the same Issue
- Editorial
- Coherent FSK Transmission Experiment using Brillouin Amplification in a Single-Mode Fiber
- Performance of Heterodyne Coherent Optical Fiber Communication Systems in Presence of Shot Noise, LO Excess Noise, Laser Phase Noise and Time Jitter
- Automated Fiber-Waveguide Array Alignment
- Loss Estimation in Mass Splicing of Single-Mode Fiber Ribbons
- Mass Splice Method for Single-Mode Fiber Ribbons
- Double Dilute Melt Proton Exchange Fresnel Lenses for LiNbO3 Optical Waveguides
- Polarization-Transmission Channels in Monomode High Birefringent Optical Fibers
- Effect of Sinusoidal Radial Ripples in Refractive Index Distribution on LP11 Mode Cut-off Frequency in Graded Core Monomode Fibers Including W-Type Fibers
- News
Articles in the same Issue
- Editorial
- Coherent FSK Transmission Experiment using Brillouin Amplification in a Single-Mode Fiber
- Performance of Heterodyne Coherent Optical Fiber Communication Systems in Presence of Shot Noise, LO Excess Noise, Laser Phase Noise and Time Jitter
- Automated Fiber-Waveguide Array Alignment
- Loss Estimation in Mass Splicing of Single-Mode Fiber Ribbons
- Mass Splice Method for Single-Mode Fiber Ribbons
- Double Dilute Melt Proton Exchange Fresnel Lenses for LiNbO3 Optical Waveguides
- Polarization-Transmission Channels in Monomode High Birefringent Optical Fibers
- Effect of Sinusoidal Radial Ripples in Refractive Index Distribution on LP11 Mode Cut-off Frequency in Graded Core Monomode Fibers Including W-Type Fibers
- News