Mitsubishi ESKA POF Cable LH2001/LH4001-1.3/LH4001 | 1.0 × 2.2mm Plastic Optical Fiber (Single Core)
Mitsubishi ESKA POF Cable LH2001/LH4001-1.3/LH4001 | 1.0 × 2.2mm Plastic Optical Fiber (Single Core)
Mitsubishi ESKA LH2001 POF Cable 1.0×2.2mm Single Core Plastic Optical Fiber
Mitsubishi ESKA LH4001 POF Cable - 1.0×2.2mm Single Core Plastic Optical Fiber
Mitsubishi ESKA LH4001-1.3 POF 1.0×2.2mm Plastic Optical Fiber Cable
ESKA LH2001/LH4001 Series POF Cable 1.0×2.2mm Single Core Optical Fiber
Mitsubishi ESKA Plastic Optical Fiber Cable LH4001 1.0×2.2mm Single Core POF

Mitsubishi ESKA POF Cable LH2001/LH4001-1.3/LH4001 | 1.0 × 2.2mm Plastic Optical Fiber (Single Core)

Mitsubishi ESKA POF Plastic Optical Fiber Cables LH2001/LH4001-1.3/LH4001 utilize high-quality polymer optical fiber (POF) material, a single-core design, and a standard size of 1.0 x 2.2 mm. They offer excellent flexibility and signal transmission performance. Designed for applications in industrial automation, automotive communications, medical equipment, and consumer electronics, these cables provide a stable, low-loss optical signal transmission solution.



Specification
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Key Features

High Reliability

Low attenuation and strong resistance to electromagnetic interference, suitable for demanding industrial conditions.

Flexible Wiring

Excellent bending performance with a minimum bend radius of 25mm for easy routing in tight spaces.

Various Models Available

Multiple models including LH2001, LH4001-1.3, LH4001, and other specifications to fit diverse applications.

Easy Installation & Maintenance

Lightweight design with simple connections, enabling rapid deployment and hassle-free maintenance.

LH Series Specifications

Mitsubishi fiber optic specs: Models LH2001, LH4001-1.3, LH4001 and key parameters

Model LH2001

Core diameter, attenuation, temperature tolerance, and tensile strength parameters.

Model LH4001-1.3

Core diameter, attenuation, temperature tolerance, and tensile strength parameters.

Model LH4001

Core diameter, attenuation, temperature tolerance, and tensile strength parameters.

Applications

Widely used in industrial automation, factory networks, and harsh environments requiring high reliability and flexible fiber optic deployment.