KomShine KFLC-1 OTDR Dead Zone Eliminator Instruction Manual
- June 1, 2024
- Komshine
Table of Contents
KomShine KFLC-1 OTDR Dead Zone Eliminator
Product Specifications
- Model: KFLC-1
- Features: Compact, rugged, lightweight; available in 100m, 300m, 500m, 1km, 2km lengths; variety of connector styles
- Applications: OTDR launch cable, OTDR receive cable, measuring insertion loss and reflectance of fiber optic link using OTDR
- Fiber Type: Single-mode and multi-mode options available
Product Usage Instructions
Testing, Inspection, and Location:
The OTDR optical fiber launch cable is utilized to measure the loss and reflectivity of the proximal and remote connections of the optical fiber line using an OTDR. It can be used as both a transmitting and receiving cable to eliminate blind spots when measuring the total line loss of the optical fiber.
The coiled design of the OTDR launch cable makes it easy to carry, compact, and lightweight. With various length options available, it is suitable for testing short, medium, and long-distance fiber networks.
How to Generate a Baseline Trace Using Fibre Rings:
Choose the appropriate length and model of the OTDR launch cable based on your testing needs. Follow the standard procedures for connecting the launch cable to the OTDR device and the fiber optic link you want to test. Use the OTDR to generate a baseline trace by sending signals through the launch cable and analyzing the reflections and losses in the fiber network.
FAQ
Q: What are the typical applications of the OTDR Dead Zone Eliminator?
A: The OTDR Dead Zone Eliminator is commonly used for testing link loss, measuring insertion loss and reflectance of fiber optic connections, and eliminating blind spots in OTDR measurements.
Q: Can the OTDR launch cable be used for both single-mode and multi-mode fibers?
A: Yes, the OTDR launch cable is available in options suitable for both single-mode and multi-mode fibers, offering flexibility for different testing scenarios.
Q: How should I store and transport the OTDR launch cable?
A: The compact and lightweight design of the OTDR launch cable allows for easy storage in OTDR cases or kits. When transporting, ensure that the cable is properly coiled to prevent any damage or tangling.
Enabling today
Inspiring tomorrow
Features & Applications
- Compact, rugged, lightweight
- 100m、300m、500m、1km、2km lengths standard
- Available with a variety of connector styles
- Compact! Fits easily in OTDR cases or kits
- For use as OTDR launch cable
- For use as OTDR receive cable
- Measure insertion loss and reflectance of near- and far-end connections of a fiber optic link using an OTDR
- Use to test link loss with an OTDR
OTDR Dead Zone Eliminator
Testing、 Inspection and Location
OTDR optical fiber launch cable is used to measure the loss and reflectivity
of the proximal connection and the remote non-corrupt insertion of the optical
fiber line using OTDR. Each OTDR launch cable can be used as an OTDR
transmiting and receiving cable, both of which were necessary to eliminate
blind spots when measuring the complete line loss of the optical fiber with
OTDR.
OTDR launch cable adopts coiled design, easy to carry, compact and
light.Various length options, very suitable for short, medium,long distance
fiber network test applications.
How to Generate a Baseline Trace Using Fibre Rings
- Use the Fibre Ring as a launch cable.Connect the Fibre Ring between your OTDR and the fibre link under test. This will allow you to measure the loss of the near-end connection.
- Use the Fibre Ring as a receive cable.Connect the Fibre Ring to the far-end connector of your fibre link under test. This will allow you to measure the loss of thefar-end connection.
- By using the jump cable as a transmiting and receiving cable.You can measure the total insertion loss of the fiber link.
Product model
Configuration | Fiber type | Length | Model |
---|---|---|---|
Standard | Single-mode | 500M | OS2-500M , 9/125µm |
Standard | Single-mode | 1000M | ,,- |
Standard | Single-mode | 2000M | -> |
Standard | Multi-mode | 500M |
f· __ \
Standard| Multi-mode| 1000M | | | OS1-1KM , 62.5/125µm| \
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Standard| Multi-mode| 2000M| | | OS1-2KM , 62.5/125µm| ) ‘ •,.}
Standard| Multi-mode|
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| 500M| | OS2-500M, 50 / 125µm
Standard| Multi-mode| 1000M| OS2-1KM , 50/125µm
Standard| Multi-mode| 100M| OS3-1 00M , 50 / 125µm
Standard| Multi-mode| 300M| OS3-300M , 50/125µm
Product usage
Product list
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