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Wholesale 650nm Visual Fault Locator For Network Maintenance

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  • T-VF200

  • SKYCOM

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Product Overview Of Visual Fault Locator

Our 650nm visual fault locator delivers reliable fiber optic testing solutions for global technicians. This tool accurately detects breaks, bends, and faults within optical cables. We manufacture the T-VF200 series to support various testing distances up to 30 kilometers, ensuring precise fault identification across complex network layouts. Our fiber optic tester provides consistent performance in demanding environments, offering a practical solution for daily fiber maintenance and routing verification.

Visual Fault Locator

Product Specifications Of Visual Fault Locator

VFL200 series

T-VF201

T-VF210

T-VF215

T-VF220

T-VF225

T-VF230

Wavelength

650nm ± 20nm

Output Power *

> 1mW

> 10mW

> 15mW

> 20mW

>25mW

>30mW

Dynamic Distance **

>5 km

8~10 km

12~14 km

15~17 km

18~20 km

25~30 km

Glint

1Hz

Connector ***

2.5mm or 1.25mm Universal connector

Storage Temperature

-20 -- +60 ℃, < 90%RH

Operating Temperature

-10 -- +50 ℃, < 90%RH

Power Supply

AA * 2

Weight

 80g

 

*  Tested by FOD1205H 650nm optical power meter

**  The distance is tested by G.655, single mode, lab level fiber, loss<5dB/KM

***  Standard connector is 2.5mm UPP, 1.25mm UPP will be customized and increase the cost

Key Features Of Visual Fault Locator

650nm Wavelength Technology

Our 650nm VFL utilizes a visible red laser source to pinpoint fiber issues rapidly. The continuous wave and 1Hz glint modes offer flexible testing options for various scenarios. Technicians can identify micro-bends or fractures straight through the protective fiber jacket. The steady output ensures reliable visual detection along the entire optical link, which minimizes troubleshooting time during critical maintenance windows.

Universal Connector Compatibility

We supply our optical fault locator with a standard 2.5mm universal connector, accommodating interfaces like SC, ST, and FC. Users can request a 1.25mm adapter for LC connections to expand their testing capabilities. This adaptable interface design reduces the need for carrying multiple testing tools, streamlining the equipment required for conducting comprehensive fiber optic network inspections on site.

Visual Fault Locator

Durable And Lightweight Construction

Designed for rigorous field use, our fault locator weighs 80 grams, providing portability for daily operations. The outer casing protects internal components during transit and active network deployment tasks. It operates effectively in ambient temperatures ranging from negative 10 to 50 degrees Celsius, ensuring stable performance across diverse indoor and outdoor telecommunication environments. The compact structure allows engineers to carry the device easily inside standard tool kits.

Product Applications Of Visual Fault Locator

Telecommunication Network Maintenance

Our fiber fault finder serves as an essential tool for maintaining extensive telecommunication infrastructures. Network engineers use the device to verify patch cord continuity and locate precise connection failures within server racks. It helps maintain signal integrity by isolating damaged segments, allowing maintenance teams to restore communication services promptly across the network grid. The device integrates seamlessly into standard troubleshooting procedures for routine network health assessments.

Fiber Optic Routing And Continuity Checking

Technicians rely on our fault locator to trace fiber paths during new cable installations and system upgrades. The bright visible light allows installers to match cable ends accurately in crowded distribution panels. This verification process prevents routing mistakes before final splicing operations begin, ensuring that the physical network topology matches the planned architectural design. It provides immediate visual feedback to confirm correct end-to-end optical connections.

Product Benefits Of Visual Fault Locator

Accurate Fault Identification

Utilizing our visual fault locator improves the precision of optical cable defect detection. The visible red light bleeds through the fiber cladding at the exact point of the micro-break or severe bend. This visual confirmation eliminates guesswork during repair procedures, allowing technicians to target their splicing efforts where the physical damage occurred on the transmission line. It provides a direct approach to isolating faults without relying solely on complex data interpretation.

Extended Dynamic Range Options

We manufacture the T-VF200 series with multiple output power variants to cover diverse distance testing requirements. Users can select specific models capable of testing dynamic distances from 5 kilometers up to 30 kilometers. This range flexibility ensures that wholesale clients can choose the exact specifications needed for short campus networks or extended regional backbone fiber links. The varying output levels guarantee optimal visibility depending on the specific cable length tested.

Why Choose Us For Visual Fault Locator

As an experienced optical fiber device supplier, SKYCOM operates a dedicated 3,000-square-meter manufacturing facility in Nanjing. We maintain quality control through ISO9000 and ISO14000 certified production processes. With over ten years of industry expertise, our factory delivers reliable optical testing equipment to major telecom operators and international clients. We focus on consistent manufacturing standards to support your technical operations globally. Our technical team ensures every unit meets rigorous operational testing criteria before shipment.

FAQ Of Visual Fault Locator

What is the standard interface type?

Our device comes standard with a 2.5mm universal connector. You can also specify a 1.25mm interface for specific testing needs.

How long is the testing distance?

The dynamic testing distance ranges from 5 kilometers up to 30 kilometers, depending on the specific output power model you select.

What power source is required?

The unit operates reliably using two standard AA batteries, making it easy to replace power sources during field operations.

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