260T FTTx Fusion Splicer

260T FTTx Fusion Splicer

$616.60
Sale price  $616.60 Regular price 
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260T FTTx Fusion Splicer

260T FTTx Fusion Splicer

$616.60
Sale price  $616.60 Regular price 

3D Surrounds Dual Heating Element 

Design of Tool free Disassembly Integrated SOC Fixture 

Tool-free Hot Swappable OPM/VFL module

Manufacturing

JILONG

Product Manual

260T FTTx Fusion Splicer

3D Surrounds Dual Heating Element 
Design of Tool free Disassembly Integrated SOC Fixture 
Tool-free Hot Swappable OPM/VFL module

260T FTTx Fusion Splicer

Discover how the 260T can improve the efficiency of fused fiber

3D Surrounds Dual Heating

3D Surrounds Dual Heating Element Design
10-Second Rapid Heating (Fast Mode)

3-in-1 Universal Fixture

Suitable for bare fbers, 3.0mm patch cords, pigtails, and drop cables

Product Specifications

Key specifications at a glance—defining quality and performance through data.

Splice Method Active Clad-Alignment
Applicable Fibers SM(ITU-T G.652&G.657) / MM(ITU-T G.651) / DS(ITU-T G.653) / NZDS(ITU-T G.655)
Compatible Fiber/Cable 0.25~3.0 mm / indoor flat cable
Fiber Holder Replaceable
Fiber Diameter Cladding: 80-150μm,Coating: 100~1000μm
Fiber Cleave Length 8~16 mm
Typical Splice Loss SM: 0.02dB / MM: 0.01dB / DS: 0.04dB / NZDS: 0.04dB / G.657: 0.02dB ★①
Return Loss >>60dB
Splicing Time SM Quick mode : 8 sec
Estimated Splice Loss : Available
Heating Time Quick mode 10 sec.(SM G652 250μm 40mm Sleeve) adjustable
Protection Sleeve Length 20mm, 30mm, 40mm, 50mm, 60mm
Heat Programs Max 32 modes
Battery 5200mAh Battery Capacity, Typical 300 Cycles (Splice&Heat) per Charge ★②
Electrode Life 5000 arcs, can be extended by using an electrode grinder ★③
Auto-start Splice / Heating
Automatic Fiber Identification /
Automatic ARC Identification Automatic arc calibration by air pressure and temperature
Results Storage The last 10,000 splice records and 2,000 result images
Tension Test 1.96~2.25N
Operating Condition Altitude: 0~5000m, 0~95% relative humidity, -20~50°C, Max Wind 15m/s
Storage Condition 0~95% relative humidity, -20~60°C
Display 4.3-inch Touch Screen
Fiber Magnification X, Y, XY, X/Y : 320X Magnification
Power Supply AC Input 100-240V, DC Input 9-14V
Terminal USB2.0
Weight 1.65kg without battery / 1.92kg with battery
Size 136.8H x 137W x 136.5D mm (including rubber bumper)

★① With identical fibres(in room temperature). Measured by cut-back method relevant to ITU-T and IEC standards.
★② Splice & Heat cycles based on 40mm shrink tube/0.25mm fiber,may vary depending on the battery status and operating environment.
★③Electrode life may vary depending on the operating environment.

Packing List

Ensuring every core component and accessory arrives in perfect condition.

260T FTTx Fusion Splicer Packing List

ARC Fusion Splicer * 1
High Precision Fiber Cleaver KL-31F * 1
Battery Pack 6800mAh JQ192-01L * 1
Power adapter * 1
Compact carrying case * 1
Cooling tray * 1
Spare electrodes (pair) * 1
Fiber Stripper * 1
Splice Pretection Sleeves(pcs) * 100
Alcohol Bottle * 1
Scissors + Brush (set) * 1
Inspection Certificate * 1
Calibration Certificate * 1
Quick Reference Guide * 1
Brochure of JILONG * 1
Brochure of TAWAA * 1

260T - Vision in Motion

Experience the power and versatility of the 260T in action

FAQs

Why does the fusion splicer always prompt "Arc Offset" or "Arc Calibration Failed" during discharging?

Common Causes:

Environmental Changes: Significant shifts in air pressure, temperature, or humidity (e.g., moving from indoors to a high-altitude outdoor site).

Electrode Aging: Heavy carbon buildup on the electrodes, or they have reached the end of their lifespan.

Solutions:

Always perform an Arc Calibration whenever you change your working environment or replace the electrodes, allowing the machine to automatically adjust the current.

If the arc calibration fails repeatedly, try cleaning the carbon buildup off the electrodes using a cotton swab dipped in alcohol, or replace them with a new pair.

What causes excessive splice loss?

Troubleshooting Steps:

Poor Cleave Angle: The fiber cleaver blade is worn out or dirty, resulting in burrs or a cleave angle that is too large (greater than 1 degree).

Dirty V-Grooves or Clamps: Microscopic dust particles can cause the fibers to misalign axially.

Mismatched Fiber Types: For example, attempting to splice Single-Mode (SM) with Multi-Mode (MM) fibers.

Solutions:

Clean the fiber and re-cleave it.

Use a specialized brush or an alcohol-swapped cotton bud to clean the V-grooves and objective lenses.

Ensure the current splicing program selected on the machine (e.g., Auto, SM, MM) matches the actual fiber type.

The screen shows a "dark line" or a "bubble" at the splice point. Will this affect performance?

Impact Assessment: Yes, it will severely affect transmission quality. A dark line usually indicates poor alignment or damaged fiber, while bubbles mean air or impurities are trapped inside the splice.

Main Causes:The fiber end-face was not cleaned properly, leaving coating residue, dust, or moisture.The cleave quality was poor, leaving a highly uneven end-face.

Correct Procedure:Strictly follow the "Strip→ Clean → Cleave" sequence.Remember, once the fiber is cleaved, its end-face must never touch any surface. Place it directly into the fusion splicer and redo the splice.

What should I do if the heater fails to heat up, or the fiber protection sleeve does not shrink completely?

Troubleshooting Steps:

Check Heating Parameters: Confirm that the selected heating mode matches the length of the protection sleeve you are using (e.g., 40mm or 60mm).

Check the Heater Lid: Some models require the heater lid to be completely closed to trigger the heating process.

Adjust Heating Time: In cold or low-temperature environments, the default heating time might be insufficient. You can manually extend the heating time or increase the heating temperature in the settings.

How should I maintain and care for the fusion splicer daily?

Three Golden Rules of Maintenance:

Keep it Clean (Most Important): After every job, use a blower brush to remove fiber shards and dust from the fiber clamps, V-grooves, and mirrors. Periodically clean the objective lenses gently with a slightly moistened alcohol swab.

Electrode Management: Electrodes typically have a lifespan of 3,000 to 5,000 arcs. Replace them promptly once the arc count reaches its limit or if the tips show severe oxidation.

Battery Care: If the device will not be used for a long time, charge the lithium battery to about 50%–70%, remove it, and store it separately. Recharge and discharge it every 2 to 3 months to prolong its lifespan.

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