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Fujikura FSM-30PF SM MM Core Alignment High Strength Fiber Fusion Splicer
$ 922.68
- Description
- Size Guide
Description
ebay templateThe Following Items Are Included:
Fujikura FSM-30FP High Strength Factory Fiber Fusion Splicer (BC# 34201)
Total Arc: 3,097
USFiberOptic USF-21C High Precision Fiber Cleaver
Clauss CFS-2 Fiber Optic Stripper
6 Month Fusion Splicer Care Kit FS6MC:
4oz Flip Jar Of 99% Alcohol
(50) Non-Lint Dry Wipes
(6) Fiber Optic Wipes w/ 99% Alcohol
2oz Pump Fast Evaporating Mirror Spray
(25) Camera Swabs
(25) V-Groove Swabs
Power Cord
User Manual On CD-ROM
Hard Carrying Case (G)
BE SURE TO CHECK OUR EBAY STORE FOR OTHER ITEMS!
This Item Has A Current Calibration!
Fujikura AFL FSM-30PF Singlemode & Multimode Core Alignment High Strength Factory Fiber Fusion Splicer
This Unit Has A Total Arc Count Of 3,097!
Can Splice the Following Fiber Types:
- Standard single-mode fiber
- Multi-mode fiber
- Dispersion shifted fiber
- Cut-off shifted fiber
- Erbium doped fiber
- Dispersion compensation fiber
Features high tensile strength (short bare fiber) splicing, the clamps are modified to accept longer (thicker) jacketed fiber to minimize stripping and bare fiber to be sleeved after the splice.
Includes 6 Month Fusion Splicer Care Kit (FS6MC)
- 4oz Flip Jar Of 99% Alcohol
- (50) Non-Lint Dry Wipes
- (6) Fiber Optic Wipes w/ 99% Alcohol
- 2oz Pump Fast Evaporating Mirror Spray
- (25) Camera Swabs
- (25) V-Groove Swabs
Includes USFiberOptic USF-21C High Precision Fiber Cleaver, Hard Carrying Case & Accessories As Listed Above!
Working Condition: Excellent
Condition: Refurbished
Calibrated: Yes
Warranty: 1 YEAR WARRANTY
Fujikura FSM-30PF Fusion Splicer
This splicer has some new functions and improvements for factory use, such as wide arc profile, more accurate splice loss estimate, fiber holder system and arc test function. These are for a variety of fiber applications, stable low splice loss and minimal skill dependency.
In addition, this model is capable of high tensile strength splicing with short cleaved length. Around 30N can be achieved by clamping coating part of fiber. The FSM-30PF can realize the best splice for the factory demand.
Features:
Full automatic operation once fibers are set with core-to-core alignment
Simultaneous observation of both X view and Y view
Mechanical in-line proof tester (possible to be turned off by menu command)
Wide arc profile to minimize splice loss of dissimilar fiber splicing.
New arc parameters to generate various kinds of adequate arc discharges for all types of fibers
Optical power monitoring splice with power meter feedback
Automatic arc time control function for similar fiber splicing
Intentional core offset function for an in-line fixed attenuator.
Fiber holder system for stable splice loss
Automatic stuff speed calibrating function before every splicing
Automatic gap-set position calibrating function before every splicing.
Arc test function to calibrate the arc power automatically and accurately.
Accurate splice loss estimator by observing core distortion and MFD mismatch
Estimating parameters to adjust the estimating equation on each splice mode.
User programmable 25 splicing modes on internal memory.
User programmable heating condition for the tube heater on internal memory
Individual threshold setting on each splice mode for acceptable cleaved angle, core angle and estimated loss.
Dust detecting function.
Electrodes stabilizing function
Storage area on internal memory for the last 30 splice results
Specifications:
Applicable Optical Fibers
Almost all type optical fibers described below for telecommunication, EDFA modules and dispersion compensation modules can be spliced.
Standard single-mode fiber
Multi-mode fiber
Dispersion shifted fiber
Cut-off shifted fiber
Erbium doped fiber
Dispersion compensation fiber
Fiber Clamping Method
For normal splicing, coating part of fiber is clamped with fiber holder and cladding part is clamped with fiber clamp and V-groove. For splicing with short cleaved length, UV or Nylon coated part of fiber is clamped with a fiber holder and coating part is clamped with a fiber clamp and V-groove.
The fiber holder is designed so that it is to be put directly in Fujikura precision fiber cleavers CT-04B/100B or CT-03HT and jacket strippers HJS-02/03FH or JS02-900. The fiber held with the fiber holder can be stripped with the jacket strippers, cleaved with the cleavers. There are three types of fiber holders available for major fiber coating diameters.
Fiber cladding diameter
φ100 toφ150 um with standard fiber clamp and V-grooves
φ80 toφ125 um with optional fiber clamp and V-grooves.
Fiber outer diameter
φ250 um outer diameter with standard fiber holder
φ400 andφ900 um outer diameter with optional fiber holder
Coating part of fiber whose outer diameter is 250 and 400 m can be clamped by fiber clamp and V-groove for splicing with short cleaved length.
Fiber Cleaved Length
Standard 16 mm (13 mm to 19 mm) for normal splicing by clamping cladding part of the fiber.
Standard 5 mm (3 mm to 6 mm) for splicing with short cleaved length by clamping coating part of the fiber.
Cleaved Angle Check and Core Angle Check
The thresholds of the cleaved angle and core angle prior to fusion splicing are selectable between 1 degree and 5 degrees with 0.1degree step. These values can be set on each splice mode individually. These functions can be turned off. When either of both angles is greater than the preset thresholds, the splicer stops and displays the alarm message. After splicing, the splicer checks the core angle again.
Automatic Stuff Speed and Gap-set Position Calibration
Before splicing, the splicer measures fiber stuff amount and arc discharge position. Then, stuff speed and gap-set position are automatically calibrated.
Alignment Method
With single-mode fibers, automatic core-to-core alignment with PAS (Profile Alignment System) aided by a computer controlled CCD camera and image processor. With multi-mode fibers, automatic cladding-to-cladding (not core-to-core) alignment aided by the same technique as one with the single-mode fibers.
The alignment method is selectable on each splice mode individually.
Arc Fusion Splice Method
Prefusion process and fusion process are controlled by built-in computer.
Discharge between electrodes are described below.
Trigger voltage 10000 V
DC Arc voltage 500 – 600 V
AC Frequency 110 kHz
Arc current 10 – 20 mA approx.
Wide Arc Profile and stable discharge
Low splice loss on dissimilar fiber splicing is achieved with the wide arc profile
User Programmable Splice Modes
User programmable 25 splicing modes on internal memory are equipped in order to store arc parameters. New arc parameters can generate various kinds of adequate arc discharges for all types of fibers.
Optical Power Monitoring Splice with Power meter Feedback
The arc discharge automatically stops at the lowest splice loss with power meter measuring actual loss during splicing.
Attenuation Splice
The splice loss control function with intentional core off-set is provided to obtain intentionally high splice loss between 1 dB and 15 dB with 1 dB step for an in-line fixed attenuator.
Arc Time Control Function
The arc time of the fusion program setting is optimized automatically by observing the fiber core eccentricity.
Splice Loss
Actual Splice Loss
Typical 0.02 dB with identical single mode fibers (ITU-T G.652)
Typical 0.01 dB with identical multi mode fibers (ITU-T G.651)
Typical 0.05 dB with identical dispersion shifted fibers (ITU-T G.653)
These above are measured by the cut-back method to the relevant ITU-T and IEC standards.
Splice Loss Estimating Function
Splice loss estimator calculates accurate estimated splice loss by observing core distortion and MFD mismatch. Estimating parameters to adjust the estimating equation can be set on each splice mode. 5 estimation modes are available.
Storing Splicing Situations and Results
Last 30 splice results including date and splice loss can be stored automatically and can be reviewed on the LCD monitor.
In-line Proof Tester
A proof test for tensile strength test of 2N is automatically carried out on each splice. This function can be turned off. For the values other than 2N, please consult Fujikura.
Built-in Tube Heater
The built-in ceramic heater can be equipped as an option. The heating program can be changed in order to optimize the heating process with any kinds of the heat shrinkable protectors.
TV Monitor
The TV monitor of 5 inches low reflective LCD is equipped. The image on the monitor can be seen even in daylight.
Arc Test Function
Arc test function measures and calibrates the arc power automatically and accurately
Electrodes Stabilizing Function
With the Electrodes stabilizing function, some deposit is formed on the tip of the brand-new electrodes to generate stable arc discharge. Operators are recommended to use this function after electrode replacement
Dust Check Function
The duct detector counts the dust and dirt in the optical pass. In addition, judgment of the duct check, good or bad, is automatically performed. The judgement (i.e. “OK” or “NG”) are displayed on the monitor.
PC interface
Splicing parameters, such as arc power or time etc., can be input with your PC and stored in EXCEL file. The splice results, such as estimated splice loss etc., can also be output to the PC in EXCEL file.
Dimensions and Weight
Splicer Body: 210 mm W × 187 mm D × 173 mm H, and 8 kg 8.3"W × 7.4"D × 6.8"H, and 17.6 lb.
Carriyng Case : 468 mm W × 290 mm D × 382 mm H 18.6"W × 11.6"D × 15.2"H
Package: 630 mm W × 410 mm D × 540 mm H 25"W × 16.3"D × 21.5"H
For full Fujikura FSM-30PF product specifications, please click here:
Fujikura FSM-30PF
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