NEW YAMASAKI OPTICAL TECH. Y90 SALES and YAMASAKI OPTICAL TECH. Y90 CALIBRATION

 
Custom-Cal has for sale a new YAMASAKI OPTICAL TECH. Y90. Also, short calibration turn times minimize downtime and reasonable rates decrease your long-term cost of ownership and minimizes downtime of the YAMASAKI OPTICAL TECH. Y90. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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List Price for a new YAMASAKI OPTICAL TECH. Y90, $3,850.00   YAMASAKI OPTICAL TECH. Y90   Description / Specification:    
YAMASAKI OPTICAL TECH. Y90 Optical Fiber Fusion Splicer

The Yamasaki Y90 Fusion Splicer is a small, portable machine designed for use in FTTH, making everyday splicing easy. The fusion splicer is used to connect 2 cables together with a low loss of 0.02db (SM) and 0.01db (MM). The Y90 features a simple navigation pad and an invertible super bright 5 inch color LCD screen. Utilising the latest in core alignment technology, the Y90 gives a novice user ability to perform the best quality of splice. Specifications. Splicing Method: Core Alignment. Splice Time: 9 seconds. Fiber Types: Singlemode and Multimode. Fiber Cladding: 80 ~ 150 µm. Fiber Coating: 100 ~ 1000 µm. Fiber Cleaved Length: 16mm (Standard). Average Fusion Loss: 0.02 dB(SM),0.01 dB(MM). Return loss: >60 dB. Storage of Splice Result: 4000 splice entries. Working Mode: Auto/Manual. Operating Temperature: -10°C to +50°C . Humidity: 0 ~ 95% RH. Altitude: 0-4000m. Heater : 30s (standard) or adjust heating time to suit the environment. Splice Protector Sizes: 40-60mm. Power Supply: AC: 100V-260V 50Hz, 30W (Mains) DC: 12V, 25W (Car adaptor) or Internal battery.



 



Related Optical Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Bit Error Ratio (BER)
Bit Error Ratio (BER) is the ratio of errors caused by the number of bits in a data stream that have been altered due to noise, interference, distoriton or bit synchronization errors.

Flatness
Variation of insertion loss on the passband of an optical device.

Polarization Dependent Loss (PDL)
Polarization Dependent Loss is the difference between the maximum and minimum values of loss due to the variation of the polarization states of light propagating through a device. PDL is expressed in decibels. Calculated by; PDL = 10 log10 (Ep/Es), where EP and ES are the measured diffraction efficiencies for P- and S-plane polarized incident light, respectively.

Return Loss (RL)
Return Loss (RL) is the ratio of the incident power to the reflected power expressed in dB. RL = 10log (Pin/Pback)

Wavelength Resolution
Wavelength Resolution is the smallest possible displayed wavelength increment/decrement.


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