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Home > Products > Tunable Optical Filters > Tunable Edge Filters
Mini MEMS Tunable Filter with VOA  
 
Mini MENS Tunable Filter with VOA
Mini MENS Tunable Filter with VOA
     
PDF Datasheet
 
  • Description
  • Features
  • Specification
  • Typical Performance
Product Description - Mini MEMS Tunable Filter with VOA

The Optoplex mini tunable filter described is specifically designed for 100G tunable transceiver analog coherent optics (CFP2-ACO) application. The main purpose of this tunable filter is to suppress the noise to improve the sensitivity and OSNR performance. 

A VOA is integrated in the tunable filter to provide a max attenuation larger than 30dB.

Mini MEMS Tunable Filter with VOA

Features and Benefits of Mini MEMS Tunable Filter with VOA

The integrated TF-VOA features a compact size, 5x5x7mm, and the use of tight-bend ZBL fibers, is specifically suited for the communication SFP transceiver package. A 2-dimensional MEMS is used here as the active tuning element so that the tuning time for both TF and VOA is as short as 50 msec. 

Specifications of Mini MEMS Tunable Filter with VOA

Mini MEMS Tunable Filter with VOA Specification

 

Typical Performance of Mini MEMS Tunable Filter with VOA

Mini MEMS Tunable Filter with VOA Specification

Parameter Definition of DPSK Demodulator

Parameter Definition

Example

Wavelength Tuning Range (nm) is the spectral range over which a ROADM's center wavelength can be tuned and performance specification can be met..

1527.994 ~ 1563.047 nm

Wavelength Tuning Resolution (GHz) is the minimum tuning step of a tunable filter.

10 pm

Passband Width @ X-dB Down (GHz) is the full spectral width centered at the ITU grid measured at X-dB below the minimum insertion loss point. Usually, X = 0.5, 1, 3 and 20.

35 GHz @0.5-dB down for 100 GHz channel spacing

Peak Insertion Loss (dB) is power difference between the 0-dB level and the maximum power level measured within a given passband window.

2.5 dB

Polarization Dependent Loss (PDL) (dB) is the difference between the maximum and minimum insertion loss over all polarization states within a given passband window.

0.3 dB within CW ± 12 GHz

Polarization Mode Dispersion (PMD) (ps) is the maximum Differential Group Delay within a given passband width.

0.3 ps

Chromatic Dispersion (CD) (ps/nm) is the derivative of the Group Delay versus wavelength within a given passband width.

± 25 ps/nm within CW ± 12 GHz

Wavelength Setting Error (GHz) is the difference between a channel central wavelength (usually defined using 3-dB bandwidth) and the target wavelength (usually the ITU grid) during tuning.

± 4 GHz

Wavelength Repeatability (GHz) is the repeatability of a channel central wavelength (usually defined using 3-dB bandwidth) during repeated tuning.

± 1 GHz

Wavelength Temperature Dependence (pm/°C) is the rate of a channel central wavelength versus temperature.

± 1 pm/°C

Optical Return Loss (dB) is the ratio between the input power and the reflected power over all polarization states at each port , RL = -10×log10(Pr/Pin).

40 dB

Tuning Speed (s) is the time needed by a tunable filter to tune from one channel to another. It is dependent on the originating and destination channels. The longest time required is specified.

6 s

Operating Temperature (°C) is the ambient temperature range over which the device's performance spec can be met.

-5 to 65 °C

Storage Temperature (°C) is the ambient temperature range over which the device can be stored without affecting its intended application afterwards.

-40 to 85 °C

Product Request and Ordering Information
Please speak to Optoplex Sales persons. If you request custom-designed tunable edge filter product, please provide the following parameters:
  • Wavelength range
  • Tuning accuracy
  • Fiber length
  • Optical connector type