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1540-1560nm PM Polarization Maintaining Bandpass Filter
1540-1560nm PM Polarization Maintaining Bandpass Filter
PM Band Pass Filter Idealphotonics' fiber filters use a special fiber structure to select or filter out specific wavelengths of light from different wavelengths. We can provide filter devices with different optical power versions according to user needs, which can be used in dense wavelength division multiplexing fiber communications, frequency division multiplexing fiber communications, spectrum testing, fiber sensors, fiber lasers and fiber amplifiers. If you need to customize the center wavelength, operating temperature or specific working bandwidth, please contact us for customization.
Product features:High isolation 、Low insertion loss (0.7dB) 、High return loss (50dB) 、Excellent environmental stability 、High power handling capability
Application area:Band Erbium-Doped Fiber Amplifier 、High -density wavelength division multiplexing system 、Fiber laser 、Research
Unit Price
Please contact customer service for a discounted quote.
Part Number
PMBPF-5577-20-20-0.3-B-NN-BB-0.8-01A-01
Lead Time
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Stock
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General Parameters
Dimensional Drawing

General parameters

Parameter

Unit

Index

Nominal center wavelength

nm

1540-1560

Max. Insertion Loss (over Pass Band for B-Type)

dB

0.7

Max. Insertion Loss (over Pass Band for F-Type)

dB

0.9

Suppression band (Stop Band)

nm

765~785

Min. Stopband Isolation (Stop Band Isolation)

dB

25

extinction ratio at 23℃ (ER) (only for B-Type)

dB

20

extinction ratio at 23℃ (ER) (only for F-Type)

dB

twenty two

Min. Return Loss

dB

50

Fiber Type

-

PM 1550 panda fiber

Max. tensile load

N

5

Max. Optical Power (CW)

mW

300

Operating temperature

-5 to 70

Storage temperature

-40 to +85

Remark:

*The above specifications apply to devices without connectors.

*For devices with connectors, IL will be 0.3dB higher, RL will be 5dB lower, and ER will be 2dB lower.

*PM fiber and connector keys are aligned with the slow axis.

*The material must be RoHS compliant.

 

Model Description

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