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103.2m Nanosecond Fiber Optic Delay Line
103.2m Nanosecond Fiber Optic Delay Line
Idealphotonics manufacturing compact and low-loss fiber optic coils requires attention, precision, and skill. Our F-TDC compact time delay coils feature a proprietary manufacturing process that provides extremely low insertion loss while meeting your budget and small space requirements.
Product features:Compact size、 Low insertion loss、 Choose your own delay length、 Rugged construction、 Easy to use
Application area:Optical buffers for optical networks 、 Gyroscopes sensors and signal processing 、 Radar and instrument calibration 、 Laser spectroscopy 、 Time delay of optoelectronic oscillators Nonlinear fiber loops 、 Fiber network testing and analysis 、 Optical packet switching, buffering, routing and input/output synchronization
Unit Price
Please contact customer service for a discounted quote.
Part Number
LP-TDC-L0103.2-SA
Lead Time
Please contact customer service for lead time.
Stock
Please contact customer service for stock availability.
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General Parameters
Dimensional Drawing

Parameters

Parameter

Symbol

Min.

Typical

Max.

Unit

Fiber length

L

10

500

5000

m

Typical loss

IL

0.1

0.2

0.3

dB/km

Operating wavelength

λ

1260

1500

1700

nm

Operating temperature

T

-40

25

85

°C

Fiber type


HI1060/SMF-28E/PM1550(Optional)

Operating power

Pf

500

1000

5000

mW

Frame size

Customize

Connector type

FC/APC or FC/PC

Fiber delay range

Depends on the fiber length*

NOTE

*Calculating the Required Delay Length

To calculate the required fiber length to obtain a specific time delay, use the following formula: L = c Δt / n, where c is the speed of light in a vacuum, Δt is the desired time delay, and n is the refractive index of fused silica at the wavelength of interest (n = 1.4677 at 1310 nm, n = 1.4682 at 1550 nm).

 


Ordering Information

LP-TDC-L□□□□-XX

L□□□□:length

0010: 10m

0100:100m   

1000:1000m

XX: Fiber and connector type

SN=SMF-28E Fiber + None

SA=SMF-28E Fiber + FC/APC

SP=SMF-28E Fiber + FC/PC   

PP=PM Fiber Fiber + FC/PC  

PA=PM Fiber Fiber + FC/APC


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