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LightPath 354240 | 1064nm Alignment, 0.50 NA Fiber Collimator w/ SMA Connector

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Fiber Optic Collimator and Focuser Assemblies

Fiber Optic Collimator and Focuser Assemblies

Fiber Optic Collimator and Focuser Assemblies Fiber Optic Collimator and Focuser Assemblies
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Stock #64-782 5-7 Days
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NT$7,455
Qty 1-10
NT$7,455
Qty 11+
NT$6,580
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Product Details

Lightpath Lens Code:
354240
Type:
Fiber Collimator
Lens Included:

Physical & Mechanical Properties

Clear Aperture CA (mm):
8.00
Bevel:
Protective bevel as needed
Construction:
304L Stainless Steel Housing
Housing Diameter (mm):
12.00
Housing Length (mm):
12.7

Optical Properties

Effective Focal Length EFL (mm):
8.00 @ 780nm
Numerical Aperture NA:
0.50
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Coating:
BBAR (1050-1600nm)
Coating Specification:
Rabs <1.0% @ 1050 - 1600nm
Surface Quality:
40-20
f/#:
1.00
Wavelength Range (nm):
1050 - 1600
Conjugate Distance:
Infinite
Alignment Wavelength (nm):
1064
Transmitted Wavefront Error (λ, RMS):
< 0.080

Hardware & Interface Connectivity

Connector:
SMA

Threading & Mounting

Mount:
M12 x 0.5

Regulatory Compliance

RoHS 2015:
Certificate of Conformance:
Reach 240:

產品系列說明

  • 易於整合
  • 提供適合 FC/PC、FC/APC 及 SMA 連接的機型
  • 三種波長範圍,涵蓋 350-1600nm

這些元件可將離開光纖的光線平行化/對焦為所需的光束直徑或光斑尺寸。透鏡採用繞射極限設計,因此可實現僅數微米的光斑尺寸。透鏡也採用抗反射鍍膜,後向反射低。這些裝置設計為成對使用,以便結合光學裝置的輸入及輸出光線。工廠設定及測試的透鏡對準,可確保長期使用的最佳效能。一般應用可包括搭配使用光纖耦合雷射、尾纖插孔等。

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What does bend radius (or minimum radius of bend) mean?

I’m looking for the best way to maximize the amount of light from an LED into a fiber optic. What are the best options for coupling my LED and fiber?

My application calls for inexpensive, straight fiber bundles but the ones that you sell are bent. Is it possible to buy straight ones?

Bend Radius

Buffer Material

Cladding

Decibel (dB)

Fiber Jacket

Fiberscope

Optical Fiber

Packing Fraction

Fiber Coupler Calculator

How to Achieve Optimal Collimation with Fiber Optics

Collimated light is required for many fiber optic applications. Using the proper setup, fiber optic collimating lenses or ball lenses, and some optical know-how, you can achieve optimal collimation.

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How do I couple light into a fiber using a lens / ball lens?

How can I decrease the output angle of a fiber to achieve a more collimated beam with a lens / ball lens?

Does light entering a multimode fiber undergo a polarization change during propagation through the fiber? If so, can the emerging light be linearly polarized by placing a polarizer at the fiber’s output end?

Why is it necessary to collimate the laser diode before fiber-coupling?

What are the advantages of Fiber Optic Illumination?

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What diameter beam will a light guide output?

Why do fiber optic light guides lose so much energy?

How do fiber optic light guides connect to fiber optic illuminators?

Acceptance Angle

Ring Light Guide

Total Internal Reflection (TIR)

Numerical Aperture (NA)

 
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