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Home » All Product » LWIR Lens » Thermal Sight Lens » FL100mm F1.0 Long Wave Infrared Aiming Lens For 640x512-17um

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FL100mm F1.0 Long Wave Infrared Aiming Lens For 640x512-17um

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8-12um Long Wave Thermal Sight Lens, Manual Focus. Apply to Infrared Camera, Infrared Sight Scope, Infrared Camera, and Thermal Imager.
Availability:
  • RS100F1.3-640-17

  • Rising

Infrared Aiming Lens Description:

8-12um Long Wave Thermal Sight Lens, Manual Focus. 

Apply to Infrared Camera, Infrared Sight Scope, Infrared Camera, and Thermal Imager.


Features of Infrared Lens:

The use of Infrared multi-layer coating technology (IR Coating) helps to reduce the loss of scattered light, which in turn enhances the clarity of the image. This advanced technology also improves the anti-reflection of light waves that have a wavelength of 750-1000nm. The lens surface has a dark green tint. With the application of IR Coating, near-infrared light transmittance is improved, which further enhances the infrared lens's ability to produce high-definition images.


Infrared Aiming Lens Parameters:

Product Name Infrared Aiming Lens
Focal Length
100mm
F# 1.3
Wavelength 8-12um
Image Diagonal 13.6mm
Average Transmission >85%
Circular FOV (H)6.2°x(V)5°x(D)8°
Back Focus Distance 18mm
Back WorKing Distance 8.5mm
Back Focus Length 19.94mm
Dimensions 85.5mm / 111.15mm
Focus Type Manual Focus
Focus Range 5m to infinity
Mount Type M45x1
Detector 640x512-17um
Weight 548g
Operating Temperature -20℃~+60℃
Storage Temperature -40℃~+80℃
External Coating DLC / AR Coating Available

thermal sight lens

FAQ:

What Are DLC And AR Coating?

Diamond-like carbon (DLC) membrane is an amorphous carbon membrane. The membrane contains a certain number of sp3 bonds, giving it a series of excellent properties close to diamond. It has the advantages of low deposition temperature and large area deposition.


Among various hard membranes, DLC membrane can be positioned as a membrane material with high hardness and excellent wear resistance and low coefficient of friction.


AR (Anti-Reflection) membrane cannot change the absorption rate of the lens itself. It can only increase the transmittance by reducing the reflectance on both sides of the lens, which is the so-called "reflection and antireflection".


Light is an electromagnetic wave. By matching the refractive index and thickness of the AR membrane, the light produces multi-beam interference in the AR membrane-destructive interference on the upper surface and constructive interference on the lower surface.

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