The SupIR 100mm f/1.1 motorized focus LWIR imaging lens has a 100 mm focal length with an f-number of 1.0. This single field of view lens (1-FOV) is designed for high definition format uncooled LWIR cameras.
Advanced technologies for the highest performance long wave focal planes
LWIR Hard-carbon AR coating for 8-12 µm
Passive athermalization with the highest imaging performance from -30 to +65°C
Compatible with 12 & 17 μm pixel pitch, 1024x768 VGA format LWIR cameras
Providing superior performance from 800 m out to infinity
Cost-effective solution for high-resolution thermal imaging and sensing
Additional drawings are not available for this product.
Format
Pitch
320x240
384x288
640x480
1024x768
17 µm
3.1°
3.7°
6.2°
9.9°
12 µm
2.2°
2.6°
4.4°
7.0°
Specifications
Type
Single Field of View
Focal Length
100 mm
F/#
1.1
Coating Type
Hard Carbon
Spectral Range
8-12 μm
Back Focal Length
24mm in air
Focus Mechanism
Motorized
Focus Range
15 m to infinity
Depth of Field
800 m to infinity
Operating Temperature Range
-30°C to +65°C
Storage Temperature Range
-40°C to +70°C
Sealing
IP 67 front element only
Wavelength Region
LWIR
Features
High Performance Long Wave Focal Plane
Using advanced technologies, top-quality materials and unique coating techniques, together with innovative engineering and opto-mechanical designs, we have earned a reputation for excellent performance, durability and quality.
Our highly abrasion-resistant, anti-reflective advanced optical coatings include several types of Hard Carbon coatings which provide maximum durability, energy transmission & minimal reflection. Our innovative coating technologies include:
Physical Vapor Deposition (PVD) – Thermal heating and electron gun
Ion Assisted Deposition (IAD) – Ion gun
Plasma Enhanced Chemical Vapor Deposition (PECVD) for DLC coatings
Passive Athermalized Lens Assembly
Our IR imaging lens assemblies incorporate passive athermalization of the lenses and opto-mechanical system to maintain the highest imaging performance over the full operating temperature range. We use advanced materials that enable unique athermalization properties and optomechanical designs that effectively compensate for optical variations over a wide temperature range.
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