Code | Material | AR Coating | D-mm | EFL-mm | BFL-mm | R1=R2-mm | Tc-mm | Te-mm |
---|---|---|---|---|---|---|---|---|
PCV086-01 | Calcium Fluoride (CaF2 Single Crystal) | Uncoated | Ф25.4 | -40.0 | -41.4 | -17.4 | 2.0 | 7.5 |
PCV086-02 | Calcium Fluoride (CaF2 Single Crystal) | Uncoated | Ф25.4 | -75.0 | -76.7 | -32.5 | 2.5 | 5.1 |
PCV086-03 | Calcium Fluoride (CaF2 Single Crystal) | Uncoated | Ф25.4 | -100.0 | -102.1 | -43.4 | 3.0 | 4.9 |
PCV086-04 | Calcium Fluoride (CaF2 Single Crystal) | Uncoated | Ф25.4 | -200.0 | -202.4 | -86.8 | 3.5 | 4.4 |
PCV086-05 | Calcium Fluoride (CaF2 Single Crystal) | Uncoated | Ф25.4 | -500.0 | -502.8 | -216.9 | 4.0 | 4.4 |
Uncoated CaF₂ Plano-Concave Lenses
Plano-concave lenses cause light to diverge.
They have one flat side and one concave side, with a negative focal length.
Plano-concave lenses are well-suited for applications such as beam expansion, light projection, and focal length expansion.


Plano-Concave Lenses are usually used in beam expansion applications, light projection, or focal length of expansion.
Tc---------- Center Thickness
Te---------- Edge Thickness
R1---------- Radius
Dia---------- Diameter
BFL ---------- Back Focal Length
EFL ---------- Effective Focal Length
H'-------------- Principal Point
1 | 2 |
---|---|
Center Thickness Tolerance | ±0.1mm |
Surface Irregular Accuracy | -- |
Centering Tolerance | <3 arcmin |
Bevelling | <0.2×45° |
1 | 2 |
---|---|
Design Wavelength | 587.6nm |
Focal Length Tolerance | ±1% |
Diameter Tolerance | +0.0/-0.1mm |
Surface Quality | 40/20-60/40 |
Uncoated CaF2 Single Crystal(Calcium Fluoride) Plano-Concave Lenses can also be coated with IR AR Coating 3-5um.
Anti-reflection coating can reduce the reflectivity of each surface of the lens.

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