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Customer-Specific Optical PTFE Targets

Custom Optical PTFE Targets for Industrial and OEM Applications

SpheresOptics GmbH offers customized Zenith Polymer Targets tailored to meet specific application requirements across research, industry, and OEM integration. Based on our high-performance Zenith Lite material, these targets provide reliable optical properties with exceptional durability and stability.

We offer a wide range of customization options, including:

  • Striped Targets with defined optical contrast

  • Multiple greyscale levels for calibration and imaging applications

  • Custom geometries and sizes to match your optical system or spatial constraints

  • High-volume production for industrial processes and inline inspection systems

  • OEM solutions optimized for seamless integration into your products or systems

All custom targets are produced with the same precision and quality as our standard Zenith products and maintain excellent diffuse reflectance, vacuum compatibility, and long-term stability.

Let us support your innovation with materials engineered for precision, scalability, and performance.

📩 Contact us to discuss your custom optical PTFE solution.

Download Datasheet Optical PTFE OEM

Download Brochure Diffuse Reflectance Standards, Targets and Materials, Zenith Polymer®

Spectralon® Fluorescence Standards Overview

Labsphere Spectralon® fluorescence standards are stable standards of diffuse fluorescence that are used for calibrating spectrofluorometers and fluorescence measurement instruments in general. Compared with glossy ceramic standards, Spectralon fluorescence standards provide a stable, consistent reference regardless of the instrument’s viewing or illumination geometry. Fluorescence materials aid in the development of optically brightened materials such as paper and textiles and are widely used in the cosmetic industry. Unlike disposable paper fluorescence standards, Labsphere fluorescence pucks provide highly stable, reproducible fluorescence reflectance over a long period of time in varying conditions.

Spectralon provides the ideal matrix for inorganic fluors which are photochemically stable when compared to their organic counterparts. The stability of the inorganic fluors, when combined with the durability of Spectralon, result in rugged, long-lasting fluorescence materials for both field and laboratory use. Labsphere’s fluorescence pucks are sold individually, in sets of three identical fluors, or as a set of the five fluors described below. Each puck is housed in a durable Delrin holder with a protective cover.

Calibration

Spectralon fluorescence standards are supplied uncalibrated. As such, they are not used to impart an absolute calibration onto the fluorescence measurement instrument, rather their utility is to serve as a stable baseline reference when comparing the fluorescence performance of sample materials. Typical spectral absorption and spectral emission data is provided for each standard type.

Ordering Information

Standards are available individually and in sets of five in both 1.25 and 2.00 inch diameters, listed below. There are five fluorescent standard types to choose from, each with a characteristic excitation and emission spectra: blue/white (320nm excitation peak); blue/white (340nm excitation peak); blue; green; and orange.

Fluorescence Standard Sets – Uncalibrated

  • USFS-500-010: set of all five fluorescence standards, 1.25” diameter
  • USFS-500-020: set of all five fluorescence standards, 2.00” diameter

 

Individual Fluorescence Standards – Uncalibrated

  • USFS-200-010: blue/white, excitation 300-400nm, emission 430-580nm, 1.25” dia.
  • USFS-200-020: blue/white, excitation 300-400nm, emission 430-580nm, 2.00” dia.
  • USFS-205-010: blue, excitation 300-370nm, emission 430-470nm, 1.25” dia.
  • USFS-205-020: blue, excitation 300-370nm, emission 430-470nm, 2.00” dia.
  • USFS-210-010: green, excitation 300-420nm, emission 510-570nm, 1.25” dia.
  • USFS-210-020: green, excitation 300-420nm, emission 510-570nm, 2.00” dia.
  • USFS-336-010: orange, excitation 300-360nm, emission 560-630nm, 1.25” dia.
  • USFS-336-020: orange, excitation 300-360nm, emission 560-630nm, 1.25” dia.
  • USFS-461-010: blue/white, excitation 300-390nm, emission 430-480nm, 1.25” dia.
  • USFS-461-020: blue/white, excitation 300-390nm, emission 430-480nm, 2.00” dia.

Spectralon® Fluorescence Standards Specifications

Parameter

Specification

Available Fluors

SFS-200: blue/white, excitation 300-400nm, emission 430-580nm
SFS-205: blue, excitation 300-370nm, emission 430-470nm
SFS-210: green, excitation 300-420nm, emission 510-570nm
SFS-336: orange, excitation 300-360nm, emission 560-630nm
SFS-461: blue/white, excitation 300-390nm, emission 430-480nm

Optical Surface

1.25 inch or 2.00 inch (31.8 or 50.8mm) diameter

Standard Type

Diffusely reflecting (Lambertian)

Calibration Type

Not applicable – typical excitation and emission data only is provided

Parameters Reported

N/A

Reporting Interval

N/A

Overall Dimensions

1.25 inch standards: 1.50 inch diameter x 0.55 inch thick (38.1 x 14mm) with cover
2.00 inch standards: 2.38 inch diameter x 0.60 inch thick (60.5 x 15.2mm) with cover

Spectralon fluorescence standards are used whenever you need to baseline reference or validate the performance of your spectrofluorometer. Spectralon exhibits diffuse reflectance, often termed Lambertian. But what is a Lambertian reflector? Imagine a material which reflects light equally in all directions. It appears equally bright to an observer, regardless of the angle from which they view it. A material that exhibits Lambertian reflectance is one which is a perfectly matte, or diffusely reflecting. In physics, we say that the material obeys Lambert’s Cosine Law, named after Johann Lambert, who described the concept of a perfect diffuse reflector in his 1760 book “Photometria”.

In purely practical terms, by using a diffusely reflecting standard rather than a glossy plastic or ceramic material to calibrate your instrument gives you more consistent results, and results that can be compared between different instruments and between different laboratories. In comparison, a glossy calibration standard will impart a calibration that will depend upon the exact measurement geometry used in the particular instrument.

Spectralon fluorescence standards are used in the biomedical, pharmaceutical and textile industries as well as in the testing optical brightening agents, for example of “bright white” materials in the paper industry. 

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