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High-Resolution GFF Component: Meets Precision Measurement in Biomedical Applications

Categories DWDM Filter
Brand Name: Honghui Guanglian
Certification: ISO9001:2015/ISO14001:2015/ ISO45001:2018/ISO27001:2013
Place of Origin: Shanghai
MOQ: 10
Price: Negotiation
Payment Terms: T/T
Supply Ability: 10K
Delivery Time: 14 work days
Packaging Details: Specified Plastic Box
Operating Wavelength λo (nm): 1528.0 ~ 1563.0
Filter Transmission Curves: See Attached
Insertion Loss @ Transmission Peaks Within λo (dB): < 0.20
Angle of Incident (degrees): 2 ~ 4
Polarization Dependent Loss within Passband (dB): < 0.08
Wavelength Thermal Shifting Δλ/ΔT (pm/°C): < 1 (-10 ~ 75°C)
Substrate Material: High Quality Optical Glass
Wedge Angle (degrees): > 0.2
Dimension (mm): (1.3~1.43) x (1.3~1.43)x (0.9~1.4)
Backside AR Coating: < 0.2% Reflection
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High-Resolution GFF Component: Meets Precision Measurement in Biomedical Applications

Product Description

The GFF (Grating for Flat Field) is a high-performance optical component designed to deliver uniform light dispersion and flat-field imaging across the entire detection plane, a critical requirement for precision spectroscopy and optical sensing systems. Engineered with advanced holographic or ruled grating technology, GFF minimizes wavelength-dependent dispersion variations, ensuring consistent signal intensity and resolution from the short-wavelength (UV) to near-infrared (NIR) ranges.

Crafted from high-purity optical substrates (such as fused silica or aluminum-coated glass), this GFF component offers excellent mechanical stability and resistance to environmental factors (humidity, temperature fluctuations), making it suitable for both laboratory and industrial environments. Its optimized groove density (typically 300-2400 grooves/mm) and blaze wavelength design enable high diffraction efficiency, reducing light loss and enhancing the sensitivity of downstream detectors. Whether integrated into high-resolution spectrometers, optical analyzers, or industrial inspection tools, GFF provides reliable flat-field performance, laying a solid foundation for accurate data acquisition in scientific research and industrial quality control.

Key Features

Flat-Field Uniformityem requirements.

High Diffraction Efficiency

Low Stray Light

Durable Construction

Customizable Options

Applications

Spectroscopy Systems

Biomedical Instrumentation

Industrial Quality Control

Astronomical Optics

Portable Sensing Devices

Optical Communication Testing

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