UV-Excited Full-Spectrum Phosphor Blend 380–430 nm ATOMFAIR®

$85.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research-grade UV-excited full-spectrum phosphor blend for 380–430 nm LED chips, broad visible emission, and Ra >97 white-light designs. Order now.

SKU: AF-PH-L-FULL-FSUV-FSUV
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UV-Excited Full-Spectrum Phosphor Blend
Research-grade luminescent powder
Product Overview

This UV-excited full-spectrum phosphor blend is designed for warm-white and neutral-white LED lighting. It combines multiple phosphor components under 380–430 nm excitation to provide broad visible-spectrum coverage.

Key specifications include excitation source: UV LED chip; recommended excitation range: 380–430 nm; spectral output: Broad full-spectrum visible emission; color rendering: Full-spectrum combinations can achieve Ra >97 and R1–R15 >90. These parameters define the available wavelength, optical-performance and physical-processing range for this product.

The product is intended for Educational lighting, eye-care lighting, circadian lighting and full-spectrum general illumination. Selection should be based on the required emission wavelength or spectral distribution, excitation source, particle-size requirement where stated, processing method and final application.

Technical Specifications
Parameter Specification / Available Range
Atomfair Model AF-FSUV
Product Description UV-Excited Full-Spectrum Phosphor Blend
Excitation Source UV LED chip
Recommended Excitation Range 380–430 nm
Available White-Light Options Warm white and neutral white
Spectral Output Broad full-spectrum visible emission
Color Rendering Full-spectrum combinations can achieve Ra >97 and R1–R15 >90
Applications Educational lighting, eye-care lighting, circadian lighting and full-spectrum general illumination
Key Features & Advantages
  • UV-chip full-spectrum excitation architecture.
  • Warm-white and neutral-white options.
  • Broad visible-spectrum coverage.
  • High color-rendering combination targets.
  • Defined parameter range: Excitation Source: UV LED chip; Recommended Excitation Range: 380–430 nm.
  • Application suitability: Designed for Educational lighting, eye-care lighting, circadian lighting and full-spectrum general illumination.
CHEMICAL POWDER HANDLING: Keep the phosphor sealed, dry and protected from direct light. Minimize airborne dust during transfer, use suitable laboratory protective equipment, and review the applicable safety documentation before handling.
PACKAGING SERVICE: Atomfair can coordinate sealed, moisture-resistant packaging according to the confirmed optical grade, particle-size requirement, quantity and transport conditions.
DELIVERY SUPPORT: Shipment destination, labeling requirements and delivery schedule are confirmed during quotation.
RFQ INFORMATION: Provide the required emission wavelength or spectral configuration, particle-size range, quantity and delivery destination.
PHOSPHOR SELECTION AND QUOTATION SUPPORT
For wavelength selection, particle-size confirmation and quotation support, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

This phosphor blend must be kept sealed, dry, and protected from direct light to prevent moisture-induced degradation and photobleaching. Airborne dust must be minimized during transfer to avoid inhalation and cross-contamination.

  • Moisture Sensitivity: Sealed, moisture-resistant packaging is required to maintain optical performance and prevent hydrolysis of the phosphor components.
  • Light Sensitivity: Protect the powder from direct light exposure to avoid premature excitation and spectral shift.
  • Dust Control: Minimize airborne dust during transfer using suitable laboratory protective equipment to prevent respiratory exposure and contamination.

Transfer the phosphor powder in a low-humidity, low-light environment using appropriate personal protective equipment. Minimize dust generation and seal the container immediately after use.

Required Equipment: Laboratory protective equipment (gloves, safety glasses, dust mask), Sealed, moisture-resistant container

  1. Prepare workspace
    Set up the transfer area in a low-humidity environment with subdued lighting to prevent moisture absorption and photoexcitation.
  2. Don protective equipment
    Wear gloves, safety glasses, and a dust mask to minimize inhalation and skin contact with the fine powder.
  3. Open container carefully
    Open the sealed container slowly in a fume hood or ventilated area to avoid generating airborne dust.
  4. Transfer powder
    Transfer the required amount of phosphor using a clean, dry spatula, minimizing agitation to reduce dust release.
  5. Reseal container immediately
    Seal the original container promptly after transfer to protect the remaining powder from moisture and light.

What color rendering performance can be expected from the AF-FSUV phosphor blend under 380–430 nm UV LED excitation?

The AF-FSUV full-spectrum phosphor blend is designed to achieve Ra >97 and R1–R15 >90 when combined appropriately under UV LED excitation in the 380–430 nm range. This high color rendering makes it suitable for educational lighting, eye-care lighting, and circadian lighting applications where spectral fidelity is critical.

What are the critical handling and storage requirements for this UV-excited phosphor powder?

The phosphor must be kept sealed, dry, and protected from direct light to prevent moisture degradation and photobleaching. During transfer, airborne dust should be minimized using suitable laboratory protective equipment, and applicable safety documentation must be reviewed before handling. Atomfair can coordinate sealed, moisture-resistant packaging based on the confirmed optical grade and quantity.

Can the AF-FSUV phosphor be used with standard UV LED chips, and what excitation range is required?

Yes, the AF-FSUV is specifically designed for excitation by UV LED chips within the recommended range of 380–430 nm. It provides broad full-spectrum visible emission with warm-white and neutral-white options, making it compatible with common near-UV LED sources used in general illumination and specialty lighting applications.

The AF-FSUV UV-excited full-spectrum phosphor blend, designed for 380–430 nm UV LED excitation, delivers broad visible-spectrum emission with potential Ra >97 and R1–R15 >90, making it suitable for high-CRI applications in educational, eye-care, and circadian lighting. Operational deployment requires sealed, moisture-free storage and dust-minimizing handling procedures due to its chemical powder form.

Positive

  • High Color Rendering Potential: Full-spectrum combinations can achieve Ra >97 and R1–R15 >90, enabling superior color fidelity in lighting applications.
  • Defined UV Excitation Range: Optimized for 380–430 nm UV LED chips, providing a narrow, specified excitation window for consistent spectral output.

Trade-offs

  • Moisture and Light Sensitivity: The phosphor powder must be kept sealed, dry, and protected from direct light to prevent degradation, requiring controlled storage conditions.
  • Dust Hazard During Handling: Airborne dust generated during transfer necessitates use of laboratory protective equipment and careful handling procedures to avoid inhalation or contamination.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).