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Overcoming Optical Decay in Deep-Sea Squid Jigging: Huanyu 490nm COB Offers High Underwater Penetration

2026-09-11
Latest company news about Overcoming Optical Decay in Deep-Sea Squid Jigging: Huanyu 490nm COB Offers High Underwater Penetration

Dual Physical and Biological Challenges in Deep-Sea Squid Jigging

In deep-sea squid jigging operations, traditional marine fishing lamps frequently suffer from severe optical decay, salt-spray yellowing, and energy waste caused by seawater's selective optical absorption . According to marine physical propagation principles, red and yellow spectral bands decay fastest in seawater, whereas blue and green lights demonstrate the strongest underwater penetration . Furthermore, marine fish attraction relies on a double mechanism: first, physical penetration where light waves successfully reach the specific water layers of fish schools, and second, biological stimulation that matches the visual sensitivity of fish and marine plankton . As an established marine-grade LED manufacturer, Huanyu is dedicated to resolving these critical industry-level pain points through high-performance flip-chip COB semiconductor innovation.

Seawater Light Propagation and Precise Spectral Matching

The ultimate performance of a fishing light COB is determined by its precise spectral matching with marine organisms rather than raw, excessive power consumption . In deep offshore fisheries, the 490~495nm cyan-blue light is scientifically recognized as the Golden Waveband . This specific wavelength penetrates deep into clear water layers (reaching up to 40-50m)  and aligns perfectly with the biological visual sensitivities of squids and primary marine plankton . By gathering plankton bait first, it subsequently attracts predatory commercial fish, achieving an optimal biological and physical aggregation effect .

Technological Parameters Supporting Huanyu Flip-Chip COB

To ensure stable operations under high maritime humidity, extreme salinity, and strong engine vibrations, Huanyu has introduced its specialized 500W-1500W flip-chip fishing light COB series . This technical solution delivers reliable performance supported by three core parameters:

  1. Narrow Center Wavelength Tolerance of ±5nm : Common low-cost LED light sources with wide tolerances often drift into the red or yellow spectra, significantly reducing attraction rates. Huanyu strictly limits the wavelength to 485-495nm, ensuring that output light remains in the highly penetrative green-blue band .
  2. Thickened Aluminum Substrate with 8.0 W/m·K Thermal Conductivity : Marine heat and high electrical loads can cause thermal wavelength shifts and accelerate chip aging. Our COBs feature 8.0 W/m·K thermal conductivity and 3KV voltage resistance to ensure rapid heat dissipation, effectively eliminating thermal-induced spectral drift .
  3. Self-Developed Anti-Yellowing Composite Powder Packaging : Standard indoor LEDs yellow and fail within 2-6 months when exposed to salt spray. Huanyu utilizes its marine-grade encapsulation composite powder to resist UV and salt spray, preserving light flux and extending the product's operational lifespan.

System Integration Steps and Marine Protection

To achieve optimal underwater illumination, system integration should follow these technical guidelines. First, underwater fixtures should prioritize a 120-degree half-power angle to maximize the horizontal light coverage . Second, integrate a wide-voltage constant-current driver with wave surge protection to buffer unstable shipborne voltage fluctuations . Third, adopt tempered glass lenses to prevent salt encrustation and marine corrosion . Huanyu fishing light COB series are REACH and California Proposition 65 certified .

Summary

Spectral accuracy and maritime protection are the baselines for marine COB light sources. Huanyu 490nm flip-chip COB LEDs, featuring ±5nm wavelength tolerance, high thermal dissipation, and marine-grade packaging, enable fishing vessels to maintain stable, long-term, and high-efficiency operations in extreme sea conditions.

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  • Q1: Why not use standard 450nm deep blue LED as the primary fishing light?
    • A1: While 450nm deep blue light performs well in extremely clear water, suspended particles in medium turbid seawater cause severe blue-light scattering, resulting in major underwater illumination decay  The 490nm blue-green (cyan) spectrum is more versatile for both clear and turbid water conditions without causing stress to fish .


  • Q2: Why is controlling the wavelength tolerance within ±5nm critical?
    • A2: Seawater filters light selectively. If the center wavelength drifts by 10nm, the underwater penetration depth drops drastically as energy is absorbed by water and wasted as heat, failing to reach the fish aggregation layers .