6868 two strings and two parallel four-head 30 degrees
6868 two strings and two parallel four-head 30 degrees
6868 two strings and two parallel four-head 30 degrees
6868 two strings and two parallel four-head 30 degrees
6868 two strings and two parallel four-head 30 degrees
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  • 6868 two strings and two parallel four-head 30 degrees
  • 6868 two strings and two parallel four-head 30 degrees
  • 6868 two strings and two parallel four-head 30 degrees
  • 6868 two strings and two parallel four-head 30 degrees
  • 6868 two strings and two parallel four-head 30 degrees

6868 two strings and two parallel four-head 30 degrees


Hongri Electronics is committed to the research, development, production, and sales of high-quality LEDs, and has established the RITTER brand spe- cifically for UVLEDs.


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N6868

  • Product Detail
    • Commodity name: 6868 two strings and two parallel four-head 30 degrees
    • Commodity ID: 03

    Specifications: Dimensions:

    N6868 2 series 2 parallel 4*30 degree series
    Substrate (HTCC) High-temperature co-fired multilayer aluminum nitride ceramic substrate (6.8*6.8*1.0mm)
    Series-parallel method 2 series 2 parallel
    Chip Brand LG Seoul Light-On
    Forward Current (MAX) 2A/1A 1.4A/0.7A 1.4A/0.7A
    Forward Voltage (MAX) 7-8V/14-16V 7-8V/14-16V 6.5-8V/13-16V
    Electric Power (MAX) 14-16W 9-11W 9-11W
    Radiant Power (395NM) 5800-6200MW 5800-6200MW 4200-4500MW
    Lens Material Quartz JGS-1/JGS-2
    Lens Angle 30 degrees
    Optional Wavelength 365NM/385NM/395NM/405NM

Ritter Electronics is committed to high-quality LED R&D, production and sales. Since 2011, the company has focused on UVLED development for special applications. The Ritter brand was created for UVLED. Now Ritter UVLED has formed a full-process solution from basic components to complete plant applications. Leading in high-power UVLED packaging technology, especially in matrix module packages. Using proprietary technology, on the basis of fully solving the heat dissipation, the quartz lens is integrated with light distribution, which can provide a variety of light-emitting angles and give full play to the light-emitting effect of the chip. It has been widely used in special industrial fields such as glue, ink, paint, exposure, etc.

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