OSIRE® Family

The OSIRE E3635 is especially designed for automotive applications (interior) and RGB displays.

OSRAM OS - your partner for Ambient Lighting

With many years of experience and outstanding qualifications, Osram OS is one of the few players in the automotive market that not only offers a wide range of products in various power classes, sizes and wavelengths of LEDs, but also all common IR technologies - from IREDs to VCSELs and lasers. The interplay of all these components creates a unique driver experience that makes Osram OS - the partner of choice for ambient lighting.

OSIRE® - especially designed for automotive interior applications

The OSIRE® family offers individually addressable LED chips for a maximum of flexibility in terms of color point, driver selection and interconnection in Interior Ambient Lighting. Due to the low profile, the OSIRE® devices are ideally suited for coupling into thin lightguides and enables ultra compact designs.

  • Qualifications: AEC-Q102 Qualified
  • Individually adressable chips
  • Wide color range offered
  • Small color bin size
  • Portfolio supports all existing ambient applications
  • Interior Illumination (e.g. Ambient Map)

OSIRE® E3635

The OSIRE® E3635 offers an established footprint and package technology offering a wide color range customers benefit from.

OSIRE® E3323

The OSIRE® E3323 is designed for automotive ambient applications. With its compact size, the device offers a maximum of flexibility for various assembly situations. All measurement data of every single LED is made available at 10 and 50 mA via an imprinted data matrix code. This feature helps to reduce the optical measurement effort on customer side.

OSIRE® E5515

The OSRAM OSIRE® E5515, KRTB AELPS1.32 RGB sidelooker device, is specifically designed for automotive interior applications. It offers individually addressable LED chips for a maximum of flexibility in terms of color point, driver selection and interconnection. Due to the low profile, the OSIRE® E5515 is ideally suited for coupling into thin lightguides and enables ultra compact designs.