Schneider Optics MPTV ND 0.9 4X5,65

Schneider Optics 4x5.65 MPTV RHOdium Full Spectrum Neutral Density Filter - 0.9 (MPTV1091362). The Schneider RHOdium Full Spectrum Neutral Density (FSND) filters are a high-end ND filter line made specifically for the critical colour standards of 4K, 6K, and 8K resolution cameras.

More information

403.76 € 384.78 € with VAT 318 € without VAT
-+
Personal pickup within 90 minutes
Shipment day: Today
In stock 3 pcs
Praha 3 pcs
Product description SPECIFICATIONS

Product description

Schneider Optics 4x5.65 MPTV RHOdium Full Spectrum Neutral Density Filter - 0.9 (MPTV1091362). The Schneider RHOdium Full Spectrum Neutral Density (FSND) filters are a high-end ND filter line made specifically for the critical colour standards of 4K, 6K, and 8K resolution cameras.
Major advancements in 4K, 6K and 8K digital sensors have resulted in fewer issues with IR leakage compared to digital cameras of the past. However, these imaging sensors can still be subject to IR leakage within the far-red component of the visible spectrum, as well as the near IR. Therefore, IR absorption continues to be a requirement, particularly at optical densities of 1.2 and higher. Schneider’s RHOdium FSND filters answers the cinematographer’s call for a truly neutral ND that controls the IR within the full visible spectrum and into the near infra-red.
RHOdium FSND filters are manufactured to finer flatness/parallelism specifications than ever before. These new filters help resolve even the finest detail. Schneider has...

The Schneider RHOdium Full Spectrum Neutral Density (FSND) filters are a high-end ND filter line made specifically for the critical colour standards of 4K, 6K, and 8K resolution cameras.

Major advancements in 4K, 6K and 8K digital sensors have resulted in fewer issues with IR leakage compared to digital cameras of the past. However, these imaging sensors can still be subject to IR leakage within the far-red component of the visible spectrum, as well as the near IR. Therefore, IR absorption continues to be a requirement, particularly at optical densities of 1.2 and higher. Schneider’s RHOdium FSND filters answers the cinematographer’s call for a truly neutral ND that controls the IR within the full visible spectrum and into the near infra-red.

RHOdium FSND filters are manufactured to finer flatness/parallelism specifications than ever before. These new filters help resolve even the finest detail. Schneider has engineered an extremely thin neutral density interlayer sandwiched between two sheets of crystal-clear Schott water-white glass. The thin interlayer results in excellent transmitted wavefront flatness/parallelism. Additionally the coating is kept safe from abrasions by being encapsulated between the glass, rather than on the surface, thereby withstanding the rigors of the rental market.

RHOdiums are the first filters to undergo a lab-tested tristimulus scan, a more critical colour measurement than methods previously used to measure filter quality. This method verifies neutrality by utilizing a colourimetric algorithm that compares samples to perfectly neutral light. The result is unprecedented accuracy.

Cinematographers and photographers working with the latest in digital image capture technology, or even with film, will find the FSND filters wonderfully suited for all of their Neutral Density needs by keeping the visible spectrum completely in control.

RHOdium FSND Filters are available in 4X5.65 and 6.6X6.6 sizes in 10 stops from 0.3 – 3.0.

SPECIFICATIONS

  • Schneider RHOdium Full Spectrum Neutral Density (FSND) filter
  • High-end ND filter line
  • Made specifically for 4K, 6K, and 8K
  • Manufactured to flatness/parallelism specifications
  • Help resolve even the finest detail
  • Extremely thin neutral density interlayer
  • Excellent transmitted wavefront flatness/parallelism
  • The coating is kept safe from abrasions
  • Available in 4X5.65 and 6.6X6.6 sizes in 10 stops from 0.3 – 3.0
Parameters

Parameters

Manufacturer: Schneider Optics
Category: Filters

Main parameters

Format4x5.65