Senator-Three

DTX137
0

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  • DITA-SERIES FRAME
  • CUSTOM MODULAR TITANIUM CHASIS BROW BAR
  • FULL TITANIUM RIM WITH PRESSED LINE DETAIL
  • CUSTOM TITANIUM NOSE PADS WITH DIAMOND PRESSED DETAIL
  • DUAL TITANIUM TEMPLE WITH PRESS LINE DETAIL AND CONTRAST FINISH
  • ACETATE TEMPLE TIPS WITH LASER LINE DETAIL
  • DITA’S UNIQUE HEX SCREW HINGES
  • MADE IN JAPAN
  • Temple Length — 145 mm
  • Lens Width — 53 mm
  • Nose Bridge Length — 19 mm
DITA is pleased to offer free shipping and exchanges or returns on any item purchased on dita.com — our full refund policy can be found here.
  • DITA-SERIES FRAME
  • CUSTOM MODULAR TITANIUM CHASIS BROW BAR
  • FULL TITANIUM RIM WITH PRESSED LINE DETAIL
  • CUSTOM TITANIUM NOSE PADS WITH DIAMOND PRESSED DETAIL
  • DUAL TITANIUM TEMPLE WITH PRESS LINE DETAIL AND CONTRAST FINISH
  • ACETATE TEMPLE TIPS WITH LASER LINE DETAIL
  • DITA’S UNIQUE HEX SCREW HINGES
  • MADE IN JAPAN
  • Temple Length — 145 mm
  • Lens Width — 53 mm
  • Nose Bridge Length — 19 mm
DITA is pleased to offer free shipping and exchanges or returns on any item purchased on dita.com — our full refund policy can be found here.

about the Senator-Three

The latest installment in DITA’s elegant, 1950s-inspired Senator series features Art Deco flourishes and a bold new temple design that effortlessly maximizes style and comfort.

DESIGN THAT FINDS BEAUTY IN PURPOSE:
Senator-Three utilizes a unique design system, consisting of a universal titanium top-brow and temple chassis that acts as an anchor for the titanium lens rims, a key element in the design language for future releases of the Senator series.

CRAFTSMANSHIP THAT CELEBRATES THE UNSEEN:
A new temple design, featuring and external/internal titanium construction technique, reinforces the temple along the outside edge and rests within an acetate temple tip for maximum comfort.

CULTURE THAT TRANSCENDS CONVENTION:
Though descended from the browline frames of the 1950s, Senator-Three’s lightweight construction and elegant geometry represent a relentlessly modern approach to optical design.