Pulse coffee table
A Tribute to Ancient Architecture
The Pulse Coffee Table combines elegance and functionality. Sculptural aluminium legs with a refined ribbed texture create a dynamic play of light and shadow, while the smart design ensures a timeless and sophisticated presence in any setting.
Mathias De Ferm
Mathias is a product and furniture designer from Antwerp, Belgium. Collaborating with renowned international brands, his work includes furniture, products, lighting and micro-architecture.
His work is characterized by a strong belief in the social relevance of design. A dining table, for instance, is not limited to its practical qualities. It forms the social centerpiece of a home: a place where people gather to eat, drink and talk with each other. This idea led to a serene yet warmhearted aesthetic and the frequent use of durable materials.
Perfect match
Ceramics
Caravaggio
Black Iron
Charisma Grey
Marble Marone
Emperador
Absolute White
Black Iron
Travertino Grey
Calacatta Naturale
Bianco D'oro
Black Diamond
Sabbia Rosso
Charisma Beige
Frame
FAQ
All our tables are suitable indoors and outdoors.
Some of the frames are made of lacquered aluminium:
- Collins
- Curve
- Fizz
- Marguerite
Others are made of lacquered steel:
- Easy-4
- Layers
- Propeller
- Wire
- no scratches
- 100% UV-resistant
- absorbes no grease, acid water and wine
- 100% resistant to frost
- no more greasy fingers
- no visible dust
- indoor and outdoor use
- easy maintenance
Xeramica® 6+6 mm
This is a ceramic plate of 6 mm laminated onto a pane of 6 mm tempered glass. The maximum width is 150 cm. And this is only available in Calacatta.
Xeramica® 13 mm
This is a full ceramic plate, with 1 mm of fiber-glass membrane underneath. The maximum width is 150 cm. This is available in 10 colors: Emperador, Black Iron, Lava Brown, Absolute White, Marble Marone, Marble Azuro, Caravaggio, Travertino Grey, Soft Oak and Charisma Grey.
Our table tops are made of ceramic, Xeramica®. Xeramica® consists of minerals that are pressed together high pressure and at high temperature to form a very dense, homogeneous structure.