Haku Valet Bench studio concept visual in pale ash, natural cord Design concept visual
Close detail of the Haku Valet Bench concept
Material & construction detail
Haku Valet Bench in the guest room concept scene
Room context

STH · STH-GR-04

Haku Valet Bench

A hand-woven cord surface spans two simple ash trestles.

Haku Valet Bench is an original concept piece developed for the Stillness Hotel Collection. A hand-woven cord surface spans two simple ash trestles.

Concept status

Visual and specification direction only. Final construction, compliance, testing and commercial feasibility follow project selection.

Applications
Hotel guest rooms, suites and branded residences
Concept dimensions
W 1420 × D 470 × H 450 mm
Material direction
Solid ash, woven paper cord, concealed steel rail

Room context · Guest Room

A Room for Exhaling

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Haku Valet Bench shown in the guest room concept scene
In context · Guest Room Open scene ↗

Concept Sheet

A clear starting point for project development.

The dimensions and materials establish design intent. They are expected to evolve around the project brief, factory engineering, mock-up findings and applicable standards.

Pale Ash

Pale Ash

Charred Timber

Charred Timber

Natural Linen

Natural Linen

Concept code
STH-GR-04
Applications
Hotel guest rooms, suites and branded residences
Concept dimensions
W 1420 × D 470 × H 450 mm
Material direction
Solid ash, woven paper cord, concealed steel rail
Construction intent
Concept-stage contract bench with a reinforced frame, commercial foam build-up and replaceable upholstery.
Finish direction
Pale ash, natural cord
Customisation scope
Length, upholstery, piping, base finish, seat firmness and luggage protection
Development status
Concept design only. Final engineering, mock-up, performance testing and factory approval are required before manufacture.

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Related concept pieces

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STH-GR-04 · Concept design

Develop the Haku Valet Bench for your project.

Share quantities, plans, finish references and performance requirements to begin feasibility and engineering review.

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