Delphi Hayloft 500mm 1-Drawer Wall Hung Vanity Unit (inc Fireclay 1TH Basin)
Unlike the floor-standing Hayloft units, this 500mm model mounts straight to the wall with a single wide drawer, floating the farmhouse look and leaving the floor beneath completely clear - a clever way to make a small bathroom or en-suite feel bigger while keeping cleaning simple. The framed drawer front, vertical slatted shiplap side panels, and a rounded chrome knob prove country style is not just for larger rooms.
The premium fireclay basin on top brings real durability to a compact setting: high-temperature firing and a thick non-porous glaze make it far more resistant to chips and cracks than ordinary ceramic, and its raised traditional detailing finishes the top beautifully. The MFC cabinet is offered in Soft Black, Satin Green, Pebble Grey, Satin Grey, and Satin White.
Bundle Contents
- 1 x Delphi Hayloft 500mm 1-Drawer Wall Hung Vanity Unit
- 1 x Delphi Traditional Fireclay Furniture Basin - 530mm Wide - 1 Tap Hole
- 1 x Delphi Traditional Round Knob Handle - Chrome
Product Features
- Compact 500mm wall-hung vanity unit supplied with a premium fireclay basin
- Wall-mounted design keeps the floor clear for easy cleaning and a more spacious feel
- Farmhouse design with a framed drawer front and vertical slatted shiplap-style side panels
- Single wide drawer with soft-closing runners for quiet, controlled operation
- Minimalist rounded chrome knob handle included
- Available in a choice of five finishes: Soft Black, Satin Green, Pebble Grey, Satin Grey, and Satin White
- Cabinet manufactured from MFC
- Rectangular premium fireclay basin with traditional detailing and a 66mm profile
- Single central pre-drilled tap hole suits standard monobloc basin mixer taps
- Integrated overflow with oval overflow cover
- Overall dimensions (unit plus basin): 530mm (W) x 406mm (D) x 497mm (H)
- 5-year manufacturer guarantee
Important Information
- Vanity unit and basin only - tap, waste, and trap are sold separately
- Requires a slotted basin waste due to the integrated overflow