Vineyard House

Architecture | A sanctuary of glass and light engineered with net-positive building science and FRAMECAD precision steel framing to redefine sustainable luxury.

Vineyard House

Net-Positive Building Science & Precision Engineering

The Vineyard House is a sanctuary of glass and light, engineered to redefine the relationship between luxury residential design and environmental performance. Utilizing a high-fidelity building envelope, the project anchors itself in the Glen Oak Hills community as a prototype for net-positive living.

Elevations

Automated Light Control

To manage the extensive glass-to-wall ratio, the envelope features motorized angled roller shades. These custom-fabricated units are engineered to disappear directly into the window mullions, maintaining architectural clarity while actively managing solar heat gain and interior UV exposure.

Tectonic Warmth

To contrast the surgical precision of the steel frame, the design integrates heavy Oak Framed Trusses. These members provide the characteristic curves and arches of the vaulted spaces, bridging the gap between high-tech building systems and the timeless textures of traditional masonry and timber.

Finishes

frame-dad

Phase 01

Precision Steel Framing

The primary structure utilizes Cold-Formed Steel (CFS) technology, manufactured to tolerances of less than a millimeter. This advanced engineering allows for complex geometries and massive spans of glazing that would be impossible with traditional timber framing, all while significantly reducing material waste and assembly time.

Digital-to-Physical Manufacturing

Every component of the Vineyard House was “printed” from a unified Building Information Model (BIM). This end-to-end manufacturing process ensures that structural steel, custom cabinetry, and glass assemblies align with absolute accuracy before arriving on-site.

unnamed

The Walk-Out Substructure

For the walk-out basement, we employed a composite Insulated Concrete Form (ICF) system. This high-performance foundation provides extreme structural resilience—capable of withstanding 250mph winds and magnitude 8.0 seismic events—while serving as a continuous thermal break for the home’s lower level.

Interior Systems

Custom Cabinet Boxes: Utilizing advanced construction methods (NS Builders standards), the interior storage is elevated into architectural furniture, balancing modern durability with historic joinery details.

Hill Top House = Net-Positive House

The overarching goal is to leverage building science-based best practices—integrating advanced products, techniques, and assemblies to construct a high-performance, net-positive environment.

Positive Energy Homes are so efficient they produce more energy than they consume. This surplus power can be redirected to support your modern lifestyle—from charging electric vehicles to powering professional-grade tools.

Summary

High-Fidelity
Habitation

The Vineyard House is a masterclass in building science integration. By merging cold-formed steel precision with heavy timber warmth and net-positive energy goals, the project sets a new standard for sustainable luxury in a modern residential enclave.

Technical Stack

  • Design: Rhino, Revit, V-Ray
  • Engineering: FRAMECAD Structure & Detailer
  • Infrastructure: The Perfect Block ICF
  • Performance: Net-Positive Energy Target

Project Inquiries

Get in Touch

Southern California — Available for select commissions.

Courtyard

Architecture | Located in Southern California, this project showcases a modern courtyard design where clean architectural lines meet lush, tropical landscaping. Centered around a custom linear fire pit and a olive tree, the space is meticulously organized to balance daily utility with a high-end outdoor living experience.

Parametric Robotic Light-Path Control

Product Design | A synthesis of 6-axis kinematics and long-exposure photography, translating algorithmic point clouds into high-fidelity light sculptures.

Performative Surface

Architecture | An exploration of the hybridization of landscape and architecture through a continuous, active terrain that facilitates ecological growth and public circulation.

The Bamboo Forest Pavilion

Architecture | A study in structural transparency and biophilic integration, utilizing a "disappearing" glass strategy and a monolithic service core to dissolve the boundary between domesticity and the wild.

Mid-Century Modern Reimagined

Architecture | A study in architectural archaeology that restores 1950s linear clarity through a bespoke palette of white oak, aged brass, and honed marble.

Rise|Shelf

Product Design | A modular furniture system engineered for scalability, combining flat-pack logistical efficiency with the tactile weight of solid-wood craftsmanship.

Vineyard House

Architecture | A sanctuary of glass and light engineered with net-positive building science and FRAMECAD precision steel framing to redefine sustainable luxury.

Paradise Falls Development

Architecture | A master-planned retreat that seamlessly blends holistic luxury with the raw, natural beauty of the California coast.

MacBook Pro Sleeve

Product Design | A masterclass in functional minimalism, the MacBook Pro Sleeve is precision-crafted from European leather to safeguard your device without compromising its iconic silhouette. Featuring an integrated 18-degree folding stand and a secure clamshell fit, it is designed for the modern nomad who demands both protection and performance.

Lights of Fairview Park

Architecture | A civic masterplan for a 208-acre preserve, featuring interactive "light-reeds" and a net-zero pavilion designed to synchronize human presence with native habitat restoration.

Dynamic Walk

Architecture | A study in site-specific reconciliation, Dynamic Walk utilizes a rigid modular system and CNC-machined Baltic Birch joinery to negotiate unpredictable terrain. By engineering the foundation as a series of interlocking segments, the installation functions as a structural puzzle that maintains perfect stability across irregular landscapes.

Elevate – Dock

Product Design | Precision-engineered for functional minimalism, the Elevate Dock features a weighted stainless steel core and an 18-degree ergonomic tilt. Designed for zero-tool assembly, its adaptive internal geometry provides universal compatibility for any smartphone and cable, creating a seamless, clutter-free environment for your workspace.

Adaptable Dock

Product Design | Precision-engineered for functional minimalism, the Elevate Dock features a weighted stainless steel core and an 18-degree ergonomic tilt. Designed for zero-tool assembly, its adaptive internal geometry provides universal compatibility for any smartphone and cable, creating a seamless, clutter-free environment for your workspace.

Portfolio and Watch Dock Case

Product Design | A study in material contrast and precision joinery. This custom walnut housing utilizes a hybrid fabrication workflow—pairing 3-axis CNC machining with 3D-printed porcelain to create a high-fidelity tactile experience and a seamless, friction-fit integration of components.

Japanese Escape

Architecture | A retreat designed through the lens of spatial transparency, utilizing traditional Japanese joinery and a precision-engineered timber post-and-beam assembly.

Magical Realism

Architecture | An exploration of a non-denominational sacred space inspired by Fay Jones’ Thorncrown Chapel. This project utilizes a disciplined timber frame structure and rhythmic spatial compression to blur the boundary between the ordinary and the extraordinary, allowing a sensory experience of "magical realism" to emerge.

Apple Watch Dock

Product Design | A study in kinetic elegance and tactile precision. Inspired by the silhouette of a spinning top, this dock utilizes a solid 316L stainless steel core and a hidden ball-plunger system to provide a secure, click-into-place housing for interchangeable shells—transforming the Apple Watch into a sculptural bedside centerpiece.

Parametric Brick Estate

Architecture | A convergence of traditional materiality and cutting-edge computational logic, this project leverages 6-axis robotic fabrication and Grasshopper-driven simulations to create self-supporting, compression-based masonry. By modulating individual brick rotation and porosity, the design translates complex environmental data into a high-resolution, rule-based sculpture.