12409 Holden Way, Rogers, MN 55374
- 4 beds |
- 3 baths |
- 2,692 sqft
Single-Family Home
Built in 2026
8,712sqft lot
3 car garage
$213/sqft
Listed 8 days ago
Property Description
This home is under construction and is available for a September closing! This impressive two-story home delivers 2,692 square feet of thoughtfully designed living space and a coveted 3-car garage—ideal for car enthusiasts or extra storage. Step inside to a bright open-concept main level where the upgraded gourmet kitchen shines with sleek quartz countertops, stainless steel Frigidaire® Gallery appliances, a quartz backsplash and crown molding. The kitchen seamlessly overlooks the dining area and Great Room, complete with an inviting electric fireplace for cozy evenings. A flex room with French doors on the main level is perfect for a home office, creative retreat, or playroom. Upstairs, the luxurious owner's suite features an extended height vanity and a separate tub, while three additional bedrooms each offer their own walk-in closet. A central loft adds even more flexible living space and an unfinished basement provides endless potential for future customization. With premium finishes, energy-efficient features and a standout garage, this home is packed with everything today’s buyers want—so act fast, homes like this never last long!
- Listing Status:
- Active
- Data Last Updated:
- August 6, 2026 at 7:16AM
- Listing Office:
- Lennar Sales Corp : 952-373-0485
- MLS ID:
- 7118160

- General: StoneVinyl
- Parking: Attached GarageAsphaltGarage Door Opener
- Roofing: Age 8 Years or LessAsphalt
- General: TwoConcrete Perimeter
- Road/Access: City StreetCurbsPaved Streets
- HOA Amenities: Other93.0Quarterly
- Originating MLS: northstar
- School District: Elk River
- County: Hennepin
- Zoning: TBD
- Utilities: 200+ Amp Service
- Water: City Water/Connected
- Sewer: City Sewer/Connected
- Source: northstar
This listing courtesy of Lennar Sales Corp
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






