3105 NW 61st Place, Oklahoma City, OK 73112
- 3 beds |
- 2 baths |
- 1,934 sqft
Single-Family Home
Built in 1959
8,398sqft lot
2 car garage
$184/sqft
Listed 6 days ago
Property Description
Charming & Completely Updated Near Nichols Hills! Welcome to NW 61st Place, a charming 3-bedroom, 2-bathroom home with a sunroom offering just under 2,000 square feet of comfortable living space. Filled with character and featuring separate, functional living areas, this home offers peace of mind with numerous updates including a new roof (2024), new PVC sewer line (2024), upgraded electrical panel (2021), new lighting (2024), digital thermostat (2025), and new gutters and perimeter fencing (2026). Inside, you’ll find thoughtful updates throughout, including crown molding, fresh interior paint, updated door hardware, premium Pella windows, and luxury vinyl flooring. The kitchen features quartz countertops, custom backsplash, farmhouse sink, and a brand-new dishwasher (2026), while both bathrooms have been refreshed with new toilets and modern faucets (2025). The bright sunroom showcases beautiful custom ceiling tiles and provides a versatile space for a home office, reading area, or additional lounge space separate from the main living areas. The backyard is ready for entertaining with decorative river rock landscaping and a stone fire pit area. Conveniently located near Trader Joe’s, Target, Oak OKC, Scissortail Park, Bricktown, and Integris. Welcome home!
- Listing Status:
- Active
- Data Last Updated:
- August 5, 2026 at 11:21PM
- Listing Office:
- Homestead + Co : (405) 509-0541
- Listing Agent:
- Ethan Barker : (405) 831-6780
- MLS ID:
- 1241951

- General: Covered PorchPatio - OpenRain Gutters
- Style: Traditional
- Roofing: Composition
- General: BrickOneSlab
- Originating MLS: mlsok
- School District: Putnam City
- County: Oklahoma
- Zoning: 3105NW61st73112
- Source: mlsok
This listing courtesy of Ethan Barker , Homestead + Co
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






