811 Ludington Avenue, Portage City, MI 49002
- 3 beds |
- 2 baths |
- 2,130 sqft
Single-Family Home
Built in 2004
0.34acre lot
2 car garage
$188/sqft
Listed 11 days ago
Property Description
Welcome to this quality built 2004 ranch walkout design in desirable South Portage. Offering a lovely parklike setting & great curb appeal. Featuring a spacious living rm, gas fireplace, high ceilings, hardwood flrs, tile & freshly cleaned carpet. Open inviting kitchen & dining with slider to a covered deck. The primary suite has trey ceilings, walk in closet & a primary bath w/tub & separate shower. Two more spacious bedrooms w/large closets & a full bath complete the main floor. The walkout level provides abundant storage & potential for additional living space. There are two future bedrooms framed & include egress windows & walk in closets & a plumbed 3rd full bath. Double doors for ease of access.The attached 2-car garage includes a convenient bump-out, perfect for extra storage, a workshop, or recreational equipment. A generous backyard that backs up to a beautiful wooded area, offering privacy & a peaceful natural setting, all nicely landscaped with underground sprinkling.
- Listing Status:
- Active
- Data Last Updated:
- June 13, 2026 at 2:42PM
- Listing Office:
- RE/MAX Advantage : 2693233900
- Listing Agent:
- Brendon Zabavski : 2697209951
- MLS ID:
- 66026026370

- Style: Ranch
- Other Structures: CoveredDeckOtherPatioPorch
- Parking: AttachedConcreteGarage door opener
- Roofing: Composition
- Windows: Low emissivity windows
- General: BrickVinyl sidingBasement
- Originating MLS: Greater Kalamazoo Association of REALTORS
- School District: Portage
- County: Kalamazoo
- Zoning: LOT 61 OF LAKEWOOD HILLS ESTATES NO 31004183061O
- Fencing: Other
- Utilities: Natural gas connected
- Water: Public
- Sewer: Public sewer
- Source: Greater Kalamazoo Association of REALTORS
This listing courtesy of Brendon Zabavski , RE/MAX Advantage
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






