25480 Saint James Street, Southfield Twp, MI 48075
- 2 beds |
- 2 baths |
- 1,250 sqft
Condominium
Built in 2002
—— sqft lot
2 car garage
$156/sqft
Listed 1 month ago
Property Description
Welcome to this beautifully maintained 2-bedroom, 2-bath condo in the desirable Park Place at Town Center. This spacious home offers an inviting open-concept layout with a large great room featuring a gas fireplace and seamless flow into the kitchen, perfect for everyday living and entertaining. The private primary suite includes a walk-in closet and full bath, while the second bedroom offers flexibility for guests, an office, or additional living space. Enjoy the convenience of in-unit laundry with washer and dryer included. An attached tandem 2-car garage provides ample parking and additional storage. This community offers maintenance-free living, including exterior care, so you can enjoy your home without the hassle of exterior upkeep. Conveniently located near shopping, restaurants, entertainment, and major freeways, this condo offers comfort, convenience, and easy access to everything you need. Don't miss this fantastic opportunity, schedule your private showing today!
- Listing Status:
- Active
- Data Last Updated:
- September 25, 2026 at 5:42AM
- Listing Office:
- Sine & Monaghan LLC : 3138847000
- Listing Agent:
- Michael DeFauw : 3138205428
- MLS ID:
- 58050219114

- Style: Raised ranch
- Pool: None
- Parking: Two car garageAttached
- General: BrickTwoSlab
- HOA Amenities: MaintenanceGroundsMaintenanceStructureSnowRemovalTrashWater430.0Monthly
- Originating MLS: MiRealSource
- School District: Southfield public schools
- County: Oakland
- Zoning: TINR10ESEC 22 OAKLAND COUNTY CONDOMINIUM PLAN NO. 1169 PARK PLACE AT TOWN CENTER CONDOMINIUM UNIT 165BLDG18 LIBER 19823 PAGE 187. 6-27-01 FROM 426-021762422428165
- Water: Public
- Sewer: Public sewer
- Source: MiRealSource
This listing courtesy of Michael DeFauw , Sine & Monaghan LLC
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






