1460 Baldwin Court, Little River, SC 29566
- 3 beds |
- 2 baths |
- 1,920 sqft
Town Home
Built in 1996
1,742sqft lot
—— car garage
$117/sqft
Listed 4 days ago
Property Description
Welcome to 1460 Baldwin Ct. in Little River, SC--a spacious 3-bedroom end-unit townhome offering an incredible opportunity to create your own coastal retreat or investment property. This solidly built home has great bones and plenty of potential but is ready for your personal updates and finishing touches. One of the standout features is the heated and cooled enclosed back porch, providing additional year-round living space perfect for relaxing, entertaining, or enjoying your morning coffee. The end-unit location offers added privacy and extra natural light, while the central Little River location puts you just minutes from beautiful beaches, the historic Little River waterfront, championship golf courses, waterfront dining, shopping, entertainment, and everything the Grand Strand has to offer. Whether you're looking for a primary residence, second home, or investment opportunity, this property is priced for buyers who want to add their own style and build instant equity. Don't miss your chance to transform this hidden gem into something special!
- Listing Status:
- Active
- Date Added:
- June 10, 2026
- Data Last Updated:
- June 14, 2026 at 6:15AM
- Listing Office:
- Realty ONE Group Dockside North : 843-663-4030
- MLS ID:
- 100580525

- Other Structures: EnclosedPorch
- Parking: Parking LotOff StreetParking spaces: 0
- Roofing: Architectural Shingle
- General: BrickWood FrameTwoSlab
- Road/Access: PavedSee Remarks
- HOA Amenities: Roof MaintenanceCommunity PoolTrashCable TV2952.0Annually
- Originating MLS: Hive MLS
- County: Horry
- Zoning: GRVillage At Little River Lot 1 Ph Vi31205020003
- View: See Remarks
- Fencing: None
- Utilities: Sewer ConnectedWater Connected
- Source: Hive MLS
This listing courtesy of Realty ONE Group Dockside North
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






