29 Glacier Circle, South Barrington, IL 60010
- 5 beds |
- 5 baths |
- 5,202 sqft
Single-Family Home
Built in 2008
0.44acre lot
3 car garage
$231/sqft
Listed ——
Property Description
Welcome to 29 Glacier Circle, a beautifully appointed residence nestled in one of South Barrington's most desirable communities. This impressive home offers over 3,600 square feet of thoughtfully designed living space featuring 5 bedrooms, 4.1 bathrooms, and a highly functional floor plan ideal for both everyday living and entertaining. Soaring ceilings, rich architectural details, abundant natural light, and quality craftsmanship create an elegant yet comfortable atmosphere throughout. The spacious kitchen opens to inviting gathering areas, while formal living and dining spaces provide the perfect setting for special occasions. The expansive primary suite offers a private retreat complete with a luxurious bath and generous closet space. A finished lower level provides additional living and recreational space, along with ample storage. The 3-car garage and beautifully landscaped grounds further enhance the property's appeal. Situated on a premium homesite in the Barrington School District, this home offers convenient access to shopping, dining, parks, walking trails, and major commuter routes. A rare opportunity to own a spacious luxury home in an exceptional South Barrington location.
- Listing Status:
- Active
- Data Last Updated:
- August 24, 2026 at 3:19PM
- Listing Office:
- Coldwell Banker Realty : 847-809-8070
- Listing Agent:
- Dean Tubekis : 847-809-8070
- MLS ID:
- 12706469

- Parking: AsphaltYesGarage OwnedAttachedGarageParking spaces: 3
- General: 2 Stories
- HOA Amenities: Insurance124.0Monthly
- Originating MLS: mred
- School District: 220
- County: Cook
- Zoning: 01284160140000
- Water: Public
- Sewer: Public Sewer
- Source: mred
- Ownership: Fee Simple w/ HO Assn.
This listing courtesy of Dean Tubekis , Coldwell Banker Realty
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






