324 S Elm Drive 101, Beverly Hills, CA 90212
- 4 beds |
- 5 baths |
- 2,743 sqft
Condominium
Built in 1967
5,946sqft lot
2 car garage
$911/sqft
Listed 6 days ago
Property Description
Welcome to this move-in ready, beautifully remodeled, front-facing residence in a charming four-unit complex, perfectly situated at 324 S Elm Drive in the heart of Beverly Hills. This exceptional two-level home showcases a bright, thoughtfully designed layout with brand-new flooring throughout. The upper level welcomes you into a charming and sun filled living room that opens to a private balcony perfect for relaxing or entertaining. The space flows seamlessly into a sleek, newly renovated kitchen featuring generous counter space and modern appliances. Adjacent to the kitchen is a spacious dining and family area, highlighted by expansive wall to wall windows that capture the best of Southern California living.The oversized primary suite is filled with natural light and features a large picture window, a beautifully updated bathroom and a walk-in closet. Additional bedrooms are well proportioned and bright offering comfort and flexibility. The lower level adds incredible versatility with a bonus living area ideal for a media room, office or playroom. This level also includes an additional bedroom, bathroom, storage, and laundry area. Enhancing the experience is a private sauna, creating a tranquil, spa-like sanctuary within your own home. Perfect for relaxation and rejuvenation. A
- Listing Status:
- Active
- Date Added:
- March 26, 2026
- Data Last Updated:
- April 2, 2026 at 2:09AM
- Listing Office:
- Keller Williams Beverly Hills : 310-432-6400
- Listing Agent:
- Amit Lalji : 310-382-4416
- MLS ID:
- CL26669761
- Pool: None
- Parking: AssignedOtherParking spaces: 2
- General: Multi/Split
- HOA Amenities: 780.0Monthly
- County: Los Angeles
- Zoning: 4331011041
- View: None
This listing courtesy of Amit Lalji , Keller Williams Beverly Hills
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $
