9750 Liberty Court, Rancho Cucamonga, CA 91737
- 4 beds |
- 3 baths |
- 2,522 sqft
Single-Family Home
Built in 2001
9,888sqft lot
3 car garage
$511/sqft
Listed 2 days ago
Property Description
Welcome to 9750 Liberty Court, a beautiful pool home nestled on a quiet cul-de-sac in the highly desirable Alta Loma neighborhood of Rancho Cucamonga. Built in 2001, this spacious residence offers an exceptional floor plan designed for both everyday living and entertaining. Step inside to discover soaring ceilings in the expansive living room, filled with natural lighting. The kitchen features abundant cabinetry and generous prep space, flowing seamlessly into the home's gathering areas. The backyard is a private retreat, showcasing a custom pool, rock waterfall and slide, built-in BBQ island, and ample outdoor living space perfect for entertaining family and friends. Situated on a nearly 10,000-square-foot lot, the property also offers side RV parking, a three-car garage, and plenty of room for recreation. Enjoy breathtaking mountain and city light views while benefiting from a prime location near parks, shopping, dining, and commuter routes. Combining privacy, comfort, and resort-style amenities, this exceptional home delivers the best of Rancho Cucamonga living.
- Listing Status:
- Active
- Date Added:
- June 10, 2026
- Data Last Updated:
- June 12, 2026 at 2:20PM
- Listing Office:
- Supreme Investment Corp. : 626-618-7100
- Listing Agent:
- Justin Wu : 626-618-7100
- MLS ID:
- AR26124421

- General: BarbecueIn GroundPrivate
- Pool: In GroundPrivateWaterfall
- Parking: DrivewayGarage Faces FrontGarageRV Access/ParkingParking spaces: 3
- General: 2
- HOA Amenities: 0.0
- Originating MLS: CRMLS_CRM
- School District: Chaffey Joint Union High
- County: San Bernardino
- Zoning: 0201405270000
- View: Mountain(s)View
- Water: Public
- Sewer: Public Sewer
- Source: CRMLS_CRM
This listing courtesy of Justin Wu , Supreme Investment Corp.
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






