700 Aspen Avenue, Shelley, ID 83274
- 4 beds |
- 3 baths |
- 2,213 sqft
Single-Family Home
Built in 1998
0.3acre lot
2 car garage
$174/sqft
Listed 1 month ago
Property Description
Spacious, Bright & Designed for Comfortable Living in Shelley! Welcome to 700 Aspen Avenue, a well-designed 4-bedroom, 2.5-bath home offering generous living spaces, a functional layout & plenty of room to make your own. The open floor plan & tall ceilings create a bright, airy atmosphere, while the kitchen flows seamlessly into the main gathering areas for easy everyday living & entertaining. A standout feature is the separate family room, which can be closed off for movie nights, game days, entertaining or simply enjoying a little extra privacy. Upstairs, you'll find 3 bedrooms conveniently located together, including a spacious primary suite with a private bath & walk-in closet. Step outside to enjoy the large yard, offering plenty of space for gardening, play, BBQs or relaxing outdoors. A 2-car garage provides additional parking, storage & everyday convenience. With spacious gathering areas, flexible living spaces & a layout designed for comfort, this inviting Shelley home offers plenty of room to live, relax & entertain.
- Listing Status:
- Active
- Data Last Updated:
- October 5, 2026 at 7:28AM
- Listing Office:
- Keller Williams Realty East Idaho : 208-529-8888
- MLS ID:
- 2188657

- General: Shed(s)
- Style: Other
- Parking: 2 StallsAttachedGarage Door OpenerConcreteParking spaces: 2
- Roofing: Asphalt Shingle
- General: BlockVinyl SidingThree Or MoreConcrete Perimeter
- Originating MLS: Snake River
- County: Bingham
- Zoning: LOT 11 BLOCK 5 KELLEY PARK ADDITIONRP2073601
- Fencing: Wood
- Utilities: Rocky Mountain PowerCircuit Breakers
- Water: Public
- Sewer: Public Sewer
- Source: Snake River
- Exclusions: Seller's Personal Property. OvenFridgesDeep FreezerMicrowaveGreenhouse
This listing courtesy of Keller Williams Realty East Idaho
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






