8311 19th Avenue NW, Seattle, WA 98117
- 3 beds |
- 2 baths |
- 1,510 sqft
Single-Family Home
Built in 1940
4,047sqft lot
—— car garage
$661/sqft
Listed 6 days ago
Property Description
A charming bungalow nestled on a quiet street in Loyal Heights, this home has everything. Thoughtfully updated, the house strikes the perfect balance of style and function, while fresh interior paint enhances its move-in ready appeal. Warm hardwood floors and a classic fireplace add timeless character and comfort. The living room flows seamlessly into the dining area and remodeled kitchen, featuring new appliances and radiant heated floors. Out back, a west-facing deck captures beautiful sunsets and overlooks the fenced, low-maintenance yard. The level lot includes alley access and an attached one-car garage. With three bedrooms and 1.75 baths, the home offers spaces to gather, relax, and recharge. The spacious lower-level room can easily serve as a bedroom, recreational room, home office, or bonus space to fit your needs. Just blocks from the heart of Loyal Heights, you'll find iconic shops like Larson’s Bakery, Beast & Cleaver, The Mailbox, and other beloved neighborhood spots right. Close to top-rated Loyal Heights Elementary and surrounded by everything that makes this neighborhood so special, community is steps away. Home and sewer inspection available.
- Listing Status:
- Active
- Data Last Updated:
- May 20, 2026 at 5:20AM
- Listing Office:
- Windermere RE Greenwood : 206-527-5250
- Listing Agent:
- Heidi King : 206-527-5250
- MLS ID:
- 2519891

- General: Metal/Vinyl
- Parking: DrivewayAttached GarageParking spaces: 1
- Roofing: Composition
- General: OnePoured Concrete
- HOA Amenities: 0.0
- Originating MLS: nwmls
- School District: Seattle
- County: King
- Topography: Level
- Zoning: 0546000100
- View: TerritorialView
- Water: Public
- Sewer: Available
- Source: nwmls
This listing courtesy of Heidi King , Windermere RE Greenwood
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






