fbpx

$2,150,000
0 Sqft
785,387 Sqft lot

0 Black Road, Los Gatos, California 95033

  • Land Property Type
  • 318 Days Time on market
Property Description

Upscale Custom Home Development Land. Property located in a prestigious area of multi-million-dollar homes (completed homes average $1290 — $1550 per sf). 3 separate buildable parcels totaling 17 acres, 13.75 acres 544-58-005, 1.93 acres 544-58-008, and 2.35 acres 544-58-006. Wells in place, electricity available. Located .6 mile to Hwy 17 & one exit to downtown Los Gatos. Close to hiking, biking, and open space. Views to Silicon Valley and Lexington Reservoir. This property sits directly across the street from Black Ridge Vineyards and next to an Open Space preserve and close to Hwy 17 for commuters and downtown Los Gatos, St Josephs Hill Preserve, Lexington Reservoir County Park, Los Gatos Creek Trail, Bear Creek Redwoods Open Space Preserve & wineries.. Sought after Los Gatos Schools. See Dropbox link for Conceptual Design, Well Reports, Soils, Geologic and Geotechnical reports. Priced 40% below average lot of $4.45 per sf. Individual Lots MLS# ML81933956, ML81933958, ML81933960.

Basic Details
Land
Buy
ML81933952
$2,150,000
0 Sqft
785,387 Sqft
Active
Lots/Land
Click Here
Lots/Land
Virtual Tour
Features
: Water, City Lights, Valley, Trees/woods
0
$0
: Other
Address
CA
Santa Clara
Los Gatos
95033
0 Black Road
0
Road
0
E0° 0' 0''
N0° 0' 0''
Additional Information
318
0
0 Sqft
0 Sqft
0 Sqft
18.03 Sqft
785,386.80 Sqft
0 Sqft
A140
54458005006008
$0
$0
$0
$0
1
$0
$0
0 Sqft
0 Sqft
$0
1
05/07/2023 16:04:56
$0
: Standard
Exit Bear Creek Road from Hwy 17, make a right on the frontage road Montevina Rd and left on Black Road for 1 mile. Property is directly across the street from Blackridge Vineyards. Cross Street: Montevina Road
Destrahan
Harry Hurst
David Lyng Real Estate
Paul Burrowes
ML35384
ML5071206
$0
1
: Corners Marked
Click Here
US-06085-N-54458005006008-R-N
06/07/2023 17:00:40
Black
699 - Not Defined
Mortgage Calculator
$
$ %
years
%
$ %per year
$ %per year

$