Home

Properties at The Real Estate Blvd ®

Property Description

This well-maintained, free-standing office building is located in the heart of Brandon’s business district, offering an ideal location for a wide range of professional services. Zoned BMS-TC2, this property sits along Oakfield Drive, a highly trafficked road with over 10,000 cars passing daily. The building is strategically positioned near the Brandon Post Office and the Chamber of Commerce, just a few blocks from Brandon Regional Hospital. The location offers excellent connectivity with quick access to I-75, I-4, and the Leroy Selmon Expressway, making it highly convenient for commuting. Tampa International Airport is approximately 19 miles away, further enhancing its appeal for business operations requiring travel. The property features 14 parking spots and includes a reception area, multiple offices, a conference room, a kitchen, storage space, and 2 bathrooms. French doors provide access to a fenced back area, offering additional flexibility for use. For more details or to schedule a showing, please contact us today.

Features
Central Air
Bathrooms
Vinyl, Tile
13 To 18 Spaces
Public Sewer
Water Connected
Address Map
FL
Hillsborough
BRANDON
33511
329 PAULS DRIVE UNIT 101
0
W83° 41' 53.8''
N27° 55' 55.2''
Head north on Pauls Dr toward Millennium Pkwy, Destination will be on the right
UNPLATTED
Additional Info
EXP REALTY LLC
Jeffrey Borham, PA
Stucco
0
Slab
261544158
260033666
Cash, Conventional
City Street
No
$9,563
2024
Public
BMS-TC2
03/20/2025 13:51:01
260039365
$0

329 PAULS DRIVE UNIT 101, BRANDON, Florida 33511

329 PAULS DRIVE UNIT 101, BRANDON, Florida 33511

2,530 Sqft
$950,000
Listing ID #TB8360406
Basic Details
Property Type : Commercial Sale
Listing Type : For Sale
Listing ID : TB8360406
Price : $950,000
Square Footage : 2,530 Sqft
Year Built : 1964
Lot Area : 41,530 Sqft
Standard Status : Active
Building Area : 2,530 Sqft
MLS Status : Active
Property Type : Office
Contact Agent
Mortgage Calculator
$
$ %
years
%
$ %per year
$ %per year

$