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Company Information:

Company Name:
Antek
Address:
106 Shuart Ave
Suuite 1
Syracuse, NY
Phone:
(781) 801-0023
URL:
N/A
EIN:
900185662
DUNS:
151289613
Number of Employees:
3
Woman-Owned?:
No
Minority-Owned?:
No
HUBZone-Owned?:
No

Commercialization:

Has been acquired/merged with?:
N/A
Has had Spin-off?:
N/A
Has Had IPO?:
N/A
Year of IPO:
N/A
Has Patents?:
N/A
Number of Patents:
N/A
Total Sales to Date $:
$ 0.00
Total Investment to Date $
$ 0.00
POC Title:
N/A
POC Name:
N/A
POC Phone:
N/A
POC Email:
N/A
Narrative:
N/A

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $80,000.00 1
STTR Phase I $99,990.00 1
STTR Phase II $749,828.00 1

Award List:

A Bio-based Fuel Cell System for Rural Energy Generation

Award Year / Program / Phase:
2006 / SBIR / Phase I
Award Amount:
$80,000.00
Agency:
USDA
Principal Investigator:
Sean C. Gifford, Principal Research Engineer
Abstract:
Electricity generation accounts for greater than 50% of total U.S. farm emissions. Renewable energy sources such as wind and solar power are expensive and unreliable. The fuel costs incurred by U.S. farms are offset by supplemental assistance from the government. Particularly attractive are… More

Automated Blood Component Separator

Award Year / Program / Phase:
2010 / STTR / Phase I
Award Amount:
$99,990.00
Agency / Branch:
DOD / ARMY
Principal Investigator:
Sean C. Gifford, Principal Scientist
Research Institution:
Tulane University
RI Contact:
Sergey Shevkoplyas
Abstract:
The objective of the proposed research is to develop a portable, passive system for rapid and efficient blood component separation. While a number of macro-scale devices are routinely employed in laboratory settings to separate, for example, red blood cells (RBCs) from platelet-rich plasma (PRP),… More

Automated Blood Component Separator

Award Year / Program / Phase:
2012 / STTR / Phase II
Award Amount:
$749,828.00
Agency:
DOD
Principal Investigator:
Sean C. Gifford, Chief Science Officer – (617) 459-3915
Research Institution:
Tulane University
RI Contact:
Norey B. Laug
Abstract:
The objective of this project is to develop a portable, passive system for rapid and efficient blood component separation. While a number of macroscale devices (based on centrifugation) are routinely employed in laboratory settings to separate red blood cells (RBCs) and platelets from plasma, they… More