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Company Information:

Company Name:
Harper Laboratories
Address:
2603 Fanelle Circle
Huntsville, AL 35801-2226
Phone:
(404) 271-3892
URL:
EIN:
454381692
DUNS:
78375455
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 $399,334.00 3

Award List:

Affordable Reinforced Polymer Composite Structures with Embedded Graphene Electrical Interfaces

Award Year / Program / Phase:
2013 / SBIR / Phase I
Award Amount:
$99,638.00
Agency:
DOD
Principal Investigator:
Kevin A. Brenner, Chief Executive Officer – (256) 508-8833
Abstract:
The Ballistic Missile Defense Review (BMDR) identifies the necessity of more capable missiles systems as a part of the land-based"Aegis Ashore"Early Intercept (EI) for deployment in 2020. Modern missile systems are constrained by significant weight, volume, and reliability overheads… More

SBIR Phase I: Graphene On-Chip Interconnects

Award Year / Program / Phase:
2013 / SBIR / Phase I
Award Amount:
$150,000.00
Agency:
NSF
Principal Investigator:
Abstract:
This Small Business Innovation Research Phase I project proposes to replace Cu on-chip interconnects with a graphene technology. Nanoscale Cu interconnects that make electrical connections to active devices, mainly transistors, are an essential component of nearly all semiconductor chips. In… More

Ultra-Scalable Nonvolatile Graphene Memory

Award Year / Program / Phase:
2014 / SBIR / Phase I
Award Amount:
$149,696.00
Agency / Branch:
DOD / USAF
Principal Investigator:
Kevin Brenner, CEO – (256) 508-8833
Abstract:
ABSTRACT: The physical scalability of Si based nonvolatile memory is problematic for the terascale integration of space memory. In particular and with regards to Flash, this problem is two-fold as device designs breakdown and photolithographic patterning approaches its limits to minimum feature… More