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All Federal Contract Awards
Definitive Contract HR001112C0093
Award Date
8/6/12
Potential Completion Date
2/22/17
Potential Value
$2.6M
Overview
Contacts
Activity
7
Transactions
7
Subawards
Opportunity Stack
Similar Awards
Federal Agency
Defense Advanced Research Projects Agency
Awardee
Colorado Engineering Inc. D9RCJ7A3A8Y3
Ultimate Awardee
Not listed
NAICS Category
541712 - Research and Development in the Physical, Engineering, and Life Sciences (except Biotechnology)
PSC Category
AD92 - R&D- Defense Other: Other (Applied Research/Exploratory Development)
Federal Contract Vehicle
Not listed
Set-Aside Type
No Set-Aside Used
Extent Competed
Full and Open Competition
Major Defense Program
Not listed
Pricing Type
Cost Plus Fixed Fee
Place of Performance
Colorado Springs, CO 80921, USA
Solicitation Procedures
Basic Research
Number Of Offers Received
40
Legislative Mandate
Not listed
National Interest Action
Not listed
Research Type
Not listed
Primary Consortia Member
Not listed
Update #1
Update #2
RADIO FREQUENCY-FIELD PROGRAMMABLE GATE ARRAYS (RF-FPGA) PHASE 1
Posted 8/6/12
5
1
2
Name
Description
Solicitation Number
FederalAgency
Type
PostedDate
Radio Frequency-Field Programmable Gate Arrays (RF-FPGA)
Added: Aug 31, 2012 7:36 am The goal of RF-FPGA is to develop field-programmable, fullyadaptable, and waveform agnostic integrated RF front-ends andassociated design tools for next-generation military cognitivecommunications, radar and electronic warfare platforms. See thefull DARPA-BAA-12-13 document.
DARPA-BAA-12-13
Defense Advanced Research Projects Agency
Award Notice 6/6
8/31/12, 7:36 AM
Radio Frequency-Field Programmable Gate Arrays (RF-FPGA)
Added: Nov 09, 2011 12:14 pm The goal of RF-FPGA is to develop field-programmable, fully adaptable, and waveform agnostic integrated RF front-ends and associated design tools for next-generation military cognitive communications, radar and electronic warfare platforms. See the full DARPA-BAA-12-13 document attached.Important Dates Posting Date: 9 November 2011Abstract Due Date: 7 December 2011Proposal Due Date: 26 January 2012
DARPA-BAA-12-13
Defense Advanced Research Projects Agency
Award Notice 1/6
11/9/11, 12:14 PM
Radio Frequency-Field Programmable Gate Arrays (RF-FPGA)
Added: Jul 31, 2012 8:58 am
DARPA-BAA-12-13
Defense Advanced Research Projects Agency
Award Notice 2/6
7/31/12, 8:58 AM
Radio Frequency Field Programmable Gate Arrays (RF-FPGA)
Added: Aug 16, 2012 9:07 am Award Notice
DARPA-BAA-12-13
Defense Advanced Research Projects Agency
Award Notice 4/6
8/16/12, 9:07 AM
Radio Frequency-Field Programmable Gate Arrays
Added: Aug 06, 2012 10:20 am Radio Frequency Field Programmable Gate Arrays (RF-FPGAs), a tust within the DARPA Microsystems Technology Office's Adaptive RF Technology (ART) program. The goal of RF-FPGA is to enable a common hardware architecture that facilitates reutilization of the same set of RF front-end components across disparate applications tough programmability of the transceiver chain. RF-FPGAs will impact the areas of communications, electronic warfare, and signal intelligence by eliminating redundant and costly hardware development required for the adoption or recognition of a new wireless function or waveform. DARPA envisions that the hardware resulting from this program will realize dynamically programmable analog and RF blocks similar in purpose to the digital FPGA slice. To prove this capability, this program will develop blocks of reconfigurable components and fully programmable transceivers capable of configuring for a variety of wireless applications while maintaining near optimal performance. Additionally, it is expected that the hardware developed from this program will be capable of adapting to future wireless standards, thus positively impacting upgrade and procurement costs. DARPA maintains that this goal can only be achieved by investigating the ability to adapt, switch or otherwise alter the RF front end with flexibility far beyond the current demonstrated capabilities of tunable systems and existing multi-band radios.
DARPA-BAA-12-13
Defense Advanced Research Projects Agency
Award Notice 3/6
8/6/12, 10:20 AM
5
1
2
Mod #
Description
ReasonForModification
Federal Obligation
Date
P00006
RADIO FREQUENCY-FIELD PROGRAMMABLE GATE ARRAYS (RF-FPGA), PHASE 3/CLIN 0003. THE PURPOSE OF THIS MODIFICATION IS TO ADD INCREMENTAL FUNDING IN THE AMOUNT OF $54,606 TO CLIN 0003 (PR NO. HR0011622597, ACRN AD). AS A RESULT OF THIS MODIFICATION, THE TOTAL FUNDED AMOUNT FOR THIS DOCUMENT WAS INCREASED BY $54,606.00 FROM $2,508,397.00 TO $2,563,003.00. THIS CONTRACT IS FULLY FUNDED AS A RESULT OF THIS MODIFICATION. SEE SUMMARY OF CHANGES.
Funding Only Action
$54.6k
5/6/16
P00005
RADIO FREQUENCY-FIELD PROGRAMMABLE GATE ARRAYS (RF-FPGA), PHASE 3/CLIN 0003. THE PURPOSE OF THIS MODIFICATION IS TO ISSUE AND DEFINITIZE CHANGE ORDER NO. 1 (PR HR0011517219) TO CLIN 0003 OF THE RESEARCH EFFORT. THE CURRENT ATTACHMENT 1, STATEMENT OF WORK DATED JULY 23, 2012, IS HEREBY DELETED IN ITS ENTIRETY AND REPLACED WITH A REVISED SOW DATED MARCH 24, 2015. THE TOTAL ESTIMATED COST OF CLIN 0003 HAS BEEN INCREASED FROM $633,235 BY $626,519 TO $1,259,754. THE CLIN 0003 FUNDED AMOUNT HAS BEEN INCREASED FROM $633,235 BY $571,913 TO $1,205,148.
Change Order
$571.9k
8/12/15
P00004
RADIO FREQUENCY-FIELD PROGRAMMABLE GATE ARRAYS (RF-FPGA)- THE PURPOSE OF THIS MODIFICATION IS TO ADD FUNDING IN THE AMOUNT OF $545,235 (PR HR0011515134) TO PHASE III (CLIN 0003). AS A RESULT, PHASE III (CLIN 0003) IS NOW FULLY FUNDED IN THE AMOUNT OF $633,235.
Funding Only Action
$545.2k
3/6/15
P00003
RADIO FREQUENCY-FIELD PROGRAMMABLE GATE ARRAYS (RF-FPGA)- THE PURPOSES OF THIS MODIFICATION ARE 1) TO EXERCISE OPTION 2/ CLIN 0003, 2) ADD CLAUSE G-7 INCREMENTAL FUNDING AND SECTION I AND 3) PROVIDE INCREMENTAL FUNDS IN THE AMOUNT OF $88,000 (PR HR0011513866).
Exercise an Option
$88.0k
12/23/14
P00002
RADIO FREQUENCY-FIELD PROGRAMMABLE GATE ARRAYS "RF-FPGA" PROGRAM. THE PURPOSE OF THIS MODIFICATION IS TO EXTEND THE PERIOD OF PERFORMANCE OF PHASE 2 (OPTION 2) (CLIN 0002) FROM 6 DEC 2014 TO 31 MAY 2015.
Other Administrative Action
$0
12/2/14