Phoenix Analysis & Design
Technologies Inc
Div Padt, Inc.
CAGE Code: 1JCZ3
NCAGE Code: 1JCZ3
Status: Active
Type: Manufacturer
Dun & Bradstreet (DUNS): 878899459
Summary
Phoenix Analysis & Design, Technologies Inc, Div Padt, Inc. is an Active Manufacturer with the Cage Code 1JCZ3 and is tracked by Dun & Bradstreet under DUNS Number 878899459..
Address
7755 S Research Dr Ste 110
Tempe AZ 85284-1803
United States
Points of Contact
No Points of Contact...
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Frequently Asked Questions (FAQ) for CAGE 1JCZ3
- What is CAGE Code 1JCZ3?
- 1JCZ3 is the unique identifier used by NATO Organizations to reference the physical entity known as Phoenix Analysis & Design Technologies Inc Div Padt, Inc. located at 7755 S Research Dr Ste 110, Tempe AZ 85284-1803, United States.
- Who is CAGE Code 1JCZ3?
- 1JCZ3 refers to Phoenix Analysis & Design Technologies Inc Div Padt, Inc. located at 7755 S Research Dr Ste 110, Tempe AZ 85284-1803, United States.
- Where is CAGE Code 1JCZ3 Located?
- CAGE Code 1JCZ3 is located in Tempe, AZ, USA.
- How Many NSNs Does CAGE Code 1JCZ3 Supply?
- CAGE Code 1JCZ3 has been assigned as an approved source for 1 NSNs (National Stock Numbers and NATO Stock Numbers).
Contracting History for CAGE 1JCZ3 Most Recent 25 Records
- 80NSSC21C0643
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace.Structures
- 26 Nov 2021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace.Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $374,998.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC21C0643
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace.Structures
- 17 Nov 2021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace.Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $374,998.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC21C0643
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace.Structures
- 23 Sep 2021
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace.Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $374,998.00
- National Aeronautics And Space Administration (Nasa)
- FA488720P0097
- 3D Printer
- 9 Sep 2020
- 3D Printer
- Fa4887 56 Cons Cc
- Department Of Defense (Dod)
- $239,422.00
- Department Of Defense (Dod)
- 80NSSC20C0021
- E014042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 25 Jan 2022
- E014042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 13 Oct 2021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 21 Dec 2021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 4 Feb 2022
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 21 Aug 2020
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 3 Feb 2021
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 3 Jan 2020
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 12 Nov 2020
- Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0021
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- 9 Mar 2022
- Eo14042 Aperiodic Lattice Design Optimization For Multi-Functional Lightweight Aerospace Structures
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $754,962.00
- National Aeronautics And Space Administration (Nasa)
- FA822721A0006
- Blanket Purchase Agreement: 3D Printer Materials.
- 7 Dec 2021
- Blanket Purchase Agreement: 3D Printer Materials.
- Fa8227 Afmc Ol H Pzimb
- Department Of Defense (Dod)
- $0.00
- Department Of Defense (Dod)
- 80NSSC18P2131
- New Technologies In Imaging And Manufacturing, Including Additive Manufacturing (Am), Are Opening Possibilities For Mimicking Biological Structures In A Way That Has Been Unprecedented In Human History. The Primary Innovation Proposed Here Is The Development Of A Tool That Generates Bio-Inspired, Parametrically Optimized Cellular Materials For Integration Into The Design Of Additively Manufactured Three-Dimensional Structures, And Will Have Four Main Constituent Parts: Natural Models: Here We Will Identify Biological Models Comprised Of Cellular Patterns That Will Be Used To Parameterize The Bioinspired Optimization Tool. 1. Parametrization: Using Our Identified Natural Models, We Will Measure And Evaluate Design Parameters That Will Be Used As Inputs In The Optimization Tool. These Parameters Will Fall Into Two Categories: Environmental (Loading Condition And Thermal Requirements) And Design (Thickness, Curvature, Length, And Known Material Properties). 2. Optimization Tool: At The Heart Of The Proposal Is An Optimization Tool That Will Use The Commercially Available Finite Element Analysis (Fea) Software As Its Solver Engine. The Tool Will Operate On The Environmental And Design Parameters (Including Material Properties) Developed In The Previous Part To Identify Clear Structure-Function Relationships In The Context Of Multiple Objectives Such As Light-Weighting And Minimizing Deformation. The Output Of The Tool Will Both Be Reconciled Against The Data From Natural Models As Well As Used To Design Test Specimens For Validation With Am 3. Additive Manufacturing: Our Use Of Am Will Serve Two-Purposes: First, We Will Use Am To Validate The Proposed Design Output From Our Bio-Inspired Optimization Tool Second, We Will Ultimately Use Am To Manufacture Bio-Inspired Parts, Such As A Heat Exchangers Or Structural Brackets That Can Be Used In Aerospace Engineering.
- 27 Aug 2019
- New Technologies In Imaging And Manufacturing, Including Additive Manufacturing (Am), Are Opening Possibilities For Mimicking Biological Structures In A Way That Has Been Unprecedented In Human History. The Primary Innovation Proposed Here Is The Development Of A Tool That Generates Bio-Inspired, Parametrically Optimized Cellular Materials For Integration Into The Design Of Additively Manufactured Three-Dimensional Structures, And Will Have Four Main Constituent Parts: Natural Models: Here We Will Identify Biological Models Comprised Of Cellular Patterns That Will Be Used To Parameterize The Bioinspired Optimization Tool. 1. Parametrization: Using Our Identified Natural Models, We Will Measure And Evaluate Design Parameters That Will Be Used As Inputs In The Optimization Tool. These Parameters Will Fall Into Two Categories: Environmental (Loading Condition And Thermal Requirements) And Design (Thickness, Curvature, Length, And Known Material Properties). 2. Optimization Tool: At The Heart Of The Proposal Is An Optimization Tool That Will Use The Commercially Available Finite Element Analysis (Fea) Software As Its Solver Engine. The Tool Will Operate On The Environmental And Design Parameters (Including Material Properties) Developed In The Previous Part To Identify Clear Structure-Function Relationships In The Context Of Multiple Objectives Such As Light-Weighting And Minimizing Deformation. The Output Of The Tool Will Both Be Reconciled Against The Data From Natural Models As Well As Used To Design Test Specimens For Validation With Am 3. Additive Manufacturing: Our Use Of Am Will Serve Two-Purposes: First, We Will Use Am To Validate The Proposed Design Output From Our Bio-Inspired Optimization Tool Second, We Will Ultimately Use Am To Manufacture Bio-Inspired Parts, Such As A Heat Exchangers Or Structural Brackets That Can Be Used In Aerospace Engineering.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $124,746.00
- National Aeronautics And Space Administration (Nasa)
- FA822721A0006
- Blanket Purchase Agreement: 3D Printer Materials.
- 7 Apr 2021
- Blanket Purchase Agreement: 3D Printer Materials.
- Fa8227 Afmc Ol H Pzimb
- Department Of Defense (Dod)
- $0.00
- Department Of Defense (Dod)
- FA820118FG009
- Laboratory Equipment And Supplies
- 1 Oct 2017
- Laboratory Equipment And Supplies
- Fa8201 Ol H Pzio
- Department Of Defense (Dod)
- $10,295.21
- Department Of Defense (Dod)
- FA488718P0157
- Three Dimensional Printer
- 14 Sep 2018
- Three Dimensional Printer
- Fa4887 56 Cons Cc
- Department Of Defense (Dod)
- $53,409.00
- Department Of Defense (Dod)
- FA488719PA059
- 3D Printer - Fortus 450Mc Gen 2
- 2 Aug 2019
- 3D Printer - Fortus 450Mc Gen 2
- Fa4887 56 Cons Cc
- Department Of Defense (Dod)
- $157,400.00
- Department Of Defense (Dod)
- FA822415C0032
- Annual Maintenance Renewal For 3D Printer Stratasys Fortus 900Mc For Building 214, 309Th Mxsg Hill Air Force Base, Utah.
- 3 Aug 2017
- Annual Maintenance Renewal For 3D Printer Stratasys Fortus 900Mc For Building 214, 309Th Mxsg Hill Air Force Base, Utah.
- Fa8224 Ol H Pzi Pzim
- Department Of Defense (Dod)
- $670,862.00
- Department Of Defense (Dod)
- FA822417A0005
- Blanket Purchase Agreement For The Procurement Of 3D Printing Material.
- 12 Aug 2019
- Blanket Purchase Agreement For The Procurement Of 3D Printing Material.
- Fa8224 Ol H Pzi Pzim
- Department Of Defense (Dod)
- $0.00
- Department Of Defense (Dod)
- FA822423P0003
- The Rapid Innovation Center At Hill Air Force Base, Utah Requires The Purchase Of A Structured Light Measurement System And Its Associated Equipment. This Equipment Is Needed To Collect Geometric Measurements And Develops Tools For Common Use.
- 6 Dec 2022
- The Rapid Innovation Center At Hill Air Force Base, Utah Requires The Purchase Of A Structured Light Measurement System And Its Associated Equipment. This Equipment Is Needed To Collect Geometric Measurements And Develops Tools For Common Use.
- Fa8224 Ol H Pzi Pzim
- Department Of Defense (Dod)
- $191,900.00
- Department Of Defense (Dod)
- FA820124FG013
- Plastics Fabricated Materials
- 1 Oct 2023
- Plastics Fabricated Materials
- Fa8201 Ol H Pzio
- Department Of Defense (Dod)
- $23,520.00
- Department Of Defense (Dod)
- W911W619C0055
- Develop Sand-Plugging Resistant Metallic Combustor Liners, Sbir Phase I - This Modification Changes Administration From Dcma Phoenix (S0302a) To The Issuing Office (Ccam-Mza-F W911w6)
- 3 Feb 2020
- Develop Sand-Plugging Resistant Metallic Combustor Liners, Sbir Phase I - This Modification Changes Administration From Dcma Phoenix (S0302a) To The Issuing Office (Ccam-Mza-F W911w6)
- Acc-Aviation Applied Technology Dir
- Department Of Defense (Dod)
- $107,751.19
- Department Of Defense (Dod)
- W911W619C0055
- Final Report And Project Summary
- 2 Jun 2020
- Final Report And Project Summary
- Acc-Aviation Applied Technology Dir
- Department Of Defense (Dod)
- $107,751.19
- Department Of Defense (Dod)
Supply Items Approved for CAGE 1JCZ3 Page 1 of 1
- SCA-1200HT
- RNCC: 3 | RNVC: 2 | DAC: 3