G-8_Radar_Data_Collection_Requirements_Template_-_30_Oct_15.xlsx
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- FA7014-16-R-5004
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PMP Hardware Technical Template
| HardwareTechnicalTemplate | UNCLASSIFIED, FOR OFFICIAL USE ONLY | TagName1 | TagValue1 |
| AFCCA CEM Template | TagName2 | TagValue2 | |
| PMP Hardware Technical Template, Radar | TagName3 | TagValue3 |
| ColumnHead | Second Reference Design (e.g. Contractor A) | Third Reference Design (e.g. Contractor B) | Time each parameter is expected to be available | ||||||||||||||||||||||||||||||||||||||||||||||
| WBS/CRS Number | WBS/CRS Element | Parameter Name | Value | Low | High | Margin | Unit of Measure | Unit Qualifier | Estimate or Actual | Objective | Threshold | Source | Notes | Value | Low | High | Margin | Unit of Measure | Unit Qualifier | Estimate or Actual | Source | Notes | Value | Low | High | Margin | Unit of Measure | Unit Qualifier | Estimate or Actual | Source | Notes | Definition | VocabularyID | List Item 1 | List Item 2 | List Item 3 | List Item 4 | List Item 5 | List Item 6 | List Item 7 | List Item 8 | List Item 9 | List Item 10 | List Item n = … | MS A | PDR | MS B | CDR | |
| 1.0 | Electronic System - Radar | Radar is an object-detection system that uses radio waves to determine the range, altitude, direction, or speed of objects. This summary element includes the complex of equipment (hardware/software), data, services, and facilities required to develop and produce an electronic system capability for a specific radar system. The WBS should include elements listed below as appropriate to the radar design that is being designed and built. Some elements will not be necessary depending on the type of design (mechanically steered antenna, electronically scanned array, active electronically scanned array, or a hybrid approach). | |||||||||||||||||||||||||||||||||||||||||||||||
| Development Effort | List | Choice List: (1) New Development; (2) Modification; (3) Other | Modified | New Development | Modification | Other | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Modification Scope | Description | Describe scope of modification, if modification effort | X | X | X | ||||||||||||||||||||||||||||||||||||||||||||
| Target Environment | List | Choice List: Ground, Maritime, Airborne or Space | Modified | Ground | Maritime | Airborne | Space | Other | X | X | X | X | |||||||||||||||||||||||||||||||||||||
| Platform | List | Specify specific platform type where radar will be employed. | Modified | UAV | Small/ Fighter/ Helo | Large/ Bomber | Large/ Transport | Ground/ Fixed | Ground/ transportable | Man-Portable | Maritime- Ship Based | Maritime - Shore Based | Other | X | X | X | X | ||||||||||||||||||||||||||||||||
| Operational Function | List | Radar operational function | Modified | Surveillance | Detection | Target Identification/ Classification | Fire Control/ Tracking | Jamming | Communications | ELINT | Other | X | X | X | X | ||||||||||||||||||||||||||||||||||
| Frequency Band | List | A frequency band is a small section of the spectrum of radio communication frequencies, in which channels are usually used or set aside for the same purpose. Specify by designated letter. | New | L | S | C | X | Ku | K | Ka | Other | X | X | X | X | ||||||||||||||||||||||||||||||||||
| Range - Radar | Nautical Miles | Radar | Range is the distance from the radar site to the target measured along the line of sight.; The radial distance from a radar to a target or other object in nautical miles. | X | X | X | X | ||||||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Altitude | List | Altitude | Environmental tolerance refers to radar environmental constraints or requirements such as altitude. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Fluid | List | Fluid | Environmental tolerance refers to radar environmental constraints or requirements such as fluid. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Fog | List | Fog | Environmental tolerance refers to radar environmental constraints or requirements such as fog. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Fungus | List | Fungus | Environmental tolerance refers to radar environmental constraints or requirements such as fungus. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Humidity | List | Humidity | Environmental tolerance refers to radar environmental constraints or requirements such as humidity. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Radiation Hardening | List | Radiation Hardening | Environmental tolerance refers to radar environmental constraints or requirements such as radiation hardening. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Salt | List | Salt | Environmental tolerance refers to radar environmental constraints or requirements such as salt. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Shock | List | Shock | Environmental tolerance refers to radar environmental constraints or requirements such as shock. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Temperature | List | Temperature | Environmental tolerance refers to radar environmental constraints or requirements such as temperature. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| Environmental Tolerance - Vibration | List | Vibration | Environmental tolerance refers to radar environmental constraints or requirements such as vibration. Identify if this environmental tolerance applies. | New | Yes | No | X | X | X | X | |||||||||||||||||||||||||||||||||||||||
| 1.1 | Radar System | The complex of equipment (hardware/software), data, services, and facilities required to develop and produce a radar system. The WBS should include elements listed below as appropriate to the radar design that is being designed and built. Some elements will not be necessary depending on the type of design (mechanically steered antenna, electronically scanned array, active electronically scanned array, or a hybrid approach). This is a guide for covering the major elements for a generic radar for various mission applications. | |||||||||||||||||||||||||||||||||||||||||||||||
| Weight | Pounds | Radar | Total Radar Weight not including auxiliary equipment such as transport vehicle or pod or external power supply. | X | X | X | X | ||||||||||||||||||||||||||||||||||||||||||
| Radar Cross Section (RCS) | Cubic Meters | The radar cross section (RCS) of a target is defined as the effective area intercepting an amount of incident power which, when scattered isotopically, produces a level of reflected power at the radar equal to that from the target. Specify the target RCS. | X | X | X | X | |||||||||||||||||||||||||||||||||||||||||||
| Noise Figure - System | Decibel | Noise figure (NF) is a measure of degradation of the signal-to-noise ratio (SNR), caused by components in a radio frequency (RF) signal chain. Specify the NF of the radar system in Decibels (dB). |
| X | X | X | X | Contractor | 2 | 3 | |||||||||||||||||||
| 1.1.1 | Antenna | This element refers to the antenna subsystem hardware for the radar system. The major elements of the antenna are the TR modules/Phase Shifters, Array Electronics, Array Structure, Gimbals Assembly, Cooling Manifold, Power Supply and any other elements required for antenna functionality. | |||||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||
| Length | Inches | The length of the item in inches. | |||||||||||||||||||||||
| X | X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||
| Width | Inches | The width of the item in inches. | |||||||||||||||||||||||
| X | X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | |||||||||||||||||||||||
| X | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||||
| Bandwidth | Gigahertz | Instantaneous | The instantaneous bandwidth is the baseband frequency extent for the widest transmitted waveform the radar can support. This is typically limited by the receiver. Specify in Gigahertz. | New | X | X | X | X | Contractor | 2 | 3 | ||||||||||||||
| Tunable Bandwidth | Gigahertz | A tunable bandwidth is the difference between the highest and lowest tunable frequency of the radar (e.g. For frequency of 8 - 12 GHz, Tunable Bandwidth is 4 Gigahertz). Specify in Gigahertz. | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||
| Antenna Type - Radar | List | Radar | Choice List: Specify if radar is (1) Electronically Scanned Array or (2) Mechanically Scanned or (3) Other | Modified | Electronically Scanned | Mechanically Scanned | Other | X | X | X | X | X | Government | 1 | 1 | ||||||||||
| Active/Passive | List | Choice List: (1) Active or (2) Passive | Active | Passive | X | X | X | X | X | Government | 1 | 3 | |||||||||||||
| Number of Antenna Faces | Quantity | Faces | An antenna face is a complete antenna used for transmit and receive. A radar may have multiple faces that are switched between to cover different fields of view (e.g. left side, right side) Specify Total Number of antenna faces as an integer. | X | X | X | X | Contractor | 2 | 2 | |||||||||||||||
| Aperture | Cubic Feet | Per Antenna Face | The aperture is the area normal to the axis of the antenna's main lobe, over which the radiation is distributed. Specify calculated aperture for each antenna face in feet2 | X | X | X | X | Contractor | 1 | 3 | |||||||||||||||
| Number of Apertures - Steerable | Quantity | Per Antenna Face | The aperture is the area normal to the axis of the antenna's main lobe, over which the radiation is distributed. Specify the Total Number of steerable apertures per antenna face. | X | X | X | X | Contractor | 2 | 3 | |||||||||||||||
| Number of Radiating Elements | Quantity | Per Antenna Face | Basic subdivision of an antenna which in itself is capable of radiating or receiving radio-frequency energy. Specify the Total Number of radiating elements in an antenna face. | X | X | X | X | Contractor | 1 | 2 | |||||||||||||||
| Power - Radiating Element | Watts | Basic subdivision of an antenna which in itself is capable of radiating or receiving radio-frequency energy. Specify the power per radiating element in Watts. | X | X | X | X | Contractor | 2 | 3 | ||||||||||||||||
| Effective Radiated Power (ERP) | Kilowatts | Per Antenna Face | The Effective Radiated Power (ERP) is the power supplied to an antenna face multiplied by the antenna gain in a given direction. Specify the ERP per antenna face in Kilowatts. | X | X | X | X | Contractor | 1 | 3 | |||||||||||||||
| Cooling Type | List | Cooling refers to any hardware used for cooling the radar with other aircraft systems such as the environmental control system. It includes hardware to transport the heat generated to an exhaust or heat sink. Choice list for type of cooling 1) Liquid, 2) Air, 3) Other. | Modified | Liquid | Air | Other | X | X | X | X | Contractor | 2 | 3 | ||||||||||||
| Power - Cooling Requirements | Kilowatts | Radar Cooling | Specify power requirements for radar cooling. | X | X | X | X | Contractor | 3 | 3 | |||||||||||||||
| 1.1.1.1 | Subsystem Integration Assembly & Testing (IA&T) | Antenna Subsystem Integration, Assembly, Test, and Checkout - This element includes the resources specifically related to evaluating the CSCIs and hardware operation as a subsystem. |
Includes, for example:
a. All resources necessary to integrate the subsystem components as a complete subsystem
b. Subsystem integration management
c. Requirements definition, planning, and scheduling
d. Development of integration plans and procedures
e. Integration test preparation, conduct and teardown and review, analysis and documentation of subsystem integration results
| New Integration | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||||
| Integration Complexity | List | Choice List 1) Low: simple, straightforward interfaces and verification testing; 2) Moderate: generally common interfaces with some higher complexity subsystem interfaces and verification testing ; 3) High: multiple, new and complex interfaces and verification testing and calibration | Low | Moderate | High | X | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||
| 1.1.1.2 | Transmit/Receive (T/R) Modules /Phase Shifters 1…n | This element refers to the T/R (Transmit/Receive) Modules / Phase Shifters hardware for the radar system. The T/R Modules provides transmit and receive function with configured channels on active electronically scanned arrays. Phase shifters are the hardware items used to pass the signal from the centralized transmitter or receiver to the radiators. The TR Modules/Phase Shifters will include all costs associated with the production of the TR Modules/Phase Shifters in the quantities required for the system. (Use this section for Receive only modules as well. | Modified | X | X | X | X | Contractor | |||||||||||||||||||||||
| Frequency Band | Text | The frequency band of the T/R modules or phase shifters is the frequency range available to carry signals (bandwidth) and the type of modulation used. It should be designated by letter from UHF to Millimeter (frequency in GHz) or A through M (wavelength in cm).This element should cover the T/R modules or phase shifters for the frequency range available to carry signals (bandwidth) and the type of modulation used. It should be designated by letter from UHF to Millimeter (frequency in GHz) or A through M (wavelength in cm). | Modified | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||||||
| Number of TR Modules | Quantity | Per Antenna Face | Specify Number of Transmit/Receive Modules per antenna face | Modified | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||
| Power - Average Output TR Module | Watts | Average T/R Module Output | Transmit/Receive (T/R) modules in the transmit mode amplify and phase shift the RF signal received from the exciter via the feed and output the RF signal to a discrete radiator or many stripline radiators. In the receive mode the T/R module receives the returned RF signal from the radiator(s) and amplifies and phase shifts the signal and sends the output to the receiver through the beam forming networks. The T/R module typically consists of MMIC amplifier chips, a power supply/regulator, a circulator, and a phase shifter and other control ICs mounted in a RF module. The average amount of power (in watts) of radio frequency (RF) energy that each TR Module produces at its output. | ||||||||||||||||||||||||||||
| Specify the average amount of power (in watts) of radio frequency (RF) energy that each TR Module produces at its output. | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||||||
| Weight | Pounds | The weight of a single TR Module | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 1 | 3 | |||||||||||||||||||||||||
| Length | Inches | The length of a single TR Module | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | |||||||||||||||||||||||||
| Width | Inches | The width of a single TR Module | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | |||||||||||||||||||||||||
| Depth | Inches | The depth of a single TR Module | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 1 | 3 | |||||||||||||||||||||||||
| Number of Intermediate frequency conversions before analog to digital conversion | Quantity | Specify the number of intermediate frequency conversions before Analog to Digital Conversion | New | X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||
| 1.1.1.2.1 | Transmit/Receive (T/R) Module Structure | The Transmit/Receive Structure includes the columns/cold plates and all supporting infrastructure. | New | ||||||||||||||||||||||||||||
| Weight | Pounds | The weight of a single TR Module | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 1 | 3 | |||||||||||||||||||||||||
| 1.1.1.2.2 | Transmit/Receive (T/R) Module Radiating Elements | This WBS element includes the Transmit/Receive module Radiating Elements. | New | ||||||||||||||||||||||||||||
| Number of Radiating Elements | Quantity | Per Transmit/Receive Module | Specify the Total Number of radiating elements in a single T/R Module. | New | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||
| 1.1.1.2.3 | Transmit/Receive (T/R) Module Line Replaceable Units (LRUs) | Transmit/Receive Module Line Replaceable Units (LRU) typically could include MMIC amplifier chips, circulators, drivers, capacitors, phase shifters and other control ICs mounted in a RF module. | New | X | X | X | X | Contractor | |||||||||||||||||||||||
| 1.1.1.2.3.1 | Monolithic Microwave Integrated Circuit (MMIC) Type 1...n | A Monolithic Microwave Integrated Circuit, or MMIC, is a type of integrated circuit (IC) device that operates at microwave frequencies (300 MHz to 300 GHz). MMICs combine transistors and passive devices (resistors, capacitors, etc.) on the same chip and are widely used as amplifiers and filters in telecommunications. | X | X | X | X | Contractor | ||||||||||||||||||||||||
| Monolithic Microwave Integrated Circuit (MMIC)Type | List | Specify MMIC type, e.g. Common Leg Circuit (CLC), Low Noise Amplifier (LNA), High Power Amplifier, Multi-Function Circuit (MFC) etc. | Modified | CLC | LNA | HPA | MFC | Other | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||
| Material Type | List | Specify the material used for the Microwave Monolithic Integrated Circuits (MMICs) (e.g. Silicon (Si), Gallium Arsenide (GaA), Gallium Nitride (GaN), Indium phosphide (InP), Silicon-Germanium (SiGe), Other. | Si | GaA | GaN | InP | SiGe | Other | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||
| Power - MMIC Average Output | Watts | MMIC Average Output | Specify the average amount of power (in watts) of radio frequency (RF) energy that each Monolithic Microwave Integrated Circuits (MMIC) produces at its output. | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||||||
| Number of MMIC -TR Module | Quantity | Per Transmit Receive Module | Specify Number of Monolithic Microwave Integrated Circuits (MMIC) per TR Module | Modified | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||
| Area - Chip | Square Meters | Chip | Specify MMIC chip area in square meters. | Modified | X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||
| Power Density | Watts per Millimeter Squared | The Power density (or volume power density) is the amount of power (time rate of energy transfer) per unit volume. Specify the power density in Watts per millimeter squared . | Modified | X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||
| State of Technology Year | Year | Specify approximate year of TR Technology maturation | X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||||
| Unique Design - Mechanical Components | List | Choice List: (1) Brick or (2) Tile; 3) Other | Modified | Brick | Tile | Other | X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||
| 1.1.1.2.3.2 | Transmit/Receive (T/R) Module Other Hardware/Material 1…n | This WBS includes the procurement cost of other vendor material(s) included in the T/R module that are not MMICs (e.g. circulators, drivers, capacitors, phase shifters and other control Integrated Circuits) | X | X | X | X | Contractor | ||||||||||||||||||||||||
| 1.1.1.2.4 | Transmit/Receive (T/R) Power Supply | This WBS element covers T/R Power Supply, including the T/R Power Supply Assembly, T/R Power Energy Storage Assembly, and the T/R Power Conversion Monitor and Control Assembly. | |||||||||||||||||||||||||||||
| Power Type | List | A Direct Current (DC) power supply provides a voltage of fixed polarity (either positive or negative) to its load. An Alternating Current (AC) power supply provides a continuous electric current that periodically reverses direction, usually sinusoid ally. Choice List: Power Type (1) DC (2) AC. | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||||
| Power - Output | Kilowatts | The power in kilowatts delivered to the radar antenna subsystem | Contractor | 1 | 1 | ||||||||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||||
| Length | Inches | The length of the item in inches. | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 3 | |||||||||||||||||||||||||
| Width | Inches | The width of the item in inches. | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 3 | |||||||||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 3 | |||||||||||||||||||||||||
| Design Reuse | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | Contractor | 2 | 3 | |||||||||||||||||||
| Technology Readiness Level (TRL) | List | Technology Readiness Levels (TRL)are a set of nine graded definitions/descriptions of stages of technology maturity. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: TRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 1 | 3 | |||||||||||||
| Manufacturing Readiness Level (MRL) | List | Manufacturing Readiness Levels are a set of nine graded definitions/descriptions of stages to assess the maturity of manufacturing readiness. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: MRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 2 | 3 | |||||||||||||
| Source Type | List | Commercial off-the-shelf (COTS) is a Federal Acquisition Regulation (FAR) term for commercial items available in the commercial marketplace that can be bought and used under government contract. Non-Developmental Item (NDI) according to (FAR 2.101) means: |
1.Any previously developed item of supply used exclusively for governmental purposes by a Federal agency, a State or local government, or a foreign government with which the United States has a mutual defense cooperation agreement;
2.Any item described in paragraph (1) of this definition that requires only minor modification or modifications of a type customarily available in the commercial marketplace in order to meet the requirements of the procuring department or agency; or
| 3.Any item of supply being produced that does not meet the requirements of paragraphs (1) or (2) solely because the item is not yet in use. A Build item is a component that is not commercially available and that requires design, development and test effort before suitable for operational deployment. Choice List: (1) COTS; (2) NDI; (3) Build | COTS | NDI | Build | X | X | X | X | Contractor | 2 | 1 | ||||||||||||||||||||||
| 1.1.1.2.5 | Transmit/Receive (T/R) Module Integration, Assembly, Test and Checkout | This WBS element covers the integration and group-level test of the components that comprise the T/R or Receive only Module. | ||||||||||||||||||||||||||||||
| New Integration | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | X | Contractor | 1 | 3 | |||||||||||||||||||
| Integration Complexity | List | Choice List 1) Low: simple, straightforward interfaces and verification testing; 2) Moderate: generally common interfaces with some higher complexity subsystem interfaces and verification testing ; 3) High: multiple, new and complex interfaces and verification testing and calibration | Low | Moderate | High | X | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||||
| 1.1.1.3 | Array Electronics | This element refers to the array electronics for the antenna array. This would include transmit/receive (T/R) modules, circuit cards, circulators, radiators, and any other antenna feeds required. The array will include all costs associated with the production of the array hardware in the quantities required for the system. | ||||||||||||||||||||||||||||||
| Number of Field-Programmable Gate Array (FPGA) Designs | Quantity | A field-programmable gate array (FPGA) is an integrated circuit designed to be configured by a customer or a designer after manufacturing . Specify the total Number of FPGA designs in the system. | New | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||||||||
| Number of Application-Specific Integrated Circuit (ASIC) Designs | Quantity | An Application-Specific Integrated Circuit (ASIC) is an integrated circuit (IC) customized for a particular use. Specify the total number of ASIC designs in the system. | New | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||||||||
| 1.1.1.4 | Array Structure | This element refers to the electro-mechanical structure used to hold the array elements and electronics. It should include any cooling plates or coldwall structure used in controlling the heat generated by the array. | ||||||||||||||||||||||||||||||
| Number of Sub Arrays | Quantity | Per Antenna Face | The antenna array consists of many radiating elements whose output RF energy is phase controlled to steer the RF output beam. It consists of a structural item that supports the elements, a feed system, output radiators, power supplies, and beam steering unit (processor). A Sub Array is a subassembly of the antenna array. Specify Total Number of subarrays per Antenna Face | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||||
| Weight | Pounds | Specify single sub-array structure weight in pounds | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||||||||
| 1.1.1.5 | Mount/Pedestal/Gimbal Assembly | This element refers to the structure used to mount the antenna and allows the antenna to be pivoted about both azimuth and elevation axes. | ||||||||||||||||||||||||||||||
| Number of Axes - Moveable | Quantity | by Rotating and Azimuth Pedestals | The Total Number of axes that move in the design (1 for rotating pedestals and 2 for azimuth/elevation pedestals). | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 2 | |||||||||||||||||||||||
| 1.1.1.6 | Cooling Manifold | This element refers to the hardware which maintains temperature of the electrical equipment required for proper performance and reliability. It should included the hardware used to flow cooling to and from the array. | ||||||||||||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 3 | |||||||||||||||||||||||
| Length | Inches | The length of the item in inches. | ||||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||||||||
| Width | Inches | The width of the item in inches. | ||||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | ||||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||||||||
| Design Reuse | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||
| Technology Readiness Level (TRL) | List | Technology Readiness Levels (TRL)are a set of nine graded definitions/descriptions of stages of technology maturity. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: TRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||
| Manufacturing Readiness Level (MRL) | List | Manufacturing Readiness Levels are a set of nine graded definitions/descriptions of stages to assess the maturity of manufacturing readiness. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: MRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 2 | 1 | ||||||||||||||
| Source Type | List | Commercial off-the-shelf (COTS) is a Federal Acquisition Regulation (FAR) term for commercial items available in the commercial marketplace that can be bought and used under government contract. Non-Developmental Item (NDI) according to (FAR 2.101) means: |
1.Any previously developed item of supply used exclusively for governmental purposes by a Federal agency, a State or local government, or a foreign government with which the United States has a mutual defense cooperation agreement;
2.Any item described in paragraph (1) of this definition that requires only minor modification or modifications of a type customarily available in the commercial marketplace in order to meet the requirements of the procuring department or agency; or
| 3.Any item of supply being produced that does not meet the requirements of paragraphs (1) or (2) solely because the item is not yet in use. A Build item is a component that is not commercially available and that requires design, development and test effort before suitable for operational deployment. Choice List: (1) COTS; (2) NDI; (3) Build | COTS | NDI | Build | X | X | X | X | Contractor | 2 | 1 | ||||||||||||||||||||
| 1.1.1.7 | Array Power Supply 1….n | This element refers to any separate power closely linked to the array. | ||||||||||||||||||||||||||||
| Power Type | List | A Direct Current (DC) power supply provides a voltage of fixed polarity (either positive or negative) to its load. An Alternating Current (AC) power supply provides a continuous electric current that periodically reverses direction, usually sinusoid ally. Choice List: Power Type (1) DC (2) AC. | AC | DC | X | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||
| Power - Output | Kilowatts | The power in kilowatts delivered to the radar antenna subsystem | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||||||
| Length | Inches | The length of the item in inches. | ||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||||||
| Width | Inches | The width of the item in inches. | ||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | ||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||||||||
| Design Reuse | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | Contractor | 3 | 3 | ||||||||||||||||||
| Technology Readiness Level (TRL) | List | Technology Readiness Levels (TRL)are a set of nine graded definitions/descriptions of stages of technology maturity. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: TRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 1 | 3 | ||||||||||||
| Manufacturing Readiness Level (MRL) | List | Manufacturing Readiness Levels are a set of nine graded definitions/descriptions of stages to assess the maturity of manufacturing readiness. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: MRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 2 | 1 | ||||||||||||
| Source Type | List | Commercial off-the-shelf (COTS) is a Federal Acquisition Regulation (FAR) term for commercial items available in the commercial marketplace that can be bought and used under government contract. Non-Developmental Item (NDI) according to (FAR 2.101) means: |
1.Any previously developed item of supply used exclusively for governmental purposes by a Federal agency, a State or local government, or a foreign government with which the United States has a mutual defense cooperation agreement;
2.Any item described in paragraph (1) of this definition that requires only minor modification or modifications of a type customarily available in the commercial marketplace in order to meet the requirements of the procuring department or agency; or
| 3.Any item of supply being produced that does not meet the requirements of paragraphs (1) or (2) solely because the item is not yet in use. A Build item is a component that is not commercially available and that requires design, development and test effort before suitable for operational deployment. Choice List: (1) COTS; (2) NDI; (3) Build | COTS | NDI | Build | X | X | X | X | Contractor | 2 | 1 | |||||||||||||||||||||
| 1.1.1.8 | Antenna Software (Release 1-n) | This element is the software associated with the antenna for the radar system and covers all software effort associated with the release. Effort included in this element is further defined in MIL-STD-881C, Appendix B, Section B.4.2.2.2. | |||||||||||||||||||||||||||||
| 1.1.1.8.1 | CSCI (1…n) | See Software Development Template | The name of the individual Computer Software Configuration Item (CSCI), Computer Software Components (CSC), Computer Software Unit (CSU), Software End Item, or Software Item (SI). | ||||||||||||||||||||||||||||
| Software Language | Text | Text | Text | The predominant computer language in which the development was conducted. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||
| Product Size - Delivered | SLOC | SLOC | SLOC | The delivered size of the product developed, not including any code that was needed to assist development but was not delivered (such as temporary stubs, test scaffoldings, or debug statements). SLOC shall reflect logical size, as opposed to physical, etc. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||
| Product Size - Effective | SLOC | The equivalent size for the adjusted size of the product developed. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||||
| ESLOC Equation | Text | The equation used to derive Equivalent Source Lines of Code (ESLOC). | X | X | X | X | Contractor | 1 | |||||||||||||||||||||||
| New Code | SLOC | SLOC | SLOC | The delivered size of the product developed that is human generated. | X | X | X | X | Contractor | 1 | |||||||||||||||||||||
| Modified Code | SLOC | SLOC | SLOC | Modified code is defined as pre-developed code that can be incorporated in the software component with a significant amount of effort, but less effort than required for a newly developed code. | X | X | X | X | Contractor | 1 | |||||||||||||||||||||
| Reused Code | SLOC | SLOC | SLOC | Code from external sources (government-furnished or otherwise) that is included and resused without modification. However, there may be an amount of retest required. | X | X | X | X | Contractor | 1 | |||||||||||||||||||||
| Carryover Code | SLOC | SLOC | SLOC | Pre-existing code that has already been introduced into the baseline for this software product during a previous build. For example, if code from Build 1 is continued in the baseline for Build 2, it is likely to require additional effort for functional and regression testing during the delivery of Build 2. Carryover code is different from "reused" code from a separate program or source as the effort to understand and get it integrated into this program's baseline has already occured in an earlier build for this program. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||
| Auto-generated code | SLOC | SLOC | SLOC | New code that is automatically generated using a code generating tool. These tools will generate many lines for each selection or instruction typed by a human. It is important to keep this separate from human generated new code because effort per line of code is much less for autogenerated than human generated (i.e., if included it would over estimate effort if used in a parametric model or a productivity-based estimate; if included as the basis of a productivity metric for future use it will understate the effort required if the new system has only human generated code). | X | X | X | X | Contractor | 3 | |||||||||||||||||||||
| 1.1.1.9 | Other | This element refers to any other hardware for the array not mentioned above. It could include other items such as a duplexer, a receiver protection device or an antenna drive that is not included in other elements listed. Please indicate what the specific hardware is by name and include as many additional level 3 elements as necessary | X | X | X | X | |||||||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 1 | ||||||||||||||||||||||
| Length | Inches | The length of the item in inches. | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||||||
| Width | Inches | The width of the item in inches. | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | |||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||||||
| Power - Input | Watts | The input power is the power which enables the subsystem or electrical component to function. Power required to operate signal processor in watts | X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||||
| Design Reuse | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | Contractor | 1 | 2 | |||||||||||||||||||
| Technology Readiness Level (TRL) | List | Technology Readiness Levels (TRL)are a set of nine graded definitions/descriptions of stages of technology maturity. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: TRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 1 | 3 | |||||||||||||
| Manufacturing Readiness Level (MRL) | List | Manufacturing Readiness Levels are a set of nine graded definitions/descriptions of stages to assess the maturity of manufacturing readiness. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: MRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 2 | 1 | |||||||||||||
| Source Type | List | Commercial off-the-shelf (COTS) is a Federal Acquisition Regulation (FAR) term for commercial items available in the commercial marketplace that can be bought and used under government contract. Non-Developmental Item (NDI) according to (FAR 2.101) means: |
1.Any previously developed item of supply used exclusively for governmental purposes by a Federal agency, a State or local government, or a foreign government with which the United States has a mutual defense cooperation agreement;
2.Any item described in paragraph (1) of this definition that requires only minor modification or modifications of a type customarily available in the commercial marketplace in order to meet the requirements of the procuring department or agency; or
| 3.Any item of supply being produced that does not meet the requirements of paragraphs (1) or (2) solely because the item is not yet in use. A Build item is a component that is not commercially available and that requires design, development and test effort before suitable for operational deployment. Choice List: (1) COTS; (2) NDI; (3) Build | COTS | NDI | Build | X | X | X | X | Contractor | 2 | 1 | |||||||||||
| 1.1.2 | Radar Electronics | ||||||||||||||||||||
| 1.1.2.1 | Receiver/Exciter | The Receiver/Exciter can be a combined system or could be two different pieces of hardware (if two different pieces of hardware, please break it out). The Receiver translates the received signals from the duplexer or the array feeds to a lower frequency at which they can be filtered and amplified more conveniently. The receiver sends the output to a radar signal processor. The exciter generates a continuous, highly stable, low-power signal of the desired frequency and phase for the transmitter; and, precisely offset from it, local oscillator signals and a reference-frequency signal for the receiver. | X | X | X | X | Contractor | ||||||||||||||
| 1.1.2.1.1 | Receiver/Exciter Hardware | This element refers to the Receiver/Exciter hardware for the radar system. It includes all costs associated with the production of the hardware in the quantities required for the system. | X | X | X | X | Contractor | ||||||||||||||
| Bandwidth | Hertz | The width of the band of frequencies occupied by the central lobe of the spectrum of an alternating current signal. Bandwidth is the difference between the upper and lower cut-off frequencies of a radar receiver. Radartutorial.eu | |||||||||||||||||||
| X | X | X | X | Contractor | 1 | 1 | |||||||||||||||
| Number of Channels - Receiver | Quantity | Receiver | Modern radars can be configured to have subsets of the antenna array fed into separate RF receivers. This parameter is the Total Number of independent RF receivers in the radar. Specify Total Number of Receiver Channels as an integer. | X | X | X | X | Contractor | 1 | 3 | |||||||||||
| Number of Frequencies Generated | Quantity | The Total Number of tuned or operating frequency bands, designated by letter from UHF to Millimeter (frequency in GHz) or A through M (wavelength in cm) that can be transmitted by the radar. Also referred to as center operating frequency. Specify the Number of generated frequencies | X | X | X | X | Contractor | 1 | 1 | ||||||||||||
| Noise Figure (NF) | Decibels | Noise Figure (NF) is the Noise factor converted to Decibel (dB). It is a measure of degradation of the signal to noise ratio (SNR), caused by components in the RF signal chain, for a given bandwidth. Noise figure (NF) is a measure of degradation of the signal-to-noise ratio (SNR), caused by components in a radio frequency (RF) signal chain. The noise figure is the difference in decibels (dB) between the noise output of the actual receiver to the noise output of an “ideal” receiver with the same overall gain and bandwidth when the receivers are connected to matched sources at the standard noise temperature T0 (usually 290 K). . Specify the NF of the receiver in Decibels (dB). |
| X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 1 | |||||||||||||||||
| Length | Inches | The length of the item in inches. | ||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||
| Width | Inches | The width of the item in inches. | ||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | ||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||
| Power - Input | Watts | The input power is the power which enables the subsystem or electrical component to function. Power requirements for Receiver/Exciter in Watts. | X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||
| Number of Field-Programmable Gate Array (FPGA) Designs | Quantity | A field-programmable gate array (FPGA) is an integrated circuit designed to be configured by a customer or a designer after manufacturing . Specify the total Number of FPGA designs in the system. | New | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||
| Number of Application-Specific Integrated Circuit (ASIC) Designs | Quantity | An Application-Specific Integrated Circuit (ASIC) is an integrated circuit (IC) customized for a particular use. Specify the total number of ASIC designs in the system. | New | X | X | X | X | Contractor | 1 | 3 | ||||||||||||||||
| Design Reuse | List | Choice List: 1) New Design; 2) Modified Design; 3) Complete Reuse | New Design | Modified Design | Complete Reuse | X | X | X | X | Contractor | 1 | 2 | ||||||||||||||
| Technology Readiness Level (TRL) | List | Technology Readiness Levels (TRL)are a set of nine graded definitions/descriptions of stages of technology maturity. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: TRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 1 | 3 | ||||||||
| Manufacturing Readiness Level (MRL) | List | Manufacturing Readiness Levels are a set of nine graded definitions/descriptions of stages to assess the maturity of manufacturing readiness. They were originated by the National Aeronautics and Space Administration and adapted by the DOD for use in its acquisition system. Choice List: MRL level 1-9 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | X | X | X | X | Contractor | 2 | 1 | ||||||||
| Source Type | List | Commercial off-the-shelf (COTS) is a Federal Acquisition Regulation (FAR) term for commercial items available in the commercial marketplace that can be bought and used under government contract. Non-Developmental Item (NDI) according to (FAR 2.101) means: |
1.Any previously developed item of supply used exclusively for governmental purposes by a Federal agency, a State or local government, or a foreign government with which the United States has a mutual defense cooperation agreement;
2.Any item described in paragraph (1) of this definition that requires only minor modification or modifications of a type customarily available in the commercial marketplace in order to meet the requirements of the procuring department or agency; or
| 3.Any item of supply being produced that does not meet the requirements of paragraphs (1) or (2) solely because the item is not yet in use. A Build item is a component that is not commercially available and that requires design, development and test effort before suitable for operational deployment. Choice List: (1) COTS; (2) NDI; (3) Build | COTS | NDI | Build | X | X | X | X | Contractor | 2 | 1 | |||||||||||||||||||||||
| 1.1.2.1.2 | Receiver/Exciter Software (Release 1...n) | This element refers to the Receiver/Exciter software for the Radar system and covers all software effort associated with the release. Effort included in this element is further defined in MIL-STD-881C, Appendix B, Section B.4.2.2.2. | |||||||||||||||||||||||||||||||
| 1.1.2.1.2.1 | CSCI (1…n) | See Software Development Template | An aggregation of software or any of its discrete portions that satisfies an end use function and has been designated by the Government or Contractor, if the Government did not specify, for configuration management. CSCIs are the major software products of a system acquisition, which are developed in accordance with standard DoD or commercial practices and processes. | X | X | X | X | Contractor | |||||||||||||||||||||||||
| Software Language | Text | Text | Text | The predominant computer language in which the development was conducted. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||||
| Product Size - Delivered | SLOC | SLOC | SLOC | The delivered size of the product developed, not including any code that was needed to assist development but was not delivered (such as temporary stubs, test scaffoldings, or debug statements). SLOC shall reflect logical size, as opposed to physical, etc. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||||
| Product Size - Effective | SLOC | The equivalent size for the adjusted size of the product developed. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||||||
| ESLOC Equation | Text | The equation used to derive Equivalent Source Lines of Code (ESLOC). | X | X | X | X | Contractor | 1 | |||||||||||||||||||||||||
| New Code | SLOC | SLOC | SLOC | The delivered size of the product developed that is human generated. | X | X | X | X | Contractor | 1 | |||||||||||||||||||||||
| Modified Code | SLOC | SLOC | SLOC | Modified code is defined as pre-developed code that can be incorporated in the software component with a significant amount of effort, but less effort than required for a newly developed code. | X | X | X | X | Contractor | 1 | |||||||||||||||||||||||
| Reused Code | SLOC | SLOC | SLOC | Code from external sources (government-furnished or otherwise) that is included and resused without modification. However, there may be an amount of retest required. | X | X | X | X | Contractor | 1 | |||||||||||||||||||||||
| Carryover Code | SLOC | SLOC | SLOC | Pre-existing code that has already been introduced into the baseline for this software product during a previous build. For example, if code from Build 1 is continued in the baseline for Build 2, it is likely to require additional effort for functional and regression testing during the delivery of Build 2. Carryover code is different from "reused" code from a separate program or source as the effort to understand and get it integrated into this program's baseline has already occured in an earlier build for this program. | X | X | X | X | Contractor | 2 | |||||||||||||||||||||||
| Auto-generated code | SLOC | SLOC | SLOC | New code that is automatically generated using a code generating tool. These tools will generate many lines for each selection or instruction typed by a human. It is important to keep this separate from human generated new code because effort per line of code is much less for autogenerated than human generated (i.e., if included it would over estimate effort if used in a parametric model or a productivity-based estimate; if included as the basis of a productivity metric for future use it will understate the effort required if the new system has only human generated code). | X | X | X | X | Contractor | 3 | |||||||||||||||||||||||
| 1.1.2.2 | Signal Processor | This element refers to the Signal Processor for the radar system. This processor performs the repetitive mathematical functions required to process the analog signal from the receiver. It stores the numbers in memory range bins and sorts the signals using filters. It automatically detects the target echoes for target identification. It also includes any interconnects to the receiver/exciter, data processor, or other aircraft systems using the signal. If the signal processor functionally is performed in the central computer, it should be noted and included here. | |||||||||||||||||||||||||||||||
| 1.1.2.2.1 | Signal Processor Hardware | This element refers to the Signal Processor hardware for the Radar system. It includes all costs associated with the production of the hardware in the quantities required for the system. | |||||||||||||||||||||||||||||||
| Simultaneous Multi-Mode Operation | List | Simultaneous mode operation refers to the concurrent processing and interleaving of multiple modes. Choice List: if system requires interleaving of multiple modes. Choice List: (1) Yes; (2) No | Yes | No | X | X | X | X | X | Government | 1 | 1 | |||||||||||||||||||||
| Modes | Quantity | Specific types of radar processing capabilities used to detect aircraft, ships, spacecraft, guided missiles, motor vehicles, weather formations, and terrain. Examples are: High Resolution Radar (HRR); Synthetic Aperture Radar (SAR); and Ground Moving Target Indicator (GMTI). | X | X | X | X | X | Government | 1 | 1 | |||||||||||||||||||||||
| Computer Performance | Giga Floating Point Operations per Second | The amount of useful work accomplished by a computer system compared to the time or resources in Giga Floating Point Operations Per Second (GFLOPS) | X | X | X | X | Contractor | 1 | 2 | ||||||||||||||||||||||||
| Memory Storage Capacity | Gigabytes | Specify capacity in Gigabytes to store programs or data on a temporary or permanent basis. | X | X | X | X | Contractor | 1 | 2 | ||||||||||||||||||||||||
| Data Rate | Megabits per Second | The speed at which information is transferred through a communications or computing medium; measured in Megabits per second. | x | x | x | x | Contractor | 1 | 2 | ||||||||||||||||||||||||
| Weight | Pounds | The weight of the radar system or subsystem in Pounds | X | X | X | X | Contractor | 1 | 2 | ||||||||||||||||||||||||
| Length | Inches | The length of the item in inches. | |||||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||||||||
| Width | Inches | The width of the item in inches. | |||||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||||||||
| Depth | Inches | The depth of the item in inches. | |||||||||||||||||||||||||||||||
| X | X | X | X | Contractor | 2 | 2 | |||||||||||||||||||||||||||
| Power - Input | Watts | The input power is the power which enables the subsystem or electrical component to function. Power required to operate signal processor in watts | X | X | X | X | Contractor | 2 | 2 | ||||||||||||||||||||||||
| Number of Field-Programmable Gate Array (FPGA) Designs | Quantity | A field-programmable gate array (FPGA) is an integrated circuit designed to be configured by a customer or a designer after manufacturing . Specify the total Number of FPGA designs in the system. | New | X | X | X | X | Contractor | 1 | 3 |
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