Attachment 1 - Technical Specifications Sheet.pdf

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Attached to
Transient Data Systems Federal contract opportunity
Solicitation number
FA910125QB011
Issued by
Department of the Air Force Materiel Command Test Center

About this file

This document is a technical specification sheet for the Transient Data Systems (TDS) required by the Arnold Engineering Development Complex (AEDC) at Arnold Air Force Base. The AEDC requires five TDS systems, each containing a rack-mounted oscilloscope, a rack-mounted signal conditioner, and any other necessary equipment. The systems must meet detailed technical requirements for the oscilloscope and signal conditioner, including performance parameters such as bandwidth, channel count, sampling rate, and control interfaces. The systems must also meet reliability, maintainability, environmental, electrical, and interface requirements. This technical specification is in support of Federal Contract Opportunity FA910125QB011 issued by the Department of the Air Force Materiel Command Test Center for the procurement of the TDS systems. Key details include the required components, technical performance requirements, and expectations for project milestones and deliverables.

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FA9101-25-Q-B011 - Model Contract.pdf PDF
FA9101-25-Q-B011 - Transient Data Systems- Combined Synopsis Solicitation.pdf PDF

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Technical Specification Sheet

Overview: The mission of the Arnold Engineering Development Complex (AEDC) Hypervelocity Aeroballistics Ranges Facilities is to conduct developmental test and evaluation fly‐out and impact capabilities of high‐ speed vehicles in a ground test facility that provides a simulated environment representative of the conditions experienced in operational environments. The Ranges Transient Data System (TDS) is a critical system for operations at the Ranges Test Facilities. The hardware for the existing TDS is obsolete, and replacement parts are costly or not available. Therefore, a replacement of the existing TDS is required.

The TDS captures vital test data that assists with analyzation of test performance and helps adjust future test parameters to achieve customer required specifications as well as determining customer required test dependent parameters such as, but not limited to, impact force and damage. There are three hypervelocity Ranges at AEDC: Range G, Range I, and Range S1. Each Range has its own environmental tank that can be conditioned to simulate actual test environments. To support concurrent operations, each range has its own

TDS.

To meet this requirement, the vendor shall provide a quantity of five, data systems. Each system delivered shall contain the following components: 1 rack-mounted oscilloscope, 1 rack-mounted signal conditioner, and any other necessary equipment required for the system to function properly. The power source for the system shall be 120VAC 60 Hz.

Performance Parameters: The following is a list of the critical performance parameters required to meet the TDS Project:

1.0 Project Milestones. At a minimum, project milestones shall include the following meetings, as described below.

Meeting Purpose

Kickoff Meeting

Expectation management, address questions, make introductions. Shall occur within one week after contract award.

Technical Interchange Meetings

Provide technical and programmatic status updates. Shall occur on a reoccurring, bi‐weekly or as needed basis, beginning one week after Kickoff Meeting.

100% Design Review Meeting

Present final design for approval. Shall occur within two weeks from final Technical Interchange Meeting.

Project Closeout Meeting Present as‐built design for approval. Shall occur upon project completion, and prior to Government acceptance being made.

2.0 Technical Requirements. The contractor shall provide a turnkey solution, which shall include all required hardware and software, to meet this effort.

2.1 Hardware

2.1.1 The contractor shall provide Statements of Volatility for hardware, along with

Hardware / Manufacturer‐ Model Datasheets.

2.2 Software

2.2.1 Software shall be provided to control the systems remotely.

2.2.2 Software shall include a Human‐Machine Interface.

2.2.3 Software shall be capable of operating on a Windows10 Secure Host Baseline operating system or newer.

2.3 Oscilloscope

2.3.1 Oscilloscopes shall operate at a minimum of 1 GHz bandwidth.

2.3.2 Oscilloscopes shall have a minimum of 8 analog channels with BNC connections.

2.3.3 Oscilloscopes shall have a minimum of 12 bit depth memory.

2.3.4 Oscilloscopes shall have a minimum of 10 Giga samples per second data acquisition speed.

2.3.5 Oscilloscopes shall have a minimum of 50 Mega points of memory per channel.

2.3.6 Oscilloscopes shall have a HD touch screen for mobile control of settings and activation.

2.3.7 Oscilloscopes shall be controllable remotely from either a KVM system or computer through ethernet cable.

2.3.8 Oscilloscopes shall be standard 19 inch rack‐mountable or come with an attachment to allow it to be rack‐mounted in standard 19 inch cabinet.

2.3.9 Oscilloscopes shall have a minimum of 6 USB 3.1 ports.

2.3.10 Oscilloscopes shall have a removeable SSD.

2.3.11 Oscilloscopes shall have USBTMC over USB 3.1.

2.4 Signal Conditioner

2.4.1 Signal Conditioner shall have input types of at least: ICP, Voltage, and Charge

2.4.2 Signal Conditioner shall have 8 channels with BNC connections.

2.4.3 Signal Conditioner shall have gain values from at least: x0.1 to at least x200 (ICP, Volt), x0.01 to x2000 mV/pC (Charge)

2.4.4 Signal Conditioner shall have a frequency range from at least 0.05 Hz to 100kHz (‐3dB) at gain levels below and above 100.

2.4.5 Signal Conditioner shall have a digital control interface type of ethernet.

2.4.6 Signal Conditioner shall have BNC ports for input devices.

2.4.7 Signal Conditioner shall be standard 19” rack‐mountable or come with an attachment to allow it to be rack‐mounted in standard 19” cabinet.

2.4.8 Signal Conditioner shall have excitation power of 24 VDC to ICP sensors.

2.4.9 Signal Conditioner shall have ethernet ports for control interface.

2.4.10 Signal Conditioner shall be compatible with PCB Piezotronics Piezoelectric Pressure

Transducers

2.5 Location

2.5.1 The system shall be configured so that components are interchangeable with similar systems (e.g., some systems will be installed in mobile rack‐mounts and others in stationary rack‐mounts. All components should work in either location).

2.5.2 The mobile system should be portable to quickly change locations within the Ranges Facility with no more than a two‐man lift.

2.6 Physical Characteristics

2.6.1 Power supplies and associated equipment shall be installed in a standard 19” network rack.

2.7 Reliability and Maintainability

2.7.1 The TDS will be in use the entire day during test setup and during a test. Testing rate is approximately 100 tests per year.

2.7.2 Reliability is defined as the probability of the TDS operating successfully for a ballistic range test operation. Preconditions are that the maintenance instructions and pre‐ operations procedures prescribed by the contractor are followed. For this case the reliability shall not be less than 98.5% (3 TDS failures in 200 test operations).

2.7.3 Service manuals shall be provided for all delivered equipment.

2.7.4 A list of spare components of COTS (commercial off the shelf) shall be provided.

2.8 Environmental Conditions

2.8.1 Operating temperature range shall be from 0 to 100°F.

2.8.2 Humidity range shall be 0‐50% non‐condensing.

2.9 Electrical Wiring and Connections

2.9.1 Equipment wiring shall comply with the most recent NFPA 70 (National Electric Code).

2.10 Calibration

2.10.1 Calibration requirements and intervals will be determined by AFMETCAL upon receiving the item.

2.11 Interface Requirements

2.11.1 Components will be installed in mobile carts in the test area of each range as well as the screen room (room 210) in building 678, and the control room of S Range (building 320).

2.11.2 The oscilloscopes shall contain an RJ45 port to communicate with a managed Ethernet switch.

2.11.3 Both oscilloscopes and signal conditioners shall run off of facility 120 VAC.

4.0 Miscellaneous. The following are additional performance parameters needed to meet this effort.

4.1 Security Classification. The classification level for this project is UNCLASSIFIED. Contractor and subcontractor personnel working on this project MUST be United States citizens.

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