Attachment 1 - TRD (30 Apr 21).pdf
PDF 224 KB Posted
- Attached to
- Spectrum Analyzers Federal contract opportunity
- Solicitation number
- FA282321Q0019
About this file
This document outlines requirements for two spectrum analyzers and the related federal contract opportunity. The technical requirement document specifies that the spectrum analyzers must have at least 43 GHz frequency coverage and meet specified phase noise levels at 1 GHz, 10 GHz, and 40 GHz center frequencies with 10 kHz offsets. The analyzers must also support an analysis bandwidth of 512 MHz, detect pulse widths down to 8 nanoseconds, and have a system rise time for pulses of 5 nanoseconds or less. Interested parties should submit a completed SF1449 form, attachment 2 containing representations and certifications, and any other supporting documentation to Jill Harms at the listed email by June 4, 2021 at 10pm CST for solicitation number FA282321Q0019 issued by the Department of the Air Force Materiel Command Test Center to fulfill this requirement for two signal analyzers.
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Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| Attachment 1 - TRD (4 May 21).pdf | ||
| Attachment 2 - Fillable Reps and Certs.pdf | ||
| Solicitation - FA282321Q0019.pdf |
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Text version
Spectrum Analyzer – Technical Requirement Document – 30 April 2021
At least 43 GHz frequency coverage
Must have Specified Phase Noise at 1 GHz center frequency, 10 kHz offset: -136 dBc/Hz o Must have Phase Noise at 20 GHz center frequency, 10 kHz offset: -124 dBc/Hz o Must have Phase Noise at 40 GHz center frequency, 10 kHz offset: -120 dBc/Hz
Must support an Analysis bandwidth of 512 MHz
Must detect pulse width down to pulse widths of 8 nsec
Must support a System Rise Time for pulses of <2 nsec for a Flat Acquisition Filter & <2.2 nsec for
Gaussian acquisition filter
Automatic Pulse Measurements including measurements, individual pulse displays, pulse trend displays, and statistical analysis:
Pulse parameters Timing timestamp, settling time, rise time, fall time, pulse width, off time, duty ratio, duty cycle, pulse repetition interval, pulse repetition frequency
Amplitude top power, base power, average on power, average transmitted power, minimum power, peak power, peak-to-average on power ratio, peak-to-average transmitted power ratio, peak-to-min power ratio, droop, ripple, overshoot, power (at point), pulse-to-pulse power ratio (at point), in-phase amplitude, quadrature amplitude
Frequency frequency (at point), pulse-to-pulse frequency difference (at point), frequency deviation, frequency error (peak), frequency error (RMS), chirp rate
Phase phase (at point), pulse-to-pulse phase difference (at point), phase deviation, phase error (peak), phase error (RMS)
Envelope model rise/fall base-point time, rise/fall low-point time, rise/fall mid-point time, rise/fall high-point time, rise/fall top-point time, rise/fall low-point level, rise/fall mid-point level, rise/fall high-point level, rise/fall top-point level
Result displays inter-pulse analysis table with numeric values per pulse, table with statistics (average, standard deviation, max., min.), trend plot of parameter versus time, scatter plot of parameter versus parameter, spectrum of parameter versus time, histogram of parameter distribution, spectrum of pulse-to-pulse I and Q intra-pulse analysis traces aligned to pulse for magnitude versus time, frequency versus time, phase (wrapped or unwrapped) versus time, pulse I and Q versus time, power spectrum
Automatic Pulse Measurement on 200,000 pulses
Automatic Pulse Measurements on 200,000 segments for segmented memory
Automatic Measurements of Transient signals: LFM Chirps and Frequency Hops
Chirped Linear FM measurements within Analysis Region Measurements performed over Time Gating within record length Up to 100,000 chirps results table, statistics table state index chirp begin chirp length chirp rate chirp state deviation average frequency nominal bandwidth frequency deviation (peak) frequency deviation (RMS) frequency deviation (average) frequency INL (peak) frequency INL (RMS) frequency INL (average) FM settling point FM settling time
FM settled length phase deviation (peak) phase deviation (RMS) phase deviation (average) PM settling point PM settling time
PM settled length minimum power maximum power average power power ripple
Frequency hopping within Analysis Region
Measurements performed over Time Gating within record length Up to 100,000 hops results table, statistics table state index hop begin dwell time switching time state frequency (nominal) average frequency hop state deviation relative frequency (hop-to-hop) frequency deviation (peak) frequency deviation (RMS) frequency deviation (average) FM settling point
FM settling time FM settled length phase deviation (peak) phase deviation (RMS) phase deviation (average) PM settling point
PM settling time PM settled length minimum power maximum power average power power ripple
Must have a pulse to pulse phase comparison automatic measurement within a 500 MHz BW of at least o Center Frequency 2 GHz: ±0.45֯ o Center Frequency 20 GHz: ±0.90֯
Must support 440 MSamples record length
Must support Vector Signal Analysis on individual pulses or hops
Instrument Height: less than 5.8 U
Must support integrated color display with touch screen and front face controls
Must support SCPI program recording of instrument front panel button pushes & generation of source code in MATLAB, NICVI, Plain SCPI, or Python to facility ATE development*
Must support instrument sanitation for security via removal of SSD
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