Attachment 2 Performance Specification.pdf

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Attached to
Handheld Radio Tests (HHRTS) Federal contract opportunity
Solicitation number
M67854-22-R-5105
Issued by
United States Marine Corps

About this file

This solicitation requests proposals for a Handheld Radio Test Set. The United States Marine Corps seeks to award an Indefinite Delivery/Indefinite Quantity contract for five years to a single vendor to manufacture, integrate, test, produce, provide, and deliver the Handheld Radio Test Set and associated documentation. Technical requirements are defined in an attachment. Interested offerors must register in the System for Award Management and submit completed Past Performance Questionnaires from previous customers directly to the government point of contact rather than to the offeror. No phone calls will be accepted and all communication must be via email to the contracting office.

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M67854-22-R-5105 P00001.pdf PDF
Questions and Answers.xlsx XLSX spreadsheet
Provisioning Performance Schedule.docx DOCX document
DOD 4120.24.pdf PDF
DI-SAFT-80102C.pdf PDF
HHRTS CDRLs A001 through B011 updated.pdf PDF
M67854-22-R-5105 RFP.pdf PDF
Attachment 3 PPQ.pdf PDF
Attachment 1 HHRTS SOW TMCR.pdf PDF
HHRTS CDRLs A001-B011.pdf PDF

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M67854-22-R-5105

ATTACHMENT 2

PERFORMANCE SPECIFICATION

FOR THE

HANDHELD RADIO TEST SET

1. Scope.

The Performance Specification (PS) identifies and establishes the requirements for the Hand- Held Radio Test Set (HHRTS).

1.1 Document Overview.

The HHRTS is identified, described and specified within this document in five major sections:

a. Section 1. Scope, provides identification and a brief description of the purpose of the

HHRTS

b. Section 2, Applicable Documents, lists, by document number and title, all documents that form a part of the PS or are referenced by this PS.

c. Section 3, Requirements, gives the functional requirements of the HHRTS.

d. Section 4, Verification, identifies the testing requirements to ensure compliance of all functional requirements defined in Section 3.

e. Section 5, Packaging, provides packaging requirements.

2. Applicable Documents.

The following documents of the exact issue shown form a part of this document to the extent specified herein. In the event of conflict between the documents referenced herein and the contents of this PS, the contents of this PS shall take precedence.

2.1 Government Documents.

MIL-PRF-28800F General Specification for Test Equipment for use with Electrical and Electronic Equipment

MIL-STD-130N Identification Marking of U.S. Military Property

MIL-STD-129P Military Marking for Shipment and Storage

2.2 Non-Government Publications.

IPC/EIA J-STD-001C Requirements for Soldered Electrical and Electronic Assemblies

2.3 Availability of Documents. Copies of Government documents are available online at http://quicksearch.dla.mil/ or from the Standardization Document Order Desk, 700 Robbins Avenue, Building 4D, Philadelphia, PA 19111-5094.

http://quicksearch.dla.mil/

3. Requirements.

3.1 SYSTEM ARCHITECTURE. All Test Set internal instrumentation shall utilize open source protocols for communication. (Example: SCPI, TCP, RS-232 etc.)

3.2 RF SIGNAL GENERATOR.

The output port shall have the following specifications:

a. Frequency range: 1.5 MHz to 6000 MHz

b. Frequency resolution: 1 Hz

c. Accuracy: Identical Reference Oscillator

d. Ports output level range: -120 dBm to -30 dBm

e. Ports Impedance: 50 Ohms with VSWR < 1.4

f. RF output level accuracy: +/- 2 dB for > -100 dBm, +/- 3 dB for < -100 dBm

g. RF output spectral purity:

g.1 Residual FM < 20 Hz RMS, post det. BW 3 kHz g.2 Residual AM < 0.20 % RMS, post det. BW 15 kHz

h. RF output SSB phase noise:

h.1 < -84 dBc/Hz at 20 kHz from output at 1000 MHz h.2 < -81 dBc/Hz at 20 kHz from output at 2000 MHz h.3 < -74 dBc/Hz at 20 kHz from output at 6000 MHz

i. RF output Harmonics: < -30 dBc

j. RF output non-harmonics: < -50 dBc

k. RF output resolution: 1 dB

3.3 RF SIGNAL MODULATION.

The Test Set shall provide the capability to modulate the RF signal output with frequency, amplitude and Digital IQ modulation. The Test Set shall provide for the ability to modulate the carrier with two simultaneous like audio waveforms.

The Test Set FM modulation capability shall have the following specifications:

a. Carrier frequency range: 1.5 MHz to 6000 MHz

b. FM deviation range: 100 Hz to 100 kHz

c. FM accuracy: 5% of setting for +/- 1 kHz to +/- 20 kHz deviation

d. FM deviation rates: 10 Hz to 40 kHz

e. FM resolution: 1 Hz for rate and deviation

f. FM internal waveform: Sine

g. FM total harmonic distortion: < 1.0 %

h. Modulation source: Internal

i. Modulation Source The Test Set shall provide the capability to modulate the RF signal output with the following:

i.1 Frequency i.2 Amplitude i.3 Digital IQ

j. The Test Set shall provide for the ability to modulate the carrier with two simultaneous like audio waveforms.

3.3.1 AM Modulation.

The Test Set AM modulation capability shall have the following specifications:

a. Carrier frequency range: 1.5 MHz to 6000 MHz

b. AM modulation range: 1% to 95%

c. AM accuracy: 5% of setting between 10% and 90% modification

d. AM modulation rates: 15 Hz to 20 kHz

e. AM internal waveform: Sine

f. AM total harmonic distortion: < 3% between 30% and 90% modulation level

g. Modulation source: Internal

h. AM resolution: 1 Hz rate and 1% level

i. USB: The ability to produce USB

j. LSB The ability to produce LSB

3.3.2 Digital Modulation.

a. The Test Set shall have a Digital (I/Q) modulation capability that allows the user the ability to perform inspection and test of communication sets.

b. Accept software upgrades to allow the test of additional modulation types.

3.4 RF RECEIVER.

The Test Set shall provide an RF measuring receiver with the following specifications:

b. Receiver sensitivity: Ant port: 10 dB SINAD with -100 dBm input

c. IF bandwidths: Instantaneous IF bandwidth 10 MHz

d. Audio filters d.1 3 kHz LP d.2 15 kHz LP d.3 300 Hz - 3 kHz BP d.4 C-MSG BP d.5 CCITT BP d.6 NONE

e. RF Signal Generator Port: The Receiver shall be available on the same port as the RF Signal Generator

f. Antenna Port: The RF Receiver shall be available through an antenna port

3.4.1 RF Receiver Capability.

The Test Set RF measuring receiver shall have the capability of demodulating all waveforms produced by the RF signal generator.

3.4.2 Software-Upgradeable.

The measuring receiver shall be software-upgradeable to demodulate other modulation types in the future.

3.4.3 Frequency Modulation Meter.

The Test Set shall provide a frequency modulation meter with the following specifications:

a. Range: 0 to 100 kHz

b. Accuracy:

b.1 +/- 10.0% plus source residual, +/- 1 count b.2 1 kHz to 100 kHz FM deviation b.3 Modulation Rate 1 kHz to 20 kHz

c. Resolution: 1 Hz

d. Modulation rate: 10 Hz to 20 kHz

e. Input signal level: > -70 dBm

f. Measurement Type: Peak +, Peak –

3.4.4 Amplitude Modulation Meter.

The Test Set shall provide an amplitude modulation meter with the following specifications:

a. Range: 0% to 100%

b. Accuracy: +/- 5.0% from 30% to 90%

c. Resolution: 1%

d. Modulation rate range: 100 Hz to 40 kHz

e. Input signal level: > -70 dBm

f. Measurement Type: Peak +, Peak -

3.4.5 Digital Signal Analyzer. The Test Set shall provide a Digital Signal Analyzer with the following specifications:

a. Range: 1.5 MHz to 6000 MHz

b. Modulation Bandwidth: 10 MHz

c. Measurement Type: EVM with constellation diagram.

3.4.6 RF Frequency Counter and Frequency Error Meter. The Test Set shall provide an RF frequency counter and a frequency error meter function with the following specifications:

a. Range: 1.5 MHz to 6000 MHz

b. Accuracy: Identical to Reference Oscillator

c. Resolution: 1 Hz

d. Carrier level: > -70 dBm

e. Frequency error meter range: +/- 0 Hz to +/- 1000 kHz

f. Frequency error meter resolution: 1 Hz

g. Frequency error meter carrier level: > -70 dBm

3.4.7 RF Power Meter. The Test Set shall provide an RF power meter with the ability to incorporate external attenuation into the power calculation to allow testing of high power radios.

The Test Set shall have the following specifications:

b. Carrier input level range: 0.02 mW to 20 Watts continuous

c. Resolution:

c.1 0.1 dB c.2 0.1W

d. Accuracy: +/- 10%

e. Measurement display values: Watts and dBm

f. Power measurement: Absolute and Relative

g. Measurement type: Average and Peak

h. Input VSWR: 1.4 or better

3.4.8 RF Spectrum Analyzer. The Test Set shall provide an RF spectrum analyzer function with the following specifications:

a. RF Range: 1.5 MHz to 6000 MHz

b. Frequency span RF range: 1 kHz/Div to full span

c. RF span accuracy: +/- 5% span width

d. Input level vertical range: Logarithmic, 10 dB/Div to 2 dB/Div

e. Input vertical resolution: 1 dB (10 dB/Div) to 0.2 dB (2 dB/Div)

f. Display range: 100 dB

g. Overall accuracy: +/- 3 dB

h. Input Impedance: 50 ohms

i. Spur-free dynamic range: 60 dB

j. Resolution bandwidth: < = 100 Hz to > = 1 MHz

k. Video bandwidth: < = 300 Hz to > = 3 MHz

l. Marker functions:

l.1 peak l.2 delta

m. Input signal level: -100 dBm to +20 dBm

3.4.9 Audio Frequency Generator. The Test Set shall provide for an Audio Frequency (AF) generator with the following specifications:

a. Frequency range: 20 Hz to 20 kHz

b. Frequency resolution: 1 Hz

c. Frequency accuracy: +/- 0.1%

d. Output level: 1 mVrms to .707 Vrms into 600 Ohms

e. Accuracy: 5.0% with 1 kHz sinewave

f. Total harmonic distortion: < = 1.0 %

g. Waveforms:

g.1 Sine g.2 Square

h. Ports Two BNC, switchable I/O or each port dedicated as either input or output.

3.4.10 Distortion Meter. The Test Set shall provide a total harmonic distortion meter (THD and THD + Noise) with the following specifications:

a. Range: 0.1% to 50.0%

b. Accuracy: 10% of reading

c. Resolution: 0.1%

d. Signal input freq: 100 Hz to 10 kHz

e. Input signal level: 0.15 Vrms to 5 Vrms.

3.4.11 SINAD Meter. The Test Set shall provide a SINAD meter with the following specifications:

a. Range: 0 dB to 40 dB

b. Accuracy: 10% of reading

c. Resolution: 1 dB

d. Input frequency range: 100 Hz to 10 kHz

e. Input signal level: 0.15 Vrms to 5 Vrms

3.5 Distance to Fault Meter.

a. Test range: User defined from 3 ft (1 m) to 328 ft (100 m)

b. Display format: A graphical display of Return Loss/SWR (dB, vertical) vs. DTF (ft, horizontal)

c. Horizontal display scale: 10 divisions marked with the following:

c.1 start c.2 center c.3 end

d. Resolution: 320 points

e. Accuracy: ± 3 ft

f. Vertical display scale: 10 divisions

3.6 SWR Meter.

a. Test range: 1 through 7

b. Display format: A graphical display of SWR (vertical) vs frequency

(Mhz, horizontal)

c. Horizontal display scale: 10 divisions marked with the frequency

d. Resolution: 0.1

e. Accuracy: 20% of reading

f. Vertical display scale: 10 divisions

3.7 Timebase (Reference Oscillator).

a. Stability +- .2 ppm between 0°C to 50°C

b. Aging .1 ppm per year

c. Warm up 15 minutes

3.8 Interfaces. The Test Set shall provide the following interfaces:

a. Ethernet RJ-45 100/10 Mbit/s (10/100 Base-T) b USB Type A version 3.0 interface compatible to 2.0

c. Antenna: TNC or N-Type, input

d. T/R N-type, I/O

e. SWR TNC or N-type

f. Audio x 2 BNC

g. RS-232 serial port: 9-Pin, D-sub Male Fully Populated

Baud Rates 300, 600, 1200, 2400, 4800, 9600, 19200, 38400, 57600, 115200).

3.9 Script Development and Execution:

The Test Set shall allow the user to run scripts or programs, with vendor provided commands, that are capable of the following: able to set and query the state of all meters, generators, instruments, and signal switching for the purpose of automating radio testing functions of the Test Set.

a. The Test Set architecture shall allow for non-privileged user script development.

b. The scripts shall be transferable from one Test Set to another through a provided interface.

3.10 Operating System: The Operating System shall be approved by the government. If the Test Set uses a Windows Operating System, it shall be a minimum of Windows 10 and shall contain a minimum of Trusted Platform Module (TPM) Version 2.0.

3.11 Environmental Requirements: The Test Set shall conform to the Class 2 Environmental Requirements specified in Table 2 of MIL-PRF-28800F, with the following caveats included:

3.11.1 Operating Temperature: -10°C to +40° C at non-condensing RH up to 95%

3.11.2 Non-operating Temperature: -40°C to +71°C at non-condensing RH up to 80% without battery. -20°C to 60°C at non-condensing RH up to 80% with battery.

3.11.3 Bounce, Loose Cargo. The Test Set shall meet the Class 2 requirements of the Bounce, Loose Cargo test specified in sections 3.8.4.3 and 4.5.5.3.3 of MIL-PRF-28800F. The test shall be conducted on the hard transit case with all other components secured inside.

3.11.4 Shock, Functional: The Test Set shall meet all requirements of the Shock, Functional test specified in sections 3.8.5.1 and 4.5.5.4.1 of MIL-PRF-28800F.

3.11.5 Transit Drop: The Test Set shall meet the Class 2 requirements of the Transit Drop test specified in sections 3.8.5.2 and 4.5.5.4.2. The test shall be conducted on the hard transit case with all other components secured inside.

3.11.6 Drip proof: The Test Set shall meet the Class 2 requirements of the Drip proof test specified in sections 3.8.6.3 and 4.5.5.5.3. The test shall be conducted on the Test Set while outside of the Hard and Soft Transit Cases.

3.11.7 EMC: The Test Set shall meet the requirements specified in section 4.5.6.5 and Table 6 of MIL-PRF-28800F. The Test Set shall meet Class A performance in section 9 of IEC 6100.

3.12 General Requirements.

3.12.1 Standalone. The Test Set shall be a single standalone system and shall not be dependent on external test equipment.

3.12.2 Internal DC Battery: Internal rechargeable batteries and a charger shall be provided. The batteries shall be installed in an externally accessible compartment as specified in MIL-PRF- 28800F.

3.12.3 Battery operation: Minimum operating time shall be 2 hours on a full charge. The Test Set shall be operational while being charged.

3.12.4 Charger: The charger shall operate from the 50 Hz and 60 Hz alternate power source as specified in MIL-PRF-28800F, and additionally, from an external [24 VDC to 28 VDC] power source. A DC cable with NATO slave plug shall be provided to connect to a vehicle’s 24 to 28 VDC NATO slave connector.

3.12.5 Battery Status Indicator: A battery life indicator shall be incorporated into the test set.

3.12.6 Accessories: All accessories shall be stored in a protective case.

3.12.6.1 Qty 1 Attenuator, N-Male to N-Female 20 dB, 50W

3.12.6.2 Qty 1 Attenuator, N-Male to N-Female 20 dB, 200W

3.12.6.3 Qty 1 Adapter, N-Female to N-Male, 50 Ohm

3.12.6.4 Qty 2 Adapter, N-Female to BNC Female, 50 Ohm

3.12.6.5 Qty 2 Adapter, N-Male to BNC Female, 50 Ohm

3.12.6.6 Qty 2 Adapter, N-Female to BNC Male, 50 Ohm

3.12.6.7 Qty 1 Adapter, N-Female to N-Female Barrel, 50 Ohm

3.12.6.8 Qty 3 Adapter, TNC-Male to BNC Female, 50 Ohm

3.12.6.9 Qty 5 Cable, RF, BNC-M to BNC-M, 48 Inches, RG-223

3.12.6.10 Qty 1 Handset, H-250

3.12.7 Dimensions: The Test Set shall have a dimension of less than 25.5 cm x 31.75 cm x 12.7 cm (10 in x 12.5 in x 5 in).

3.12.8 Weight: The Test Set shall have a weight of no greater than 4.9 kg (11 lbs.), without batteries or accessories.

3.12.9 Stand: The Test Set shall have a stand that is either permanently or temporarily attached for the purpose of holding the test set at a 65 degree to 75 degree angle.

3.12.10 Soft Carrying Case: A soft carrying case according to MIL-PRF- 28800F shall be provided for carrying the Test Set in the operational environment. The soft carrying case shall be capable of accommodating the Test Set, accessories, and the operator’s manual.

3.12.11 Hard Transit Case: A protective hard transit case according to MIL-PRF-28800F for transporting the Test Set shall be provided. The transit case shall be capable of accommodating the Test Set, accessories, and the operator’s manual.

3.12.12 Screenshot. A screenshot capture and save function shall be provided.

3.12.13 Human Readable Identification Labeling:

3.12.13.1 Equipment: Per MIL-PRF-28800F, a human readable label shall be provided for all production lot units conforming with MIL-STD-130N and permanently affixed on the equipment in an easily readable location. Required fields on the label are; CAGE, part number, and serial number. Size of the label shall conform to the size of the equipment.

3.12.13.2 Case: Per MIL-PRF-28800F, a human readable metal plate shall be provided for all production lot units conforming with MIL-STD-130N and permanently affixed to the front of the transit case. Required fields on the label are; CAGE, part number, and serial number. Size of the label shall conform to the size of the case. Pressure sensitive adhesive transfer tape is required to hold the plate to the hard transit case such as 3M™ 9472LE. Soft transit cases also require labeling with permanent placement such as a metal plate affixed with rivets, screws or adhesives.

3.12.14 Built-in Test. The Test Set shall have a Built-in test that evaluates the general function of the test set and the functionality of its meters, generators, instruments and switches.

3.12.15 Ease of Use. The Test Set shall be capable of completing all procedures in Appendix A in 30 minutes or less.

3.12.16 Reliability. Mean-time-between-failure (MTBF) of the HHRTS shall be greater than 1,500 operating hours.

4. Verification

4.1 CLASSIFICATION OF INSPECTIONS. Inspection requirements are classified as follows:

Validation and Verification inspection (see 4.3).

Acceptance Test (see 4.4).

4.2 METHODS OF INSPECTION. Methods used to accomplish verification shall include:

4.2.1 Analysis. An element of verification that utilizes established technical or mathematical models or simulations, algorithms, charts, graphs, circuit diagrams, or other scientific principles and procedures to provide evidence that stated requirements were met.

4.2.2 Demonstration. An element of verification which denotes the actual operation, adjustment, or re-configuration of items to provide evidence that the designed functions were accomplished under specific scenarios. The items may be instrumented and quantitative limits of performance monitored.

4.2.3 Examination. An element of verification and inspection consisting of investigation, without use of special laboratory appliances or procedures, of items to determine conformance to those specified requirements which can be determined by such investigations. Examination is generally nondestructive and typically includes the use of sight, hearing, smell, touch, and taste;

simple physical manipulation; mechanical and electrical gauging and measurement; and other forms of investigation.

4.2.4 Test. An element of verification and inspection which generally denotes the determination, by technical means, of the properties or elements of items, including functional operation, and involves the application of established scientific principles and procedures and conditions to verify compliance with requirements.

4.3 VALIDATION AND VERIFICATION INSPECTION. The Validation and Verification (V&V) Inspection shall consist of the Analysis, Demonstration, Examination, and Tests listed in Table I.

4.4 ACCEPTANCE TEST. This verification shall succeed Validation and Verification Inspection and shall consist of the Analysis, Demonstration, Examination, and Tests listed in Table I. This Acceptance Test shall verify that each item meets the requirements stated herein prior to Government acceptance of results and delivery of the HHRTS.

TABLE II. Requirement/Verification Cross Reference Matrix

REQUIREMENT/VERIFICATION CROSS REFERENCE MATRIX

METHOD OF VERIFICATION CLASSES OF VERIFICATION

N/A - NOT APPLICABLE 1 - Source Selection A - ANALYSIS 2 - Product Verification Test D - DEMONSTRATION C - Completed

E - EXAMINATION

T - TEST

Sect. 3 Reqm’t Title Method of Verification

Verification Class

N/ A D E T 1 C 2 C Verification Strategy

3.1 System Architecture X X Open source protocol complete list of commands provided by the vendor will enable communication with all internal instrumentation.

Produce a script that follows the following guideline:

-Turn on RF Generator -Query RF Generator for response/identification -Turn on Spectrum Analyzer -Query Spectrum Analyzer for response/identification -Stimulate 30MHz at -30dbm using RF Generator -Using Power Meter or Spectrum Analyzer, measure or display reading -Turn off Generator -Turn off Power Meter or Spectrum Analyzer -Exit script

3.2 RF Signal Generator

3.2.a Frequency Range X X Apply UUT output to Microwave Frequency Counter, verify full range.

3.2.b Frequency Resolution X X Operation check, verify RF output frequency settable to 1 Hz.

3.2.c Accuracy X X Apply UUT output to Microwave Frequency Counter phase locked to

GPS 10 Mhz reference.

3.2.d Ports Output Level Range X X Apply UUT output to external Spectrum Analyzer, verify full range 3.2.e Ports impedance X X Measure with Network Analyzer & Sweep Oscillator.

3.2.f RF Output Level Accuracy

3.2.f.1 “…….” X X Apply UUT output to Spectrum Analyzer, verify full range 3.2.f.2 “…….” X X Apply UUT output to Spectrum Analyzer, verify full range

3.2.g RF Output Spectral Purity X X 3.2.g.1 “…….” X X Apply UUT output to Spectrum Analyzer.

3.2.g.2 “…….” X X Apply UUT output to Spectrum Analyzer.

3.2.h RF Output SSB Phase Noise 3.2.h.1 “…….” X X Apply UUT output to Spectrum Analyzer.

3.2.h.2 “…….” X X Apply UUT output to Spectrum Analyzer.

3.2.h.3 “…….” X X Apply UUT output to Spectrum Analyzer.

3.2.i RF Output Harmonics X X Apply UUT output to Spectrum Analyzer.

3.2.j RF Output Non-Harmonics X X Apply UUT output to Spectrum Analyzer.

3.2.k RF Output Resolution X X Operation check, verify RF output amplitude settable to 1 dB.

3.3 RF Signal Modulation X X

3.3.a Carrier Frequency Range X X Apply UUT output to Microwave Frequency Counter, verify full range.

3.3.b FM Deviation Range X X Apply UUT output to Measuring Receiver.

3.3.c FM Accuracy X X Apply UUT output to Measuring Receiver.

3.3.d FM Deviation Rates X X Apply UUT output to Measuring Receiver.

3.3.e FM Resolution X X Apply UUT output to Measuring Receiver.

3.3.f FM Internal Waveform X X Operational Check 3.3.g FM Total Harmonic Distortion X X Apply UUT output to Measuring Receiver.

3.3.h Modulation Source X X Operational Check, verify that the modulation source is internal to the

Test Set 3.3.i Modulation Type

3.3.i.1 Frequency X X Apply UUT output to Measuring Receiver.

3.3.i.2 Amplitude X X Apply UUT output to Measuring Receiver.

3.3.i.3 Digital IQ X X Apply UUT output to Measuring Receiver.

3.3.j Simultaneous Modulation X X Apply UUT output to Measuring Receiver.

3.3.1 AM Modulation

3.3.1.a Carrier Frequency Range X X Apply UUT output to Microwave Frequency Counter, verify full range.

3.3.1.b AM Modulation Range X X Apply UUT output to Measuring Receiver.

3.3.1.c AM Accuracy X X Apply UUT output to Measuring Receiver.

3.3.1.d AM Modulation rates X X Apply UUT output to Measuring Receiver.

3.3.1.e AM Internal Waveform X X Operational Check, verify that the UUT is capable of producing a sine wave 3.3.1.f AM Total Harmonic Distortion X X Apply UUT output to Measuring Receiver.

3.3.1.g Modulation Source X X Operational Check, verify that the modulation source is internal to the

Test Set.

3.3.1.h AM Resolution X X Operation Check, verify UUT settable to 1 Hz rate and 1% level.

3.3.1.i USB X X Operation Check, verify USB capability.

3.3.1.j LSB X X Operation Check, verify USB capability.

3.3.2 Digital Modulation

3.3.2.a Digital IQ Modulation Capability

X X Test a waveform.

3.3.2.b Additional Modulation Types X X Test a waveform.

3.4 RF Receiver

3.4.a Frequency range X X Apply Signal Generator CW output to UUT, verify range.

3.4.b Receiver Sensitivity X X Apply Signal Generator output to UUT, verify -100dBm sensitivity.

3.4.c IF Bandwidths X Apply Signal Generator with AM output to UUT, verify bandwidth.

3.4.d Audio Filters

3.4.d.1 “…..” X X X Operational Check, visually verify that the UUT as specified audio filter option and select the option.

3.4.d.2 “…..” X X X Operational Check, visually verify that the UUT as specified audio filter option and select the option.

3.4.d.3 “…..” X X X Operational Check, visually verify that the UUT as specified audio filter option and select the option.

3.4.d.4 “…..” X X X Operational Check, visually verify that the UUT as specified audio filter option and select the option.

3.4.d.5 “…..” X X X Operational Check, visually verify that the UUT as specified audio filter option and select the option.

3.4.d.6 “…..” X X X Operational Check, visually verify that the UUT as specified audio filter option and select the option.

3.4.e RF Signal Generator Port X X X Operational Check, visually verify and validate input/output capability.

3.4.f Antenna Port X X Operational Check, visually verify and validate input capability.

3.4.1 RF Receiver Capability X X Operational Check, loop back from signal generator to receiver.

3.4.2 Software-Upgradeable X X Verify by testing a random waveform.

3.4.3 Frequency Modulation Meter

3.4.3.a Range X X Apply Signal Generator with FM output to UUT, verify range.

3.4.3.b Accuracy

3.4.3.b.1 “…..” X X Apply Signal Generator with FM output to UUT, verify parameters.

3.4.3.b.2 “…..” X X Apply Signal Generator with FM output to UUT, verify parameters.

3.4.3.b.3 “…..” X X Apply Signal Generator with FM output to UUT, verify parameters.

3.4.3.c Resolution X X Operational Check, visually verify resolution.

3.4.3.d Modulation Rate X X Apply Signal Generator with FM output to UUT, verify rate range.

3.4.3.e Input Signal Level X X Apply Signal Generator with FM output to UUT, verify minimum input level.

3.4.3.f Measurement Type X X Operational Check, visually verify.

3.4.4 Amplitude Modulation Meter

3.4.4.a Range X X Apply Signal Generator with AM output to UUT, verify range.

3.4.4.b Accuracy X X Apply Signal Generator with AM output to UUT, verify accuracy.

3.4.4.c Resolution X X Operational Check, visually verify resolution.

3.4.4.d Modulation Rate Range X X Apply Signal Generator with AM output to UUT, verify rate range.

3.4.4.e Input Signal Level X X Apply Signal Generator with AM output to UUT, verify minimum input level.

3.4.4.f Measurement Type X X Operational Check, visually verify.

3.4.5 Digital Signal Analyzer

3.4.5.a Range X X Apply Signal Generator CW output to UUT, verify frequency range.

3.4.5.b Modulation Bandwidth X X Apply Signal Generator CW output to UUT, verify bandwidth.

3.4.5.c Measurement Type X X X Operational Check, verify that a constellation diagram is produced.

3.4.6 RF Frequency Counter and

Frequency Error Meter

3.4.6.a Range X X Apply Signal Generator CW output to UUT, verify frequency range.

3.4.6.b Accuracy X X Checked in 3.5 Timebase section 3.4.6.c Resolution X X Operational Check 3.4.6.d Carrier Level X X Apply Signal Generator CW output to UUT, verify minimum amplitude.

3.4.6.e Frequency Error Meter Range X X Apply Signal Generator CW output to UUT, error range.

3.4.6.f Frequency Error Meter

Resolution X X Operational Check

3.4.6.g Frequency Error Meter Carrier Level

X X Apply Signal Generator CW output to UUT, verify minimum amplitude.

3.4.7 RF Power Meter

3.4.7.a Frequency Range X X Apply Signal Generator output to UUT, verify frequency range.

3.4.7.b Carrier Input Level Range X X Apply Signal Generator output to UUT, verify input level range.

3.4.7.c Resolution

3.4.7.c.1 “…..” X X Operational Check, visually verify resolution.

3.4.7.c.2 “…..” X X Operational Check, visually verify resolution.

3.4.7.d Accuracy X X Apply Signal Generator output to UUT, verify input level accuracy.

3.4.7.e Measurement Display Values X X Operational Check, visually verify 3.4.7.f Power Measurement X X Operational Check, visually verify 3.4.7.g Measurement Type X X Operational Check, visually verify 3.4.7.h Input VSWR X X Verify with Scalar Network Analyzer & Sweep Oscillator.

3.4.8 RF Spectrum Analyzer

3.4.8.a RF Range X X Apply Signal Generator output to UUT, verify frequency range.

3.4.8.b Frequency Span RF Range X X Apply Signal Generator output to UUT, verify span range.

3.4.8.c RF Span Accuracy X X Apply Signal Generator output to UUT, verify span accuracy with marker and marker delta function.

3.4.8.d Input Level Vertical Range X X Operation Check, visually verify 3.4.8.e Input Vertical Resolution X X Operation Check, visually verify 3.4.8.f Display Range X X Operation Check, visually verify 3.4.8.g Overall Accuracy X X Apply Signal Generator output to UUT, verify input level accuracy.

3.4.8.h Input Impedance X X Operational Check 3.4.8.i Spur-free Dynamic Range X X Apply Signal Generator output to UUT, check dynamic range 1.5 MHz to 6 GHz.

3.4.8.j Resolution Bandwidth X X Operational Check, visually verify 3.4.8.k Video Bandwidth X X Operational Check, visually verify

3.4.8.l Marker Functions 3.4.8.l.1 “…..” X X Operational Check, select marker option and visually verify 3.4.8.l.2 “…..” X X Operational Check, select marker option and visually verify

3.4.8.m Input Signal Level X X Apply Signal Generator output to UUT, vary input level from -100 dBm to +20 dBm over full frequency range.

3.4.9 Audio Frequency Generator

3.4.9.a RF Range X X Apply UUT output to Frequency Counter.

3.4.9.b Frequency Resolution X X Operational Check, visually verify 3.4.9.c Frequency Accuracy X X Apply UUT output to Frequency Counter, check frequency accuracy through full range.

3.4.9.d Output Level X X Apply UUT output to Digital Multimeter with 600 ohm load.

3.4.9.e Accuracy X X Apply UUT output to Digital Multimeter with 600 ohm load and verify accuracy.

3.4.9.f Total Harmonic Distortion X X Apply UUT output to Measuring Receiver, measure distortion over full frequency range.

3.4.9.g Waveforms

3.4.9.g.1 Sine X X Apply UUT output to Measuring Receiver, ensure Sine Wave is produced

3.4.9.g.2 Square X X Apply UUT output to Measuring Receiver, ensure Square Wave is produced

3.4.9.h Ports X X Operational Check, visually verify

3.4.10 Distortion Meter

3.4.10.a Range X X Apply signal from Function Generator to UUT, verify range of distortion meter.

3.4.10.b Accuracy X X Apply signal from Function Generator to UUT, verify accuracy of distortion meter.

3.4.10.c Resolution X X Operational Check, visually verify 3.4.10.d Signal input Frequency X X Apply signal from Function Generator to UUT, verify input signal frequency range.

3.4.10.e Input Signal Level X X Apply signal from Function Generator to UUT, verify input signal level range.

3.4.11 SINAD Meter

3.4.11.a Range X X Apply signal from Function Generator to UUT, verify range of SINAD meter.

3.4.11.b Accuracy X X Apply signal from Function Generator to UUT, verify accuracy of SINAD meter.

3.4.11.c Resolution X X Operational Check, visually verify 3.4.11.d Input Frequency Range X X Apply signal from Function Generator to UUT, verify input signal frequency range.

3.4.11.e Input Signal Level X X Apply signal from Function Generator to UUT, verify input signal level range.

3.5 Distance to Fault Meter

3.5.a Test Range X X Validate using known good RF cable lengths of 3ft and 328ft.

3.5.b Display Format X X Visually Verify 3.5.c Horizontal Display Scale X X Visually Verify

3.5.c.1 Start X X Visually Verify 3.5.c.2 Center X X Visually Verify 3.5.c.3 End X X Visually Verify

3.5.d Resolution X X Visually Verify 3.5.e Accuracy X X X Validate using known good RF cable lengths of 3ft and 328ft.

3.5.f Vertical Display Scale X X Visually Verify

3.6 SWR Meter

3.6.a Test Range X X Validate by looping the UUT Antenna to the SWR input using an RF cable.

3.6.b Display Format X X Visually Verify 3.6.c Horizontal Display Scale X X Visually Verify 3.6.d Resolution X X Visually Verify 3.6.e Accuracy X X X Validate by looping the UUT Antenna to the SWR input using an RF cable.

3.6.f Vertical Display Scale X X Visually Verify

3.7 Timebase

3.7.a Stability X X Check drift vs GPS 10 MHz reference.

3.7.b Aging X X Met through analysis of material used in the oscillator.

3.7.c Warm Up X X Check drift vs GPS 10 MHz reference.

3.8 Interfaces

3.8.a Ethernet X X Visually verify interface 3.8.b USB X X Visually verify interface 3.8.c Antenna X X Visually verify interface 3.8.d T/R X X Visually verify interface 3.8.e SWR X X Visually verify interface 3.8.f Audio x2 X X Visually verify interface 3.8.g RS-232 Serial Port X X Visually verify interface

3.9 Script Development and

Execution

X X Produce a script that follows the following guideline:

-Turn on RF Generator -Query RF Generator for response/identification -Turn on Spectrum Analyzer -Query Spectrum Analyzer for response/identification

-Stimulate 30MHz at -30dbm using RF Generator -Using Power Meter or Spectrum Analyzer, measure or display reading -Turn off Generator -Turn off Power Meter or Spectrum Analyzer -Exit script

3.9.a “” X X Produce a script that follows the following guideline:

-Turn on RF Generator -Query RF Generator for response/identification -Turn on Spectrum Analyzer -Query Spectrum Analyzer for response/identification -Stimulate 30MHz at -30dbm using RF Generator -Using Power Meter or Spectrum Analyzer, measure or display reading -Turn off Generator -Turn off Power Meter or Spectrum Analyzer -Exit script

-The script shall be executed from a non-privileged user account

3.9.b “” X X Produce a script that follows the following guideline:

-Turn on RF Generator -Query RF Generator for response/identification -Turn on Spectrum Analyzer -Query Spectrum Analyzer for response/identification -Stimulate 30MHz at -30dbm using RF Generator -Using Power Meter or Spectrum Analyzer, measure or display reading -Turn off Generator -Turn off Power Meter or Spectrum Analyzer -Exit script

-The script shall be transferred onto the HHRTS using one of the provided interfaces.

3.10 Operating System X X Examine operating system and TPM in the BIOS if applicable.

3.11 Environmental Requirements X X Test in NRL Code 5524 Environmental Chamber

3.11.1 Operating Temperature X X Test in NRL Code 5524 Environmental Chamber

3.11.2 Non-Operating Temperature X X Test in NRL Code 5524 Environmental Chamber

3.11.3 Bounce, Loose Cargo X X Test at METLabs, Baltimore, MD.

3.11.4 Shock, Functional X X Test at NRL Center for Space Technology Vibration Lab

3.11.5 Transit Drop X X Test at METLabs, Baltimore, MD.

3.11.6 Dripproof X X Test at METLabs, Baltimore, MD.

3.11.7 EMC X X Test at METLabs, Baltimore, MD.

3.12 General Requirements

3.12.1 Standalone X X Visually verify

3.12.2 Internal DC Battery X X Visually verify

3.12.3 Battery Operation X X Operational Check

3.12.4 Charger X X Visually verify

3.12.5 Battery Status Indicator X X Visually verify

3.12.6 Accessories X X Visually verify

3.12.6.1 “” X X Visually verify

3.12.6.2 “” X X Visually verify

3.12.6.3 “” X X Visually verify

3.12.6.4 “” X X Visually verify

3.12.6.5 “” X X Visually verify

3.12.6.6 “” X X Visually verify

3.12.6.7 “” X X Visually verify

3.12.6.8 “” X X Visually verify

3.12.6.9 “” X X Visually verify

3.12.6.10 “” X X Visually verify

3.12.7 Dimensions X X Verify through measuring dimensions.

3.12.8 Weight X X Verify through weighing UUT.

3.12.9 Stand X X Verify by measuring stand angle.

3.12.10 Soft Carrying Case X X Visually verify and analyze to ensure it meets the MIL-PRF.

3.12.11 Hard Transit Case X X Visually verify and analyze to ensure it meets the MIL-PRF.

3.12.12 Screenshot X X Ensure screenshot capability and the ability to save and later open screenshots.

3.12.13 Human Readable Identification

Labeling

3.12.13.1 Equipment X X Visually verify

3.12.13.2 Case X X Visually verify

3.12.14 Built-in Test X X Run BIT.

3.12.15 Ease of Use X X The test shall start with the HHRTS in a stowed position in the soft transit case. The HHRTS shall be removed from a stowed position and set up on a benchtop. Once the HHRTS is powered on and initialized, the test procedures in Appendix A shall be followed. The test shall be conducted three times.

3.12.16 Reliability X X X X Verify through analysis of vendor submitted documentation.

Additionally, verify through demonstration throughout all test events.

5 Packaging.

For acquisition purposes, the packaging requirements shall be as specified in the Statement of Work. When actual packaging of material is to be performed by DoD personnel, these personnel need to contact the responsible packaging activity to ascertain requisite packaging requirements.

Packaging requirements are maintained by the Inventory Control Point’s packaging activity within the Military Department of Defense Agency, or within the Military Department’s System Command. Packaging data retrieval is available from the managing Military Department or Defense Agency’s automated packaging files, CD-ROM products, or by contacting the responsible packaging activity.

Appendix A: Assessment of Quality Control Test

Test Frequencies

MHz

FM RECEIVE SENSITIVITY

FM SINAD at -110 dBm, 1 kHz modulation with 5 KHz deviation Meter Used: SINAD Meter Set to AUDIO IN

Minimum Maximum Reading

30.500 12 dB N/A

251.500 12 dB N/A

511.550 12 dB N/A

AM RECEIVE SENSITIVITY

AM SINAD at -100 dBm, 1 kHz modulation with 90% modulation Meter Used: SINAD Meter Set to AUDIO IN

Minimum Maximum Reading

90.500 10 dB N/A

251.500 10 dB N/A

511.550 10 dB N/A

FM POWER OUT

Power Meter/Receiver filters set to >20kHz

Minimum Maximum Reading

30.500 37 dBm 39 dBm

251.500 37 dBm 39 dBm

511.550 37 dBm 39 dBm

FREQUENCY ACCURACY

Meter Used: RF Error or Frequency Counter

30.500 -61 Hz 61 Hz

251.500 -503 Hz 503 Hz

511.550 -1023 Hz 1023 Hz

FM DEVIATION

Inject 1 kHz tone at 17 mV from AF generator Meter Used: AF Level/Modulation Meter set to DEMOD

Minimum Maximum Reading

30.500 4.5 KHz N/A

251.500 4.5 KHz N/A

511.550 4.5 KHz N/A

Test FrequenciesMHz

AM POWER OUT

Inject 1 kHz tone at 17 mV from AF generator Power Meter/Receiver filters set to >20kHz

Minimum Maximum Reading

90.500 37 dBm N/A

251.500 37 dBm N/A

511.550 37 dBm N/A

AM % MODULATION

AUDIO LEVEL 10 mV Meter Used: AF Level/Modulation Meter set to DEMOD

Minimum Maximum Reading

90.500 70% 100%

251.500 70% 100%

511.550 70% 100%

AM DISTORTION

AUDIO LEVEL: 10mV Meter Used: Distortion Meter set to DEMOD

Minimum Maximum Reading

90.500 N/A 5%

251.500 N/A 5%

511.550 N/A 5%

ANTENNA / TRANSMISSION LINE SWR

30 MHz 1 7

241 MHz 1 7 512 MHz 1 7

Note: The minimum and maximum reading blocks are expected readings only.

Vendor:

Time:

Minute(s) and Second(s)

Tester Signature: Date:

Witness Signature: Date:

File details come from the government source that posted it. Updated .