ADR CONFIGURATION 4 Compliancy Matrix.pdf

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AIRBORNE DATA RECORDER Federal contract opportunity
Solicitation number
FA2823-10-R-0022
Issued by
Department of the Air Force Materiel Command Test Center

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Compliance Matrix - Configuration 4

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COMPLIANCE MATRIX

CONFIGURATION #4

1 July 2010

Prepared By:

846 TSS/TSI

Eglin, AFB, FL 32542

850-882-2537 berard@eglin.af.mil

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1.0 Compliancy Matrix

Section Title Threshold Objective PASS

FAIL

ATP NOTES NC M E NC M E ATP

1.1 The ADR is IRIG-16-07 or later Compliant

2.2.1.a Configuration #4

Data Type Number of Channels

Data Rate

(Mbps)

IRIG Time 1

MIL-STD-

1553 4 3.2

Video 4 16

Ethernet 1 10-100

9-12

2.3 The ADR will be provided with setup record generation

software application.

9-12

2.3 The software application will be Microsoft Windows based

D

2.3 Provide documentation of any TMATS V-Spec or “V”

group attributes generated by the software application.

D

3.1.1 The ADR shall have only one (1) firmware configuration

which shall be IRIG106 Chapter 10.

D

3.1.1 It is not permissible for firmware to be provided within the ADR that allows the recorder to be configured or operate in a mode other than IRIG106 Chapter 10.

D

3.1.2 The ADR shall have software utility provided to

configure the recorder

D

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3.1.2 The ADR shall allow firmware updates from the RMM 15

3.2.1 The ADR shall be provided with software configurable

electronics

D

3.2.2 The ADR shall meet the compliancy requirements IAW

IRIG106 Chapter 10 section 10.3.1.1.

D

3.2.3 The ADR shall provide recorder configuration IAW IRIG106 Chapter 10 section 10.3.2.

D

3.2.5 No Computer Generated data, format 0, user defined

packets are allowed as specified by section 3.3.2 of this

TRD.

D

3.2.6 The ADR shall provide an internal RMM D

3.2.6 The directory and files structures presented at the interface shall be IAW IRIG106 Chapter 10 section 10.5 D

3.2.6 It is NOT acceptable for the RMM to mount as a Windows

volume or for the RMM firmware to allow for reconfiguration as a Windows volume.

3.2.7 The ADR RMM shall operate from a 12 VDC, 1 Amp IEEE-

1394B 9 pin bilingual connector interface. It is NOT acceptable to augment power with use of multiple IEEE-1394B ports or a separate power port.

3.2.8 It is NOT acceptable for any other RMM interface/data access port to be provided (USB, eSATA, Ethernet, etc).

D

3.2.9 The ADR shall provide a recorded data block size of 512 bytes

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3.2.10 Logical Address 0 or media block 0 as presented at the RMM interface shall be IAW IRIG106 Chapter 10 section 10.5.2 and shall be filled with 0xFF.

3.2.11 The ADR shall provide file table entries IAW IRIG106 Chapter 10 section 10.3.7.

3.2.12 The ADR shall be configured from a RCF IAW IRIG106-09

Chapter 9.

9-12

3.2.12 TMATS V-Spec or “V” group attributes contained in an ADR TMATS RCF shall be defined in a provided

9-12

3.3 Computer Generated Data, Format 1, Setup Record is provided 9-12

3.3 Computer Generated Data, Format 2, Recording Events is

provided

9-12

3.3 Computer Generated Data, Format 3, Recording Indexes is

provided

9-12

3.3 Time Data, Format 1, IRIG/GPS/RTC is provided 9-12

3.3 MIL-STD-1553, Format 1, Mil-Std-1553B Data is provided 9

3.3 Video Data, Format 0, MPEG-2/H.264 Video is provided 10

3.3 Ethernet Data, Format 0, Ethernet Data is provided 12

3.3.2 ADR recorded data does NOT contain Computer Generated

Data, Format 0, User Defined packets.

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3.3.3 The ADR does NOT contain filler except to complete byte alignment within a packet. Filler shall not exceed four 8 bit bytes 9-12

3.3.4 The ADR Computer Generated Data, Format 3, Recording

Indexes shall use time indexing and contain an index entry for each Time Data, Format 1, IRIG/GPS/RTC packet.

9-12

3.3.4 No other index entry shall be provided for any other data type except for Computer Generated Data, Format 2, Recording Events

9-12

TIME

4.1 The ADR shall provide one (1) time input channel 9-12

4.1 Amplitude Modulated B, or -G IAW IRIG200-04 9-12

4.1 Input range of 0.2 to 10Vpp 9-12

4.1 Input termination of 620Ω / AC (Capacitor) 9-12

4.1 Synchronization accuracy IRIG-B < 10 Microseconds 9-12

4.2 Time Output Modulated IRIG B 9-12

4.2 Output Level of within .5 to 10 Vp-p 9-12

4.2 Stability of +_10 ppm 9-12

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MIL-STD-1553

4.4 Provide MIL-STD-1553 input channels that are transformer

coupled (18-27 Vpp for RT and 0.86-27 Vpp)

Video/Audio

4.6 Inputs are compatible with Electronic Industries Alliance (EIA) RS-170 monochrome, National Television Standards Committee (NTSC) composite and S-Video signals.

4.6 Video pixel resolution of 640 x 480.

4.6 Video shall be compressed IAW MPEG-2 Main Profile at Main Level (MP@ML).

4.6 Video Overlay Provided 10

4.6 Each video channel shall provide for a single analog audio input IAW IRIG106 Chapter 10 section 10.6.5.2.

4.6 The input impedance of the audio input shall be 10K ohms. 10

Ethernet Publish

4.7 Provide 1000baseT Ethernet interface for IRIG106 Chapter10 Publishing.

D

Analog Audio Input

4.8 Provide two independent audio input channels. 14

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4.8 Analog audio inputs shall generate their own analog packets

IAW IRIG106 Chapter 10 section 10.6.5.

4.8 Maximum input range of 10 Vpp, 300 Hz to 6 KHz 14

OPERATIONAL

5.1 If recorder power is removed while in the ON mode, the

recorder shall initiate a soft power down. No loss of data shall be encountered on a soft power down to include meeting IRIG106 Chapter 10 time packet interval requirements and Recording Index packet requirements

5.1 No batteries are provided in RMM or ADR D

5.1 The ADR shall withstand a 50 millisecond power interruption period without loss of function or data.

5.1 The ADR shall provide start-up BIT, periodic, and initiated BIT. 18

5.1 Start-up BIT execution time shall not exceed 30 seconds 18

5.1 Periodic BIT shall periodically execute during operation of the

ADR.

5.1 Periodic BIT shall periodically execute during operation of the

ADR

5.1 The ADR shall be fully operational after 60 seconds upon power application to include BIT

5.1 The ADR warm-up time at temperatures down to -40°C shall not exceed 5 minutes

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5.1 The ADR shall provide two LED’s; a Fault Indicator LED and a

Record Indicator LED

5.1 The ADR to be configurable allowing for indicator lights to flash at 1 Hz rate during unit initialization

DISCRETE CONTROL

5.2 The ADR shall provide discrete input and outputs IAW IRIG106 Chapter 10 section 10.7.

5.2 An Event input is provided (0.55 Volts or less) 7

5.2 An Enable input is provided (0.55 Volts or less) 7

5.2 A Record input is provided (0.55 Volts or less) 7

5.2 An Erase input is provided (0.55 Volts or less) 7

5.2 A Record output indicator (active low 0.55 volts or less)

5.2 A Fault output indicator (active low 0.55 volts or less) 7

5.2 An Erase output indicator (active low 0.55 volts or less) 7

5.2 A Recording Event packet IAW IRIG106 Chapter 10 section

10.6.7.3 shall be generated from a valid discrete input

5.2 The first event (event 0) shall be reserved for the external recorder discrete as defined in the ADR configuration setup record IAW IRIG106-09 Chapter 9

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5.2 ADR discrete shall be compliant with Computer Generated Data

Packets, Format 1 Setup Records packet and shall have the Event Type (R-x\EV\T-n) set to External - ‘E’.

5.2 The ADR RMM directory shall be erased within 1 second of

“Erase” input discrete.

5.2 The ADR shall start recording within 1 second of “Record” input discrete.

5.2 The Fault indicator LED shall flash at a 1 second rate during ADR initialization.

5.2 The Record indicator LED shall flash at a 1 second rate during ADR initialization.

5.2 The Erase indicator LED shall flash at a 1 second rate during ADR initialization.

5.2 The ADR discrete output (Fault, Erase, Record) shall provide a path to ground when active true.

5.2 Fault output shall flash during initialization 7

5.2 If Fault indicator is ON Record Indicator is OFF 7

5.2 If in Record and no Faults, Fault indicator is OFF 7

5.2 If Media is not recognized fault indicator is ON 7

5.2 If Media is full fault indicator is ON 7

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5.2 If not able to record fault indicator is ON 7

5.2 If Media is erased, Erased indicator is ON 7

5.2 If Media has one or more files, Erase indicator is OFF 7

5.2 The RMM shall be erased within 1 second of the .ERASE

command allowing for new files to be generated

5.2 A .DECLASSIFY command shall cause the recorder to issue a .SANITIZE command to the RMM IAW IRIG106-09 Chapter 10 section 10.9.12.3.

5.2 Manufacturer shall provide an RMM with known bad memory

blocks to allow for validation of sanitization command

5.2 Once the declassification process has been initiated and a loss of power has occurred, the ADR and/or RMM shall continue the sanitization

5.2 The setup record shall be appended with (G:\COM) recorder serial number, firmware version of ADR, firmware version of

RMM

CONFIGURATION #4

5.4 The ADR shall be configured with an IRIG106-09 Chapter

9 TMATS RCF from either the recorder serial commands (.SETUP & .TMATS) or from the ADR RMM.

8-10

5.4 The ADR setup source shall be configured IAW IRIG106-09

TMATS attributes

8-10

5.4 Computer Generated Data Packets Format 1, Setup Records.

Setup record format shall be ASCII

8-10

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5.4 One (1) channel of Time Data Packets, Format 1 8-10

5.4 Four (4) channels of Video Packets, Format 0 (MPEG-2/H.264) 8-10

5.4 Four (4) channels of MIL-STD-1553 Bus Data Packets, Format 1 (MIL-STD-1553B Bus Data)

8-10

5.4 One (1) channel of Ethernet Data Packets, Format 0 9-12

5.4 Computer Generated Data Packets Format 2, Recording Event. 8-10

5.4 An index shall be created for each time packet and event packet. 8-10

5.4 The Recording index type shall be time. 8-10

5.4 The index time value shall be the time packet source type interval (IRIG-B or IRIG-G). Computer Generated Data Packets Format 3, Recording Index

8-10

5.4 300 Mbps Continuous Sustained Data Rate, 64Gbyte RMM provided

5.4 IRIG106 Chapter 10 RTC time tagging of recorded data to

within 100 microseconds of external IRIG-B time input

8-10

5.4 MIL-STD-1553 channel alignment (channel to channel)

shall be equal to or less than 20 micro seconds

8-10

5.4 Video/Audio channel alignment (channel to channel) shall

be equal to or less than 100 milliseconds

8-10

5.4 Ethernet channel alignment (channel to channel) shall be

equal to or less than 20 micro seconds

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5.4 External Remote RMM 8-10

RMM

5.6 RMM shall be designed for compliant operation as a Class II IEEE-1394 device, 45 Watts (8-30VDC

9-12

5.6 The ADR RMM shall operate from a 12VDC (1 Amp

maximum) source provided by COTS IEEE-1394B interface cards

9-12

5.6 The power shall be provided to the RMM via an IEEE-1394B 9 pin bi-lingual connector

9-12

5.6 The data transfer rate from the ADR RMM to host computing platform shall be equal to or greater than fifty (50) MBps

9-12

5.6 The ADR RMM shall accept commands from the host

computing platform IAW IRIG106 Chapter 10 section 10.9

5.6 The ADR RMM shall contain an oscillator providing time of day with “keep alive” provisions, minimum of twenty four (24) hours

5.6 RMM resides in ADR. 9-12

5.6 Oscillator accuracy shall be within four (4) PPM over the full temperature range of the ADR

5.6 Setting of time will be IAW IRIG106 Chapter 10 section 10.9. 17

5.6 ADR RMM file, directory, block size, and interface file structure shall be IAW IRIG106 Chapter 10 section 10.5, section 10.6 and section 10.11.

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5.6 The ADR RMM connector and control functionality shall be

IAW IRIG106 Chapter 10 section 10.9 D

5.6 The ADR RMM logical address zero (0) or block zero (0) shall not be written to and is RESERVED. This block shall be filled with all 0x00 or 0xFF.

D

5.6 The ADR RMM shall be “Hot Swappable” while in the ADR.

The RMM shall be removable without having to first shut down power to the ADR.

5.6 The maximum ADR RMM data transfer error rate shall be 10e- 12.

9-12

5.6 The ADR RMM IEEE-1394B 9 pin bi-lingual interface

connector shall facilitate data download IAW IRIG106 Chapter 10 section 10.9.5 without requiring a separate connector for power.

5.6 The ADR RMM shall have two restraints, either of which

prevents the ejection of the RMM from the ADR

8-10

5.6 The ADR RMM shall not be recognized nor mounted as a

Microsoft Windows volume

8-10

5.6 The RMM shall be recognized as a physical media device via the IEEE-1394B interface only.

8-10

5.7 The ADR shall provide an internal RMM 8-10

TIME SYNCHRONIZATION

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5.9 The ADR shall have an external AC modulated IRIG-B or IRIG-

G input 8-10

5.9 The ADR shall have an external AC modulated IRIG-B or IRIG- G output

8-10

5.9 The ADR shall have the capability to synchronize from external AC modulated IRIG input signal or from the ADR RMM

8-10

5.9 The ADR selection of primary time shall be accomplished from IRIG106 Chapter 10 section 10.6 Computer Generated Data Packets Format 1 Setup Record. T

8-10

5.9 The ADR shall be configured from both the IRIG106 Chapter 9 Time Data Type Attributes and the following time sync “V- Spec” or “V” group attributes which are not contained withinIRIG106 Chapter 9 TMATS

8-10

EVENT PACKETS

5.10 The ADR shall provide events packets from the discrete event command

8-10

FIRMWARE TRANSFER FILE

5.14 The ADR operational system firmware loading shall be

provided via the RMM

5.15 The ADR shall provide file table entries IAW

IRIG 106-07 Chapter 10 section 10.3.7, section

10.5 table 10-2 and table 10-3

DECLASSIFICATION/SANATIZATION

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5.16

The RMM shall provide for sanitization of media IAW

IRIG 106-09.

SERIAL COMMANDS

6.0 An RS-232 Interface is provided 6

6.0 An RS-422 Interface is provided 6

6.0 A .BIT is provided 6

6.0 A .CRITICAL is provided 6

6.0 A .DATE is provided 6

6.0 A .DECLASSIFY is provided 6

6.0 A .DISMOUNT is provided 6

6.0 A .ERASE is provided 6

6.0 A .ERASE is provided 6

6.0 A .EVENT is provided 6

6.0 A .FILES is provided 6

6.0 A .HEALTH is provided 6

6.0 A .HELP is provided 6

6.0 A .IRIG106 is provided 6

6.0 A .MEDIA is provided 6

6.0 A .MOUNT is provided 6

6.0 A. .RECORD is provided 6

6.0 A .RESET is provided 6

6.0 A .SETUP is provided 6

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6.0 A .STATUS is provided 6

6.0 A .TMATS Write is provided 6

6.0 A .TMATS READ is provided 6

6.0 A .TMATS SAVE is provided 6

6.0 A .TMATS GET is provided 6

6.0 A .TMATS CHECKSUM is provided 6

6.0 A .TMATS VERSION is provided 6

6.0 A .STOP is provided 6

6.0 A .TIME is provided 6

6.0 A .VERSION is provided 6

6.0 A .FILES is provided 6

LIFE CYCLE

7.0 The ADR shall have a useful life of not less than

20 years

D

7.0 The ADR shall have an operational life of not less

than 4,000 flight hours or 6,000 total operating hours.

PHYSICAL

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8.0 The ADR shall not be pressurized D

8.0 The ADR shall be capable of transport by air, rail

or truck using normal protective packaging

D

8.0 The ADR shall have a predicted Mean-Time-

Between-Failure (MTBF) of greater than 2000 hours

D

8.0 The COTS media shall have a predicted MTBF of

greater than 10,000 hours.

D

8.0 The ADR shall be maintained using a two-level

maintenance philosophy (Organizational and Depot with depot being the Original Equipment Manufacturer (OEM))

D

8.0 The equipment shall have a maximum

organizational level Mean-Time-to-Repair (MTTR) of 1.0 hour

D

8.0 The ADR shall perform satisfactorily from -40

Deg C to 72 Deg C under the temperature-altitude provided the below figure

8.0 Documentation and test data provided for Random

Vibration

D

8.0 Documentation and test data provided for Non Gunfire

Sinusoidal Vibration

D

8.0 Documentation and test data provided for Gunfire

Sinusoidal Vibration

8.0 Documentation and test data provided for service shock D

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8.0 Documentation provided showing the ADR can

withstand, in both an operating and non-operating condition, the effects of humidity up to 100 percent

D

8.0 Documentation provided the ADR shall withstand, in both an operating and non-operating condition, exposure to salt-sea atmosphere.

8.0 Documentation provided the ADR can withstand, in both an operating and non-operating condition, exposure to fungus growth as encountered in tropical climates.

8.0 Documentation provided the ADR is designed such that direct exposure to rain environment does not degrade performance.

8.0 Documentation provided the ADR cannot cause

ignition of an ambient-explosive gaseous atmosphere during any mode of operation. Operation includes stabilized conditions, varying mode conditions, start-up, or shut-down conditions which may contribute to either a thermal, electrical or chemical source of ignition

D

8.0 Documentation provided the ADR meets the

decompression requirements of MIL-STD-810 Revision F Method 500.4 Procedure IV

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ELECTROMAGNETIC

INTERFERENCE/COMPATABILITY

9.0 The ADR Electromagnetic Environmental Effects

to be verified by test and analysis by an independent lab or facility.

D

9.0 The ADR shall meet Electromagnetic Interference

and Compatibility (EMIC) requirements of MIL-STD-461

D

9.0 The ADR meets Radiated Emissions.

Electric Field figure RE102-3 for Fixed Wing Internal <25 meters Testing is required up to 1 GHz or 10 times the highest intentionally generated frequency within the EUT, whichever is greater. Measurements beyond 18 GHz are not required

D

9.0 The ADR meets CE102 Conducted Emissions.

Power leads, 10 kHz - 10 MHz

D

9.0 The ADR meets CS101, Conducted Susceptibility.

Power Leads, 30 Hz to 150 kHz

D

9.0 The ADR meets RS103, Radiated Susceptibility.

Electric Field, 2 MHz to 18 GHz Table VII, Air Force, Aircraft Internal 2 MHz - 30 MHz, 20 V/m,30 MHz - 1 GHz, 20 V/m 1 GHz - 18 GHz, 60 V/m.

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9.0

The ADR meets CS114, Conducted Susceptibility.

Bulk Cable Injection, 10 kHz to 200 MHz Curve 3 (Air Force Internal).

9.0 The ADR meets CS115, Conducted Susceptibility.

Bulk Cable Injection, Impulse Excitation.

9.0 The ADR meets CS116, Conducted Susceptibility.

Damped Sinusoidal transients, Cables and Power Leads, 10 kHz to 100 MHz, I_max = 5 amps

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