Attachment_0011_-_QA_Checklist.xlsx
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- Army Targetry Systems (ATS) III Federal contract opportunity
- Solicitation number
- W56HZV-15-R-0130
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Attachment 0011 - QA Checklist
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Contractor Guide
| NOTE - All FAT items are subject to reverification at GAT |
| GAT* - COTS Data sheets/Spec sheets can be used as validation material. This will be for items that may change depending on the Delivery Order Requirements (e.g. batteries, solar panels, surge protectors, etc.). Therefore, this will be required at each GAT. |
| GAT** - The contractor is responsible for meeting all applicable local, state, and federal laws and regulations. |
| CMTR* - COTS Data sheets/Spec sheets can be used as validation material. The CMTR information will be for items the Gov't does not expect to change unless the contractor submits a formal ECP. |
| Section | Description | Validation Requirements | Acceptance Method |
| 3.2.1 | Communication | ||
| 3.2.1.1 | Communication Distance | Verify all targetry equipment communicate with RCS up to 5 miles? | CMTR |
| Communication Distance | Verify HHC communicate with all targetry equipment up to 3 miles? | CMTR | |
| 3.2.1.3 | Surge Protection | Verify all TDP/MTDP come with surge protection | GAT |
| Are the surge protectors grounded IAW manufacturer specifications? | GAT* | ||
| Are the surge protectors shall be lightning rated? | GAT* | ||
| Are the surge protectors response time be 1 - 5 Nanoseconds? | GAT* | ||
| Are the surge protectors Underwriter’s Laboratory (UL) listed for 497 and UL 497B applications. | GAT* | ||
| Surge protection devices in the TDP/MTDP shall fit in a 5 inch (”) wide by 6” long by 6” deep space. | GAT | ||
| 3.2.1.3.1 | Surge protection for Ethernet. | Do surge protectors meet or exceed TIA-568-C.2 Standards for CAT5e performance? | GAT* |
| Do surge protectors utilize RJ-45 connectors for input/output? | GAT | ||
| Are surge protectors in target emplacements auto-resettable and without fuses? | GAT | ||
| Do surge protectors have a clipping voltage between 12-20 Volts (V)? | GAT* | ||
| Do surge protectors protect the equipment on the targetry side from lightning and other surges for the warranty life of the targetry it is protecting. | GAT* | ||
| 3.2.1.3.2 | Surge protection for DSL to Ethernet connections. | Do DSL surge protectors have RJ-11 connectors for input/output? | GAT |
| Are RJ-11 patch cords installed between the government installed connection block with an RJ-11 port and the surge protector. | GAT | ||
| Are RJ-11 patch cords installed between the surge protector and the DSL modem? | GAT | ||
| Do surge protectors have a peak clamping voltage of 260 Volts (V) or less? | GAT* | ||
| Do surge protectors have a maximum shunt capacitance of 95 picofarads. | GAT* | ||
| 3.2.1.4 | Surge Protection for Tower | Is tower surge protection IAW NFPA 780, 2014 Edition, Sections 4.20 to 4.20.9.2 | CMTR |
| 3.2.1.6.1 | Frequency Band | Verify all radios match what was in the proposal | GAT |
| Frequency Band | What is the UHF requirement from RFDOP, and does it match? Permissions and radios | GAT | |
| Verify Portable devices include UHF and VHF bands | FAT | ||
| Frequency Band | Verify the HHC, RCC, and all RF down range receivers/transmitters tunable through each band by range support personnel without changing internal components ? | FAT | |
| Frequency Band | Verify that the RF transmitters/receivers meet all Federal Communications Commission (FCC) requirements | FAT | |
| Frequency Band | All devices shall have J/F-12 numbers already assigned . Approvals shall be obtained before Delivery Orders (DOs) are awarded for targetry devices utilizing RF | GAT | |
| 3.2.1.6.2 | Transceiver Bandwith | All UHF and VHF radio transmitters and receivers shall utilize narrow bandwidth technology (12.5 kilohertz (kHz) or less) IAW the National Telecommunications and Information Administration (NTIA) | CMTR |
| 3.2.1.6.3 RF | Tuning Devices | Verify if needed tuning devices are provided? | GAT |
| 3.2.1.6.4 | Frequency Allocation | Verify a single frequency is be used for each range. Moving TMs are allowed to use different frequencies than the rest of the range for communication between docking station and moving TM | GAT |
| 3.2.1.6.5 | Transmitter Power Adjustment | Verify power is adjustable in at least 5 steps and communicate up to 5 miles (3 miles for HHC only RCS Controller) | FAT |
| 3.2.2 | Power | ||
| 3.2.2.1.1 | Generators | Verify that generator is either Diesel and/or Gasoline powered per RFDOP | GAT* |
| 3.2.2.1.1.1 | Verify that the fuel tank capacity of 20 hrs of training and the required cycle rates between fueling | GAT* | |
| 3.2.2.1.1.2 | Verify that generator meets local, state, and federal laws and regulations | GAT* | |
| 3.2.2.1.1.3 | Must be Electric Start | GAT* | |
| 3.2.2.1.1.4 | Has Ground Fault Circuit Interrupt Outlet | GAT* | |
| 3.2.2.1.1.5 | Include Protective Frame | GAT* | |
| 3.2.2.1.1.6 | Equipped with Fuel Gauge | GAT* | |
| 3.2.2.1.1.7 | Include a Wheel Kit | GAT* | |
| 3.2.2.1.1.8 | Include a Fuel Spill Containment Pan | GAT* | |
| 3.2.2.1.1.9 | Provide an L14-20 Receptacle ( R ) | GAT* | |
| 3.2.2.1.2 | Attached Simulators (SIT, DTASIT, MIT) | Verify downrange TMs shall supply adequate power to actuate a MFS (in single and in burst mode) for a minimum of 300 activations each, per day, with no degradation in operational capability of the TM. | CMTR |
| Verify there adequate power to operate simulators during FAT/GAT | GAT | ||
| 3.2.2.1.3 | Reverse Polarity | Verify all equipment has cables marked with red/positive (+) sign and black/negative (-) sign. | GAT |
| 3.2.2.1.4 | Range Power | Verify equipment be operated continuously for a 24/7 operation be it either by generator or batteries supplied? | GAT |
| 3.2.2.1.5 | Loss of Power | Verify ALL devices, including battery chargers and power supplies, shall be protected from damage in the event of loss of AC power. | GAT |
| 3.2.2.2.1 | Power Source | Verify that installed GFE power will be IAW CEHNC 1110-1-23 or as specified in the RFDOP. TMs shall connect to and be powered by the L14-20R. L14-20 plugs (Ps) and L5-20Ps shall provide National Electrical Manufacturers Association (NEMA) 3R protection when connected to an L14-20R and L5-20R respectively | GAT |
| 3.2.2.2.2 | Ground | Verify all hardware installed in emplacements grounded to the GFE grounding rods | GAT |
| 3.2.2.2.4 | OCONUS Power | Verify all hardware installed on range able to operate with the local voltage and frequency requirements | GAT |
| Verify all connectors provided that are required to work with local votage and frequency | GAT | ||
| 3.2.2.3 | Battery powered devices | Verify batteries supplied are sealed Absorbant Glass Mat Batteries | GAT* |
| Are batteries supplied with carrying handles? | GAT* | ||
| Verify Batteries are commercially available from multiple sources | GAT* | ||
| 3.2.2.3.1 | Battery Sizing | Verify the power supply support operational capacity of Table 1?= | GAT* |
| 3.2.2.3.2 | Regeneration Devices | Verify enough power is provided to devices in order to operate range 24/7 without loss of training to regenerate power | GAT* |
| Verify there are features to protect against overcharging and overheating of battery | GAT* | ||
| 3.2.2.3.2.1 | Solar Panels | Verify panels are UL1703 rated | GAT* |
| Verify there is a charge controller provided to connect to a battery | GAT* | ||
| Verify the charge controller regulates voltage | GAT* | ||
| Verify its ability to prevent overcharging of battery | GAT* | ||
| Verify protection provided for reverse polarity | GAT* | ||
| Verify protection provided for transient voltage | GAT* | ||
| Verify protection provided for over current | GAT* | ||
| Verify protection provided for over temperature | GAT* | ||
| 3.2.2.3.3 | Battery Charging | Verify they approved for use with AGM Batteries | GAT* |
| 3.2.2.3.3.1 | Verify limit float charge is between 2.25 and 2.3 volts per cell at 68 degrees Fahrenheit(F) | GAT* | |
| 3.2.2.3.3.2 | Verify they spark proof such that leads being connected to the opposite polarity post will not cause damage to either the battery or the charger | GAT* | |
| 3.2.2.3.3.3 | Verify there is short circuit protection such that the charger can sustain an indefinite short circuit connection directly across the output terminals without risk of electric shock or excessive heat | GAT* | |
| 3.2.2.3.3.4 | Verify there is reverse polarity protection such that leads being connected to the opposite polarity post will not cause damage to either the battery or charger | GAT* | |
| 3.2.2.3.3.5 | Verify they UL tested and approved | GAT* | |
| 3.2.2.3.4 | Battery Charging Station | Will charging station charge all types of batteries for all downrange devices? | GAT |
| 3.2.3 | Range Start-Up/Shutdown | Can range be started up/shutdown within 30 minutes (turning computer on to ready for training) EXCLUDES Scenario Development | GAT |
| If range is shutdown by central power switch all downrange targetry without damaging the equipment? | GAT | ||
| 3.2.4 | Cable Interfaces | Do ALL downrange devices include an enclosure mounted twist lock or threaded connectors for all external connections? | FAT |
| Do ALL external connections include a mating cap twist lock or threaded cap tethered to the device? (Device) | FAT | ||
| Do RJ45 connectors shall use one quarter turn bayonet mating per MIL-C-26482. | GAT | ||
| Are male to female connections IP67 compliant. | CMTR | ||
| Does connector have an aluminum , size 18 circular shell? | CMTR | ||
| Is RJ45 coupler compliant with IEC60603-7-7? | CMTR | ||
| Are they keyed to Code "A" configuration? (see Ethernet Connection System handout for clarification if necessary) 12 o'clock position | GAT | ||
| Is the FD box used sealed from the elements? | GAT | ||
| If FD box is not present are connectors mounted to the side wall of the MTDP/TDP enclosure face the emplacement power receptacles . | GAT | ||
| 3.2.5 | Power and Data Wires/Cables | Are cables designed without joints, splices, or other electrical connections above or below ground | GAT |
| Are ALL exterior wires and cables armored and sealed? | CMTR | ||
| Are all interior wires and cables positioned and/or protected to avoid contact with rough or irregular surfaces and sharp edges? | GAT | ||
| 3.2.6 | Safety Interrupt (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all TMs have an external on/off switch on each device to stop activation and stop motion? | FAT |
| At minimum does it raise and lower the target and move a carrier forward and reverse? | FAT | ||
| Do all TMs perform a BIT, displaying status and the device and send status to the control system? | FAT | ||
| 3.2.7 | Size | Do all Downrange targetry devices and other support devices (except for the Solar panels, ILS, ALS, IMS, and IMKZT, Antennae) sized to fit inside, and be protected from rounds fired from designated firing positions by the government’s standard pit design for that piece of equipment IAW CEHNC 1110-1-23 | GAT |
| 3.2.8 | Transportation of Hardware/equipment | If protective cases are required for sensitive items, such as cameras, are they provided with the items? | FAT |
| 3.2.9 | Equipment Handling | Is equipment to be carried or lifted by personnel have handles and/or grasp areas that meet MIL-STD-1472 paragraph 5.9.11.5? | FAT |
| 3.2.10 | Service Life | Is ALL equipment constructed to achieve a min service life of 20yrs (except batteries) | CMTR |
| 3.2.11 | Availability | Have ALL devices provided proved at least 98% availability and continuous operation 24/7? **For CMTR see full requirement in PD | CMTR |
| 3.2.12 | Reliability | Do ALL devices prove reliable of at least 98% for GAT, Training periods of 20 hours with 2 hours of downtime after 10 hours of operation. **For CMTR see full requirement in PD. | CMTR |
| 3.2.13 | Equipment Identification | ||
| 3.2.13.1 | Data Plate | Is there a data plate in the tower or on HHC (if applicable HHC plate must adhere to the 3.2.16 environmental conditions) that identifies the following: type of range, contractor name, address and customer service number, contract number, date installed, and software version installed? | GAT |
| 3.2.13.2 | ID Plate | Do All required Contractor Line Item Numbers (CLINs) shall be marked IAW “Item Identification and Valuation” section of this contract. All items listed shall contain machine readable data elements? | FAT |
| 3.2.13.3 | Labels | Do all Targetry device ports and cabling include labels? | FAT |
| Do all cables include identifying marking of mating ports? | FAT | ||
| Are all switches labeled by their function/status? | FAT | ||
| Are labels legible? | FAT | ||
| 3.2.14 | Equipment installed in MTDP/TDPs | All equipment installed in MTDPs/TDPs shall meet the requirements of 3.2.15.1 and 3.2.15.2. | |
| 3.2.14.1 | No degradation after storage at -40 degrees to 140 degrees F | CMTR | |
| 3.2.14.2 | No degradation at ambient temps between -20 and 120 degrees F | CMTR | |
| 3.2.14 | Environmental Requirements (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are all exposed surfaces constructed of or treated with a corrosion resistant material? | CMTR |
| 3.2.14.1 | No degradation after storage at -40 degrees to 140 degrees F | CMTR | |
| 3.2.14.2 | No degradation at ambient temps between -20 and 120 degrees F | CMTR | |
| 3.2.14.3 | In humid conditions per MIL-STD 810G, Method 507.5, Procedure I. Non-Hazardous Test Items, Normal Test Duration per Table 507.5-II of the standard | CMTR | |
| 3.2.14.4 | In seacoast meteorological (salt atmospheric) conditions per MIL-STD 810G, Method 509.5 with the standard exposure of 48 hours, and standard temperature, air circulation and fallout rater per section 2.2.4-2.2.6 of the standard. | CMTR | |
| 3.2.14.5 | Under conditions that expose it to tropical fungus, rot, or mildew. | CMTR | |
| 3.2.14.6 | During and after exposure to dusty desert conditions | CMTR | |
| 3.2.14.7 | During and after exposure to snow and/or hail the down range equipment shall operate without degradations. This shall also be the case after ice that has accumulated on the piece of equipment has thawed | CMTR | |
| 3.2.14.8 | When exposed to direct sunlight, up to 365 days per year. | CMTR | |
| 3.2.14.9 | During and after exposure to rain and blowing rain per MIL-STD 810G, Method 506.5, Procedure I using the following: | CMTR | |
| 3.2.14.9.1 | Rainfall Rate = 4 inches per hr | CMTR | |
| 3.2.14.9.2 | Exposure surfaces/duration = All exposed surfaces (rotate item to expose all four sides)/duration of 2 hrs | CMTR | |
| 3.2.14.9.3 | Test item preheat Temperature = Ambient minus 10 degrees C | CMTR | |
| 3.2.14.9.4 | Initial water temp = Ambient | CMTR | |
| 3.2.14.9.5 | Wind velocity = 35 miles per hr (mph) | CMTR | |
| 3.2.14.9.6 | Water pressure = 40 lbs per square inch gauge (psig). | CMTR | |
| 3.2.14.10 | Downrange equipment except for the MIT, MAT, generators, solar panels, communication interfaces, and batteries; but including all other components, shall not fail due to moisture intrusion if totally submerged for a maximum of 4 hrs. | CMTR | |
| 3.2.14.11 | Does equipment have protection against lightening that passes over range or strikes near range? | CMTR | |
| Does lightening protection system developed in accordance with NFPA 780, 2014 Edition - chapters 9-11? | CMTR | ||
| Is a surge protection (fuse, breaker or transient device) used on TM? | FAT | ||
| Are data/communication cables shielded? | GAT* | ||
| Is lightning protection system modular, and support ease of maintenance and replacement? Does it include status indicator? | FAT | ||
| 3.2.15 | System Safety | ||
| 3.2.15.1 | Environmental Safety | Is the system safe to operate and maintain or present uncontrolled safety, health, or environmental hazards to operators? | GAT** |
| 3.2.15.2 | Material Safety Considerations | Are all liquids environmentally safe or contained to prevent accidental release into the environment? | GAT |
| Are spill containers sized appropriately and provided where safety regulations require? | GAT | ||
| 3.2.15.3 | Container Labels | Are all containers containing fluids or fuels properly labeled IAW 29 CFR 1910.1200(g) | GAT** |
| 3.2.15.4 | Electrical Safety | Does ALL electrical circuitry and installation comply with the requirements of the National Electric Code (ANSI/NFPA 70 2014)? | GAT** |
| Are applicable danger, caution, and warning signs shall be designed and installed in accordance with ANSI Z535.3-2011 and ANSI Z535.4-98 to warn user personnel of specific hazards such as voltage, current, and thermal? | GAT** | ||
| 3.2.15.5 | Mechanical Safety | Do ALL targetry devices and moving parts provided with warning labels that describe potential hazards? | GAT |
| Are all edges and corners rounded or chamfered and free from burrs? | GAT | ||
| Is all mechanical power apparatuses guarded IAW OSHA 1910-219? | GAT** | ||
| 3.2.15.6 | Antenna Safety | Are antenna tips or other sharp rods have tip caps or other suitable design fixture to prevent puncture hazards where personnel are likely to be exposed to such hazards | GAT |
| Where design considerations permit, are antennas coated with a dielectric material to insulate against at least 10,000 volts Root Mean Squared? | CMTR | ||
| 3.2.15.6.1 | On all fixed, semi-permanent, and mobile facilities that incorporate antenna tower/masts: Do all antenna masts incorporate a ground stud with the necessary hardware to permit secure attachment of a ground strap/rod? | GAT | |
| 3.2.15.6.2 | Are all lead-in wires have discharge units (lightning arrestors) on each conductor or enclosure in a continuous metallic shield that is effectively grounded; coaxial cable lead-in may be used as is if the outer shields are grounded at both ends? | GAT | |
| 3.2.15.7 | RF Safety | Are antennas and other devices that carry sufficient RF voltage to burn or injure personnel shall be protected from accidental contact in the same manner as for AC voltages? | GAT |
| Are microwaves or RF radiation signs permanently affixed to warn personnel of danger zones? | GAT | ||
| 3.2.17 | Workmanship | Are all surfaces, including threads, free of burrs and sharp edges? | GAT |
| Do applied Adhesives shall meet commercial standards for use outdoors and does not degrade integrity of existing enclosures? | GAT | ||
| Are all interior parts and surfaces thoroughly cleaned and dried, and shall be free of dust, burrs, chips, grinding compound, mold release agents, or other debris? | GAT | ||
| Are grinding compounds used that may impregnate or adversely affect the specified finish? | GAT | ||
| Has corrosion been completely removed before parts are finished or assembled including undercoat? | GAT | ||
| Are all fasteners tightened to specific torque settings? | GAT | ||
| 3.2.18 | Materials/Commercial Components (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are exposed portions of downrange equipment constructed of a material that is subject to damage by non-human living organisms? | GAT |
| Do all materials of construction use commercial or military standard components, parts, and assemblies of reliable construction? | GAT | ||
| Is All material of uniform quality and condition, and free from seams, cracks, and other defects that may adversely affect the strength, endurance, wear, and corrosion resistance of the part? | GAT | ||
| Are any defects concealed? | GAT | ||
| Stationary TM's | |||
| SIT | |||
| 3.3.1.1.1 | Infantry Silhouettes (SIT, DTASIT, MIT) | Can the TM lift all possible TC25-8 Infantry Silhouettes | FAT |
| Does the changing of silhouettes require any tools? | FAT | ||
| Does the target arm use correct hole configuration listed in drawings? | FAT | ||
| Does the target arm use the "U" shape dimensions defined in Section B-B of drawing? | FAT | ||
| Ensure the Infantry TM Target arm and hit sensor does not pierce or degrade the target. | FAT | ||
| 3.3.1.2 | Lifter Commands (SIT, DTASIT, MIT, SAT, HSAT, MAT) | ||
| 3.3.1.2.1 | Does target come up when commanded? | FAT | |
| 3.3.1.2.2 | Does target go down when commanded? | FAT | |
| 3.3.1.2.3 | Does target bob when hit (go down and come back up)? | FAT | |
| 3.3.1.2.4 | Does target stay in up position until required number of hits? | FAT | |
| 3.3.1.2.5 | Does target turn thermals on/off? | FAT | |
| Does target move when commanded to a position it is already in? | FAT | ||
| 3.3.1.3 | Operational Status (SIT, DTASIT, MIT, SAT, HSAT, MAT) | FAT | |
| 3.3.1.3.1 | Does RCS report target has reached the up position? | FAT | |
| 3.3.1.3.2 | Does RCS report target is in transit up/down? | FAT | |
| 3.3.1.3.3 | Does RCS report target has reached the down position? | FAT | |
| 3.3.1.3.4 | Does RCS report that target has failed to reach the position as commanded (target failure)? | FAT | |
| 3.3.1.4 | Stability (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Does method of stability maintain position of target and rail?? | FAT |
| Does method of stability allow for removal without damage to the TM? | FAT | ||
| Does method of stability hold respective targets upright and stable in winds up to 35mph? | CMTR | ||
| 3.3.1.5 | Obstacle Encounter(SIT, DTASIT, MIT, SAT, HSAT, MAT) | When motion is impeded does TM stop with no permanent damage to the TM? | FAT |
| Does the TM provide failure status to the RCS when an obstacle encounter occurs? | FAT | ||
| 3.3.1.6 | MFS Synchronization | Does SIT, DTASIT, and MIT synchronize and interface with the MFS within .5 sec of receipt of signal from the associated TM? | FAT |
| 3.3.1.7 | TM Thermal Interface (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all TM's provide thermal interface set-up that allows thermals to be turned on/off via commands from the RCS? | FAT |
| 3.3.1.8 | Berm/Emplacement | Does the target meet the "% visible from the firing line" requirement in Table 1? | GAT |
| 3.3.1.9 | Hit Detection (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are any additional holes added to the silhouette to attach hit sensor? Should not be any. | FAT |
| 3.3.1.9.1 | Does hit sensor count and record the presence of a "hit" at any range up to 600 rounds per minute for all targets listed in the TC25-8? | CMTR | |
| 3.3.1.9.2 | Does hit sensor discriminate between actual hits and adverse weather conditions including rain and 1/4 inch hail at up to 35mph such that they are not indicated as hits? | CMTR | |
| 3.3.1.9.3 | Does hit sensor ignore mechanical vibration caused by the mechanism, | FAT | |
| 3.3.1.9.4 | Does hit sensor collect and report hits to the RCS? | FAT | |
| 3.3.1.9.5 | Does hit sensor interface with Targetry Range Automated Control and Recording (TRACR) software hit sensitivity adjustment levels? | FAT | |
| 3.3.1.9.6 | Does the hit sensor score 97% or more of the rounds that penetrate the target as a hit? | CMTR | |
| 3.3.1.9.7 | Does the hit sensor detect and score a hit anytime a portion of the target is exposed to any designated firing position on the range until the scenario has timed out? | CMTR | |
| 3.3.1.9.8 | Does the hit sensor ignore hits if the scenario or step has timed out? | CMTR | |
| 3.3.1.9.9 | Does the hit sensor work with TRACR in single shot ? | CMTR | |
| Does hit sensor work with TRACR in burst mode with a string of hits with less than 250 milliseconds +/- 10% between hits, count as only one hit? | CMTR | ||
| 3.3.1.9.10 | Infantry Hit Detection (SIT, DTASIT, MIT) | Does infantry target hit sensor respond to both subsonic and supersonic bullet strikes? | CMTR |
| 3.3.1.10 | Operability test/built in test (BIT) (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all downrange devices have a testing capability to check operability? | FAT |
| SIT Table 1 | Does target raise/lower within 1 sec with no wind? | FAT | |
| Does target raise/lower within 2 sec with 35mph wind? | CMTR | ||
| Is mechanism able to lift max of 10lbs? | FAT | ||
| Does mechanism weigh 56lbs or less? | FAT | ||
| Portable Mechanism | Does all items listed to in order to be self contained and portable weigh less than 82lbs? Includes everything needed see 3.3.3.4.1 | FAT | |
| Cycles | Can mechanism run 100,000 cycles mean time between failures? | CMTR | |
| Can mechanism run 30 cycles per hour without failure? | FAT | ||
| Can mechanism run 600 cycles in 24 hours without failure? | CMTR | ||
| Can the SIT complete the following cycle: Turn thermal power on, raise target, fire muzzle flash in multi-shot mode, hold target 5 seconds, then lower target and turn off thermal power? | FAT | ||
| Is the SIT visible and installed so the top of the raised target arm is 2.75" - 3" below the top of the concrete wall of the emplacement. When a target is installed on the target arm, the target arm shall not extend above 2.25” from the bottom of the target? | GAT | ||
| Can mechanisms be stacked 4 high? | FAT | ||
| 3.3.2.1 | SIT | Is muzzle flash installed on SITs and part of the mechanism? | FAT |
| 3.3.2.1.1 | SIT Mechanism Adjustability | Is there a system that allows relocation of the mechanism 8"-12" backwards from its bolted location? | FAT |
| Does the system accomplish relocation without having to unbolt the mechanism from the emplacement floor? | FAT | ||
| Can mechanism be relocated in less than 10 seconds and by no more than one range person to do it? | FAT | ||
| 3.3.3.4.1 | Portable SIT | Are TM's and their components mounted within the 3-D area of SCU (self contained unit). The only items allowed outside of that area are the target arm in up position only, the target itself, and the radio antenna. | FAT |
| Do all components of the TM required for operation have a designated mounting location within the SCU? | FAT | ||
| If there are 2 radios used to fulfill the reqt is one mounted to the TM while the other mounted somewhere on the SCU? | FAT | ||
| Are all components in their mounted positions able to be removed in less than 5 minutes? | FAT | ||
| Does each of the SIT SCU's have 2 handles? | FAT | ||
| Are the SCU's made of stainless steel? | CMTR | ||
| Are portable SITs 82lbs or less with SCU? | FAT | ||
| 3.3.3.4.2 | Portable SIT Stabilizer | Does the SCU stabilize the TM and associated components to allow them to meet their operational requirements when placed on unimproved ground (3% slope or less) and in winds up to 35mph. | CMTR |
| 3.3.2.1.2 | Target Arms (DTASIT) | Does mechanism accommodate two targets raising/lowering at the same time? | FAT |
| If one target takes a hit does targets act as one? | FAT | ||
| When either target takes a hit does it score as one hit? | FAT | ||
| The SIT/DTASIT target arms shall be changeable by range personnel without special tools. | FAT | ||
| 3.3.2.2 | SAT | ||
| 3.3.1.1.2 | Armor Silhouettes (SAT, HSAT, MAT) | Can the TM lift all possible TC25-8 Armor Silhouettes | CMTR |
| 3.3.1.2 | Lifter Commands (SIT, DTASIT, MIT, SAT, HSAT, MAT) | ||
| 3.3.1.2.1 | Does target come up when commanded? | FAT | |
| 3.3.1.2.2 | Does target go down when commanded? | FAT | |
| 3.3.1.2.3 | Does target bob when hit (go down and come back up)? | FAT | |
| 3.3.1.2.4 | Does target stay in up position until required number of hits? | FAT | |
| 3.3.1.2.5 | Does target turn thermals on/off? | FAT | |
| Does target move when commanded to a position it is already in? | FAT | ||
| 3.3.1.3 | Operational Status (SIT, DTASIT, MIT, SAT, HSAT, MAT) | FAT | |
| 3.3.1.3.1 | Does RCS report target has reached the up position? | FAT | |
| 3.3.1.3.2 | Does RCS report target is in transit up/down? | FAT | |
| 3.3.1.3.3 | Does RCS report target has reached the down position? | FAT | |
| 3.3.1.3.4 | Does RCS report that target has failed to reach the position as commanded (target failure)? | FAT | |
| 3.3.1.4 | Stability (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Does method of stability maintain position of target and rail?? | FAT |
| Does method of stability allow for removal without damage to the TM? | FAT | ||
| Does method of stability hold respective targets upright and stable in winds up to 35mph? | CMTR | ||
| 3.3.1.5 | Obstacle Encounter(SIT, DTASIT, MIT, SAT, HSAT, MAT) | When motion is impeded does TM stop with no permanent damage to the TM? | FAT |
| Does the TM provide failure status to the RCS when an obstacle encounter occurs? | FAT | ||
| 3.3.1.7 | TM Thermal Interface (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all TM's provide thermal interface set-up that allows thermals to be turned on/off via commands from the RCS? | FAT |
| 3.3.1.8 | Berm/Emplacement | Does the target meet the "% visible from the firing line" requirement in Table 1? | GAT |
| 3.3.1.9 | Hit Detection (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are any additional holes added to the silhouette to attach hit sensor? Should not be any. | FAT |
| 3.3.1.9.1 | Does hit sensor count and record the presence of a "hit" at any range up to 600 rounds per minute for all targets listed in the TC25-8? | CMTR | |
| 3.3.1.9.2 | Does hit sensor discriminate between actual hits and adverse weather conditions including rain and 1/4 inch hail at up to 35mph such that they are not indicated as hits? | CMTR | |
| 3.3.1.9.3 | Does hit sensor ignore mechanical vibration caused by the mechanism, | FAT | |
| 3.3.1.9.4 | Does hit sensor collect and report hits to the RCS? | FAT | |
| 3.3.1.9.5 | Does hit sensor interface with Targetry Range Automated Control and Recording (TRACR) software hit sensitivity adjustment levels? | FAT | |
| 3.3.1.9.6 | Does the hit sensor score 97% or more of the rounds that penetrate the target as a hit? | CMTR | |
| 3.3.1.9.7 | Does the hit sensor detect and score a hit anytime a portion of the target is exposed to any designated firing position on the range until the scenario has timed out? | CMTR | |
| 3.3.1.9.8 | Does the hit sensor ignore hits if the scenario or step has timed out? | CMTR | |
| 3.3.1.9.9 | Does the hit sensor work with TRACR in single shot ? | CMTR | |
| Does hit sensor work with TRACR in burst mode with a string of hits with less than 250 milliseconds +/- 10% between hits, count as only one hit? | CMTR | ||
| 3.3.1.9.11 | Armor Hit Detection (SAT, HSAT, MAT) | Does armor hit detection include sufficient hit sensing elements to sense hits on a silhouette with multiple 4 x 8 sheets of plywood or similar material? | FAT |
| 3.3.1.9.11.1 | Does armor TM hit sensors sense and record hits from varied sizes of small and large caliber rounds fired at a target during a single training exercise? | CMTR | |
| 3.3.1.9.11.2 | Does the hit sensor allow the adjustment of hit sensitivity so that only impacts from a projectile above an established threshold are counted as a hit? (minimum thresholds being small personal weapons, medium machine gun and light armor, and large caliber (armored tank) ammunition. | CMTR | |
| 3.3.1.10 | Operability test/built in test (BIT) (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all downrange devices have a testing capability to check operability? | FAT |
| SAT Table 1 | Does target raise/lower within 8 sec with no wind? | FAT | |
| Does target raise/lower within 9 sec with 35mph wind? | CMTR | ||
| Is mechanism able to lift max of 250lbs? | FAT | ||
| SAT | Does mechanism weigh 300lbs or less? | FAT | |
| Portable SAT | Does portable mechanism weigh 328lbs or less? *can be -minus arms if they are detachable. | FAT | |
| Can mechanism run 20 cycles per hour | GAT | ||
| Can mechanism run 150 cycles in 24 hours | CMTR | ||
| 3.3.2.2.1 | Lifting Ability | Does mechanism allow target to be adjusted by maintenance personnel to independently adjust the target up position from 75 degrees to 90 degrees? | FAT |
| Does mechanism allow target to be adjusted by maintenance personnel to independently adjust the target down position from 0 degrees to 15 degrees? | FAT | ||
| Does deceleration motion cause damage to target supports? | CMTR | ||
| 3.3.2.2.2 | Lifting Arms | Does the arms include a minimum of 2 brackets? | FAT |
| Do brackets provide adjustments to securely clamp a silhouette support with cross section varying from a standard 2x4 (1.5" x 3.5") to a maximum of 4"x 4" support cross section? | FAT | ||
| Are brackets able to be relocated throughout the length of the arms? | FAT | ||
| Do the lifting arms raise and lower each of the frontal armor silhouettes, rotating them on an axis parallel to the emplacement front wall? | FAT | ||
| SAT cycle | Can SAT run the following cycle: Turn thermal power on, raise target, hold target 10 seconds, then lower target and turn off thermal power? | FAT | |
| 3.3.3.4.1 | Portable SAT | Are TM's and their components mounted within the 3-D area of SCU (self contained unit). The only items allowed outside of that area are the target arm in up position only, the target itself, SAT target arms, and the radio antenna. | FAT |
| Do all components of the TM required for operation have a designated mounting location within the SCU? | FAT | ||
| Are SAT arms removable? If so, is there a location for holding them while being transported? | FAT | ||
| If there are 2 radios used to fulfill the reqt is one mounted to the TM while the other mounted somewhere on the SCU? | FAT | ||
| Are all components in their mounted positions able to be removed in less than 5 minutes? | FAT | ||
| Does each of the SAT SCU's have 4 handles or grasp areas? | FAT | ||
| Are the SCU's made of stainless steel? | CMTR | ||
| Are portable SATs 328lbs or less with SCU? | FAT | ||
| 3.3.3.4.2 | Portable SAT Stabilizer | Does the SCU stabilize the TM and associated components to allow them to meet their operational requirements when placed on unimproved ground (3% slope or less) and in winds up to 35mph. | CMTR |
| HSAT | |||
| 3.3.1.1.2 | Armor Silhouettes (SAT, HSAT, MAT) | Can the TM lift all possible TC25-8 Armor Silhouettes | CMTR |
| 3.3.1.2 | Lifter Commands (SIT, DTASIT, MIT, SAT, HSAT, MAT) | ||
| 3.3.1.2.1 | Does target come up when commanded? | FAT | |
| 3.3.1.2.2 | Does target go down when commanded? | FAT | |
| 3.3.1.2.3 | Does target bob when hit (go down and come back up)? | FAT | |
| 3.3.1.2.4 | Does target stay in up position until required number of hits? | FAT | |
| 3.3.1.2.5 | Does target turn thermals on/off? | FAT | |
| Does target move when commanded to a position it is already in? | FAT | ||
| 3.3.1.3 | Operational Status (SIT, DTASIT, MIT, SAT, HSAT, MAT) | FAT | |
| 3.3.1.3.1 | Does RCS report target has reached the up position? | FAT | |
| 3.3.1.3.2 | Does RCS report target is in transit up/down? | FAT | |
| 3.3.1.3.3 | Does RCS report target has reached the down position? | FAT | |
| 3.3.1.3.4 | Does RCS report that target has failed to reach the position as commanded (target failure)? | FAT | |
| 3.3.1.4 | Stability (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Does method of stability maintain position of target and rail?? | FAT |
| Does method of stability allow for removal without damage to the TM? | FAT | ||
| Does method of stability hold respective targets upright and stable in winds up to 35mph? | CMTR | ||
| 3.3.1.5 | Obstacle Encounter(SIT, DTASIT, MIT, SAT, HSAT, MAT) | When motion is impeded does TM stop with no permanent damage to the TM? | FAT |
| Does the TM provide failure status to the RCS when an obstacle encounter occurs? | FAT | ||
| 3.3.1.7 | TM Thermal Interface (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all TM's provide thermal interface set-up that allows thermals to be turned on/off via commands from the RCS? | FAT |
| 3.3.1.8 | Berm/Emplacement | Does the target meet the "% visible from the firing line" requirement in Table 1? | GAT |
| 3.3.1.9 | Hit Detection (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are any additional holes added to the silhouette to attach hit sensor? Should not be any. | FAT |
| 3.3.1.9.1 | Does hit sensor count and record the presence of a "hit" at any range up to 600 rounds per minute for all targets listed in the TC25-8? | CMTR | |
| 3.3.1.9.2 | Does hit sensor discriminate between actual hits and adverse weather conditions including rain and 1/4 inch hail at up to 35mph such that they are not indicated as hits? | CMTR | |
| 3.3.1.9.3 | Does hit sensor ignore mechanical vibration caused by the mechanism, | FAT | |
| 3.3.1.9.4 | Does hit sensor collect and report hits to the RCS? | FAT | |
| 3.3.1.9.5 | Does hit sensor interface with Targetry Range Automated Control and Recording (TRACR) software hit sensitivity adjustment levels? | FAT | |
| 3.3.1.9.6 | Does the hit sensor score 97% or more of the rounds that penetrate the target as a hit? | CMTR | |
| 3.3.1.9.7 | Does the hit sensor detect and score a hit anytime a portion of the target is exposed to any designated firing position on the range until the scenario has timed out? | CMTR | |
| 3.3.1.9.8 | Does the hit sensor ignore hits if the scenario or step has timed out? | CMTR | |
| 3.3.1.9.9 | Does the hit sensor work with TRACR in single shot ? | CMTR | |
| Does hit sensor work with TRACR in burst mode with a string of hits with less than 250 milliseconds +/- 10% between hits, count as only one hit? | CMTR | ||
| 3.3.1.9.11 | Armor Hit Detection (SAT, HSAT, MAT) | Does armor hit detection include sufficient hit sensing elements to sense hits on a silhouette with multiple 4 x 8 sheets of plywood or similar material? | FAT |
| 3.3.1.10.11.1 | Does armor TM hit sensors sense and record hits from varied sizes of small and large caliber rounds fired at a target during a single training exercise? | CMTR | |
| 3.3.1.10.11.2 | Does the hit sensor allow the adjustment of hit sensitivity so that only impacts from a projectile above an established threshold are counted as a hit? (minimum thresholds being small personal weapons, medium machine gun and light armor, and large caliber (armored tank) ammunition. | CMTR | |
| 3.3.1.10 | Operability test/built in test (BIT) (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all downrange devices have a testing capability to check operability? | FAT |
| HSAT Table 1 | Does target raise within 12 sec with or without wind up to 35mph? | CMTR/FAT | |
| Does target lower within 10 sec with or without wind up to 35mph? | CMTR/FAT | ||
| Is mechanism able to lift max of 400lbs? | FAT | ||
| Does target mechanism weigh 400lbs or less? | FAT | ||
| Are mechanisms able to be stacked 4 high? | FAT | ||
| Can mechanism run 20 cycles per hour | GAT | ||
| Can mechanism run 150 cycles in 24 hours | CMTR | ||
| 3.3.2.2.1 | Lifting Ability | Does mechanism allow target to be adjusted by maintenance personnel to independently adjust the target up position from 75 degrees to 90 degrees? | FAT |
| Does mechanism allow target to be adjusted by maintenance personnel to independently adjust the target down position from 0 degrees to 15 degrees? | FAT | ||
| Does deceleration motion cause damage to target supports? | CMTR | ||
| 3.3.2.2.2 | Lifting Arms | Does the arms include a minimum of 2 brackets? | FAT |
| Do brackets provide adjustments to securely clamp a silhouette support with cross section varying from a standard 2x4 (1.5" x 3.5") to a maximum of 4"x 4" support cross section? | FAT | ||
| Are brackets able to be relocated throughout the length of the arms? | FAT | ||
| Do the lifting arms raise and lower each of the frontal armor silhouettes, rotating them on an axis parallel to the emplacement front wall? | FAT | ||
| HSAT cycle | Can HSAT run the following cycle: Turn thermal power on, raise target, hold target 10 seconds, then lower target and turn off thermal power? | FAT | |
| Moving TM's | |||
| 3.3.3.2 | MIT | Does the lifter portion of MIT meet all operational requirements of a SIT minus weight limit, 24 hour cycles, or stack ability? | FAT |
| 3.3.1.1.1 | Infantry Silhouettes (SIT, DTASIT, MIT) | Can the TM lift all possible TC25-8 Infantry Silhouettes | FAT |
| Does the changing of silhouettes require any tools? | FAT | ||
| Does the target arm use correct hole configuration listed in drawings? | FAT | ||
| Does the target arm use the "U" shape dimensions defined in Section B-B of drawing? | FAT | ||
| Ensure the Infantry TM Target arm and hit sensor does not pierce or degrade the target. | FAT | ||
| 3.3.1.2 | Lifter Commands (SIT, DTASIT, MIT, SAT, HSAT, MAT) | ||
| 3.3.1.2.1 | Does target come up when commanded? | FAT | |
| 3.3.1.2.2 | Does target go down when commanded? | FAT | |
| 3.3.1.2.3 | Does target bob when hit (go down and come back up)? | FAT | |
| 3.3.1.2.4 | Does target stay in up position until required number of hits? | FAT | |
| 3.3.1.2.5 | Does target turn thermals on/off? | FAT | |
| Does target move when commanded to a position it is already in? | FAT | ||
| 3.3.1.3 | Operational Status (SIT, DTASIT, MIT, SAT, HSAT, MAT) | FAT | |
| 3.3.1.3.1 | Does RCS report target has reached the up position? | FAT | |
| 3.3.1.3.2 | Does RCS report target is in transit up/down? | FAT | |
| 3.3.1.3.3 | Does RCS report target has reached the down position? | FAT | |
| 3.3.1.3.4 | Does RCS report that target has failed to reach the position as commanded (target failure)? | FAT | |
| 3.3.1.4 | Stability (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Does method of stability maintain position of target and rail?? | FAT |
| Does method of stability allow for removal without damage to the TM? | FAT | ||
| Does method of stability hold respective targets upright and stable in winds up to 35mph? | CMTR | ||
| 3.3.1.5 | Obstacle Encounter(SIT, DTASIT, MIT, SAT, HSAT, MAT) | When motion is impeded does TM stop with no permanent damage to the TM? | FAT |
| Does the TM provide failure status to the RCS when an obstacle encounter occurs? | FAT | ||
| 3.3.1.6 | MFS Synchronization | Does SIT, DTASIT, and MIT synchronize and interface with the MFS within .5 sec of receipt of signal from the associated TM? | FAT |
| 3.3.1.7 | TM Thermal Interface (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all TM's provide thermal interface set-up that allows thermals to be turned on/off via commands from the RCS? | FAT |
| 3.3.1.8 | Berm/Emplacement | Does the target meet the "% visible from the firing line" requirement in Table 1? | GAT |
| 3.3.1.9 | Hit Detection (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are any additional holes added to the silhouette to attach hit sensor? Should not be any. | FAT |
| 3.3.1.9.1 | Does hit sensor count and record the presence of a "hit" at any range up to 600 rounds per minute for all targets listed in the TC25-8? | CMTR | |
| 3.3.1.9.2 | Does hit sensor discriminate between actual hits and adverse weather conditions including rain and 1/4 inch hail at up to 35mph such that they are not indicated as hits? | CMTR | |
| 3.3.1.9.3 | Does hit sensor ignore mechanical vibration caused by the mechanism, | FAT | |
| 3.3.1.9.4 | Does hit sensor collect and report hits to the RCS? | FAT | |
| 3.3.1.9.5 | Does hit sensor interface with Targetry Range Automated Control and Recording (TRACR) software hit sensitivity adjustment levels? | FAT | |
| 3.3.1.9.6 | Does the hit sensor score 97% or more of the rounds that penetrate the target as a hit? | CMTR | |
| 3.3.1.9.7 | Does the hit sensor detect and score a hit anytime a portion of the target is exposed to any designated firing position on the range until the scenario has timed out? | CMTR | |
| 3.3.1.9.8 | Does the hit sensor ignore hits if the scenario or step has timed out? | CMTR | |
| 3.3.1.9.9 | Does the hit sensor work with TRACR in single shot ? | CMTR | |
| Does hit sensor work with TRACR in burst mode with a string of hits with less than 250 milliseconds +/- 10% between hits, count as only one hit? | CMTR | ||
| 3.3.1.9.10 | Infantry Hit Detection (SIT, DTASIT, MIT) | Does infantry target hit sensor respond to both subsonic and supersonic bullet strikes? | CMTR |
| Does MFS travel with and illuminate target? | FAT | ||
| 3.3.1.10 | Operability test/built in test (BIT) (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all downrange devices have a testing capability to check operability? | FAT |
| MIT Table 1 | Does target lift/lower within 1 second with no wind? | FAT | |
| Does target lift/lower within 2 seconds with 35 mph wind? | CMTR | ||
| Can MIT lift up to 5lbs target? | FAT | ||
| Can target do 200,000 cycles mean time between failures? | CMTR | ||
| Can MIT do 30 cycles with (SIT) while docked | FAT | ||
| Can MIT do 30 cycles in above 3.3.3.1.9 in one hour | FAT | ||
| Can MIT do 600 cycles (SIT) in a 24 hour period while docked | FAT | ||
| Can MIT do 100 cycles in a 24 hour period 3.3.3.1.9 | FAT | ||
| Target installed so the top of the raised target arm is 2.75" - 3" below the top of the concrete wall of the emplacement. When a target is installed on the target arm, the target arm shall not extend above 2.25” from the bottom of the target? | GAT | ||
| Can MIT run 1mph to 9 mph and maintain selected speed +/-1mph? | CMTR | ||
| Does MIT get up to set speed within 7 ft of telling to start? | CMTR | ||
| Does MIT stop within 8ft when traveling at maximum speed 9mph? | CMTR | ||
| 3.3.3.1.1 | Moving TM's Actions | Does moving TM move forward, reverse; increase or decrease speed; pause movement with target up; and stop on command and controllable by a scenario or by manual command from RCS? | FAT |
| 3.3.3.1.2 | Operational Status | Does moving TM show operational status (location of carriage) on RCS display including: the direction of moving TM movement, the end of track the moving TM is at, the Moving TM has stopped, failure to achieve the commanded position (failure of TM), thermal on/off, TM is charging, and end of track sensor failure? | FAT |
| 3.3.3.1.3 | Moving TM End of Course | Does Moving TM have an automatic method of slowing down and stopping before reaching the end of course barrier? | FAT |
| Are end of course barriers at each end of the track? | FAT | ||
| Do the end of course barriers physically prevent movement of the TM beyond either end of the course should the TM not be stopped either by command or automatically? | FAT | ||
| Does the end of course barrier removable by no more than two range personnel in lees than 5 minutes using common hand tools? | FAT | ||
| Is the operational capability and functionality impaired if the TM runs into the end of course? | CMTR | ||
| Are docking stations protected from damage in the event the TM moves beyond the automatic stopping point? | CMTR | ||
| 3.3.3.1.4 | Moving TM Power | Does TM have sufficient storage capacity to support activation of all carried devices at the rates indicated for each? | FAT |
| 3.3.3.1.5 | Docking Station | Do all Moving TM's have a docking station? | FAT |
| Does docking station provide all connections to power/recharge the Moving TM and associated target devices? | FAT | ||
| HW Range: does the docking station connect to the Government installed data lines? | GAT | ||
| Does the docking station use a radio link to communicate between docking station and moving TM? | FAT | ||
| Does TM dock and initiate charging without any user intervention? | FAT | ||
| 3.3.3.1.6 | MILES LTID | MITS: Is there a location provided to mount the MILES LTID? | FAT |
| 3.3.3.1.7 | Track Grounding | is track connected to GFE provided ground rod in emplacement? And IAW 3.2.2.2.2 | GAT |
| 3.3.3.1.8 | MIT Cycle | Can the MIT perform the following: Turn thermal power on, raise the target, actuate the MFS multiple shot mode, travel the length of the track at 2.5 mph, lower the target at end of track, turn thermal power off, return to starting position at 2.5mph? | FAT |
| 3.3.3.2.2 | Silhouette Orientation | Does MIT allow silhouette to be in 3 different positions facing the wall, (parallel) with movement path, faceing the emplacement closest to firing line, and 45 degrees in between? | FAT |
| 3.3.3.2.3 | MIT Thermal Power | Can MIT thermal be turned on/off from RCS? | FAT |
| Does it have power source and inverter or other to produce 120 volts AC (VAC) at 2 amps to power thermals? | FAT | ||
| Does MIT thermal device negatively affect the 24/7 operational requirements when 60 Watt thermal target is powered on for 90 seconds every operational movement cycle? | CMTR | ||
| Is the receptacle provided the standard L5-20R? | FAT | ||
| 3.3.3.2.4 | MIT Lifting Unit | Ensure that the physical and mechanical pieces of the MIT that are used to expose and conceal the target are provided as the MIT lifting unit. | FAT |
| MAT | |||
| 3.2.18 | Materials/commercial components (MAT) | Are all Cross-ties shall be constructed from new material as specified in Chapter 30 of the 2015 Manual for Railway Engineering published by the American Railway Engineering and Maintenance-of-Way Association (AREMA). The cross-ties shall be a minimum size of Grade 6 (dimensions of 6” height by 8” width) | GAT** |
| The cross-tie standard Grade dimension shall remain consistent along the entire length of the cross-tie holding a tolerance of plus 1” and minus ¼” and length of the cross-tie shall not be less than 8’ | GAT** | ||
| 3.3.1.1.2 | Armor Silhouettes (SAT, HSAT, MAT) | Can the TM lift all possible TC25-8 Armor Silhouettes | CMTR |
| 3.3.1.2 | Lifter Commands (SIT, DTASIT, MIT, SAT, HSAT, MAT) | ||
| 3.3.1.2.1 | Does target come up when commanded? | FAT | |
| 3.3.1.2.2 | Does target go down when commanded? | FAT | |
| 3.3.1.2.3 | Does target bob when hit (go down and come back up)? | FAT | |
| 3.3.1.2.4 | Does target stay in up position until required number of hits? | FAT | |
| 3.3.1.2.5 | Does target turn thermals on/off? | FAT | |
| Does target move when commanded to a position it is already in? | FAT | ||
| 3.3.1.3 | Operational Status (SIT, DTASIT, MIT, SAT, HSAT, MAT) | FAT | |
| 3.3.1.3.1 | Does RCS report target has reached the up position? | FAT | |
| 3.3.1.3.2 | Does RCS report target is in transit up/down? | FAT | |
| 3.3.1.3.3 | Does RCS report target has reached the down position? | FAT | |
| 3.3.1.3.4 | Does RCS report that target has failed to reach the position as commanded (target failure)? | FAT | |
| 3.3.1.4 | Stability (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Does method of stability maintain position of target and rail?? | FAT |
| Does method of stability allow for removal without damage to the TM? | FAT | ||
| Does method of stability hold respective targets upright and stable in winds up to 35mph? | CMTR | ||
| 3.3.1.5 | Obstacle Encounter(SIT, DTASIT, MIT, SAT, HSAT, MAT) | When motion is impeded does TM stop with no permanent damage to the TM? | FAT |
| Does the TM provide failure status to the RCS when an obstacle encounter occurs? | FAT | ||
| 3.3.1.7 | TM Thermal Interface (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all TM's provide thermal interface set-up that allows thermals to be turned on/off via commands from the RCS? | FAT |
| 3.3.1.8 | Berm/Emplacement | Does the target meet the "% visible from the firing line" requirement in Table 1? | GAT |
| 3.3.1.9 | Hit Detection (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Are any additional holes added to the silhouette to attach hit sensor? Should not be any. | FAT |
| 3.3.1.9.1 | Does hit sensor count and record the presence of a "hit" at any range up to 600 rounds per minute for all targets listed in the TC25-8? | CMTR | |
| 3.3.1.9.2 | Does hit sensor discriminate between actual hits and adverse weather conditions including rain and 1/4 inch hail at up to 35mph such that they are not indicated as hits? | CMTR | |
| 3.3.1.9.3 | Does hit sensor ignore mechanical vibration caused by the mechanism, | FAT | |
| 3.3.1.9.4 | Does hit sensor collect and report hits to the RCS? | FAT | |
| 3.3.1.9.5 | Does hit sensor interface with Targetry Range Automated Control and Recording (TRACR) software hit sensitivity adjustment levels? | FAT | |
| 3.3.1.9.6 | Does the hit sensor score 97% or more of the rounds that penetrate the target as a hit? | CMTR | |
| 3.3.1.9.7 | Does the hit sensor detect and score a hit anytime a portion of the target is exposed to any designated firing position on the range until the scenario has timed out? | CMTR | |
| 3.3.1.9.8 | Does the hit sensor ignore hits if the scenario or step has timed out? | CMTR | |
| 3.3.1.9.9 | Does the hit sensor work with TRACR in single shot ? | CMTR | |
| Does hit sensor work with TRACR in burst mode with a string of hits with less than 250 milliseconds +/- 10% between hits, count as only one hit? | CMTR | ||
| 3.3.1.9.11 | Armor Hit Detection (SAT, HSAT, MAT) | Does armor hit detection include sufficient hit sensing elements to sense hits on a silhouette with multiple 4 x 8 sheets of plywood or similar material? | FAT |
| 3.3.1.9.11.1 | Does armor TM hit sensors sense and record hits from varied sizes of small and large caliber rounds fired at a target during a single training exercise? | CMTR | |
| 3.3.1.9.11.2 | Does the hit sensor allow the adjustment of hit sensitivity so that only impacts from a projectile above an established threshold are counted as a hit? (minimum thresholds being small personal weapons, medium machine gun and light armor, and large caliber (armored tank) ammunition. | CMTR | |
| 3.3.1.10 | Operability test/built in test (BIT) (SIT, DTASIT, MIT, SAT, HSAT, MAT) | Do all downrange devices have a testing capability to check operability? | FAT |
| 3.3.3.1.1 | Moving TM's Actions | Does moving TM move forward, reverse; increase or decrease speed; pause movement with target up; and stop on command and controllable by a scenario or by manual command from RCS? | FAT |
| 3.3.3.1.2 | Operational Status | Does moving TM show operational status (location of carriage) on RCS display including: the direction of moving TM movement, the end of track the moving TM is at, the Moving TM has stopped, failure to achieve the commanded position (failure of TM), thermal on/off, TM is charging, and end of track sensor failure? | FAT |
| 3.3.3.1.3 | Moving TM End of Course | Does Moving TM have an automatic method of slowing down and stopping before reaching the end of course barrier? | FAT |
| Are end of course barriers at each end of the track? | FAT | ||
| Do the end of course barriers physically prevent movement of the TM beyond either end of the course should the TM not be stopped either by command or automatically? | FAT | ||
| Does the end of course barrier removable by no more than two range personnel in lees than 5 minutes using common hand tools? | FAT | ||
| Is the operational capability and functionality impaired if the TM runs into the end of course? | CMTR | ||
| Are docking stations protected from damage in the event the TM moves beyond the automatic stopping point? | CMTR |
This is the start of the file's text. The full file is on GovTribe.
File details come from the government source that posted it. Updated .