The document is not available in one of the selected languages. Please choose another one from the drop-down list. | Avis juridique important |
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| 31999X0812 |
| Index of goods listed in Annex I to Council Decision 1999/193/CFSP of 9 March 1999 amending Decision 94/942/CFSP on the joint action adopted by the Council on the basis of Article J.3 of the Treaty on European Union concerning the control of exports of dual-use goods |
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| Official Journal C 230 , 12/08/1999 P. 0001 - 0063 |
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| Index of goods listed in Annex I to Council Decision 1999/193/CFSP of 9 March 1999 amending Decision 94/942/CFSP on the joint action adopted by the Council on the basis of Article J.3 of the Treaty on European Union concerning the control of exports of dual-use goods |
| OJ L 73, 19.3.1999, p. 1. |
| (1999/C 230/01) |
| (NB: This index is not an exhaustive list of controlled goods, some may not be described here). |
| Description of controlled goods // Entry |
| Ablative liners for thrust/combustion chambers // 9A106a |
| Absolute reflectance measurement equipment // 6B004a |
| Absorbers of electromagnetic waves // 1C001 |
| Absorbers, hair type // 1C001a |
| Absorbers, non-planar & planar // 1C001a |
| Absorption columns // 2B350e |
| Accelerators (electro-magnetic radiation) // 3A101b |
| Accelerators or coprocessors, graphics // 4A003d |
| Accelerometer axis align stations // 7B003 |
| Accelerometers & accelerometer components // 7A001, 7A101 |
| Acoustic-optic signal procesing devices // 3A001c.3 |
| Acoustic beam forming software // 6D003a.1 |
| Acoustic hydrophone arrays, towed // 6A001a.2.b |
| Acoustic location & object detection systems // 6A001a.1.b |
| Acoustic mounts, noise reduction equipment for vessels // 8A002o.3.a |
| Acoustic positioning systems // 6A001a.1.d |
| Acoustic projectors // 6A001a.1.c |
| Acoustic systems, marine // 6A001a |
| Acoustic transducers, hydrophones // 6A001a.2.a |
| Acoustic underwater communications systems // 5A001b.1.a |
| Acoustic vibration test equipment // 9B006 |
| Acoustic wave devices // 3A001c |
| Active acoustic systems // 6A001a.1 |
| Active compensating system rotor clearance control software // 9D004d |
| Active flight control system software // 7D003e |
| Active flight control system technology // 7E004b |
| Active magnetic bearing systems // 2A001c |
| Actively cooled mirrors // 6A005e.1 |
| Adaptive control software // 2D002 |
| ADCs (analogue-to-digital converters) // 3A101a, 3A001a.5 |
| ADC (analogue-to-digital converters) electronic assemblies // 4A003e |
| Aero gas turbine engine/assemblies/component test software // 9D004b |
| Aero gas turbine engines // 9A001 |
| Aerodynamic isotope separation plant/element housings // 0B001a.3 |
| Aerodynamic separation process systems & components // 0B001d |
| Aerosol challenge testing chambers // 2B352g |
| Aflatoxins // 1C351d.11 |
| African swine fever virus (animal pathogens) // 1C352a.1 |
| Agitators (chemical manufacturing) // 2B350b |
| AHRS (attitude heading reference systems), source code // 7D002 |
| Air independent power systems (for underwater use) // 8A002j |
| Air traffic control software // 6D003d.1 |
| Airborne altimeters // 7A006 |
| Airborne altimeters, radar or laser types // 7A106 |
| Aircraft inertial navigation systems & equipment // 7A003, 7A103 |
| Alexandrite laser host material // 6C005b |
| Alexandrite lasers // 6A005c.1 |
| Align & expose step & repeat equipment (wafer processing) // 3B001f.1 |
| Alkylphenylene ethers or thio-ethers, as lubricating fluids // 1C006b |
| Alloy strips, magnetic // 1C003c |
| Alloyed metal materials in powder or particulate form // 1C002b, 1C002c, 1C202 |
| Alloys, aluminium // 1C202a, 1C002a.2.d |
| Alloys, magnesium // 1C002a.2.e |
| Alloys, metal powder // 1C002b |
| Alloys, nickel // 1C002a.2.a, 1C002a.1.a, 1C002a.1 |
| Alloys, niobium // 1C002a.2.b |
| Alloys, titanium // 1C202b, 1C002a.1.b |
| Alpha-emitting radionuclides // 1C236 |
| Alimeters, airborne // 7A006, 7A106 |
| Aluminides, nickel // 1C002a.1.a |
| Aluminides, titanium // 1C002a.1.b |
| Aluminium alloy powder // 1C002b.1.d, 1C002c |
| Aluminium alloys // 1C202, 1C002a.1, 1C002a.2.d |
| Aluminium organo-metallic compounds // 3C003a |
| Aluminium powder, spherical // 1C111a.1 |
| Amalgam electrolysis cells, lithium isotope separation // 1B233 |
| Amalgam pumps, lithium // 1B233.b.2 |
| Amiton: 0, 0-Diethyl S-[2-(diethylamino)ethyl]phosphorothiolate // 1C450a.1 |
| Ammonia-hydrogen exchange plant, equipment and components // 0B004a.2 |
| Ammonia crackers (operating pressure over 3 MPa) // 0B004b.5 |
| Ammonia distillation towers // 0B004b |
| Ammonia synthesis converters & units // 1B227 |
| Ammonium bifluoride - see ammonium hydrogen fluoride |
| Ammonium hydrogen fluoride // 1C350.42 |
| Amorphous alloy strips // 1C003c |
| Amplifiers, microwave solid state // 3A001b.4 |
| Anaerobic chambers // 2B352f |
| Analogue-to-digital conversion equipment // 4A003e |
| Analogue-to digital converters, integrated circuits // 3A101a, 3A001a.5 |
| Analogue computers for space launch vehicles and sounding rockets // 4A101 |
| Analogue instrumentation tape recorders // 3A002a.1 |
| Analysers, network // 3A002e |
| Analysers, spectrum // 3A002c.1 |
| Anechoic chambers // 9B106b |
| Angular-linear inspection equipment (hemishells) // 2B206b |
| Angular measuring instruments // 2B206a, 2B006b.2 |
| Animal pathogens // 1C352 |
| Antennae, phased array // 5A001d, 6A008e |
| Anti-vibration mounts (noise reduction), civil vessels // 8A002o.3.a |
| Antimony hydrides // 3C004 |
| Aramid fibres & filamentary materials // 1C010a, 1C210a |
| Arc remelt & casting furnaces // 2B227a |
| Argon ion lasers // 6A205a, 6A005a.6 |
| Armour body // 1A005 |
| Aromatic polyamide-imides // 1C008a.2 |
| Aromatic polyamide fibres production technology // 1E002d |
| Aromatic polyetherimides // 1C008a.4 |
| Aromatic polyimides // 1C008a.3 |
| Array processor microcircuits // 3A001a.3 |
| Array processors/assemblies // 4A003, 4A004 |
| Arsenic hydrides // 3C004 |
| Arsenic trichloride // 1C350.31 |
| Artificial Intelligence software // 4D003b |
| Atomic clocks, frequency standards // 3A002g |
| Atomic transition solid state lasers // 6A005c.2 |
| Atomic vapour laser isotope separation plant (ALVIS) // 0B001g |
| Atomic vapour laser isotope separation process equipment // 0B001g |
| Attitude control equipment // 7A116b |
| Attitude heading reference systems (AHRS), source software // 7D002 |
| Aujeszky's disease virus (Porcine herpes virus) // 1C352a.6 |
| Autoclave regulation technology // 1E103 |
| Autoclaves, gaseous diffusion or centrifuge cascade // 0B002a |
| Automated control systems, submersible vehicles // 8A002b |
| Avian influenza virus // 1C352a.2 |
| Avionics EMP/EMI protection technology // 7E102 |
| Bacillus anthracis // 1C351c.1 |
| Bacteria // 1C351c, 1C352b, 1C353, 1C354a |
| Balancing machines, centrifugal multiplane // 2B229 |
| Ball & solid roller bearings // 2A001a., 2A001b |
| Band-pass filters, tunable // 3A001b.5 |
| Band-stop filters, tunable // 3A001b.5 |
| Barium metal vapour lasers // 6A005a.2.d |
| Batch mixers with vacuum & temperature control // 1B115 |
| Bathymetric survey systems // 6A001a.1.a |
| Batteries/cells (high energy) // 3A001e.1.a, 3A001e.1.b |
| Bay cable systems // 6A001a.2.e |
| Bay cable systems software // 6D003a.3 |
| Beam steering mirrors // 6A004a.4 |
| Beamforming techniques, towed hydrophones // 6A001a.2.c. |
| Bearings, ball & solid roller // 2A001a, 2A001b |
| Bearings, gas centrifuge // 0B001b.7, 0B001b.8 |
| Bearings, high precision // 2A001, 2A001c, 0B001b.7 |
| Bearings, solid roller // 2A001b |
| Bellows-forming dies // 2B228c |
| Bellows-forming mandrels // 2B228c |
| Bellows pumps // 2B350i |
| Bellows seal valves // 0B001c.6, 2B350g, 0B001d.6, 2A226 |
| Benzilic acid // 1C350.32 |
| Beryllium metal or alloy powder // 1C230, 1C111a.2 |
| Beryllium/beryllium substrate blanks // 6C004d |
| Biological containment facilities, ACDP level 3 or 4 // 2B252a |
| Biological isolators // 2B352f |
| Biological manufacturing equipment & facilities // 2B352 |
| Biological safety cabinets // 2B352f |
| Bioreactors // 2B352b |
| Bismaleimides // 1C008a.1 |
| Bismuth // 1C229 |
| Bladders for aircraft/aerospace/missiles, fuel // 1A001a |
| Blanks, beryllium/beryllium (Be/Be) deposited material // 6C004d |
| Blanks, zinc selenide (ZnSe) substrate // 6C004a |
| Blanks, zinc sulphide (ZnS) substrate // 6C004a |
| Blowers, axial flow/centrifugal/positive displacement/turbo // 0B001c.3, 0B001d.3 |
| Bluetongue virus // 1C352a.3 |
| Body armour // 1A005 |
| Boring machines (CNC) // 2B001, 2B201 |
| Boron & boron compounds // 1C225 |
| Boron carbide powder (fuel) // 1C011b |
| Boron metal or alloy powder // 1C011b, 1C111a.2 |
| Bottom cable systems // 6A001a.2.e |
| Bottom cable systems software // 6D003a.3 |
| Botulinum toxin // 1C351d.1 |
| Boules of electro-optic materials // 6C004b |
| Brayton cycle engine, air independent // 8A002j.1 |
| Brucella abortus // 1C351c.2 |
| Brucella melitensis // 1C351c.3 |
| Brucella suis // 1C351c.4 |
| Bulk acoustic wave devices // 3A001c.2 |
| BZ: 3-Quinuclidinyl benzilate // 1C450a.3 |
| Cable - optical fibre & accessories for underwater use // 5A001c.2 |
| Cable, underwater communication // 5A001c.2 |
| Cables with surreptitious intrusion detection // 5A002a.7 |
| Cables, optical fibre // 5A001c.1 |
| CAD (computer-aided-design) software for semiconductors // 3D003 |
| Cadmium telluride (CdTe) single crystals/epitaxial wafers // 6C002b |
| Cadmium zinc telluride single crystals & epitaxial wafers // 6C002b |
| Calcium // 1C227 |
| Calcium fluoride (CaF2) made/coated crucibles // 2A225a.1 |
| Calcium zirconate (metazirconate) CaZrO3) crucibles // 2A225a.2 |
| Cameras and components // 6A003 |
| Cameras and components // 6A203 |
| Cameras, electronic framing type // 6A203b.3, 6A003a.4 |
| Cameras, electronic streak type // 6A203b.1, 6A003a.3 |
| Cameras, framing // 6A003a.3, 6A203a.1 |
| Cameras, imaging // 6A003b, 6A203c |
| Cameras, mechanical // 6A003a, 6A203a |
| Cameras, radiation hardened TV // 6A203c |
| Cameras, scanning & scanning camera systems // 6A003b.2 |
| Cameras, underwater photographic, still // 8A002e |
| Cameras, video using solid state sensors // 6A003b.1 |
| Canned drive pumps // 2B350i |
| Capacitors // 3A201a, 3A001e.2 |
| Carbon-carbon materials // 1A102 |
| Carbon dioxide (CO2) lasers // 6A005a.4, 6A205d |
| Carbon fibre & filamentary materials // 1C010b, 1C210a |
| Carbon monoxide (CO) lasers // 6A005a.3 |
| Carbon or alumina fibre conversion equipment // 1B001d, 1B101d |
| Carbon-carbon exit cones // 9A006h |
| Carbon-carbon thrust chambers // 9A006h |
| Carbonyl dichloride: Phosgene // 1C450a.4 |
| Carboxy-terminated polybutadiene (CTPB) // 1C111b.1 |
| Casting and remelt arc furnaces // 2B227a |
| Catalysts, platinised // 1A225 |
| Catalytic burners, deuterium conversion to heavy water // 0B004b.7 |
| Cathodes (impregnated) for electronic microwave tubes // 3A001b.1.c |
| Cathodic arc deposition production equipment // 2B005f |
| Cells or batteries (high energy), primary // 3A001e.1.a, 3A001e.1.b |
| Cellular radio systems development technology // 5E001b.3 |
| Centrifugal blowers or compressors for hydrogen sulphide circulation // 0B004b.2 |
| Centrifugal decanters // 2B352c |
| Centrifugal fixtures for gyro bearings // 7B003 |
| Centrifugal isotope separation equipment & components // 0B001b, 0B001a.1, 0B002 |
| Centrifugal multiplane balancing machine, use software // 2D201 |
| Centrifugal multiplane balancing machines for flexible rotors // 2B229a |
| Centrifugal pumps // 2B350i |
| Centrifugal separators // 2B352c |
| Centrifuge housing to contain rotor tube assembley // 0B001b.11 |
| Centrifuge rotor assembly equipment // 2B228a |
| Centrifuge rotor balancing equipment // 2B229 |
| Centrifuges, gas // 0B001b.1 |
| Ceramic-matrix composite materials // 1C007c |
| Ceramic-matrix non-composite materials, Ti borides // 1C007b |
| Ceramic base materials development/production technology // 1E002c.1 |
| Ceramic base materials, single or complex borides of Ti // 1C007a |
| Ceramic composite materials, useable for radomes or nose tips // 1C107b |
| Ceramic core manufacturing equipment // 9B001c |
| Ceramic cores for blades & vanes // 9B001c |
| Ceramic materials & composites // 1C007 |
| Ceramic shell manufacturing equipment // 9B001c |
| Ceramic shell wax pattern preparation equipment // 9B001d |
| Ceramic shells for blades & vanes // 9B001b |
| Ceramic-ceramic composite materials // 1C007f |
| Cerium sulphide (Ce2S3) made/coated crucibles // 2A225a.3 |
| Certification software for information security software // 5D002c.2 |
| Chambers, aerosol challenge testing (capacity of 1 m3 or more) // 2B352g |
| Changers, frequency (converters or inverters) // 0B001b.13, 3A225 |
| Chemical exchange isotope separation process plant, components // 0B001e, 0B001a.4 |
| Chemical incinerators // 2B350j |
| Chemical lasers // 6A005a.5 |
| Chemical manufacturing equipment // 2B350 |
| Chemical manufacturing facilities // 2B350 |
| Chemical storage tanks & containers // 2B350c |
| Chemical vapour deposition (CVD) equipment // 3B001d, 2B005a, 1B001d.2 |
| Chemical warfare (CW) precursors // 1C350 |
| Chemicals, precursors for toxic chemical agents // 1C350 |
| Chemostats for biological processing // 2B352b |
| Chikungunya virus (human pathogen) // 1C351a.1 |
| Chlamydia psittaci // 1C351c.5 |
| Chlorine trifluoride (CIF3) // 1C238 |
| 2-Chloroethanol // 1C350.15 |
| Chlorofluorocarbon compound soils as hydraulic fluids // 1C006a.2 |
| Chloropicrin: Trichloronitromethane // 1C450a.7 |
| Cinema recording cameras // 6A003a.1 |
| Cladding test/inspection equipment, for reactor fuel elements // 0B005 |
| Climatic chambers // 9B106 |
| Closed-cycle refrigeration systems // 9A006b |
| Closed circuit diving apparatus // 8A002q |
| Clostridium botulinum // 1C351c.6 |
| Clostridium perfringens toxins // 1C351d.2 |
| Clothing & materials, bullet-resistant // 1A005 |
| CNTD (controlled nucleation thermal decomposition) equipment // 2B005a.1.b |
| Coating & processing equipment, for non-electronic substrates // 2B005 |
| Coating application technology, for non-electronic substrates // 2E003f |
| Coatings for reduced electromagnetic visibility // 1C101 |
| Cochliobolus mivabeanus (Helminthosporium oryzae) // 1C354b.2 |
| Cold-cathode tubes // 3A228a |
| Cold traps for UF6 // 0B001d.7.d |
| Cold traps/desublimers for UF6 removal // 0B002b |
| Colletotrichum coffeanum var. virulans, fungi // 1C354b.1 |
| Colour centre lasers // 6A005c.1 |
| Columbium (Niobium) alloys // 1C002a.2.b |
| Column, absorption or distillation // 2B350e |
| Column, liquid-liquid exchange, for lithium amalgams // 1B233.b.1 |
| Combined cycle engines/components // 9A011 |
| Combustion regulation devices, jet engines // 9A118 |
| Communications cable systems, secure // 5A002a.7 |
| Communications systems (underwater) // 5A001b.1 |
| Compasses (gyro-astro) & devices // 7A004, 7A104 |
| Compilers (software) for multi-datastream processing equipment // 4D003a |
| Composite components/structures for spacecraft & space launch vehicles // 9A010 |
| Composite conductors, superconductive // 1C005 |
| Components materials software // 1D002 |
| Composite materials, ceramic // 1C007f |
| Composite structures for propulsion systems or space vehicles // 9A110 |
| Composite structures, as tubes // 1A202 |
| Composites structures, laminates or tubes // 1A002 |
| Composite temperature/pressure/atmosphere regulation technology // 1E103 |
| Composite/laminate manufacturers for rockets // 9A110 |
| Compound semiconductor integrated circuits, industrial // 3A001a.11 |
| Compound semiconductor photocathodes // 6A002a.2.b.3 |
| Compressors for hydrogen sulphide circulation // 0B004b.2 |
| Compressors // 1B232 |
| Compressors, UF6 // 0B001d.3, 0B001c.3, 0B001h.3 |
| Computer-aided-design (CAD) software for ICS & semiconductors // 3D003 |
| Computer control and monitoring systems, furnaces // 2B227c |
| Computer interconnect equipment // 4A003g |
| Computer, electronic assemblies & equipment & components // 4A001-4, 4A101 |
| Computer, electronic components, hybrid // 4A102 |
| Computer/assemblies/components, neural // 4A004b |
| Computer assemblies/components, optical // 4A004c |
| Computers/assemblies/components, systolic array // 4A004a |
| Computers, analogue & analogue ruggedised // 4A101 |
| Computers, digital // 4A001, 4A003, 4A004, 4A101 |
| Computers, having information security characteristics // 4A001b |
| Computers, hybrid for space launch vehicles and sounding rockets // 4A102 |
| Computers, radiation hardened // 4A001, 4A001a.2 |
| Computers, with extended operating temperature range // 4A001a.1 |
| Condensers or heat exchangers // 0A001i, 2B350d, 0B001d.4, 0B001c.5 |
| Conductive polymers // 1C001 |
| Congo-Crimean haemorrhagic fever virus // 1C351a.2 |
| Conotoxin // 1C351d.3 |
| Contactors, chemical exchange (ammonia-hydrogen) // 0B004b.4 |
| Contactors, liquid-liquid centrifugal // 0B001e.2 |
| Containment facilities // 2B352a |
| Continous-flow systems for biological processing // 2B352b |
| Continuous mixers with vacuum & temperature control facility // 1B115 |
| Contrarotating propellers // 8A002o.1.b |
| Control apparatus and devices for rocket launchers // 9A115a |
| Control rods, for nucelar reactors // 0A001d |
| Control units for metallurgical melting & casting furnaces // 2B227 |
| Controllable-pitch propellers // 8A002o.2.a |
| Controlled atmosphere melting & casting furnaces // 2B227 |
| Controlled environment (vacuum or inert gas) induction furnaces // 2B226 |
| Controlled nucleation thermal decomposition (CNTD) equipment // 2B005a.1.b |
| Controllers for high explosive handling robots // 2B207a |
| Controllers, machine tool (CNC)-software // 2D002 |
| Controllers, robot // 2B007 |
| Converter integrated circuits // 3A001a.5 |
| Converter interfaces for digital video magnetic tape recorders // 3A002a.4 |
| Converters, frequency // 0B001b.13, 3A225 |
| Converters, microwave frequency extender // 3A001b.7 |
| Cooling equipment for molten uranium // 0B001g.2 |
| Cooling fluids - electronic // 1C006d |
| Copper metal vapour lasers // 6A005a.2.a |
| Coprocessor microcircuits // 3A001a.3, 4A003d |
| Correlation-velocity sonar log equipment // 6A001b |
| Counter-current solvent extractors // 0B006 |
| Coxiella burnetii // 1C351b.1 |
| Critically safe tanks, nuclear fuel reprocessing // 0B006 |
| Cross-flow filtration equipment // 2B352d |
| Crossed-field amplifier tubes // 3A001b.1.b |
| Crucibles, liquid actinide resistant // 2A225 |
| Crucibles, resistant to molten uranium // 0B001i.4, 0B001g2 |
| Crucibles, tantalum // 2A225b,c |
| Cryocoolers for optical sensors, non-space qualified // 6A002d.2 |
| Cryocoolers for optical sensors, space qualified // 6A002d.1 |
| Cryogenic containers // 9A006b |
| Cryogenic distillation columns // 1B228 |
| Cryogenic heat exchangers for UF6/Carrier gas separation // 0B001d.7.a |
| Cryogenic heat pipes // 9A006a |
| Cryogenic refrigeration units // 0B001d.7.b |
| Cryogenic refrigerators // 9A006a |
| Cryoseparators // 0B001d.7.a |
| Cryptanalytic equipment or devices, digital // 5A002a.2 |
| Cryptography equipment or devices, digital // 5A002a.1 |
| CTPB (Carboxy-terminated polybutadiene) // 1C111b.1 |
| Cultures of bacteria // 1C351c, 1C352b, 1C353, 1C354a |
| Cultures of fungi // 1C353, 1C354b |
| Cultures of rickettsiae // 1C351b, 1C353 |
| Cultures of viruses // 1C351a, 1C352a |
| Custom integrated circuits, industrial // 3A001a.10 |
| Cutting machines, gears // 2B003 |
| CVD (chemical vapour deposition) equipment // 1B101d.2, 2B005a, 3B001d, 1B001d.2 |
| CVD (chemical vapour deposition) furnaces // 2B104 |
| CW (chemical warfare) precursors // 1C350 |
| Cyanogen chloride // 1C450a.5 |
| Cylinder wall lubrication technology, diesel engines // 9E003e.2 |
| DACs (digital-to-analogue converters) // 3A001a.5 |
| Damping, flotation or lubricating fluids // 1C006 |
| Data acquisition equipment for wind tunnels, automatic // 9B005 |
| Data acquisition systems for gas turbine development // 9B002 |
| Decanters, centrifugal // 2B352c |
| Deep-hole drilling machines // 2B001f |
| Deformable mirrors // 6A004a.1 |
| DEGDN (diethylene glycol dinitrate) // 1C111c.5 |
| Dengue fever virus // 1C351a.3 |
| Depleted uranium // 0C001 |
| Depth sounders // 6A001a.1 |
| Design integration of guidance sets, software // 7D103 |
| Desublimers for UF6 removal // 0B002b |
| Detection and protection equipment (software) // 1A004 |
| Detection or location systems (acoustic) // 6A001a.1.b |
| Detectors, optical // 6A002a |
| Detectors, radiation hardened for missile use // 6A102 |
| Detectors, space-qualified solid state optical // 6A002a.1 |
| Detonator firing sets // 3A229a |
| Detonators, exploding bridge (EB) // 3A232a.1 |
| Detonators, exploding bridge wire (EBW) // 3A232a.2 |
| Detonators, exploding foil initiators (EB) // 3A232a.4 |
| Detonators, slapper (electric) // 3A232a.3 |
| Deuterated compounds, (e.g. deuterated paraffins) // 0C003 |
| Deuterium & deuterium compounds as mixtures & solutions // 0C003 |
| Deuterium fluoride-carbon dioxide (DF-CO2lasers) // 6A005a.5.c.2 |
| Deuterium fluoride (DF) lasers // 6A005a.5.b. |
| Deuterium/deuterium compound production plant, equipment & components // 0B004 |
| Di-isopropylamine // 1C350.48 |
| Diagnostic instruments or target technology for SHPL // 6E003b |
| Dialkyl [methyl, ethyl or propyl (normal or iso)] N, N-dialkyl-[methyl, ethyl or propyl (normal or iso)]-phosphoramidates // 1C450b.3 |
| Diamond film substrate development/production technology // 3E002d |
| Diaphragm pumps // 2B350i |
| Diaphragm valves // 2B350g |
| Diaphragms, made from fluorinated compounds // 1A001a |
| Dibromotetrafluoroethane based damping or flotation fluids // 1C006c.1 |
| Dies, bellows-forming // 2B228c |
| Diesel cycle engine, air independent // 8A002j.2 |
| Diethyl-N, N-dimethylphosphoramidate // 1C350.18 |
| Diethyl ethylphosphonate // 1C350.17 |
| Diethyl methylphosphonite // 1C350.3 |
| Diethyl phosphite // 1C350.19 |
| Diethylaminoethanol // 1C350.49 |
| Diethylene glycol dinitrate (DEGDN) // 1C111c.5 |
| Diffusion bonding technology // 2E003b.1.b, 2E003b.2.b |
| Diffusion bonding tools, dies, moulds or fixtures // 1B003 |
| Digital-to-analogue converter integrated circuits (DACs) // 3A001a.5 |
| Digital array processors // 3A001a.3 |
| Digital computer electronic assemblies, parallel processing // 4A003c |
| Digital computer systems // 4A003b, 4A004, 4A003 |
| Digital computers, electronic assemblies & related equipment // 4A001, 4A003 |
| Digital computers, fault tolerant // 4A003a |
| Digital computers, logic processors // 4A003 |
| Digital computers, ruggedised // 4A101 |
| Digital computers, signal processing // 4A003 |
| Digital computers, vector processors // 4A003 |
| Digital controllers for vibration test systems // 2B116b |
| Digital coprocessors // 3A001a.3 |
| Digital differential analysers, ruggedised // 4A101 |
| Digital electronic engine control software // 9D003a |
| Digital instrumentation tape data recorders // 3A002a.3 |
| Digital signal processors // 3A001a.3, 4A003 |
| Digital video magnetic tape recorders // 3A002a.2 |
| Digitally controlled radio receivers // 5A001b.4 |
| Digitisers, waveform // 3A002a.5 |
| N, N-Diisopropyl-(beta)-aminoethyl chloride hydrochloride // 1C350.54 |
| N, N-Diisopropyl-(beta)-amino ethanol // 1C350.27 |
| N. N-Diisopropyl-(beta)-aminoethane thiol // 1C350.12 |
| N, N-Diisopropyl-(beta)-aminoethyl chloride // 1C350.1 |
| Dimensional inspection equipment/systems // 2B006a |
| Dimensional inspection machines // 2B206a, 2B006b |
| Dimethyl ethylphosphonate // 1C350.17 |
| Dimethyl methylphosphonate // 1C350.3 |
| Dimethyl phosphite // 1C350.6 |
| Dimethylamine // 1C350.16 |
| Dimethylamine hydrochloride // 1C350.20 |
| Dinitrogen pentoxide // 1C111a.3.c |
| Dinitrogen tetroxide (nitrogen dioxide) // 1C111a.3.b |
| Dinitrogen trioxide // 1C111a.3.a |
| Direct-acting hydraulic pressing technology for metal working // 2E003b.2.c |
| Direct view imaging equipment // 6A002c |
| Direction finding systems, equipment & components // 7A007, 7A103 |
| Directional solidification casting control software // 9D004c |
| Directional solidification casting equipment // 9B001a |
| Dissolvers, for nuclear fuel // 0B006 |
| Distillation columns // 2B350e, 1B228 |
| Distillation towers // 0B004b.3, 1A226 |
| Diving apparatus, articles & components // 8A002q |
| Doppler laser interferometers (DLIs) // 6A225 |
| Double seal pumps // 2B350i |
| Double seal valves // 2B350g |
| Drilling machines, deep-hole // 2B001f |
| Dry boxes capable of use with biological agents // 2B352f |
| Dry etching equipment, anisotropic plasma // 3B001c |
| Dye lasers // 6A005d, 6A205b/c |
| Dynamic adaptive routing software // 5D001c.3 |
| Dynamic signal analysers // 3A002c.2 |
| Dynamic wavefront (phase) measuring equipment // 6A005f.1 |
| Eastern equine encephalitis virus // 1C351a.4 |
| EB-PVD (electron beam physical vapour deposition) equipment // 2B005c |
| Ebola virus // 1C351a.5 |
| EDMs, non wire feed types // 2B001d |
| EEPROMs (electrical erasable programmable read-only memories) // 3A001a.4 |
| Electric detonators, explosive // 3A232a |
| Electric propulsion engines // 8A002o.2.b |
| Electrical discharge machines, non-wire feed CNC // 2B001d |
| Electrical erasable programmable read-only memories // 3A001a.4 |
| Electrically driven explosive detonators // 3A232a |
| Electro-optic materials // 6C004 |
| Electro-optical integrated circuits // 3A001a.6 |
| Electrochemical reduction cells // 0B001e.4, 0B001e.3 |
| Electrolysis cells, amalgam lithium isotope separation // 1B233.b.3 |
| Electrolytic cells, fluorine production // 1B225 |
| Electromagnetic amplifiers, superconductive devices // 3A001d.1 |
| Electromagnetic energy storage, superconductive devices // 3A001e.3 |
| Electromagnetic interference (EMI) protection technology, avionics // 7E102 |
| Electromagnetic isotope separation equipment & components // 0B001j, 0B001a.9 |
| Electromagnetic isotope separators // 1B226 |
| Electromagnetic pulse (EMP) protection technology, avionics // 7E102 |
| Electromagnetic pulse (EMP) protection, detectors for missile use // 6A102 |
| Electromagnetic radiation sensors, optical fibre // 6A002d.3.a |
| Electromagnetic signature reduction material & devices // 1C101 |
| Electromagnetic underwater communications systems // 5A001b.1.b |
| Electromagnets, superconductive // 3A001e.3, 3A201b |
| Electron beam cutting machines (CNC) // 2B001e.1.b |
| Electron beam equipment for mask making/semiconductor devices // 3B001f |
| Electron beam guns, high power // 0B001g.1 |
| Electron beam melting furnaces // 2B227b |
| Electron beam physical vapour deposition (EB-PVD) equipment // 2B005c |
| Electron beam sensitive resist materials // 3C002b |
| Electron beam systems, for probing semiconductor devices // 3B002d |
| Electron bombardment mass spectrometers // 3A233d |
| Electron cyclotron resonance (ECR) CVD equipment // 3B001d |
| Electron cyclotron resonance (ECR) plasma dry etching equipment // 3B001c |
| Electronic assemblies // 4A003 |
| Electronic cameras // 6A003a.5 |
| Electronic components // 3A001 |
| Electronic components // 3A101, 3A201 |
| Electronic computers & related equipment // 4A101, 4A001-4 |
| Electronic cooling fluids // 1C006d |
| Electronic devices, switching // 3A228 |
| Electronic equipment for reentry vehicles // 9A116d |
| Electronic framing cameras // 6A203b.3 |
| Electronic streak cameras & streak tubes // 6A003a.3, 6A203b.2 |
| Electronic vacuum tubes, microwave/millimetre wave devices // 3A001b.1 |
| Electronic valves, industrial vacuum // 3A228 |
| Electronically steerable antennae, phased array // 5A001d |
| EMP/EMI protection technology, avionic systems // 7E102 |
| Encoders, rotary input shaft type // 3A001f |
| Encrypted GPS (global positioning system) equipment & components // 7A005a |
| Encryption equipment, assemblies & components // 5A002 |
| Encryption software // 5D002 |
| End effectors, robot // 2B007, 2B207 |
| Energy storage capacitors (high capacity) // 3A001e.2 |
| Energy storage, superconductive devices // 3A001e.3 |
| Enriched uranium or materials containing it // 0C002 |
| Environmental chambers, capable of simulating flight conditions // 9B106a |
| Epitaxial growth equipment // 3B001a |
| Epitaxial wafers, cadmium telluride (CdTe) // 6C002b |
| Erbium oxide (erbia) Er2O3 made/coated crucibles // 2A225a.4 |
| Ethers (alkylphenylene) in the form of a lubricating fluid // 1C006b.1 |
| Ethyl phosphonyl dichloride // 1C350.21 |
| Ethyl phosphinyl difluoride // 1C350.35 |
| Ethyl phosphinyl dichloride // 1C350.22 |
| Ethyl phosphonyl difluoride // 1C350.23 |
| Ethyldiethanolamine // 1C450b.7 |
| Evaporators for concentrated lithium hydroxide solution // 1B233.b.4 |
| Exchange columns, liquid-liquid for lithium amalgams // 1B233.b.1 |
| Excimer lasers // 6A005a.1 |
| Exit cones, liquid rocket propulsion // 9A006h |
| Expander cycle turbine drive systems // 9A006d |
| Expert systems - integration systems technology // 2E003e |
| Expert systems software // 4D003b |
| Exploding bridge (EB) detonators // 3A232a.1 |
| Exploding bridge wire (EBW) detonators // 3A232a.2 |
| Exploding foil initiators (EFI) // 3A232a.4 |
| Explosive detonators, industrial electric // 3A232a |
| Explosive, high (industrial) // 1C239 |
| Explosive/munitions environment handling robots // 2B007b |
| Extended temperature range semiconductor components // 3A001a.2 |
| FADEC (full authority digital electronic engine control software) // 9D003 |
| Fast-exchange liquid-liquid centrifugal contactors // 0B001e.2 |
| Fast-exchange liquid-liquid pulse columns // 0B001e.1 |
| Fast fourier transform (FFT) processors // 3A001a.12 |
| Fast fourier transform processors, acoustic signal processing // 6A001a.2.c |
| Fast switching function modules or assemblies // 3A228c |
| Fault tolerance FADEC software // 9D003b |
| Fault tolerant digital computers // 4A003a |
| Feed preparation systems for uranium chloride production // 0B001e.5 |
| Fermenters, biological processing // 2B352b |
| Fibre and filamentary material // 1C010, 1C210 |
| Fibre optic cable // 5A001c.1 |
| Fibre optic hull penetrators/connectors // 8A002c |
| Fibre optic magnetometers // 6A006c, 6A006e |
| Fibre surface treatment equipment // 1B101d |
| Fibrous or filamentary material production // 1B001, 1B101 |
| Fibrous or filamentary materials // 1C010d, 1C210 |
| Field programmable gate arrays (FPGA) // 3A001a.7 |
| Field programmable logic arrays (FPLA) // 3A001a.8 |
| Filament-wound composite motor cases // 9A008b |
| Filament winding machine software // 1D001, 1D101, 1D201 |
| Filament winding machines // 1B001a, 1B101a, 1B201 |
| Filamentary materials, carbon // 1C010b |
| Filling equipment, remotely controlled // 2B350f |
| Film type integrated circuits, industrial // 3A001a |
| Filters, tunable band-pass // 3A001b.5 |
| Fingers, for surface effect vessels // 8A002k |
| Finishing machines, gear // 2B003 |
| Firing sets // 3A229a |
| Fissile materials or material containing them // 0C002 |
| Flash discharge X-ray generators // 3A201c |
| Flexible isolators capable of use with biological agents // 2B352f |
| Flexible nozzles, solid rocket motor // 9A108c |
| Flexible nozzles, thrust vector control sub-system // 9A106c |
| Flexible sensors for hydrophones // 6A001a.2.a.1 |
| Flight control actuator technology // 7E004a.5 |
| Flight control system development technology // 7E004 |
| Flight control systems // 7A116 |
| Flight control systems-software // 7D003e |
| Flight instrument systems, integrated // 7A103 |
| Flight management system integration technology // 7E104 |
| Flightweight dewars // 9A006a |
| Flow-forming machines // 2B009, 2B109, 2B209 |
| Flow forming spin forming equipment, software // 2D101, 2D201 |
| Fluid or secondary gas injection thrust systems // 9A106d, 9A108c |
| Fluorinated compounds // 1C009, 1A001 |
| Fluorinated phosphazene elastomers // 1C009c |
| Fluorinated polyimides // 1C009b |
| Fluorinated silicone fluid // 1C006b.2 |
| Fluorinating equipment, UF5 to UF6 // 0B001h.4 |
| Fluorine production (electrolysis cells) // 1B225 |
| Fluorelastomer compounds, technology // 1E002b |
| Fluorphosphate glass // 6C004e |
| Fluorocarbon electronic cooling fluids // 1C006d |
| Fluxgate magnetometer technology // 6E003c |
| Fly-by-wire control system technology // 7E004b |
| Fly-by-wire systems // 7A116a |
| Flight-by-light flight control systems software // 7D003e |
| Foam mirror structures, lightweight // 6A004a.3 |
| Foam, syntactic for underwater use // 8C001 |
| Focal plane arrays // 6A002c.2, 6A002a.3 |
| Foot & mouth disease virus // 1C352a.4 |
| FPGAs (field programme gate arrays) // 3A001a.7 |
| FPLAs (field programmable logic arrays) // 3A001a.8 |
| Framing cameras, electronic type // 6A203b.3, 6A003a.4 |
| Framing cameras, mechanical // 6A203a.1 |
| Framing tubes & solid state imaging devices // 6A203b.4 |
| Francisella tularensis // 1C351c.7 |
| Freeze drying equipment, steam sterilisable // 2B352e |
| Frequency agile (frequency hopping) radio equipment // 5A001b.3 |
| Frequency agile systems // 5A002a.5 |
| Frequency agile tubes // 3A001b.1 |
| Frequency agility development technology // 5E001b.4 |
| Frequency analysers (signal analysers) // 3A002c.1 |
| Frequency changers (converters or inverters) // 0B001b.13, 3A225 |
| Frequency extenders, mixers/converters // 3A001b.7 |
| Frequency standards, atomic // 3A002g |
| Frequency synthesised signal generators // 3A002d |
| Frequency synthesiser, electronic assemblies // 3A002b |
| Fuel cell air independent power systems // 8A002j.3 |
| Fuel element chopping or shredding machines // 0B006 |
| Fuel element fabrication plant, for nuclear reactors // 0B005 |
| Fuel element handling equipment for nuclear reactors // 0A001c |
| Fuels, metal powder // 1C111a |
| Full authority digital electronic engine control software // 9D003 |
| Functional testing equipment, for integrated circuits // 3B002b |
| Fungi, plant pathogens // 1C354b |
| Furnaces // 2B226, 2B227, 2B104 |
| Fused silica, low optical absorption types // 6C004e |
| GaAs photocathodes // 6A002a.2.b.2 |
| GaAs semiconductor integrated circuits, industrial // 3A001a.11 |
| GaInAs photocathodes // 6A002a.2.b.2 |
| Gallium III/V compound substrates, hetero-epitaxial grown multi-layer // 3C001c |
| Gallium organo-metallic compounds // 3C003a |
| Gas blowers (positive displacement/centrifugal/axial flow) // 0B001d.3, 0B001c.3 |
| Gas centrifuge isotope separation equipment & components // 0B001b |
| Gas centrifuge isotope separation plant // 0B001a.1 |
| Gas centrifuge plant auxiliary equipment // 0B002 |
| Gas centrifuge rotor assembly equipment // 2B228a |
| Gas centrifuge rotor balancing equipment // 2B229 |
| Gas centrifuges // 0B001b.1 |
| Gas generator turbine drive system // 9A006d |
| Gas krytron tubes // 3A228a |
| Gas lasers // 6A005a, 6A005a.7 |
| Gas monitoring systems, toxic // 2B351 |
| Gas turbine (aero engine) test software // 9D004b |
| Gas turbine aeroengines, civil non-certified/supersonic // 9A001 |
| Gas turbine blade ntechnology // 9E003a |
| Gas turbine blade, manufacturing or measuring equipment // 9B001 |
| Gas turbine brush seal production/test equipment // 9B003 |
| Gas turbine components, solid state joining equipment // 9B004 |
| Gas turbine development control systems or instrumentation // 9B002 |
| Gas turbine engine development systems/instrumentation // 9B002 |
| Gas turbine engine propulsion systems & assemblies/components // 9A003 |
| Gas turbine engine technology // 9E003 |
| Gas turbine engines & assemblies/components, marine // 9A002 |
| Gas turbine test/flow modelling software // 9D004a |
| Gaseous diffusion barriers, UF6 // 0B001c.1 |
| Gaseous diffusion housings, UF6 // 0B001c.2 |
| Gaseous diffusion isotope separation equipment & components // 0B001c, 0B001a.2 |
| Gaseous diffusion plant auxiliary equipment // 0B002 |
| Gaskets // 1A001a&c |
| Gate arrays, field programmable (FPGA) // 3A001a.7 |
| Gate silicon intensifier target (SIT) videcon tubes // 6A203b.4.b |
| GDMS (glow discharge mass spectrometers) // 3A233b |
| Gear cutting machines // 2B003 |
| Gear finishing machines // 2B003 |
| Gear grinding machines // 2B003 |
| Gear honing machines // 2B003 |
| Generation of machine tool instruction-technology // 2E003d |
| Generator systems, neutron // 3A231 |
| Generators, high-current pulse for detonators // 3A229 |
| Generators, high-speed pulse // 3A230 |
| Genetically-modified microorganisms // 1C353 |
| Germanium, hetero-epitaxial grown multi-layer substrates // 3C001b |
| Gimbals, optical control // 6A004d.3 |
| Glass fibre or filamentary materials // 1C210b |
| Glass fibre, for optical communications // 5A001c.1 |
| Glass matrix reinforced composite materials // 1C007f |
| Glass windows, nuclear radiation shielding // 1A227 |
| Glass, high homogeneity // 6C004e |
| Global positioning system (GPS) equipment & components // 7A005 |
| Glove boxes capable of use with biological agents // 2B352f |
| Glow discharge mass spectrometers (GDMS) // 3A233b |
| Goat pox virus // 1C352a.5 |
| Gold (Au) metal vapour lasers // 6A005a.2.b |
| GPS (global positioning system) equipment/components // 7A005 |
| GPS equipment // 7A105 |
| Gradiometers & components // 6A107, 6A006, 6A007c |
| Graphics accelerators or graphics coprocessors // 4A003d |
| Graphite heat exchangers // 2B350d |
| Graphite, bulk // 1C107a |
| Graphite, fine grain recrystallised high density // 1C107a |
| Graphite, nuclear-grade // 0C004 |
| Gravimeters (gravity meters) // 6A107, 6A007a, 6A007b |
| Gravity gradiometer software // 6D003c |
| Gravity gradiometers // 6A007c, 6A107 |
| Gravity meter (gravimeters) production & calibration equipment // 6B007 |
| Gravity meters (gravimeters) & components // 6A107, 6A007a, 6A007b |
| Gravity meters (gravimeters) software // 6D003c |
| Grinding machines // 2B001c, 2B201b, 2B003 |
| Ground support launch vehicles // 9A115b |
| Guanidine nitrate // 1C011c |
| Guidance set, production facilities // 7B103 |
| Guidance sets // 7A117 |
| Gyro dynamic balance stations // 7B003 |
| Gyro evacuation/fill stations // 7B003 |
| Gyro run-in/motor test stations // 7B003 |
| Gyro tuning test stations // 7B003 |
| Gyro-astro compasses & devices // 7A004, 7A104 |
| Gyros & gyro components // 7A002, 7A102 |
| Gyroscope production/manufacturing/test equipment // 7B003 |
| Hafnium fluoride (HfF4) glass // 6C004e |
| Hafnium metal, alloys & compounds // 1C231 |
| Hafnium oxide (hafnia) (HfO2) made/coated crucibles // 2A225a.5 |
| Hair type absorbers // 1C001a |
| Handling equipment for propellants and their constituents // 1B115 |
| Handling equipment for rocket launchers // 9A115a |
| Handling systems, semiconductor wafers // 3B001e |
| Hantaan virus // 1C351a.6 |
| Heading sensors, towed hydrophones // 6A001a.2.b.4 |
| Heat exchangers & condensers // 0A001i, 0B001d.4, 0B001c.5, 2B350d |
| Heat pipe cooled mirrors // 6A005e.1 |
| Heat shields/components, reentry vehicle // 9A116b |
| Heat sinks/components, reentry vehicle // 9A116c |
| Heat source materials, nuclear // 1C012 |
| Heavy water (deuterium oxide) // 0C003 |
| Heavy water concentration equipment // 0B004b.8 |
| Heavy water production plant, equipment & components // 0B004 |
| Helicopter power transfer system technology // 9E003d |
| Helicopter system development technology // 7E004c |
| Helium refrigeration units // 1B231 |
| Helium, enriched // 1C232 |
| Helminthosporium oryzae (Cochliobolus miyabeanus) // 1C354b.2 |
| Hetero-epitaxial grown multi-layer substrates // 3C001 |
| Hetero-structure semiconductor technology // 3E002b |
| High-speed cameras // 6A003a, 6A203a |
| High-speed pulse generators // 3A230 |
| High-velocity gas gun systems // 2B232 |
| High energy photvoltaic arrays // 3A001e.1.c |
| High energy storage capacitors // 3A001e.2, 3A201a |
| High power electron beam guns // 0B001g.1 |
| High pressure nozzles // 9A006e |
| High pressure thrust chambers // 9A006e |
| High pressure turbo pumps, pump components // 9A006d |
| High voltage power supplies for ion sources // 0B001j.5 |
| HIPS (hot isostatic presses) // 2B004, 2B104, 2B204 |
| Holding or storage vessels, critically safe // 0B006 |
| Hollow cylinder centrifugal balancing machines // 2B229b |
| Honing machines, gear // 2B003 |
| Hopping code generation capability, equipment with // 5A002a.5 |
| Hot cell manipulators // 2B225 |
| Hot isostatic densification technology/data, Al/Ti/Superalloys // 2E003b.2.d |
| Hot isostatic press, use software // 2D201 |
| Hot isostatic presses (HIPS) // 2B004, 2B104, 2B204 |
| Hovercraft // 8A001f/g |
| HTPB (hydroxy-terminated polybutadiene) propellant additive // 1C111b.2 |
| Hull penetrators/connectors, fibre optic // 8A002c |
| Human pathogens // 1C351a-c |
| Hybrid computer electronic systems/electronic assemblies // 4A002 |
| Hybrid computers & components // 4A002, 4A102, 4A002a |
| Hybrid integrated circuits // 3A001a |
| Hybrid rocket motors/propulsion systems // 9A009, 9A109 |
| Hydraulic fluids, pressure transmission // 1C006a |
| Hydraulic pressing technology (metal working) // 2E003b |
| Hydraulic stretch-forming machines technology // 2E003c |
| Hydrides of antimony, arsenic & phosphorus // 3C004 |
| Hydrocarbon oils, synthetic // 1C006 |
| Hydroclave regulation technology // 1E103 |
| Hydrofoil vessels // 8A001h |
| Hydrofoils // 8A002m |
| Hydrogen cyanide // 1C450a.6 |
| Hydrogen fluoride // 1C350.24 |
| Hydrogen fluoride (HF) lasers // 6A005a.5.a |
| Hydrogen isotope storage & purification systems // 1B231 |
| Hydrogen refrigeration units // 1B231 |
| Hydrogen sulphide-water exchange plant, equipment & components // 0B004a.1, 1B229 |
| Hydrophone arrays, towed acoustic // 6A001a.2.b |
| Hydrophones // 6A001a.2.a |
| Hydroxy-1-methylpiperidine 3-Hydroxy-1-methylpiperidine // 1C350.10 |
| Hydroxy-terminated polybutadiene (HTPB) // 1C111b.2 |
| ICP/MS (inductively coupled plasma mass spectrometers) // 3A233a |
| III/V compound substrates, gallium or indium // 3C001c |
| Image enhancement, digital equipment // 4A003 |
| Image intensifier tubes & components // 6A002a.2, 6A002c.1 |
| Imaging cameras // 6A003b |
| Imaging cameras incorporating focal plane arrays // 6A003b.4 |
| Imaging cameras incorporating image intensifier tubes // 6A003b.3 |
| Imaging cameras, radiation hardened // 6A203c |
| Imaging devices // 6A002, 6A203b.4 |
| Imaging equipment, visible & infrared // 6A002c |
| Imaging sensors, multispectral and monospectral // 6A002b |
| Imaging systems, underwater electronic // 8A002f |
| Impregnated cathodes for electronic microwave tubes // 3A001b.1.c |
| Incinerators designed to destroy the chemicals of 1C350 // 2B350j |
| Independent (air) power systems underwater // 8A002j |
| Indium III/V compounds substrates // 3C001c |
| Indium organo-metallic compounds // 3C003a |
| Induction coil magnetometers // 6A006b |
| Induction furnace, controlled environment inert gas // 2B226 |
| Induction furnace, vacuum // 2B226 |
| Inductively coupled plasma mass spectrometers (ICP/MS) // 3A233a |
| Inert gas environment induction furnaces // 2B226 |
| Inertial navigation system software // 7D002, 7D102 |
| Inertial navigation; systems/equipment/components // 7A003, 7A103 |
| Inertial sensors, optical fibre // 6A002d.3 |
| Information security software // 5D002 |
| Information security systems/equipment/devices // 5A002 |
| Information security technology // 5E002 |
| Information security technology support software // 5D002b |
| Infrared absorption analysers, on line // 0B004b.6 |
| Infrared detectors, industrial space qualified // 6A002a.1, 6A002a.4 |
| Initiation systems, single or multipoint (electric) // 3A232b |
| Initiators, explosive detonators (electric) // 3A232a |
| Inorganic fibres & filamentary materials // 1C010c, 1C210b |
| Inorganic overlay coating application technology // 2E003f |
| Instruction generators for machine tools-technology // 2E003d |
| Instrumentation cameras // 6A003a |
| Instrumentation cameras // 6A203a |
| Instrumentation for gas turbine development // 9B002 |
| Instrumentation for wind tunnels // 9B005 |
| Instrumentation systems, inertial navigation // 7A003 |
| Insulation bonding/liner system components, rocket motor // 9A008a |
| Insulation, rocket motor case // 9A108a |
| Integrated circuit computer-aided design (CAD) software // 3D003 |
| Integrated circuit test equipment // 3B002b, 3B002c |
| Integrated circuit, masks // 3B001g |
| Integrated circuits, general purpose // 3A001a, 3A001b.2 |
| Integrated flight instrument systems/components // 7A103 |
| Integrated system source code, avionic/mission systems // 7D003c |
| Integration software for expert systems // 2E003e |
| Integration technology for flight management systems // 7E104 |
| Interconnect equipment (computer) // 4A003g |
| Interferometers, velocity (VISARs) // 6A225 |
| Interior linings, rocket motor case // 9A108a |
| Interlacing machines // 1B001c |
| Internals, reactor components, nuclear // 0A001h |
| Interstages for missiles // 9A117 |
| Intrinsic magnetic gradiometers // 6A006f |
| Inverse synthetic aperture radar (ISAR) // 6A008d |
| Inverters (frequency changers or converters) // 0B001b.13, 3A225 |
| Ion-exchange columns // 0B001f.2 |
| Ion-exchange isotope separation plant // 0B001a.5 |
| Ion-exchange processing // 0B006 |
| Ion-exchange reflux systems // 0B001f.3 |
| Ion-exchange resins, fast acting // 0B001f.1 |
| Ion-exchange separation process equipment & components // 0B001f |
| Ion beam equipment for mask making/semiconductor devices // 3B001f.2 |
| Ion beam sensitive resist materials // 3C002b |
| Ion collector plates, Uranium fluoride resistant // 0B001j.2 |
| Ion implantation equipment // 3B001b |
| Ion implantation production equipment // 2B005b |
| Ion plating production equipment // 2B005g |
| Ion sources, electron bombardment mass spectrometers // 3A233d |
| Ion sources, glow discharge mass spectrometers (GDMS) // 3A233b |
| Ion sources, ICP/MS mass spectrometers // 3A233a |
| Ion sources, mass spectrometers (UF6 enrichment plant) // 0B002g |
| Ion sources, molecular beam mass spectrometers // 3A233e |
| Ion sources, thermal ionisation mass spectrometers (TIMS) // 3A233c |
| Isolators capable of use with biological agents // 2B352f |
| Isostatic press, software for use of // 2D201 |
| Isostatic presses, hot // 2B004, 2B104, 2B204 |
| Isotope separation plant, systems, equipment & components // 0B001 |
| Isotope separators, electromagnetic // 0B001a.9, 1B226 |
| Japanese encephalitis virus // 1C351a.20 |
| Jet engine combustion regulation devices // 9A118 |
| Jet engines/components, pulse // 9A111 |
| Jet probes, thrust vector control sub-system // 9A106c, 9A108c |
| Jet vane, thrust vector control sub-systems // 9A106c, 9A108c |
| Josephson effect devices // 6A006h |
| Joule-Thomson self-regulating minicoolers // 6A002d.2.b |
| Junin virus // 1C351a.7 |
| Kerr or Pockel cells, electro-optical shuttering // 6A203b.4.c |
| Krypton ion lasers // 6A005a.6 |
| Krytron tubes, gas // 3A228a |
| Laminates & composite structures, organic or carbon // 1A002 |
| Laminates, rockets/propulsion systems/space vehicles // 9A110 |
| Land-based gravity meters production equipment // 6B007 |
| Land inertial navigation equipment // 7A003 |
| Laser alimeters // 7A106 |
| Laser based linear position feedback units // 2B008a |
| Laser based measuring instruments // 2B006b.1.c |
| Laser beam cutting machines (CNC) // 2B001e.1.c |
| Laser beam equipment for mask making/semiconductor devices // 3B001f.2 |
| Laser beam systems, for probing semiconductor devices // 3B002d |
| Laser communication technique technology // 5E001b.2 |
| Laser diagnostic equipment // 6A005f.2 |
| Laser gyro mirror characterisation equipment // 7B102 |
| Laser isotope plant, systems, equipment & components // 0B001a, 0B001g, 0B001h |
| Laser radar or light detection & ranging (LIDAR) equipment // 6A008j |
| Laser radar systems for space launch vehicles // 6A108a |
| Laser ring gyro test equipment // 7B002 |
| Laser ring gyros & gyro components // 7A002 |
| Lasers // 6A005, 6A205 |
| Lasers or laser systems, uranium isotope separation // 0B001g.5, 0B001h.6 |
| Lassa fever virus // 1C351a.8 |
| Lathes (CNC) // 2B001a |
| Launch apparatus or devices, missile // 9A115a |
| Launch ground support vehicles // 9A115b |
| Launch vehicle components/structures // 9A010 |
| Lenses for radiation hardened TV cameras // 6A203c |
| Lidar equipment (laser radar) // 6A008j |
| Lift fans, for surface effect vessels // 8A0021 |
| Light-weight reduction gearing, marine transmissions // 8A002o.1.d |
| Light gas guns (multistage) systems // 2B232 |
| Light systems, underwater // 8A002g, 8A002d.2 |
| Lightweight composite or foam mirror structures // 6A004a.3 |
| Lightweight monolithic mirrors // 6A004a.2 |
| Lightweight turbofan/turbojet engines // 9A101 |
| Linear focal plane arrays // 6A002a.3 |
| Linear measuring equipment/instruments // 2B006b.1 |
| Linear position feedback units or sensors // 2B008a |
| Linear voltage displacement transformer (LVDT) based instruments // 2B006b.1.b.1 |
| Liquid-liquid exchange columns, for lithium amalgams // 1B233.b.1 |
| Liquid lasers // 6A005d |
| Liquid or water jet cutting machines (CNC) // 2B001e.1 |
| Liquid oxidisers, various nitrous oxides // 1C111a.3 |
| Liquid propellant control systems // 9A106d |
| Liquid propellant injectors // 9A006g |
| Liquid propellant rocket engines // 9A005, 9A105 |
| Liquid rocket propulsion systems // 9A105, 9A119, 9A005, 9A006, 9A010, 9A106 |
| Liquid uranium handling systems (cooled crucibles) // 0B001i.4 |
| Lithium amalgam electrolysis cells // 1B233.b.3 |
| Lithium amalgam processing equipment // 1B233a |
| Lithium amalgam pumps // 1B233.b.2 |
| Lithium hydroxide solution, evaporators for // 1B233.b.4 |
| Lithium isotope separation facilities, plant and equipment // 1B233a |
| Lithium metal, hydrides or alloys // 1C233 |
| Lithography equipment, mask making for semiconductor wafer-processing // 3B001f |
| Live cultures, isolated // 1C351, 1C352, 1C354, 1C353 |
| Location & object detection systems, acoustic // 6A001a.1.b |
| Logic arrays, field programmable (FPLA) // 3A001a.8 |
| Logic processors and assemblies // 4A003 |
| Lubricating materials // 1C006b |
| LVDT (linear voltage displacement transformer) based instruments // 2B006b.1.b.1 |
| Lymphocytic choriomeningitis virus // 1C351a.9 |
| Lyssa virus // 1C352a.8 |
| Machine tool assemblies for equipment of 2B006 & 2B007 // 2B008 |
| Machine tool components for equipment of 2B006 & 2B007 // 2B008 |
| Machine tool feedback units // 2B008 |
| Machine tool instruction generators-technology // 2E003d |
| Machine tool spindles // 2B008c |
| Machine tools for grinding (CNC) // 2B001c, 2B003, 2B201b |
| Machine tools, E-beam // 2B001e.1.b |
| Machine tools, laser // 2B001e.1.c |
| Machine tools, numerically controlled // 2B001, 2B201 |
| Machine tools, water/other liquid jet // 2B001e.1.a |
| Machines for milling (CNC) // 2B001, 2B001b, 2B201a, 2B001a |
| Machupo virus // 1C351a.10 |
| Magnesium alloy powders // 1C002b.1.e |
| Magnesium metal alloys // 1C002a.2.e |
| Magnesium metal, alloys & powders // 1C011a, 1C228, 1C111a.2 |
| Magnesium oxide (MgO) made or coated crucibles // 2A225a.6 |
| Magnet power supplies, high power (direct current) // 0B001j.6 |
| Magnetic alloy strips // 1C003c |
| Magnetic anomaly detection software // 6D003b.2 |
| Magnetic bearings (suspension) // 0B001b.7, 2A001c |
| Magnetic compensation systems for magnetic sensors // 6A006g |
| Magnetic compensation systems software // 6D003b.1 |
| Magnetic confinement CVD equipment // 3B001d.1 |
| Magnetic confinement plasma dry etching equipment // 3B001c.1.a |
| Magnetic drive pumps // 2B350i |
| Magnetic gradiometers // 6A006d, 6A006f |
| Magnetic metals // 1C003 |
| Magnetic pole pieces // 0B001j.4 |
| Magnetic sensor, magnetic compensation systems // 6A006g |
| Magnetometer systems // 6A006 |
| Magnetometers // 6A006, 6A006a, 6A006c |
| Magnetostrictive alloys // 1C003b |
| Mandrels for rotor assembly, bellows forming // 2B228a |
| Mandrels, bellows-forming // 2B228c |
| Maganin gauges, pressure // 6A226a |
| Manifolds, vacuum // 0B002f.1 |
| Manipulators // 2B225, 8A002i |
| Manned, tethered submersible vehicles // 8A001a |
| Manned, untethered submersible vehicles // 8A001b |
| Manufacturing equipment for semiconductor materials // 3B001 |
| Maraging steel // 1C116, 1C216 |
| Marburg virus // 1C351a.11 |
| Marine acoustic systems // 6A001a |
| Marine gas turbine engines // 9A002 |
| Masks, integrated circuits // 3B001g |
| Mass spectrometers & ion sources // 3A233, 0B002g |
| Materials development, production & use software // 1D001 |
| Materials for reduced electromagnetic reflectivity // 1C101 |
| Materials processing equipment, use technology // 2E101, 2E201, 2E301 |
| MCT (HgCdTe) crystals & epitaxial wafers // 6C002b |
| Measurement equipment, underwater velocity // 6A001b |
| Measuring instruments or systems // 2B006 |
| Mechanical cameras, framing // 6A003a.1-3 |
| Melting furnaces // 2B227b |
| Memory integrated circuits // 3A001a.4 |
| Mercury amalgam pumps // 1B233.b.2 |
| Mercury cadmium telluride crystals & epitaxial wafers // 6C002b |
| Metal-organic compounds, aluminium/gallium/indium // 3C003a |
| Metal & metal alloy powder production equipment // 1B002 |
| Metall alloy powders // 1C002b, 1C111a, 1C011a |
| Metal alloys // 1C002a, 1C004, 1C116, 1C117, 1C202, 1C216, 1C230, 1C231, 1C233, 1C234 |
| Metal alloys in powder or particulate form // 1C002c |
| Metal alloys, magnetic // 1C003 |
| Metal alloys, powders (fuel) // 1C111a.2 |
| Metal alloys, tungsten // 1C226 |
| Metal coated fibre preforms // 9A110 |
| Metal organic chemical vapour deposition (MOCVD) reactors // 3B001a.2 |
| Metal particulate material, magnesium or zirconium // 1C011a |
| Metal powder fuels // 1C111a, 1C011 |
| Metal powder production equipment // 1B002 |
| Metal vapour lasers // 6A005a.2 |
| Metal working process tools, die & fixture technology // 2E003b.1 |
| Metallurgical melting & casting furnace, software for // 2D201 |
| Metallurgical melting & casting furnaces // 2B227 |
| Metals with high initial relative (magnetic) permeability // 1C003a |
| Methyl benzilate // 1C350.25 |
| Methyl phosphinyl dichloride // 1C350.26 |
| Methyl phosphinyl difluoride // 1C350.36 |
| Methyl phosphonyl dichloride // 1C350.5 |
| Methyldiethanolamine // 1C450b.8 |
| Microchannel plates, image intensifier tubes // 6A002a.2.a.2 |
| Microcircuits, silicon/compound semiconductor // 3A001a |
| Microcomputer microcircuits // 3A001a.3 |
| Microcontroller microcircuits // 3A001a.3 |
| Microcyclus ulei (syn. Dothidella ulei) // 1C354b.3 |
| Microcystins (Cyanginosins) // 1C351d.10 |
| Microfluorination ion sources // 3A233f |
| Microorganisms, genetically modified // 1C353 |
| Microprocessor microcircuits // 3A001a.3 |
| Microwave amplifiers, solid state // 3A001b.4 |
| Microwave assemblies // 3A001b.6 |
| Microwave devices // 3A001b.1 |
| Microwave frequency extenders, mixers/converters // 3A001b.7 |
| Microwave integrated circuit test equipment // 3B002c |
| Microwave integrated circuits // 3A001b.2 |
| Microwave modules // 3A001b.2 |
| Microwave power sources (frequency above 30 Ghz) for accelerating ions // 0B001i.1 |
| Microwave test receivers // 3A002f |
| Microwave transistors // 3A001b.3 |
| Microwave devices // 3A001b.1 |
| Milling machines, (CNC) with two or more coordinated axes // 2B001b |
| Mirror assemblies/segments, space assembly // 6A004c.3 |
| Mirror characterisation equipment, reflectometers // 7B102 |
| Mirror control equipment, phased array/segment // 6A004d.4 |
| Mirror positioning gimbals // 6A004d.3 |
| Mirror structures, lightweight foam or composite type // 6A004a.3 |
| Mirrors, actively cooled or heat pipe cooled // 6A005e.1 |
| Mirrors, beam steering // 6A004a.4 |
| Mirrors, optical // 6A004a |
| Mirrors, partially transmissive // 6A005e.2 |
| Missile (usable) guidance sets // 7A117 |
| Missile telemetry, remote control // 5A101 |
| Mixers, batch & continous // 1B115 |
| Mixers, microwave frequency extenders // 3A001b.7 |
| Modelling/simulation of guidance sets, software // 7D103 |
| Modules, microwave // 3A001b.2 |
| Modules/assemblies, fast switching function // 3A228c |
| Molecular beam epitaxial growth equipment using gas sources // 3B001a.3 |
| Molecular beam mass spectrometers // 3A233e |
| Molecular laser isotopic separation plant // 0B001a.7 |
| Molecular laser separation process equipment & components // 0B001h |
| Molecular pumps // 0B001b.9 |
| Molybdenum & tungsten metals alloys // 1C117 |
| Monitoring systems, toxic gas // 2B351 |
| Monkey pox virus // 1C351a.12 |
| Monolithic integrated circuits, industrial // 3A001a |
| Monospectral imaging sensors // 6A002b |
| Motor stators // 0B001b.10 |
| Movable nozzle control systems, rocket, solid // 9A008d |
| Multi-chamber central wafer handling systems // 3B001e |
| Multi-element detector arrays // 6A002a.3 |
| Multi-element photodiodes & phototransistors // 6A002a.3 |
| Multi-layer hetero-epitaxial material substrates & wafers // 3C001 |
| Multi-layer masks (with phase shift layer), for integrated circuits // 3B001h |
| Multi-element, space qualified focal plan arrays // 6A002e |
| Multichip integrated circuits, industrial // 3A001a |
| Multilevel security capability, equipment // 5A002a.6 |
| Multimode optical fibre & cables, high tensile strength // 5A001c.1 |
| Multiple seal valves incorporating a leak detection port // 2B350g |
| Multipoint initiation systems // 3A232b |
| Multispectral imaging sensors // 6A002b |
| Multistage light gas gun systems // 2B232 |
| Mycoplasma mycoides // 1C352b |
| N, N-Dialkyl [methyl, ethyl or propyl (normal or iso)] aminoethane-2-ols // 1C450b.5 |
| N, N-Dialkyl [methyl, ethyl or propyl (normal or iso)] aminoethane-2-thiols // 1C450b.6 |
| N, N-Dialkyl [methyl, ethyl or propyl (normal or iso)] aminoethyl-2-chlorides // 1C450b.4 |
| N, N-Dialkyl [methyl, ethyl or propyl (normal or iso)] phosphoramidic dihalides // 1C450b.2 |
| Nanocrystalline alloy strips // 1C003c |
| Natural uranium // 0C001 |
| Navigation systems, equipment & components, inertial // 7A003, 7A103 |
| NDT (non-destrictive test) inspection equipment (3D) // 1B001f, 9B007 |
| Neodymium lasers // 6A005c.2 |
| Neodymium lasers, Q-switched // 6A205f |
| Neptunium-237 // 1C012b |
| Network analysers // 3A002e |
| Neural computers/assemblies/components // 4A004b |
| Neural network integrated circuits // 3A001a.9 |
| Neutron detection and measuring instruments // 0A001j |
| Neutron generator systems & tubes // 3A231 |
| Newcastle disease virus // 1C352a.9 |
| Nickel alloy powders // 1C002b.1.a |
| Nickel alloys // 1C002a.1.a, 1C002a.2.a, 1C240 |
| Nickel aluminides // 1C002a.1.a |
| Nickel metal // 1C240, 0C005 |
| Nickel metal powders // 0C005, 1C240 |
| Niobium (columbium) alloy powders // 1C002b.1.b, 1C002a.2.b |
| Nitrided niobium-titanium-tungisten alloy crucibles // 2A225a.7 |
| 2-Nitrodiphenylamine // 1C111c.3 |
| Nitrogen dioxide (dinitrogen tetroxide) // 1C111a.3.b |
| Noise cancellation systems for vessels, active // 8A002o.3.b |
| Noise reduction equipment for vessels, acoustic mounts // 8A002o.3.a |
| Noise reduction systems for vessels, active // 8A002o.3.b |
| Non-composite ceramic materials, technology // 1E002c.2 |
| Non-destructive test inspection equipment // 1B001f |
| Non-destructive test inspection equipment, rocket motor // 9B007 |
| Non-fluorinated polymeric manufactures // 1A003 |
| Non-fluorinated polymeric substances // 1C008 |
| Non-planar absorbers // 1C001a |
| Non-tunable solid state lasers, neodymium // 6A005c.2 |
| Nozzles, aerodynamic isotope separation // 0B001d.1 |
| Nozzles, for pyrolitic deposition // 1B116 |
| Nozzles, rocket motor (liquid) // 9A006e, 9A106b |
| Nozzles, rocket motor (solid) // 9A008c, 9A108b |
| Nuclear-grade graphite // 0C004 |
| Nuclear heat sources // 1C012 |
| Nuclear reactors & reactor components // 0A001 |
| Nuclear reactors fuel element fabrication plant/equipment // 0B005 |
| Nuclear reactors fuel element reprocessing plant/equipment // 0B006 |
| Numerical control for machine tools-software // 2D002 |
| Numerical control for machine tools-technology // 2E003d |
| Object detection and location systems (acoustic) // 6A001a.1.b |
| Ocean salvage systems // 8A001e |
| Operating system development tools/compilers as source code // 4D003a |
| Operating system software, development tools & compilers // 4D003a |
| Operating system software, multi-data stream processing equipment // 4D003a |
| Operating systems for real time processing equipment, software // 4D003d |
| Optical (infrared) tracking (range) radars // 6A108b.2 |
| Optical components for lasers // 6A005e |
| Optical components from zinc selenide or zinc sulphide // 6A004b |
| Optical components, space-qualified // 6A004c |
| Optical computers // 4A004c |
| Optical control equipment // 6A004d |
| Optical detectors & sensors // 6A002a, 6A102 |
| Optical equipment // 6A005f |
| Optical fabrication technologies // 6E003a.2 |
| Optical fibre & accessories, communications // 5A001c.1, 5A001c.2 |
| Optical fibre characterisation equipment // 5B001a |
| Optical fibre couplers or connectors for underwater use // 8A002c |
| Optical fibre manufacturing equipment // 5B001a |
| Optical fibre sensing elements, hydrophones // 6A001a.2.a.2 |
| Optical integrated circuits // 3A001a.6 |
| Optical materials, with non-linear characteristics // 6C004c |
| Optical mirrors (reflectors) // 6A004a, 6A005e.2 |
| Optical sensor cryocoolers // 6A001d.1 |
| Optical sensors-flight control systems-technology // 7E004 |
| Optical sensors, optical fibre // 6A001d.3.a |
| Optical surface coating/treatment technology // 6E003a.1 |
| Optics, (optional components) // 6A004 |
| Optimisation of rocket systems trajectory technology // 7E104 |
| Organic fibres & filamentary materials // 1C010a |
| Organo-metallic compounds // 3C003 |
| Oxide matrix reinforced materials // 1C007f |
| Oxygen iodine (O1-I) laser // 6A005a.5.c.1 |
| Para-hydrogen raman shifters // 6A205e |
| Passive acoustic systems // 6A001a.2 |
| Passive sensors, direction finding systems // 7A115 |
| Pasteurella pseudotuberculosis var pestis (Yersinia pestis) // 1C351c.13 |
| Pathogens // 1C352, 1C353a, 1C351, 1C354 |
| PBAA (polybutadiene-acrylic acid) // 1C111b.3 |
| PBAN (polybutadiene-acrylic acid-acrylonitrile) // 1C111b.4 |
| PEEK (polyether ether ketone) // 1C008c.1 |
| PEK (polyether ketone) // 1C008c.3 |
| PEKEKK (polyether ketone ether ketone ketone) // 1C008c.4 |
| PEKK (polyether ketone ketone) // 1C008c.2 |
| Penetrators/connectors (fibre optic), hull // 8A002c |
| Performance improvement software, navigation systems // 7D003a, 7D003b |
| Peste des petits ruminants virus // 1C351a.10 |
| PFIB: 1,1,3,3,3-Pentafluoro-2-(trifluoromethyl)-1-propene // 1C450a.2 |
| Phased array antennae (in radar) // 5A001d, 6A008e |
| Phased array/segment mirror control equipment // 6A004d.4 |
| Phenylene, lubricating fluids // 1C006b |
| Phosgene: Carbonyl dichloride // 1C450a.4 |
| Phosphate glass // 6C004e |
| Phosphor bronze mesh packings // 1A226 |
| Phosphorus hydrides // 3C004 |
| Phosphor oxychloride // 1C350.2 |
| Phosphorus pentachloride // 1C350.38 |
| Phosphorus pentasulphide // 1C350.47 |
| Phosphorus trichloride // 1C350.7 |
| Photocathodes // 6A002a.2.b.2 |
| Photomultiplier tubes // 6A202 |
| Photovoltaic arrays, space qualified or radiation hardened // 3A001e.1 |
| Piezoelectric polymer & copolymer, components // 1A001b |
| Piezoelectric sensing elements, hydrophones // 6A001a.2.a.2 |
| Pinacolone // 1C350.39 |
| Pinacolyl alcohol // 1C350.28 |
| Piping, multi-walled incorporating a leak detection port // 2B350h |
| Planar absorbers // 1C001a |
| Plant pathogens, bacteria or fungi // 1C354 |
| PLAs (programmable logic arrays) // 3A001a.8 |
| Plasma atomisation & melting furnaces // 2B227b |
| Plasma dry etching equipment // 3B001c |
| Plasma enhanced CVD equipment // 3B001d |
| Plasma enhanced or plasma assisted CVD production equipment // 2B005a.1.c |
| Plasma isotope separation plant // 0B001a.8 |
| Plasma separation process equipment & components // 0B001i |
| Plasma separation RF ion excitation coils // 0B001i.2 |
| Plasma spraying production equipment, with controlled atmosphere // 2B005d |
| Platinised catalysts // 1A225 |
| Plutonium // 0C002 |
| Plutonium-238 in any form // 1C012a |
| Plutonium metal production systems // 0B006 |
| Plutonium nitrate conversion systems // 0B006 |
| Pockel cell electro-optical shuttering // 6A203b.4.c |
| Polybutadiene-acrylic acid (PBAA) // 1C111b.3 |
| Polybutadiene-acrylic acid-acrylonitrile (PBAN) // 1C111b.4 |
| Polysilazanes, precursor for silicon nitride // 1C007e.2 |
| Polythiophene // 1C001c |
| Porcine enterovirus type 9 // 1C352a.11 |
| Porcine herpes virus (Aujeszky's disease) // 1C352a.6 |
| Porous nickel metal // 0C005, 1C240 |
| Positioning equipment, global // 7A105, 7A005 |
| Positioning systems, acoustic // 6A001a.1.d |
| Positive resists for semiconductor lithography // 3C002a |
| Post-flight data processing software // 6D103 |
| Potassium bifluoride // 1C350.41 |
| Potassium cyanide // 1C350.40 |
| Potassium fluoride // 1C350.14 |
| Potassium hydrogen fluoride (see potassium bifluoride) // 1C350.41 |
| Potassium titanyl arsenate (KTA) boules // 6C004b.1 |
| Powder metallurgy manufacturing equipment // 9B009 |
| Powdered metals, as fuel // 1C111a |
| Power supplies, direct current // 0B001j.6, 3A227, 3A226, 0B001j.5 |
| Power systems, air independent, for underwater use // 8A002j |
| Power transmission shaft systems, marine // 8A002o.1.e |
| Precision rotor forming mandrels // 2B209b |
| Precision tracking systems, usable for missiles // 6A108b |
| Precursors for toxic chemical agents // 1C350 |
| Preforms for space vehicles (metal-coated fibre) // 9A110 |
| Preforms, fibrous or filamentary materials // 1C010e, 9A110 |
| Preforms, metal coated fibre (for propulsion systems) // 9A110 |
| Prepreg production equipment // 1B001e |
| Prepregs, fibrous or filamentary materials // 1C010e, 9A110 |
| Presses, hot isostatic // 2B004, 2B204 |
| Pressure sensors, manganin & quartz // 6A226 |
| Pressure transducers // 2B230 |
| Pressure tubes, for fuel elements & primary coolant // 0A001e |
| Pressure vessels, for nuclear reactors // 0A001b |
| Primary cells/batteries, high energy // 3A001e.1.a |
| Probing (test) systems, semiconductor devices // 3B002d |
| Process control instrumentation, for reprocessing plant // 0B006 |
| Processing equipment for bay or bottom cable systems // 6A001a.2.f |
| Processors, digital array // 3A001a.3, 4A003 |
| Processors, digital signal // 3A001a.3, 4A003 |
| Product & tails collector systems, uranium vapour // 0B001g.3, 0B001i.5 |
| Product & tails stations, UF6 // 0B002c |
| Production equipment, propulsion systems & components // 9B115 |
| Production equipment, reentry vehicles // 9B115 |
| Production facilities, reentry vehicles // 9B116 |
| Production facilities, rockets/propulsion systems // 9B116 |
| Programmable gate & logic arrays (FPGAs & FPLAs), field // 3A001a.7, 3A001a.8 |
| Projectile accelerators // 2B232 |
| Projection telescopes, laser diagnostics // 6A005f.4 |
| Projectors, acoustic // 6A001a.1.c |
| Propellant bonding liner systems // 9A008a |
| Propellant control systems // 9A106d |
| Propellant production equipment // 1B115 |
| Propellant storage systems // 9A006f |
| Propellant test and handling equipment // 1B115 |
| Propellants and their constituents // 1B115 |
| Propellants, additives & agents // 1C111 |
| Propeller blades or propfans composite technology // 9E003b.2 |
| Propeller noise reduction software // 8D002 |
| Propeller noise reduction technology // 8E002a |
| Propellers, contrarotating // 8A002o.1.b |
| Propellers, water screw // 8A002o.1 |
| Propulsion system composite components/structures // 9A110, 9A010 |
| Propulsion system test/inspection/production software // 9D101 |
| Propulsion systems, rocket // 9A007 |
| Propulsion systems, rocket // 9A119, 9A009, 9A005 |
| Propulsion systems/components, production equipment // 9B115 |
| Protective and detection equipment // 1A004 |
| Proximity focused image intensifier tubes // 6A203b.4.a |
| Pseudomonas mallei (Burkholderia mallei) // 1C351c.8 |
| Pseudomonas pseudomallei (Burkholderia pseudomallei) // 1C351c.9 |
| Puccinia graminis (syn. Puccinia graminis f. sp. tritici) // 1C354b.4 |
| Puccinia striiformis (syn. Puccinia glumarum) // 1C354b.5 |
| Pulsating Chemical Vapour Deposition production equipment // 2B005a.1.a |
| Pulse excited Q-switched neodymium-doped lasers // 6A205f |
| Pulse generators, high-current for detonators // 3A229 |
| Pulse generators, high-speed // 3A230 |
| Pulse jet engines/components // 9A111 |
| Pulse liquid rocket engines // 9A010d |
| Pulse radar cross-section measurement systems & components // 6B008 |
| Pulsed electron accelerators // 3A201c |
| Pumpjet propulsion systems // 8A002p |
| Pumps, bellows // 2B350i |
| Pumps, canned drive // 2B350i |
| Pumps, centrifugal // 2B350i |
| Pumps, diaphragm // 2B350i |
| Pumps, double-seal // 2B350i |
| Pumps, liquid propellant // 9A106c |
| Pumps, lithium amalgam // 1B233.b.2 |
| Pumps, magnetic drive // 2B350i |
| Pumps, mercury amalgam // 1B233.b.2 |
| Pumps, molecular // 0B001b.9 |
| Pumps, multiple seal // 2B350i |
| Pumps, nuclear reactor coolant // 0A001g |
| Pumps, potassium amide in liquid ammonia // 1B230 |
| Pumps, submersible stage recirculation // 0B004b.4 |
| Pumps, vacuum // 0B002f.2, 2B231, 2B350i |
| Pyrolitic deposition nozzles // 1B116 |
| Pyrolitic deposition systems // 2B104 |
| Pyrolitically derived materials production technology // 1E104 |
| Pyrolised carbon-carbon materials // 1A102 |
| Pyrolysis equipment, for rocket nozzles/re-entry nose tips // 2B104 |
| Pyrolysis equipment, use software // 2D101 |
| Pyrolysis process control equipment // 2B104 |
| Q-switched lasers // 6A205f, 6A005c.2.c |
| QAM techniques development technology // 5E001c.4.a |
| Quartz pressure sensors/transducers // 6A226b |
| 3-Quinuclidinol // 1C350.13 |
| 3-Quinuclidone // 1C350.37 |
| Radar altimeters // 7A106 |
| Radar cross section measurement systems, missile // 6B108 |
| Radar systems & components, civilian // 6A008 |
| Radar systems for space launch vehicles // 6A108a |
| Radiation hardened computers // 4A001 |
| Radiation hardened designed (or rated) robots // 2B007c |
| Radiation hardened detectors // 6A002, 6A102 |
| Radiation hardened electronic computers // 4A001a.2 |
| Radiation hardened integrated circuits, industrial // 3A001a.1 |
| Radiation hardened robots // 2B007c |
| Radiation hardened sensors // 6A002 |
| Radiation hardened TV cameras // 6A203c |
| Radiation sensors, optical fibres // 6A002d.3 |
| Radiation shielding windows // 1A227 |
| Radio equipment // 5A001b.2 |
| Radio frequency ion excitation coils // 0B001i.2 |
| Radiographic equipment // 3A101b |
| Radionuclides, alpha-emitting // 1C236 |
| Radium-226 // 1C237 |
| Radome design software // 6D003d.2 |
| Ram type electrical discharge machines (CNC) // 2B001d |
| Raman shift lasers // 6A205e |
| Ramjet engines/components // 9A011 |
| Range gated illumination systems, underwater // 8A002d.2 |
| Rankine cycle engine, air independent // 8A002j.1 |
| Reactor fuel elements, reprocessing plant & equipment // 0B006 |
| Reactor vessels, chemical // 2B350a |
| Reactors, metal organic chemical vapour deposition (MOCVD) // 3B001a.2 |
| Reactors, nuclear // 0A001a |
| Rebreathing apparatus, underwater swimming // 8A002q |
| Receivers, microwave test // 3A002f |
| Rechargeable cells/batteries, high energy // 3A001e.1.b |
| Reciprocating diesel engine & component technology // 9E003e.2 |
| Recording equipment, analogue & digital tape recorders // 3A002a |
| Reduced observables analysis software // 1D103 |
| Reduction gearing, light-weight marine transmissions // 8A002o.1.d |
| Reentry vehicles // 9A116a |
| Reentry vehicles/components, production equipment // 9B115 |
| Reflectance measuring equipment, absolute // 6B004a |
| Reflectivity (electromagnetic) reducing materials // 1C101 |
| Reflectometers, mirror characterisation // 7B102 |
| Reflectors (mirrors), deformable // 6A004a.1 |
| Refrigeration units // 0B001d.7.b, 1B231 |
| Regulation of composites technology // 1E103 |
| Reinforced composite materials // 1C007f |
| Remote manipulators // 2B225 |
| Remotely controlled manipulators, for submersibles // 8A002i |
| Remotely operated filling equipment, chemical // 2B350f |
| Reprocessing plant, nuclear fuel // 0B006 |
| Resaturated pyrolised materials // 1A102 |
| Resin (thermoset) impregnated continous materials // 1C210c |
| Resin impregnated fibre prepregs, propulsion & space systems // 9A110 |
| Resins, fast reacting ion-exchange // 0B001f.1 |
| Resist material, coated (semiconductor) substrates // 3C002 |
| Resist materials, semiconductor lithography // 3C002 |
| Reticles, integrated circuits of 3A001 // 3B001g |
| Ricin // 1C351d.4 |
| Rickettsia prowasecki // 1C351b.3 |
| Rickettsia quintana // 1C351b.2 |
| Rickettsia rickettsii // 1C351b.4 |
| Rickettsiae // 1C351b |
| Rift Valley fever virus // 1C351a.13 |
| Rinderpest virus // 1C352a.12 |
| Ring-shaped motor stators for multiphase AC motors // 0B001b.10 |
| Ring gyros (laser) & gyro components // 7A002 |
| Ring laser gyro mirror characterising equipment // 7B002 |
| Robot & end-effectors, use software // 2D201 |
| Robot controllers for high explosive handling // 2B207a |
| Robot controllers // 2B007 |
| Robot end-effectors // 2B007, 2B207 |
| Robots operating at altitudes of greater than 30 km // 2B007d |
| Robots with real time 3D image processing or scene analysis // 2B007a |
| Robots, underwater // 8A002h |
| Rocket engines, liquid propellant // 9A005 |
| Rocket engines, solid propellant // 9A107 |
| Rocket fuels // 1C111 |
| Rocket handling & control equipment // 9A115a |
| Rocket launching equipment // 9A115a |
| Rocket modelling, simulaton & integration software // 9D103 |
| Rocket motor cases, solid // 9A008b, 9A108a |
| Rocket motor inspection equipment // 9B007 |
| Rocket motor insulation, solid rocket motor // 9A008a, 9A108a |
| Rocket motors, hybrid // 9A009, 9A109 |
| Rocket nozzles, liquid fuel motor // 9A006e, 9A106b |
| Rocket nozzles, solid fuel motor // 9A008c, 9A108b |
| Rocket stages // 9A009, 9A005, 9A119, 9A007 |
| Rocket/rocket motor, test benches/stands // 9B117 |
| Rockets, sounding // 9A104 |
| Rockets, space launch // 9A004 |
| Roller bearings, solid // 2A001a, 2A001b |
| Rotary position feedback units // 2B008b |
| Rotary shaft seals (for compressors/blowers), UF6 resistant // 0B001c.4 |
| Rotor assemblies, gas centrifuge // 0B001b.2 |
| Rotor assembly mandrels, bellows forming // 2B228a |
| Rotor blade components, tooling for manufacture // 9B009 |
| Rotor blade tip clearance control, compensating system software // 9D004d |
| Rotor centrifugal balancing machines // 2B229 |
| Rotor fabrication/assembly equipment // 2B228a |
| Rotor forming mandrels, precision // 2B209b |
| Rotor straightening equipment or systems // 2B228b |
| Rotor tube baffles, gas centrifuge // 0B001b.5 |
| Rotor tube caps, gas centrifuge // 0B001b.6 |
| Rotor tube cylinders & components, gas centrifuge // 0B001b.3 |
| Rotor tube rings or bellows, gas centrifuge // 0B001b.4 |
| Russian spring-summer encephalitis virus // 1C351a.14 |
| S-parameter test/measurement equipment // 3B002a |
| S20 and S25 photocathodes // 6A002a.2.a.3 |
| Safety cabinets, capable of biological use // 2B352f |
| Salmonella typhi // 1C351c.10 |
| Salvage systems, ocean // 8A001e |
| Satellite communication equipment technology // 5E001b.1 |
| Satellite receivers, global positioning // 7A005, 7A105 |
| Satellites // 9A004 |
| SAW (surface acoustic wave) components // 3A001c.1 |
| Saxitoxin // 1C351d.5 |
| Scanning cameras & systems // 6A003b.2 |
| Scoops for UF6 extraction in gas centrifuges // 0B001b.12 |
| Scramjet engines/components // 9A011 |
| Sea-induced motion control systems, automatic // 8A002n |
| Seal test/inspection equipment, for reactor fuel elements // 0B005 |
| Sealing equipment, for reactor fuel elements // 0B005 |
| Seals, aircraft/aerospace use // 1A001a & c |
| Seals, for surface effect vessels // 8A002k |
| Secondary cells/batteries, high energy // 3A001e.1.b |
| Security equipment, information // 5A002 |
| Security equipment, information, software // 5D002 |
| Segmented mirrors, assembly in space // 6A004c.3 |
| Self-contained diving apparatus // 8A002q |
| Semi-closed diving apparatus // 8A002q |
| Semiconductor component design software, computer-aided design // 3D003 |
| Semiconductor components, extended temperature range // 3A001a.2 |
| Semiconductor compound photocathodes // 6A002a.2.b.3 |
| Semiconductor diode lasers // 6A005b |
| Semiconductor lasers // 6A005b |
| Semiconductor probing systems, electron & laser beam // 3B002d |
| Semiconductor, test equipment // 3B002 |
| Sensors, direction finding systems (passive) // 7A115 |
| Sensors, linear position feedback unit // 2B008a |
| Sensors, multispectral imaging // 6A002b |
| Sensors, on-line development of gas turbines // 9B002 |
| Sensors, optical // 6A002a |
| Sensors, pressure (manganin & quartz) // 6A226 |
| Sensors, radiation hardened for missile use // 6A102 |
| Sensors, superconductive electromagnetic // 6A006h |
| Separation mechanisms for missiles // 9A117 |
| Separation nozzles, aerodynamic isotope separation // 0B001d.1 |
| Separation nozzles, UF6 carrier gas separation // 0B001d.7.c |
| Separation plant, aerodynamic isotope separation // 0B001a.3 |
| Separation plant, isotope // 0B001 |
| Separation process (aerodynamic) equipment & components // 0B001d |
| Separation tubes, aerodynamic isotope separation // 0B001d.2 |
| Separator module housings, uranium metal plasma source // 0B001i.6 |
| Separator module housings, uranium metal vapour source // 0B001i.4 |
| Separators, atomic laser isotopic separation // 0B001g |
| Separators, centrifugal (biological) // 2B352c |
| Separators, electromagnetic isotope // 1B226 |
| Separators, molecular laser isotopic separation // 0B001h |
| Servo valves, propellant control systems // 9A106d |
| Shaft encoders (rotary input type) // 3A001f |
| Sheep pox virus // 1C352a.13 |
| Shiga toxin // 1C351d.6 |
| Shigella dysenteriae // 1C351c.11 |
| Ship positioning systems, acoustic // 6A001a.1.d |
| Shrink fit machines for rotor fabrication/assembly // 2B228a |
| Sidelooking airborne radar (SLAR) // 6A008d |
| Signal analysers // 3A002c.1 |
| Signal generators, frequency synthesiser // 3A002d |
| Signal processing devices, acousto-optic // 3A001c.3 |
| Signal processing equipment, general purpose digital // 4A003 |
| Signal processing equipment, hydrophone arrays // 6A001a.2.c |
| Signal processing equipment, sonar // 6A001a.2.c |
| Signal processor microcircuits // 3A001a.3 |
| Signal tracking development/use technology, laser // 5E001b.2 |
| Signature (electromagnetic) reduction devices // 1C101 |
| Signature (electromagnetic) reduction materials // 1C001 |
| Signature suppression devices, treatments & fittings // 1C101, 1C001 |
| Silahydrocarbon oils // 1C006a.1 |
| Silicon-on-sapphire integrated circuits // 3A001a |
| Silicon carbide (SiC) substrate blanks // 6C004d |
| Silicon microcircuits, industrial // 3A001a |
| Silicon, hetero-epitaxial grown multi-layer substrates // 3C001a |
| Silicone fluid, fluorinated // 1C006b.2 |
| Silver gallium selenide (AgGaSe2 boules // 6C004b.2 |
| Silyated resists for semiconductor lithography // 3C002d |
| Simultaneous initiation arrangements or systems, single & multipoint // 3A232b |
| Single-element photodiodes & phototransistors // 6A002a.1 |
| Single crystal casting control software // 9D004c |
| Single crystal casting equipment // 9B001a |
| Skin friction transducers, wall // 9B008 |
| Skirts, for surface effect vessels // 8A002k |
| Slapper detonators (electric) // 3A232a.3 |
| Slurry propellant control systems // 9A106d |
| Slush hydrogen storage // 9A006c |
| Slush hydrogen transfer systems // 9A006c |
| Small waterplane area vessels // 8A001i |
| Sodium (Na) metal vapour lasers // 6A005a.2.c |
| Sodium bifluoride // 1C350.44 |
| Sodium cyanide // 1C350.45 |
| Sodium fluoride // 1C350.43 |
| Sodium sulphide // 1C350.50 |
| Software for A/D converters usable in missiles // 3D101 |
| Software for asynchronous transfer mode (ATM) equipment // 5D001d.1 |
| Software for bearings and machine tools // 2D001 |
| Software for electromagnetic accelerators // 3D101 |
| Software for grinding and milling machines // 2D202 |
| Software for QAM based radio equipment operating above level 128 // 5D001b.4.a |
| Software for radio equipment operating above 31 GHz // 5D001d.4.b |
| Software for telecomms equipment employing optical switching // 5D001d.3 |
| Software, see sub-category D for controls in each category |
| Software, adaptive control // 2D002 |
| Software, analysis of reduced observables // 1D103 |
| Software, composite materials (organic/metal/carbon matrix) // 1D002 |
| Software, digital computers // 4D |
| Software, electronic devices // 2D002 |
| Software, filament winding machine use // 1D201 |
| Software, for telecomms equipment containing a laser with wavelength > 1750nm // 5D001d.2.a |
| Software, for telecomms equipment incorporating analogue techniques // 5D001d.2.b |
| Software, for the development, production or use of electronic equipment and components // 3D001 |
| Software, multi-datastream processing equipment compilers // 4D003a |
| Software, multi-datastream processing equipment operating systems // 4D003a |
| Software, numerical control // 2D002 |
| Software, real time processing equipment operating systems // 4D003d |
| Software, real time processing in machine tools // 2D002 |
| Software, software development tools as source code // 4D003a |
| Software, source code // 4D003a |
| Software, specially designed for dynamic adaptive routing equipment // 5D001c.3 |
| Software, stored programme controlled equipment // 3D002 |
| Software, tools in source code // 4D003a |
| Solar cells, space qualified or radiation hardened // 3A001e.1.c |
| Solenoids, superconductive // 3A001e.3, 3A201b |
| Solid state imaging devices // 6A002 |
| Solid propellant rocket engines // 9A107 |
| Solid rocket fuels // 1C111 |
| Solid rocket propulsion system, components // 9A008, 9A108 |
| Solid rocket propulsion systems // 9A007, 9A119 |
| Solid roller bearings // 2A001a, 2A001b |
| Solid state cameras // 6A003b.1 |
| Solid state imaging devices // 6A203b.4 |
| Solid state joining equipment, tools/dies/fixtures // 9B004 |
| Solid state lasers, non-tunable // 6A005c.2 |
| Solid state lasers, tunable // 6A005c.1 |
| Solid state microwave amplifiers // 3A001b.4 |
| Solid state switches // 3A228 |
| Sonar log equipment // 6A001b |
| Sonar processing equipment // 6A001a.2.c |
| Sonar signal processing equipment // 6A001a.2.c |
| Sounding rocket test, inspection & production software // 9D101 |
| Sounding rockets // 9A104 |
| Source code, for multi-data-stream processing equipment // 4D003a |
| Space-qualified optical components // 6A004c |
| Space-qualified solid state detectors // 6A002a.1 |
| Space launch vehicle test, inspection & production software // 9D101 |
| Space launch vehicles // 9A004 |
| Space probes // 9A004 |
| Spacecraft // 9A004 |
| Spacecraft components // 9A010 |
| Spacecraft inertial navigation equipment/components // 7A003 |
| Spark-gaps, triggered // 3A228b |
| Spectrum analysers // 3A002c.1 |
| Spherical aluminium powder // 1C111a.1 |
| Spin forming machines // 2B009, 2B209 |
| Spin forming machines combining a flow-forming function // 2B009 |
| Spin forming/flow forming equipment, software for // 2D201 |
| Spindle assemblies, machine tools // 2B008c |
| Spraying production, equipment, plasma with controlled atmosphere // 2B005d |
| Spread spectrum development technology techniques // 5E001b.4 |
| Spread spectrum radio equipment // 5A001b.3 |
| Spread spectrum spreading code generation // 5A002a.5 |
| Sprytron tubes, vacuum // 3A228a |
| Sputter deposition production equipment // 2B005e |
| SQUIDs (superconductive quantum interference devices) // 6A006h |
| SRAMs (static random-access memories) // 3A001a.4 |
| Staging mechanisms for missiles // 9A117 |
| Staphylococcus aureus toxins // 1C351d.7 |
| START gyros & gyro components // 7A002 |
| Static random-access memories (SRAMs) // 3A001a.4 |
| Stators, ring shaped (centrifugal rotor motor) // 0B001b.10 |
| Steam sterilisable freeze drying equipment // 2B352e |
| Steel, maraging // 1C116, 1C216 |
| Step & repeat equipment, semiconductor wafer processing // 3B001f |
| Stirling cycle engine, air independent // 8A002j.4 |
| Storage integrated circuits // 3A001a.4 |
| Storage tanks, chemical // 2B350c |
| Strap down/gimbal gyros & gyro components // 7A002 |
| Streak cameras // 6A203b.1, 6A003a.3, 6A203a.2 |
| Streak tubes, electronic streak cameras // 6A203b.2 |
| Subcavitating hydrofoils // 8A002m |
| Submarine vessel positioning systems, acoustic // 6A001a.1.d |
| Submersible stage recirculation pumps // 0B004b.4 |
| Submersible vehicle systems or equipment // 8A002a, 8A001 |
| Substrate development/production technology, diamond film // 3E002d |
| Substrates, multi-layer hetero-epitaxial materials // 3C001 |
| Substrates, semiconductor with resist coating // 3C002 |
| Sulphur dichloride // 1C350.52 |
| Sulphur monochloride // 1C350.51 |
| Super-ventilated propellers // 8A002o.1.a |
| Supercavitating hydrofoils // 8A002m |
| Supercavitating propellers // 8A002o.1.a |
| Superconductive composite conductors // 1C005 |
| Superconductive devices or circuits // 3A001d |
| Superconductive electromagnetic sensors // 6A006h |
| Superconductive electromagnets or solenoids // 3A001e.3, 3A201b |
| Superconductive electronic device technology // 3E002c |
| Superconductive gates, current switching // 3A001d.2 |
| Superconductive propulsion engines // 8A002o.2.c |
| Superconductive quantum interference devices (SQUIDs) // 6A006h |
| Superplastic forming technology // 2E003b.1.a, 2E003b.2.a |
| Superplastic forming tools, dies, moulds or fixtures // 1B003 |
| Supersonic expansion nozzles for UF6 carrier gas // 0B001h.1 |
| Surface-effect vehicles, (fully skirted variety) // 8A001f |
| Surface-effect vehicles, (rigid sidewalls) // 8A001g |
| Surface acoustic wave devices // 3A001c.1 |
| Surface coating & processing equipment // 2B005 |
| Surface irregularity measuring equipment/instruments // 2B006c |
| Surface skimming (shallow bulk) acoustic wave devices // 3A001c.1 |
| Surface vessel positioning systems, acoustic // 6A001a.1.d |
| Surface vessels & components // 8A001 |
| Survey systems, bathymetric // 6A001a.1.a |
| Swine fever virus (African) // 1C352a.1 |
| Swine fever virus (hog cholera virus) // 1C352a.7 |
| Switches, solid state // 3A228 |
| Syntactic foam, underwater use // 8C001 |
| Synthetic aperture radar (SAR) // 6A008d |
| Synthetic diamond material // 6C004f |
| Systolic array computers/assemblies/components // 4A004a |
| Tanks, chemical storage // 2B350c |
| Tantalum crucibles coated with tantalum carbide/nitride/boride // 2A225c |
| Tantalum made or lined crucibles // 2A225b |
| Tape-laying machines // 1B001b, 1B101b |
| Tape designed for testing recording equipment of entry 3A002a // 3A002a |
| Tape recording equipment // 3A002a |
| Technology for equipment or software specified in 2A, 2B or 2D // 2E001 |
| Technology for interactive graphics, integrated in numerical control equipment // 2E003a |
| Technology for radio equipment employing quadrature amplitude modulation (QAM) // 5E001c.4.a |
| Technology for radio equipment operating at greater than 31 GHz // 5E001c.4.b |
| Technology for telecomms equipment employing a laser // 5E001c.2 |
| Technology for telecomms equipment employing a laser and analogue techniques // 5E001c.2.e |
| Technology for telecomms equipment employing a laser and coherent optical transmission // 5E001c.2.c |
| Technology for telecomms equipment employing a laser and optical amplification using PDFFA // 5E001c.2.b |
| Technology for telecomms equipment employing a laser and WDM techniques // 5E001c.2.d |
| Technology for telecomms equipment employing ATM techniques // 5E001c.1 |
| Technology for telecomms equipment employing common channel signalling // 5E001c.5 |
| Technology for telecomms equipment employing optical switching // 5E001c.3 |
| Technology for the development of software for filament winding machines // 1E203 |
| Technology for the development or productions of metals // 1E202 |
| Technology for the development/production/use of telemetry equipment usable in missiles // 5E101 |
| Technology for the use of composite materials // 1E201 |
| Technology, see sub-category E for controls for each category |
| Technology, airbourne equipment // 7E004 |
| Technology, composite maintenance or repair // 1E002e |
| Technology, composite materials installation // 1E002e |
| Technology, composite structures repair // 1E002f |
| Technology, development of frequency agility techniques // 5E001b.4 |
| Technology, development of spread spectrum techniques // 5E001b.4 |
| Technology, diamond substrate film // 3E002d |
| Technology, for composite materials, production equipment // 1E001 |
| Technology, for the development of software for composites // 1E102 |
| Technology, for the use of material, composite production // 1E101 |
| Technology, gas turbine engines & components // 9E003a, 9E003c |
| Technology, helicopter power transfer systems // 9E003d |
| Technology, hetero-structure semiconductor development // 3E002b |
| Technology, high output type diesel engines // 9E003e |
| Technology, integration software for expert systems // 2E003e |
| Technology, machine tool instruction generators // 2E003d |
| Technology, superconductive electronic device // 3E002c |
| Technology, tilt rotor/wing power transfer systems development // 9E003d |
| Technology, vacuum microelectronic device // 3E002a |
| TEGDN (triethylene glycol dinitrate) propellant additive // 1C111c.2 |
| Telecommunications equipment // 5A001 |
| Telecommunications equipment/system software // 5D001 |
| Telecommunications production equipment // 5B001a |
| Telecommunications test equipment // 5B001a |
| Telemetering & telecontrol equipment // 5A101 |
| Telemetry equipment/systems // 5A101 |
| Television cameras, underwater // 8A002d.1 |
| Tellurium (Te) with purity of 99,995 % or better // 6C002a |
| Tempest type equipment // 5A002a.4 |
| Terrestrial geophones // 6A001b |
| Teschen disease virus // 1C352a.14 |
| Test benches/stands, rockets/rocket motors // 9B117 |
| Test chambers, aerosol challenge // 2B352g |
| Test equipment - propellants and their constituents // 1B115 |
| Test equipment for radio equipment employing QAM > 128 // 5B001b.4.a |
| Test equipment for radio equipment operating at greater than 31 GHz // 5B001b.4.b |
| Test equipment for telecomms equipment employing a laser // 5B001b.2 |
| Test equipment for telecomms equipment employing a laser and analogue techniques // 5B001b.2.d |
| Test equipment for telecomms equipment employing a laser and coherent optical transmission // 5B001b.2.c |
| Test equipment for telecomms equipment employing a laser and with optical amplification // 5B001b.2.b |
| Test equipment for telecomms equipment employing ATM // 5B001b.1 |
| Test equipment for telecomms equipment employing digital techniques // 5B001b.1 |
| Test equipment for telecomms equipment employing optical switching // 5B001b.3 |
| Test equipment for telecomms equipment utilising common channel signalling // 5B001b.5 |
| Test equipment, semiconductor devices // 3B002 |
| Test piece support structures for vibration test systems // 2B116d |
| Test receivers, microwave // 3A002f |
| Test tape designed for recording equipment of entry 3A002a // 3A002a |
| Tetrodotoxin // 1C351d.8 |
| Thallium arsenic selenide (Tl3AsSe3 or TAS) // 6C004b.3 |
| Thermal imaging equipment // 6A002c |
| Thermal ionisation mass spectrometers (TIMS) // 3A233c |
| Thermal sensors, optical fibre // 6A002d.3 |
| Thermoplastic liquid crystal copolymers // 1C008b |
| Thermoset resin impregnated materials // 1C210c |
| Thio-ethers (alkylphenylene), lubricating fluids // 1C006b.1 |
| Thiodiglycol // 1C350.1 |
| Thionyl chloride // 1C350.9 |
| Thorium metal/alloys/compounds/concentrates // 0C001 |
| Thrust chamber, high pressure // 9A006e, 9A106c |
| Thrust chamber, high pressure // 9A108c |
| Thrust chambers - liquid rocket propulsion systems // 9A006h |
| Thrust vector control systems & sub-systems // 9A008d |
| Thulium-YAG (Tm:YAG) lasers // 6A005c.1 |
| Thulium-YSGG (Tm:YSGG) lasers // 6A005c.1 |
| Tick-borne encephalitis virus // 1C351a.14 |
| Tilt rotor/tilt wing power transfer system technology // 9E003d |
| Time or frequency domain processing & correlation equipment // 6A001a.2.c |
| TIMS (Thermal ionization mass spectrometers) // 3A233c |
| Titanium-sapphire (Ti: Al2O3) lasers // 6A005c.1 |
| Titanium alloy powders // 1C002b.1.c |
| Titanium alloys, as tubes/solid forms/forgings // 1C202b, 1C002a.1.b, 1C002a.2.c |
| Titanium aluminides // 1C002a.1.b |
| Titanium doped sapphire laser host material // 6C005a |
| TMETN (trimethylolethane trinitrate) // 1C111c.4 |
| Tooling for powder metallurgy rotor blade component manufacture // 9B009 |
| Tow-placement machines // 1B001b |
| Towed acoustic hydrophone arrays // 6A001a.2.b |
| Toxic gas monitoring systems // 2B351 |
| Toxins, natural // 1C351d |
| Tracking radar // 6A0081 |
| Tracking systems, precision // 6A0081, 6A108b |
| Transducers, acoustic projectors // 6A001a.1.c |
| Transducers, hydrophone // 6A001a.2.a |
| Transducers, wall skin friction // 9B008 |
| Transient recorders (Waveform digitisers) // 3A002a.5 |
| Transistor test equipment, S-parameter measurement // 3B002a |
| Transistors, microwave // 3A001b.3 |
| Travelling wave tubes (TWTs) // 3A001b.1.a |
| Tray exchange towers, hydrogen sulphide-water // 0B004b.4 |
| Triethanolamine // 1C350.46 |
| Triethanolamine hydrochloride // 1C350.53 |
| Triethyl phosphite // 1C350.30 |
| Triethylene glycol dinitrate (TEGDN) // 1C111c.2 |
| Triggered spark-gaps // 3A228b |
| Trimethyl phosphite // 1C350.8 |
| Triodes, cold cathode // 3A228a |
| Tritium plant // 1B231 |
| Tritium recovery, extraction & concentration facilities // 1B231 |
| Tritium, compounds & mixtures // 1C235 |
| Trusted computer system evaluation criteria (TCSEC) capability // 5A002a.6 |
| Tubes, frequency agile // 3A001b.1 |
| Tubes, gas krytron // 3A228a |
| Tubes, vacuum sprytron // 3A228a |
| Tunable band-pass filters // 3A001b.5 |
| Tunable lasers, solid state // 6A005c.1 |
| Tungsten & molybdenum metal alloys // 1C117 |
| Tungsten alloys // 1C004 |
| Tungsten alloys, as parts // 1C226 |
| Tungsten carbide, as parts // 1C226 |
| Tungsten, as parts // 1C226 |
| Turbines, gas aero engines // 9A001 |
| Turbines, gas aero engines, test software // 9D004b |
| Turbocompound engines // 9A101 |
| Turboexpanders and turboexpander-compressors // 1B232 |
| Turbofan & turbojet engines, lightweight // 9A101 |
| Turning machines (CNC) // 2B001a |
| TV cameras, radiation-hardened // 6A203c |
| Two dimensional focal plane arrays // 6A002a.3 |
| TWTs (Travelling Wave Tubes) // 3A001b.1.a |
| UF6/carrier gas separation systems // 0B001h.5, 0B001d.7 |
| UF6 auxiliary isotope separation/enrichment equipment // 0B002 |
| UF6 cold traps // 0B002b, 0B001d.7.d |
| UF6 desublimers // 0B002b |
| UF6 liquefaction stations // 0B002d |
| UF6 mass spectrometers/ion sources // 0B002g |
| UF6 piping & header systems // 0B002e |
| UF6 product & tails stations // 0B002c |
| UF6 resistant compounds & powders // 0C005 |
| UF6 vacuum pumps // 0B002f.2 |
| Underwater (propeller) noise reduction software // 8D002 |
| Underwater cameras, photographic // 8A002d-f |
| Underwater communication cable // 5A001c.2 |
| Underwater communications systems // 5A001b.1 |
| Underwater electronic imaging systems // 8A002f |
| Underwater noise reduction technology // 8E002 |
| Underwater optical fibre cables & accessories // 5A001c.2 |
| Underwater robots, computer controlled // 8A002h |
| Underwater swimming apparatus // 8A002q |
| Underwater vehicles, industrial // 8A001 |
| Underwater velocity measurement equipment // 6A001b |
| Underwater vision systems // 8a002d |
| Unmanned tethered submersible vehicles // 8A001c |
| Unmanned untethered submersible vehicles // 8A001d |
| Uranium conversion plant & equipment // 0B003 |
| Uranium cooling equipment // 0B001g.2 |
| Uranium electromagnetic separator vacuum housings // 0B001j.3 |
| Uranium fluoride (vapour product & tails collector systems) // 0B001g.3 |
| Uranium hexafluoride (UF6) resistant compounds & powders // 0C005 |
| Uranium isotopes separation, lasers or laser systems // 0B001g.5, 0B001h.6 |
| Uranium metal, alloys, compounds & concentrates // 0C001, 0C002 |
| Uranium oxidation systems // 0B001e.6 |
| Uranium pentafluoride (UF5) product filter collectors // 0B001h.2 |
| Uranium plasma generation systems // 0B001i.3 |
| Uranium titanium alloys // 1C004 |
| Uranium vapour product & tails collector systems // 0B001g.3 |
| Uranium, enriched in Uranium-233 or Uranium-235 // 0C002 |
| Vacuum furnaces // 2B226, 2B227 |
| Vacuum headers // 0B002f.1 |
| Vacuum housings for uranium electromagnetic separators // 0B001j.3 |
| Vacuum induction furnace, power supplies // 2B226 |
| Vacuum induction furnaces // 2B226 |
| Vacuum manifolds // 0B002f.1 |
| Vacuum melting, remelt & casting furnaces // 2B227 |
| Vacuum microelectronic device development/production technology // 3E002a |
| Vacuum pump // 2B231, 0B002f.2, 0B002f.2, 2B350i |
| Vacuum tubes, industrial electronic // 3A228, 3A001b.1 |
| Valves, bellows // 2B350g |
| Valves, bellows seal // 2A226 |
| Valves, diaphragm // 2B350g |
| Valves, double-seal // 2B350g |
| Valves, gaseous diffusion isotope separation // 0B001c.6 |
| Valves, industrial electronic // 3A001b.1, 3A228a, 3A228b |
| Valves, multiple seal incorporating a leak detection port // 2B350g |
| Valves, non-return (check) // 2B350g |
| Variola virus // 1C351a.15 |
| Vector processors/assemblies // 4A003 |
| Vehicles, space/space craft/rocket launch support // 9A115b |
| Velocity interferometers (VISARs) // 6A225 |
| Velocity measurement equipment, underwater // 6A001b |
| Venezuelan equine encephalitis virus // 1C351a.16 |
| Ventilated propellers // 8A002o.1.a |
| Verotoxin // 1C351d.9 |
| Vesicular stomatitis virus // 1C352a.15 |
| Vessel noise reduction equipment // 8A002.o.3 |
| Vessel positioning systems, acoustic // 6A001a.1.d |
| Vessels, marine // 8A001 |
| Vibration test equipment production and use software // 2D101 |
| Vibration test equipment using digital control techniques // 2B116a |
| Vibration test equipment, acoustic // 9B006 |
| Vibration thruster (shaker units) for vibration test systems // 2B116c |
| Vibrio cholerae // 1c351c.12 |
| Video cameras incorporating solid state sensors // 6A003b.1 |
| Vinylidene fluoride copolymers // 1C009a, 1A001 |
| Viruses // 1C351, 1C352, 1C352a, 1C351a |
| Viscous software, 2D or 3D engine flow modelling // 9D004a |
| Vision systems, underwater // 8A002d |
| Vortex tube units, UF6 separation from carrier gas // 0B001d.7.c |
| Vortex tubes, aerodynamic isotope separation // 0B001d.2 |
| Wafer handling systems, semiconductor // 3b001e |
| Wafer processing, semiconductor manufacture // 3B001f |
| Wafers, comprising multiple epitaxially grown layers // 3C001 |
| Wafers, semiconductor with function determined // 3A001a |
| Wall skin friction transducers // 9B008 |
| Water-hydrogen sulphide exchange tray columns // 1B229 |
| Water-screw propellers // 8A002o.1 |
| Water distillation towers, heavy // 0B004b.4 |
| Water jet (pumpjet) propulsion systems // 8A002p |
| Water jet cutting machines (CNC) // 2B001e.1.a |
| Water tunnels, propulsion model acoustic field measurement // 8B001 |
| Water-hydrogen sulphide exchange towers // 0B004b.1 |
| Waveform digitisers (transient recorders) // 3A002a.5 |
| Wax pattern preparation equipment, ceramic shell // 9B001d |
| Weaving machines // 1B001c |
| Western equine encephalitis virus // 1C351a.17 |
| Wet-spinning equipment for refractory ceramics // 1B001d.3, 1B101d.3 |
| White pox // 1C351a.18 |
| Wide-swath bathymetric survey systems // 6A001a.1.a |
| Wind tunnel aero-model technology // 9E003b.1 |
| Wind tunnel, control systems // 9B005 |
| Wind tunnels, usable for missiles // 9B105 |
| Windows, glass for nuclear radiation shielding // 1A227 |
| Work stations, as computers // 4A003b |
| X-ray equipment, radiographic // 3A101b, 3A201c |
| X-ray sensitive resist materials // 3C002c |
| Xanthomonas albilineans // 1C354a.1 |
| Xanthomonas capestris pv. aurantifolia // 1C354a.2 |
| Xanthomonas citri // 1C354a.2 |
| Yellow fever virus // 1C351a.19 |
| Yttrium oxide (yttria) (Y2O3), crucibles made of or coated with // 2A225a.8 |
| Zinc selenide (ZnSe), substrate blanks // 6C004a |
| Zinc sulphide (ZnS), substrate blanks // 6C004a |
| Zirconium fluoride (ZrF4) glass // 6C004e |
| Zirconium metal and alloy powder // 1C111a.2 |
| Zirconium metal and alloy tubes & assemblies // 0A001f |
| Zirconium metal, alloy and compounds // 1C234 |
| Zirconium oxide (zirconia) (ZrO2) made/coated crucibles // 2A225a.9 |
| Zoonoses // 1C351 |