ANNEX IISupplementary provisions
ANNEX II Goods and technology referred to in point (a) of Article 3(1) and in Article 7 PART I All goods and technology listed in Annex I to Regulation (EC) No 428/2009. PART II Other items, materials, equipment, goods and technology which could contribute to DPRK's nuclear-related, ballistic missile-related or other weapons of mass destruction-related programmes. Unless otherwise stated, reference numbers used in the column entitled ‘Description’ refer to the descriptions of dual use items and technology set out in Annex I to Regulation (EC) No 428/2009. ‘A reference number in the column entitled Related item from Annex I to Regulation (EC) No 428/2009’ means that the characteristics of the item described in the column ‘Description’ lie outside the parameters set out in the description of the dual use entry referred to. Definitions of terms between ‘single quotation marks’ are given in a technical note to the relevant item. Definitions of terms between ‘double quotation marks’ can be found in Annex I to Regulation (EC) No 428/2009. GENERAL NOTES The object of the prohibitions contained in this Annex should not be defeated by the export of any non-prohibited goods (including plant) containing one or more prohibited components when the prohibited component or components are the principal element of the goods and can feasibly be removed or used for other purposes. N.B.: In judging whether the prohibited component or components are to be considered the principal element, it is necessary to weigh the factors of quantity, value and technological know-how involved and other special circumstances which might establish the prohibited component or components as the principal element of the goods being procured. Goods specified in this Annex include both new and used goods. GENERAL TECHNOLOGY NOTE (GTN) (To be read in conjunction with Part C.) The sale, supply, transfer or export of ‘technology’ which is ‘required’ for the ‘development’, ‘production’ or ‘use’ of goods the sale, supply, transfer or export of which is prohibited in Part A (Goods) below, is prohibited in accordance with the provisions of Part B. The ‘technology’ ‘required’ for the ‘development’, ‘production’ or ‘use’ of prohibited goods remains under prohibition even when applicable to non-prohibited goods. Prohibitions do not apply to that ‘technology’ which is the minimum necessary for the installation, operation, maintenance (checking) and repair of those goods which are not prohibited. Prohibitions on ‘technology’ transfer do not apply to information ‘in the public domain’, to ‘basic scientific research’ or to the minimum necessary information for patent applications. A. GOODS NUCLEAR MATERIALS, FACILITIES, AND EQUIPMENT II.A0. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A0.001 Hollow cathode lamps as follows: a. Iodine hollow cathode lamps with windows in pure silicon or quartz; b. Uranium hollow cathode lamps. II.A0.002 Faraday isolators in the wavelength range 500 nm-650 nm. II.A0.003 Optical gratings in the wavelength range 500 nm-650 nm. II.A0.004 Optical fibres in the wavelength range 500 nm-650 nm coated with anti-reflecting layers in the wavelength range 500 nm-650 nm and having a core diameter greater than 0,4 mm but not exceeding 2 mm. II.A0.005 Nuclear reactor vessel components and testing equipment, other than those specified in 0A001, as follows: a. Seals; b. Internal components; c. Sealing, testing and measurement equipment. 0A001 II.A0.006 Nuclear detection systems, other than those specified in 0A001.j. or 1A004.c., for detection, identification or quantification of radioactive materials or radiation of nuclear origin and specially designed components thereof. N.B: For personal equipment refer to I.A1.004 below. 0A001.j. 1A004.c. II.A0.007 Bellows-sealed valves other than those specified in 0B001.c.6., 2A226 or 2B350, made of aluminium alloy or stainless steel type 304, 304L or 316L. 0B001.c.6. 2A226 2B350 II.A0.008 Laser mirrors, other than those specified in 6A005.e., consisting of substrates having a thermal expansion coefficient of 10-6 K-1 or less at 20 °C (e.g. fused silica or sapphire). Note: This item does not cover optical systems specially designed for astronomical applications, except if the mirrors contain fused silica. 0B001.g.5. 6A005.e. II.A0.009 Laser lenses, other than those specified in 6A005.e.2, consisting of substrates having a thermal expansion coefficient of 10 – 6 K – 1 or less at 20 °C (e.g. fused silica). 0B001.g. 6A005.e.2. II.A0.010 Pipes, piping, flanges, fittings made of, or lined with nickel, or nickel alloy containing more than 40 % nickel by weight, other than those specified in 2B350.h.1. 2B350 II.A0.011 Vacuum pumps other than those specified in 0B002.f.2. or 2B231, as follows: a. Turbo-molecular pumps having a flow-rate equal to or greater than 400 l/s; b. Roots type vacuum roughing pumps having a volumetric aspiration flow-rate greater than 200 m 3 /h; c. Bellows-sealed, scroll, dry compressor, and bellows-sealed, scroll, dry vacuum pumps. 0B002.f.2. 2B231 II.A0.012 Shielded enclosures for the manipulation, storage and handling of radioactive substances (hot cells). 0B006 II.A0.013 ‘Natural uranium’ or ‘depleted uranium’ or thorium in the form of metal, alloy, chemical compound or concentrate and any other material containing one or more of the foregoing, other than those specified in 0C001. 0C001 II.A0.014 Detonation chambers having a capacity of explosion absorption of more than 2,5 kg TNT equivalent. SPECIAL MATERIALS AND RELATED EQUIPMENT II.A1. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A1.001 Bis(2-ethylhexyl) phosphoric acid (HDEHP or D2HPA) Chemical Abstract Number (CAS): [CAS 298-07-7] solvent in any quantity, with a purity greater than 90 %. II.A1.002 Fluorine gas CAS: [7782-41-4], with a purity of at least 95 %. II.A1.003 Ring-shaped seals and gaskets, having an inner diameter of 400 mm or less, made of any of the following materials: a. Copolymers of vinylidene fluoride having 75 % or more beta crystalline structure without stretching; b. Fluorinated polyimides containing 10 % by weight or more of combined fluorine; c. Fluorinated phosphazene elastomers containing 30 % by weight or more of combined fluorine; d. Polychlorotrifluoroethylene (PCTFE, e.g. Kel-F ®); e. Fluoro-elastomers (e.g. Viton ®, Tecnoflon ®); f. Polytetrafluoroethylene (PTFE). 1A001 II.A1.004 Personal equipment for detecting radiation of nuclear origin, other than that specified in 1A004.c., including personal dosimeters. 1A004.c. II.A1.005 Electrolytic cells for fluorine production, other than those specified in 1B225, with an output capacity greater than 100 g of fluorine per hour. 1B225 II.A1.006 Catalysts, other than those specified in 1A225 or 1B231, containing platinum, palladium or rhodium, usable for promoting the hydrogen isotope exchange reaction between hydrogen and water for the recovery of tritium from heavy water or for the production of heavy water. 1A225 1B231 II.A1.007 Aluminium and its alloys, other than those specified in 1C002.b.4. or 1C202.a., in crude or semi-fabricated form having either of the following characteristics: a. ‘Capable of’ an ultimate tensile strength of 460 MPa or more at 293 K (20 °C); or b. Having a tensile strength of 415 MPa or more at 298 K (25 °C). Technical note: The phrase alloys ‘capable of’ encompasses alloys before or after heat treatment. 1C002.b.4. 1C202.a. II.A1.008 Magnetic metals, of all types and of whatever form, other than those specified in 1C003.a. having an ‘initial relative permeability’ of 120 000 or more and a thickness between 0,05 mm and 0,1 mm. Technical note: Measurement of ‘initial relative permeability’ must be performed on fully annealed materials. 1C003.a. II.A1.009 ‘Fibrous or filamentary materials’ or prepregs, other than those specified in 1C010.a., 1C010.b., 1C210.a. or 1C210.b., as follows: a. Aramid ‘fibrous or filamentary materials’ having either of the following characteristics: 1.A ‘specific modulus’ exceeding 10 × 10 6 m; or 2.A ‘specific tensile strength’ exceeding 17 × 10 4 m; b. Glass ‘fibrous or filamentary materials’ having either of the following characteristics: 1.A ‘specific modulus’ exceeding 3,18 × 10 6 m; or 2.A ‘specific tensile strength’ exceeding 76,2 × 10 3 m; c. Thermoset resin-impregnated continuous ‘yarns’, ‘rovings’, ‘tows’ or ‘tapes’ with a width of 15 mm or less (once prepregs), made from glass ‘fibrous or filamentary materials’ other than those specified in I.A1.010.a. below; d. Carbon ‘fibrous or filamentary materials’; e. Thermoset resin-impregnated continuous ‘yarns’, ‘rovings’, ‘tows’, or ‘tapes’, made from carbon ‘fibrous or filamentary materials’; f. Polyacrylonitrile (PAN) continuous ‘yarns’, ‘rovings’, ‘tows’ or ‘tapes’; g. Para-aramid ‘fibrous or filamentary materials’ (Kevlar® and other Kevlar®-like fibres). 1C010.a. 1C010.b. 1C210.a. 1C210.b. II.A1.010 Resin-impregnated or pitch-impregnated fibres (prepregs), metal or carbon-coated fibres (preforms) or ‘carbon fibre preforms’, as follows: a. Made from ‘fibrous or filamentary materials’ specified in I.A1.009 above; b. Epoxy resin ‘matrix’ impregnated carbon ‘fibrous or filamentary materials’ (prepregs), specified in 1C010.a., 1C010.b. or 1C010.c., for the repair of aircraft structures or laminates, of which the size of individual sheets does not exceed 50 cm × 90 cm; c. Prepregs specified in 1C010.a., 1C010.b. or 1C010.c., when impregnated with phenolic or epoxy resins having a glass transition temperature (Tg) less than 433 K (160 °C) and a cure temperature lower than the glass transition temperature. 1C010 1C210 II.A1.011 Reinforced silicon carbide ceramic composites usable for nose tips, re-entry vehicles, nozzle flaps, usable in ‘missiles’, other than those specified in 1C107. 1C107 II.A1.012 Not used. II.A1.013 Tantalum, tantalum carbide, tungsten, tungsten carbide and alloys thereof, other than those specified in 1C226, having both of the following characteristics: a. In forms having a hollow cylindrical or spherical symmetry (including cylinder segments) with an inside diameter between 50 mm and 300 mm; and b. A mass greater than 5 kg. 1C226 II.A1.014 ‘Elemental powders’ of cobalt, neodymium or samarium or alloys or mixtures thereof containing at least 20 % by weight of cobalt, neodymium or samarium, with a particle size less than 200 μm. Technical note: ‘Elemental powder’ means a high purity powder of one element. II.A1.015 Pure tributyl phosphate (TBP) [CAS No 126-73-8] or any mixture having a TBP content of more than 5 % by weight. II.A1.016 Maraging steel, other than those specified by 1C116 or 1C216. Technical notes: 1. The phrase maraging steel ‘capable of’ encompasses maraging steel before or after heat treatment. 2. Maraging steels are iron alloys generally characterised by high nickel, very low carbon content and the use of substitutional elements or precipitates to produce strengthening and age-hardening of the alloy. 1C116 1C216 II.A1.017 Metals, metal powders and material as follows: a. Tungsten and tungsten alloys, other than those specified in 1C117, in the form of uniform spherical or atomized particles of 500 μm (micrometre) diameter or less with a tungsten content of 97 % by weight or more; b. Molybdenum and molybdenum alloys, other than those specified in 1C117, in the form of uniform spherical or atomized particles of 500 μm diameter or less with a molybdenum content of 97 % by weight or more; c. Tungsten materials in the solid form, other than those specified in 1C226 having material compositions as follows: 1. Tungsten and alloys containing 97 % by weight or more of tungsten; 2. Copper infiltrated tungsten containing 80 % by weight or more of tungsten; or 3. Silver infiltrated tungsten containing 80 % by weight or more of tungsten. 1C117 1C226 II.A1.018 Soft magnetic alloys, other than those specified in 1C003, having a chemical composition as follows: a. Iron content between 30 % and 60 %; and b. Cobalt content between 40 % and 60 %. 1C003 II.A1.019 Not used. II.A1.020 Graphite, other than that specified in 0C004 or 1C107.a., designed or specified for use in Electrical Discharge Machining (EDM) machines. 0C004 1C107.a. II.A1.021 Steel alloys in sheet or plate form, having any of the following characteristics: a. Steel alloys ‘capable of’ ultimate tensile strength of 1 200 MPa or more, at 293 K (20 °C); or b. Nitrogen-stabilised duplex stainless steel. Note: the phrase alloys ‘capable of’ encompasses alloys before or after heat treatment. Technical note: ‘nitrogen-stabilised duplex stainless steel’ has a two-phase microstructure consisting of grains of ferritic and austenitic steel with the addition of nitrogen to stabilise the microstructure. 1C116 1C216 II.A1.022 Carbon-Carbon Composite material. 1A002.b.1 II.A1.023 Nickel alloys in crude or semi-fabricated form, containing 60 % by weight or more nickel. 1C002.c.1.a II.A1.024 Titanium alloys in sheet or plate form ‘capable of’ an ultimate tensile strength of 900 MPa or more at 293 K (20 °C). Note: the phrase alloys ‘capable of’ encompasses alloys before or after heat treatment. 1C002.b.3 II.A1.025 Titanium alloys, other than those specified in 1C002 and 1C202. 1C002 1C202 II.A1.026 Zirconium and zirconium alloys, other than those specified in 1C011, 1C111 and 1C234. 1C011 1C111 1C234 II.A1.027 Explosive materials other than those specified in 1C239, or materials or mixtures containing more than 2 % by weight of such explosive materials, with a crystalline density higher than 1,5 g/cm 3 and with a detonation speed higher than 5 000 m/s. 1C239 MATERIALS PROCESSING II.A2. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A2.001 Vibration test systems, equipment and components thereof, other than those specified in 2B116: a. Vibration test systems employing feedback or closed loop techniques and incorporating a digital controller, capable of vibrating a system at an acceleration equal to or greater than 0,1 g rms between 0,1 Hz and 2 kHz and imparting forces equal to or greater than 50 kN, measured ‘bare table’; b. Digital controllers, combined with specially designed vibration test ‘software’, with a ‘real-time control bandwidth’ greater than 5 kHz designed for use with vibration test systems specified in a.; Technical note: ‘Real-time control bandwidth’ is defined as the maximum rate at which a controller can execute complete cycles of sampling, processing data and transmitting control signals. c. Vibration thrusters (shaker units), with or without associated amplifiers, capable of imparting a force equal to or greater than 50 kN, measured ‘bare table’, and usable in vibration test systems specified in a.; d. Test piece support structures and electronic units designed to combine multiple shaker units in a system capable of providing an effective combined force equal to or greater than 50 kN, measured ‘bare table’, and usable in vibration systems specified in a. Technical note: ‘bare table’ means a flat table, or surface, with no fixture or fittings. 2B116 II.A2.002 Machine tools, other than those specified in 2B001 or 2B201 and any combination thereof, for removing (or cutting) metals, ceramics, or ‘composites’ that, according to the manufacturer's technical specification, can be equipped with electronic devices for ‘numerical control’, having positioning accuracies of equal to or less (better) than 30 μm according to ISO 230/2 (1988) ( 1 ) or national equivalents along any linear axis. 2B001 2B201 II.A2.002a Components and numerical controls, specially designed for machine tools specified in 2B001, 2B201 or I.A2.002 above. II.A2.003 Balancing machines and related equipment as follows: a. Balancing machines, designed or modified for dental or other medical equipment, having all the following characteristics: 1. Not capable of balancing rotors/assemblies having a mass greater than 3 kg; 2. Capable of balancing rotors/assemblies at speeds greater than 12 500 rpm; 3. Capable of correcting unbalance in two planes or more; and 4. Capable of balancing to a residual specific unbalance of 0,2 g × mm per kg of rotor mass; b. ‘Indicator heads’ designed or modified for use with machines specified in a. above. Technical note: ‘Indicator heads’ are sometimes known as balancing instrumentation. 2B119 II.A2.004 Remote manipulators that can be used to provide remote actions in radiochemical separation operations or hot cells, other than those specified in 2B225, having either of the following characteristics: a. A capability of penetrating a hot cell wall of 0,3 m or more (through the wall operation); or b. A capability of bridging over the top of a hot cell wall with a thickness of 0,3 m or more (over the wall operation). Technical note: Remote manipulators provide translation of human operator actions to a remote operating arm and terminal fixture. They may be of master/slave type or operated by joystick or keypad. 2B225 II.A2.005 Controlled atmosphere heat treatment furnaces or oxidation furnaces capable of operation at temperatures above 400 °C. Note: This item does not cover tunnel kilns with roller or car conveyance, tunnel kilns with conveyor belt, pusher type kilns or shuttle kilns, specially designed for the production of glass, tableware ceramics or structural ceramics. 2B226 2B227 II.A2.006 Not used. II.A2.007 ‘Pressure transducers’, other than those defined in 2B230, capable of measuring absolute pressures at any point in the range 0 to 200 kPa and having both of the following characteristics: a. Pressure sensing elements made of or protected by ‘Materials resistant to corrosion by uranium hexafluoride (UF6)’; and b. Having either of the following characteristics: 1. A full scale of less than 200 kPa and an ‘accuracy’ of better than ± 1 % of full scale; or 2. A full scale of 200 kPa or greater and an ‘accuracy’ of better than 2 kPa. Technical note: For the purposes of 2B230 ‘accuracy’ includes non-linearity, hysteresis and repeatability at ambient temperature. 2B230 II.A2.008 Liquid-liquid contacting equipment (mixer-settlers, pulsed columns, plate columns, centrifugal contactors); and liquid distributors, vapour distributors or liquid collectors designed for such equipment, where all surfaces that come in direct contact with the chemical(s) being processed are made from any of the following materials: a. Alloys with more than 25 % nickel and 20 % chromium by weight; b. Fluoropolymers; c. Glass (including vitrified or enamelled coating or glass lining); d. Graphite or ‘carbon graphite’; e. Nickel or alloys with more than 40 % nickel by weight; f. Tantalum or tantalum alloys; g. Titanium or titanium alloys; h. Zirconium or zirconium alloys; or i. Stainless steel. Technical note: ‘Carbon graphite’ is a composition consisting of amorphous carbon and graphite, in which the graphite content is 8 % or more by weight. 2B350.e. II.A2.009 Industrial equipment and components, other than those specified in 2B350.d., as follows: Heat exchangers or condensers with a heat transfer surface area greater than 0,05 m 2 , and less than 30 m 2 ; and tubes, plates, coils or blocks (cores) designed for such heat exchangers or condensers, where all surfaces that come in direct contact with the fluid(s) are made from any of the following materials: a. Alloys with more than 25 % nickel and 20 % chromium by weight; b. Fluoropolymers; c. Glass (including vitrified or enamelled coating or glass lining); d. Graphite or ‘carbon graphite’; e. Nickel or alloys with more than 40 % nickel by weight; f. Tantalum or tantalum alloys; g. Titanium or titanium alloys; h. Zirconium or zirconium alloys; i. Silicon carbide; j. Titanium carbide; or k. Stainless steel. Note: This item does not cover vehicle radiators. Technical note: The materials used for gaskets and seals and other implementation of sealing functions do not determine the status of control of the heat exchanger. 2B350.d. II.A2.010 Multiple-seal, and seal-less pumps, other than those specified in 2B350.i, suitable for corrosive fluids, or vacuum pumps and casings (pump bodies), preformed casing liners, impellers, rotors or jet pump nozzles designed for such pumps, in which all surfaces that come in direct contact with the chemical(s) being processed are made from any of the following materials: a. Alloys with more than 25 % nickel and 20 % chromium by weight; b. Ceramics; c. Ferrosilicon; d. Fluoropolymers; e. Glass (including vitrified or enamelled coatings or glass lining); f. Graphite or ‘carbon graphite’; g. Nickel or alloys with more than 40 % nickel by weight; h. Tantalum or tantalum alloys; i. Titanium or titanium alloys; j. Zirconium or zirconium alloys; k. Niobium (columbium) or niobium alloys; l. Stainless steel; m. Aluminium alloys; or n. Rubber. Technical notes: The materials used for gaskets and seals and other implementations of sealing functions do not determine the status of control of the pump. The term ‘rubber’ encompasses all kinds of natural and synthetic rubbers. 2B350.i. II.A2.011 ‘Centrifugal separators’, other than those specified in 2B352.c., capable of continuous separation without the propagation of aerosols and manufactured from: a. Alloys with more than 25 % nickel and 20 % chromium by weight; b. Fluoropolymers; c. Glass (including vitrified or enamelled coating or glass lining); d. Nickel or alloys with more than 40 % nickel by weight; e. Tantalum or tantalum alloys; f. Titanium or titanium alloys; or g. Zirconium or zirconium alloys. Technical note: ‘Centrifugal separators’ include decanters. 2B352.c. II.A2.012 Sintered metal filters, other than those specified in 2B352.d., made of nickel or nickel alloy with more than 40 % nickel by weight. 2B352.d. II.A2.013 Spin-forming machines and flow-forming machines, other than those specified by 2B009, 2B109 or 2B209 and specially designed components therefor. Technical note: For the purpose of this item, machines combining the functions of spin-forming and flow-forming are regarded as flow-forming machines. 2B009 2B109 2B209 II.A2.014 Equipment and reagents, other than those specified in 2B350 or 2B352, as follows: a. Fermenters capable of cultivation of pathogenic ‘micro-organisms’ or viruses, or capable of toxin production, without the propagation of aerosols, and having a total capacity of 10 l or more; b. Agitators for fermenters as mentioned in a. above; Technical Note: Fermenters include bioreactors, chemostats and continuous-flow systems. c. Laboratory equipment as follows: 1. Polymerase chain reaction (PCR)-equipment 2. Genetic sequencing equipment; 3. Genetic synthesizers; 4. Electroporation equipment; 5. Specific reagents associated with the equipment in I.A2.014.c. numbers 1. to 4. above; d. Filters, micro-filters, nano-filters or ultra-filters usable in industrial or laboratory biology for continuous filtering, except filters specially designed or modified for medical or clear water production purposes and to be used in the framework of EU or UN officially supported projects; e. Ultracentrifuges, rotors and adaptors for ultracentrifuges; f. Freeze drying equipment. 2B350 2B352 II.A2.015 Equipment, other than that specified in 2B005, 2B105 or 3B001.d., for the deposition of metallic overlays as follows, and specially designed components and accessories therefor: a. Chemical vapour deposition (CVD) production equipment; b. Physical vapour deposition (PVD) production equipment; c. Production equipment for deposition by means of inductive or resistance heating. 2B005 2B105 3B001.d. II.A2.016 Open tanks or containers, with or without agitators, with a total internal (geometric) volume greater than 0,5 m 3 (500 litres), where all surfaces that come in direct contact with the chemical(s) being processed or contained are made from any of the following materials: a. Alloys with more than 25 % nickel and 20 % chromium by weight; b. Fluoropolymers; c. Glass (including vitrified or enamelled coatings or glass lining); d. Nickel or alloys with more than 40 % nickel by weight; e. Tantalum or tantalum alloys; f. Titanium or titanium alloys; g. Zirconium or zirconium alloys; h. Niobium (columbium) or niobium alloys; i. Stainless steel; j. Wood; or k. Rubber. Technical note: The term ‘rubber’ encompasses all kinds of natural and synthetic rubbers. 2B350 ELECTRONICS II.A3. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A3.001 High voltage direct current power supplies, other than those specified in 0B001.j.5. or 3A227, having both of the following characteristics: a. Capable of continuously producing, over a time period of eight hours, 10 kV or more, with output power of 5 kW or more with or without sweeping; and b. Current or voltage stability better than 0,1 % over a time period of four hours. 0B001.j.5. 3A227 II.A3.002 Mass spectrometers, other than those specified in 0B002.g. or 3A233, capable of measuring ions of 200 atomic mass units or more and having a resolution of better than 2 parts in 200, as follows, and ion sources therefor: a. Inductively coupled plasma mass spectrometers (ICP/MS); b. Glow discharge mass spectrometers (GDMS); c. Thermal ionisation mass spectrometers (TIMS); d. Electron bombardment mass spectrometers which have a source chamber constructed from, lined with or plated with ‘materials resistant to corrosion by uranium hexafluoride UF6’; e. Molecular beam mass spectrometers having either of the following characteristics: 1. A source chamber constructed from, lined with or plated with stainless steel or molybdenum and equipped with a cold trap capable of cooling to 193 K (– 80 °C) or less; or 2. A source chamber constructed from, lined with or plated with materials resistant to UF6; f. Mass spectrometers equipped with a micro-fluorination ion source designed for actinides or actinide fluorides. 0B002.g. 3A233 II.A3.003 Frequency changers or generators, other than those specified by 0B001.b.13. or 3A225, having all of the following characteristics, and specially designed components and software therefor: a. Multiphase output capable of providing a power of 40 W or greater; b. Capable of operating in the frequency range between 600 and 2 000 Hz; and c. Frequency control better (less) than 0,1 %. Technical notes: 1. Frequency changers are also known as converters, inverters, generators, electronic test equipment, AC power supplies, variable speed motor drives or variable frequency drives. 2. The functionality specified in this item may be met by certain equipment marketed as: electronic test equipment, AC power supplies, variable speed motor drives or variable frequency drives. 0B001.b.13. 3A225 II.A3.004 Spectrometers and diffractometers, designed for the indicative test or quantitative analysis of the elemental composition of metals or alloys without chemical decomposition of the material. SENSORS AND LASERS II.A6. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A6.001 Yttrium aluminium garnet (YAG) rods. II.A6.002 Optical equipment and components, other than those specified in 6A002 or 6A004.b. as follows: Infrared optics in the wavelength range 9 μm-17 μm and components thereof, including cadmium telluride (CdTe) components. 6A002 6A004.b. II.A6.003 Wave front corrector systems, other than mirrors specified in 6A004.a., 6A005.e. or 6A005.f., for use with a laser beam having a diameter exceeding 4 mm, and specially designed components thereof, including control systems, phase front sensors and ‘deformable mirrors’ including bimorph mirrors. 6A004.a. 6A005.e. 6A005.f. II.A6.004 Argon ion ‘lasers’, other than those specified in 0B001.g.5., 6A005.a.6. and/or 6A205.a., having an average output power equal to or greater than 5 W. 0B001.g.5. 6A005.a.6. 6A205.a. II.A6.005 Semiconductor ‘lasers’, other than those specified in 0B001.g.5., 0B001.h.6. or 6A005.b., and components thereof, as follows: a. Individual semiconductor ‘lasers’ with an output power greater than 200 mW each, in quantities larger than 100; b. Semiconductor ‘laser’ arrays having an output power greater than 20 W. Notes: 1. Semiconductor ‘lasers’ are commonly called ‘laser’ diodes. 2. This item does not cover ‘laser’ diodes with a wavelength in the range 1,2 μm-2,0 μm. 0B001.g.5. 0B001.h.6. 6A005.b. II.A6.006 Tunable semiconductor ‘lasers’ and tunable semiconductor ‘laser’ arrays, other than those specified in 0B001.h.6. or 6A005.b., of a wavelength between 9 μm and 17 μm, as well as array stacks of semiconductor ‘lasers’ containing at least one tunable semiconductor ‘laser’ array of such wavelength. Note: Semiconductor ‘lasers’ are commonly called ‘laser’ diodes. 0B001.h.6. 6A005.b. II.A6.007 Solid state ‘tunable’‘lasers’, other than those specified in 0B001.g.5., 0B001.h.6. or 6A005.c.1., and specially designed components thereof, as follows: a. Titanium-sapphire lasers; b. Alexandrite lasers. 0B001.g.5. 0B001.h.6. 6A005.c.1. II.A6.008 Neodymium-doped (other than glass) ‘lasers’, other than those specified in 6A005.c.2.b., having an output wavelength greater than 1,0 μm but not exceeding 1,1 μm and output energy exceeding 10 J per pulse. 6A005.c.2.b. II.A6.009 Components of acousto-optics, as follows: a. Framing tubes and solid-state imaging devices having a recurrence frequency equal to or exceeding 1 kHz; b. Recurrence frequency supplies; c. Pockels cells. 6A203.b.4. II.A6.010 Radiation-hardened cameras, or lenses thereof, other than those specified in 6A203.c., specially designed, or rated as radiation-hardened, to withstand a total radiation dose greater than 50 × 103 Gy (silicon) (5 × 106 rad (silicon)) without operational degradation. Technical note: The term Gy (silicon) refers to the energy in Joules per kilogram absorbed by an unshielded silicon sample when exposed to ionising radiation. 6A203.c. II.A6.011 Tunable pulsed dye laser amplifiers and oscillators, other than those specified in 0B001.g.5., 6A005 and or 6A205.c., having all of the following characteristics: a. Operating at wavelengths between 300 nm and 800 nm; b. An average output power greater than 10 W but not exceeding 30 W; c. A repetition rate greater than 1 kHz; and d. Pulse width less than 100 ns. Note: This item does not cover single mode oscillators. 0B001.g.5. 6A005 6A205.c. II.A6.012 Pulsed carbon dioxide ‘lasers’, other than those specified in, 0B001.h.6., 6A005.d. or 6A205.d., having all of the following characteristics: a. Operating at wavelengths between 9 μm and 11 μm; b. A repetition rate greater than 250 Hz; c. An average output power greater than 100 W but not exceeding 500 W; and d. Pulse width less than 200 ns. 0B001.h.6. 6A005.d. 6A205.d. II.A6.013 Lasers, other than those specified in 6A005 or 6A205. 6A005 6A205 NAVIGATION AND AVIONICS II.A7. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A7.001 Inertial navigation systems and specially designed components thereof, as follows: a. Inertial navigation systems which are certified for use on ‘civil aircraft’ by civil authorities of a State participating in the Wassenaar Arrangement, and specially designed components thereof, as follows: 1. Inertial navigation systems (INS) (gimballed or strapdown) and inertial equipment designed for ‘aircraft’, land vehicle, vessels (surface or underwater) or ‘spacecraft’ for attitude, guidance or control, having any of the following characteristics, and specially designed components thereof: a. Navigation error (free inertial) subsequent to normal alignment of 0,8 nautical mile per hour (nm/hr) ‘Circular Error Probable’ (CEP) or less (better); or b. Specified to function at linear acceleration levels exceeding 10 g; 2. Hybrid Inertial Navigation Systems embedded with Global Navigation Satellite Systems(s) (GNSS) or with ‘Data-Based Referenced Navigation’ (‘DBRN’) System(s) for attitude, guidance or control, subsequent to normal alignment, having an INS navigation position accuracy, after loss of GNSS or ‘DBRN’ for a period of up to four minutes, of less (better) than 10 metres ‘Circular Error Probable’ (CEP); 3. Inertial Equipment for Azimuth, Heading, or North Pointing having any of the following characteristics, and specially designed components thereof: a. Designed to have an Azimuth, Heading, or North Pointing accuracy equal to, or less (better) than 6 arc minutes RMS at 45 degrees latitude; or b. Designed to have a non-operating shock level of at least 900 g at a duration of at least 1 msec. b. Theodolite systems incorporating inertial equipment specially designed for civil surveying purposes and designed to have an Azimuth, Heading, or North Pointing accuracy equal to, or less (better) than 6 arc minutes RMS at 45 degrees latitude, and specially designed components thereof. c. Inertial or other equipment using accelerometers specified in 7A001 or 7A101, where such accelerometers are specially designed and developed as MWD (Measurement While Drilling) sensors for use in down-hole well services operations. Note: The parameters of a.1. and a.2. are applicable with any of the following environmental conditions: 1. Input random vibration with an overall magnitude of 7,7 g rms in the first half hour and a total test duration of one and a half hours per axis in each of the three perpendicular axes, when the random vibration meets the following: a. A constant power spectral density (PSD) value of 0,04 g2/Hz over a frequency interval of 15 to 1 000 Hz; and b. The PSD attenuates with a frequency from 0,04 g2/Hz to 0,01 g2/Hz over a frequency interval from 1 000 to 2 000 Hz; 2. A roll and yaw rate equal to or greater than + 2,62 radian/s (150 deg/s); or 3. According to national standards equivalent to 1. or 2. above. Technical notes: 1. a.2. refers to systems in which an INS and other independent navigation aids are built into a single unit (embedded) in order to achieve improved performance. 2. ‘Circular Error Probable’ (CEP) — In a circular normal distribution, the radius of the circle containing 50 percent of the individual measurements being made, or the radius of the circle within which there is a 50 percent probability of being located. 7A001 7A003 7A101 7A103 AEROSPACE AND PROPULSION II.A9. Goods No Description Related item from Annex I to Regulation (EC) No 428/2009 II.A9.001 Explosive bolts. II.A9.002 Internal combustion engines (i.e. axial piston or rotary piston type), designed or modified for propelling ‘aircrafts’ or ‘lighter-than-air-vehicles’ and specially designed components therefor. II.A9.003 Trucks, other than those specified in 9A115, having more than one motorised axle and a payload exceeding 5 tonnes. Note: This item includes flatbed trailers, semi trailers and other trailers. 9A115 B. SOFTWARE No Description Related item from Annex I to Regulation (EC) No 428/2009 II.B.001 Software required for the development, production or use of the items in Part A. (Goods). C. TECHNOLOGY No Description Items, materials, equipment, goods and technology Related item from Annex I to Regulation (EC) No 428/2009 II.C.001 Technology required for the development, production or use of the items in Part A. (Goods). PART III Certain key components for the ballistic-missile sector. EXPLANATORY NOTE The nomenclature codes are taken from the Combined Nomenclature as defined in Article 1(2) of Council Regulation (EEC) No 2658/87 of 23 July 1987 on the tariff and statistical nomenclature and on the Common Customs Tariff and as set out in Annex I thereto, which are valid at the time of publication of this Regulation and mutatis mutandis as amended by subsequent legislation. 7601 Unwrought aluminium 7602 Aluminium waste and scrap 7603 Aluminium powders and flakes 7604 Aluminium bars, rods and profiles 7605 Aluminium wire 7606 Aluminium plates, sheets and strip, of a thickness exceeding 0,2 mm 7608 Aluminium tubes and pipes 7609 Aluminium tube or pipe fittings (for example, couplings, elbows, sleeves) 7614 Stranded wire, cables, plaited bands and the like, of aluminium, not electrically insulated PART IV Weapons of mass destruction-related items, materials, equipment, goods and technology identified and designated pursuant to paragraph 25 of UN Security Council Resolution 2270 (2016). EXPLANATORY NOTE The nomenclature codes are taken from the Combined Nomenclature as defined in Article 1(2) of Council Regulation (EEC) No 2658/87 of 23 July 1987 on the tariff and statistical nomenclature and on the Common Customs Tariff and as set out in Annex I thereto, which are valid at the time of publication of this Regulation and mutatis mutandis as amended by subsequent legislation. (a) Nuclear- and/or Missile-usable Items (1) Ring Magnets Permanent magnet materials having both the following characteristics: i. Ring-shaped magnet with a relation between outer and inner diameter smaller or equal to 1.6:1; and ii. Made of any of the following magnetic materials: aluminium-nickel-cobalt, ferrites, samarium-cobalt, or neodymium-iron-boron. ex 8505 11 00 ex 8505 19 10 ex 8505 19 90 ex 8505 90 90 (2) Maraging Steel Maraging steel having both the following characteristics: i. ‘capable of’ an ultimate tensile strength of 1 500 MPa or more at 293 K (20 °C). ii. In bar or tube form, with an outer diameter of 75 mm or greater. ex 7304 49 10 ex 7304 51 81 ex 7304 51 89 ex 7304 59 92 ex 7304 59 93 ex 7304 59 99 (3) Magnetic alloy materials in sheet or thin strip form having both of the following characteristics: (a) Thickness of 0,05 mm or less; or height of 25 mm or less, and (b) Made of any of the following magnetic alloy materials: iron-chromium-cobalt, iron-cobalt-vanadium, iron-chromium-cobalt-vanadium, or iron-chromium. ex 7326 19 10 ex 7326 19 90 ex 7326 90 92 ex 7326 90 94 ex 7326 90 96 ex 7326 90 98 (4) Frequency Changers (also known as converters or inverters) Frequency changers, other than those specified in entries 0B001.b.13 or 3A225 of Annex II, having all of the following characteristics, and specially designed software therefore: i. Multiphase frequency output; ii. Capable of providing a power of 40 W or greater; and iii. Capable of operating anywhere (at any one point or more) within the frequency range of between 600 and 2 000 Hz. Technical Notes: (1) Frequency changers are also known as converters or inverters. (2) The functionality specified above may be met by certain equipment described or marketed as electronic test equipment, AC power supplies, variable speed motor drives, or variable frequency drives. ex 8504 40 84 ex 8504 40 88 ex 8504 40 90 ex 8537 10 95 ex 8537 10 98 ex 8537 20 91 ex 8537 20 99 (5) High-strength Aluminium Alloy Aluminium alloys having both the following characteristics: i. ‘capable of’ an ultimate tensile of strength of 415 MPa or more at 293 K (20 °C) and ii. In bar or tube form, with an outer diameter of 75 mm or greater. Technical Note: The phrase ‘capable of’ encompasses aluminium alloy before or after heat treatment. ex 7601 20 80 ex 7604 29 10 ex 7608 20 20 ex 7608 20 81 ex 7608 20 89 (6) Fibrous or Filamentary Materials ‘Fibrous or filamentary materials’ and prepregs, as follows: i. Carbon, aramid, or glass ‘fibrous or filamentary materials’ having both of the following characteristics: (1) A ‘specific modulus’ exceeding 3,18 × 10 6 m; and (2) A ‘specific tensile strength’ exceeding 76,2 × 10 3 m; ii. Prepregs: Thermoset resin-impregnated continuous ‘yarns’, ‘rovings’, ‘tows’ or ‘tapes’ with a width of 30 mm or less, made from carbon, aramid, or glass ‘fibrous or filamentary materials’ controlled in (a) above. ex 5402 11 00 ex 5402 19 00 ex 5402 31 00 ex 5402 32 00 ex 5404 90 90 ex 5407 10 00 ex 5407 20 90 ex 5407 41 00 ex 5407 42 00 ex 5407 43 00 ex 5407 44 00 ex 5501 10 00 ex 5501 90 00 ex 5503 11 00 ex 5503 19 00 ex 5503 20 00 ex 5503 90 00 ex 5506 10 00 ex 5506 90 00 ex 5509 11 00 ex 5509 12 00 ex 5604 90 10 ex 5607 50 11 ex 5607 50 19 ex 5607 50 30 ex 5607 50 90 ex 5609 00 00 ex 5902 10 10 ex 5902 10 90 ex 5902 20 90 ex 5902 90 10 ex 5902 90 90 ex 5903 10 10 ex 5903 10 90 ex 5903 20 10 ex 5903 20 90 ex 5903 90 10 ex 5903 90 91 ex 5903 90 99 ex 6815 10 10 ex 6815 99 00 ex 7019 12 00 ex 7019 19 10 ex 7019 19 90 ex 7019 51 00 ex 7019 59 00 ex 7019 90 00 (7) Filament Winding Machines and Related Equipment Filament winding machines and related equipment, as follows: i. Filament winding machines having all of the following characteristics: (1) Having motions for positioning, wrapping, and winding fibres coordinated and programmed in two or more axes; (2) Specially designed to fabricate composite structures or laminates from ‘fibrous or filamentary materials’; and (3) Capable of winding cylindrical tubes of diameter of 75 mm or greater; ii. Coordinating and programming controls for filament winding machines specified in (a) above; iii. Mandrels for filament winding machines specified in (a) above. ex 8419 89 30 ex 8419 89 98 ex 8419 90 85 ex 8444 00 10 ex 8444 00 90 ex 8446 10 00 ex 8446 21 00 ex 8446 29 00 ex 8446 30 00 ex 8447 11 00 ex 8447 12 00 ex 8447 20 20 ex 8447 20 80 ex 8447 90 00 ex 8448 19 00 ex 8448 20 00 ex 8448 39 00 ex 8448 42 00 ex 8448 49 00 ex 8448 59 00 ex 8479 89 97 ex 8479 90 20 ex 8479 90 70 ex 8537 10 10 ex 8537 10 91 ex 8537 10 95 ex 8537 10 98 ex 8538 10 00 ex 9022 12 00 ex 9022 19 00 ex 9022 90 00 ex 9031 80 80 ex 9031 90 00 (8) Flow-forming Machines As described in INFCIRC/254/Rev.9/Part2 and S/2014/253 ex 8463 90 00 ex 8466 94 00 (9) Laser welding equipment ex 8515 80 10 ex 8515 80 90 ex 8515 90 00 (10) 4- and 5-axis CNC machine tools ex 8457 10 10 ex 8457 10 90 ex 8457 20 00 ex 8457 30 10 ex 8457 30 90 ex 8458 11 20 ex 8458 11 41 ex 8458 11 49 ex 8458 11 80 ex 8458 19 00 ex 8458 91 20 ex 8458 91 80 ex 8459 10 00 ex 8459 21 00 ex 8459 31 00 ex 8459 41 00 ex 8459 51 00 ex 8459 61 10 ex 8459 61 90 ex 8460 12 00 ex 8460 22 00 ex 8460 23 00 ex 8460 24 00 ex 8460 31 00 ex 8460 40 10 ex 8460 90 00 ex 8461 20 00 ex 8461 30 10 ex 8461 40 11 ex 8461 40 31 ex 8461 40 71 ex 8461 40 90 ex 8461 90 00 ex 8464 20 11 ex 8464 20 19 ex 8464 20 80 ex 8464 90 00 (11) Plasma cutting equipment ex 8556 40 00 ex 8515 31 00 ex 8515 39 90 ex 8515 80 10 ex 8515 80 90 ex 8515 90 00 (12) Metal hydrides such as, zirconium hydride ex 2850 00 20 (b) Chemical/Biological Weapons-usable Items (1) Additional chemicals suitable for the production of chemical warfare agents: Product description CN code Sodium metal (7440-23-5) 2805 11 00 Sulphur trioxide (7446-11-9) ex 2811 29 10 Aluminium chloride (7446-70-0) 2827 32 00 Potassium Bromide (7758-02-3) 2827 51 00 Sodium bromide (7647-15-6) 2827 51 00 Dichloromethane (75-09-2) 2903 12 00 Isopropyl bromide (75-26-3) ex 2903 39 19 Isopropyl ether (108-20-3) ex 2909 19 90 Monoisopropylamine (75-31-0) ex 2921 19 99 Trimethylamine (75-50-3) ex 2921 11 00 Tributylamine (102-82-9) ex 2921 19 99 Triethylamine (121-44-8) ex 2921 19 99 N,N-Dimethylaniline (121-69-7) ex 2921 42 00 Pyridine (110-86-1) ex 2933 31 00 (2) Reaction vessels, reactors, agitators, heat exchangers, condensers, pumps, valves, storage tanks, containers, receivers, and distillation or absorption columns that meet performance parameters described in S/2006/853 and S/2006/853/corr.1. — Single-seal pumps with manufacturer's specified maximum flow-rate greater than 0,6 m 3 /h and casings (pump bodies), preformed casing liners, impellers, rotors or jet pump nozzles designed for such pumps, in which all surfaces that come into direct contact with the chemical(s) being processed are made from any of the following materials: (a) nickel or alloys with more than 40 % nickel by weight; (b) alloys with more than 25 % nickel and 20 % chromium by weight; (c) fluoropolymers (polymeric or elastomeric materials with more than 35 % fluorine by weight); (d) glass or glass-lined (including vitrified or enamelled coating); (e) graphite or carbon-graphite; (f) tantalum or tantalum alloys; (g) titanium or titanium alloys; (h) zirconium or zirconium alloys; (i) ceramics; (j) ferrosilicon (high silicon iron alloys); or (k) niobium (columbium) or niobium alloys. — ex 3925 10 00 — ex 3925 90 80 — ex 3926 90 92 — ex 3926 90 97 — ex 4009 21 00 — ex 4009 22 00 — ex 4009 41 00 — ex 4009 42 00 — ex 4016 93 00 — ex 6909 11 00 — ex 6909 12 00 — ex 6909 19 00 — ex 6909 90 00 — ex 6914 90 00 — ex 7020 00 10 — ex 7020 00 30 — ex 7020 00 80 — ex 7304 41 00 — ex 7304 49 93 — ex 7304 49 95 — ex 7304 49 99 — ex 7304 51 81 — ex 7304 51 89 — ex 7304 59 92 — ex 7304 59 93 — ex 7304 59 99 — ex 7306 40 20 — ex 7306 40 80 — ex 7306 50 20 — ex 7306 50 80 — ex 7306 69 10 — ex 7306 69 90 — ex 7306 90 00 — ex 7309 00 10 — ex 7309 00 30 — ex 7309 00 51 — ex 7309 00 59 — ex 7309 00 90 — ex 7310 10 00 — ex 7310 29 10 — ex 7310 29 90 — ex 7311 00 00 — ex 7326 90 92 — ex 7326 90 94 — ex 7326 90 96 — ex 7326 90 98 — ex 7507 11 00 — ex 7507 12 00 — ex 7507 20 00 — ex 7508 90 00 — ex 8103 90 90 — ex 8108 90 50 — ex 8108 90 60 — ex 8108 90 90 — ex 8109 90 00 — ex 8112 99 30 — ex 8401 20 00 — ex 8401 40 00 — ex 8401 10 00 — ex 8412 90 20 — ex 8413 50 40 — ex 8413 60 39 — ex 8413 60 61 — ex 8413 60 69 — ex 8413 60 70 — ex 8413 60 80 — ex 8413 70 21 — ex 8413 70 29 — ex 8413 70 45 — ex 8413 70 51 — ex 8413 70 59 — ex 8413 70 65 — ex 8413 70 75 — ex 8413 70 81 — ex 8413 70 89 — ex 8413 81 00 — ex 8413 82 00 — ex 8413 91 00 — ex 8414 10 25 — ex 8414 10 81 — ex 8414 10 89 — ex 8414 40 10 — ex 8414 40 90 — ex 8414 59 15 — ex 8414 59 25 — ex 8414 59 23 — ex 8414 59 95 — ex 8414 80 11 — ex 8418 99 10 — ex 8414 80 19 — ex 8414 80 59 — ex 8414 80 73 — ex 8414 80 75 — ex 8414 80 78 — ex 8414 80 80 — ex 8414 90 00 — ex 8417 80 30 — ex 8417 80 50 — ex 8417 80 70 — ex 8418 69 00 — ex 8419 40 00 — ex 8419 50 00 — ex 8419 89 10 — ex 8419 89 30 — ex 8419 89 98 — ex 8419 90 85 — ex 8477 80 93 — ex 8477 80 99 — ex 8479 82 00 — ex 8479 89 97 — ex 8479 90 70 (3) Conventional or turbulent air-flow clean-air rooms and self-contained fan-HEPA filter units that could be used for P3 or P4 (BSL 3, BSL 4, L3, L4) containment facilities. ex 8414 51 00 ex 8414 59 00 ex 8414 60 00 ex 8414 80 80 ex 8421 39 15 ex 8421 39 25 ex 8479 89 97 PART V Weapons of mass destruction-related items, materials, equipment, goods and technology identified and designated pursuant to paragraph 4 of UN Security Council Resolution 2321 (2016). EXPLANATORY NOTE A reference number in the column entitled Related item from Annex I to Council Regulation (EC) No 428/2009 or from Part II of Annex II to this Regulation (goods and technology) means that the characteristics of the item described in the column ‘Description’ lie outside the parameters set out in the description of the goods and technology referred to. Nuclear- and/or Missile-usable Items Description Related item from Annex I to Regulation (EC) No 428/2009 or from Part II of Annex II to this Regulation Isocyanates (TDI (Toluene di-isocyanate), MDI (Methylene bis (phenyl isocyanate)), IPDI (Isophorone diiosocyanate), HNMDI or HDI (Hexamethylene diisocyanate), and DDI (dimeryl diisocyanate) and production equipment. Ammonium nitrate, chemically pure or in phase stabilized version (PSAN). Non-destructive test chambers with a 1m or more critical internal dimension. Turbo-pumps for liquid or hybrid rocket engines 9A006 Polymeric Substances (Hydroxyl Terminated Poly-Ether (HTPE), Hydroxyl Terminated Caprolactone Ether (HTCE), Polypropylene glycol (PPG), Polydiethyleneglycol adipate (PGA) and Polyethylene Glycol (PEG)). Countermeasure Subsystems and Penetration Aids (e.g. jammers, chaff, decoys) designed to saturate, confuse, or evade missile defences. Manganese metal Brazing Foils. Hydroforming machines. Thermal treatment furnaces — Temperature > 850 degrees C and one dimension > 1m II.A2.005, 2B226, 2B227 Electrical Discharge Machines (EDMs) 2B001.d Friction stir welding machines. Modelling and design software related to the modelling of aerodynamic and thermodynamic analysis of rocket or unmanned aerial vehicle systems. High-speed imaging cameras except those used in medical imaging systems 6A003.a.2 Truck chassis with 6 or more axles 9A115 and II.A9.003 Chemical/Biological Weapons-usable Items Description Related item from Annex I to Regulation (EC) No 428/2009 or from Part II of Annex II to this Regulation 1. Floor-mounted fume hoods (walk-in style) with a minimum nominal width of 2,5 meters 2B352 2. Batch centrifuges with a rotor capacity of 4 L or greater, usable with biological materials II.A2.014.e., 2B350, 2B352 3. Fermenters with an internal volume of 10-20 L (.01-.02 cubic meters), usable with biological materials 2B352 and II.A2.014.a. ( 1 ) Manufacturers calculating positioning accuracy in accordance with ISO 230/2 (1997) should consult the competent authorities of the Member State in which they are established.