Ansvarlig departement: Utenriksdepartementet
forutsatt at slike renter eller andre avkastninger og betalinger fryses i samsvar med artikkel 2 nr. 1.
forutsatt at den fysiske eller juridiske personen, enheten eller organet som ønsker å foreta slike transaksjoner eller yte bistand til slike transaksjoner, senest 20 virkedager i forkant, har underrettet den kompetente myndigheten i medlemsstaten der de er etablert om transaksjonen eller bistanden.
forutsatt at personen, enheten eller organet som ønsker å oppfylle kontrakten nevnt i bokstav a, b og c, senest 20 virkedager i forkant, underretter den kompetente myndigheten i medlemsstaten der de er etablert om aktiviteten eller transaksjonen.
forutsatt at personen, enheten eller organet som ønsker å oppfylle kontrakten, senest 20 virkedager i forkant, underretter den kompetente myndigheten i medlemsstaten vedkommende er etablert om aktiviteten eller transaksjonen.
forutsatt at den berørte medlemsstaten, minst ti virkedager før tillatelsen gis, har underrettet de øvrige medlemsstatene og Kommisjonen om at den har til hensikt å gi tillatelse.
forutsatt at slike renter eller andre avkastninger og betalinger fryses i samsvar med artikkel 23 nr. 1 eller 2.
med mindre slike overføringer faller inn under virkeområdet i nr. 2 og er behandlet i samsvar med nr. 3.
| Description | |
|---|---|
| 1. | «Information security» systems and equipment for final use for public telecommunication services and internet service providing or for the protection by the network operator of these services, including components necessary for operation, installation (including on-site installation), maintenance (checking), repair, overhaul and refurbishing services related to those systems and equipment as follows: a. Systems, equipment, application specific «electronic assemblies», modules and integrated circuits for «information security» related to networks such as wifi, 2G, 3G, 4G or fixed networks (classical, ADSL or optic fibre), as follows, and components therefor specially designed for «information security»: N.B.: For the control of Global Navigation Satellite Systems (GNSS) receiving equipment containing or employing decryption (i.e. GPS or GLONASS), see 7A005 of Annex I to Regulation (EU) 2021/821. 1. Designed or modified to use «cryptography» employing digital techniques performing any cryptographic function other than authentication or digital signature and having any of the following: Technical Notes: 1. Authentication and digital signature functions include their associated key management function. 2. Authentication includes all aspects of access control where there is no encryption of files or text except as directly related to the protection of passwords, Personal Identification Numbers (PINs) or similar data to prevent unauthorised access. 3. «Cryptography» does not include «fixed» data compression or coding techniques. Note: 1.a.1. includes equipment designed or modified to use «cryptography» employing analogue principles when implemented with digital techniques. a. A «symmetric algorithm» employing a key length in excess of 56 bits; or b. An «asymmetric algorithm» where the security of the algorithm is based on any of the following: 1. Factorisation of integers in excess of 512 bits (e.g. RSA); 2. Computation of discrete logarithms in a multiplicative group of a finite field of size greater than 512 bits (e.g. Diffie-Hellman over Z/pZ); or 3. Discrete logarithms in a group other than mentioned in 1.a.1.b.2. in excess of 112 bits (e.g. Diffie-Hellman over an elliptic curve); |
| 2. | «Software» as follows, for final use for public telecommunication services, internet service providing or for the protection by the network operator of these services: a. «Software» specially designed or modified for the «use» of equipment specified in 1.a.1 or «software» specified in 2.b.1; b. Specific «software», as follows: 1. «Software» having the characteristics, or performing or simulating the functions of the equipment, specified in 5A002.a.1; |
| 3. | «Technology» according to the General Technology Note for the «use» of equipment specified in 1.a.1 or «software» specified in 2.a. or 2.b.1 of this list, for final use for public telecommunication services and internet service providing or for the protection by the network operator of these services. |
| Item from Annex I to Regulation (EU) 2021/821 | Description |
|---|---|
| 0A001 | «Nuclear reactors» and specially designed or prepared equipment and components therefor, as follows: a. «Nuclear reactors»; b. Metal vessels, or major shop-fabricated parts therefor, including the reactor vessel head for a reactor pressure vessel, specially designed or prepared to contain the core of a «nuclear reactor»; c. Manipulative equipment specially designed or prepared for inserting or removing fuel in a «nuclear reactor»; d. Control rods specially designed or prepared for the control of the fission process in a «nuclear reactor», support or suspension structures therefor, rod drive mechanisms and rod guide tubes; e. Pressure tubes specially designed or prepared to contain both fuel elements and the primary coolant in a «nuclear reactor»; f. Zirconium metal tubes or zirconium alloy tubes (or assembles of tubes) specially designed or prepared for use as fuel cladding in a «nuclear reactor», and in quantities exceeding 10 kg; N.B. For zirconium pressure tubes see 0A001.e. and for calandria tubes see 0A001.h. g. Coolant pumps specially designed or prepared for circulating the primary coolant of «nuclear reactors»; h. «Nuclear reactor internals» specially designed or prepared for use in a «nuclear reactor», including support columns for the core, fuel channels, thermal shields, baffles, core grid plates, and diffuser plates; Note: In 0A001.h. «nuclear reactor internals» means any major structure within a reactor vessel which has one or more functions such as supporting the core, maintaining fuel alignment, directing primary coolant flow, providing radiation shields for the reactor vessel, and guiding in-core instrumentation. i. Heat exchangers as follows: 1. Steam generators specially designed or prepared for the primary, or intermediate, coolant circuit of a «nuclear reactor»; 2. Other heat exchangers specially designed or prepared for use in the primary coolant circuit of a «nuclear reactor»; Note: 0A001.i. does not control heat exchangers for the supporting systems of the reactor, e.g. the emergency cooling system or the decay heat cooling system. j. Neutron detectors specially designed or prepared for determining neutron flux levels within the core of a «nuclear reactor»; or k. «External thermal shields» specially designed or prepared for use in a «nuclear reactor» for the reduction of heat loss and also for the containment vessel protection. Technical Note: In 0A001.k. «external thermal shields» means major structures placed over the reactor vessel which reduce heat loss from the reactor and reduce temperature within the containment vessel. |
| 0C002 | Low enriched uranium covered by 0C002 when it is incorporated in assembled nuclear fuels elements. |
| Item from Annex I to Regulation (EC) No 428/2009 | Description |
|---|---|
| 5A002 | «Information security» systems, equipment and components therefor, as follows: a. Systems, equipment, application specific «electronic assemblies», modules and integrated circuits for «information security», as follows and other specially designed components therefor: N.B.: For the control of Global Navigation Satellite Systems (GNSS) receiving equipment containing or employing decryption (i.e. GPS or GLONASS), see 7A005. 1. Designed or modified to use «cryptography» employing digital techniques performing any cryptographic function other than authentication or digital signature and having any of the following: Technical Notes: 1. Authentication and digital signature functions include their associated key management function. 2. Authentication includes all aspects of access control where there is no encryption of files or text except as directly related to the protection of passwords, Personal Identification Numbers (PINs) or similar data to prevent unauthorised access. 3. «Cryptography» does not include «fixed» data compression or coding techniques. Note: 5A002.a.1. includes equipment designed or modified to use «cryptography» employing analogue principles when implemented with digital techniques. a. A «symmetric algorithm» employing a key length in excess of 56 bits; or b. An «asymmetric algorithm» where the security of the algorithm is based on any of the following: 1. Factorisation of integers in excess of 512 bits (e.g. RSA); 2. Computation of discrete logarithms in a multiplicative group of a finite field of size greater than 512 bits (e.g. Diffie-Hellman over Z/pZ); or 3. Discrete logarithms in a group other than mentioned in 5A002.a.1.b.2. in excess of 112 bits (e.g. Diffie-Hellman over an elliptic curve); |
| 5D002 | «Software» as follows: a. «Software» specially designed or modified for the «use» of equipment specified in 5A002.a.1 or «software» specified in 5D002.c.1; c. Specific «software», as follows: 1. «Software» having the characteristics, or performing or simulating the functions of the equipment, specified in 5A002.a.1; Note: 5D002 does not control «software» as follows: a. «Software» required for the «use» of equipment excluded from control by the Note to 5A002; b. «Software» providing any of the functions of equipment excluded from control by the Note to 5A002. |
| 5E002 | «Technology» according to the General Technology Note for the «use» of equipment specified in 5A002.a.1 or «software» specified in 5D002.a. or 5D002.c.1 of this list. |
| A0. Nuclear Materials, Facilities, and Equipment | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| II.A0.001 | Hollow cathode lamps as follows: a. Iodine hollow cathode lamps with windows in pure silicon or quartz; or 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; or c. Sealing, testing and measurement equipment. | 0A001 |
| II.A0.006 | Nuclear detection systems for detection, identification or quantification of radioactive materials and radiation of nuclear origin and specially designed components thereof other than those specified in 0A001.j. or 1A004.c. | 0A001.j 1A004.c |
| II.A0.007 | Bellows-sealed valves made of aluminium alloy or stainless steel type 304, 304L or 316L. Note: This item does not cover bellow valves defined in 0B001.c.6 and 2A226. | 0B001.c.6 2A226 |
| II.A0.008 | Laser mirrors, other than those specified in 6A005.e, consisting of substrates having a thermal expansion coefficient of 10-6K-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 10-6K-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. Turbomolecular pumps having a flowrate equal to or greater than 400 l/s; b. Roots type vacuum roughing pumps having a volumetric aspiration flowrate greater than 200 m3/h; or 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. | – |
| A1. Materials, chemicals, «microorganisms» and «toxins» | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| II.A1.001 | Bis (2-ethylhexyl) phosphoric acid (HDEHP or D2HPA) (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.A1.005 | Electrolytic cells for fluorine production with an output capacity greater than 100 g of fluorine per hour. Note: This item does not cover electrolytic cells defined in item 1B225. | 1B225 |
| II.A1.006 | Catalysts, other than those prohibited by 1A225, 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. | 1B231, 1A225 |
| 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). | 1C002.b.4, 1C202.a |
| II.A1.008 | Magnetic metals, of all types and of whatever form, having an initial relative permeability of 120 000 or more and a thickness between 0,05 and 0,1 mm. | 1C003.a |
| II.A1.009 | «Fibrous or filamentary materials» or prepregs, as follows: N.B. see also II.A1.019.a. a. Carbon or aramid «fibrous or filamentary materials» having either of the following characteristics: 1. A «specific modulus» exceeding 10 × 106 m; or 2. A «specific tensile strength» exceeding 17 × 104 m; b. Glass «fibrous or filamentary materials» having either of the following characteristics: 1. A «specific modulus» exceeding 3,18 × 106 m; or 2. A «specific tensile strength» exceeding 76,2 × 103 m; c. Thermoset resin-impregnated continuous «yarns», «rovings», «tows» or «tapes» with a width of 15 mm or less (once prepregs), made from carbon or glass «fibrous or filamentary materials» other than those specified in II.A1.010.a. or b. Note: This item does not cover «fibrous or filamentary materials» defined in items 1C010.a, 1C010.b, 1C210.a and 1C210.b. | 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 II.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. Note: This item does not cover «fibrous or filamentary materials» defined in item 1C010.e. | 1C010.e. 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 | Maraging steels, other than those specified in 1C116 or 1C216, «capable of» an ultimate tensile strength of 2 050 MPa or more, at 293 K (20 °C). Technical Note: The phrase «maraging steel capable of» encompasses maraging steel before or after heat treatment. | 1C216 |
| II.A1.013 | Tungsten, tantalum, tungsten carbide, tantalum carbide and alloys, 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. Note: This item does not cover tungsten, tungsten carbide and alloys defined in item 1C226. | 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. | – |
| 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 prohibited by 1C116, 1C216 or II.A1.012 Technical Note: «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. | – |
| II.A1.017 | Metals, metal powders and material as follows: a. Tungsten and tungsten alloys, other than those prohibited by 1C117, in the form of uniform spherical or atomized particles of 500 μm diameter or less with a tungsten content of 97 % by weight or more; b. Molybdenum and molybdenum alloys, other than those prohibited by 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; or c. Tungsten materials in the solid form, other than those prohibited by 1C226, or II.A1.013 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. | – |
| II.A1.018 | Soft magnetic alloys having a chemical composition as follows: a. Iron content between 30 % and 60 %; or b. Cobalt content between 40 % and 60 %. | – |
| II.A1.019 | «Fibrous or filamentary materials» or prepregs, not prohibited by Annex I or by Annex II (under II.A1.009, II.A1.010) of this Regulation, or not specified by Annex I of Regulation (EU) 2021/821, as follows: a. Carbon «fibrous or filamentary materials»; Note: II.A1.019a. does not cover fabrics. b. Thermoset resin-impregnated continuous «yarns», «rovings», «tows», or «tapes», made from carbon «fibrous or filamentary materials»; or c. Polyacrylonitrile (PAN) continuous «yarns», «rovings», «tows» or «tapes» | – |
| A2. Materials Processing | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| 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»; Technical Note: «Vibration test systems incorporating a digital controller» are those systems, the functions of which are, partly or entirely, automatically controlled by stored and digitally coded electrical signals. b. Digital controllers, combined with specially designed vibration test «software», with a real-time bandwidth greater than 5 kHz designed for use with vibration test systems specified in 2B116.a.; Technical Note: «Real-time control bandwidth» means 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 2B116.a.; or 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 2B116.a. Technical Note: «Bare table» means a flat table, or surface, with no fixture or fittings. | 2B116 |
| II.A2.002 | Machine tools and components and numerical controls for machine tools, as follows: a. Machine tools for grinding having positioning accuracies with «all compensations available» equal to or less (better) than 15 μm according to ISO 230/2 (1988) or national equivalents along any linear axis; Note: This item does not cover machine tools for grinding defined in items 2B201.b and 2B001.c. b. Components and numerical controls, specially designed for machine tools specified in 2B001, 2B201, or under a. | 2B201.b 2B001.c |
| 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 imbalance in two planes or more; and 4. Capable of balancing to a residual specific imbalance of 0,2 g × mm per kg of rotor mass; Note: II.A2.003 does not control balancing machines designed or modified for dental or other medical equipment. b. «Indicator heads» designed or modified for use with machines specified in 2B119.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). | 2B225 |
| II.A2.006 | Furnaces capable of operation at temperatures above 400 °C as follows: a. Oxidation furnaces b. Controlled atmosphere heat treatment furnaces 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.A2.007 | «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. | 2B230 |
| II.A2.011 | Centrifugal separators, 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. Note: This item does not cover centrifugal separators defined in item 2B352.c. | 2B352.c |
| II.A2.012 | Sintered metal filters made of nickel or nickel alloy with more than 40 % nickel by weight. Note: This item does not cover filters defined in item 2B352.d. | 2B352.d |
| II.A2.013 | Spin-forming machines and flow-forming machines, other than those controlled by 2B009, 2B109 or 2B209, having a roller force of more than 60 kN and specially designed components therefor. Technical Note: For the purpose of II.A2.013, machines combining the functions of spin-forming and flow-forming are regarded as flow-forming machines. | – |
| II.A2.014 | Liquid-liquid contacting equipment (mixer-settlers, pulsed 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 any of the following: N.B. see also III.A2.008. a. Made from any of the following materials: 1. Alloys with more than 25 % nickel and 20 % chromium by weight; 2. Fluoropolymers; 3. Glass (including vitrified or enamelled coating or glass lining); 4. Graphite or «carbon graphite»; 5. Nickel or alloys with more than 40 % nickel by weight; 6. Tantalum or tantalum alloys; 7. Titanium or titanium alloys; 8. Zirconium or zirconium alloys; or 9. Niobium (columbium) or niobium alloys; or b. Made from both stainless steel and one or more of the materials specified in II.A2.014.a. 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.A2.015 | Industrial equipment and components, other than those specified in 2B350.d, as follows: N.B. see also III.A2.009. Heat exchangers or condensers with a heat transfer surface area greater than 0,05 m2, and less than 30 m2; 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 any of the following: a. Made from any of the following materials: 1. Alloys with more than 25 % nickel and 20 % chromium by weight; 2. Fluoropolymers; 3. Glass (including vitrified or enamelled coating or glass lining); 4. Graphite or «carbon graphite»; 5. Nickel or alloys with more than 40 % nickel by weight; 6. Tantalum or tantalum alloys; 7. Titanium or titanium alloys; 8. Zirconium or zirconium alloys; 9. Silicon carbide; 10. Titanium carbide; or 11. Niobium (columbium) or niobium alloys; or b. Made from both stainless steel and one or more of the materials specified in II.A2.015.a. 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.A2.016 | Multiple-seal, and seal-less pumps, other than those specified in 2B350.i, suitable for corrosive fluids, with manufacturer’s specified maximum flow-rate greater than 0,6 m3/hour, or vacuum pumps with manufacturer’s specified maximum flow-rate greater than 5 m3/hour [measured under standard temperature (273 K or 0 °C) and pressure (101,3 kPa) conditions]; 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 any of the following: NB. see also III.A2.010. a. Made from any of the following materials: 1. Alloys with more than 25 % nickel and 20 % chromium by weight; 2. Ceramics; 3. Ferrosilicon; 4. Fluoropolymers; 5. Glass (including vitrified or enamelled coatings or glass lining); 6. Graphite or «carbon graphite» 7. Nickel or alloys with more than 40 % nickel by weight; 8. Tantalum or tantalum alloys; 9. Titanium or titanium alloys; 10. Zirconium or zirconium alloys; 11. Niobium (columbium) or niobium alloys; or 12. Aluminium alloys; or b. Made from both stainless steel and one or more of the materials specified in II.A2.016.a. Technical Note: The materials used for gaskets and seals and other implementation of sealing functions do not determine the status of control of the pump. | 2B350.i |
| A3. Electronics | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| II.A3.001 | High voltage direct current power supplies 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. Note: This item does not cover power supplies defined in items 0B001.j.5 and 3A227. | 3A227 |
| II.A3.002 | Mass spectrometers, other than those specified in 3A233 or 0B002.g, 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 thereof: 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 having both of the following features: 1. A molecular beam inlet system that injects a collimated beam of analyte molecules into a region of the ion source where the molecules are ionised by an electron beam; and 2. One or more «cold traps» that can be cooled to a temperature of 193 K (– 80 °C); e. Not used f. Mass spectrometers equipped with a microfluorination ion source designed for actinides or actinide fluorides. Technical Notes: 1. Electron bombardment mass spectrometers in II.A3.002.d. are also known as electron impact mass spectrometers or electron ionisation mass spectrometers. 2. In II.A3.002.d.2., a «cold trap» is a device that traps gas molecules by condensing or freezing them on cold surfaces. For the purposes of II.A3.002.d.2., a closed-loop gaseous helium cryogenic vacuum pump is not a «cold trap». | 3A233 |
| II.A3.004 | Frequency changers or generators, other than those specified in 0B001.b.13., usable as a variable or fixed frequency motor drive, having all of the following characteristics: a. Multiphase output providing a power of 40 VA or greater; b. Operating at a frequency of 600 Hz or more; and c. Frequency control better (less) than 0,2 %. Technical Notes: 1. Frequency changers in II.A3.004 are also known as converters or inverters. 2. Frequency changers in II.A3.004 may be marketed as Generators, Electronic Test Equipment, AC Power Supplies, Variable Speed Motors Drives, Variable Speed Drives (VSDs), Variable Frequency Drives (VFDs), Adjustable Frequency Drives (AFDs), or Adjustable Speed Drives (ASDs). | 3A225 0B001.b.13 |
| A6. Sensors and Lasers | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| II.A6.001 | Yttrium aluminium garnet (YAG) rods | – |
| II.A6.002 | Optical equipment and components, other than those specified in 6A002, 6A004.b as follows: Infrared optics in the wavelength range 9 000 nm–17 000 nm and components thereof, including cadmium telluride (CdTe) components. | 6A002 6A004.b |
| II.A6.003 | Wave front corrector systems 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. Note: This item does not cover mirrors defined in 6A004.a, 6A005.e and 6A005.f. | 6A003 |
| II.A6.004 | Argon ion «lasers» having an average output power equal to or greater than 5 W. Note: This item does not cover argon ion «lasers» defined in items 0B001.g.5, 6A005 and 6A205.a. | 6A005.a.6 6A205.a |
| II.A6.005 | Semiconductor «lasers» and components thereof, as follows: a. Individual semiconductor «lasers» with an output power greater than 200 mW each, in quantities larger than 100; or 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 «lasers» defined in items 0B001.g.5, 0B001.h.6 and 6A005.b. 3. This item does not cover «laser» diodes with a wavelength in the range 1 200 nm–2 000 nm. | 6A005.b |
| II.A6.006 | «Tunable» semiconductor «lasers» and «tunable» semiconductor «laser» arrays, 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. Notes: 1. Semiconductor «lasers» are commonly called «laser» diodes. 2. This item does not cover semiconductor «lasers» defined in items 0B001.h.6 and 6A005.b | 6A005.b |
| II.A6.007 | Solid state «tunable» «lasers» and specially designed components thereof as follows: a. Titanium-sapphire «lasers»; or b. Alexandrite «lasers». Note: This item does not cover titanium-sapphire and alexandrite «lasers» defined in items 0B001.g.5, 0B001.h.6 and 6A005.c.1. | 6A005.c.1 |
| II.A6.008 | Neodymium-doped (other than glass) «lasers», having an output wavelength greater than 1 000 nm but not exceeding 1 100 nm and output energy exceeding 10 J per pulse. Note: This item does not cover neodymium-doped (other than glass) «lasers» defined in item 6A005.c.2.b. | 6A005.c.2 |
| 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; or c. Pockels cells. | 6A203.b.4.c |
| 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, 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. Notes: 1. This item does not cover single mode oscillators. 2. This item does not cover «tunable» pulsed dye «laser» amplifiers and oscillators defined in item 6A205.c, 0B001.g.5 and 6A005. | 6A205.c |
| II.A6.012 | Pulsed carbon dioxide «lasers» having all of the following characteristics: 1. Operating at wavelengths between 9 000 nm and 11 000 nm; 2. A repetition rate greater than 250 Hz; 3. An average output power greater than 100 W but not exceeding 500 W; and 4. Pulse width less than 200 ns. Note: This item does not cover pulsed carbon dioxide «laser» amplifiers and oscillators defined in item 6A205.d., 0B001.h.6. and 6A005.d. | 6A205.d |
| II.A6.013 | Copper vapour «lasers» having both of the following characteristics: 1. Operating at wavelengths between 500 and 600 nm; and 2. An average output power equal to or greater than 15 W. | 6A005.b |
| II.A6.014 | Pulsed carbon monoxide «lasers» having all of the following characteristics: 1. Operating at wavelengths between 5 000 and 6 000 nm; 2. A repetition rate greater than 250 Hz; 3. An average output power greater than 100 W; and 4. Pulse width of less than 200 ns. Note: This item does not control the higher power (typically 1 to 5 kW) industrial carbon monoxide «lasers» used in applications such as cutting and welding, as these latter «lasers» are either continuous wave or are pulsed with a pulse width greater than 200 ns. | |
| A7. Navigation and Avionics | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| II.A7.001 | Inertial navigation systems and specially designed components thereof, as follows: I. 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: a. Inertial navigation systems (INSs) (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: 1. 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 2. Specified to function at linear acceleration levels exceeding 10 g; b. 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 «CEP»; c. Inertial Equipment for Azimuth, Heading, or North Pointing having any of the following characteristics, and specially designed components thereof: 1. 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 2. Designed to have a non-operating shock level of at least 900 g at a duration of at least 1 msec. Note: The parameters of I.a. and I.b. 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 Note: I.b. 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. II. 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. III. 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 downhole well services operations. | 7A003 7A103 |
| A9. Aerospace and Propulsion | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| II.A9.001 | Explosive bolts. | – |
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
|---|---|---|
| II.B.001 | Technology required for the development, production, or use of the items in Part II.A. (Goods) above. Technical Note: The term «technology» includes software. | – |
| A0. Nuclear Materials, Facilities, and Equipment | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.A0.015 | «Glove Boxes», specially designed for radioactive isotopes, radioactive sources or radionuclides. Technical Note: «Glove Boxes» means equipment providing protection to the user, from hazardous vapour, particles or radiation, from materials inside the equipment being handled or processed by a person outside the equipment, by means of manipulators or gloves integrated into the equipment. | 0B006 |
| III.A0.016 | Toxic gas monitoring systems designed for continuous operation and detection of hydrogen sulphide, and specially designed detectors therefore. | 0A001 0B001.c |
| III.A0.017 | Helium leak detectors. | 0A001 0B001.c |
| A1. Materials, chemicals, «micro-organisms» and «toxins» | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.A1.003 | Ring-shaped seals and gaskets, having an inner diameter of 650 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). | |
| III.A1.004 | Personal equipment for detecting radiation of nuclear origin, including personal dosimeters. Note: This item does not cover nuclear detection systems defined in item 1A004.c. | 1A004.c |
| III.A1.020 | 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 |
| III.A1.021 | Carbon-Carbon composite material. | 1A002.b.1 |
| III.A1.022 | Nickel alloys in crude or semi-fabricated form, containing 60 % by weight or more nickel. | 1C002.c.1.a |
| III.A1.023 | 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 |
| III.A1.024 | Propellants and constituent chemicals for propellants as follows: a. Toluene Diisocyanate (TDI); b. Methyl Diphenyl Diisocyanate (MDI); c. Isophorone Diiscocyanate (IPDI); d. Sodium perchlorate; e. Xylidine; f. Hydroxy Terminated Polyether (HTPE); or g. Hydroxy Terminated Caprolactone Ether (HTCE). Technical Note: This item refers to pure substance and any mixture containing at least 50 % of one of the chemicals mentioned above. | 1C111 |
| III.A1.025 | «Lubricating materials» containing, as their principal ingredients, any of the following: a. Perfluoroalkylether, (CAS 60164-51-4); b. Perfluoropolyalkylether, PFPE, (CAS 6991-67-9). Technical Note: «Lubricating materials» means oils and fluids. | 1C006 |
| III.A1.026 | Beryllium-copper or copper-beryllium alloys in plate, sheet, strip or rolled bar form, having a composition comprising copper as the major element by weight and other elements including less than 2 % by weight beryllium. | 1C002.b |
| A2. Materials Processing | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.A2.008 | Liquid-liquid contacting equipment (mixer-settlers, pulsed 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 stainless steel. N.B. see also II.A2.014. Note: for stainless steel with more than 25 % nickel and 20 % chromium by weight see entry II.A2.014.a | 2B350.e |
| III.A2.009 | Industrial equipment and components, other than those specified in 2B350.d, as follows: N.B. see also II.A2.015. Heat exchangers or condensers with a heat transfer surface area greater than 0,05 m2, and less than 30 m2; 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 stainless steel. Note 1: For stainless steel with more than 25 % nickel and 20 % chromium by weight see entry II.A2.015a. Note 2: 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 |
| III.A2.010 | Multiple-seal, and seal-less pumps, other than those specified in 2B350.i, suitable for corrosive fluids, with manufacturer’s specified maximum flow-rate greater than 0,6 m3/hour, or vacuum pumps with manufacturer’s specified maximum flow-rate greater than 5 m3/hour [measured under standard temperature (273 K or 0 °C) and pressure (101,3 kPa) conditions]; 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 stainless steel. N.B. see also II.A2.016. Note: for stainless steel with more than 25 % nickel and 20 % chromium by weight see entry II.A2.016a. Technical Note: The materials used for gaskets and seals and other implementation of sealing functions do not determine the status of control of the pump. | 2B350.i |
| III.A2.017 | Electrical Discharge Machine (EDM) tools for removing or cutting metals, ceramics or «composites», as follows, and specially designed ram, sinker or wire electrodes therefor: a. Ram or sinker electrode Electrical Discharge Machines; b. Wire electrode Electrical Discharge Machines. Note: Electrical Discharge Machines are also known as Spark Erosion Machines or Wire Erosion Machines. | 2B001.d |
| III.A2.018 | Computer controlled or «numerically controlled» co-ordinate measuring machines (CMM), or dimensional inspection machines, having a three dimensional (volumetric) maximum permissible error of indication (MPPE) at any point in the operating range of the machine (i.e. within the length axes) equal to or less (better) than (3 + L/1 000 ) μm (L is the measured length in mm), tested according to ISO 10360-2 (2001), and measurement probes designed therefor. | 2B006.a 2B206.a |
| III.A2.019 | Computer controlled or «numerically controlled» Electron Beam Welding Machines, and specially designed components therefor. | 2B001.e.1.b |
| III.A2.020 | Computer controlled or «numerically controlled» Laser Welding and Laser Cutting Machines, and specially designed components therefor. | 2B001.e.1.c |
| III.A2.021 | Computer controlled or «numerically controlled» Plasma Cutting Machines, and specially designed components therefor. | 2B001.e.1 |
| III.A2.022 | Vibration Monitoring Equipment specially designed for rotors or rotating equipment and machinery, capable of measuring any frequency in the range 600-2 000 Hz. | 2B116 |
| III.A2.023 | Liquid ring vacuum pumps, and specially designed components therefore. | 2B231 2B350.i |
| III.A2.024 | Rotary vane vacuum pumps, and specially designed components therefore. Note 1: III.A2.024 does not control rotary vane vacuum pumps that are specially designed for specific other equipment. Note 2: The control status of rotary vane vacuum pumps that are specially designed for specific other equipment is determined by the control status of the other equipment. | 2B231 2B235.i 0B002.f |
| III.A2.025 | Air filters, as follows, having one or more physical size dimension exceeding 1 000 mm: a. High Efficiency Particulate Air (HEPA) filters; b. Ultra-Low Penetration Air (ULPA) filters. Note: III.A2.025 does not control air filters specially designed for medical equipment. | 2B352.d |
| A3. Electronics | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.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. | |
| III.A3.005 | «Frequency changers», frequency generators and variable speed electrical drives, having all the following characteristics: a. Multiphase output power of 10 W or greater; b. Capable of operating at a frequency of 600 Hz or more; and c. Frequency control better (less) than 0,2 %. Technical Note: «Frequency Changers» includes frequency converters and frequency inverters. Notes: 1. Item III.A3.005 does not control frequency changers that include communication protocols or interfaces designed for specific industrial machinery (such as machine tools, spinning machines, printed circuit board machines) so that the frequency changers cannot be used for other purposes while meeting the performance characteristics above. 2. Item III.A3.005 does not control frequency changers specially designed for vehicles and which operate with a control sequence that is mutually communicated between the frequency changer and the vehicle control unit. | 3A225 0B001.b.13 |
| A6. Sensors and Lasers | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.A6.012 | «Vacuum pressure gauges», being electrically powered and having measurement accuracy of 5 % or less (better). Technical Note: «Vacuum pressure gauges» include Pirani Gauges, Penning Gauges and Capacitance Manometers. | 0B001.b |
| III.A6.013 | Microscopes and related equipment and detectors, as follows: a. Scanning Electron Microscopes; b. Scanning Auger Microscopes; c. Transmission Electron Microscopes; d. Atomic Force Microscopes; e. Scanning Force Microscopes; f. Equipment and detectors, specially designed for use with the microscopes specified in III.A6.013 a) to e) above, employing any of the following materials analysis techniques: 1. X-ray Photo Spectroscopy (XPS); 2. Energy-dispersive X-ray Spectroscopy (EDX, EDS); or 3. Electron Spectroscopy for Chemical Analysis (ESCA). | 6B |
| A7. Navigation and Avionics | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.A7.002 | Accelerometers containing piezoelectric ceramic transducer element, having a sensitivity of 1 000 mV/g or better (higher) | 7A001 |
| A9. Aerospace and Propulsion | ||
|---|---|---|
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
| III.A9.002 | «Load Cells» capable of measuring rocket motor thrust having a capacity exceeding 30 kN. Technical Note: «Load Cells» means devices and transducers for the measurement of force in both tension and in compression. Note: III.A9.002 does not include equipment, devices or transducers, specially designed for the measurement of the weight of vehicles, e.g. weigh bridges. | 9B117 |
| III.A9.003 | Electrical power generation gas turbines, components and related equipment as follows: a. Gas turbines specially designed for electrical power generation, having an output exceeding 200 MW; b. Vanes, stators, combustion chambers and fuel injection nozzles, specially designed for electrical power generation gas turbines specified in III.A9.003.a; c. Equipment specially designed for the «development» and «production» of electrical power generation gas turbines specified in III. A9.003.a. | 9A001 9A002 9A003 9B001 9B003 9B004 |
| No | Description | Related item from Annex I to Regulation (EU) 2021/821 |
|---|---|---|
| III.B.001 | «Technology» required for the use of the items in Part III.A. (Goods) above. Technical Note: The term «technology» includes software. |
| HS code | Description |
|---|---|
| 2709 00 | Petroleum oils and oils obtained from bituminous minerals, crude. |
| 2710 | Petroleum oils and oils obtained from bituminous minerals, other than crude; preparations not elsewhere specified or included, containing by weight 70 % or more of petroleum oils or of oils obtained from bituminous minerals, these oils being the basic constituents of the preparations; waste oils (save that the purchase, in Iran, of kerosene jet fuel of CN code 2710 19 21 is not prohibited provided that it is intended and used solely for the purpose of the continuation of the flight operation of the aircraft into which it is loaded). |
| 2712 | Petroleum jelly; paraffin wax, microcrystalline petroleum wax, slack wax, ozokerite, lignite wax, peat wax, other mineral waxes, and similar products obtained by synthesis or by other processes, whether or not coloured. |
| 2713 | Petroleum coke, petroleum bitumen and other residues of petroleum oils or of oils obtained from bituminous minerals. |
| 2714 | Bitumen and asphalt, natural; bituminous or oil-shale and tar sands; asphaltites and asphaltic rocks. |
| 2715 00 00 | Bituminous mixtures based on natural asphalt, on natural bitumen, on petroleum bitumen, on mineral tar or on mineral tar pitch (for example, bituminous mastics, cut-backs).’; |
| HS code | Description |
|---|---|
| 2709 00 10 | Natural gas condensates |
| 2711 11 00 | Natural Gas – in liquefied state |
| 2711 21 00 | Natural Gas – in gaseous state |
| 2711 12 | Propane |
| 2711 13 | Butanes |
| 2711 19 00 | Other liquefied petroleum gases |
| HS code | Description |
|---|---|
| 2812 11 00 | Phosgene (carbonyl chloride) |
| 2814 | Ammonia |
| 2901 21 00 | Ethylene |
| 2901 22 00 | Propene (propylene) |
| 2902 20 00 | Benzene |
| 2902 30 00 | Toluene |
| 2902 41 00 | o-Xylene |
| 2902 42 00 | m-Xylene |
| 2902 43 00 | p-Xylene |
| 2902 44 00 | Mixed xylene isomers |
| 2902 50 00 | Styrene |
| 2902 60 00 | Ethyl benzene |
| 2902 70 00 | Cumene |
| 2903 11 00 | Chloromethane (methyl chloride) and chloroethane (ethyl chloride) |
| 2903 29 00 | Unsaturated chlorinated derivatives of acyclic hydrocarbons – other |
| 2903 81 00 | 1,2,3,4,5,6-Hexachlorocyclohexane (HCH (ISO)), including lindane (ISO, INN) |
| 2903 82 00 | Aldrin (ISO), chlordane (ISO) and heptachlor (ISO) |
| 2903 89 70 | – Halogenated derivatives of cyclanic, cyclenic or cycloterpenic hydrocarbons; -- Other; --- Other |
| 2903 91 00 | Chlorobenzene, o-dichlorobenzene and p-dichlorobenzene |
| 2903 92 00 | Hexachlorobenzene (ISO) and DDT (ISO) [clofenotane (DCI), 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane] |
| 2903 99 80 | – Halogenated derivatives of aromatic hydrocarbons; -- Other; --- Other |
| 2905 11 00 | Methanol (methyl alcohol) |
| 2905 12 00 | Propan-1-ol (propyl alcohol) and propan-2-ol (isopropyl alcohol) |
| 2905 13 00 | Butan-1-ol (n-butyl alcohol) |
| 2905 31 00 | Ethylene glycol (ethanediol) |
| 2907 11 – 2907 19 | Phenols |
| 2909 | Ether-alcohols, ether-phenols, ether-alcohol-phenols, alcohol peroxides, ether peroxides, acetal and hemiacetal peroxides, ketone peroxides (whether or not chemically defined), and their halogenated, sulphonated, nitrated or nitrosated derivatives |
| 2909 41 00 | 2, 2′-Oxydiethanol (diethylene glycol, digol) |
| 2909 43 00 | Monobutyl ethers of ethylene-glycol or diethylene glycol |
| 2909 44 00 | Other monoalkyl ethers of ethylene-glycol or diethylene glycol |
| 2909 49 | Other ether-alcohols and their halogenated, sulphonated, nitrated or nitrosated derivatives |
| 2910 10 00 | Oxirane (ethylene oxide) |
| 2910 20 00 | Methyloxirane (propylene oxide) |
| 2914 11 00 | Acetone |
| 2917 14 00 | Maleic anhydride (MA) |
| 2917 35 00 | Phthalic anhydride (PA) |
| 2917 36 00 | Terephthalic acid and its salts |
| 2917 37 00 | Dimethyl terephthalate (DMT) |
| 2926 10 00 | Acrylonitrile |
| ex 2929 10 00 | Methylene diphenyl diisocyanate (MDI) |
| ex 2929 10 00 | Hexamethylene diisocyanate (HDI) |
| ex 2929 10 00 | Toluene diisocyanate (TDI) |
| 3102 30 | Ammonium Nitrate |
| 3901 | Polymers of ethylene, in primary forms |
| HS code | Description |
|---|---|
| 2707 10 00 | Benzol (benzene) |
| 2707 20 00 | Toluol (toluene) |
| 2707 30 00 | Xylol (xylenes) |
| 2707 40 00 | Naphthalene |
| 2707 99 80 | Phenols |
| 2711 14 00 | Ethylene, propylene, butadiene |
| HS code | Description |
|---|---|
| ###– Casing, tubing and drill pipe, of a kind used in drilling for oil or gas: | |
| 7304 22 | – Drill pipe of stainless steel |
| 7304 23 | – – Other drill pipe |
| 7304 24 | – – Other, of stainless steel |
| 7304 29 | – – Other |
| ex ex ex 7305 | Other tubes and pipes (for example, welded, riveted or similarly closed), having circular cross-sections, the external diameter of which exceeds 406,4 mm, of iron or steel, with a chrome content of 1 % or more and with a cold resistance that can go below – 120 °C |
| – Line pipe of a kind used for oil or gas pipelines: | |
| 7306 11 – – Welded, of stainless steel | |
| 7306 19 – – Other | |
| – Casing and tubing of a kind used in drilling for oil or gas: | |
| 7306 21 00 | – – Welded, of stainless steel |
| 7306 29 00 | – – Other |
| Containers for compressed or liquefied gas, of iron or steel: | |
| 7311 00 99 | – Other, of a capacity of 1 000 l or more |
| ex ex ex 7613 | Aluminium containers for compressed or liquefied gas, of a capacity of 1 000 l or more’; |
| HS code | Description |
|---|---|
| 8406 10 | Steam and other vapour turbines for marine propulsion |
| ex 8406 90 | Parts of steam turbines for marine propulsion |
| 8407 21 | Marine propulsion engines, outboard motors |
| ex 8407 29 | Marine propulsion engines, other |
| 8408 10 | Marine propulsion engines |
| ex 8409 91 00 | Parts suitable for use solely or principally with machines of subheadings 8407 21 or 8407 29 |
| ex 8409 99 00 | Parts suitable for use solely or principally with machines of subheading 8408 10° |
| ex 8411 81 | Other gas turbine of a power not exceeding 5 000 kW, for marine propulsion |
| ex 8411 82 | Other gas turbines of a power exceeding 5 000 kW, for marine propulsion |
| ex 8468 | Machinery and apparatus for soldering, brazing or welding whether or not capable of cutting, other than those of heading 8515; gas-operated surface tempering machines and appliances |
| ex 8483 | Transmission shafts (including cam shafts and crank shafts) and cranks; bearing housings and plain shaft bearings; gears and gearing; ball or roller screws; gear boxes and other speed changers, including torque converters; flywheels and pulleys, including pulley blocks; clutches and shaft couplings (including universal joints), designed for the propulsion of vessels at the maximum possible deadweight tonnage at scantling draught of 55 000 dwt or more |
| 8487 10 | Ships’ or boats’ propellers and blades therefor |
| ex 8515 | Electric (including electrically heated gas), laser or other light or photon beam, ultrasonic, electron beam, magnetic pulse or plasma arc soldering, brazing or welding machines and apparatus, whether or not capable of cutting; electric machines and apparatus for hot spraying of metals or cermets |
| ex 9014 10 00 | Direction finding compasses, solely for the maritime industry |
| ex 9014 80 00 | Other navigational instruments and appliances, solely for the maritime industry |
| ex 9014 90 00 | Parts and accessories of subheadings 9014 10 00 and 9014 80 00, solely for the maritime industry |
| ex 9015 | Surveying (including photogram metrical surveying), hydro graphic, oceanographic, hydrological, meteorological or geophysical instruments and appliances, excluding compasses; rangefinders, solely for the maritime industry’ |
| HS code | Description |
|---|---|
| 7102 | Diamonds, whether or not worked, but not mounted or set |
| 7106 | Silver (including silver plated with gold or platinum), unwrought or in semi-manufactured forms, or in powder form |
| 7108 | Gold (including gold plated with platinum), unwrought or in semi-manufactured forms, or in powder form |
| 7109 | Base metals or silver, clad with gold, not further worked than semi-manufactured. |
| 7110 | Platinum, unwrought or in semi-manufactured forms, or in powder form |
| 7111 | Base metals, silver or gold, clad with platinum, not further worked than semi-manufactured. |
| 7112 | Waste and scrap of precious metal or of metal clad with precious metal; other waste and scrap containing precious metal or precious-metal compounds, of a kind used principally for the recovery of precious metal’; |
| 1. Graphite | |
|---|---|
| HS code | Description |
| 2504 | Natural graphite |
| 3801 | Artificial graphite; colloidal or semi-colloidal graphite; preparations based on graphite or other carbon in the form of pastes, blocks, plates or other semi-manufactures |
| 6815 11 | Carbon fibres |
| 6815 12 | Fabrics of carbon fibres |
| 6815 13 | Other articles of carbon fibres |
| 6815 19 | Other articles of graphite or other carbon for non-electrical uses |
| 6903 10 | Other refractory ceramic goods (for example, retorts, crucibles, muffles, nozzles, plugs, supports, cupels, tubes, pipes, sheaths, rods and slide gates), other than those of siliceous fossil meals or of similar siliceous earths: containing, by weight, more than 50 % of free carbon |
| 8545 | Carbon electrodes, carbon brushes, lamp carbons, battery carbons and other articles of graphite or other carbon, with or without metal, of a kind used for electrical purposes |
| 2. Iron and Steel | |
|---|---|
| HS code | Description |
| 7201 | Pig iron and spiegeleisen in pigs, blocks or other primary forms |
| 7202 | Ferro-alloys |
| 7203 | Ferrous products obtained by direct reduction of iron ore and other spongy ferrous products, in lumps, pellets or similar forms; iron having a minimum purity by weight of 99,94 %, in lumps, pellets or similar forms |
| 7204 | Ferrous waste and scrap; remelting scrap ingots of iron or steel |
| 7205 | Granules and powders, of pig iron, spiegeleisen, iron or steel |
| 7206 | Iron and non-alloy steel in ingots or other primary forms (excluding iron of heading 7203) |
| 7207 | Semi-finished products of iron or non-alloy steel |
| 7218 | Stainless steel in ingots or other primary forms; semi-finished products of stainless steel |
| 7224 | Other alloy steel in ingots or other primary forms; semi-finished products of other alloy steel |
| 3. Copper and articles thereof | |
|---|---|
| HS code | Description |
| 7401 00 00 | Copper mattes; cement copper (precipitated copper) |
| 7402 00 00 | Unrefined copper; copper anodes for electrolytic refining |
| 7403 | Refined copper and copper alloys, unwrought |
| 7404 00 | Copper waste and scrap |
| 7405 00 00 | Master alloys of copper |
| 7406 | Copper powders and flakes |
| 7407 | Copper bars, rods and profiles |
| 7410 | Copper foil (whether or not printed or backed with paper, paperboard, plastics or similar backing materials) of a thickness (excluding any backing) not exceeding 0,15 mm |
| 7413 00 00 | Stranded wire, cables, plaited bands and the like, of copper, not electrically insulated |
| 4. Nickel and articles thereof | |
|---|---|
| HS code | Description |
| 7501 | Nickel mattes, nickel oxide sinters and other intermediate products of nickel metallurgy |
| 7502 | Unwrought nickel |
| 7503 00 | Nickel waste and scrap |
| 7504 00 00 | Nickel powders and flakes |
| 7505 | Nickel bars, rods, profiles and wire |
| 7506 | Nickel plates, sheets, strip and foil |
| 7507 | Nickel tubes, pipes and tube or pipe fittings (for example, couplings, elbows, sleeves) |
| 5. Aluminium | |
|---|---|
| HS code | Description |
| 7601 | Unwrought aluminium |
| 7602 | Aluminium waste and scrap |
| 7603 | Aluminium powders and flakes |
| 7605 | Aluminium wire |
| 7606 | Aluminium plates, sheets and strip, of a thickness exceeding 0,2 mm |
| 7609 00 00 | Aluminium tube or pipe fittings (for example, couplings, elbows, sleeves) |
| 7614 | Stranded wire, cables, plaited bands and the like, of aluminium, not electrically insulated |
| 6. Lead | |
|---|---|
| HS code | Description |
| 7801 | Unwrought lead |
| 7802 00 00 | Lead waste and scrap |
| 7804 | Lead plates, sheets, strip and foil; lead powders and flakes |
| 7. Zinc | |
|---|---|
| HS code | Description |
| 7901 | Unwrought zinc |
| 7902 00 00 | Zinc waste and scrap |
| 7903 | Zinc dust, powders and flakes |
| 7904 00 00 | Zinc bars, rods, profiles and wire |
| 7905 00 00 | Zinc plates, sheets, strip and foil |
| 8. Tin | |
|---|---|
| HS code | Description |
| 8001 | Unwrought tin |
| 8002 00 00 | Tin waste and scrap |
| 8003 00 00 | Tin bars, rods, profiles and wire |
| 9. Other base metals, cermets, articles thereof | |
|---|---|
| HS code | Description |
| ex 8101 | Tungsten (wolfram) and articles thereof, including waste and scrap, other than anti-cathodes for X-ray tubes |
| ex 8102 | Molybdenum and articles thereof, including waste and scrap, other than articles specifically designed for use in dentistry |
| ex 8103 | Tantalum and articles thereof, including waste and scrap, other than dental instruments and surgical tools and articles specially designed for orthopaedic and surgical purposes |
| 8104 | Magnesium and articles thereof, including waste and scrap |
| 8105 | Cobalt mattes and other intermediate products of cobalt metallurgy; cobalt and articles thereof, including waste and scrap |
| ex 8106 | Bismuth and articles thereof, including waste and scrap, other than that specially prepared for the preparation of chemical compounds for pharmaceutical use |
| 8108 | Titanium and articles thereof, including waste and scrap |
| 8109 | Zirconium and articles thereof, including waste and scrap |
| 8110 | Antimony and articles thereof, including waste and scrap |
| 8111 00 | Manganese and articles thereof, including waste and scrap |
| ex 8112 | Beryllium, chromium, hafnium, rhenium, thallium, cadmium, germanium, vanadium, gallium, indium and niobium (columbium), and articles of these metals, including waste and scrap other than windows for X-ray tubes |
| 8113 00 | Cermets and articles thereof, including waste and scrap’ |
| Description | HS/CN code |
|---|---|
| Energetic materials as follows and mixtures thereof: | |
| Ammonium picrate (CAS 131-74-8); | ex 2908 99 00 |
| Black powder; | ex 3601 00 00 |
| Hexanitrodiphenylamine (CAS 131-73-7); | ex 2921 44 00 |
| Difluoroamine(CAS 10405-27-3); | ex 2812 90 00 |
| Nitrostarch (CAS 9056-38-6); | ex 3505 10 50 |
| Tetranitronaphthalene (CAS 28995-89-3, CAS 4793-98-0); | ex 2902 90 00 |
| Trinitroanisol (CAS 606-35-9); | ex 2909 30 90 |
| Trinitronaphthalene (CAS 55810-17-8, CAS 2243-94-9); | ex 2902 90 00 |
| Trinitroxylene (CAS 632-92-8); | ex 2902 41 00 ex 2902 42 00 ex 2902 43 00 ex 2902 44 00 |
| N-methyl-2-pyrrolidinone; 1-methyl-2-pyrrolidinone (CAS 872-50-4); | ex 2939 79 90 |
| Dioctylmaleate (CAS 142-16-5); | ex 2917 19 80 |
| Ethylhexylacrylate (CAS 103-11-7); | ex 2916 12 00 |
| Triethylaluminium (TEA) (CAS 97-93-8), trimethylaluminium (TMA) (CAS 75-24-1), and other pyrophoric metal alkyls and aryls of lithium, sodium, magnesium, zinc or boron; | ex 2931 90 00 |
| Nitrocellulose (CAS 9004-70-0); | 3912 20 |
| Nitroglycerin (or glyceroltrinitrate, trinitroglycerine) (NG) (CAS 55-63-0); | ex 2920 90 70 |
| 2,4,6-trinitrotoluene (TNT) (CAS 118-96-7); | ex 2904 20 00 |
| Ethylenediaminedinitrate (EDDN) (CAS 20829-66-7); | ex 2920 90 70 |
| Pentaerythritoltetranitrate (PETN) (CAS 78-11-5); | ex 2920 90 70 |
| Lead azide (CAS 13424-46-9), normal lead styphnate(CAS 15245-44-0) and basic lead styphnate (CAS 12403-82-6), and primary explosives or priming compositions containing azides or azide complexes; | ex 2850 00 60 ex 2908 99 00 |
| Diethyldiphenylurea (CAS 85-98-3); dimethyldiphenylurea(CAS 611-92-7); methylethyldiphenyl urea | ex 2924 21 00 |
| N,N-diphenylurea (unsymmetrical diphenylurea) (CAS 603-54-3); | ex 2924 21 00 |
| Methyl-N,N-diphenylurea (methyl unsymmetrical diphenylurea) (CAS 13114-72-2); | ex 2924 21 00 |
| Ethyl-N,N-diphenylurea (ethyl unsymmetrical diphenylurea) (CAS 64544-71-4); | ex 2924 21 00 |
| 4-Nitrodiphenylamine (4-NDPA)(CAS 836-30-6); | ex 2921 44 00 |
| 2,2-dinitropropanol (CAS 918-52-5); | ex 2905 59 98 |
| Fibrous and filamentary materials, not controlled by 1C010 or 1C210, for use in «composite» structures and with a specific modulus of 3,18 x 106 m or greater and a specific tensile strength of 7,62 x 104 m or greater | ex 5402 11 ex 5501 11 ex 5503 11 ex 6815 11 ex 6815 12 ex 6815 19 ex 7019 19 10 |
| Nanomaterials as follows: a. Semiconductor nanomaterials; b. Composite-based nanomaterials; or c. Any of the following carbon-based nanomaterials: 1. Carbon nanotubes; 2. Carbon nanofibres; 3. Fullerenes; 4. Graphenes; or 5. Carbon onions. Notes: For the purposes of this control, nanomaterial means a material that meets at least one of the following criteria: 1. Consists of particles, with one or more external dimensions in the size range 1–100 nm for more than 1 % of their number size distribution; 2. Has internal or surface structures in one or more dimensions in the size range 1–100 nm; or 3. Has a specific surface area by volume greater than 60 m2/cm3, excluding materials consisting of particles with a size lower than 1 nm | ex 2805 30 ex 2846 10 ex 2846 90 ex 5402 11 ex 5501 11 ex 5503 11 ex 6815 11 ex 6815 12 ex 6815 13 ex 6815 19 ex 7019 12 ex 7019 19 |
| Tungsten, tungsten carbide and alloys, not controlled by 1C117, 1C226, II.A1.013 or II.A1.017, containing more than 90 % tungsten by weight. Note 1: For the purposes of this control, wire is excluded Note 2: For the purposes of this control, surgical or medical instruments are excluded | 2849 90 30 ex 8101 10 ex 8101 94 ex 8101 97 ex 8101 99 |
| Ultra-High-Molecular-Weight Polyethylene (UHMWPE), not controlled by 1C010 or 1C210, presented in any of the following forms: a. Primary forms; b. Filament yarn or monofilaments; c. Filament tows; d. Rovings; e. Staple or chopped fibres; f. Fabrics; g. Pulp or flocks. | ex 3901 20 10 ex 3901 20 90 ex 5402 39 ex 5402 49 ex 5402 59 ex 5402 69 ex 5404 90 90 ex 5407 20 11 ex 5407 20 19 ex 5501 90 ex 5503 90 ex 5506 90 ex 5601 30 |
| Description | HS/CN code |
|---|---|
| Bearings and bearing systems not controlled by 2A001 and 2A101: a. Ball bearings or Solid ball bearings, having tolerances specified by the manufacturer in accordance with ABEC 7, ABEC 7P, or ABEC 7T or ISO Standard Class 4 or better (or equivalents) and having any of the following characteristics; 1. Manufactured for use at operating temperatures above 573 K (300 °C) either by using special materials or by special heat treatment; or 2. With lubricating elements or component modifications that, according to the manufacturer’s specifications, are specially designed to enable the bearings to operate at speeds exceeding 2,3 million «DN»; b. Solid tapered roller bearings, having tolerances specified by the manufacturer in accordance with ANSI/ABMA Class 00 (inch) or Class A (metric) or better (or equivalents) and having either of the following characteristics: 1. With lubricating elements or component modifications that, according to the manufacturer’s specifications, are specially designed to enable the bearings to operate at speeds exceeding 2,3 million «DN»; or 2. Manufactured for use at operating temperatures below 219 K (–54 °C) or above 423 K (150 °C); c. Gas-lubricated foil bearing manufactured for use at operating temperatures of 561 K (288 °C) or higher and a unit load capacity exceeding 1 MPa; d. Active magnetic bearing systems; e. Fabric-lined self-aligning or fabric-lined journal sliding bearings manufactured for use at operating temperatures below 219 K (–54 °C) or above 423 K (150 °C). | ex 8482 10 ex 8482 20 ex 8482 30 ex 8482 40 ex 8482 50 ex 8482 80 ex 8482 91 |
| Technical Notes: 1. «DN» is the product of the bearing bore diameter in mm and the bearing rotational velocity in rpm. 2. Operating temperatures include those temperatures obtained when a gas turbine engine has stopped after operation | |
| Concealed object detection equipment operating in the frequency range from 30 GHz to 3 000 GHz and having a spatial resolution of 0,1 mrad (milliradian) up to and including 1 mrad (milliradian) at a standoff distance of 100 m; and components, other than those specified in the CML or in Regulation (EU) 2021/821. Note: Concealed object detection equipment includes but is not limited to equipment for screening people, documents, baggage, other personal effects, cargo and/or mail. Technical Note: The range of frequencies span what is generally considered as the millimetre-wave, submillimetre-wave and terahertz frequency regions. | ex 8526 10 ex 8526 92 ex 8482 10 90 |
| «Numerical control» units for machine tools and «numerically controlled» machine tools, other than those specified in the CML or in Regulation (EU) 2021/821 (see List of Items Controlled): a. «Numerical control» units for machine tools: 1. Having four interpolating axes that can be coordinated simultaneously for contouring control; or 2. Having two or more axes that can be coordinated simultaneously for contouring control and a minimum programmable increment better (less) than 0,001 mm; 3. «Numerical control» units for machine tools having two, three or four interpolating axes that can be coordinated simultaneously for contouring control, and capable of receiving directly (on-line) and processing computer-aided-design (CAD) data for internal preparation of machine instructions; or b. Motion control boards specially designed for machine tools and having any of the following characteristics: 1. Interpolation in more than four axes; 2. Capable of real-time processing of data to modify tool path, feed rate and spindle data, during the machining operation, by any of the following: a. Automatic calculation and modification of part program data for machining in two or more axes by means of measuring cycles and access to source data; or b. Adaptive control with more than one physical variable measured and processed by means of a computing model (strategy) to change one or more machining instructions to optimize the process; or 3. Capable of receiving and processing CAD data for internal preparation of machine instructions; c. «Numerically controlled» machine tools that, according to the manufacturer’s technical specifications, can be equipped with electronic devices for simultaneous contouring control in two or more axes and that have both of the following characteristics: 1. Two or more axes that can be coordinated simultaneously for contouring control; and 2. Positioning accuracies according to ISO 230/2 (2006), with all compensations available: a. Better than 15 μm along any linear axis (overall positioning) for grinding machines; b. Better than 15 μm along any linear axis (overall positioning) for milling machines; or c. Better than 15 μm along any linear axis (overall positioning) for turning machines; or d. Machine tools, as follows, for removing or cutting metals, ceramics or «composites», that, according to the manufacturer’s technical specifications, can be equipped with electronic devices for simultaneous contouring control in two or more axes: 1. Machine tools for turning, grinding, milling or any combination thereof, having two or more axes that can be coordinated simultaneously for contouring control and having any of the following characteristics: a. One or more contouring «tilting spindles»; Note: this applies to machine tools for grinding or milling only. b. «Camming» (axial displacement) in one revolution of the spindle less (better) than 0,0006 mm total indicator reading (TIR); Note: this applies to machine tools for turning only. c. «Run-out» (out-of-true running) in one revolution of the spindle less (better) than 0,0006 mm total indicator reading (TIR); or d. The positioning accuracies, with all compensations available, are less (better) than: 0,001 o on any rotary axis; 2. Electrical discharge machines (EDM) of the wire feed type that have five or more axes that can be coordinated simultaneously for contouring control. | ex 8537 10 10 ex 8537 10 98 ex 8456 30 ex 8457 10 ex 8457 20 ex 8457 30 ex 8458 11 ex 8458 91 ex 8459 10 ex 8459 31 ex 8459 51 ex 8459 61 ex 8460 12 ex 8460 22 ex 8460 23 ex 8460 24 |
| Assemblies, circuit boards or inserts specially designed for machine tools controlled in this annex: a. Spindle assemblies, consisting of spindles and bearings as a minimal assembly, with radial («run-out») or axial («camming») axis motion in one revolution of the spindle less (better) than 0,0006 mm total indicator reading (TIR); b. Single point diamond cutting tool inserts, having all of the following characteristics: 1. Flawless and chip-free cutting edge when magnified 400 times in any direction; 2. Cutting radius from 0,1 to 5 mm inclusive; and 3. Cutting radius out-of-roundness less (better) than 0,002 mm TIR. c. Specially designed printed circuit boards with mounted components capable of upgrading, according to the manufacturer’s specifications, «numerical control» units, machine tools or feed-back devices to or above the levels specified in this Annex. Technical Note: This entry does not control measuring interferometer systems, without closed or open loop feedback, containing a laser to measure slide movement errors of machine-tools, dimensional inspection machines or similar equipment. | ex 8207 19 ex 8207 20 ex 8207 50 ex 8207 60 ex 8207 90 ex 8466 10 ex 8466 20 20 ex 8466 20 91 ex 8466 20 98 ex 8466 30 ex 8466 93 |
| «Software» specially designed for the «development», «production», or «use» of the machine tools controlled in this Annex | |
| «Numerical controlled» machine tools, having one or more linear axis with a travel length greater than 8 000 mm. | ex 8456 ex 8457 ex 8458 ex 8459 ex 8460 |
| Description | HS/CN code |
|---|---|
| Integrated circuits as follows: Field Programable Gate Array (FPGA), microcontrollers, microprocessors, signal processors, signal analysers, Analogue-to-Digital Converters (ADC), voltage regulators, video encoders and DC-DC converters | ex 8542 31 ex 8542 39 |
| «Monolithic Microwave Integrated Circuits» («MMIC») amplifiers and devices | ex 8542 33 8543 70 02 |
| RF filters or Electromagnetic Interference (EMI) filters | ex 8548 00 |
| Tantalum capacitors | 8532 21 |
| Aluminium electrolytic capacitors | 8532 22 |
| Ceramic dielectric multilayer capacitors | 8532 24 |
| Storage integrated circuits, as follows: a. Electrically erasable programmable read-only memories (EEPROMs) with a storage capacity; 1. Exceeding 16 Mbits per package for flash memory types; or 2. Exceeding either of the following limits for all other EEPROM types: a. Exceeding 1 Mbit per package; or b. Exceeding 256 kbit per package and a maximum access time of less than 80 ns; b. Static random access memories (SRAMs) with a storage capacity: 1. Exceeding 1 Mbit per package; or 2. Exceeding 256 kbit per package and a maximum access time of less than 25 ns | ex 8542 32 |
| Mounted piezo-electric crystals | 8541 60 |
| «Semiconductor devices» fulfilling the military standard MIL-STD-750D or other equivalent standard. Technical note: For the purposes of this control «semiconductor devices» are electronic components that rely on the electronic properties of a semiconductor material, such as diodes, transducers, photosensitive devices, thyristors, diacs, triacs or transistors, including metal-oxide-semiconductor field-effect transistors (MOSFETs), FETs, FINFETs, IGBT, etc | ex 8541 10 ex 8541 21 ex 8541 29 ex 8541 30 ex 8541 49 ex 8541 51 ex 8541 59 |
| Electrical plugs, connectors, jacks, jumpers, terminals, sockets or adapters, having any of the following: a. Rated for operation at an ambient temperature above 398K (125 °C); b. Rated for operation at an ambient temperature below 218K (–55 °C); or c. Rated for operation over the entire ambient temperature range from 218K (–55 °C) to 398K (125 °C). | ex 8536 69 ex 8536 90 |
| Equipment for the manufacture of Printed Circuit Boards (PCBs) and specially designed components and accessories therefor, as follows: a. Film processing equipment; b. Solder mask coating equipment; c. Photo plotter equipment; d. Plating or electroplating deposition equipment; e. Vacuum chambers and presses; f. Roll laminators; g. Alignment equipment; or h. Etching equipment. | ex 8424 89 40 ex 8479 89 70 ex 8543 30 40 ex 8486 40 ex 8420 10 81 ex 8479 90 15 |
| Automated optical inspection equipment for testing Printed Circuit Boards (PCBs), based on optical or electrical sensors, and capable to detect any of the following quality defects: a. Spacing, area, volume or height; b. Bill boarding; c. Components (presence, absence, flipped, offset, polarity, or skew); d. Solder (bridging, insufficient solder joints); e. Leads (insufficient paste, lifting); f. Tombstoning; or g. Electrical (shorts, opens, resistance, capacitance, power, grid performance). | ex 9030 31 ex 9030 32 ex 9030 33 20 ex 9030 33 70 ex 9030 39 00 ex 9030 84 ex 9030 89 ex 9031 49 10 ex 9031 49 90 ex 9031 80 20 ex 9031 80 80 |
| Chemicals and materials of the type used in the production of Printed Circuit Boards (PCBs), as follows: a. PCB «composite» substrates made of glass fibre or cotton (e.g. FR-4, FR-2, FR 6, CEM-1, G-10, etc.); b. Multilayer PCB substrates, containing at least one layer of any of the following materials: 1. Aluminium; 2. Polytetrafluoroethylene (PTFE); or 3. Ceramic materials (e.g. alumina, titanium oxide, etc.); c. Etchant chemicals; 1. Ferric chloride (7705-08-0); 2. Cupric chloride (7447-39-4); 3. Ammonium persulphate (7727-54-0); 4. Sodium persulphate (7775-27-1); or 5. Chemical preparations specially designed for etching and containing any of the chemicals included in points 1 to 4. Note: This control does not control «chemical mixtures» containing one or more of the chemicals specified in this entry in which no individually specified chemical constitutes more than 10 % by the weight of the mixture. d. Copper foil with a minimum purity 95 % and of a thickness less than 100 μm; e. Polymeric substances and films thereof of less than 0,5 mm of thickness, as follows: 1. Aromatic polyimides; 2. Parylenes; 3. Benzocyclobutenes (BCBs); or 4. Polybenzoxazoles. | ex 3921 90 55 ex 8534 00 ex 2827 39 20 ex 2827 39 85 ex 2833 40 ex 3824 99 96 ex 7410 11 ex 7410 21 ex 3919 10 80 ex 3919 90 80 |
| «Software» specially designed for the test, «development» or «production» of Printed Circuit Boards (PCBs). | N/A |
| Radio frequency systems and equipment not included in Regulation (EU) 2021/821, components and accessories, specially designed or modified to develop any of the following functions: a. Take control and command of UAVs. b. Deliberately and selectively interfere with, deny, inhibit, degrade or deceive radio frequency signals for the control and command of unmanned aircraft. c. Use the specific features of the radio frequency protocol used by drones to interfere with their operation. | ex 8517 62 ex 8517 71 ex 8517 79 ex 8525 50 ex 8526 92 ex 8529 10 ex 8543 70 90 |
| Description | HS/CN code |
|---|---|
| Electronic computers and related equipment, and «electronic assemblies» and specially designed components therefor, rated for operation at an ambient temperature above 343 K (70 °C) | ex 8471 |
| «Digital computers», including equipment of «signal processing» or «image enhancement», having an «Adjusted Peak Performance» («APP») equal to or greater than 0,0128 Weighted TeraFLOPS (WT); | ex 8471 |
| Hybrid computers and «electronic assemblies» and specially designed components therefor containing analogue-to-digital converters having all of the following characteristics: a. 32 channels or more; and b. A resolution of 14 bit (plus sign bit) or more with a conversion rate of 200 000 Hz or more | ex 8471 |
| Description | HS/CN code |
|---|---|
| Telecommunications apparatus, devices or machines, for «aircraft» | ex 8517 62 ex 8517 69 |
| Description | HS/CN code |
|---|---|
| Cameras for aerial survey | ex 9006 30 |
| Optical Sensors as follows: a. Image intensifier tubes and specially designed components therefor, as follows: 1. Image intensifier tubes having all the following: a. A peak response in wavelength range exceeding 400 nm, but not exceeding 1 050 nm; b. A microchannel plate for electron image amplification with a hole pitch (centre-to-centre spacing) of less than 25 μm; and c. Having any of the following: 1. An S-20, S-25 or multialkali photocathode; or 2. A GaAs or GaInAs photocathode; 2. Specially designed microchannel plates having both of the following characteristics: a. 15 000 or more hollow tubes per plate; and b. Hole pitch (centre-to-centre spacing) of less than 25 μm b. Direct view imaging equipment operating in the visible or infrared spectrum, incorporating image intensifier tubes having the characteristics of the image intensifier tube included in this control. | ex 8529 90 ex 8542 39 ex 9006 91 ex 9013 80 ex 9025 80 ex 9025 90 ex 9026 80 ex 9026 90 ex 9027 50 ex 9032 10 |
| Night vision cameras | 8525 83 |
| Cameras that meet the criteria of Note 3 to 6A003.b.4 | ex 8525 89 ex 9006 30 |
| Airborne laser rangefinders | ex 9013 20 00 ex 9013 80 00 ex 9013 90 80 ex 9015 10 ex 9015 80 ex 9015 90 ex 9031 80 20 ex 9031 80 80 ex 9031 90 00 ex 9033 00 90 |
| «Primary cells» or batteries and components having an energy density of 150 Wh/kg or more at 293 K (20 °C) Technical Notes: 1. For the purposes of this control, «energy density» (Wh/kg) is calculated from the nominal voltage multiplied by the nominal capacity in ampere-hours (Ah) divided by the mass in kilograms. If the nominal capacity is not stated, energy density is calculated from the nominal voltage squared then multiplied by the discharge duration in hours divided by the discharge load in ohms and the mass in kilograms. 2. For the purposes of this control, a «cell» is defined as an electrochemical device, which has positive and negative electrodes, an electrolyte, and is a source of electrical energy. It is the basic building block of a battery. 3. For the purposes of this control, a «primary cell» is a «cell» that is not designed to be charged by any other source. | ex 8506 |
| Radar systems, equipment and major components, other than those specified in the CML or in Regulation (EU) 2021/821, and specially designed components therefor, as follows: a. Airborne radar equipment, other than those specified in the CML or in Regulation (EU) 2021/821, and specially designed components therefor; b. «Space-qualified»«laser» radar or Light Detection and Ranging (LIDAR) equipment specially designed for surveying or for meteorological observation; c. Millimeter wave enhanced vision radar imaging systems specially designed for rotary wing aircraft and having all of the following: 1. Operates at a frequency of 94 GHz; 2. An average output power of less than 20 mW; 3. Radar beam width of 1 degree; and 4. Operating range equal to or greater than 1 500 m | ex 8526 10 ex 8529 90 ex 9015 10 ex 90 |
| «Magnetometers», «Superconductive» electromagnetic sensors, and specially designed components therefor, as follows: a. «Magnetometers», other than those specified in the CML or in Regulation (EU) 2021/821, having a «sensitivity» lower (better) than 1,0 nT (rms) per square root Hz Technical Note: For the purposes of this control, «sensitivity» (noise level) is the root mean square of the device-limited noise floor which is the lowest signal that can be measured b. «Superconductive» electromagnetic sensors, components manufactured from «superconductive» materials: 1. Designed for operation at temperatures below the «critical temperature» of at least one of their «superconductive» constituents (including Josephson effect devices or «superconductive» quantum interference devices (SQUIDS)); 2. Designed for sensing electromagnetic field variations at frequencies of 1 kHz or less; and 3. Having any of the following characteristics: a. Incorporating thin-film SQUIDS with a minimum feature size of less than 2 μm and with associated input and output coupling circuits; b. Designed to operate with a magnetic field slew rate exceeding 1 x 106 magnetic flux quanta per second; c. Designed to function without magnetic shielding in the earth’s ambient magnetic field; or d. Having a temperature coefficient less (smaller) than 0,1 magnetic flux quantum/K | ex 9015 80 ex 9031 80 |
| Gravity meters (gravimeters) designed or modified for ground use, other than those specified in the CML or in Regulation (EU) 2021/821, as follows: | ex 9015 80 |
| «Software», other than those specified in the CML or in Regulation (EU) 2021/821, specially designed for the «development», «production», or «use» of goods controlled by 6A002, 6A003, and radars, magnetometers and gravity meters included in Category 6 of this Regulation. | N/A |
| Description | HS/CN code |
|---|---|
| Inertial Navigation systems, Inertial Measuring Units (IMU), accelerometers or gyros, and parts and accessories thereof | ex 9014 20 ex 9014 80 ex 9014 90 |
| Aerials and aerial reflectors for «aircraft» or guidance systems, parts suitable for use therewith | ex 8517 71 ex 8529 10 |
| «Satellite navigation system» equipment, including aerials and antennas suitable for the reception of GNSS signals, and parts thereof | ex 8526 91 ex 8529 90 ex 8526 10 ex 8526 92 ex 8517 71 ex 8529 10 |
| Digital flight data recorders Note: This control does not cover those digital flight data recorders which meet all of the following: a. Certified by the civil aviation authorities of one or more EU Member States or Wassenaar Arrangement Participating States; and b. Intended for non-military «aircraft» for which any of the following has been issued by civil aviation authorities of one or more EU Member States or Wassenaar Arrangement Participating States for the «aircraft» with this specific engine type: 1. A civil type certificate; or 2. An equivalent document recognised by the International Civil Aviation Organization (ICAO). | 8543 70 04 |
| Radio navigational aid apparatus for «aircraft» and specially designed components thereof | ex 8526 91 ex 8529 90 |
| Flight control units for «Unmanned Aerial Vehicles» («UAVs»), and parts thereof | ex 8537 10 ex 8807 30 |
| Remote control units for «Unmanned Aerial Vehicles» («UAVs»), and parts thereof | ex 8517 61 ex 8526 92 ex 8537 10 ex 8543 70 90 ex 8807 30 |
| Description | HS/CN code |
|---|---|
| «Unmanned aerial vehicles» («UAVs») other than those designed for carrying passengers, and parts thereof | 8806 21 8806 22 8806 23 8806 24 8806 29 8806 91 8806 92 8806 93 8806 94 8806 99 ex 8807 30 |
| Aero gas turbine engines (turboprop, turbojet and turbofan) for «aircraft», and specially designed components thereof | ex 8411 11 ex 8411 12 ex 8411 21 ex 8411 22 ex 8411 91 |
| Spark-ignition reciprocating or rotary internal combustion piston engines for «aircraft» | 8407 10 |
| Parts suitable for use solely or principally with internal combustion piston engine for «aircraft» | 8409 10 |
| Compression-ignition internal combustion piston engines for «aircraft» | ex 8408 90 |
| Servomotor for «Unmanned Aerial Vehicles» («UAVs») | ex 8501 ex 8807 30 |
| Launch systems for «UAVs», and parts thereof | ex 8805 10 ex 8807 30 |
| Ground support equipment for «UAVs» | ex 8805 10 |
| Testing equipment for aerospace and propulsion, and specially designed components therefor, other than those specified in the CML or in Regulation (EU) 2021/821. Note: this control includes the following items, and the related «software»: - Load release test bench and other facilities to simulate safe separation from the «aircraft» or launch system. - Salt spray chambers for temperature and humidity ranges to perform oxidation tests. - Chambers to perform fungus tests. - Devices for acceleration, shock and transport shock tests. - Vibration chambers with altitude, temperature and humidity ranges. - Chambers for explosive decompression tests. - Chambers for temperature, humidity and solar radiation tests. - Devices to estimate the captured solar radiation for solar radiation tests. - Vibrators for sinusoidal, random and shock tests, combinable with altitude, temperature and humidity tests. - Vibration table for longitudinal and lateral tests combined with temperature chambers. - Overpressure chambers. | ex 9031 20 ex 9031 80 |
| «Flight termination» systems and specifically designed components. Note: this control covers digital and analogic communications standards for Flight Termination Systems, including encrypted operational modes. Technical notes: 1. For the purposes of this control, «flight termination» can involve a controlled descent, self-destruction, or detonation of the warhead to minimize the risk of collateral damage 2. For the purposes of this control, components include ground and on board equipment, command exciters, encoders, amplifier controllers, command verification receivers, amplifiers, transmitters, decoders and receivers. | ex 8526 92 ex 8529 90 |
| Name | Grounds for inclusion | Date of application | |
|---|---|---|---|
| 1. | Amirabad Port, Iran | Article 2a(1), point (d): used for the transfer of Iranian UAVs or missiles or related technologies or components thereof to Russia in support of its war of aggression against Ukraine | 18.11.2024 |
| 2. | Anzali Port, Iran | Article 2a(1), point (d): used for the transfer of Iranian UAVs or missiles or related technologies or components thereof to Russia in support of its war of aggression against Ukraine | 18.11.2024 |
21 endringer siden 2001
Forskrift om endring i forskrift om sanksjoner og tiltak mot Iran
Endr. i sanksjonsforskrift Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Forskrift om endring i forskrift om sanksjoner og tiltak mot Iran og forskrift om sanksjoner i lys av situasjonen i Mali
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om tiltak mot Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. forskrift om sanksjoner og tiltak mot Iran
Endr. forskrift om sanksjoner og tiltak mot Iran
Endr. forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om sanksjoner og tiltak mot Iran
Endr. i forskrift om sanksjonar mot Iran
Endr. i forskrift om sanksjonar mot Iran
Endr. i forskrift om sanksjonar mot Iran
Endr. i forskrifter om Sikkerhetsrådsvedtak
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