Council Regulation (EC) No 428/2009 of 5 May 2009 setting up a Community regime for the control of exports, transfer, brokering and transit of dual-use items (Recast)
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PART II
Timeline of Changes
This timeline shows the different versions taken from EUR-Lex before exit day and during the implementation period as well as any subsequent versions created after the implementation period as a result of changes made by UK legislation.
The dates for the EU versions are taken from the document dates on EUR-Lex and may not always coincide with when the changes came into force for the document.
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Version Superseded: 15/12/2020
Status:
Point in time view as at 31/12/2019.
Changes to legislation:
There are currently no known outstanding effects by UK legislation for Council Regulation (EC) No 428/2009,
PART II
.
Changes to Legislation
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[PART II U.K. (no National General Authorisation for intra-Community trade)
Items of the CWC (Chemical Weapons Convention) U.K.
1C351.d.4. | Ricin |
1C351.d.5. | Saxitoxin |
Items of the NSG technology U.K.
All Category 0 of Annex I is included in Annex IV, subject to the following: U.K.
0C001: this item is not included in Annex IV;
0C002: this item is not included in Annex IV, with the exception of special fissile materials as follows:
(b)
‘ uranium enriched in the isotopes 235 or 233 ’ to more than 20 %.
0C003 only if for use in a ‘ nuclear reactor ’ (within 0A001.a);
0D001 (software) is included in Annex IV except insofar as it relates to 0C001 or to those items of 0C002 that are excluded from Annex IV;
0E001 (technology) is included in Annex IV except insofar as these related to 0C001 or to those items of 0C002 that are excluded from Annex IV.
1B226 | Electromagnetic isotope separators designed for, or equipped with, single or multiple ion sources capable of providing a total ion beam current of 50 mA or greater.
Note: 1B226 includes separators:
a. Capable of enriching stable isotopes;
b. With the ion sources and collectors both in the magnetic field and those configurations in which they are external to the field.
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1B231 | Tritium facilities or plants, and equipment therefor, as follows:
a. Facilities or plants for the production, recovery, extraction, concentration, or handling of tritium;
b. Equipment for tritium facilities or plants, as follows:
1. Hydrogen or helium refrigeration units capable of cooling to 23 K (– 250 °C) or less, with heat removal capacity greater than 150 W;
2. Hydrogen isotope storage or purification systems using metal hydrides as the storage or purification medium.
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1B233 | Lithium isotope separation facilities or plants, and equipment therefor, as follows:
a. Facilities or plants for the separation of lithium isotopes;
b. Equipment for the separation of lithium isotopes, as follows:
1. Packed liquid-liquid exchange columns specially designed for lithium amalgams;
2. Mercury or lithium amalgam pumps;
3. Lithium amalgam electrolysis cells;
4. Evaporators for concentrated lithium hydroxide solution.
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1C012 | Materials as follows:
Technical Note: These materials are typically used for nuclear heat sources.
b. ‘ Previously separated ’ neptunium-237 in any form.
Note: 1C012.b. does not control shipments with a neptunium-237 content of 1 g or less.
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1C233 | Lithium enriched in the lithium-6 ( 6 Li) isotope to greater than its natural isotopic abundance, and products or devices containing enriched lithium, as follows: elemental lithium, alloys, compounds, mixtures containing lithium, manufactures thereof, waste or scrap of any of the foregoing.
Note: 1C233 does not control thermoluminescent dosimeters.
Technical Note: The natural isotopic abundance of lithium-6 is approximately 6,5 weight % ( 7,5 atom %).
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1C235 | Tritium, tritium compounds, mixtures containing tritium in which the ratio of tritium to hydrogen atoms exceeds 1 part in 1 000 , and products or devices containing any of the foregoing.
Note: 1C235 does not control a product or device containing less than 1,48 × 10 3 GBq (40 Ci) of tritium.
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1E001 | ‘ Technology ’ according to the General Technology Note for the ‘ development ’ or ‘ production ’ of equipment or materials specified in 1C012.b. |
1E201 | ‘ Technology ’ according to the General Technology Note for the ‘ use ’ of goods specified in 1B226, 1B231, 1B233, 1C233 or 1C235. |
3A228 | Switching devices, as follows:
a. Cold-cathode tubes, whether gas filled or not, operating similarly to a spark gap, having all of the following characteristics:
1. Containing three or more electrodes;
2. Anode peak voltage rating of 2,5 kV or more;
3. Anode peak current rating of 100 A or more; and
4. Anode delay time of 10 μs or less;
Note: 3A228 includes gas krytron tubes and vacuum sprytron tubes.
b. Triggered spark-gaps having both of the following characteristics:
1. An anode delay time of 15 μs or less; and
2. Rated for a peak current of 500 A or more;
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3A231 | Neutron generator systems, including tubes, having both of the following characteristics:
a. Designed for operation without an external vacuum system; and
b. Utilizing electrostatic acceleration to induce a tritium-deuterium nuclear reaction
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3E201 | ‘ Technology ’ according to the General Technology Note for the ‘ use ’ of equipment specified in 3A228 or 3A231. |
6A203 | Cameras and components, other than those specified in 6A003, as follows:
a. Mechanical rotating mirror streak cameras, as follows, and specially designed components therefor:
1. Streak cameras with writing speeds greater than 0,5 mm per microsecond;
b. Mechanical rotating mirror framing cameras, as follows, and specially designed components therefor:
1. Framing cameras with recording rates greater than 225 000 frames per second;
Note: In 6A203.a. components of such cameras include their synchronizing electronics units and rotor assemblies consisting of turbines, mirrors and bearings.
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6A225 | Velocity interferometers for measuring velocities exceeding 1 km/s during time intervals of less than 10 microseconds.
Note: 6A225 includes velocity interferometers such as VISARs (Velocity interferometer systems for any reflector) and DLIs (Doppler laser interferometers).
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6A226 | Pressure sensors, as follows:
a. Manganin gauges for pressures greater than 10 GPa;
b. Quartz pressure transducers for pressures greater than 10 GPa.]
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