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Search sanctioned goods across UK and EU export control lists in one place. This tool covers dual-use items, military equipment, and other restricted goods and technologies. Each entry includes the specific goods description, issuing authority, countries subject to import or export restrictions, and the relevant sanctions programme. This helps compliance and trade teams determine whether an item is subject to import or export prohibitions.

Use the filters to narrow results by authority, target state, or sanctions programme. Whether you’re checking a single HS code or reviewing an entire category, the sanctioned goods list is updated as new designations and programme consolidated changes are published.

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  • Good

    Network analysers having any of the following: 1. An output power exceeding 31,62 mW (15 dBm) anywhere within the operating frequency range exceeding 43,5 GHz but not exceeding 90 GHz; 2. An output power exceeding 1 mW (0 dBm) anywhere within the operating frequency range exceeding 90 GHz but not exceeding 110 GHz; 3. ‘Non-linear vector measurement functionality’ at frequencies exceeding 50 GHz but not exceeding 110 GHz; or 4. A maximum operating frequency exceeding 110 GHz; Technical note : ‘Non-linear vector measurement functionality’ is an instrument's ability to analyse the test results of devices driven into the large-signal domain or the non-linear distortion range.

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.034
    Code: 3A002
    Good

    Network analysers having any of the following: 1. An output power exceeding 31,62 mW (15 dBm) anywhere within the operating frequency range exceeding 43,5 GHz but not exceeding 90 GHz; 2. An output power exceeding 1 mW (0 dBm) anywhere within the operating frequency range exceeding 90 GHz but not exceeding 110 GHz; 3. ‘Non-linear vector measurement functionality’ at frequencies exceeding 50 GHz but not exceeding 110 GHz; or 4. A maximum operating frequency exceeding 110 GHz; Technical note : ‘Non-linear vector measurement functionality’ is an instrument's ability to analyse the test results of devices driven into the large-signal domain or the non-linear distortion range.

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.034
    Code: 3A002
  • Good

    Signal generators having any of the following: 1. Specified to generate pulse-modulated signals having all of the following, anywhere within the frequency range exceeding 31,8 GHz but not exceeding 37 GHz: a. ‘Pulse duration’ of less than 25 ns; and b. On/off ratio equal to or exceeding 65 dB; 2. An output power exceeding 100 mW (20 dBm) anywhere within the frequency range exceeding 43,5 GHz but not exceeding 90 GHz; 3. A ‘frequency switching time’ as specified by any of the following: a. Less than 100 μs for any frequency change exceeding 2,2 GHz within the frequency range exceeding 4,8 GHz but not exceeding 31,8 GHz b. Less than 500 μs for any frequency change exceeding 550 MHz within the frequency range exceeding 31,8 GHz but not exceeding 37 GHz; or c. Less than 100 μs for any frequency change exceeding 2,2 GHz within the frequency range exceeding 37 GHz but not exceeding 90 GHz;

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.033
    Code: 3A002
    Good

    Signal generators having any of the following: 1. Specified to generate pulse-modulated signals having all of the following, anywhere within the frequency range exceeding 31,8 GHz but not exceeding 37 GHz: a. ‘Pulse duration’ of less than 25 ns; and b. On/off ratio equal to or exceeding 65 dB; 2. An output power exceeding 100 mW (20 dBm) anywhere within the frequency range exceeding 43,5 GHz but not exceeding 90 GHz; 3. A ‘frequency switching time’ as specified by any of the following: a. Less than 100 μs for any frequency change exceeding 2,2 GHz within the frequency range exceeding 4,8 GHz but not exceeding 31,8 GHz b. Less than 500 μs for any frequency change exceeding 550 MHz within the frequency range exceeding 31,8 GHz but not exceeding 37 GHz; or c. Less than 100 μs for any frequency change exceeding 2,2 GHz within the frequency range exceeding 37 GHz but not exceeding 90 GHz;

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.033
    Code: 3A002
  • Good

    ‘Signal analysers’, as follows: 1. ‘Signal analysers’ having a 3 dB resolution bandwidth (RBW) exceeding 10 MHz anywhere within the frequency range exceeding 31,8 GHz but not exceeding 37 GHz; 2. ‘Signal analysers’ having Displayed Average Noise Level (DANL) less (better) than - 150 dBm/Hz anywhere within the frequency range exceeding 43,5 GHz but not exceeding 90 GHz; 3. ‘Signal analysers’ having a frequency exceeding 90 GHz; 4. ‘Signal analysers’ having all of the following: a. ‘Real-time bandwidth’ exceeding 170 MHz; and b. Having any of the following: 1. 100 % probability of discovery, with less than a 3 dB reduction from full amplitude due to gaps or windowing effects, of signals having a duration of 15 μs or less; or 2. A ‘frequency mask trigger’ function with 100 % probability of trigger (capture) for signals having a duration of 15 μs or less; Technical notes: 1. Probability of discovery in item 1. above is also referred to as probability of intercept or probability of capture. 2. For the purposes of item 1. above, the duration for 100 % probability of discovery is equivalent to the minimum signal duration necessary for the specified level measurement uncertainty. Note : The category above does not apply to those ‘signal analysers’ using only constant percentage bandwidth filters (also known as octave or fractional octave filters).

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.032
    Code: 3A002
    Good

    ‘Signal analysers’, as follows: 1. ‘Signal analysers’ having a 3 dB resolution bandwidth (RBW) exceeding 10 MHz anywhere within the frequency range exceeding 31,8 GHz but not exceeding 37 GHz; 2. ‘Signal analysers’ having Displayed Average Noise Level (DANL) less (better) than - 150 dBm/Hz anywhere within the frequency range exceeding 43,5 GHz but not exceeding 90 GHz; 3. ‘Signal analysers’ having a frequency exceeding 90 GHz; 4. ‘Signal analysers’ having all of the following: a. ‘Real-time bandwidth’ exceeding 170 MHz; and b. Having any of the following: 1. 100 % probability of discovery, with less than a 3 dB reduction from full amplitude due to gaps or windowing effects, of signals having a duration of 15 μs or less; or 2. A ‘frequency mask trigger’ function with 100 % probability of trigger (capture) for signals having a duration of 15 μs or less; Technical notes: 1. Probability of discovery in item 1. above is also referred to as probability of intercept or probability of capture. 2. For the purposes of item 1. above, the duration for 100 % probability of discovery is equivalent to the minimum signal duration necessary for the specified level measurement uncertainty. Note : The category above does not apply to those ‘signal analysers’ using only constant percentage bandwidth filters (also known as octave or fractional octave filters).

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.032
    Code: 3A002
  • Good

    Recording equipment and oscilloscopes, as follows 1. Digital data recorders having all of the following: a. A sustained ‘continuous throughput’ of more than 6,4 Gbit/s to disk or solid-state drive memory; and b. A processor that performs analysis of radio frequency signal data while it is being recorded; Technical notes: 1. For recorders with a parallel bus architecture, the ‘continuous throughput’ rate is the highest word rate multiplied by the number of bits in a word. 2. ‘Continuous throughput’ is the fastest data rate the instrument can record to disk or solid-state drive memory without the loss of any information while sustaining the input digital data rate or digitizer conversion rate. 2. Real-time oscilloscopes having a vertical root-mean-square (rms) noise voltage of less than 2 % of full-scale at the vertical scale setting that provides the lowest noise value for any input 3 dB bandwidth of 60 GHz or greater per channel;

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.031
    Code: 3A002
    Good

    Recording equipment and oscilloscopes, as follows 1. Digital data recorders having all of the following: a. A sustained ‘continuous throughput’ of more than 6,4 Gbit/s to disk or solid-state drive memory; and b. A processor that performs analysis of radio frequency signal data while it is being recorded; Technical notes: 1. For recorders with a parallel bus architecture, the ‘continuous throughput’ rate is the highest word rate multiplied by the number of bits in a word. 2. ‘Continuous throughput’ is the fastest data rate the instrument can record to disk or solid-state drive memory without the loss of any information while sustaining the input digital data rate or digitizer conversion rate. 2. Real-time oscilloscopes having a vertical root-mean-square (rms) noise voltage of less than 2 % of full-scale at the vertical scale setting that provides the lowest noise value for any input 3 dB bandwidth of 60 GHz or greater per channel;

    Authority: EU
    Prohibited Supply To: KP
    Program: KP
    EU Code: IX.A3.031
    Code: 3A002
  • Good

    Solid-state power semiconductor switches, diodes or ‘modules’, having all of the following: 1. Rated for a maximum operating junction temperature greater than 488 K (215 °C); 2. Repetitive peak off-state voltage (blocking voltage) exceeding 300 V; and 3. Continuous current greater than 1 A. Note : Repetitive peak off-state voltage in the item above includes drain to source voltage, collector to emitter voltage, repetitive peak reverse voltage and peak repetitive off-state blocking voltage.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.030
    Code: 3A001
    Good

    Solid-state power semiconductor switches, diodes or ‘modules’, having all of the following: 1. Rated for a maximum operating junction temperature greater than 488 K (215 °C); 2. Repetitive peak off-state voltage (blocking voltage) exceeding 300 V; and 3. Continuous current greater than 1 A. Note : Repetitive peak off-state voltage in the item above includes drain to source voltage, collector to emitter voltage, repetitive peak reverse voltage and peak repetitive off-state blocking voltage.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.030
    Code: 3A001
  • Good

    Solid-state pulsed power switching thyristor devices and ‘thyristor modules’, using either electrically, optically or electron radiation controlled switch methods and having any of the following: 1. A maximum turn-on current rate of rise (di/dt) greater than 30 000 A/μs and off-state voltage greater than 1 100 V; or 2. A maximum turn-on current rate of rise (di/dt) greater than 2 000 A/μs and having all of the following: a. An off-state peak voltage equal to or greater than 3 000 V; and b. A peak (surge) current equal to or greater than 3 000 A; Notes: 1. Item (g) above includes: — Silicon Controlled Rectifiers (SCRs); — Electrical Triggering Thyristors (ETTs); — Light Triggering Thyristors (LTTs); — Integrated Gate Commutated Thyristors (IGCTs); — Gate Turn-off Thyristors (GTOs); — MOS Controlled Thyristors (MCTs); — Solidtrons. 2. Item (g) above does not apply to thyristor devices and ‘thyristor modules’ incorporated into equipment designed for civil railway or ‘civil aircraft’ applications. Technical note : For the purposes of item (g) above, a ‘thyristor module’ contains one or more thyristor devices.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.029
    Code: 3A001
    Good

    Solid-state pulsed power switching thyristor devices and ‘thyristor modules’, using either electrically, optically or electron radiation controlled switch methods and having any of the following: 1. A maximum turn-on current rate of rise (di/dt) greater than 30 000 A/μs and off-state voltage greater than 1 100 V; or 2. A maximum turn-on current rate of rise (di/dt) greater than 2 000 A/μs and having all of the following: a. An off-state peak voltage equal to or greater than 3 000 V; and b. A peak (surge) current equal to or greater than 3 000 A; Notes: 1. Item (g) above includes: — Silicon Controlled Rectifiers (SCRs); — Electrical Triggering Thyristors (ETTs); — Light Triggering Thyristors (LTTs); — Integrated Gate Commutated Thyristors (IGCTs); — Gate Turn-off Thyristors (GTOs); — MOS Controlled Thyristors (MCTs); — Solidtrons. 2. Item (g) above does not apply to thyristor devices and ‘thyristor modules’ incorporated into equipment designed for civil railway or ‘civil aircraft’ applications. Technical note : For the purposes of item (g) above, a ‘thyristor module’ contains one or more thyristor devices.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.029
    Code: 3A001
  • Good

    Rotary input type absolute position encoders having an ‘accuracy’ equal to or less (better) than 1,0 second of arc and specially designed encoder rings, discs or scales therefor;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.028
    Code: 3A001
    Good

    Rotary input type absolute position encoders having an ‘accuracy’ equal to or less (better) than 1,0 second of arc and specially designed encoder rings, discs or scales therefor;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.028
    Code: 3A001
  • Good

    Solar cells, cell-interconnect-coverglass (CIC) assemblies, solar panels, and solar arrays, which are ‘space-qualified’, having a minimum average efficiency exceeding 20 % at an operating temperature of 301 K (28 °C) under simulated ‘AM0’ illumination with an irradiance of 1 367 watts per square metre (W/m 2 ); Technical note : ‘AM0’, or ‘Air Mass Zero’, refers to the spectral irradiance of sunlight in the Earth's outer atmosphere when the distance between the Earth and the sun is one astronomical unit (AU).

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.027
    Code: 3A001
    Good

    Solar cells, cell-interconnect-coverglass (CIC) assemblies, solar panels, and solar arrays, which are ‘space-qualified’, having a minimum average efficiency exceeding 20 % at an operating temperature of 301 K (28 °C) under simulated ‘AM0’ illumination with an irradiance of 1 367 watts per square metre (W/m 2 ); Technical note : ‘AM0’, or ‘Air Mass Zero’, refers to the spectral irradiance of sunlight in the Earth's outer atmosphere when the distance between the Earth and the sun is one astronomical unit (AU).

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.027
    Code: 3A001
  • Good

    ‘Superconductive’ electromagnets and solenoids, specially designed to be fully charged or discharged in less than one second and having all of the following: Note : The item above does not apply to ‘superconductive’ electromagnets or solenoids specially designed for Magnetic Resonance Imaging (MRI) medical equipment. (a) Energy delivered during the discharge exceeding 10 kJ in the first second; (b) Inner diameter of the current carrying windings of more than 250 mm; and (c) Rated for a magnetic induction of more than 8 T or ‘overall current density’ in the winding of more than 300 A/mm 2 ;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.026
    Code: 3A001
    Good

    ‘Superconductive’ electromagnets and solenoids, specially designed to be fully charged or discharged in less than one second and having all of the following: Note : The item above does not apply to ‘superconductive’ electromagnets or solenoids specially designed for Magnetic Resonance Imaging (MRI) medical equipment. (a) Energy delivered during the discharge exceeding 10 kJ in the first second; (b) Inner diameter of the current carrying windings of more than 250 mm; and (c) Rated for a magnetic induction of more than 8 T or ‘overall current density’ in the winding of more than 300 A/mm 2 ;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.026
    Code: 3A001
  • Good

    High-energy storage capacitors, as follows: (a) Capacitors with a repetition rate of less than 10 Hz (single shot capacitors) and having all of the following: 1. A voltage rating equal to or more than 5 kV; 2. An energy density equal to or more than 250 J/kg; and 3. A total energy equal to or more than 25 kJ; (b) Capacitors with a repetition rate of 10 Hz or more (repetition rated capacitors) and having all of the following: 1. A voltage rating equal to or more than 5 kV; 2. An energy density equal to or more than 50 J/kg; 3. A total energy equal to or more than 100 J; and 4. A charge/discharge cycle life equal to or more than 10 000 ;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.025
    Code: 3A001
    Good

    High-energy storage capacitors, as follows: (a) Capacitors with a repetition rate of less than 10 Hz (single shot capacitors) and having all of the following: 1. A voltage rating equal to or more than 5 kV; 2. An energy density equal to or more than 250 J/kg; and 3. A total energy equal to or more than 25 kJ; (b) Capacitors with a repetition rate of 10 Hz or more (repetition rated capacitors) and having all of the following: 1. A voltage rating equal to or more than 5 kV; 2. An energy density equal to or more than 50 J/kg; 3. A total energy equal to or more than 100 J; and 4. A charge/discharge cycle life equal to or more than 10 000 ;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.025
    Code: 3A001
  • Good

    High-energy cells, as follows: (a) ‘Primary cells’ having an ‘energy density’ exceeding 550 Wh/kg at 20 °C; (b) ‘Secondary cells’ having an ‘energy density’ exceeding 350 Wh/kg at 20 °C; Technical notes: 1. For the purposes of high-energy devices, ‘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 high-energy devices, a ‘cell’ is defined as an electrochemical device, which has positive and negative electrodes and an electrolyte, and is a source of electrical energy. It is the basic building block of a battery. 3. For the purposes of high-energy devices, a ‘primary cell’ is a ‘cell’ that is not designed to be charged by any other source. 4. For the purposes of high-energy devices, a ‘secondary cell’ is a ‘cell’ that is designed to be charged by an external electrical source. Note : High-energy devices do not apply to batteries, including single-cell batteries.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.024
    Code: 3A001
    Good

    High-energy cells, as follows: (a) ‘Primary cells’ having an ‘energy density’ exceeding 550 Wh/kg at 20 °C; (b) ‘Secondary cells’ having an ‘energy density’ exceeding 350 Wh/kg at 20 °C; Technical notes: 1. For the purposes of high-energy devices, ‘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 high-energy devices, a ‘cell’ is defined as an electrochemical device, which has positive and negative electrodes and an electrolyte, and is a source of electrical energy. It is the basic building block of a battery. 3. For the purposes of high-energy devices, a ‘primary cell’ is a ‘cell’ that is not designed to be charged by any other source. 4. For the purposes of high-energy devices, a ‘secondary cell’ is a ‘cell’ that is designed to be charged by an external electrical source. Note : High-energy devices do not apply to batteries, including single-cell batteries.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.024
    Code: 3A001
  • Good

    Electronic devices and circuits containing components, manufactured from ‘superconductive’ materials, specially designed for operation at temperatures below the ‘critical temperature’ of at least one of the ‘superconductive’ constituents and having any of the following: (a) Current switching for digital circuits using ‘superconductive’ gates with a product of delay time per gate (in seconds) and power dissipation per gate (in watts) of less than 10 – 14 J; or (b) Frequency selection at all frequencies using resonant circuits with Q-values exceeding 10 000 ;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.023
    Code: 3A001
    Good

    Electronic devices and circuits containing components, manufactured from ‘superconductive’ materials, specially designed for operation at temperatures below the ‘critical temperature’ of at least one of the ‘superconductive’ constituents and having any of the following: (a) Current switching for digital circuits using ‘superconductive’ gates with a product of delay time per gate (in seconds) and power dissipation per gate (in watts) of less than 10 – 14 J; or (b) Frequency selection at all frequencies using resonant circuits with Q-values exceeding 10 000 ;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.023
    Code: 3A001
  • Good

    Acoustic-optic ‘signal processing’ devices employing interaction between acoustic waves (bulk wave or surface wave) and light waves which permit the direct processing of signals or images, including spectral analysis, correlation or convolution;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.022
    Code: 3A001
    Good

    Acoustic-optic ‘signal processing’ devices employing interaction between acoustic waves (bulk wave or surface wave) and light waves which permit the direct processing of signals or images, including spectral analysis, correlation or convolution;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.022
    Code: 3A001
  • Good

    Bulk (volume) acoustic wave which permit the direct processing of signals at frequencies exceeding 6 GHz;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.021
    Code: 3A001
    Good

    Bulk (volume) acoustic wave which permit the direct processing of signals at frequencies exceeding 6 GHz;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.021
    Code: 3A001
  • Good

    Surface acoustic wave and surface skimming (shallow bulk) acoustic devices with any of the following: (a) A carrier frequency exceeding 6 GHz; (b) A carrier frequency exceeding 1 GHz, but not exceeding 6 GHz and having any of the following: 1. A ‘frequency side-lobe rejection’ exceeding 65 dB; 2. A product of the maximum delay time and the bandwidth (time in μs and bandwidth in MHz) of more than 100; 3. A bandwidth of greater than 250 MHz; or 4. A dispersive delay of more than 10 μs; or (c) A carrier frequency of 1 GHz or less and having any of the following: 1. A product of the maximum delay time and the bandwidth (time in μs and bandwidth in MHz) of more than 100; 2. A dispersive delay of more than 10 μs; or 3. A ‘frequency side-lobe rejection’ exceeding 65 dB and a bandwidth greater than 100 MHz;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.020
    Code: 3A001
    Good

    Surface acoustic wave and surface skimming (shallow bulk) acoustic devices with any of the following: (a) A carrier frequency exceeding 6 GHz; (b) A carrier frequency exceeding 1 GHz, but not exceeding 6 GHz and having any of the following: 1. A ‘frequency side-lobe rejection’ exceeding 65 dB; 2. A product of the maximum delay time and the bandwidth (time in μs and bandwidth in MHz) of more than 100; 3. A bandwidth of greater than 250 MHz; or 4. A dispersive delay of more than 10 μs; or (c) A carrier frequency of 1 GHz or less and having any of the following: 1. A product of the maximum delay time and the bandwidth (time in μs and bandwidth in MHz) of more than 100; 2. A dispersive delay of more than 10 μs; or 3. A ‘frequency side-lobe rejection’ exceeding 65 dB and a bandwidth greater than 100 MHz;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.020
    Code: 3A001
  • Good

    ‘Transmit/receive modules’, ‘transmit/receive MMICs’, ‘transmit modules’ and ‘transmit MMICs’, rated for operation at frequencies above 2,7 GHz and having all of the following: (a) A peak saturated power output (in watts), Psat, greater than 505,62 divided by the maximum operating frequency (in GHz) squared [P sat > 505,62 W * GHz 2 /f GHz 2 ] for any channel; (b) A ‘fractional bandwidth’ of 5 % or greater for any channel; (c) Any planar side with length d (in cm) equal to or less than 15 divided by the lowest operating frequency in GHz [d ≤ 15 cm * GHz * N/f GHz ] where N is the number of transmit or transmit/receive channels; and (d) An electronically variable phase shifter per channel; Technical notes: 1. A ‘transmit/receive module’ is a multifunction ‘electronic assembly’ that provides bidirectional amplitude and phase control for transmission and reception of signals. 2. A ‘transmit module’ is an ‘electronic assembly’ that provides amplitude and phase control for transmission of signals. 3. A ‘transmit/receive MMIC’ is a multifunction ‘MMIC’ that provides bidirectional amplitude and phase control for transmission and reception of signals. 4. A ‘transmit MMIC’ is a ‘MMIC’ that provides amplitude and phase control for transmission of signals. 5. 2,7 GHz should be used as the lowest operating frequency (fGHz) in the formula in item (c) for transmit/receive or transmit modules that have a rated operation range extending downward to 2,7 GHz and below [d ≤15 cm * GHz * N/2,7 GHz]. 6. Item IX.A3.019 applies to ‘transmit/receive modules’ or ‘transmit modules’ with or without a heat sink. The value of d in item 11.c. does not include any portion of the ‘transmit/receive module’ or ‘transmit module’ that functions as a heat sink. 7. ‘Transmit/receive modules’, ‘transmit modules’, ‘transmit/receive MMICs’ or ‘transmit MMICs’ may or may not have N integrated radiating antenna elements where N is the number of transmit or transmit/receive channels.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.019
    Code: 3A001
    Good

    ‘Transmit/receive modules’, ‘transmit/receive MMICs’, ‘transmit modules’ and ‘transmit MMICs’, rated for operation at frequencies above 2,7 GHz and having all of the following: (a) A peak saturated power output (in watts), Psat, greater than 505,62 divided by the maximum operating frequency (in GHz) squared [P sat > 505,62 W * GHz 2 /f GHz 2 ] for any channel; (b) A ‘fractional bandwidth’ of 5 % or greater for any channel; (c) Any planar side with length d (in cm) equal to or less than 15 divided by the lowest operating frequency in GHz [d ≤ 15 cm * GHz * N/f GHz ] where N is the number of transmit or transmit/receive channels; and (d) An electronically variable phase shifter per channel; Technical notes: 1. A ‘transmit/receive module’ is a multifunction ‘electronic assembly’ that provides bidirectional amplitude and phase control for transmission and reception of signals. 2. A ‘transmit module’ is an ‘electronic assembly’ that provides amplitude and phase control for transmission of signals. 3. A ‘transmit/receive MMIC’ is a multifunction ‘MMIC’ that provides bidirectional amplitude and phase control for transmission and reception of signals. 4. A ‘transmit MMIC’ is a ‘MMIC’ that provides amplitude and phase control for transmission of signals. 5. 2,7 GHz should be used as the lowest operating frequency (fGHz) in the formula in item (c) for transmit/receive or transmit modules that have a rated operation range extending downward to 2,7 GHz and below [d ≤15 cm * GHz * N/2,7 GHz]. 6. Item IX.A3.019 applies to ‘transmit/receive modules’ or ‘transmit modules’ with or without a heat sink. The value of d in item 11.c. does not include any portion of the ‘transmit/receive module’ or ‘transmit module’ that functions as a heat sink. 7. ‘Transmit/receive modules’, ‘transmit modules’, ‘transmit/receive MMICs’ or ‘transmit MMICs’ may or may not have N integrated radiating antenna elements where N is the number of transmit or transmit/receive channels.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.019
    Code: 3A001
  • Good

    ‘Frequency synthesizer’‘electronic assemblies’ having a ‘frequency switching time’ as specified by any of the following: (a) Less than 143 ps; (b) Less than 100 μs for any frequency change exceeding 2,2 GHz within the synthesized frequency range exceeding 4,8 GHz but not exceeding 31,8 GHz; (c) Less than 500 μs for any frequency change exceeding 550 MHz within the synthesized frequency range exceeding 31,8 GHz but not exceeding 37 GHz; (d) Less than 100 μs for any frequency change exceeding 2,2 GHz within the synthesized frequency range exceeding 37 GHz but not exceeding 90 GHz; or (e) Less than 1 ms within the synthesized frequency range exceeding 90 GHz;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.018
    Code: 3A001
    Good

    ‘Frequency synthesizer’‘electronic assemblies’ having a ‘frequency switching time’ as specified by any of the following: (a) Less than 143 ps; (b) Less than 100 μs for any frequency change exceeding 2,2 GHz within the synthesized frequency range exceeding 4,8 GHz but not exceeding 31,8 GHz; (c) Less than 500 μs for any frequency change exceeding 550 MHz within the synthesized frequency range exceeding 31,8 GHz but not exceeding 37 GHz; (d) Less than 100 μs for any frequency change exceeding 2,2 GHz within the synthesized frequency range exceeding 37 GHz but not exceeding 90 GHz; or (e) Less than 1 ms within the synthesized frequency range exceeding 90 GHz;

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.018
    Code: 3A001
  • Good

    Oscillators or oscillator assemblies, specified to operate with a single sideband (SSB) phase noise, in dBc/Hz, less (better) than -(126 + 20log 10 F -20log 10 f) anywhere within the range of 10 Hz ≤ F ≤ 10 kHz; Technical note: In the category above, F is the offset from the operating frequency in Hz and f is the operating frequency in MHz.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.017
    Code: 3A001
    Good

    Oscillators or oscillator assemblies, specified to operate with a single sideband (SSB) phase noise, in dBc/Hz, less (better) than -(126 + 20log 10 F -20log 10 f) anywhere within the range of 10 Hz ≤ F ≤ 10 kHz; Technical note: In the category above, F is the offset from the operating frequency in Hz and f is the operating frequency in MHz.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.017
    Code: 3A001
  • Good

    Microwave Power Modules (MPMs) consisting of, at least, a travelling-wave ‘vacuum electronic device’, a ‘Monolithic Microwave Integrated Circuit’ (‘MMIC’) and an integrated electronic power conditioner and having all of the following: (a) A ‘turn-on time’ from off to fully operational in less than 10 seconds; (b) A volume less than the maximum rated power in watts multiplied by 10 cm 3 /W; and (c) An ‘instantaneous bandwidth’ of greater than 1 octave (f max > 2f min ) and having any of the following: 1. For frequencies equal to or less than 18 GHz, an RF output power greater than 100 W; or 2. A frequency greater than 18 GHz; Technical notes: 1. To calculate the volume in item b. above, the following example is provided: for a maximum rated power of 20 W, the volume would be: 20 W × 10 cm 3 /W = 200 cm 3 . 2. The ‘turn-on time’ in item a. above refers to the time from fully off to fully operational, i.e., it includes the warm-up time of the MPM.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.016
    Code: 3A001
    Good

    Microwave Power Modules (MPMs) consisting of, at least, a travelling-wave ‘vacuum electronic device’, a ‘Monolithic Microwave Integrated Circuit’ (‘MMIC’) and an integrated electronic power conditioner and having all of the following: (a) A ‘turn-on time’ from off to fully operational in less than 10 seconds; (b) A volume less than the maximum rated power in watts multiplied by 10 cm 3 /W; and (c) An ‘instantaneous bandwidth’ of greater than 1 octave (f max > 2f min ) and having any of the following: 1. For frequencies equal to or less than 18 GHz, an RF output power greater than 100 W; or 2. A frequency greater than 18 GHz; Technical notes: 1. To calculate the volume in item b. above, the following example is provided: for a maximum rated power of 20 W, the volume would be: 20 W × 10 cm 3 /W = 200 cm 3 . 2. The ‘turn-on time’ in item a. above refers to the time from fully off to fully operational, i.e., it includes the warm-up time of the MPM.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.016
    Code: 3A001
  • Good

    Microwave power amplifiers containing ‘vacuum electronic devices’ specified above and having all of the following: (a) Operating frequencies above 3 GHz; (b) An average output power to mass ratio exceeding 80 W/kg; and (c) A volume of less than 400 cm 3 ; Note : This category does not apply to equipment designed or rated for operation in any frequency band which is ‘allocated by the International Telecommunication Union (ITU)’ for radio communications services, but not for radio determination.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.015
    Code: 3A001
    Good

    Microwave power amplifiers containing ‘vacuum electronic devices’ specified above and having all of the following: (a) Operating frequencies above 3 GHz; (b) An average output power to mass ratio exceeding 80 W/kg; and (c) A volume of less than 400 cm 3 ; Note : This category does not apply to equipment designed or rated for operation in any frequency band which is ‘allocated by the International Telecommunication Union (ITU)’ for radio communications services, but not for radio determination.

    Authority: EU
    Prohibited Supply To: IRKP
    Program: KP
    EU Code: IX.A3.015
    Code: 3A001
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