Funding

This page displays the ARTES Invitation To Tenders (ITTs) which are published on ESA-STAR. If you are looking for a specific element select from the list provided and click on the Apply button to start the search and display the results.

Funding of the individual Prime or subcontractors, for ARTES Core Competitiveness and ARTES Applications activities, is subject to authorisation of the required ARTES budget by the related National Delegations. Therefore, bidding teams are requested to inform their National Delegation(s) of their intention to participate in funded activities already before submitting a proposal.

The official information platform for providing potential bidders all the relevant documentation and details concerning the intended and issued Invitations To Tender (ITTs) for Open Competitions and Direct Negotiations is ESA-STAR - managed and operated by the ESA Procurement Department.

  • W-BAND HIGH POWER AMPLIFIER FOR THE GROUND SEGMENT (ARTES AT 6B.120) (ON DELEGATION REQUEST)

    Objective: The objective of the activity is to design, manufacture and test a W-band HPA for the ground segment. Targeted Improvements: Enabling W-band feeder uplink communications. Description: The use of W-band (71-76 GHz for downlink and 81-86 for uplink GHz) is expected to significantly increase the available bandwidth for Very High Throughput Satellite Systems (VHTS). W-band spectrum is also expected to reduce the number of gateways requi…

  • 500 AMPERE CLASS POWER UNIT FOR ONBOARD PAYLOAD SIGNAL PROCESSING HARDWARE IN COMMUNICATION SATELLITES (ARTES AT 5C.516)

    The objective of this activity is to design, manufacture and test a 500A class power unit capable of supplying DC power for both large on-board and AI processors for use in communication satellites.Targeted Improvements: Improved current supply capability of voltage regulators by a factor of ten enabling the use of high performance AI processors (GPUs and TPUs) in future telecom satellites.Description: Artificial Intelligence (AI) processors,…

  • AGILE ULTRA HIGH FREQUENCY (UHF) TO KU-BAND TRANSCEIVER FOR COMMUNICATIONS IN CRISIS SITUATIONS (ARTES 4.0 SPL 4S 7C.092)

    The objective of this activity is to design and develop a UHF/Ku transceiver prototype for communications used by governmental users (i.e.+ first responders) and Non-Governmental Organisations (NGOs) within an area of crisis+ compatible with all Ku-band service providers.

  • HIGHLY INTEGRATED TRANSMIT AND RECEIVE DIRECT RADIATING ANTENNA ARRAY BASED ON MM-WAVE SILICON TECHNOLOGIES AND PACKAGING (ARTES AT 5B.241)

    The objective of the activity is to develop a highly integrated, scalable Ku or Ka-band TX/RX direct radiating array, for versatileconnectivity missions in low earth orbit. Critical breadboarding will be carried out, levering the advances in Mm-wave silicon technologies and advanced packaging techniques to achieve a high degree of integration. Targeted Improvements: Enabling highly integrated combined transmit and receive active antenna with a…

  • IN-ORBIT W-BAND CHANNEL CHARACTERISATION FROM GEOSTATIONARY ORBIT (ARTES AT 3E.018) (ON DELEGATION REQUEST)

    The objective of the activity is to carry out characterisation of the W-band channel affected by diurnal and long duration atmospheric changes, enabling future W-band system sizing. The activity will design, develop and test a W-band terminal hosted on a geostationary Earth orbit (GEO) spacecraft, and the associated ground terminals. Targeted Improvements:Increase in the acquisition time of W-band channel measurements for stable atmospheric pa…

  • HIGHLY EFFICIENT 20 W S-BAND AMPLIFIER FOR 5G-CONNECTED CARS (ARTES 4.0 SPL 5G/6G 7C.082)

    The objective of the activity is to design, manufacture and test a highly efficient 20 W S-band Power Amplifier.Targeted Improvements:Efficiency higher than 70% - enabling technology for S-Band automotive applications.Description:Recent studies have shown the potential of satellite communications for 5G-connected cars. Although various frequency bands may be envisaged, the S-band can offer a simple systems architecture as well as a satisfactor…

  • ION THRUSTER GRID IMPEDANCE MEASUREMENT DEVICE FOR IN-FLIGHT THRUSTER HEALTH MONITORING (ARTES AT 4B.182)

    The objective of this activity is to extend the thruster lifetime and optimise the operating point of the thruster and to develop afinite element model of the grids system together with the plasma in between to allow health checks.Targeted Improvements:- 20%increase in thruster lifetime.- 20% decrease of grid thruster failure probability (erosion).Description: Telecom platforms couldbenefit from gridded ion thrusters in the near future, but c…

  • ATMOSPHERIC TURBULENCE EFFECT MITIGATION BY SECONDARY MIRROR ACTUATION (ARTES 4.0 SL SPL 6C.020)

    Objective: The objective of this activity is to simplify optical feeder links systems in Optical Ground Stations by replacing the secondary mirror with an active (deformable) one and to demonstrate the improvement in transmission budget and complexity. Targeted Improvements: 30% increased optical throughput in optical communication ground stations. 20% reduction of complexity in adaptive optics and beam pre-distortion in feeder-link systems. R…

  • MULTI-BEAM RECEIVE ANTENNA FOR SATELLITE-BASED AIR TRAFFIC SURVEILLANCE (ARTES 4.0 AT 5B.225)

    Objective: The objective of the activity is to design, implement and test a scaled engineering model with critical functions of a multi-beam receive antenna for satellite-based air traffic surveillance in the frequency range 950 - 1100 MHz, taking into account narrow beamwidth, directivity and mechanical constraints. Targeted Improvements:- Two-fold increase, compared to the state of the art, in the number of beams covering the visible Earth (…

  • SINGLE-PIECE-PART W-BAND PHASED ARRAY ANTENNA INCLUDING THE PASSIVE RF FRONT-END (ARTES AT 5B.239)

    The objective of this activity is to design, manufacture and test a W-band/E-band phased array antenna including the passive RF front-end taking advantage of additive and hybrid manufacturing techniques in order to reduce its complexity and mass compared to conventional subtractive techniquesTargeted Improvements: 30% mass reduction, removing screws and assembly interfaces.Description: With the multiplication of broadband communication satelli…

  • MULTIFUNCTIONAL HINGE FOR LARGE ON-BOARD DIRECT SATELLITE-TO-DEVICE ACTIVE ANTENNA ARRAYS (ARTES 4.0 SPL 5G/6G 4E.093)

    The objective of the activity is to develop and test a multifunctional hinge technology to accommodate a large multi panel active antenna array on a spacecraft platform, with integrated sensing to avoid adverse local deflections due to spacecraft dynamics.Targeted Improvements:Enabling technology for very large active antennas with disperse panels to be accommodated on a spacecraft platformfor future 5G/6G (direct to handheld) satellitesDescri…

  • DRAG AND ATOMIC OXYGEN RESISTANT CARBON FIBRE REINFORCED POLYMER FOR VERY LOW EARTH ORBIT TELECOM SATELLITES (ARTES AT 4A.092) (ON DELEGATION REQUEST)

    The objective of the activity is to develop and test a coating material (e.g. for substrates such as carbon fibre reinforced polymer, polymers, etc) with improved atomic oxygen and drag resistance to be used on the external satellite surfaces for very low Earth orbit applicationsTargeted Improvements:- Enabling technology not existing today; allowing telecommunication satellites with conventional construction materials in much lower orbits tha…

  • CYBERSECURITY MAKERSPACE: IDENTIFICATION, EXPLORATION AND ASSESSMENT OF CYBERSECURITY CHALLENGES TO SATCOM SYSTEMS  (ARTES 4.0 SPL 4S 3D.025)

    The objective of this activity is to enable rapid delivery of small proof-of-concepts and technical investigations that are addressing emerging cybersecurity challenges in the field of cybersecurity for satcom systems.Procurement Policy: C(2) = A relevant participation (in terms of quality and quantity) of non-primes (incl. SMEs) is required. For additional information please go to:…

  • VERY LOW EARTH ORBIT SYSTEM SIMULATOR FOR DIRECT SATELLITE-TO-DEVICE 5G/6G COMMUNICATIONS (ARTES 4.0 SPL 5G/6G 3F.019)

    Objective: The objective of the activity is to develop and test a system simulator testbed capable of modelling and assessing the performance of communication satellite constellations operating in Very Low Earth Orbit (VLEO). This includes the assessment of the emerging waveforms (5G NTN, European Protected Waveform).Targeted Improvements: Enable the design and assess the constellation system performance of communication satellites operating i…

  • DATA, CONTROL AND SIGNALLING PROTOCOLS FOR SPECTRUM SHARING AMONG CO-EXISTING SATELLITE INTERNET-OF-THINGS NETWORKS (ARTES AT 3C.044) (ON DELEGATION REQUEST)

    The objective of the activity is to develop and test data, control and signalling protocols to enable spectrum sharing among co-existing satellite Internet-of-Things (IoT) networks for new frequency allocations (i.e. below 5 GHz according to resolution 812 WRC 2019) that are on the agenda of the World Radio-Communication Conference (WRC) in 2027. The activity will include a measurement campaign to quantify the interference environment using ex…

  • SPIN-IN OF SLIPRING TECHNOLOGY FOR SATCOM APPLICATIONS (ARTES AT 4E.096)

    The objective of the activity is to select an off the shelf European slipring technology for terrestrial applications and demonstrate its suitability for Satcom applicationTargeted Improvements: Improving by 20% of power density, lifetime, mass, volume, and lead time.Description: Solar Array Drive Mechanism (SADM) require complex slip-ring technology often leading to long delivery times. However, slipring technologies for terrestrial applicati…

  • ON-CHIP ACTIVE RECONFIGURABLE FILTERS FOR 5G PHASED ARRAY ANTENNAS (ARTES 4.0 SPL 5G/6G 7A.076)

    The objective is to develop and test a Ku or Ka band transparent phased array antenna to provide broadband connectivity on board cars. Targeted Improvements: Develop a new class of phased array antennas for cars able to guarantee a seamless broadband connectivitywith LEO satellites. Description: There is today a significant interest to provide broadband connectivity to cars. This request is associated to the need to guarantee emergency service…

  • L-BAND GALLIUM NITRIDE LOW NOISE AMPLIFIER-BASED RF FRONT-END (ARTES AT 5C.465) (ON DELEGATION REQUEST)

    The objective of the activity is to design a compact L-band RF front-end for telecom applications which is based on a GaN Low NoiseAmplifier (LNA). A breadboard of a GaN microwave monolithic integrated circuit will be developed and tested. The RF front-end including the filtering function shall be modelled.Targeted Improvements: up to 30% mass and volume saving of the RF front-end (LNA and filtering) and 20 dB improvement of the LNA dynamic ra…

  • IMPLEMENTATION OF SOFTWARE MITIGATION SOLUTIONS FOR RADIATION-INDUCED SINGLE EVENT EFFECTS (ARTES 4.0 AT 5C.490) - RE-ISSUE OF ITT 1-11734

    The objective of the activity is to de-risk software mitigation techniques for radiation effects on a family of high-performance processors embedded in System on Chip (SoC) components. The activity will identify, on one or more processors of interest for the industry, radiation-induced failure modes and will implement appropriate software mitigation techniques with reuse or development of small FPGA IPs if needed. Targeted Improvements: Enable…

  • CHARACTERISATION OF ATMOSPHERIC TRANSMITTANCE AT WAVELENGTHS TO BE USED IN TERABIT OPTICAL COMMUNICATIONS (ARTES 4.0 SL SPL 6C.053)

    The objective of the activity is to characterise narrow attenuation lines (due to absorption or scattering) in the optical C-band (and ideally L-band) and to evaluate their effect on the communication performance of terabit-per-second feeder links. The activity will develop a testbed to perform measurements and to compare them against existing models. Targeted Improvements: 100% reliability improvement of terabit per second optical communicati…

  • NGSO SIMULATOR FOR 5G VEHICLE-TO-EVERYTHING (V2X) (ARTES 4.0 SPL 5G/6G 3A.183)

    Objective: The objective of the activity is to develop and test NGSO networking techniques for 5G V2X services. The developments will be implemented and verified in a simulator modelling realistic system scenarios of 5G LEO satellites. Targeted Improvements: Enabling the provision of 5G V2X services by satellite. Description:Due to their low altitudes, LEO satellite systems may offer low-latency 5G connectivity that, paired with on-board edge…

  • SPATIALLY COMBINED 40 W - 60 W Q-BAND SOLID STATE POWER AMPLIFIER (ARTES 4.0 AT 5C.494)

    The objective of this activity is to develop, manufacture and test a highly efficient Q-band spatial power divider and combiner forapplication in Q-band Solid State Power Amplifiers (SSPA). Experimental performance verification shall be carried out on a 40 - 60 W (nominal operating point) Q-band SSPA breadboard. Targeted Improvements: Improved power added efficiency of 5 - 10% of Q-band SSPAs in comparison to the state of the art. Description:…

  • ELECTROMECHANICAL MULTILINE THRUSTER SWITCHING UNIT FOR ELECTRIC PROPULSION (ARTES AT 4F.171)

    The objective of the activity is to design, manufacture and test a thruster switching unit facilitating the connection of multiple electric propulsion thrusters to one or more power processing units for redundancy or configuration purposes optimising the system architecture.Targeted Improvements: - Improved efficiency (10% increase with respect to solid state solution).- Increased reliability with respect to a relay-based solution.- Reduced le…

  • BACKGROUND LIGHT AND ATMOSPHERE METROLOGY FOR QUANTUM KEY DISTRIBUTION AT URBAN LOCATIONS (4S SAGA)

    Development of tools and hardware and the execution of a measurement campaign for background light and atmosphere conditions for Quantum Key Distribution (QKD) at urban location (major cities and metropolitan areas) under ARTES 4.0 Space Systems for Safety and Security (4S) Strategic Programme Line. These measurement results are an important check point to validate the design of the SAGA system. The background light and atmosphere metrology ac…

  • SYSTEM ARCHITECTURE AND WAVEFORM FOR AERONAUTICAL MOBILE-SATELLITE ROUTE SAFETY AND SECURITY SERVICES IN C-BAND ( ARTES 4.0 SPL 4S 3A.198)

    The objective of this activity is to design, develop and validate a system architecture and suitable waveform for an Aeronautical Mobile-Satellite (Route) Services (AMS(R)S) constellation in C-band for safety and security services.