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THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H

Thales

Engineering Jobs

THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H

full-timePosted: Jan 7, 2026

Job Description

JOB DESCRIPTION
Lieu : Toulouse, France

Construisons ensemble un avenir de confiance

Thales est un leader mondial des hautes technologies spécialisé dans trois secteurs d’activité : Défense & Sécurité, Aéronautique & Spatial, et Cyber & Digital. Il développe des produits et solutions qui contribuent à un monde plus sûr, plus respectueux de l’environnement et plus inclusif. Le Groupe investit près de 4 milliards d’euros par an en Recherche & Développement, notamment dans des domaines clés de l’innovation tels que l’IA, la cybersécurité, le quantique, les technologies du cloud et la 6G. Thales compte près de 81 000 collaborateurs dans 68 pays.

Nos engagements, vos avantages

  • Une réussite portée par notre excellence technologique, votre expérience et notre ambition partagée

  • Un package de rémunération attractif

  • Un développement des compétences en continu : parcours de formation, académies et communautés internes

  • Un environnement inclusif, bienveillant et respectant l’équilibre des collaborateurs

  • Un engagement sociétal et environnemental reconnu

Votre quotidien

Le site de Toulouse Champollion regroupe les activités de l’ingénierie de systèmes satellites, de la conception et réalisation de charges utiles, du développement et la qualification de segments sol, il intègre un centre de recherche et un accélérateur industriel de start-up et ventures ainsi que les activités dédiées à la science des basses températures, plus précisément au développement et à la production de refroidisseurs micromécaniques pour des marchés exigeants.

In-orbit assembly and manufacturing (ISAM) of large antennas are critical for advancing next-generation space capabilities because they overcome the size and launch constraints of current rockets. Building and deploying large, high-precision antennas directly in space enables the creation of structures far larger and more sensitive than those that can be stowed within a launch fairing, dramatically improving communication bandwidth or Earth observation resolution.

This approach also allows for modular upgrades, on-orbit repairs, and adaptive reconfiguration, ultimately reducing long-term mission costs and extending the operational lifespan of space infrastructure. Several open challenges remain in advancing ISAM of large antennas. One key issue is the design of suitable building blocks for ISAM reflectors, including the optimization of their dimensions and geometry to enable efficient assembly patterns.

Trade-offs may include a simpler antenna configuration with compensation at the feed array. In-orbit calibration also remains a critical technical challenge, particularly in case when the antenna is fed by an active array.

Radio Resource Management (RRM) could be exploited to maximize the capacity of the system based on the real beams characteristics produced by the geometry of the reflector.

The project will include the following core activities:

1. Define and investigate a scenario of a large ISAM reflector antenna in terms of its architecture and assembly

2. Co-develop manufacturing, radio frequency, digital techniques as well as RRM methodologies to optimise the trade-off between complexity cost and performance

Research field:

• Electrical engineering

• RF/Antenna engineering

• Aerospace engineering

• Telecommunications

Required skills:

• Electromagnetics

• Antenna modelling and design

• Antenna arrays and beamforming

• Experience with programming (Matlab)

The Thesis will include 18 months at Thales Alenia Space in Toulouse, followed by 18 months at the Heriot-Watt University, United Kingdom, Edinburgh . In total the PhD will span 36 months

Thales, entreprise Handi-Engagée, reconnait tous les talents. La diversité est notre meilleur atout. Postulez et rejoignez nous !

Locations

  • Toulouse, Haute-Garonne, Haute-Garonne 31000

Salary

Estimated Salary Rangemedium confidence

25,000 - 35,000 EUR / yearly

Source: ai estimated

* This is an estimated range based on market data and may vary based on experience and qualifications.

Skills Required

  • Electromagneticsintermediate
  • Antenna modellingintermediate
  • Antenna designintermediate
  • Antenna arraysintermediate
  • Beamformingintermediate
  • Programming (Matlab)intermediate
  • RF engineeringintermediate
  • Aerospace engineeringintermediate
  • Telecommunicationsintermediate
  • Radio Resource Management (RRM)intermediate
  • In-orbit calibrationintermediate
  • Trade-off analysis (complexity, cost, performance)intermediate

Required Qualifications

  • Master's degree in Electrical Engineering, RF/Antenna Engineering, Aerospace Engineering, or Telecommunications (experience)
  • Experience in electromagnetics (experience)
  • Experience in antenna modelling and design (experience)
  • Experience with antenna arrays and beamforming (experience)
  • Experience with programming (Matlab) (experience)
  • Ability to work on a 36-month PhD thesis split between Thales Alenia Space Toulouse and Heriot-Watt University Edinburgh (experience)

Preferred Qualifications

  • Knowledge of in-orbit assembly and manufacturing (ISAM) technologies (experience)
  • Background in radio frequency engineering (experience)
  • Experience in digital techniques for RF systems (experience)
  • Familiarity with Radio Resource Management (RRM) (experience)

Responsibilities

  • Define and investigate scenarios for large ISAM reflector antenna architecture and assembly
  • Co-develop manufacturing techniques to optimize trade-offs between complexity, cost, and performance
  • Co-develop radio frequency techniques for antenna optimization
  • Co-develop digital techniques for antenna systems
  • Develop RRM methodologies to maximize system capacity based on real beam characteristics
  • Conduct antenna modelling, design, and beamforming analysis
  • Perform in-orbit calibration studies for active array-fed antennas

Benefits

  • general: Attractive remuneration package
  • general: Continuous skills development through training paths, academies, and internal communities
  • general: Inclusive, supportive work environment respecting work-life balance
  • general: Recognized societal and environmental commitment
  • general: 18 months at Thales Alenia Space Toulouse + 18 months at Heriot-Watt University Edinburgh

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THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H

Thales

Engineering Jobs

THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H

full-timePosted: Jan 7, 2026

Job Description

JOB DESCRIPTION
Lieu : Toulouse, France

Construisons ensemble un avenir de confiance

Thales est un leader mondial des hautes technologies spécialisé dans trois secteurs d’activité : Défense & Sécurité, Aéronautique & Spatial, et Cyber & Digital. Il développe des produits et solutions qui contribuent à un monde plus sûr, plus respectueux de l’environnement et plus inclusif. Le Groupe investit près de 4 milliards d’euros par an en Recherche & Développement, notamment dans des domaines clés de l’innovation tels que l’IA, la cybersécurité, le quantique, les technologies du cloud et la 6G. Thales compte près de 81 000 collaborateurs dans 68 pays.

Nos engagements, vos avantages

  • Une réussite portée par notre excellence technologique, votre expérience et notre ambition partagée

  • Un package de rémunération attractif

  • Un développement des compétences en continu : parcours de formation, académies et communautés internes

  • Un environnement inclusif, bienveillant et respectant l’équilibre des collaborateurs

  • Un engagement sociétal et environnemental reconnu

Votre quotidien

Le site de Toulouse Champollion regroupe les activités de l’ingénierie de systèmes satellites, de la conception et réalisation de charges utiles, du développement et la qualification de segments sol, il intègre un centre de recherche et un accélérateur industriel de start-up et ventures ainsi que les activités dédiées à la science des basses températures, plus précisément au développement et à la production de refroidisseurs micromécaniques pour des marchés exigeants.

In-orbit assembly and manufacturing (ISAM) of large antennas are critical for advancing next-generation space capabilities because they overcome the size and launch constraints of current rockets. Building and deploying large, high-precision antennas directly in space enables the creation of structures far larger and more sensitive than those that can be stowed within a launch fairing, dramatically improving communication bandwidth or Earth observation resolution.

This approach also allows for modular upgrades, on-orbit repairs, and adaptive reconfiguration, ultimately reducing long-term mission costs and extending the operational lifespan of space infrastructure. Several open challenges remain in advancing ISAM of large antennas. One key issue is the design of suitable building blocks for ISAM reflectors, including the optimization of their dimensions and geometry to enable efficient assembly patterns.

Trade-offs may include a simpler antenna configuration with compensation at the feed array. In-orbit calibration also remains a critical technical challenge, particularly in case when the antenna is fed by an active array.

Radio Resource Management (RRM) could be exploited to maximize the capacity of the system based on the real beams characteristics produced by the geometry of the reflector.

The project will include the following core activities:

1. Define and investigate a scenario of a large ISAM reflector antenna in terms of its architecture and assembly

2. Co-develop manufacturing, radio frequency, digital techniques as well as RRM methodologies to optimise the trade-off between complexity cost and performance

Research field:

• Electrical engineering

• RF/Antenna engineering

• Aerospace engineering

• Telecommunications

Required skills:

• Electromagnetics

• Antenna modelling and design

• Antenna arrays and beamforming

• Experience with programming (Matlab)

The Thesis will include 18 months at Thales Alenia Space in Toulouse, followed by 18 months at the Heriot-Watt University, United Kingdom, Edinburgh . In total the PhD will span 36 months

Thales, entreprise Handi-Engagée, reconnait tous les talents. La diversité est notre meilleur atout. Postulez et rejoignez nous !

Locations

  • Toulouse, Haute-Garonne, Haute-Garonne 31000

Salary

Estimated Salary Rangemedium confidence

25,000 - 35,000 EUR / yearly

Source: ai estimated

* This is an estimated range based on market data and may vary based on experience and qualifications.

Skills Required

  • Electromagneticsintermediate
  • Antenna modellingintermediate
  • Antenna designintermediate
  • Antenna arraysintermediate
  • Beamformingintermediate
  • Programming (Matlab)intermediate
  • RF engineeringintermediate
  • Aerospace engineeringintermediate
  • Telecommunicationsintermediate
  • Radio Resource Management (RRM)intermediate
  • In-orbit calibrationintermediate
  • Trade-off analysis (complexity, cost, performance)intermediate

Required Qualifications

  • Master's degree in Electrical Engineering, RF/Antenna Engineering, Aerospace Engineering, or Telecommunications (experience)
  • Experience in electromagnetics (experience)
  • Experience in antenna modelling and design (experience)
  • Experience with antenna arrays and beamforming (experience)
  • Experience with programming (Matlab) (experience)
  • Ability to work on a 36-month PhD thesis split between Thales Alenia Space Toulouse and Heriot-Watt University Edinburgh (experience)

Preferred Qualifications

  • Knowledge of in-orbit assembly and manufacturing (ISAM) technologies (experience)
  • Background in radio frequency engineering (experience)
  • Experience in digital techniques for RF systems (experience)
  • Familiarity with Radio Resource Management (RRM) (experience)

Responsibilities

  • Define and investigate scenarios for large ISAM reflector antenna architecture and assembly
  • Co-develop manufacturing techniques to optimize trade-offs between complexity, cost, and performance
  • Co-develop radio frequency techniques for antenna optimization
  • Co-develop digital techniques for antenna systems
  • Develop RRM methodologies to maximize system capacity based on real beam characteristics
  • Conduct antenna modelling, design, and beamforming analysis
  • Perform in-orbit calibration studies for active array-fed antennas

Benefits

  • general: Attractive remuneration package
  • general: Continuous skills development through training paths, academies, and internal communities
  • general: Inclusive, supportive work environment respecting work-life balance
  • general: Recognized societal and environmental commitment
  • general: 18 months at Thales Alenia Space Toulouse + 18 months at Heriot-Watt University Edinburgh

Target Your Resume for "THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H" , Thales

Get personalized recommendations to optimize your resume specifically for THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H. Takes only 15 seconds!

AI-powered keyword optimization
Skills matching & gap analysis
Experience alignment suggestions

Check Your ATS Score for "THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H" , Thales

Find out how well your resume matches this job's requirements. Get comprehensive analysis including ATS compatibility, keyword matching, skill gaps, and personalized recommendations.

ATS compatibility check
Keyword optimization analysis
Skill matching & gap identification
Format & readability score

Tags & Categories

DefenseAerospaceCybersecurityDefenseAerospaceTechnology

Answer 10 quick questions to check your fit for THESE - In-orbit assembly and manufacturing (ISAM) of large antennas -F/H @ Thales.

Quiz Challenge
10 Questions
~2 Minutes
Instant Score

Related Books and Jobs

No related jobs found at the moment.