A. Larangot and . Chaalane, Design of Circuits and Integrated Systems Conference, 2003.

B. Larangot, P. Dubreuil, V. Conédéra, T. Do-conto, and C. Rossi, Solid propellant microthruster: an alternative propulsion device for nanosatellite, Aerospace Energetic Equipment Novembre, pp.12-14, 2002.

. Design, S. Rossi, B. Orieux, T. Larangot, D. Do-conto et al., Fabrication and Modeling of Solid Propellant Microrockets -Application to Micropropulsion C, MRS Symposium H: Materials Aspects in Microsystem Technologies, pp.16-19, 2001.

R. T. Howe and R. S. Muller, Stress in polycrystalline and amorphous silicon thin films, Journal of Applied Physics, vol.54, issue.8, pp.4674-4675, 1983.
DOI : 10.1063/1.332628

R. T. Howe and R. S. Muller, Polycrystalline Silicon Micromechanical Beams, Journal of The Electrochemical Society, vol.130, issue.6, pp.1420-1423, 1983.
DOI : 10.1149/1.2119965

R. T. Howe, Silicon Microdynamic Systems: Recent Developments in Microactuators and Micromachinery, IEEE WESCON, pp.202-204, 1989.

R. Muller and R. Howe, Technologies for microdynamic devices, Nanotechnology, vol.1, issue.1, pp.8-12, 1990.
DOI : 10.1088/0957-4484/1/1/002

K. E. Petersen, Dynamic micromechanics on silicon: Techniques and devices, IEEE Transactions on Electron Devices, vol.25, issue.10, pp.1241-1250, 1978.
DOI : 10.1109/T-ED.1978.19259

Y. Tai and R. S. Muller, Frictional Study of IC-Processed Micromotors, Sensors and Actuators, pp.21-23, 1990.

Y. Tai and R. S. Muller, IC-processed electrostatic synchronous micromotors, Sensors and Actuators, pp.48-56, 1989.
DOI : 10.1016/0250-6874(89)87101-x

G. Poulin, E. Sarraute, and F. Costa, Generation of electrical energy for portable devices, Sensors and Actuators A: Physical, vol.116, issue.3, pp.461-471, 2004.
DOI : 10.1016/j.sna.2004.05.013

Z. Yang, S. Matsumoto, and R. Maeda, A prototype of ultrasonic micro-degassing device for portable dialysis system , Sensors and Actuators A: Physical, pp.2-3, 2002.

L. Cao, S. Mantell, and D. Polla, Design and simulation of an implantable medical drug delivery system using microelectromechanical systems technology, Sensors and Actuators A: Physical, pp.1-2, 2001.

M. Pasquale, Mechanical sensors and actuators, Sensors and Actuators A: Physical, pp.1-3
DOI : 10.1016/s0924-4247(03)00153-5

D. Bosch, B. Heimhofer, G. Mück, H. Seidel, U. Thumser et al., A silicon microvalve with combined electromagnetic/electrostatic actuation, Sensors and Actuators A: Physical, Volumes 37-38, pp.684-692, 1993.

D. Niarchos, Magnetic MEMS: key issues and some applications , Sensors and Actuators A: Physical, pp.255-262, 2003.
DOI : 10.1016/j.sna.2003.09.010

O. Millet, P. Bernardoni, S. Régnier, P. Bidaud, E. Tsitsiris et al., Electrostatic actuated micro gripper using an amplification mechanism , Sensors and Actuators A: Physical, pp.2-3
DOI : 10.1016/j.sna.2003.11.004

Y. Sun, D. Piyabongkarn, A. Sezen, B. J. Nelson, and R. Rajamani, A high-aspect-ratio two-axis electrostatic microactuator with extended travel range, Sensors and Actuators A: Physical
DOI : 10.1016/s0924-4247(02)00298-4

W. Van-der-wijngaart, H. Ask, P. Enoksson, and G. Stemme, A high-stroke, high-pressure electrostatic actuator for valve applications, Sensors and Actuators A: Physical, pp.2-3, 2002.

A. A. Berlin and K. J. Gabriel, Distributed MEMS: new challenges for computation, IEEE Computational Science and Engineering, vol.4, issue.1, pp.12-16, 1997.
DOI : 10.1109/99.590851

J. Hill and R. Szewczyk, System architecture directions for networked sensors, Conf on Architectural Support for Programming Language, pp.93-105, 2000.
DOI : 10.1145/356989.356998

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.117.697

B. Warneke, B. Liebowitz, and K. S. Pister, Smart Dust: communicating with a cubic-millimeter computer, Computer, vol.34, issue.1, pp.44-51, 2001.
DOI : 10.1109/2.895117

V. Mehta and J. S. Cooper, Review and analysis of PEM fuel cell design and manufacturing, Journal of Power Sources, vol.114, issue.1, p.32, 2003.
DOI : 10.1016/S0378-7753(02)00542-6

H. Maynard and J. P. Meyers, Miniature fuel cells for portable power: Design considerations and challenges, Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, vol.20, issue.4, p.1287, 2002.
DOI : 10.1116/1.1488641

J. R. Lim, C. K. Huang, and J. P. , Thermoelectric micro device fabricated by a MEMS-like electrochemical process, Nature Materials, vol.2, p.528, 2003.

C. Rossi and D. Estève, Micropyrotechnics, a new technology for making energetic microsystems: review and prospective, Sensors and Actuators A: Physical, vol.120, issue.2, pp.297-310, 2005.
DOI : 10.1016/j.sna.2005.01.025

URL : https://hal.archives-ouvertes.fr/hal-00150261

C. Rossi and D. Estève, Faisabilité d'un assemblage pour l'injection transcutannée, pp.1410491-1410491, 1995.

C. Rossi, D. Estève, and C. Mingués, Pyrotechnic actuator: a new generation of Si integrated actuator , Sensors and Actuators A: Physical, pp.211-215, 1999.

C. Rossi, D. Estève, N. Fabre, T. Do-conto, V. Conédéra et al., A new MEMS based microthrusters for microspacecraft applications, Proceedings of the Micro/Nanotechnology for Space Applications (MNT'99) MicroPower Generation Using Combustion: Issues and Approaches, Topical Review at the 29 th International Symposium on Combustion, pp.10-15, 1999.

D. H. Lewis-jr, S. W. Janson, R. B. Cohen, and E. K. Antonsson, Digital Micropropulsion, Sensors and Actuators A: Physical, pp.143-154, 2000.

G. Lamedica, M. Balucani, A. Ferrari, P. D. Tromboni, and M. Marchetti, Microthruster in Silicon for aerospace application, IEEE AESS Systems Magazine, pp.22-27, 2002.

K. L. Zhang, S. K. Chou, and S. S. Ang, Development of a solid propellant microthruster with chamber and nozzle etched on a wafer surface, Journal of Micromechanics and Microengineering, vol.14, issue.6, pp.785-792, 2004.
DOI : 10.1088/0960-1317/14/6/004

H. H. Dibiaso, B. A. English, and M. G. Allen, Solid-phase conductive fuels for chemical microactuators, Sensors and Actuators A: Physical, pp.260-266, 2004.

E. Diaz, P. Brousseau, G. Ampleman, and E. E. , Prud'homme, Polymer Nanocomposites from Energetic Thermoplastic Elastomer and Alex®, pp.28-32, 2003.
DOI : 10.1002/prep.200300007

A. J. Gavens, Effect of intermixing on self-propagating exothermic reactions in Al/Ni nanolaminate foils, Journal of Applied Physics, vol.87, issue.3, 2000.
DOI : 10.1063/1.372005

K. Engelen and M. H. Lefebvre, Properties of Gas-Generating Mixtures Related to Different Fuel and Oxidizer Compositions, Propellants, Explosives, Pyrotechnics, vol.28, issue.4, pp.4-49, 2003.
DOI : 10.1002/prep.200300006

A. N. Ali, S. F. Son, M. A. Hiskey, and D. L. Naud, Novel High Nitrogen Propellant Use in Solid Fuel Micropropulsion, Journal of Propulsion and Power, vol.20, issue.1, 2004.
DOI : 10.2514/1.9238

M. Zhu and . Megapixel, Micro-thruster arrays for small satellite StationKeeping, 14 th Annual/USU Conference on Small satellite, 2000.

K. Takahashi, H. Ebisuzaki, H. Kajiwara, T. Achiwa, and K. Nagayama, Design and Testing of Mega-Bit Microthruster Arrays, NanoTech 2002, "At the Edge of Revolution", pp.9-12, 2002.
DOI : 10.2514/6.2002-5757

B. S. Tanaka, R. Hosokawa, S. Tokudome, K. Hori, H. Saito et al., MEMS-Based Solid Propellant Rocket Array Thruster with Electrical Feedthroughs., TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, vol.46, issue.151, pp.47-51, 2003.
DOI : 10.2322/tjsass.46.47

Y. Zheng, Z. Gaofei, L. Baoxuan, and H. Songqi, Design, Fabrication and Test of MEMS Propulsion with Solid Propellant, 4th round table on micro/nano technologies for space, 2003.

Y. Zhao, B. A. English, H. Dibiaso, G. Yuan, and M. G. Allen, Polymeric microcombustors for solid-phase conductive fuel, Sensors and Actuators A: Physical, pp.260-266, 2004.

W. Lindsay, D. Teasdale, V. Milanovic, K. Pister, and C. , Fernandez-Pello, Thrust and electrical power from solid propellant microrockets
DOI : 10.1109/memsys.2001.906614

P. Q. Pham, D. Briand, C. Rossi, and N. F. De-rooij, Downscaling of solid propellant pyrotechnical, 12th International Conference on Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS'2003), pp.8-121423, 2003.

B. A. English, Microcombustors Based on Controllable Solid Fuel Elements, Microelectromechanical Systems, 2003.
DOI : 10.1115/IMECE2003-42823

C. C. Hong, S. Murugesan, G. Beaucage, J. W. Choi, and C. H. Ahn, A functionning on-chip pressure generator using solid chemical propellant for disposable lab-on-a-chip, pp.281-286, 2003.

T. Troianello, Precision foil resistors used as electro-pyrotechnic initiators, 2001 Proceedings. 51st Electronic Components and Technology Conference (Cat. No.01CH37220), 2001.
DOI : 10.1109/ECTC.2001.928019

D. S. Stewart, Miniaturization of explosive technology and microdetonics, XXI ICTAM, 15-21, 2004.

L. Menon, Ignition studies of Al/FeO3 energetic nanocomposites, Applied Physics letters, vol.84, issue.23

M. Tillotson, A. E. Gash, R. L. Simpson, L. W. Hrubesh, J. H. Satcher-jr et al., Nanostructured energetic materials using sol???gel methodologies, Journal of Non-Crystalline Solids, vol.285, issue.1-3, pp.338-345, 2001.
DOI : 10.1016/S0022-3093(01)00477-X

URL : http://www.osti.gov/scitech/servlets/purl/15004111

D. S. Stewart, Towards the miniaturization of explosive technology, Shock Waves, vol.11, issue.6, pp.467-473, 2002.
DOI : 10.1007/s001930200129

M. D. Plessis and C. Conradie, Nano-explosions in silicon, 12th International Conference of Mixed Design of Integrated Circuits and Systems, pp.22-25, 2005.

L. K. Gusachenko, V. E. Zarko, A. D. Rychkov, N. Shokina, and . Yu, Filtration Combustion of an Energetic Material in a Cocurrent Flow of Its Combustion Products. Critical Combustion Conditions, Combustion, Explosion, and Shock Waves, vol.39, issue.6, pp.694-700, 2003.
DOI : 10.1023/B:CESW.0000007683.81353.91

B. Larangot, Conception, fabrication et caractérisation de matrices de micropropulseurs pyrotechniques sur silicium, 2004.

K. L. Zhang, S. K. Chou, and S. S. Ang, Development of a low-temperature co-fired ceramic solid propellant microthruster, Journal of Micromechanics and Microengineering, vol.15, issue.5, pp.944-952, 2005.
DOI : 10.1088/0960-1317/15/5/007

D. Combes and D. King, Electronic safety and arming unit, 2004.

P. Pennarun, C. Rossi, D. Estève, and V. Conédéra, Development of MEMS based safe electro-thermal pyrotechnic igniter for a new generation of microfuze, Proceeding of the SPIE conference on the Microtechnologies for the new millennium, pp.9-12

C. Rossi, D. Estève, P. T. Boyer, and G. Delannoy, Realization, characterization of micro pyrotechnic actuators and FEM modelling of the combustion ignition, Sensors and Actuators A: Physical, vol.70, issue.1-2, pp.141-147
DOI : 10.1016/S0924-4247(98)00136-8

C. Bruno and E. Giacomazzi, Chemical microthrusters - Effect of scaling on combustion, 37th Joint Propulsion Conference and Exhibit, pp.9-12, 2002.
DOI : 10.2514/6.2001-3711

P. T. Boyer, B. Haji, J. L. Alay, J. R. Morante, and A. Martinez, Properties of SiOxNy films deposited by LPCVD from SiH4/N2O/NH3 gaseous mixture, Dispositif de remplissage de zones ouvertes situées en creux par rapport à une surface, pp.1-3, 1999.

. Plana, An efficient technological process for millimetric waves circuits on silicon, 11th European Conference on Solid-State Transducers (EUROSENSORS XI), Varsovie (Pologne), 21-24 Septembre, pp.1185-1188, 1997.

C. Rossi, Conception et réalisation d'un système de réhydradation pour patch transdermique a partir de micro actionneurs pyrotechniques, Thèse de Doctorat, Institut National des Sciences Appliquées, p.18

H. Bartuch, D. Clément, D. Kovalev, and H. Laucht, Silicon initiator, from the idea to functional tests, 2004.

C. Rossi, P. T. Boyer, and D. Estève, Realization and performance of thin SiO2/SiNx membrane for microheater applications, Sensors and Actuators A: Physical, vol.64, issue.3, pp.241-245, 1998.
DOI : 10.1016/S0924-4247(97)01627-0

P. Pennarun, Modélisation de micro initiateurs pyrotechniques, comparaison de plusieurs technologies

A. Tappan, Patterning of regular porosity in PETN microenergetic material thin film, th International Conference of the ICT, 2005.

A. Tappan, Micro energetic materials ? microscale energetic material processing and testing, 41 st AIAA Aerospace Sciences Meeting and Exhibit, 2003.
DOI : 10.2514/6.2003-242

. Micropyrotechnics, Applicative exploration of Energetic Microsystem

C. Rossi, D. Lagrange, B. Larangot, and A. , Final characterizations of MEMS-based pyrotechnical microthrusters, Sensors and Actuators A: Physical, vol.121, issue.2, pp.508-514, 2005.
DOI : 10.1016/j.sna.2005.03.017

C. Rossi, D. Estève, and C. Mingués, Pyrotechnic actuator: a new generation of Si integrated actuator , Sensors and Actuators A: Physical, pp.1-3, 1999.

B. Larangot, Conception, fabrication et caractérisation de matrices de micropropulseurs pyrotechniques sur silicium, 2004.

A. Gustavo, C. Ardila-rodr?guez, and . Rossi, Daniel Esteve Design, fabrication and operation of a wireless and miniature ignition system, Sensors and Actuators

P. Pennarun, C. Rossi, D. Estève, and V. Conédéra, Development of MEMS based safe electro-thermal pyrotechnic igniter for a new generation of microfuze, Proceeding of the SPIE conference on the Microtechnologies for the new millennium, pp.9-12

C. Rossi, P. T. Boyer, and D. Estève, Realization and performance of thin SiO2/SiNx membrane for microheater applications, Sensors and Actuators A: Physical, vol.64, issue.3, pp.241-245, 1998.
DOI : 10.1016/S0924-4247(97)01627-0

S. Orieux, C. Rossi, and D. Estève, Compact model based on a lumped parameter approach for the prediction of solid propellant micro-rocket performance, Sensors and Actuators A: Physical, vol.101, issue.3, pp.383-391, 2002.
DOI : 10.1016/S0924-4247(02)00203-0

C. Rossi, M. Djafari-rouhani, and D. Estève, Prediction of the performance of a Si-micromachined microthruster by computing the subsonic gas flow inside the thruster, Sensors and Actuators A: Physical, vol.87, issue.1-2, pp.96-104, 2000.
DOI : 10.1016/S0924-4247(00)00464-7

C. Rossi and M. , Puig Vidal, Specification and design of a drug injection decive using a pyrotechnic gas generator, 2002.

C. Rossi and M. P. Vidal, Drug injector microsystem based on pyrotechnics, 2003.

H. Kim, Y. Han-bae, and S. W. Kim, Innovative Ambulatory Drug Delivery System Using an Electrolytic Hydrogel Infusion Pump, IEEE Transactions on biomedical engineering, vol.46, p.6, 1999.

E. W. Smith and H. J. Maibach, Percutaneous Penetration Enhancers, 1995.

P. G. Green, Iontophoretic delivery of peptide drugs, Journal of Controlled Release, vol.41, issue.1-2, pp.33-48, 1996.
DOI : 10.1016/0168-3659(96)01354-5

M. R. Prausnitz, B. Berner, S. M. Dinh, and J. Kost, Ultrasound induced delivery of peptides, Electronically Controlled Drug Delivery, pp.247-255, 1993.

R. Oever and A. Van-den-berg, Silicon micromachined hollow microneedles for transdermal liquid transport, Journal of Microelectromechanical Systems, issue.6, p.12, 2003.

E. V. Mukerjee, R. R. Issseroff, S. D. Collins, and R. L. Smith, Microneedle array with integrated microchannels for transdermal sample extraction and in situ analysis, TRANSDUCERS, Solid-State Sensors, Actuators and Microsystems, 12th International Conference on, pp.8-121439, 2003.

D. V. Mcallister, S. Kaushik, P. N. Patel, J. L. Mayberry, M. G. Allen et al., Microneedles for transdermal delivery of macromolecules, Proceedings of the First Joint BMES/EMBS Conference. 1999 IEEE Engineering in Medicine and Biology 21st Annual Conference and the 1999 Annual Fall Meeting of the Biomedical Engineering Society (Cat. No.99CH37015), pp.13-16, 1999.
DOI : 10.1109/IEMBS.1999.803991

S. Henry, D. V. Mcallister, M. G. Allen, and M. R. Prausnitz, Micromachined needles for the transdermal delivery of drugs, Micro Electro Mechanical Systems, MEMS 98. Proceedings., The Eleventh Annual International Workshop on, pp.25-29494, 1998.

M. P. Vidal, J. Lopez, P. Miribel-catala, J. Samitier, and C. Rossi, Smart drug delivery system based on pyrotechnical actuation, Proceedings of the SPIE The International Society for Optical Engineering, pp.226-261, 2003.

P. Aggarwal, K. V. Kaler, and W. Badawy, Design and implementation of MEMS based microneedles for biomedical applications, IEEE CCECE, 2003.

A. Rodriguez, D. Molinero, E. Valera, T. Trifonov, L. F. Marsal et al., Fabrication of silicon oxide microneedles from macroporous silicon, Sensors and Actuators B: Chemical, vol.109, issue.1, p.18
DOI : 10.1016/j.snb.2005.03.015

S. Rajaraman and H. T. Henderson, A unique fabrication approach for microneedles using coherent porous silicon technology, Sensors and Actuators B: Chemical, vol.105, issue.2, pp.443-448, 2005.
DOI : 10.1016/j.snb.2004.06.035

R. Yang, T. Chen, H. Chen, and W. Wang, Microfabrication of biodegradable (PLGA) honeycomb-structures and potential applications in implantable drug delivery, Sensors and Actuators B: Chemical, vol.106, issue.2, pp.506-511, 2005.
DOI : 10.1016/j.snb.2004.07.017

C. T. Ching, I. Camilleri, and P. Connolly, A low-cost, programmable device for versatile current delivery in iontophoresis applications, Sensors and Actuators B: Chemical, vol.106, issue.2
DOI : 10.1016/j.snb.2004.07.022

P. Griss and G. Stemme, Novel, side opened out-of-plane microneedles for microfluidic transdermal interfacing, Micro Electro Mechanical Systems, The Fifteenth IEEE International Conference on, pp.20-24, 2002.

J. Santini, A controlled-released microchip, Nature, vol.397, 1999.

Y. Li, R. S. Shawgo, R. Langer, and M. J. Cima, Mechanical testing of gold membranes on a MEMS device for drug delivery, Microtechnologies in Medicine & Biology 2nd Annual International IEEE-EMB Special Topic Conference on, pp.2-4390, 2002.

A. K. Dash and C. G. , Therapeutic applications of implantable drug delivery systems, Journal of Pharmacological and Toxicological Methods, vol.40, issue.1
DOI : 10.1016/S1056-8719(98)00027-6

D. G. Allen and M. V. Sefton, A model of insulin delivery by a controlled release micropump, Annals of Biomedical Engineering, vol.199, issue.3
DOI : 10.1007/BF02584274

D. Ll-maillefer, A High performance silicon micropump for disposable drug delivery system, Technical-Digest of the 14th, 2001.

C. Grosjean, A thermopneumatic microfluidic system, Technical Digest. MEMS 2002 IEEE International Conference. Fifteenth IEEE International Conference on Micro Electro Mechanical Systems (Cat. No.02CH37266), p.2000
DOI : 10.1109/MEMSYS.2002.984051

S. Bütefisch, Novel micro-pneumatic actuator for MEMS, Sensors and Actuators, pp.97-98, 2002.

C. C. Hong, A Disposable on-Chip Air Detonator for Driving Fluids on Point-of-Care Systems, pp.949-951, 2002.
DOI : 10.1007/978-94-010-0504-3_115

C. C. Hong, A functional on chip pressure generator using solid chemical propellant for disposable labon-a-chip, pp.281-286, 2003.

J. Y. Ju-yeoul-baek and . Park1, Jong Il Ju1, Tae Soo Lee and Sang Hoon Lee, A pneumatically controllable flexible and polymeric microfluidic valve fabricated via in situ development, J. of Micromech. Microeng, pp.15-1015, 2005.

L. Sin, Water-powered Microdrug delivery system, J. of MicroMechanical Systems, 2004.

K. Y. Weng, Thermolysis Reaction Actuating Pumps, Proceeding µTAS 2001conference gas, Sensors and Actuators A: Physical, pp.8-13, 2004.

C. Rossi and D. Estève, Micropyrotechnics, a new technology for making energetic microsystems: review and prospective, Sensors and Actuators A: Physical, vol.120, issue.2, pp.297-310, 2005.
DOI : 10.1016/j.sna.2005.01.025

URL : https://hal.archives-ouvertes.fr/hal-00150261

C. Rossi, Conception et realisation d'un systeme de rehydradation pour patch transdermique a partir de micro actionneurs pyrotechniques, Thèse de Doctorat, Institut National des Sciences Appliquées, p.18

C. Rossi and A. Berthold, Générateur thermoélectrique basé sur la combustion d'un propergol solide, Journées Nationales du Réseau de Recherche en Micro et Nano Technologies, pp.3-4, 2003.

S. W. Janson and A. Sae, Chemical and Electrical Micropropulsion Concept for Nanosatellite, ASEE joint Propulsion conference, vol.30, 1994.

S. Janson, H. Helvajian, and E. Robinson, The concept of Nanosatellite for Revolutionary Low-Cost Space Systems, 44 th Congress of the international astronautics federation, 1993.

S. Janson, A. Huang, W. Hansen, and H. Helvajian, Development of an inspector Satellite Propulsion module using photostructurable glass ceramic materials, Caneus 2004-conference on micro nano technologies for aerospace applications, pp.1-5, 2004.

M. Behringer, F. Rüdenauer, and W. Steiger, Spaceproven indium liquid metal field ion emitters for ion microthruster applications, pp.6-9, 1997.

J. Mitterauer, Micropropulsion for small spacecraft: a new challenge for field effect electric propulsion and microstructured liquid metal ion sources, Proceedings of the AIAA Nanotech 02 conference, 2002.
DOI : 10.1002/sia.1693

C. Kitts and M. Swartwout, Autonomous Operations Experiments For the Distributed Emerald Nanosatellite Mission, 14 th Annual USU Conference on Small Satellites, pp.0-5, 2000.

F. M. Pranajaya, Progress on Colloid Micro-Thruster Research and Flight Testing, Proceeding of the 13 th Annual AIAA/USU Conference on Small Satellites, 2000.

M. Gamero-castaño and V. Hruby, Characterization of a Colloid Thruster Performing in the micro-Newton Thrust Range, 27 th International Electric Rocket Propulsion Conference, pp.15-19, 2001.

J. Xiong, Z. Zhou, X. Ye, X. Wang, Y. Feng et al., A colloid micro-thruster system, Microelectronic Engineering, vol.61, issue.62, pp.61-62, 2002.
DOI : 10.1016/S0167-9317(02)00466-5

J. Stark, B. Stevens, B. Kent, M. Sandford, and M. Alexander, Micro-Fabrication and Operation Nano Emitters Suitable for a Colloid Thruster Array, 4ème table ronde sur les micro/nano technologies pour l'espace, 2003.

D. H. Morash and L. Stand, MINIATURE PROPULSION COMPONENTS FOR THE PLUTO FAST FLYBY SPACECRAFT, 30th Joint Propulsion Conference and Exhibit, 1994.
DOI : 10.2514/6.1994-3374

R. Bayt and K. Breuer, Systems Design and Performance of Hot and Cold Supersonic Microjets AIAA-2001- 0721, 39 th AIAA Aerospace Sciences Meeting, pp.8-11, 2001.

L. Vaccari, F. De-grandis, F. Santoni, A. Gerardino, F. Perennes et al., Design and prototyping of a micropropulsion system for microsatellites attitude control and orbit correction, Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, vol.20, issue.6, pp.2793-2797, 2002.
DOI : 10.1116/1.1523015

X. Y. Ye, F. Tang, H. Q. Ding, and Z. Y. Zhou, Study of a vaporizing water micro-thruster, Sensors and Actuators A 89, pp.159-165, 2001.

. Tae-goo, S. W. Tang, Y. Kim, and . Cho, High impulse, low power, digital microthrusters using low boiling temperature liquid propellant with high viscosity fluid plug, Sensors and Actuators A 3324, pp.1-6, 2002.

G. Lamedica, M. Balucani, and A. Ferrari, Microthrusters in Silicon for Aerospace Application, IEEE AESS Systems Magazine, 2002.

K. L. Zhang, S. K. Chou, and S. Ang, Development of a low-temperature co-fired ceramic solid propellant microthruster, Journal of Micromechanics and Microengineering, vol.15, issue.5, pp.15-944, 2005.
DOI : 10.1088/0960-1317/15/5/007

K. L. Zhang, S. K. Chou, and S. S. Ang, MEMS-Based Solid Propellant Microthruster Design, Simulation, Fabrication, and Testing, Journal of Microelectromechanical Systems, vol.13, issue.2, pp.165-175, 2004.
DOI : 10.1109/JMEMS.2004.825309

K. L. Zhang, S. K. Chou, and S. S. Ang, Development of a solid propellant microthruster with chamber and nozzle etched on a wafer surface, Journal of Micromechanics and Microengineering, vol.14, issue.6, pp.785-792, 2004.
DOI : 10.1088/0960-1317/14/6/004

K. L. Zhang, S. K. Chou, S. S. Ang, X. S. Tang, and J. S. Phang, INVESTIGATION OF SOLID PROPELLANT MICROTHRUSTERS, International Journal of Computational Engineering Science, vol.04, issue.03, pp.517-520, 2003.
DOI : 10.1142/S1465876303001654

M. S. Rhee, C. M. Zakrzwski, and M. A. Thomas, Highlights of Nanosatellite Propulsion Development Program at NASA-Goddard Space Flight Center, 14 th Annual USU Conference on Small Satellites, pp.0-5, 2000.

D. L. Hitt, C. M. Zakrzwski, and M. A. Thomas, MEMS-based satellite micropropulsion via catalyzed hydrogen peroxide decomposition, Smart Materials and Structures, pp.1163-1175, 2001.
DOI : 10.1088/0964-1726/10/6/305

K. A. Polzin, E. Y. Choueiri, P. Gurfil, and N. J. Kasdin, Plasma Propulsion Options for Multiple Terrestrial Planet Finder Architectures, Journal of Spacecraft and Rockets, vol.39, issue.3, pp.347-356, 2002.
DOI : 10.2514/2.3833

E. V. Murkerjee, Vaporizing liquid microthruster, Sensors and Actuators A: Physical, vol.83, issue.1-3, pp.231-236, 2000.
DOI : 10.1016/S0924-4247(99)00389-1

K. Takahashi, H. Ebisuzaki, H. Kajiwara, T. Achiwa, and K. Nagayama, Design and Testing of Mega-Bit Microthruster Arrays, NanoTech 2002, "At the Edge of Revolution", 2002.
DOI : 10.2514/6.2002-5757

B. S. Tanaka, R. Hosokawa, S. Tokudome, K. Hori, H. Saito et al., MEMS-Based Solid Propellant Rocket Array Thruster with Electrical Feedthroughs., TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, vol.46, issue.151, pp.47-51, 2003.
DOI : 10.2322/tjsass.46.47

D. H. Lewis-jr, S. W. Janson, R. B. Cohen, and E. K. Antonsson, Digital micropropulsion, Sensors and Actuators A: Physical, vol.80, issue.2, pp.143-154, 2000.
DOI : 10.1016/S0924-4247(99)00260-5

. Zhu, MEMS megapixel micro-thruster arrays for small satellite station keeping, 14th Annual AIAA/USU Conference on Small Satellite, pp.21-24, 2000.

E. Miribel, E. Montané, J. López, and . Samitier, Solid propellant micro-rockets ? towards a new Type of power MEMS, Proceedings of the AIAA Nanotech 02 conference, 2002.

K. Takahashi, H. Ebisuzaki, H. Kajiwara, T. Achiwa, and K. Nagayama, Design and Testing of Mega-Bit Microthruster Arrays, NanoTech 2002, "At the Edge of Revolution", 2002.
DOI : 10.2514/6.2002-5757

Y. Zheng, Z. Gaofei, L. Baoxuan, and H. Songqi, Design, Fabrication and Test of MEMS Propulsion with Solid Propellant, 4th round table on micro/nano technologies for space, 2003.

P. Q. Pham, D. Briand, C. Rossi, and N. F. De-rooij, Downscaling of solid propellant pyrotechnical microsystems Tech. Digest Transducers'03, pp.1423-1426, 2003.

B. Larangot, C. Rossi, A. Chaalane, H. Granier, and P. F. Calmon, Ignition and combustion investigation on pyrotechnical solid microthruster, Proceedings of the 17th European Conference on Solid-State Transducers (EUROSENSORS XVII), pp.744-747, 2003.

M. Tosin, F. Granziera, L. Gibim, and S. Canola, A solid propellant micro thruster design ? a brief discussion about its viability and application, Conference on micro nano technologies for aerospace applications, pp.1-5, 2004.

D. Estève, J. Simonne, C. Rossi, G. Vialaret, D. Borodaty et al., Application des microsystemes aux systemes spatiaux , Rapport LAAS No96304, Contrat CNES N, vol.808, issue.2, pp.95-137, 1996.

C. Rossi, M. Dumonteuil, T. Camps, D. Briand, P. Q. Pham et al., Matrix of 10×10 addressed solid propellant microthrusters : review of the technologies, Sensors and Actuactors, 2005.

C. Rossi, N. Fabre, V. Conédéra, and D. , Estève, Design, fabrication and thrust prediction of solid propellant microthrusters for space application, Proceedings of the SPIE-The International Society for Optical Engineering, pp.1-2, 1999.

C. Rossi and G. Ardila, Assessment study on the capability of solid propellant microthruster to respond to small satellite station keeping, p.53, 2003.

T. Bechtold, E. B. Rudnyi, J. G. Korvink, and C. Rossi, Efficient modelling and simulation of 3D electrothermal model for a pyrotechnical microthruster, pp.4-5, 2003.

S. Orieux, C. Rossi, and D. Estève, Compact model based on a lumped parameter approach for the prediction of solid propellant micro-rocket performance, Sensors and Actuators A: Physical, vol.101, issue.3, pp.383-391, 2002.
DOI : 10.1016/S0924-4247(02)00203-0

C. Rossi, Quels challenges pour la micropropulsion spatiale de demain ? Etat de l'art des développements récents en micropropulsion, et 8 juin 05

R. L. Bayt, A. A. Ayon, and K. Breuer, A performance evaluation of MEMS-based micronozzles, 33rd Joint Propulsion Conference and Exhibit, pp.97-3169, 1997.
DOI : 10.2514/6.1997-3169

R. L. Bayt and A. , Fabrication and Testing of a MEMS based micropropulsion system, pHD dissertation, 1999.

K. J. Badcock, B. E. Richards, and M. Woodgate, A, Elements of computational fluid dynamics on block structured grids using implicit flow solver, Progress in Aerospace Sciences, pp.351-392, 2000.

R. D. Menzies, B. E. Richards, and K. J. Badcock, Computational Investigation of 3D flow effect on micronozzles, J. Spacecraft, vol.39

C. Rossi and A. Chaalane, Définition de micropropulseurs à base de Silicium pour le contrôle d'assiette des drônes, 2004.

C. Rossi, A survey of MEMS based micro thrusters and their solid propellant technology, Sensors Update, vol.10, 2002.

C. Rossi and D. Estève, Etude de micropropuleurs sur silicium, p.0

C. Rossi, Développement de matrices de micropropulseurs intégrées sur silicium pour des applications spatiales , Rapport LAAS No03268 -Contrat Région RECH, p.99001197

C. Rossi, Micropyros Final Report, IST contract # 99-29047, Development of an emerging technology based on Micropyrotechnics. Applicative exploration of Energetic Microsystem

B. Larangot, Conception, fabrication et caracterisation de matrices de micropropulseurs pyrotechniques sur silicium, Doctorat, 2004.

A. Chaalane, B. Larangot, C. Rossi, H. Granier, and D. Estève, Main directions of solid propellant micropropulsion activity at LAAS, Conference on Micro-Nano-Technologies for Aerospace Applications, CANEUS, pp.1-5, 2004.

C. Rossi and S. Orieux, Modèle analytique pour l'étude de micropropulseurs silicium, 2001.

C. Rossi, M. Djafari-rouhani, and D. Estève, Prediction of the performance of a Si-micromachined microthruster by computing the subsonic gas flow inside the thruster, Sensors and Actuators A: Physical, vol.87, issue.1-2, pp.96-104, 2000.
DOI : 10.1016/S0924-4247(00)00464-7

S. Orieux, C. Rossi, and D. Estève, Thrust stand for ground tests of solid propellant microthrusters, Review of Scientific Instruments, vol.73, issue.7, pp.2694-2702, 2002.
DOI : 10.1063/1.1483901

M. S. Baker and L. L. Howell, On-chip actuation of an in-plane compliant bistable micromechanism, Journal of Microelectromechanical Systems, vol.11, issue.5, pp.566-573, 2002.
DOI : 10.1109/JMEMS.2002.803284

X. Sun, K. R. Farmer, and W. N. Carr, A bistable microrelay based on two-segment multimorph cantilever actuator, MEMS 98. Proceedings., The Eleventh Annual International Workshop on, pp.25-29, 1998.

S. Majumber, J. Lampen, R. Morrison, and J. Maciel, MEMS switches, IEEE Instrumentation & Measurement Magazine, vol.6, issue.1, pp.12-15, 2003.
DOI : 10.1109/MIM.2003.1184267

T. Eniko, K. Enikov, and . Lazarov, PCB-integrated metallic thermal micro-actuators, Sensors and Actuators A: Physical, pp.76-82, 2003.

M. Ruan, J. Shen, and C. B. Wheeler, Latching microelectromagnetic relays, Sensors and Actuators A: Physical, pp.346-350, 2001.

K. Tu and K. Zeng, Tin-Lead (SnPb) solder reaction in flip chip technology, Material Science and engineering, pp.1-58, 2001.

M. Scaefer, R. A. Fournelle, and J. Liang, Theory for intermetallic phase growth between cu and liquid Sn-Pb solder based on grain boundary diffusion control, Journal of Electronic Materials, vol.11, issue.23, pp.1167-1176, 1998.
DOI : 10.1007/s11664-998-0066-7

C. Brevet and . Novatec-en-cours-de-dépôt, Dispositif embarqué hautement sécurisé de mise à feu intégrant des micro interrupteurs pyrotechniques monocoups prévus à cet effet

H. Bartuch, D. Clément, D. Kovalev, and H. Laucht, Silicon initiator, from the idea to functional tests, 2004.

T. Troianello, Precision foil resistors used as electro-pyrotechnic initiators, 2001 Proceedings. 51st Electronic Components and Technology Conference (Cat. No.01CH37220), 2001.
DOI : 10.1109/ECTC.2001.928019

P. Pennarun, C. Rossi, D. Estève, and V. Conédéra, Development of a safe electro-thermal pyrotechnic igniter on silicon, proceedings of the SPIE, Conference on the microtechnologies for the new millenniun 2005, pp.9-11, 2005.

P. Pennarun, C. Rossi, D. Estève, and D. Bourrier, Development of MEMS based safe electro-thermal pyrotechnic igniter for a new generation of microfuze, Journal of MicroMechanical System, 2005.

G. A. Ardila-rodríguez, C. Rossi, and D. , Esteve, Design, Fabrication and Operation of a Wireless and Miniature Ignition System, Sensors and actuators, 2005.

C. Rossi, G. A. Ardila-rodríguez, and D. Esteve, Conception d'une "amorce intelligente" par couplage magnétique HF et compatible douille 9 mm. Réalisation d'une maquette de validation de concept, 2003.

C. Rossi, M. Dumonteuil, T. Camps, D. Briand, P. Q. et al., Matrix of 10×10 addressed solid propellant microthrusters: review of the technologies, Sensors and Actuators sous presse, dec, p.5

C. Rossi and A. Berthold, Générateur thermoélectrique basé sur la combustion d'un propergol solide, Journées Nationales du Réseau de Recherche en Micro et Nano Technologies, pp.3-4, 2003.

W. Lindsay, D. Teasdale, V. Milanovic, K. Pister, and C. , Fernandez-Pello, Thrust and electrical power from solid propellant microrockets
DOI : 10.1109/memsys.2001.906614

A. H. Epstein, PowerMEMS and microengines, Transducers'97 -1997 International Conference on SolidState Sensors and Actuators, p.755, 1997.

C. Escriba, E. Campo, D. Estève, and J. Y. Fourniols, Complete analytical modeling and analysis of micromachined thermoelectric uncooled IR sensors, Sensors and Actuators A: Physical, vol.120, issue.1, pp.1267-276, 2005.
DOI : 10.1016/j.sna.2004.11.027