Transcending from Atto-Scale measurements to Quantum Realms

At EMXYS, every product and every project, no matter its size and complexity, is impregnated with the attention to detail and search for excellence. The highest standards
for product and quality assurance are observed along all the different project phases.

Our technology domains

Emxys applies its Know-how in technological
disciplines such as: Space and Hi-Rel electronics, RF

OPTICS AND PHOTONICS

EMXYS experience in the design of optics and optoelectronics systems include both classical and quantum applications such
as Free-Space communications units, QKD laser sources or FBG sensors interrogation, among others..

EMXYS has developed with the support ot ESA a complete range of contacless capacitive angular sensors, aiming to extend the operation life of future space mechatronic elements like Solar Arrays Drive Assemblies (SADAs) or antenna pointing mechanisms.

From attofarad capacitance to laser wavelength measurement, EMXYS expertise in instrumentation systems development span from ultralow noise electronics to high-speed signal acquisition.

EMXYS has developed turnkey spacecraft technology for a wide range of domains, such as Power subsystems, OnBoard processing, RF, ADCU, etc.

Placas solares

TTC radio for small satellites

NOMINAL POWER 2.4 W (1 solar panel)
SENSORS Magnetometer Temperature Sun
MASS < 50 g
Orbit 549,054 kg / 1,207,920 lb
It is a long established fact that a reader will be distracted by the readable content of a page when looking at its layout. The point of using Lorem Ipsum is that it has a more-or-less normal distribution of letters, as opposed to using 'Content here, content here', making it look like readable English.

OPTICS AND PHOTONICS

Characterization of a Liquid Crystal on Silicon Based Laser Beam Steerer for Applications in Free Space Optical Satellite Communications in Low Earth Orbit

A test campaign for a Silicon on Chip Space Light Modulator is implemented and realized to characterize the component for working in optical communication application within telecommunication satellites.

POE, Programmable Adaptive Optics Element
The Project developed an optical element to point an infrared laser using a liquid crystal.
EMXYS developed the crystal’s control electronics, including its firmware and PC software for pointing the laser beam.

Photonic transceiver for secure space communications

This Project develops an elegant breadboard of a transceiver for secure quantum communications from space. EMXYS developed the high-speed electronics of the transceiver laser diodes.

High Temperature and Strain Fiber Optic Sensor System

This Project developed a temperature sensor based on Fiber Bragg Gratings. EMXYS developed the conditioning electronics for the FBG sensor, including the embedded firmware and PC software.

OPTICS AND PHOTONICS

Characterization of a Liquid Crystal on Silicon Based Laser Beam Steerer for Applications in Free Space Optical Satellite Communications in Low Earth Orbit

A test campaign for a Silicon on Chip Space Light Modulator is implemented and realized to characterize the component for working in optical communication application within telecommunication satellites.

POE, Programmable Adaptive Optics Element
The Project developed an optical element to point an infrared laser using a liquid crystal.
EMXYS developed the crystal’s control electronics, including its firmware and PC software for pointing the laser beam.

Photonic transceiver for secure space communications

This Project develops an elegant breadboard of a transceiver for secure quantum communications from space. EMXYS developed the high-speed electronics of the transceiver laser diodes.

High Temperature and Strain Fiber Optic Sensor System

This Project developed a temperature sensor based on Fiber Bragg Gratings. EMXYS developed the conditioning electronics for the FBG sensor, including the embedded firmware and PC software.

CONTACLESS ANGULAR SENSORS

Low Cost Low Resolution Position Sensor

This Project aims to implement a low resolution (in the range of 8-bit to 10-bit) for measuring the position of rotating parts on board telecommunication satellites.

Electrically Coupled Angular Encoder for Long-Life Mechanisms

Developed and characterized a medium resolution (16-bit) rotary sensor for measuring the position of rotating parts on board telecommunication satellites.

Coplanar contactless rotation speed sensor

Consisting in a sensor based in coplanar structures resonating in the microwave S band, intended to measure rotation speed of a mechanism in a contactless way.

CLAS, Contactless Angular Sensor for Telecom Satellites Long Life Mechanisms

Within this Project EMXYS develops an engineering model of a contactless angular sensor  for geostationary satellites to substitute the potentiometer in use at present. This Project
opened ESA Mechanisms Days 2011 and has been presented in ESA Mechanisms Days  2015.

CONTACLESS ANGULAR SENSORS

Low Cost Low Resolution Position Sensor

This Project aims to implement a low resolution (in the range of 8-bit to 10-bit) for measuring the position of rotating parts on board telecommunication satellites.

Electrically Coupled Angular Encoder for Long-Life Mechanisms

Developed and characterized a medium resolution (16-bit) rotary sensor for measuring the position of rotating parts on board telecommunication satellites.

Coplanar contactless rotation speed sensor

Consisting in a sensor based in coplanar structures resonating in the microwave S band, intended to measure rotation speed of a mechanism in a contactless way.

CLAS, Contactless Angular Sensor for Telecom Satellites Long Life Mechanisms

Within this Project EMXYS develops an engineering model of a contactless angular sensor  for geostationary satellites to substitute the potentiometer in use at present. This Project
opened ESA Mechanisms Days 2011 and has been presented in ESA Mechanisms Days  2015.

SPACE-BORNE INSTRUMENTATION

Mars Sample and Return RF Long Range Navigation Sensor

The Project develops a localization sensor for the spacecraft that will contain samples of Mars soil and will be captured by an orbiter spacecraft for its return to Earth. EMXYS builds the radiofrequency electronics for the sensor.

Hera Mission JUVENTAS CubeSat Phase B/C/D/E1
EMXYS develops a gravimeter payload for the Juventas Cubesat to be deployed under Dimorphos asteroid proximity for close operations and landing.

Ultraviolet and Visible Atmospheric Sounder
The objective of the Project is the manufacturing of the control unit and power supply of an ultraviolet camera for Earth observation.

SPACE-BORNE INSTRUMENTATION

Mars Sample and Return RF Long Range Navigation Sensor

The Project develops a localization sensor for the spacecraft that will contain samples of Mars soil and will be captured by an orbiter spacecraft for its return to Earth. EMXYS builds the radiofrequency electronics for the sensor.

Hera Mission JUVENTAS CubeSat Phase B/C/D/E1
EMXYS develops a gravimeter payload for the Juventas Cubesat to be deployed under Dimorphos asteroid proximity for close operations and landing.

Ultraviolet and Visible Atmospheric Sounder
The objective of the Project is the manufacturing of the control unit and power supply of an ultraviolet camera for Earth observation.

SPACECRAFT TECHNOLOGY

Reduction of Electromagnetic Interference from Power Converters and Filters
This project designs, implements and fully tests a very low noise (conducted and radiated) power supply for satellite point of load applications.

The Bare Electrodynamics Tether Project
Study the use of electrodynamic tethers for space debris mitigation. EMXYS developed the
electrical system that feeds the tether and control the de-orbiting.

Study of long term parametric drifts of EEE components for inclusion in component detail specifications and worst-case analysis
The Project has studied the drift in the characteristics of electrical and mechanical devices to prepare the ECSS ECSS-Q-TM-30-12A that deals with derating factors based on this drift.

SPACECRAFT TECHNOLOGY

Reduction of Electromagnetic Interference from Power Converters and Filters
This project designs, implements and fully tests a very low noise (conducted and radiated) power supply for satellite point of load applications.

The Bare Electrodynamics Tether Project
Study the use of electrodynamic tethers for space debris mitigation. EMXYS developed the
electrical system that feeds the tether and control the de-orbiting.

Study of long term parametric drifts of EEE components for inclusion in component detail specifications and worst-case analysis
The Project has studied the drift in the characteristics of electrical and mechanical devices to prepare the ECSS ECSS-Q-TM-30-12A that deals with derating factors based on this drift.

On Wednesday, May 5, Starship serial number 15 (SN15) successfully completed SpaceX’s fifth high-altitude flight test of a Starship prototype from Starbase in Texas.

Similar to previous high-altitude flight tests of Starship, SN15 was powered through ascent by three Raptor engines, each shutting down in sequence prior to the vehicle reaching apogee – approximately 10 km in altitude. SN15 performed a propellant transition to the internal header tanks, which hold landing propellant, before reorienting itself for reentry and a controlled aerodynamic descent.

The Starship prototype descended under active aerodynamic control, accomplished by independent movement of two forward and two aft flaps on the vehicle. All four flaps were actuated by an onboard flight computer to control Starship’s attitude during flight and enabled precise landing at the intended location. SN15’s Raptor engines reignited as the vehicle performed the landing flip maneuver immediately before touching down for a nominal landing on the pad.

These test flights of Starship are all about improving our understanding and development of a fully reusable transportation system designed to carry both crew and cargo on long-duration interplanetary flights, and help humanity return to the Moon, and travel to Mars and beyond.

Congratulations to the entire SpaceX team on SN15’s successful flight and landing!

Meet Beet's
manufacturing

PASIVE ELECTRO PROPULSION

Emxys applies its Know-how in technological disciplines such as: Space and Hi-Rel electronics, RF systems, Instrumentation, Optoelectronics, etc.

The Electrical Power System has been designed to be integrated into different CubeSats systems from 1U (with body mounted panels and folding panels) up to 12U systems. It is composed by a power management module and a battery module.

+ The power module performs the management of the battery
+ Maximum Power Point Tracking (MPPT)
+ Thermal knife control for solar panel wing deployment

I am item content. Click edit button to change this text. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

+

Meet Beet's
manufacturing

Emxys applies its Know-how in technological disciplines such as: Space and Hi-Rel electronics, RF systems, Instrumentation, Optoelectronics, etc. Emxys applies its Know-how in technological disciplines such as: Space and Hi-Rel electronics, RF systems, Instrumentation, Optoelectronics, etc.

+

Video Thumbnail
Do you need a custom
product?