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Aerospace brings ideas to reality for research and development purposes, from design to fabrication of custom mechanical and electronic parts/system, and from design to implementation of custom data acquisition system.
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Aerospace characterizes components used in beam-steering technologies such as Fast Steering Mirrors, quad cell and Infra-Red camera. Aerospace also tests precision pointing and tracking systems, including centroiding algorithms; comparison of pointing, acquisition, and tracking sequences; and alignment techniques.
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Aerospace characterizes components used in beam-steering technologies such as Fast Steering Mirrors, quad cell and Infra-Red camera. Aerospace also tests precision pointing and tracking systems, including centroiding algorithms; comparison of pointing, acquisition, and tracking sequences; and alignment techniques.
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Aerospace characterizes control sensors and actuators, e.g. electric motors, rotational sensors, steering mirrors, strain wave gears, gimbals, and bearings.
Evaluations include: nominal and off-nominal performance, exported force/moment, etc.
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Aerospace characterizes control sensors and actuators, e.g. electric motors, rotational sensors, steering mirrors, strain wave gears, gimbals, and bearings.
Evaluations include: nominal and off-nominal performance, exported force/moment, etc.
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Aerospace conducts performance testing of inertial sensors such as gyroscopes and accelerometers. Core capabilities include a stable pier, a two-axis rate table with an integrated thermal vacuum chamber for test-like-you-fly capability, and a single-axis positioning table for rotational measurements.
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Aerospace conducts performance testing of inertial sensors such as gyroscopes and accelerometers. Core capabilities include a stable pier, a two-axis rate table with an integrated thermal vacuum chamber for test-like-you-fly capability, and a single-axis positioning table for rotational measurements.
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Aerospace conducts research on thermal conductance of materials and components for space applications, e.g. thermal conductance testing for ball bearings, both statically and dynamically.
(Bearing Conductance Test shown below)
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Aerospace conducts research on thermal conductance of materials and components for space applications, e.g. thermal conductance testing for ball bearings, both statically and dynamically.
(Bearing Conductance Test shown below)
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Aerospace conducts research on thermal conductance of materials and components for space applications, e.g. thermal conductance testing for ball bearings, both statically and dynamically.
(Static Systems Thermal conductance shown below)
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Aerospace conducts thermal vacuum and thermal cycling testing, as well as shock and vibration testing of components.
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Aerospace conducts thermal vacuum and thermal cycling testing, as well as shock and vibration testing of components.
Thermal Vacuum Testing (chamber on left)
Shock and Vibration Test (shaker on right)
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Aerospace conducts validation testing of novel design concepts, e.g. gyro-MHD sensor fusion, as well as rapid characterization of line-of-sight pointing performance
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Aerospace conducts validation testing of novel design concepts, e.g. gyro-MHD sensor fusion, as well as rapid characterization of line-of-sight pointing performance
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Aerospace provides an experimental testbed to measure the induced vibration of components like cryocoolers and reaction wheels. It has an isolated platform to reduce environmental jitter effects on the experiment. Capabilities include measurement of the induced vibration and the resultant induced vibration effects on the connected system(s).
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Aerospace provides an experimental testbed to measure the induced vibration of components like cryocoolers and reaction wheels. It has an isolated platform to reduce environmental jitter effects on the experiment. Capabilities include measurement of the induced vibration and the resultant induced vibration effects on the connected system(s).
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The Automated GPS Receiver Testing Station provides end-to-end laboratory environment, includes access to live-sky and simulated RF signals, hardware test fixtures, software test software suite and data analysis tool to interface and establish communication, perform functional testing and conduct anomaly investigations of GPS receivers.
Aerospace provides rapid development and prototyping of advanced navigation algorithms and sensor integration in real-time with live or simulated GPS signals and IMU measurements.
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The MRL is The Aerospace Corporation’s go-to laboratory for testing and evaluating control system hardware, including:
• Sensors, e.g. gyroscopes, accelerometers, star trackers, GPS receivers, encoders, resolvers, etc.
• Actuators, e.g. electric motors, gimbals and steering mirrors, reaction wheels
• Sensor and actuator application, e.g. pointing, acquisition, and tracking, thrust vector control
The MRL, managed by the Electromechanical Control Department, has expertise in analysis, simulation, evaluation, or testing of control systems and their components, as well as controller design and implementation, data reduction and visualization, sensor and actuator performance evaluation, and electro-optical systems calibration and alignment.
Expertise includes:
• Rapid prototyping
• Data acquisition
• System design evaluation
• Analytical model validation
• Anomaly resolution
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Mechatronics Research Laboratory



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Mauris aliquet neque quis libero consequat vestibulum. Donec lacinia consequat dolor viverra sagittis. Praesent consequat porttitor risus, eu condimentum nunc. Proin et velit ac sapien luctus efficitur egestas ac augue. Nunc dictum, augue eget eleifend interdum, quam libero imperdiet lectus, vel scelerisque turpis lectus vel ligula. Duis a porta sem. Maecenas sollicitudin nunc id risus fringilla, a pharetra orci iaculis. Aliquam turpis ligula, tincidunt sit amet consequat ac, imperdiet non dolor.
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LOREM IPSUM
DOLOR SIT AME
CONSECTETUR ADIPISCING ELIT. MORBI BIBENDUM PHARETRA LOREM, ACCUMSAN SAN NULLA.


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DONEC FEUGIAT:
• Nisl nec mi sollicitudin facilisis
• Nam sed faucibus est.
• Ut eget lorem sed leo.
• Sollicitudin tempor sit amet non urna.
• Aliquam feugiat mauris sit amet.


LOREM IPSUM:
$150,000
HTMLText_0B4B0DC1_11C0_6277_41A4_201A5BB3F7AE_mobile.html =
JOHN DOE
Licensed Real Estate Salesperson


Tlf.: +11 111 111 111
jhondoe@realestate.com
www.loremipsum.com



HTMLText_7DB2E382_7065_343F_41C2_951F708170F1.html =
The Aerospace Corporation
www.aero.org
John Binkley
SYSTEMS DIRECTOR
HTMLText_7DB2E382_7065_343F_41C2_951F708170F1_mobile.html =
www.loremipsum.com
info@loremipsum.com
Tlf.: +11 111 111 111
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