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CM Computer Contact Information - for enquires please contact CM at the address listed below. For product brochures, catalogs and data sheets submit your details using the form below.
European Headquarters:
Local Address
| COMPUTADORES MODULARES, S.A. (CM COMPUTER) Avda. Alcalde Luis Uruñuela, s/n Edificio Congresos, 3-14 41020 – Sevilla (SPAIN) | Tel: (34) 95 425 31 16 |
How to get to CM Computer:
- From Sevilla Airport, take the Highway SE-30 towards Cadiz.
- Exit the SE-30 at Alcalde Luis Uruñuela Avenue and go to the “Palacio de Congresos”.
- CM Computer is in front of the “Palacio de Congresos” in the “Edif. Congresos” building.
For directions, click here.
Contact Form
Information Request Form
ATR Military Chassis/Enclosures
CM COTS ATRs are available in 6 off the shelf cooling options: Standard Sealed (/S), Sealed with Extended Fins (/SEF), Flow-through Air Cooled (/FAC), Heat Exchanger Sidewalls (/HES), Six Heat Exchangers (/SIXHEX) and SIXHEX with 16 Heat Pipes (/SIXHEX-16HP).
6U/3U Boards and Modules
Our module range includes CPU, Memory Expansion, Discrete Input & Output, Serial I/O, Analog and Synchro-Resolver - available in Commercial, Industrial, Military Rugged and Full Military 883. For more information click here.
Certificates and Credentials
CM hold total quality assured compliance and regulatory certifications. Technical Inspection Association. Registered with all major US & EU contractor certification bodies, such as NATO, the Department of Defence, Dun & Bradstreet, etc. For more information click here.
Development & Research Efforts
CM Computer investigates additional cooling system for its ultimate SixHex ATR Chassis. The CM research and development department have adopted the latest technologies in both thermal conductivity and phase transition to effectively increase the transfer of heat within its ATR enclosures.
Building on the huge success of the SixHex ATR series, that incorporate six internal heat exchangers, the new ATR-SIXHEX-16HP system delivers a significant increase in total power dissipation through the implementation of 16 heat pipes. This hybrid heat transfer mechanism aims to leverage on the ever increasing defense market requirements for high performance flight and control systems.
The initial test results showed a 40% increase in MTBF due to reduced operating temperatures throughout the enclosure. Continued analysis has lead to further refinements and optimizations that have stabilized the additional heat transfer effect and insure payload long term operational performance.
CM Customers - Overview of our clients
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CM Recent Orders (top 4)
Overview of completed projects
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