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About Us>   Markets & Applications>   Transportation Systems

Energy Management

Diamond Systems is an experienced partner for energy customers worldwide. Our single board computers and PC/104 I/O modules are used in wide variety of energy and power applications worldwide, including electric power generation, oil and gas exploration, remote utilities monitoring and control, and others.

Our products offer the features and ruggediziation to excel in these harsh mobile and/or remote environments. Wide temperature operation and high resistance to shock and vibration ensure our products perform reliably from the desert to the Arctic.

Benefits for Energy Customers

  • Designed in reliability and state-of-the-art technology
  • Long-term availability through extended lifecycle management
  • Reduced time to market with off the shelf systems and products
  • Reduced R&D costs through value added hardware and software services
  • Perfect fit solutions designed to your specifications

Diamond is ISO 9000 certified and all of our products are managed with configuration control and change notification for our customers. We provide products with Class III manufacturing quality and long life, for example our COM-based SBCs ensure longevity through the use of interchangeable COMs.

Click on the articles below to find out how our products are being used in real-world applications.

Building Automation

A twin tower high rise office complex under construction in Kuwait will be one of the tallest sets of buildings in the region. An ultra-modern office and apartment complex featuring state-of-the-art technology and amenities, critical to the smooth functioning of the high rise buildings and the comfort of its tenants is the efficient automation of all of the buildings’ operations and services.
Read more about this application here.

Hybrid Energy Plant uses Diamond's Reconfigurable Digital I/O and Counter Module for Motion Control

In southeastern France, a government sponsored research project converted a 1980s experimental solar plant into a modern hybrid solar/gas furnace. The existing solar plant consisted of an array of two hundred mirrors used to gather the sun’s rays. To manage the movement and monitoring of the mirror array, one independent motion control computer system was specified for the control of each mirror. Each motion control system was responsible for rotating the mirror along two axes to maximize solar collection.
Read more about this application here.