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Screen Shot 2020-01-23 at 11.35.39 copy.
  • 1000W Full-Bricks
  • 500W Half-Bricks
  • Bricks with 4:1 input range of 9-36VDC
  • DC/DC Single to triple outputs
  • Mil Std. products, Filters and Modules
  • AC/DC up to 480W
  • DC-DC power converters ranging from 4 Watts to several kilowatts.
  • 3500 Watt Bi-Directional automotive converter for 12V & 48V battery systems with efficiency up to 97%
  • Chassis mount DC-DC converters ranging from 1100 to 2100 Watts with efficiency up to 97% in a low profile, ruggedized, compact package.
  • DC-DC bricks ranging from 75 to 1000 Watts with the highest power density in the industry and efficiency up to 96% with 4:1 and 2:1 input voltage ranges.
  • Custom DC-DC Solutions

Contact us for more information

Calex Manufacturing develops DC/DC power converters for industrial, transportation, e-mobility and rugged electronic systems. Its standard portfolio spans low-power converters through multi-kilowatt power conversion, with high-density brick modules, chassis-mount products and bidirectional DC/DC solutions. Calex emphasizes efficiency, power density, wide input-voltage capability and reliable operation in demanding power architectures. Current products include high-density DC/DC bricks from tens of watts to approximately 1 kW, rugged chassis-mount converters above 1 kW, and bidirectional converters for 12 V, 24 V and 48 V battery systems. Selected designs reach efficiency levels around 97%, reducing thermal load in high-power systems. Applications include battery-powered platforms, e-mobility, industrial equipment, autonomous systems, delivery drones, ruggedized servers and military electronics. Calex also provides custom power-conversion engineering, ranging from modified standard products to complete application-specific power systems, allowing designers to address unusual input ranges, output requirements, packaging and environmental constraints. Power-system selection should be based on the complete operating envelope rather than nominal wattage alone. Engineers need to compare input range, output regulation, isolation, efficiency, thermal derating, transient behavior, EMC requirements, mechanical format and applicable safety or transportation standards. The manufacturer’s portfolio supports this system-level approach by offering multiple power levels and package styles for distributed power architectures, auxiliary rails and embedded conversion. These parameters are especially important in equipment expected to operate over wide temperature or input-voltage ranges. The official manufacturer website provides product-level technical information that can be used to compare available families and identify the most suitable technology for the intended electronic design. For Israeli engineering teams, Boran Technologies can support product identification and local commercial coordination for this manufacturer.

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