Single Board Computers
North Atlantic Industries (NAI)
NAI offers a comprehensive line of adaptable, 3U cPCI, 3U VPX and 6U VME, rugged Single Board Computers (SBCs) specifically designed for harsh, SWaP-constrained environments in a range of demanding, embedded computing applications for the defense, commercial aerospace and industrial applications. These Commercial Off-the-Shelf (COTS) and modified COTS SBCs are based on the latest Intel®, NXP (PowerPC™), and ARM® Cortex®- A9 processors, each delivering unique advantages in deployed applications.
Single Board Computer
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Product
3U cPCI Single Board Computers
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NAI's modular COTS 3U cPCI SBCs can be configured with up to three NAI intelligent I/O and communications function modules. Now you can choose from more than 40 intelligent I/O, communications, and Ethernet switch functions for the highest packaging density and greatest flexibility of any SBC board in the industry. NAI will integrate your choice of SBC and I/O functions to quickly meet your rugged system requirements. These SBCs are specifically designed for rugged defense, industrial, and commercial applications.
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Unlisted Product
3U OpenVPX Single Board Computers
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VPX is a proposed ANSI standard – a departure from the traditional connector scheme of VMEbus. While VME is based on a bus with signals daisy-chained at each slot, VPX is based on switched fabrics, allowing data rates to go much higher and are inherently much more reliable. VPX specifications chart a new course for the next revolution in bus boards. OpenVPX is the name of a group of companies that joined together in 2009 to address the VITA 46/VPX system specification. The group is made up of embedded military Commercial Off-the-Shelf (COTS) vendors and system integrators.
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Product
6U VME Single Board Computers
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NAI's modular 6U VME single board computers can be configured with up to six NAI intelligent I/O and communication function modules. Choose from more than 40 intelligent I/O, communication, and Ethernet switch functions for the highest packaging density and greatest flexibility of any SBC board in the industry. NAI will integrate your choice of SBC and I/O functions to quickly meet your rugged system requirements. These SBCs are specifically designed for rugged defense, industrial, and commercial applications.
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Product
3U OpenVPX ARM Cortex-A9
68ARM1
Single Board Computer
NAI’s 68ARM1 is a 3U VPX ARM® Cortex®-A9-based, Single Board Computer (SBC) that can be configured with up to three smart function modules. Ideally suited for rugged defense, commercial aerospace, and industrial applications, the 68ARM1 delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems.
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Product
3U OpenVPX Power PC SBC
68PPC2
Single Board Computer
NAI’s 68PPC2 is a 3U OpenVPX, NXP® , QorIQ® T2080 quad-core processor, PowerPC-based, Single Board Computer (SBC) that can be configured with up to two intelligent function modules. Ideally suited for rugged defense, commercial aerospace, and industrial applications, the 68PPC2 delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems.
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Product
3U OpenVPX™ Rugged, Cybersecure & Anti-Tamper Single Board Computer
68ARM2
Single Board Computer
The 68ARM2 is a 3U OpenVPX Zynq® UltraScale+™ Quad-core ARM® Cortex™-A53 MPCore™ based Single Board Computer that can be configured with up to three NAI Smart I/O and communications function modules. Ideally suited for rugged Mil-Aero applications, the 68ARM2 delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.
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Product
3U OpenVPX™ Intel® Xeon® SBC with One Smart Function Module Slot
68INT4
Single Board Computer
The 68INT4 is a 3U OpenVPX Intel® Xeon® Processor E3-1505L v6 based embedded Single Board Computer with integrated output graphics/video & I/O expansion. Balancing high-performance with relatively low-power dissipation, the processor supports up to four processing cores operating at up to 2.2 GHz. One I/O expansion module slot is provided that can be fitted/configured with any one of the 70+ NAI smart I/O and communications function modules. Ideally suited for rugged Mil-Aero applications, the 68INT4 delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.
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Product
3U OpenVPX™ Intel® Xeon® SBC with One Smart Function Module Slot
68INT5
OpenVPX
The 68INT5 is a 3U OpenVPX Intel® Xeon® Processor E-2276ME based embedded Single Board Computer with integrated output graphics/video & I/O expansion. Balancing high-performance with relatively low-power dissipation, the processor supports up to six processing cores operating at up to 2.8 GHz. One I/O expansion module slot is provided that can be fitted/configured with any one of the 70+ NAI smart I/O and communications function modules. Ideally suited for rugged Mil-Aero applications, the 68INT5 delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.
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Product
3U OpenVPX™ SOSA™-Aligned SBC with Intel® Core™ i7-1186GRE Processor (Tiger Lake)
68INT6
OpenVPX
The 68INT6 is a SOSA™-aligned 3U OpenVPX Intel® Core™ i7-1186GRE Processor / integrated PCH-LP (Tiger Lake) w/ 4 Cores & 12M Smart Cache running up to 2.8 GHz Single Board Computer that can be configured with up to two Smart I/O and communications function modules (w/ NAI-XMC configuration option). Ideally suited for rugged Mil-Aero applications, the 68INT6 delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.
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Product
3U OpenVPX™ SOSA™-Aligned Single Board Computer Intel® Xeon® W Processor (Tiger Lake)
68INT6H
OpenVPX
The 68INT6H is a SOSA™-aligned 3U OpenVPX Intel® Xeon® W Processor (Tiger Lake) w/ 8 Cores & 24 M Smart Cache running up to 2.6 GHz Single Board Computer that can be configured with up to two smart I/O and communications function modules (w/ NAI-XMC configuration option). Ideally suited for rugged Mil-Aero applications, the 68INT6H delivers off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.









