Products

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Facilitate computer integration with a PCIe® x1 interface  Benefit from real-time synchronization with 16 discrete digital I/Os  Get straightforward access to I/Os via standard D-Sub connector  Support factory-floor and lab use with 24 V and TTL-compatible signaling  Protect against unintended use with optical isolation and resettable fuses  Track moving production lines with support for two rotary incremental encoders  Use status indicator LED for each I/O to assist with integration troubleshooting  Leverage Gigabit Ethernet port for industrial communication or video capture using GigE Vision 
Boost performance by up to 3x over its precursor thanks to an Intel x6000 series embedded processor  Capture high-resolution images at high speed through a choice of CMOS sensors from two to 16 Megapixels  Deploy in dirty, humid, or harsh industrial environments by way of a compact IP67-rated design  Communicate actions and results to other automation and enterprise equipment via real-time digital I/Os, and Ethernet (TCP/IP, CC-Link IE Field Basic, EtherNet/IP™2, Modbus® , PROFINET® , and native robot interfaces)  Handle Human-Machine Interface (HMI) function by way of VGA and USB connectivity  Simplify vision setup and upkeep via integrated lens focusing and illumination intensity control 
Support the most high-performance Camera Link cameras with available support for Full and 80-bit mode at up to 85 MHz  Perform deterministic image acquisition by way of the jitter-free Camera Link 2.1 interface  Maximize system compatibility with the choice of PCIe® 2.1 x1, x4 or x8 connectivity  Eliminate missed frames with ample onboard buffering and PCIe bandwidth  Optimize multi-camera applications via support for up to four Base or two Full/80-bit Camera Link cameras per board  Minimize space requirements and maximize PC compatibility through a half-length design with mini Camera Link connectivity for true single-slot operation 
Support the most high-performance Camera Link cameras with available support for Full and 80-bit mode at up to 85 MHz  Perform deterministic image acquisition by way of the jitter-free Camera Link 2.1 interface  Offload host computer of custom image processing using a field-programmable gate array (FPGA) device  Eliminate missed frames through a PCIe® 2.0 x8 host interface and ample onboard buffering  Optimize multi-camera applications via support for up to four Base or two Full/80-bit Camera Link cameras per board  Minimize space requirements and maximize PC compatibility through a half-length design with mini Camera Link connectivity for true single-slot operation
Support for the highest speeds available in CoaXPress 2.0  Connect to and capture from up to four cameras or combine connections for even higher data rates  Simplify cabling with PoCXP support between cameras and vision computer  Offload host computer of custom image processing using a field-programmable gate array (FPGA) device  Distribute image processing workload across multiple computers through data forwarding capability  Synchronize with sensors, encoders, and controllers with ample auxiliary I/Os for each CoaXPress connection  Use license fingerprint for Aurora Imaging Library and avoid the need for a separate hardware key 
Scale system performance from one to four computing clusters for demanding image acquisition and processing needs Support any camera interface type with the addition of appropriate Zebra frame grabber board(s) Exchange data between compute clusters internally at high speed through a PCIe Gen3 switched fabric backplane Maximize density in a 4U chassis with up to 10 full-length and one half-length, full-height PCIe Gen3 slots Tailor host data transfer bandwidth needs through PCIe x16, x8, and x4 interfaces