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  • High Flexibility VNA Cables

    Fairview Microwave Inc.

    Our lines of high frequency VNA test cables display excellent electrical properties such as wonderful phase stability of +/- 6° at 50 GHz and +/- 8° at 67 GHz as well as VSWR of 1.3:1 at 50 GHz and 1.4:1 at 67 GHz. The 50 GHz assemblies are terminated with 2.4mm connectors while the 67 GHz versions utilize 1.85mm connectors. The braided stainless steel armoring surrounding the coax provides a rugged, but flexible cable with a flex life exceeding 100,000 cycles, making these test cables ideal for use in semiconductor probe testing, precise bench top testing as well as lab/production testing where the need for a highly flexible, yet durable cable solution is required. The VNA test cables are also equipped with rugged stainless steel connectors that provide up to 5,000 mating cycles when attached with proper care. Additionally, the flexibility of these cables makes it easier and safer to test a Device Under Test (DUT). A swept right angle 2.4mm and 1.855mm connector option allows these cables to fit in tight spaces and can reduce the length of cable required in many applications.

  • Software Tool Especially Designed for Production Process Supervision

    LEON OP - Konrad Technologies GmbH

    The Leon OP is a software tool especially designed for production process supervision. Therefore, the application provides the following key features:- Execution of KT ICT sequences or NI TestStand sequences- Parallel, semi-parallel or sequential execution of test sequences, individually definable per Test Sequence- Customizable User Interface, simple or detailed test views, grid or board layout arrangement possibilities- Tracing into sequence execution- User management with different user levels and restrictions per user group- Displaying execution results and statistics by panel or nest- Supporting interaction with an automation (e.g.: handler system)- Supporting interaction with a process control / MES system- Integrated Callback structure to adopt to different workflows- Maintenance view for fast displaying of fails inside a board- Result History View to quickly access the last test results- Store execution results in result files with user defined format- Autostart-option for running application in automation mode without any operator interaction at all- Several abortion criteria to abort execution by fail count (consecutive or time based)- A Maintenance View for viewing testprobe locations on the DUT is available via Aster Quadview

  • FPGA Image Processing (IP) Development Kit

    ProcVision - Gidel

    Gidel’s Vision Pro Development Kit is an optimal solution for developing,validating, demonstrating and evaluating Image Processing (IP) andpipeline designs on FPGA.The suite is designed to provide a complete and convenient envelop enablingthe developer to focus strictly on the proprietary image processingdesign. The entire Vision Pro flow is within a single FPGA, independentof the final target application(s). The Vision Pro flow is composedof a pipeline that streams simulated data to the user image processingdesign under test (DUT) and then captures the design’s output streamfor displaying, storing, analysis and/or co-processing on host software.The entire process is performed on a single FPGA without the need foradditional peripheral connectivity or tools.Vision Pro suite is plug-and-play enabling the developer to begin at oncethe IP design development and validation. A simple design example providesthe developer immediate hands-on familiarization with the systemflow and supporting tools. The final design can be ported to any IntelFPGA device or other vendors’ devices (FPGA or ASIC) by replacing basiclibraries. To significantly reduce compilation time, initial design developmentmay be on a small FPGA device and later compiled for the targetdevice(s). The target implementation may use any FPGA board. For a fullImaging/Vision system solution, Gidel offers a number of off-the-shelfgrabbers and FPGA accelerators that are designed to utilize these imageprocessing blocks and Gidel Imaging Library (GIL).

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