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Showing results: 346 - 358 of 358 items found.

  • ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera

    785150-01 - NI

    The ISC‑1782 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all-in-one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.

  • ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera

    785151-01 - NI

    The ISC‑1782 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all-in-one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.

  • ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera

    785144-01 - NI

    The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.

  • ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera

    785145-01 - NI

    The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.

  • ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera

    785147-01 - NI

    The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.

  • Multifunction I/O

    PXI-2005 - ADLINK Technology Inc.

    ADLINIK PXI-2010, PXI-2005 and PXI-2006 are simultaneous-sampling multifunction PXI modules to meet a wide range of application requirements. These products can simultaneously sample 4 AI channels with differential input configurations to achieve maximum noise elimination. They also provide 2-CH 12-bit analog outputs with waveform generation capabilities, which can be performed together with analog input functions. If more analog input or output channels are required, multiple modules can be synchronized through the PXI trigger bus. This makes the PXI-2000 series ideal for stimulus/response tests. The PXI-2000 series also feature analog and digital triggering, 24-CH programmable digital I/O lines, and 2- CH 16-bit general-purpose timer/counters. The auto-calibration feature adjusts the gain and offset to a specified accuracy, eliminating the need to calibrate the modules by adjusting trimpots.

  • Multifunction I/O

    PXI-2010 - ADLINK Technology Inc.

    ADLINIK PXI-2010, PXI-2005 and PXI-2006 are simultaneous-sampling multifunction PXI modules to meet a wide range of application requirements. These products can simultaneously sample 4 AI channels with differential input configurations to achieve maximum noise elimination. They also provide 2-CH 12-bit analog outputs with waveform generation capabilities, which can be performed together with analog input functions. If more analog input or output channels are required, multiple modules can be synchronized through the PXI trigger bus. This makes the PXI-2000 series ideal for stimulus/response tests. The PXI-2000 series also feature analog and digital triggering, 24-CH programmable digital I/O lines, and 2- CH 16-bit general-purpose timer/counters. The auto-calibration feature adjusts the gain and offset to a specified accuracy, eliminating the need to calibrate the modules by adjusting trimpots.

  • Multifunction I/O

    PXI-2006 - ADLINK Technology Inc.

    ADLINIK PXI-2010, PXI-2005 and PXI-2006 are simultaneous-sampling multifunction PXI modules to meet a wide range of application requirements. These products can simultaneously sample 4 AI channels with differential input configurations to achieve maximum noise elimination. They also provide 2-CH 12-bit analog outputs with waveform generation capabilities, which can be performed together with analog input functions. If more analog input or output channels are required, multiple modules can be synchronized through the PXI trigger bus. This makes the PXI-2000 series ideal for stimulus/response tests. The PXI-2000 series also feature analog and digital triggering, 24-CH programmable digital I/O lines, and 2- CH 16-bit general-purpose timer/counters. The auto-calibration feature adjusts the gain and offset to a specified accuracy, eliminating the need to calibrate the modules by adjusting trimpots.

  • 4-CH, 14/16-Bit, Up to 2MS/s Simultaneous-Sampling Multi-Function PXI Modules

    PXI-2000 Series - ADLINK Technology Inc.

    ADLINIK PXI-2010, PXI-2005 and PXI-2006 are simultaneous-sampling multifunction PXI modules to meet a wide range of application requirements. These products can simultaneously sample 4 AI channels with differential input configurations to achieve maximum noise elimination. They also provide 2-CH 12-bit analog outputs with waveform generation capabilities, which can be performed together with analog input functions. If more analog input or output channels are required, multiple modules can be synchronized through the PXI trigger bus. This makes the PXI-2000 series ideal for stimulus/response tests. The PXI-2000 series also feature analog and digital triggering, 24-CH programmable digital I/O lines, and 2- CH 16-bit general-purpose timer/counters. The auto-calibration feature adjusts the gain and offset to a specified accuracy, eliminating the need to calibrate the modules by adjusting trimpots.

  • Conformance Calibration Standard Test Card for ISO/IEC Data Matrix and GS1 DataMatrix Symbol Verifiers

    AI-CCS-DM-G Rev A - Applied Image, Inc.

    This precision 2D barcode Conformance Calibration Standard Test Card is the first 2D test card to provide ALL 12 of the Primary Reference Symbols specified by ISO 15426-2 for barcode verifiers. They are sized from 0.5mm to 0.2mm so that all the symbol sizes specified in Annex A.3.1 can be tested. Symbols 1-4 are GS1 DataMatrix symbols, while symbols 5-12 are ISO/IEC Data Matrix symbols consistent with the ISO/IEC 16022 standard. The card also includes four calibrated reflectance patches.

  • Conformance Calibration Standard Test Card for GS1-128 Symbol Verifiers

    AI-CCS-128-E Rev B - Applied Image, Inc.

    This test card is ideal for testing of verifiers, scanners, and other GS1-128 barcode reading equipment. It also can serve as an excellent training aid to ensure new operators are using the proper methodology and are proven competent in the use of verifiers.

  • Conformance Calibration Standard Test Card for UPC/EAN Symbol Verifiers

    AI-CCS-UPC/EAN-E Rev S - Applied Image, Inc.

    For those who prefer a traditional vertical format calibration test card, APPLIED IMAGE offers our new Conformance Calibration Standard Enhanced for UPC/EAN Bar Code Symbol Verifiers. The new standard complies with both the ANSI X3.182 and ISO 15416 standards and is ideal for testing of verifiers, scanners, and other UPC bar reading equipment as well as a tool for training new operators to assure proper “methodology' in the use of verifiers.

  • Testing Large Radar Sensors with CATR Technology

    CATR Radar Test System UTP 5069 - NOFFZ Computer Technik GmbH

    Modern driver assistance systems must recognize increasingly complex traffic scenarios and convert them into appropriate vehicle reactions with the help of artificial intelligence (AI) and specific algorithms. Imaging radar sensors with a higher spatial resolution, so-called imaging radar sensors, are therefore required. These can better distinguish larger from smaller objects and, due to the larger antenna apertures, also require larger dimensions of the test environment or larger far-field distances. Testing these sensors in the direct far field ( UTP 5065 ) would therefore require very large absorber chambers up to ten meters in size and more.Our efficient test system UTP 5069 offers exactly the right solution:By using CATR technology (Compact Antenna Test Range), 4D, imaging and other radar sensors with large far-field distances are calibrated with high precision in a small footprint. With the extremely low-reflection NOFFZ absorber chamber, the system is very well suited not only for validation, but also for EOL tests.

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