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Machine Solutions
Our machines employ industry-proven production technologies – micro-positioning, active/passive precision alignment, attachment via welding, soldering and/or bonding, and automated optical inspection. ficonTEC also provides a suite of test capabilities for individual components and hybrid opto-electronic devices, both on and off-wafer. Moreover, with everything being orchestrated by our flexible PROCESS CONTROL MASTER software, the machine platforms and product lines described below become so much more than just the sum of their parts. The technologies and capabilities implemented in all machine platforms translate into a broad and established spectrum of production process expertise. We are continually refining capability, modularity and design so that these systems reliably and cost-effectively meet and exceed efficiency and yield requirements even for cutting-edge production processes. For the team here at ficonTEC, we face your challenges every day.
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Non Destructive Testing (NDT)
NDT covers a wide group of testing techniques used to evaluate the properties of a material, part, product, weld or system without causing damage. NDT carried out at KLL includes:Liquid Penetrant Testing (LPT) is used for the detection of surface breaking discontinuities on magnetic and non-magnetic metallic materials.Fluorescent and colour contrast penetrants are available to be used in the following methods:-Water washableSolvent removablePost emulsifiableMagnetic Particle Inspection (MT/MPI) is used for the detection of surface breaking and slightly sub-surface (up to 2mm) discontinuities.Bench type crack detectors and portable units are employed producing various waveforms (i.e. A.C, HWDC and induced magnetic flow) to give both circular and longitudinal magnetism.On-site testing is carried out using electro magnetic yokes and permanent magnets producing induced magnetic flow.Ultrasonic Flaw Detection (UT), also known as Ultrasonic Inspection, is used for the detection of volumetric discontinuities in ferrous and non-ferrous products (forgings and castings etc.), and welds in magnetic and non-magnetic materials.UT is capable of penetrating metals, dependent on the material characteristics, up to 10m in length.Some thickness and depth checks can also be carried out using ultrasound.Radiography services are available through sub-contract booked in advance. Notice is required for on-site work.Personnel are available at short notice for in-house or on-site work in the UK and overseas.All inspectors undertaking non destructive testing (LPT, MT/MPI and UT) are qualified to, and meet a minimum of, PCN Level 2.PCN Level 3 supervision is available in-house for LPT, MT/MPI, UT offering consultancy services including procedure writing and commentary, auditing of techniques and Level 3 Supervisor cover.We can assist clients in product qualification, material testing, quality assurance and audit programmes.
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Robotic Mobile Internet of Things (IoT) Platform
Guardian S
arcos Robotics, unveils Guardian S robotic mobile Internet of Things (IoT) platform, aimed to improve worker safety and enhance efficiency. It is a first-of-its-kind, cloud-connected mobile IoT platform that provides inspection and surveillance capabilities in challenging environments. Delivering extended run times and long-range wireless operations, while remaining man-portable and cost-effective, Guardian S integrates the Microsoft Azure cloud computing platform and the Microsoft Azure IoT Suite, and leverages Windows 10 for the tablet controller. The cloud computing platform enables customers to collect, store and analyze sensor data in environments or for applications where it is not feasible to deploy fixed sensors. Purpose-Built System to Augment Humans, Not Replace Them. Weighing 13.5 pounds, the Guardian S tele-operates and reliably traverses challenging terrain including stairs, culverts, pipes, tanks, vertical ferromagnetic surfaces and confined spaces, while facilitating two-way real-time video, voice, and data communication.
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2-port/4-port PCI Express GigE Frame Grabber Card
AX92320
The AX92320 supports PCI Express x4 lane, two or four independent Gigabit 802.3at (PoE, Power-over-Ethernet) compliant Ethernet ports and GigE Vision camera compliance. The PCI Express x4 frame grabber can provide up to 30 watts at 54 VDC power to port which allows power to be supplied to connected PoE-based devices, such as GigE Vision cameras in machine vision systems. The intelligent GigE Vision card also supports IEEE 1588 (precise time protocol), enabling synchronization with multi-camera acquisition. Combining IEEE 1588 and PoE function, the card utilizes a single Ethernet cable for power, data, and synchronization. Furthermore, it supports jumbo frames up to 9.5KB. The AX92320 is ideal for PoE applications such as automated optical inspection (AOI), factory automation, and PC-based surveillance systems.
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Capacitive Proximity Sensors
Sometimes you need to know what is hidden beneath a surface. Behind a wall, for example, inside a storage container, inside a shipping container, or behind a cover. Capacitive proximity sensors are ideal for level and feed monitoring. From solid material, such as paper or wood, to granules or liquids, they can be relied upon to detect what is happening in the production process and during final inspection. Is there something behind that cover? Is the finished package really full? How much paint is still left in the tank? For capacitive proximity sensors, these are easy questions to answer. SICKs capacitive proximity sensors are never far from the action. Sensing ranges between 1 and 25 mm allow them to be used in nearly all installation situations, making them extremely adaptable for a wide range of applications. These sensors are also remarkably resistant to interference. Impurities, contamination, dust, and airborne spray particles have little effect on them, nor does electromagnetic interference. No wonder they are installed in a wide range of industries, such as food and automotive, or in storage and conveyor systems.
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IC-3120, 1.91 GHz Intel Atom Quad-Core Processor, 2-GigE Port Industrial Controller
784959-01
The IC‑3120 is a compact and rugged industrial controller that withstands the harsh environments common in automation, supervisory control, distributed control, and industrial embedded OEM applications. The IC‑3120 offers two Gigabit Ethernet ports with Power over Ethernet (PoE) technology, FPGA-based I/O capabilities, and network connectivity for distributed control applications. The advanced features include the ability to synchronize image inspection results with industrial I/O and configure hardware-timed network triggers to trigger camera acquisition, motion control, or data acquisition. You can use the advanced FPGA personality that is shipped with the system or customize the FPGA functionality using the LabVIEW FPGA Module.
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GeoSwath Module
The GeoSwath Plus Sonar Module contains a wide-swath bathymetric sonar suitable for a range of survey and inspection tasks. The GeoSwath Plus is a 500kHz interferometric sonar, or phase detecting bathymetric sonar (PDBS) from Kongsberg GeoAcoustics. Boat-mounted GeoSwath sonars are used worldwide for high accuracy surveys including port and harbour navigation and environmental mapping: the Gavia’s GeoSwath module makes this capability available in a commercial AUV. The GeoSwath Plus offers: wide swath coverage of up to 12 times the AUV altitude when near the seabed; integrated bathymetry with simultaneous true digital side scan; high depth resolution suitable for IHO survey standards; as well as the accuracy and repeatability of a boat-mount hydrographic survey system. Like most of the survey-grade sensors on the Gavia AUV, the GeoSwath data is time-synchronised with the AUV master clock using the vehicle PPS/ZDA system. Benefits of the GeoSwath AUV module include ease of deployment, ease of use, reducing survey time, and the ability to take a 500kHz high-resolution sonar down to targets in 1000m of water. The GeoSwath Plus post-processing software (provided as standard with the system) allows a user to inspect and process the data, create and inspect digital terrain models, and create basic sonar mosaics. Several other commercial post-processing software packages are also available, please ask for details. Note that for best results the GeoSwath Module should be deployed with a direct-reading sound velocity sensor (option) in the Control Module, and one of the high-accuracy INS/DVL Navigation Modules for motion sensing.
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Metallographic Analyzer
MDS-5000D
Wuxi Tianmu Instrument Technology Co., Ltd.
1) the Integrated T -shaped Mirror Design, PROVIDING Superior Stability 2) Low-position Front Operation, Ergonomic requirements . 3) 6V / 30W Adjustable Halogen LAMP, PROVIDING Ample Bright Lighting System . 4) 3/8 splitting of Tube The trinocular , Observation and photography can be carried out simultaneous 5) Low-position mechanical moving platform to quickly locate the image 6) Professional flat-field metallographic objective lens, providing good resolution and clear image 7) Polarization Detecting partial inserts, related polarized light observation mode 8 )Five-hole rotary disc type color filter, easy to operate and switch 9) Adjustable field of view diaphragm and aperture diaphragm, providing good contrast metallographic analysis software system CCD camera will The optical image from the microscope is converted into a video signal, and the Sample image under the microscope is input into the computer through the image acquisition card / digital camera, and the digital image is processed and measured by the software, and finally the image and the measurement result are printed. Back up images and measurement data. General system:General image processing functions: image acquisition, data backup, depth of field expansion, grain boundary reconstruction, image stitching, image calculation, filtering, Image annotation, image segmentation and processing, accurate printing. Professional analysis system: 1. Rating: based on inspection Standards, more than 200 software functional modules in more than 100 categories.
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Track-Signal Test Meter
Model TRSIG-1
Aplab Track-Signal Test Meter incorporates Digital Signal Processing based design to provide high accuracy and stability. It is designed for level measurement of selected frequencies. It also provides functionality of AC and DC voltage measurements.The purpose of Track-Signal Test Meter is to make adjustments, control measurements and inspections on both audio frequency track circuits of types FTGS 46, FTGS 917 and also for TI21M type track circuits (now known as BI track 300) for the measurement of eight frequencies from 5700Hz to 8500Hz for metro applications. Its compactness and battery operation render the unit particularly suitable for portable applications in maintenance and for level measurement in communication systems.
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Smart Camera
Smart Cameras combine powerful onboard processors and imaging sensors into an all-in-one vision system. Smart Camera digital I/O includes optoisolated digital inputs, optoisolated digital outputs, a RS232 serial port, and Gigabit Ethernet ports. Smart Cameras also can include 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 Smart Cameras with the included Vision Builder for Automated Inspection (AI) software and program the camera with the LabVIEW Real-Time Module and the Vision Development Module.
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vibration test system
Labtone Test Equipment Co., LTD
Labtone EV series of electrodynamic shaker vibration test System simulate the vibration environment under the laboratory condition, and test the impact strength as well as reliability of various vibration test applications.Labtone EV series of electromagnetic vibration testing system simulate the vibration environment under the laboratory condition, and test the impact strength as well as reliability of various vibration test applications. In the laboratory, with the aid of vibration testing system, simulations of reproduction of sinusoidal, random, resonant search and dwell, classical shock and road models, etc. can be achieved. It is essential for product quality assurance, new product research and development.Labtone EV series of electromagnetic vibration testing system is specially designed to meet the need for long time operation. Vertical and horizontal vibrations can be achieved by the installation of vibration resistant base. The standard platform is equipped with high efficiency airbag shock isolation device, so that the vibration transmitted to the building can be minimized. There is no need for additional foundation in most of the cases.A complete set of vibration testing system is composed of shaker, power amplifier and vibration measuring control system, in accordance with the relevant national and international standards (such as: MIL-STD, DIN, ISO, ASTM, IEC, ISTA, GB, GJB, JIS, BS, etc.) to provide technical support for establishing product quality inspection.
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Scientific Cameras
Thorlabs' Scientific-Grade Cameras are specifically designed for microscopy and other demanding applications. The Zelux™ CMOS cameras have small footprints and provide cost-effective solutions for general-purpose imaging applications. Kiralux® cameras have CMOS sensors with high quantum efficiency in a compact housing and are offered in monochrome, color, NIR-enhanced, and polarization-sensitive versions. Our polarization-sensitive CMOS camera is ideal for materials inspection, flaw detection, and other advanced techniques using polarization. The Quantalux® monochrome sCMOS cameras are fast frame rate imagers that combine high dynamic range with extremely low read noise for low-light applications. They are available in either a passively cooled compact housing or a hermetically sealed TE-cooled housing. We also offer scientific CCD cameras with a variety of features, including versions optimized for operation at UV, visible, or NIR wavelengths; fast-frame-rate cameras; TE-cooled or non-cooled housings; and versions with the sensor face plate removed. An intuitive software package, API and SDK for developers, and third-party software support provide options for custom system control and image acquisition.
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Professional Thermal Camera
FLIR T560
Troubleshoot hot spots, find hidden faults, and confirm repairs quickly with the ergonomic, high-resolution FLIR T560. This 640 × 480 (307,200 pixel) thermal imaging camera has a bright 4" LCD and a 180° rotating lens platform, so you can easily and comfortably diagnose electrical or mechanical issues, even in hard-to-reach areas. Advanced on-camera measurement tools such as 1-Touch Level/Span, plus laser-assisted autofocus, ensure you’ll record accurate temperature measurements every time. With on-board FLIR Inspection Route mode, you can download and run survey plans to your camera from FLIR Thermal Studio Pro (with FLIR Route Creator plugin). Together these systems will help you record temperature data and imagery in a logical sequence for faster troubleshooting and repair. The T560 also features FLIR Ignite for automatic uploading of images directly from the camera to the cloud for easy, secure storage and sharing. The purchase of a T560 camera includes a 3-month subscription to FLIR Thermal Studio Pro and FLIR Route Creator.
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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785151-01
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.
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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785150-01
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.
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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785149-01
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.
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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785148-01
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.
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ISC-1783, 5 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785155-01
The ISC‑1783 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.
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ISC-1783, 5 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785154-01
The ISC‑1783 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.
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ISC-1783, 5 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785152-01
The ISC‑1783 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.
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ISC-1783, 5 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785153-01
The ISC‑1783 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.
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ISC-1780, VGA, 1.58 GHz Processor, Monochrome/Color Smart Camera
785140-01
The ISC‑1780 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.
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ISC-1780, VGA, 1.58 GHz Processor, Monochrome/Color Smart Camera
785143-01
The ISC‑1780 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.
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ISC-1780, VGA, 1.58 GHz Processor, Monochrome/Color Smart Camera
785142-01
The ISC‑1780 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.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785146-01
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.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785144-01
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.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785145-01
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.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785147-01
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.
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IC-3121, 1.91 GHz Intel Atom Quad-Core Processor, 2-USB3 Port Industrial Controller
784961-01
1.91 GHz Intel Atom Quad-Core Processor, 2-USB3 Port Industrial Controller - The IC‑3121 is a compact and rugged industrial controller that withstands the harsh environments common in automation, supervisory control, distributed control, and industrial embedded OEM applications. The IC‑3121 offers two USB3 ports with dedicated bandwidth, FPGA-based I/O capabilities, and network connectivity for distributed control applications. The advanced features include the ability to synchronize image inspection results with industrial I/O and configure hardware-timed network triggers to trigger camera acquisition, motion control, or data acquisition. You can use the advanced FPGA personality that is shipped with the system or customize the FPGA functionality using the LabVIEW FPGA Module.
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Professional Thermal Camera
FLIR T540
Diagnose potential faults in industrial, electrical, and mechanical systems, or discover temperature anomalies in R&D testing with the 464 × 348 resolution FLIR T540. This portable, ergonomic thermal camera offers advanced features like 1-Touch Level/Span and continuous laser-assisted autofocus, making it the perfect non-contact diagnostic tool for condition monitoring and research applications. Streamline electrical/mechanical surveys, troubleshooting, and repairs with Inspection Route mode, which runs pre-planned routes created in FLIR Thermal Studio Pro (Route Creator plugin required) so users can record temperature data and imagery in a logical sequence. The built-in Macro Mode allows R&D users to quickly switch from wide angle to close-up analysis without changing the lens. When coupled with Research Studio software, the T540 helps engineers assess unexpected hot spots and find potential design flaws. The T540 also features FLIR Ignite for automatic uploading of images directly from the camera to the cloud for easy, secure storage and sharing. The purchase of a T540 camera includes a 3-month subscription to FLIR Thermal Studio Pro and FLIR Route Creator.