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Showing results: 5056 - 5070 of 6941 items found.

  • Thermal Imaging Camera

    IRT301 - Wuhan JOHO Technology Co., Ltd

    IRT301 Thermal Imaging CameraIRT301, a fixed-site thermal security camera lets you aware of intruders and other threats to your facility clearly in total darkness, smoke, mist and other harsh situation. It is compatible with a wide variety of third-party accessories, permit them easy to integrate. It enable to control and operation over digital and analog networks. With 384x288 pixel detector, it delivers high quality thermal image in any harsh environmental conditions, IRT301 is ideal for both indoor and outdoor surveillance, applications covered from industrial monitoring to city or boundary security monitoring. ApplicationBorder security and surveillanceRoad, channel, warehouse monitoringBuilding and industrial safety monitoringKey FeaturesRugged, waterproof and dustproof designHigh resolution, high frame rateAdvanced image processing technologyStandard interfaceVarious lenses and pan-tilt optionsTechnical specificationDetectorDetector MaterialUFPA microbolometer, AsiResolution384x288, 25mSpectral range8m~14mNETD80mK@30LensFocus

  • Trace-Level Photometric Ozone Calibrator

    Model T703U - Teledyne Advanced Pollution Instrumentation

    The Model T703U is a microprocessor controlled ozone calibrator for precision gas analyzers. Expanded ozone audit levels have created a need for precise ozone calibration well below the capabilities of standard calibrators. The Model T703U is designed to meet the requirements of ultra-low ozone production.In addition to a high range with similar performance to the Model T703, the Model T703U has the capability to generate ozone in a low range, or "fractional" mode, for producing ozone levels down to 3 ppb, with exceptional accuracy. Flow rate and lamp intensity are adjusted to deliver a specified ozone concentration by volume. The temperature and pressure compensated photometer, identical to that of the Model T400 ozone analyzer, provides feedback control of the UV lamp intensity, assuring stable ozone output. A nearly unlimited number of calibration sequences may be programmed into the non-volatile memory of the T703U, covering time periods up to a year.

  • Turnkey Solution for Unattended Noise Monitoring

    NoiseScout - NTi Audio AG

    NoiseScout provides a comprehensive but easy-to-use 24/7 noise monitoring solution. Noise levels are recorded on-site by the XL2 Sound Level Meter and are available online for monitoring and download. NoiseScout is aimed at both short term noise assessments and long term monitoring applications. During acquisition, automated email alerts allow noise issues to be addressed before a non-compliance condition arises. NoiseScout displays the noise levels measured by the XL2 Sound Level Meter live in your web browser. The measurement data recorded out in the field is presented online in charts and dashboards. Multiple noise level meters can be monitored simultaneously within the map view, thus providing localized geographic visualization for all noise levels at a glance. Identified users can access all their projects, control their monitors or create basic view modes, allowing stakeholders to oversee their noise level data.

  • USB Oscilloscope, Logic Analyzer and Variable Power Supply

    Analog Discovery 2 - Digilent Inc.

    Digilent Analog Discovery 2, developed in conjunction with Analog Devices and supported by Xilinx University Program, is a multi-function instrument that allows users to measure, visualize, generate, record, and control mixed signal circuits of all kinds. The low-cost Analog Discovery 2 is small enough to fit in your pocket, but powerful enough to replace a stack of lab equipment, providing engineering students, hobbyists, and electronics enthusiasts the freedom to work with analog and digital circuits in virtually any environment, in or out of the lab. The analog and digital inputs and outputs can be connected to a circuit using simple wire probes; alternatively, the Analog Discovery BNC Adapter and BNC probes can be used to connect and utilize the inputs and outputs. Driven by the free WaveForms 2015 (Mac, Linux and Windows Compatible) software, Analog Discovery 2 can be configured to work as any one of several traditional instruments.

  • Waveform Function Generators

    T3AFG Series - Teledyne LeCroy

    Teledyne Test Tools new T3AFG series of function / arbitrary waveform generators use advanced Digital Frequency Synthesis (DDS) technology to produce high quality standard function and arbitrary waveform signals. They also provide a wide range of analog and digital modulation functions. The T3AFG series of Arbitrary Waveform Generators includes models with up to 120 MHz bandwidth, 1.2 GSa/s sample rate, 16-bit vertical resolution and 8 Mpts of data. Common analog and digital modulations, sweep and burst are provided to support complex signal generation. The T3AFG series also provides true dual channels with internal waveform combination, flexible phase/channel control and copy/coupling/tracking between channels. These features enable Teledyne Test Tools Arbitrary Waveform Generators to provide a variety of high fidelity and low jitter signals, meeting the growing requirements of complex and intensive applications.

  • 3.5" Embedded SBC With Intel® Celeron® J1900 Processor, LVDS/VGA/HDMI, Dual LANs, Audio And ZIO

    CAPA843 - Axiomtek Co., Ltd.

    The CAPA843, a fanless 3.5-inch embedded board, features quad-core Intel® Celeron® processor J1900 SoC (codename: Bay Trail). A pair of SO-DIMM sockets supports up to 8GB of DDR3L 1066/1333MHz RAM. The compact size embedded board CAPA843 was designed with emphasis on expandability, offering two full-size PCI Express Mini Card slots, as well as an exclusive Axiomtek ZIO connector. With excellent thermal design, the 146 x 102mm embedded SBC can handle operating temperatures from -20°C to 70°C, and runs on +10V to +24V DC input. The 3.5” fanless embedded board provides three display interfaces with dual-display operation: HDMI, LVDS and VGA. The Axiomtek CAPA843 is an excellent choice for applications in IoT/M2M-related, industrial control, self-serve terminal, gaming, digital signage, POS, and kiosk.

  • COM Express Type 6 Compact Module With Intel® Pentium® Processor N4200 & Celeron® Processor N3350

    CEM313 - Axiomtek Co., Ltd.

    The CEM313, a COM Express® Type 6 compact module, is built with the 14nm Intel® Pentium® N4200 and Celeron® N3350 quad-core/dual-core processors (codename: Apollo Lake). Integrated with Intel® Gen 9 graphics, the COM Express® type 6 module prevails in its excellent graphics performance while supporting DX12.0, OCL 2.0, OGL 4.3 with resolution up to 4K (3840 x 2160 @ 30 Hz). Furthermore, two 204-pin SO-DIMM DDR3L-1600 have been deployed in the CEM313 up to a maximum of 8 GB Overall. With the innovative design of low power consumption, wide temperature range, and seismic resistance, the CEM313 can be served as an excellent solution for graphics-intensive applications over the IIoT, including industrial control, medical imaging, digital signage, gaming machines, military, and networking.

  • COM Express Type 10 Mini Module With Intel® Pentium® & Celeron® N3000 Series Processors

    CEM300 - Axiomtek Co., Ltd.

    The CEM300, a COM Express® Type 10 module, supports Intel® Pentium® N3710 and Celeron® N3160/N3060 quad-core/dual-core processors (codename: Braswell) with support for 4 GB DDR3L memory onboard. Integrated with Intel® Gen 8 graphics, the COM Express® Type 10 computer-on-module provides excellent graphic performance including support for DirectX 11.1, OpenGL 4.2, and 3D features and resolution up to 4K (3840 x 2160 @ 30 Hz). The ultra-small mini module comes with 4 to 6 watts low power consumption, and provides wide range voltage power input of 4.75V to 20V for harsh industrial environments. The Axiomtek CEM300 is ideal for IoT-connected industrial controls, medical imaging, retail equipment, MMK (Multi Media Kiosk), industrial gateway, automation and POS terminals related applications.

  • LED Load Simulator

    63110A/ 63113A/63115A - Chroma ATE Inc.

    As shown on the V-I curve in figure 1, the LED has a forward voltage VF and a operating resistance (Rd). When using a resistor as loading, the V-I curve of the resistor is not able to simulate the V-I curve of the LED as shown in blue on figure 1. This may cause the LED driver to not start up due to the difference in V-I characteristic between the resistors and the LEDs. When using Electronic Loads, the CR and CV mode settings are set for when the LED is under stable operation and therefore, is unable to simulate turn on or PWM brightness control characteristics. This may cause the LED driver to function improperly or trigger it’s protection circuits. These testing requirements can be achieved when using a LEDs as a load; however, issues regarding the LED aging as well as different LED drivers may require different types of LEDs or a number of LEDs. This makes it inconvenient for mass production testing.

  • Assembly & Testing

    Teledyne OEM Solutions

    All components and subassemblies receive the highest attention to detail and workmanship, ensuring your satisfaction. From the initial design phase through to the final assembly, we are committed to producing the best possible products for our customers. Our team of skilled builders and assemblers take pride in their work and are committed to producing the best possible products.We thoroughly test and inspect all of our products before they leave our facility, and we stand behind their quality and workmanship. We are confident that you will be satisfied with your purchase, and we ensure that every product meets our high standards of quality control before it is shipped.If you have any concerns about the quality of your product, please don't hesitate to let us know. We are always happy to address any issues and ensure your complete satisfaction with our products.

  • 2WD Dynamometers

    MD-150 Series - Mustang Dynamometer

    With ultra-low inertia and a powerful 625-hp PAU, the MD-150 is a perfect combination of power and finesse – capable of handling most sport compact applications with ease. The 1200-hp measurement capacity means you’ll have no problem pulling horsepower sweeps with this low-profile dyno. The MD-150 is best suited for real-time, steady state tuning of stand-alone engine management systems such as Autronic, MoTeC, Accel DFI, F.A.S.T., AEM, Haltech and the like. From a dynamometer stand-point, the main focus of real-time programming is dynamometer sensitivity, resolution, and set-point stability. The MD-150’s ultra-low inertia design and high speed controller maximize the user’s experience by minimizing controller “wondering” and enhancing system control – simply dial in a speed and let the MD-150 take over. Add timing and watch torque increase right on the dynamometer screen in real-time until you have optimized engine timing and fuel mixture.

  • 15.6”/21.5”/23.8” IP69K Industrial Panel Computer

    Titan-AL - ADLINK Technology Inc.

    The IP69K-rated Titan Panel Computer series is designed for use in monitoring and controlling production processes in industries obligated to meet high hygiene standards. The Titan series features power-efficient computing and up to 1080p high contrast display to present control schematics and graphical diagrams to systems operators. Encased in an IP69K, 316L stainless steel housing, the Titan series can withstand high pressure hot water cleaning, oxidative damage or other chemical reactions and is engineered to prevent water from remaining on the surface after cleaning with its flush front panel surface and the sleek rear chassis design. The pipe mounting option helps keep the workplace clean and neat by providing protection and allowing organization of cables. The Titan Panel Computer series is an ideal fit for food and beverage, pharmaceutical, automotive, and steel and metal industries.

  • Four Channel Clock Driver Card

    PI-41401 - Pulse Instruments

    The PI-41401 is a four channel Clock Driver card capable of operating up to 140 MHz at 3V and 100 MHz at 5V amplitudes into a 50 Ohm load. The PI-41401 has a clock rate of 90 MHz at an amplitude of 5 volts into a 1-MOhm load. Into a high impedance load the output voltage range is from –5 volts to +8 volts with the pulse amplitude ranging from 0V to 9V. When driving a 50 load the voltage range is –2.5 volts to 4.0 volts with the pulse amplitude ranging from effectively 0V to 4.5V. Each channel has a common edgespeed control to vary the rising and falling edges of the output waveform. The adjustable slew rate range, for any amplitude, is the minimum edgespeed of that amplitude times 5. The output pulse amplitude and the load being driven determine the range of variability.

  • Visual Designer For Arduino™

    AVR And Raspberry Pi® - Proteus

    Proteus Visual Designer combines world class Proteus VSM simulation with an easy to use flowchart editor and a gallery of virtual hardware to provide a truly integrated and intuitive development environment for Arduino and Raspberry Pi. The peripheral gallery makes hardware design easy. Simply add a shield or sensor from the gallery and Visual Designer will automatically place the correct circuitry on the Proteus schematic for you and add some simple methods to Visual Designer that allow you to control the hardware. The software is then designed as a flowchart so you can easily drag and drop these methods along with decisions, delays and assignments to drive the hardware. Compile and simulate at the press of the button, making use of our renowned simulation and debugging technology to watch your design come to life on screen.Finally, transfer to the physical hardware with a single mouse click and see it working first time in the real world.

  • Instruments

    Lambient Technologies

    Organizations working on new thermosets or new thermoset formulations need an intimate understanding of how these materials cure before they can proceed to the next step in the research, quality control, or production process. What happens when the material is heated? When is the best time to apply pressure to squeeze out voids? How fast does the material react at 120C? 150C? 180C? Most organizations today address this need by curing a sample for an arbitrary amount of time before using inexact, error-prone manual methods, or complex thermal analytical instruments to test cure state. Maybe the sample has reached the end of cure, but maybe not. With traditional methods, it’s difficult to tell for sure. How can organizations determine whether they’re processing materials longer than necessary? Dielectric cure monitoring lets them know for sure.

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