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Showing results: 1501 - 1515 of 1669 items found.

  • Gas Analysis

    Dexter Research Center, Inc.

    Our infrared gas detectors provide superior sensitivity and reliability that may be translated into a more effective early warning system when monitoring atmospheres for gases at trace levels.  Our technology also offers the opportunity to perform sophisticated gas analysis.  One example: To assure personal safety during a medical procedure, our gas detectors deliver a precise monitoring of the ratio of exhaled gases of a hospital patient who is under general anesthesiology.  Another example, no canary need die in a mine if Dexter gas detectors are installed on the job.  Infrared lead detectors, whether mobile or mounted, can be a critical element in your health and safety strategy at home and on the job, whatever life forms it is your responsibility to protect.

  • PCI Express, IEEE 488 GPIB Instrument Control Device for Windows, Low Profile

    780575-01 - NI

    The PCIe‑GPIB is an IEEE 488 controller device for computers with PCI Express slots. You can use this device to integrate an instrument into your system using GPIB. The PCIe‑GPIB achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB. The PCIe‑GPIB includes a low-profile bracket option as well as a kit that includes the NI‑488.2 driver for Linux®. Regardless of which PCIe‑GPIB you purchase, the device is compatible with Windows, Linux®, and Mac OS X. Linux® is the registered trademark of Linus Torvalds in the U.S. and other countries.

  • PCI Express, IEEE 488 GPIB Instrument Control Device for Windows

    778930-01 - NI

    The PCIe‑GPIB is an IEEE 488 controller device for computers with PCI Express slots. You can use this device to integrate an instrument into your system using GPIB. The PCIe‑GPIB achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB. The PCIe‑GPIB includes a low-profile bracket option as well as a kit that includes the NI‑488.2 driver for Linux®. Regardless of which PCIe‑GPIB you purchase, the device is compatible with Windows, Linux®, and Mac OS X. Linux® is the registered trademark of Linus Torvalds in the U.S. and other countries.

  • PCI Express, IEEE 488 GPIB Instrument Control Device for Linux

    779779-01 - NI

    The PCIe‑GPIB is an IEEE 488 controller device for computers with PCI Express slots. You can use this device to integrate an instrument into your system using GPIB. The PCIe‑GPIB achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB. The PCIe‑GPIB includes a low-profile bracket option as well as a kit that includes the NI‑488.2 driver for Linux®. Regardless of which PCIe‑GPIB you purchase, the device is compatible with Windows, Linux®, and Mac OS X. Linux® is the registered trademark of Linus Torvalds in the U.S. and other countries.

  • GPIB-RS485/RS422 GPIB Instrument Control Device

    779733-02 - NI

    Serial, RS485/RS422 GPIB Instrument Control Device - The GPIB‑RS485 is an IEEE 488 controller device for PCs with RS485 or RS422 ports. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS485 or RS422 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS485 and RS422 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488, RS485, and RS422 standards, as well as interpret and execute high-level commands from the serial port, including serial‑to‑GPIB, and GPIB‑to‑serial protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • GPIB-RS485 RS422 GPIB Instrument Control Device

    779733-01 - NI

    Serial, RS485/RS422 GPIB Instrument Control Device - The GPIB‑RS485 is an IEEE 488 controller device for PCs with RS485 or RS422 ports. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS485 or RS422 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS485 and RS422 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488, RS485, and RS422 standards, as well as interpret and execute high-level commands from the serial port, including serial‑to‑GPIB, and GPIB‑to‑serial protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • PXI Signal Insertion Switch Module

    NI

    PXI Signal Insertion Switch Modules, also known as fault insertion units (FIUs), provide a set of feedthrough channels, which make the switch transparent to the system when closed. You can open or short these channels to one of two fault buses, allowing you to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXI Signal Insertion Switch Module can validate the integrity of control systems including engine control units (ECUs) and full authority digital engine controls (FADECs). You can also use the FIU models for hardware-in-the-loop (HIL) applications and electronic reliability tests.

  • Vision Systems

    ADLINK Technology Inc.

    Embedded vision systems, also referred to as compact vision systems, offer an alternative to Smart cameras and computer-based systems. The ADLINK EOS series is a complete embedded system that offers image acquisition, processing, archiving, and display capabilities. It is equipped with a multi-core CPU, ideal for applications requiring high computing power and multi-camera imaging, such as 3D vision and robotics guidance. Featuring rich I/O connectivity with factory-floor networks, including RS-232/422/485, USB, and isolated digital I/O, as well as onboard storage, ADLINK’s embedded vision system is ready to deploy. A system monitoring feature, feeding back temperature and voltage data, combines with a watchdog timer to maximize robustness and reliability of the ADLINK EOS series in mission critical applications.

  • Particle Image Analyzer

    DRK-7020 - Shandong Drick Instruments Co., Ltd.

    Determine the melting point to detect the purity of crystal material. Mainly used for determination of medicine, dyestuff, spice, and other crystal organic compounds’ melting point. Using photoelectric automatic detection, dot matrix image liquid crystal-display technology, and digital keyboard input. The instrument can measure three samples at the same time and has the initial melting, final weld automatic display, automatic recording of melting curve, automatically determine the melting point of the mean value function. The temperaturesystem uses highly linear platinum resistance as detection elements and PID regulation technology, improved the melting point’s precision and reliability. The instrument establishes communication with PC through the USB or RS232, printing or saving the curve and it uses capillary Pharmacopoeia as sample tube.

  • SPD AC & DC Thermal Stability Test Equipment

    Shanghai Guantu Technology Co., Ltd.

    1. Computer control measurement, PLC control;2. Equipped with sudden voltage capability, suitable for thermal stability tripping test under high current conditions;3. Increase the high-power resistance box;4. The interface is friendly and beautiful, and can reflect the running status of the system in real time; .5. Automatically draw voltage, current and temperature curves;6. The system performs multi-point temperature detection in real time;7. Timing sampling and recording function, which is convenient for users to view temperature values ​​at different times and compare data;8.2 times Uc leakage current test function to check the tripping reliability of the product;9. Built-in test box;10. RS232 communication interface, can realize remote control.

  • GPIB-RS485, GPIB Instrument Control Device

    779733-04 - NI

    Serial, RS485/RS422 GPIB Instrument Control Device - The GPIB‑RS485 is an IEEE 488 controller device for PCs with RS485 or RS422 ports. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS485 or RS422 … serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS485 and RS422 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488, RS485, and RS422 standards, as well as interpret and execute high-level commands from the serial port, including serial‑to‑GPIB, and GPIB‑to‑serial protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • PXI Single 24x8 Matrix, 2 Pole Switching

    40-521-022 - Pickering Interfaces Ltd.

    Typical applications for this high density matrix include signal routing in Functional ATE and data acquisitionsystems. These PXI matrix cards are constructed using high reliability rutheniumelectro-plated reed relays, offering >10e8 operations to give maximum switchingconfidence with long life and stable contact resistance. Larger matrices may be constructed by Daisy Chaining the common signals from multiple PXI modules. For example, 7 PXI modules will form a 168x8 Matrix, a total of 1344 crosspoints in a 7-slot PXI Chassis. All 40-521 series modules are fitted with reed relays (ruthenium sputtered type), these offer very long life with good low level switching performance and excellent contact resistance stability.Spare Reed Relays are built onto the circuit board to facilitate easy maintenance with minimum downtime.

  • PXI Dual 16x8 Matrix, 2 Pole Switching

    40-532-022 - Pickering Interfaces Ltd.

    This high-density reed relay matrix with 256 crosspoints. This model is configured as a Dual 16x8, model 40-531 is configured as a 32x8. Both modules are available in a choice of reed relay formats: 1-pole, 2-pole and 1-Pole screened. The screened version can be used for switching coaxial signals up to 50MHz. Typical applications include signal routing in Functional ATE and data acquisition systems. These PXI matrix modules are constructed using high reliability Sputtered Ruthenium Reed Relays, offering 109 operations to give maximum switching confidence with long life and stable contact resistance. Larger matrices may be constructed by Daisy Chaining the common signals from multiple PXI modules. For example, seven PXI modules will form a 224x8 Matrix, a total of 1792 crosspoints in a 7-slot PXI Chassis.

  • PXI Single 32x8 Matrix, 2 Pole Switching

    40-531-022 - Pickering Interfaces Ltd.

    Model 40-531 very high density matrix modules are configured as a 32x8, while the 40-532 modules are configured as a Dual 16x8. Both modules are available in a choice of reed relay formats: 1-pole, 2-pole and 1-Pole screened. The screened version is suitable for switching coaxial signals up to 50MHz. Typical applications include signal routing in Functional ATE and data acquisition systems. These PXI matrix modules are constructed using high reliability Sputtered Ruthenium Reed Relays, offering 109 operations to give maximum switching confidence with long life and stable contact resistance. Larger matrices may be constructed by Daisy Chaining the common signals from multiple PXI modules. For example, seven PXI modules will form a 224x8 Matrix, a total of 1792 crosspoints in a 7-slot PXI Chassis.

  • Light and Energy Meter

    Model 659 - OAI

    UV Light and Energy Meter for use with all wafer steppers. For over 45 years, OAI is a world leader in UV Light and Energy Measurement Instrumentation used for reliable accurate calibrated control of the photolithography processes in the Semiconductor, MEMS, Wafer Packaging and Wafer Bumping Industries. The New Model 659 is an advanced UV exposure analyzer specifically designed for use with all wafer steppers including high intensity wafer steppers. This meter averages up to 400 exposure readings, has Ethernet and USB interface for downloading recorded measurements, and has intensity range of up to 7,500mW/cm2. Probes are available in wavelength of 365nm, 400nm, 420nm & 436nm. OAI has a complete certified calibration lab to maintain the performance, quality and reliability of our meters. The Model 659 meter is traceable to NIST standards.

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