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Showing results: 2506 - 2520 of 2546 items found.

  • BGA SMT Adapters

    Giga-snaP™ - Ironwood Electronics

    Giga-snaP™ 0.75, 0.8, 1.0, and 1.27mm pitch BGA Surface Mount Feet Adapter line of products provide an inexpensive and reliable method for attaching BGA chips to target board. The product line consists of patented female sockets with machined pins epoxy over-molded into an assembly that matches a particular BGA pattern. The epoxy over-molded female BGA socket is soldered to a PCB using standard soldering methods. A corresponding male pin BGA adapter, to which the user attaches their BGA chip, is plugged into the female socket on the board thus interconnecting the chip and the system is ready to go. The SMT adapters have the same solder ball types as the chips they are emulating. These adapters have less than half of the insertion force of competitive adapters, shorter electrical path for highest speed, and can be solder reflowed numerous times. A complete description and drawings of Giga-snaP™ 0.75, 0.8, 1.0, and 1.27mm pitch BGA Surface Mount Feet Adapters can be found at the tables shown below.

  • VECTOR-GUN HANDHELD DIRECTION FINDING ANTENNA SYSTEM

    HFDF - National RF, Inc

    National RF's Type HFDF active directional antenna system consists of a high gain RF amplifier coupled to a tunable Faraday shielded loop antenna. Several loop antenna assemblies are available to provide coverage of frequencies in the HF and low VHF spectrum. Due to the nature of a Faraday shielded loop, the antenna exhibits a sharp null through the diametric center of the loop. This null is used to determine the direction of incoming radio signals or to locate electrical noise being radiated from some source. The internal high gain amplifier is used to compensate for the inherent inefficiency of the actual loop at the operating frequency. Overall, the system dynamic response is about +6 dB as compared to the dynamic response of a dipole. To aid in the direction finding process on strong signals, an internal 30 DB attenuator is provided. As the loop antenna presents a bi-directional response, tri-angulation may be required to eliminate the ambiguous signal direction. The line of site of the incoming signal is determined by listening for a signal null on the receiver or by watching the receiver’s S-meter.

  • Circuit Breaker Analyzer

    CBAnalyzer - Circuit Breaker Analyzer Inc.

    Simple operation requiring minimal trainingVery portable - it's a laptop or tablet pc running our Windows software programNo modification of the circuit breaker is requiredNo electrical connections are requiredRemoval of the circuit breaker from its mounting or cubicle is not requiredTesting can be performed during routine switchingData is easily transmitted over the internet to the users account where it is analyzed and compared with a known good profile (KGP) for that type of circuit breaker to determine: • Overall mechanical condition • Confirm maintenance intervals and lubrication • First trip testing data for arc flash compliance • Arc flash study validation checksPerform detailed analysis and store maintenance records using CBAnalyzer suite softwareAccess to the CBAnalyzer Account Manager which: • is where user accounts are created and each user's role is designated • provides access to your equipment database and test data archives • is where tests are synced • is where your equipment data is entered and stored • is required to use the CBAnalyzer software program

  • High-Performance Handheld Infrared Camera

    FLIR T865 - Teledyne FLIR

    The FLIR T865 thermal imaging camera is a non-contact inspection tool with 180° rotating optical block that allows users to safely and comfortably assess the condition of critical electrical and mechanical equipment in utility and manufacturing applications. With advanced features including unmatched temperature measurements down to -40°C, accuracy as good as 1°C/1%, 1-Touch Level/Span contrast enhancement, and laser–assisted autofocus, you'll get highly accurate temperature measurements every time. Pair the T865 with a 6 FOV IR lens to perform inspections on small targets from long distances. The on-board Inspection Route system helps you record temperature data and imagery in a logical sequence for faster troubleshooting and repair. The T865 also features FLIR Ignite for automatic uploading of images directly from the camera to the cloud for easy, secure storage and sharing. Adding a FLIR T865 camera to a condition monitoring/predictive maintenance program can help reduce maintenance costs, improve system efficiency and reliability, and prevent downtime due to outages.

  • Patch Panel Automation Switch

    Echola Systems LLC

    Echola's Optical Patch Panel Automation switch allows test engineers/system developers to dynamically reconfigure testbed connections from remote. It reduces test configuration time as they don't need to make any physical fiber connections for each set of tests, so more testing can be performed with fewer resources. It provides all-optical connectivity with zero latency and can be used with any protocols and speed. Unlike O-E-O (optical to electrical to optical conversion) switches you don't need expensive transceivers for each port. The all-optical connectivity also allows systems under test to be tested without introducing another variable (ie, another conversion layer which could introduce significant latency). The patch panel automation switch allows users to configure, control and monitor the device from remote using any standard internet browser, a command line interface (CLI) via Telnet or SSH and SNMP v2c. The event notifications are supported through Syslog. It can be automated using TCL based scripts.

  • Flexible Current Sensor Probe

    CTA - Powertek LLC

    The CTA current sensors convert ac current to an isolated 0-5A current with available ranges from 100A to 10,000A. Because the current sensors are flexible split core, installation is possible without shutting down the LV electrical supply, avoiding expensive down-time costs. Typical applications are retrospective energy monitoring in factories, offices buildings, process control data logging systems, where power, energy and current monitoring is important. Typical applications are factories, offices buildings, ac/dc VFD drives, welding, power conversion and power distribution. For all CTA current sensor models, a NIST/NPL (UKAS) traceable calibration certificate and certificate of conformance is supplied. All CTA sensors use UL94V0 or CSA approved materials. The CTA flexible current sensors are suited to permanent or semi permanent installation. The coil sensor is durable, lightweight, flexible and will easily clip-around a power cable. The 5A output from the CTA current sensor connects direct to installed metering, rotary metering or current transducers.

  • Thermitest

    THW-L2 - Thermtest Instruments

    Designed with speed and operational simplicity in mind, the Transient Hot Wire (THW-L2) Liquid Thermal Conductivity Meter is an advanced measurement system for direct determination of the thermal conductivity of liquids and pastes in accordance with ASTM D7896-19. In less than 2 seconds, a single measurement of small volumes of liquids and pastes can be accurately and precisely measured for thermal conductivity. Using a non-stationary measurement approach, the THW-L2 uses rapid test times to limit convective effects for samples with a wide range of viscosities. The THW sensor consists of a 60 mm heating wire that is fully inserted into an isothermal sample. A constant current source (q) is used to heat the sensor wire and the temperature rise is recorded by monitoring the change in electrical resistance of the wire. The slope (m) is determined from the plot of temperature rise vs. logarithm of time and is used in the calculation of thermal conductivity (λ). Liquid samples of high thermal conductivity will have a lower slope, while liquid samples with low thermal conductivity will have a higher slope.

  • Confocal FLIM System

    DCS-120 - Becker & Hickl GmbH

    *FLIM Upgrade for Existing Conventional Microscope*Two Fully Parallel TCSPC FLIM Channels*Compact bh Simple-Tau or Power-Tau System*Scanning by Fast Galvanometer Mirrors*Channel Seperation by Dichroic or Polarising Beamsplitters*Individually Selectable Pinholes and Filters*One or Two BDL-SMN or BDS-SM ps Diode Lasers*Two Fully Confocal Detection Channels*Two HPM-100-40 GaAsP Hybrid Detectors*Optional: Two HPM-100-06 Hybrid Detectors, IRF Width < 20 ps FWHM*Optional: HPM-100-50 Hybrid Detectors for NIR FLIM*Optional: Multi-Wavelength FLIM*Excellent Time Resolution: Electrical IRF Width 6.5 ps FWHM*Time Channel Width Down to 813 fs*Megapixel FLIM, Up to 2048 x 2048 Pixels at 256 Time Channels*Simultaneous FLIM/PLIM*Wideband Version, Compatible with Tuneable Lasers*Electronic Pinhole Alignment*Z-Stack FLIM Acquisition with Zeiss Axio Observer Z1*Optional: Spatial Mosaic FLIM via Motorized Sample Stage

  • Multiphoton FLIM System

    DCS-120 MP - Becker & Hickl GmbH

    *Multiphoton FLIM Upgrade for Existing Conventional Microscope*Two Fully Parallel TCSPC FLIM Channels*Compact bh Simple-Tau or Power-Tau System*Scanning by Fast Galvanometer Mirrors*Channel Seperation by Dichroic or Polarising Beamsplitters*Individually Selectable Pinholes and Filters*Excitation by Ti:Sa Laser*Two Non-Descanned Detection Channels*Two HPM-100-40 GaAsP Hybrid Detectors*Optional: Two HPM-100-06 Hybrid Detectors, IRF Width < 20 ps FWHM*Optional: HPM-100-50 Hybrid Detectors for NIR FLIM*Optional: Multi-Wavelength FLIM*Excellent Time Resolution: Electrical IRF Width 6.5 ps FWHM*Time Channel Width Down to 813 fs*Megapixel FLIM, Up to 2048 x 2048 Pixels at 256 Time Channels*Simultaneous FLIM/PLIM*Electronic Pinhole Alignment*Z-Stack FLIM Acquisition with Zeiss Axio Observer Z1*Optional: Spatial Mosaic FLIM via Motorized Sample Stage*Laser Control via SPCM Software

  • Rack Mounted Load Banks

    Junxy Energy

    Traditional commissioning is a daunting task. Since formal system operation doesn’t begin until the system is commissioned, the commissioning team experiences intense pressure to complete the commissioning process quickly. Commissioning can involve high expense and requires staffs from different departmental disciplines to work together. For these reasons data center commissioning has almost uniquely been associated with large data centers (over 20,000 ft2 or 1,858 m2). In the recent past, many data center managers chose to roll the dice and perform little or no commissioning, relying only on start-up data to press ahead with launching the new data center. Given the reality of 24x7 operations, however, the alternative of exposure to major system failures and accompanying downtime is no longer an economically viable option. Commissioning has now become a business necessity. JUNXY series AC & DC rack mounted load banks can be used to introduce heat loads and to allow for simultaneous testing of both electrical and cooling systems.

  • Radiator Flow Test Machine

    8601 - Hydraulic Technology, Inc.

    The Radiator Flow Test Machine P/N 8601 meets all requirements of military specification MIL-F-45955A (AL). It is completely self contained and requires only connection to a source of shop electrical power to place in operation. A power cable complete with three prong grounding plug is permanently attached to the machine for this purpose. The unit consists of a water storage tank, a pumping system, a flow measuring system, a support and workstation, and the required hose adapters for connection to different size radiators. The complete unit is mounted on swiveling casters. The flow rate is infinitely adjustable from 0 to 120 gallons per minute by means of a panel mounted control valve. The machine is constructed from heavy 10 gauge steel, is double welded and is coated externally and internally with a water-resistant epoxy coating. Flow measurement is accomplished by a digital panel meter with a calibrated accuracy of plus or minus 3 percent of scale between 5 and 120 gallons per minute. Higher flows available on request.

  • Static Load Cells

    2580 Series - Instron

    Instron® load cells are a key part of a materials testing system. Instron is the only global materials testing supplier that designs and manufactures its own load cells. This ensures that Instron load cells meet the unique requirements of materials testing such as; high accuracy over a wide measurement range, high stiffness, resistance to offset loads, accurate alignment and excellent zero stability. The 2580-xxxN Series load cells are specifically designed for use with 5900 testing systems; offering exceptional performance with the ability to measure forces as low as 1/1000th of the force capacity to an accuracy of 0.5% of reading.The load cells can withstand loads up to 150% of their force capacity without damage and 300% without mechanical failure. Automatic transducer recognition and electrical calibration, makes them easy to use.  The load cells allow the user to zero out the tare weight of a grip or fixture that weighs up to 10% of the force capacity, while still maintaining the full specified accuracy.

  • Colorimeter​​

    Model CA-600​​​ - Teledyne Analytical Instruments

    The​ CA600 is an online sequential sampling analyzer, using colorimetric methods. The analyzer can be configured to most laboratory colorimetric tests in individual processes.The CA600 Analyzers are easy to start up and use, simply connect the sample, waste and reagent lines and then power up the factory calibrated analyzer.​ Wall mount hardware is standard but an optional bench-top stand with reagent holder is also available. Accessing information for customizing an analysis routine is easily accomplished with the simple, user friendly menu structure and touch screen interface.The analyzer has two separated enclosures with two lockable doors. The top enclosure, called the electrical enclosure, includes the main power supply, the controller PCB assembly and the touchscreen interface. The bottom enclosure, called the liquids enclosure, includes all the components involved in the sample and reagent flow, mixing and reaction stages (sampling pump, reagent micro pumps and colorimetric reaction cell). Numerous analysis configurations can be programmed, depending on the accessories and the number of micro-pumps mounted in the liquid enclosure.

  • Radiation Microdosimeters

    Teledyne Defense Electronics

    Teledyne e2v HiRel Microdosimeter is a compact hybrid microcircuit which directly measures total ionizing dose (TID) absorbed by an internal silicon test mass. The test mass simulates silicon die of integrated circuits on-board a host spacecraft in critical mission payloads and subsystems. By accurately measuring the energy absorbed from electrons, protons, and gamma rays, an estimate of the dose absorbed by other electronic devices on the same vehicle can be made. The Microdosimeter can operate from a wide range of input voltages. The accumulated dose is presented to three dc linear outputs and one pseudo-logarithmic output giving a dose resolution of 14 µrads and a measurement range up to 40 krads. These outputs are intended to be directly connected to most analog-to-digital converters (ADCs) or spacecraft housekeeping analog inputs (0-5 V range), which makes minimal demands on the host vehicle. The Microdosimeter incorporates a test function to allow electrical testing of the hybrid without the need for a radiation source.

  • EOL Testing Systems

    MOTOMEA

    *Test procedure is based on the motor’s voltage and current.*Test procedure measures all of the motor characteristics, from stall up to no load speed, in just a few seconds.*NO loading of the motor is necessary.*NO sensor is required for DCPM motors.*COMPLETE test performance in just a few seconds of running the motor. *Performs QA testing on 100% of production, without compromising line throughput (up to 10 motors per minute), reducing costs of defective products. *Determines acceptability to user predefined PASS/FAIL limits on production lines.*Detects electrical and mechanical defects according to: -Full load performance without coupling to external load and without addition any sensor on the motor shaft (torque, speed, current, voltage, input power, output power, and motor efficiency, from stall up to no-load). -Real-time results. -Friction torque, friction output power.*Possibilities for: AC, DC Hipot & Insulation Resistance.*Adjustable to test various motor types on single system.*Flexible to production changes with minimum expenses.

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