Filter Results By:

Products

Applications

Manufacturers

Analysis

examine and interpret that sensed.

See Also: Analyze, Analyzers, Analytics, Data


Showing results: 3496 - 3510 of 3756 items found.

  • NI-9230, 3-Channel, 12.8 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module

    784396-01 - NI

    3-Channel, 12.8 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module - The NI‑9230 can measure signals from integrated electronic piezoelectric (IEPE) and non‑IEPE sensors such as accelerometers, tachometers, and proximity probes. The NI‑9230 is also compatible with smart TEDS sensors. The NI‑9230 incorporates software-selectable AC/DC coupling, IEPE open/short detection, and IEPE signal conditioning. The input channels simultaneously measure signals. Each channel also has built-in anti-aliasing filters that automatically adjust to your sample rate. When used with NI software, this module provides processing functionality for condition monitoring such as frequency analysis and order tracking.

  • NI-9232, 3-Channel, 102.4 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module

    784397-01 - NI

    3-Channel, 102.4 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module - The NI‑9232 can measure signals from integrated electronic piezoelectric (IEPE) and non‑IEPE sensors such as accelerometers, tachometers, and proximity probes. The NI‑9232 is also compatible with smart TEDS sensors. The NI‑9232 incorporates software-selectable AC/DC coupling, IEPE open/short detection, and IEPE signal conditioning. The input channels simultaneously measure signals. Each channel also has built-in anti-aliasing filters that automatically adjust to your sample rate. When used with NI software, this module provides processing functionality for condition monitoring such as frequency analysis and order tracking.

  • NI-9230, 3-Channel, 12.8 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module

    783824-01 - NI

    3-Channel, 12.8 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module - The NI‑9230 can measure signals from integrated electronic piezoelectric (IEPE) and non‑IEPE sensors such as accelerometers, tachometers, and proximity probes. The NI‑9230 is also compatible with smart TEDS sensors. The NI‑9230 incorporates software-selectable AC/DC coupling, IEPE open/short detection, and IEPE signal conditioning. The input channels simultaneously measure signals. Each channel also has built-in anti-aliasing filters that automatically adjust to your sample rate. When used with NI software, this module provides processing functionality for condition monitoring such as frequency analysis and order tracking.

  • Compute Express Link (CXL)

    Teledyne LeCroy

    Compute Express Link (CXL) is a new high-speed CPU-to-Device and CPU-to-Memory interconnect designed to accelerate next-generation data center performance. CXL technology maintains memory coherency between the CPU memory space and memory on attached devices, which allows resource sharing for higher performance, reduced software stack complexity, and lower overall system cost. This permits users to simply focus on target workloads as opposed to the redundant memory management hardware in their accelerators. CXL is based on a PCI Express 5.0 Physical layer with speeds up to 32GT/s. Teledyne LeCroy provides protocol analysis test equipment to support development and debug of CXL based devices.

  • Digitizer

    724 Family - CAEN S.p.A.

    The 724 is a family of CAEN Waveform Digitizer able to perform basic waveform recording and run online advanced algorithms (DPP) of pulse height analysis and dynamic acquisition window. Data is read by a Flash ADC, 14-bit resolution and 100 MS/s sampling rate, which is well suited for high resolution detectors as Silicon, HPGe or inorganic scintillators like NaI or CsI coupled with Charge Sensitive Preamplifers. In the waveform recording mode, algorithms of zero suppression are also implemented to reduce the data throughput. The acquisition can be channel independent and it is possible to make coincidence/anticoincidence logic among diferent channels and external veto/gating. Multiple boards can be synchronized to build up complex systems.

  • Logic Analyzer

    GoLogicXL-36 - NCI Logic Analyzers

    Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).

  • Logic Analyzer

    GoLogicXL-72 - NCI Logic Analyzers

    Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).

  • PXIe-5170, 4- or 8-Channel, 100 MHz Bandwidth, 14-Bit, Reconfigurable Oscilloscope

    783691-01 - NI

    PXIe, 100 MHz, 4- or 8-Channel, 14-Bit, Kintex-7 325T FPGA Reconfigurable PXI Oscilloscope—The PXIe‑5170 high-density PXI oscilloscope has eight simultaneously-sampled channels with flexible settings for coupling and voltage range. PXI oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that includes data streaming and analysis functions. This device is ideal for applications with many channels that require up to 250 MS/s or 100 MHz of analog bandwidth and advanced PXI synchronization. The PXIe‑5170 also features a programmable Kintex‑7 325T FPGA that can be used for custom acquisition, triggering, signal processing, and data streaming.

  • NI-9250, 2-Channel, 102.4 kS/s/ch Simultaneous, ±5 V, C Series Sound and Vibration Input Module

    783827-01 - NI

    2-Channel, 102.4 kS/s/ch Simultaneous, ±5 V, C Series Sound and Vibration Input Module - The NI‑9250 can measure signals from integrated electronic piezoelectric (IEPE) and non‑IEPE sensors such as accelerometers and microphones. The NI‑9250 is also compatible with smart TEDS sensors. The NI‑9250 delivers a wide dynamic range and incorporates software-selectable AC/DC coupling and IEPE signal conditioning. The input channels simultaneously measure signals. Each channel also has built-in anti-aliasing filters that automatically adjust to your sample rate. When used with NI software, this module provides processing functionality for condition monitoring such as frequency analysis and order tracking.

  • PXIe-5163, 200 MHz, 1 GS/s, 14-Bit PXI Oscilloscope

    785182-01 - NI

    PXIe, 200 MHz, 1 GS/s, 14-Bit PXI Oscilloscope—The PXIe‑5163 high-resolution oscilloscope has two channels that sample at up to 1 GS/s with flexible and programmable settings for coupling, input impedance, voltage range, and filtering. PXI Oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that facilitates high-speed data throughput and includes analysis functions. This device is ideal for automated and partially automated time- and frequency-domain applications that require high-resolution, low-noise measurements with up to 200 MHz of analog bandwidth and up to 250 V. The PXIe‑5163 also features advanced PXI synchronization and data throughput capabilities.

  • NI-9232, 3-Channel, 102.4 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module

    782000-02 - NI

    3-Channel, 102.4 kS/s/channel, ±30 V, C Series Sound and Vibration Input Module - The NI‑9232 can measure signals from integrated electronic piezoelectric (IEPE) and non‑IEPE sensors such as accelerometers, tachometers, and proximity probes. The NI‑9232 is also compatible with smart TEDS sensors. The NI‑9232 incorporates software-selectable AC/DC coupling, IEPE open/short detection, and IEPE signal conditioning. The input channels simultaneously measure signals. Each channel also has built-in anti-aliasing filters that automatically adjust to your sample rate. When used with NI software, this module provides processing functionality for condition monitoring such as frequency analysis and order tracking.

  • Circuit Breaker Analyzers & Timers

    CAT Handheld Series - IBEKO Power AB

    When it’s not practical to use conventional robust circuit breaker analyzers, a handheld circuit breaker analyzer and timer may come handy. DV Power has developed a unique CAT Handheld series. It is specially designed for testing of circuit breakers with one break per phase. Their compact and ergonomic design can provide a wide range of features and reliable operations in low, medium and high-voltage substations or in industrial environments.CAT Handheld series consists of two models, CAT-P and CAT-H. Both of them have a large (5,7 in) colored touch screen display. Because of that, test results are visible in dark places as well as in bright sunlight.Powerful internal Li-Ion battery of the instruments can last up to 8 hours of testing without recharging.CAT Handheld series records:main contacts operating times,contact synchronization,sequence time,a resistance of pre-insertion resistors,open and close coil currents,main contacts bounce time,auxiliary contact time,DC Voltage.Multiple operations, such as Open-Close and Open-Close-Open, can be initiated by using a predefined delay time or by triggering signal from current clamps connected to circuit breaker coil.CAT-H is capable of performing a coil control, while this feature is optional at CAT-P instrument. In contrast to CAT-H, CAT-P instrument can execute “First Trip” test.Both instruments display numerical and graphical results. Because of that, a user can easily overlay up to 4 records in the graphical form and make a quick on-site analysis of potential defects.A user can download test results to a PC via Bluetooth interface for more detailed analysis using DV Win software.

  • 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.

  • ARINC825 Cards

    AIM GmbH

    AIM’s ARINC825 cards can work either with full functionality as an active CAN node for testing and simulating or in listening only mode for monitoring and recording purposes of Avionic CAN bus (ARINC825) applications on up to 4 electrically isolated CAN bus nodes concurrently. All nodes are in conformance with the ISO11898-1/-2 standard. They are accessible by software separately and can be used as 4 independent CAN bus nodes. An onboard IRIG-B time decoder allows users to accurately synchronize single or multiple modules to a common time source. All supported signals are available through front I/O and rear I/O interface. ARINC825 cards consist of FPGA based CAN interface controllers as well as a FPGA based 32-bit microcontroller core and a separate processor for IRIG-B synchronization with high resolution time stamping. All nodes are operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s with the intelligence to process scheduling of CAN frames in real time onboard to significantly off-load the host processor.For embedded applications the AMC825-4 PMC module is available in a conduction cooled version. Using AIM’s family of PCI, CPCI (3U and 6U) and VMEbus carrier cards for PMC our clients have off the shelf solutions in a broad range of card formats. ARINC825 (CAN bus) modules are delivered with an Application Programming Interface (API) and Driver Software compatible with Windows, Linux and VxWorks.An ARINC825 Resource Component is available for AIM’s PBA.pro™ databus test and analysis tool including Tx and Rx simulation capabilities, a Chronological Bus Monitor and support for decoding of payload data within CAN messages. This allows to implement a powerful ARINC825 (CAN bus) analyzer or a complete test system in conjunction with other AIM avionics databus interfaces and PBA.pro™ supported 3rd party hardware.

  • Battery Supervisors

    IBEKO Power AB

    DV Power manufactures ideal tools for maintenance, troubleshooting and performance tests on stationary batteries.Capacity testing is performed in order to detect which cells in the string should be replaced by measuring a cell voltage, temperature, inter-cell connection voltage, and specific gravity.IEEE standards for stationary battery applications also stipulate measuring these key parameters during periodic battery inspections.DV Power provides two types of instruments:BVS series – for automated monitoring of battery parametersBVR series – for manual monitoring of battery parametersIn contrast to BVS, BVR instruments can be used for the transfer of electrolyte specific gravity measurements from a density meter (DMA35) via Bluetooth. This provides a more extensive analysis of each cell in the tested battery string.

Get Help