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專業(yè)銷售dranetz DBPVFLEX 電能質量分析儀

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dranetz DBPVFLEX 電能質量分析儀

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北京恒遠安諾生化科技有限公司

www.annovatek.com

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: nickqian8888

:錢

www.annovatek.comFeatures

  • Eight channels, 4 voltage & 4 current
  • Intuitive color touch screen
  • Light weight - Less than 4 pounds, 2 kg - with rugged rubber boot
  • AC/DC applications
  • Automated setups for "out of the box" instrument readiness
  • Unique "report card" annunciator that instantly characterizes events
  • Samples at 256 samples/cycle
  • Independent voltage & current triggering, cross triggering
  • Capture of low-medium frequency transients
  • THD/harmonic spectrum and TID/interharmonics spectrum to the 63rd
  • Remote communications-RS-232, Ethernet or USB
  • Battery or AC mode
  • Built in UPS battery with external charger
  • Expanded memory up to 4GB
  • DRAN-VIEW enabled (Windows NT, 98, ME, 2000, XP)
  • Measures wide range of parameters, including crest factor, K factor, transformer derating factor and ephone interference factor
  • Complies with IEEE 1159, IEC 61000-4-30 Class A and EN50160
  • Description

     

    PowerVisa - Power Quality Analyzer

    Equipped with 8 independent channels, the 3-phase PowerVisa is the only advanced power monitoring instrument to incorporate a color touch screen into its lightweight design. Automated setups provide instant detection of circuits and configurations, ensuring that the instrument is ready to successfully collect data. Users can select the length and mode of data collection, including troubleshooting, data logging, power quality surveys, energy and load balancing.

    Troubleshooting

    The PowerVisa unique annunciator "report card" provides instant power quality answers in the field. A wide range of power monitoring data is collected, analyzed and tabulated in color-coded categories to quickly identify areas of concern, which are identified in red. Drill down for more detailed information by simply touching the intuitive graphical screen to troubleshoot problems, locate the source and pinpoint the root cause of power quality disturbances.

    Energy Surveys

    The cost of energy is oftentimes a facility’s largest operating expense. Reducing energy consumption during peak times, shifting loads, purchasing energy efficient equipment, or changing energy suppliers can shave 10-40% annually off that cost. The PowerVisa is an invaluable tool for performing energy surveys, including monitoring energy consumption, usage patterns, peak demands and the activation of large loads to reduce electricity costs. Plus, the PowerVisa makes it easy to track and allocate energy costs by process or department.

    Harmonics

    As the sensitivity of power electronics increases, equipment ranging from HVAC systems, personal computers and copiers to computerized process equipment and manufacturing systems are susceptible to harmonic pollution. In fact, harmonics can cause small, almost imperceptible variations in performance that aggregate to effect significant long-term damage. Current harmonics generated by a source can pollute the entire power system without being affected itself. The PowerVisa captures detailed harmonics, interharmonics and subharmonics to effectively troubleshoot the complex problems caused by these events.

    Equipment Performance Testing

    Determining the availability and compatibility of facility power prior to the installation of new equipment is simplified using the PowerVisa. The instrument incorporates advanced features such as RMS triggers, low/medium frequency transients, and cross triggering between channels to demonstrate that power mitigation devices such as UPSs are operating properly. Real time readings observed during maintenance and startup processes enable users to see results and tweak that equipment during the testing process.

    Modes of Operation

    Data can be viewed in real time using scope mode, meter mode, event mode, harmonics spectrum or phasor diagrams. With the touch of your finger or a stylus, you can view data and zoom-in on captured disturbances for more detail and automated event characterization.

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