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ISO 9001 ISO 14001 ISO 18001 ISO 17025

HIOKI DT4282 DİJİTAL EL TİPİ MULTİMETRE

HIOKI DT4282 Dijital Multimetre İnverterler Dahil Gelişmiş
Testler için Hassas ve Esnek Profesyonel Dijital Multimetre

Teknik Şartnameler ve İlgili Dökümanlar

Hioki DT4200 Serisi Dijital Multimetreler profesyonelden cep tipine 9 farklı modeli ile elektriksel testleri, süper hızlı tepki süresi ve güvenlik özellikleriyle üst seviyeye taşımaktadır. DT4282 R&D ve laboratuvarlardaki gelişmiş testler için gerekli olan 10 A direk akım girişi ve diğer tüm fonksiyonlar ve özellikleriyle 60.000 sayımlı yüksek hassasiyetli dijital multimetredir.

Özellikler

  • True RMS
  • 60.000 sayım
  • 1.000 V AC/DC Gerilim Ölçümü
  • 10 A direk giriş
  • Direnç, Frekans, Kapasitans Ölçümü, Süreklilik ve Diyod Testleri
  • Sıcaklık Ölçümü(Opsiyonel)
  • Çeşitli ölçüm fonksiyonları içerir.( DC+AC V, sıcaklık, kapasitans ve frekans vb.)
  • Kaza koruması için bağlantı kapak mekanizması içerir. (Test kablosu bağlantı hatalarını engeller)
  • Alçak Geçirgen Filtre yüksek harmonikleri engeller (inverter temel dalga formlarını ölçerken)
  • CAT IV 600 V, CAT III 1000 V koruma sınıfı
  • ±0.025% DC V temel doğruluk, 20 Hz’den 100 kHz AC V’a kadar geniş frekans özellikleri
  • Geniş sıcaklık çalışma aralığı (-15°C’dan 55°C’e kadar)
  • USB haberleşme ile bilgisayara bağlanabilir (Opsiyonel)

The ultimate digital multimeter, ideal for use R&D applications

The DT4282, which is part of Hioki’s DT4280 series of high-end digital multimeters, is designed for use in laboratories and R&D applications where you wish to measure a wide variety of parameters.

  • DC current 600.00μA / 6000.0μA / 60.000mA / 600.00mA /6.0000A / 10.000A
  • AC current 600.00μA / 6000.0μA / 60.000mA / 600.00mA /6.0000A / 10.000A
  • Conductance 600.00nS

Measure output voltage on the secondary sides of inverters by eliminating harmonic components

Accurately measure the fundamental wave alone by eliminating harmonic components with the DMM’s low-pass filter function.

Measure ripple voltage of DC charging systems

You can measure ripple voltage with a superposed DC signal by using peak value measurement and DC + AC voltage measurement.

Percentage display for 4 to 20 mA instrumentation signals

The digital multimeters can convert and display instrumentation signals of 4 to 20 mA or 0 to 20 mA representing properties such as temperature, pressure, and flow rate from a transducer or other device that converts sensor data into an electrical signal.

600.00 μA range for measuring very low currents used by gas-burning devices

Accurately measure the very low currents such as burner flame currents.

True RMS measurement for accurate measurement of even distorted current waveforms

Digital multimeters implement two types of measurement: mean-value measurement and true RMS measurement. The two methods yield significantly different measurement results for current waveforms, which are often distorted. For accurate measurement, it is necessary to use an instrument with true RMS capability.

Measurement data can be downloaded to, reviewed on, and saved to a computer.

If you connect the DT4282 to a computer with the optional Communication Package DT4900-01, you can graph data stored in the instrument’s internal memory and display measurement results in real time on the computer. In addition, displayed measured values can be saved (in text format). *Use of optical communications keeps the computer and instrument electrically isolated to ensure safety. *The computer and multimeter are electrically isolated by means of optical communications so that data can be sent without concern for electrical hazards.

Designed and manufactured in Japan to ensure high quality and guaranteed with a 3-year warranty for peace of mind

All development, design, and manufacturing processes for almost all Hioki digital multimeters are carried out at our Head Office in Nagano Prefecture. Some of the industry’s most advanced technological capabilities enable us to deliver products of the highest possible quality.

Safe measurement requires use of an instrument that suits the measurement location.

To ensure operators’ ability to use measuring instruments safely, IEC 61010 classifies the locations in which instruments are used into a series of safety-based measurement categories (ranging from CAT II to CAT IV). Using an instrument that does not satisfy the required safety level can lead to an electrical accident.

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