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Fluke 1775 Three-Phase Power Quality Analyzers
Fluke 1775 Three-Phase Power Quality Analyzers
Brand:
FLUKE
Model:
1775
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Technical Data Sheets
Product Description

Fluke 1775 Three-Phase Power Quality Analyzers

Fluke 1770 Series Three-Phase Power Quality Analyzers eliminate the complexities of power quality logging, troubleshooting, and analysis. Engineered to be the faster, easier way to perform power quality studies, the 1770 Series offers automatic measurements, a straightforward user interface and setup, best-in-class specifications, and a simplified reporting platform. The instrument can also be powered directly from the measurement circuit, eliminating the need to find a power outlet or use a lengthy extension cord

With the 1770 Series you’ll never miss a critical power quality event—from fast transients up to 8 kV, harmonics up to 30 kHz, dips and swells, as well as the voltage, current, and power measurements that enable you to characterize your electrical system.

Automatic measurement capture
Whether you’re performing a quick system check or a detailed power quality study, consistent data is key. The Fluke 1770 Series offers a unique automatic measurement capture system that helps ensure you’re collecting the right data every time, while still giving you the flexibility to select and adjust specific parameters as needed. More than 500 power quality parameters are captured by default and the guided setup makes it easy to select the right parameters for the system you’re working on. Logged data is instantly viewable, downloadable, and shareable with Fluke Energy Analyze Plus software so you never need to wait to finish a session before reviewing results or analyzing data.

Ultimate measurement confidence
The Fluke 1770 Series are 2-in-1 devices that combine the troubleshooting functionality of a power quality meter with the robust analysis and logging capabilities of a standalone power quality analyzer—in a single, easy-to-use, handheld device.

The ‘PQ Meter’ function gives you immediate access to live onscreen data in the field so you can quickly identify potential problems while troubleshooting. The detailed ‘PQ Logging and Analysis’ function eliminates the complexity of performing power quality studies by guiding you through the setup process ensuring you’re capturing the right data every time. Couple these measurement modes with a unique measurement connection autocorrect function and you can be confident that you never need to worry about going back for a second measurement—even if you were unsure about what to look for when you started.

Powerful analysis software with easy-to-create reports

Fluke 1770 Series Power Quality Analyzers come standard with the powerful Fluke Energy Analyze Plus software, designed to eliminate the hassles found with other multi-purpose application software. Energy Analyze Plus helps you evaluate power quality data right out of the box and without extensive training.

Energy Analyze Plus makes downloading, analyzing, tracking, and reporting power quality and energy data easier than ever. Quickly compare results to historical values, benchmark against industry norms, compare measured data to local conditions, and create a more complete picture of what’s occurring across your facility, even as the data is still being collected. Energy Analyze Plus offers unified support for the Fluke 1730, 1740, and 1770 Series of Energy Loggers and Power Quality Analyzers.

  • “In-workshop” and “in-the-field” setup and download through PC application software
  • Simple data downloads using USB memory stick, WiFi, LTE, wired Ethernet, or USB cable
  • Analyze every measured detail of energy consumption and power quality state-of-health with automated reporting
  • One-touch reporting creates standardized reports conforming to standards like EN 50160, IEEE 519, GOST 33073 IEC 61000-2-2, or export data in PQDIF or NeQual compatible format or CSV for use with third-party software
  • Advanced analysis allows the user to choose any available logged parameter and create a highly customized view of measurements for advanced data correlation
RM 58,841.18
Quantity:
EA
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Power & Energy Meters
38 Items
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Poles Description
3P 1P + N 3P + N, 3P + N 3P 1P + N, 3P + N 1P + N 3P, 3P 3P + N 1P + N, 1P + N
[In] Rated Current
5 A 1 A, 1 A 5 A 10 A, 1 A 5 A, 125 A, 63 A
Type of Measurement
Total current harmonic distortion THD (I) per phase Total voltage harmonic distortion THD (U) per phase Apparent energy total Active and reactive energy total Apparent power total Active and reactive power total Current average Voltage average Frequency average Power factor average, Current Voltage Frequency Active and reactive power total Apparent power total Power factor total Active and reactive power per phase, rms Apparent power per phase, rms Power factor per phase, rms, Active and reactive power Apparent power Current Voltage Energy Power factor Frequency Total current harmonic distortion THD (I) Total voltage harmonic distortion THD (U), Active and reactive energy Active and reactive power Current Voltage, Active energy Current Voltage Active power
Display Type
Backlit LCD, Remote LCD, TFT LCD, Without display, No Display
Standards
BS EN 61557-12:2021 IEC 61557-12:2021 EN 61557-12:2021 BS EN 61326-1 IEC 61326-1 EN 61326-1 BS EN 62052-11:2020 IEC 62052-11:2020 EN 62052-11:2020 BS EN 62053-21 IEC 62053-21 EN 62053-21 BS EN 62052-23 IEC 62053-23:2020 EN 62052-23 BS EN 62052-31:2015 IEC 62052-31:2015 EN 62052-31:2015 BS EN 61010-1:2010 EN 61010-1:2010 IEC 61010-1:2010 UL 61010-1:2010 BS EN 61010-2-30 IEC 61010-2-30 EN 61010-2-30 UL 61010-2-30 BS EN 50470-3 EN 50470-3 BS EN 50470-1 EN 50470-1 ANSI C12.16, IEC 62053-22:2020 EN 50470-1 IEC 60529 IEC 61557-12:2015 UL 61010-1 EN 50470-3 IEC 62053-24 IEC 62053-23:2020 IEC 62052-11:2020 IEC 62052-31:2015, BS EN 61557-12:2021 IEC 61557-12:2021 EN 61557-12:2021 BS EN 61326-1 IEC 61326-1 EN 61326-1 BS EN 62052-11:2020 IEC 62052-11:2020 EN 62052-11:2020 BS EN 62053-21 IEC 62053-21 EN 62053-21 BS EN 62053-22:2020 IEC 62053-22:2020 EN 62052-22 BS EN 62052-31:2015 IEC 62052-31:2015 EN 62052-31:2015 BS EN 61010-1:2010 EN 61010-1:2010 IEC 61010-1:2010 UL 61010-1:2010 BS EN 61010-2-30 IEC 61010-2-30 EN 61010-2-30 UL 61010-2-30 ANSI C12.20, IEC 62052-31 IEC 62053-21 IEC 62053-23 IEC 62052-11, EN 50470-3 IEC 61557-12:2015 IEC 62053-22:2020 IEC 62053-24 IEC 60529 EN 50470-1 UL 61010-1 ANSI C12.20 IEC 62053-23:2020 IEC 62052-11:2020 IEC 62052-31:2015
Ambient Air Temperature for Operation
-25…70 °C, -25…55 °C - MID -25…70 °C - IEC -25…60 °C - IEC, -25…55 °C -20…55 °C, -25…55 °C - MID -25…70 °C - IEC, -25…70 °C - IEC
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