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Megger FRAX101 Sweep Frequency Response Analyzer

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  • Frequency range of 0.1 Hz to 25 MHz with a dynamic range >150 dB for high-precision SFRA testing
  • Operating temperature at -20°C to +55°C with IP-rated protection for industrial environments
  • Compact dimensions (410 x 340 x 205 mm) with optional internal battery for field portability
  • Compliance with IEC 60076-18, IEEE C57.149, and other key standards
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Description

About this model

Understanding The Megger FRAX101 Sweep Frequency Response Analyzer

Transformers are the backbone of modern electrical distribution, and ensuring their internal structural integrity is critical for reliability. The Megger FRAX101 Sweep Frequency Response Analyzer represents a state-of-the-art diagnostic solution designed specifically for the precise assessment of a transformer's mechanical and electrical condition. By utilizing Sweep Frequency Response Analysis (SFRA), this instrument detects subtle changes within the transformer that conventional testing methods often miss. When you are ready to buy the Megger FRAX101, you are investing in a technology that provides a definitive fingerprint of your equipment’s health.

The SFRA method is recognized in international standards and has been relied upon by major utilities and service companies for over a decade. Unlike simple pass/fail tests, the FRAX101 captures a detailed frequency response curve, allowing engineers to identify issues such as winding displacements, core deformation, and loose connections. Whether you are comparing a new unit against a baseline or investigating a unit that has undergone transport or short-circuit events, the Megger FRAX101 Price offers exceptional value by preventing costly unplanned downtime.

Technical Features And Field Applications Of The Megger FRAX101

When evaluating the technical capabilities of the Megger FRAX101, it is essential to look beyond simple specifications and understand how these features translate to field applications. This device is engineered to provide the highest accuracy in the industry, ensuring that even the most minute mechanical shifts within a transformer are captured and analyzed. The following technical features highlight why this instrument is considered a best-in-class solution for transformer diagnostics.

  • Highest Accuracy in the Industry: The FRAX101 delivers precise measurements across a wide frequency spectrum, allowing users to detect minute variations in impedance and capacitance that indicate mechanical deformation.
  • High Dynamic Range: Equipped with a high dynamic range, the device ensures that testing needs are covered even for large power transformers with complex winding configurations, providing clear signals against background noise.
  • International Standards Compliance: The instrument fulfills international standards for SFRA measurements, ensuring that data collected is valid for regulatory audits and comparative analysis across different test sets.
  • Advanced Software Integration: The unit features advanced analysis and decision support built directly into the software. For users requiring a more integrated solution, the FRAX 150 variant includes a built-in PC and touchscreen for standalone operation.
  • Data Import Capabilities: To streamline workflow, the software allows for the importation of data from other FRA test sets, facilitating seamless comparison with historical records regardless of the original equipment manufacturer.
  • Wireless Communication: The Megger FRAX101 specifically supports wireless communication, enhancing safety and convenience by allowing the operator to control tests remotely without being tethered to the transformer bushing connections.

Why SFRA Is Essential For Transformer Diagnostics

Sweep Frequency Response Analysis (SFRA) has become a cornerstone of modern predictive maintenance strategies. Unlike traditional insulation resistance or turns ratio tests, SFRA provides a holistic view of the transformer's internal geometry. The Megger FRAX101 executes this method straightforwardly, capturing a unique fingerprint of the transformer that can be compared against a reference signature. If a transformer has suffered mechanical trauma, such as winding movement due to short-circuit forces or transport damage, the frequency response will shift visibly.

The application of this technology is vital for utilities aiming to extend the asset life of their fleet. By utilizing the FRAX101, engineers can verify the condition of a transformer before energization, ensuring that internal faults are identified and rectified. This proactive approach not only safeguards the equipment but also stabilizes the grid. When considering the Megger FRAX101 best price, it is important to weigh the cost of the instrument against the potential savings from avoiding catastrophic transformer failure.

Specification
SpecificationFRAX 101
Application FieldMedium and high-voltage substations and industrial environments
Operating Temperature-20°C to +55°C (-4°F to +131°F)
Storage Temperature-30°C to +70°C (-22°F to +158°F)
Humidity< 95% RH, non-condensing
CE-markingEMC 2004/108/EC, LVD 2006/95/EC
DC Power Supply11 - 16 V DC
AC Power Supply
Internal Battery49 Wh/4.4 Ah (optional)
Instrument Dimensions410 x 340 x 205 mm (16.1” x 13.4” x 8”)
Transport Case Dimensions520 x 460 x 220 mm (20.5” x 18.1” x 8.7”)
Instrument Weight1.95 kg (4.29 lbs) with battery
Case and Accessories Weight15 kg (33 lbs)
Test MethodSweep frequency (SFRA)
Frequency Range0.1 Hz - 25 MHz, user selectable
Frequency Resolution0.01%
Frequency Accuracy0.01% (measurement error)
Level Resolution0.001 dB
Number of PointsDefault 1046, Up to 32,000 points, user selectable
Measurement TimeDefault 64 s, fast setting, 37 s (20 Hz - 2 MHz)
Points SpacingLogarithmic, linear, or both
Sweep SettingsIndividual settings for customer defined frequency bands. Linear and logarithmic scale or combination of both
Internal Noise Level< -140 dB
Dynamic Range>150 dB
Accuracy±0.1 dB from +10 dB down to -40 dB, ±0.5 dB from -41 dB down to -100 dB
IF BandwidthUser selectable, default <10%
USBYes
BluetoothYes
FRAX SoftwareYes
Standards/Guides ComplianceIEC 60076-18, IEEE C57.149, DL/T 911, CIGRE TB 342
Ground Loop DetectionYes
Downloads
FAQs & How To

FAQs

It is used for transformer diagnostic testing to detect winding displacement, core issues, and internal mechanical changes.
It allows engineers to detect internal mechanical changes that standard electrical tests may not reveal.
You can buy it through uazon.ae from an authorized distribiutor offering genuine Megger equipment.
Yes, it is widely used for transformer diagnostics, maintenance evaluation, commissioning checks, and engineering analysis.

How To

Step-by-step guide for performing transformer diagnostic testing with the Megger FRAX101 Sweep Frequency Response Analyzer.

Estimated Time: PT15M

Make sure the transformer is safely isolated from service and prepared according to your testing procedure before connecting the analyzer.
Attach the Megger FRAX101 Sweep Frequency Response Analyzer leads to the required transformer terminals based on the selected test method.
Start the frequency response measurement and allow the instrument to capture the diagnostic response across the required range.
Compare the recorded response curves to identify possible winding movement, core changes, or other mechanical variations.
Save and review the test results for maintenance records, engineering analysis, and future comparison.
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