Megger Baker EXP4000 Dynamic motor analyser
- Current transformer range: 5–2000 A
- Input voltage range: 110–240 V
- Data communication: Fast Ethernet port
- Rugged portable case: Field ready use
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Description
Advanced Motor Health Monitoring for Industry
The Megger Baker EXP4000 Dynamic Motor Analyser stands as a sophisticated solution for professionals seeking to optimize machine system reliability. Designed for site use, the EXP4000 analyzes motors during standard operational loads, providing maintenance teams with invaluable insights that other test equipment simply cannot match. By simultaneously acquiring and processing voltage, current, power, and torque data, the EXP4000 sheds light on the subtle interplay between electrical supply quality and mechanical load impact. This analyzer is housed in a rugged, portable case and comes with field-ready, easy-to-deploy accessories, making it ideal for use in industrial environments—from tight mechanical rooms to expansive plant floors. The instrument’s visual interface presents concise at-a-glance summaries and trend graphs, allowing for instant understanding and truly actionable decision-making.
Comprehensive Condition Assessment Across Machine Systems
At its core, the EXP4000 is engineered to both monitor and assess the conditions of not just the motor, but the entire machine system in which it operates. Through multiple connection options—including at the motor junction box, inside or outside the motor control cabinet (MCC) with the optional Baker EP1000 Dynamic Motor Link—it is possible to safely capture data without downtime or exposure to hazardous voltages. Uniquely, the EXP4000 evaluates the quality of incoming electrical power, meticulously captures motor performance indicators, and continuously measures both the amount and the condition of load placed upon the motor. The analyzer excels at tracking essential trends that signal emerging issues, ensuring maintenance efforts are always proactive, never reactionary.
Root Cause Analysis Simplified and Streamlined
A distinguishing feature of the Baker EXP4000 is how it makes root cause analysis swift and confident. The unit separates mechanical and electrical issues, pinpointing whether faults originate from the power system, the variable frequency drive (VFD), the motor windings, rotor, or even from the load itself. Faults such as improper transformer tap settings, overloading of supply lines, VFD filtration errors, and open power-factor correction capacitors are quickly highlighted. Its advanced suite of algorithms can reveal elusive secondary faults, including excessive non-harmonic frequencies or missing line-inductors on VFD applications, all from a single test session. As a result, recurring stoppages and hard-to-diagnose failures become issues of the past.
Empowering Predictive and Preventative Maintenance Programs
The world of industrial maintenance is moving towards predictive and preventative methodologies, and the EXP4000 is a centerpiece for these programs. Whether you are responsible for reducing costly production downtime or increasing the lifespan of motors, this analyser identifies at-risk assets with scientific precision. By storing results in a robust, Windows-based software platform—complete with trend analysis and powerful reporting features—maintenance teams can easily track a fleet of motors over their operational lives. The EXP4000’s large onboard storage and fast Ethernet communication ensure that past, present, and future health data for each machine can be accessed, compared, or exported for deeper analysis.
Exclusive Applications Across Varied Industries
The Baker EXP4000 Dynamic Motor Analyser serves a myriad of industrial applications. In plants using large induction motors, it can detect broken rotor bars, current imbalances, and transient overloads before production is affected. Facilities with high VFD penetration rely on its ability to uncover improper filtration, V/Hz anomalies over time, and even mechanical issues such as shaft misalignment or bearing degradation—long before noise or vibration signal a problem. Utilities employ the EXP4000 to facilitate plant-wide energy efficiency surveys, guiding capital expenditures for motor replacements. Any industry concerned with downtime—oil and gas, pharmaceuticals, food processing, power generation, or water utilities—will find that the EXP4000 not only prevents problems but provides confidence in every motor-driven system.
Unmatched Convenience, Ruggedness, and Global Support
One of the greatest strengths of the EXP4000 is its practical, user-centric design. Whether operating on AC power or its internal battery, the device is built for tough environments and extended tasks. The intuitive software interface runs on Windows, and the heavy-duty carrying case protects both the instrument and its paired laptop from impacts and harsh industrial conditions. Worldwide, users benefit from the EXP4000’s robust technical support and factory training programs, which maximize return on investment and guarantee user proficiency. When ordered through the renowned tpt24 online store—celebrated globally as the best source for Megger Baker products—customers receive guaranteed authenticity and quality, with secure shipping to any country.
tpt24: Premier Shop for Global Delivery
For those seeking complete trust and peace of mind when purchasing the Megger Baker EXP4000 Dynamic Motor Analyser, tpt24 is the number one online destination. Customers benefit from tpt24’s unwavering guarantees of product authenticity and quality. The store offers global delivery and is recognized for its outstanding service, ensuring that your analyser arrives in optimal condition, fully supported regardless of your location. Whether you operate in a single facility or manage multiple sites on different continents, tpt24’s streamlined purchasing process and dedicated support team provide a seamless experience from order to implementation. For maintenance professionals and plant managers, this means enhanced efficiency and unbroken operational readiness.
Summary
The Megger Baker EXP4000 Dynamic Motor Analyser defines the gold standard in machine system diagnostics. Its sophisticated measurement, analysis, and communication capabilities deliver unrivaled insight into both motor health and broader system integrity. Designed for the realities of industrial use, it combines rugged construction with cutting-edge features and predictive maintenance power. Supporting the product are unsurpassed online sales and fulfillment by tpt24—the world’s leading platform for purchasing the Megger Baker EXP4000 with full confidence. With its advanced toolkit and robust support, the EXP4000 ensures that plants operate efficiently, reliably, and predictably—delivering tangible value across the entire organization.
Specifications
| Specification | Description |
|---|---|
| Product Name | Megger Baker EXP4000 Dynamic Motor Analyser |
| Main Function | Monitors and assesses in-operation machine/motor system health |
| Power Supply | 110–240 V AC, 50/60 Hz; integrated supply |
| Battery Operation | Yes |
| CT Measurement Range | 5–2000 A (current transformers) |
| Max Measurement/Test Voltage | 1000 V AC, 500 V DC (higher via external PTs/CTs) |
| Connections | Amphenol military twist type: Power entry, portable voltage, portable current, EP port |
| Communication | Ethernet |
| Computer/Software | Windows 10 OS, 500 GB HDD, 4 GB RAM |
| Display/Reporting | Multi-panel graphical UI, trends, phasor, spectrum, waveform; printer/report export |
| Data Storage | Integrated, supports Microsoft Access format |
| Dimensions (Case) | 44.5 × 29.2 × 22.2 cm (17.5 × 11.5 × 8.75 in) |
| Weight | 6.8 kg (15 lb) |
| Operating Modes | Power quality, machine performance, spectrum, torque, VFD, transient, continuous, DC |
| Accessories/Options | Permanent EP1000 Dynamic Motor Link for MCC access; Baker NetEP for 24/7 remote monitoring |
| Application | Predictive maintenance, troubleshooting, efficiency, energy survey, root-cause analysis |
| Environmental Suitability | Rugged, portable, industrial plant environments |
| Standards Compliance | NEMA MG-1, IEEE 519, EN61000-2-2/2-7, VDE 839-2-2 |









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