Search Results
Search this site
85 Ergebnisse gefunden mit einer leeren Suche
- High Current Unit | KPM India |High Current Unit
KPM India |We are electrical test equipment manufacturers, We deal in CT PT Analyzer, Relay Test Kit , Tan delta , Transformer Test Kits , LA Testers etc.|High Current Unit |https://kpmtek.wixsite.com/website/de/highcurrentunit Hochstromeinheit
- KPM Battery Testing Utility | Accurate Battery Diagnostics| Battery Testing ( Utility )
KPM battery testing utility ensures accurate performance analysis, reliable diagnostics, and efficient battery maintenance for industrial and electrical applications. BATTERIETESTKITS ( UTILITY ) Batteriewiderstand u Leitfähigkeitstester Kontaktiere uns BA-01 Batteriezustandsanalysator Der BA-01 Battery Condition Anlayzer ist ein aktualisierter Tester, der ein sehr effektives und wirtschaftliches Batteriemanagementgerät zum Testen des Batterieinnenwiderstands (oder der Leitfähigkeit) und der Spannung ist. Es hilft Ihnen, schwache Batterien zu eliminieren, um die Leistung Ihrer Batteriesysteme sicherzustellen. Es ist in der Lage, den Innenwiderstand (oder die Leitfähigkeit) von Batterien genau und konsistent zu messen, ventilgeregelte Bleisäure (VRLA), belüftete Bleisäure (VLA) und Ni-Cd-Batterien, die die Hauptbestandteile von kritischen Standby-Stromversorgungssystemen sind. Dieser Batterietester wird häufig von Dienstleistern, Betriebs- und Wartungsteams für Batteriemanagement und -messung eingesetzt, um die Leistungsintegrität in verschiedenen Branchen sicherzustellen Akku-Datenlogger Kontaktiere uns Batteriedatenlogger BDL ist ein aktualisierter Batteriedatenlogger, um die IEEE-Messstandards für Batteriespannung, Strangspannung, Strom und Umgebungstemperatur zu erfüllen. Es ist von 12 V bis 700 V für verschiedene Batteriesysteme angepasst. Und es lässt sich einfach für alle Batteriesysteme erweitern. Mit der WLAN-Kommunikation können Sie problemlos vollständige Daten anzeigen und Testberichte in der PC-Software erstellen. Für einen Schnelltest des Batterieinnenwiderstands/-leitwerts siehe auch BA-01 Batteriezustandsanalysator . Batterieladebank Kontaktiere uns KPM Batterieladebank Wir bieten eine Reihe kundenspezifischer Batterielastbänke mit vielen verschiedenen Modellen für Konstantstrom-Entladetests und Batteriekapazitätstests an. Sie decken einen weiten Spannungsbereich von 12V bis 480V Nennspannungen bei Strömen bis 600A ab. Sie sind in verschiedenen Branchen weit verbreitet. Mit dem optionalen Batteriedatenerfassungskoffer (DAC) können die Entladewerte JEDER Zelle gleichzeitig in der Batterieladebank und der PC-Software überwacht werden, indem die Datenansichtssoftware von KPM verwendet wird. Derselbe DAC in Batterieladebank kann auch unabhängig mit „String DAC“ arbeiten, um ein anderes Produkt herzustellen, Batteriedatenlogger BDL-3926C . Für einen Schnelltest des Batteriezustands siehe bitte BA-01 Batteriezustandsanalysator das den Innenwiderstand/Leitfähigkeit der Batterie in Sekunden testet. Häufig gestellte Fragen FAQ about all our battery utility : 01 What is the purpose of battery utility testing in backup power systems? Battery utility testing ensures the reliability, health, and performance of backup power systems used in utilities, substations, data centers, and critical infrastructure. Over time, batteries degrade due to factors like temperature, charge-discharge cycles, and age. Testing helps detect early signs of failure such as increased internal resistance, reduced capacity, or imbalance among cells. This enables timely maintenance or replacement, preventing unexpected power loss during outages. Utility testing validates whether batteries meet required discharge durations and ensures compliance with standards like IEEE 450 or IEC 60896. Regular testing minimizes downtime, enhances operational safety, and protects expensive downstream equipment. KPM provides advanced battery analyzers and constant current discharge kits designed for utility-scale battery banks. These instruments measure internal resistance, voltage, and capacity under load conditions. KPM’s systems are aligned with international testing standards and are used by utilities to perform periodic health checks, identify weak cells, and ensure uninterrupted power backup readiness. 02 What safety precautions must be taken during battery testing? Battery testing involves handling high voltages, currents, and hazardous chemicals, so strict safety precautions are essential. Always wear appropriate personal protective equipment (PPE) such as insulated gloves, eye protection, and flame-resistant clothing. Ensure proper ventilation, especially for lead-acid batteries that emit hydrogen gas during charging or discharging. Isolate the battery bank from the load before testing, and use insulated tools to prevent short circuits. Verify polarity before connecting test equipment to avoid damage or sparking. Never allow metal objects near open battery terminals. Maintain safe distances and use warning signs during high-current discharge tests. Monitor temperature rise and terminate testing if overheating or voltage instability is observed. Follow the manufacturer’s guidelines and applicable standards (IEEE, IEC) during every procedure. KPM’s battery analyzers and discharge testers are equipped with multiple safety features such as overcurrent protection, reverse polarity alarms, thermal cutoffs, and auto-shutdown. KPM also provides user training and safety documentation to ensure proper and secure operation. 03 How does internal resistance measurement indicate battery health? Internal resistance (IR) is the opposition a battery offers to current flow within its own structure. As batteries age or degrade, their internal resistance increases due to chemical wear, sulfation (in lead-acid), or electrode deterioration. Here's how it reflects battery health: Low IR = Healthy battery: Indicates good electrolyte condition, intact electrodes, and low energy loss during discharge. High IR = Degraded battery: Results in voltage drops under load, reduced capacity, and heat generation during operation. Rising IR over time signals aging or developing faults, even if voltage appears normal. Sudden spikes in IR may indicate failing cells or poor interconnections. Thus, internal resistance is a quick, non-invasive diagnostic metric used to identify weak or failing batteries before they cause critical power failures. KPM’s battery analyzers measure IR accurately across large battery banks, providing real-time indicators of cell health and enabling predictive maintenance. 04 What are the key parameters measured by a battery analyzer? A battery analyzer is used to assess the condition and performance of individual cells and complete battery banks. The key parameters it typically measures include: Internal Resistance (IR):Indicates the battery’s ability to deliver current. Higher resistance means deterioration or aging. Voltage (V): Measures the open-circuit voltage of each cell or unit to check state-of-charge and overall health. Conductance (optional): Used as an alternative to resistance in some analyzers to determine battery condition. Temperature (°C): Affects performance and safety. Monitoring ensures accurate readings and helps prevent overheating. State of Health (SoH): Some analyzers estimate the health of the battery based on historical and real-time data. Cell Imbalance: Detects inconsistencies among cells in a battery bank, which can lead to system failure. Ripple Voltage (if applicable): Monitors AC noise on DC lines, often in UPS and telecom systems. KPM’s battery analyzers measure all key parameters—internal resistance, voltage, temperature, and cell imbalance—with high accuracy. Features include: High-precision sensors and rugged design for utility environments, Built-in safety features (reverse polarity, overvoltage alerts), PC software for data logging, trending, and report generation. Widely used in substations, power plants, and telecom towers for preventive maintenance and health diagnostics. 05 Can battery conductivity testing detect early-stage cell degradation ? Conductivity is a measure of a battery’s ability to pass electrical current. In healthy batteries, conductivity is high because the internal chemical pathways are clean and efficient. As a cell begins to degrade (due to sulfation, corrosion, electrolyte breakdown, or plate shedding), these pathways become obstructed, causing conductivity to decrease—even before voltage or capacity noticeably drops. Early Detection: Changes in conductivity often occur before performance failures, allowing for early intervention. Identifies Weak Cells: It helps isolate underperforming cells within a battery bank. Prevents Failures: Enables predictive maintenance and avoids costly downtime. Monitors Aging: Tracks gradual degradation over time for lifecycle management. KPM’s advanced battery analyzers can perform conductivity or internal resistance-based diagnostics, depending on battery type. These tools help utility and industrial users identify subtle degradation trends early, plan timely maintenance, and ensure long-term battery reliability. 06 Why is constant current discharge testing crucial in critical power applications? Constant current discharge testing is essential because it directly evaluates a battery’s actual capacity and performance under load, simulating real-world power demands. In critical power applications—such as substations, hospitals, data centers, and telecom systems—batteries must supply reliable power during outages or switching events. If a battery cannot sustain the required current for the expected duration, it risks system failure, data loss, or equipment damage. Key reasons it’s crucial: Confirms True Capacity: Validates if the battery can deliver its rated ampere-hours (Ah) under specified load. Identifies Weak Batteries: Detects hidden degradation not revealed by voltage or internal resistance alone. Reveals Runtime Performance: Simulates backup duration under real conditions. Supports Preventive Maintenance: Enables data-driven decisions for battery replacement and servicing. KPM’s constant current discharge kits are designed for high-reliability environments. They offer programmable loads, auto cut-off, data logging, and safety features, ensuring accurate, safe, and standards-compliant capacity testing for critical backup systems. 07 How is the battery's capacity (Ah) validated through a discharge test? Battery capacity, measured in ampere-hours (Ah), is validated by discharging the battery at a constant current until it reaches its specified cut-off voltage. The total time it takes to reach that voltage determines the actual capacity using the formula: Capacity (Ah)=Discharge Current (A) × Discharge Time (hours) Example: If a battery is discharged at 10 A and it takes 5 hours to reach the end voltage, the delivered capacity is: 10 A × 5 hrs = 50 Ah This result is then compared to the battery’s rated capacity (e.g., 100 Ah). If it delivers significantly less, it indicates degradation or failure. KPM’s constant current discharge kits precisely control and monitor the discharge current and voltage. They record time-stamped data, auto-calculate Ah, and generate test reports. These tools comply with standards like IEEE 450, ensuring reliable capacity validation for utility and industrial batteries. 08 What role does ambient temperature play in discharge test accuracy? Ambient temperature has a significant impact on the accuracy and outcome of battery discharge tests. Battery performance is highly temperature-sensitive, particularly for lead-acid, lithium-ion, and Ni-Cd chemistries. At High Temperatures: Battery capacity appears higher because chemical reactions speed up. Can lead to overestimation of real-world performance. Increases the risk of thermal runaway or cell damage. At Low Temperatures: Capacity drops due to slower electrochemical activity. May result in underestimated performance and early cut-off in tests. Internal resistance rises, leading to voltage drops under load. Deviations from this temperature should be noted and corrected using manufacturer-specified compensation factors or software. KPM’s battery discharge testers and analyzers include temperature monitoring sensors. The system records ambient and cell temperatures during testing and can apply correction factors to ensure accurate capacity evaluation under varying environmental conditions. 09 How do we determine end-voltage for discharge cut-off? The end-voltage, or cut-off voltage, is the minimum voltage at which a battery should be discharged to avoid deep discharge damage and to ensure reliable capacity measurement. It is determined based on the battery type, rated capacity, discharge rate (C-rate), and manufacturer specifications. For example, a 12V lead-acid battery typically has an end-voltage of 10.5V (1.75V per cell) at standard rates. Discharging below this threshold can lead to irreversible sulfation, reduced life, or failure. In lithium-ion batteries, cut-off is often set higher (e.g., 2.5V–3.0V per cell) to protect cell chemistry and safety. The correct end-voltage ensures consistent and safe testing across different test cycles. It must also be adjusted for ambient temperature and load current, as higher loads can cause greater voltage sag. KPM’s discharge kits allow users to program end-voltage settings per battery specs. The system automatically halts testing at the preset voltage to prevent over-discharge and protect battery health. 10 How can test data be used to predict battery end-of-life? Battery test data—such as internal resistance, voltage, capacity, and temperature trends—can be analyzed over time to accurately predict end-of-life (EOL). A consistent increase in internal resistance and decline in capacity (Ah) are key indicators of aging. When a battery can no longer deliver at least 80% of its rated capacity, it is generally considered at the end of its useful life. Regular discharge tests and impedance measurements create a performance history that reveals degradation rates, enabling predictive analytics. By identifying abnormal changes, such as faster resistance rise in one cell compared to others, maintenance teams can isolate failing units early. Trend-based monitoring allows scheduling replacements before failures occur, ensuring reliability in critical applications. KPM’s analyzers and discharge kits offer data logging, graphing, and reporting features that help utilities and industries track battery health over time, enabling data-driven EOL prediction and proactive asset management.
- PD - HV Lab | KPM Engineering Sol.|PD - HV Lab
Expert high voltage testing and partial discharge (PD) analysis. KPM advanced HV lab provides precise diagnostic services to ensure insulation integrity and equipment reliability. Teilentladungsdetektor NON PD Capacitive Voltage Divider_edited Non PD Capacitive Voltage Divider KPM Non PD Transformer Non PD Test Transformer Calibrator PD Calibrator Non PD Coupling Capacitor01 Non PD Coupling Capacitor Motor driven contact type voltage regular Motor driven contact Motor driven contact type voltage regula Motor driven contact type voltage regular Measuring Impedance Measuring Impedance Intermediate Transformer Intermediate transformer KPM PDA-01 Digital PD Monitor KPM PDM-01 Analog PD Monitor KPM Current Input unit High Current Input Unit
- Test Equipment Applications | KPM Engineering Sol.
Our test equipment covers various applications such as relay testing, circuit breaker testing, CT/PT Testing, Earth Testing, Partial Discharge Testing, Transformer Testing, Energy Meter Testing, Li Ion Battery Testing, Utility Battery Testing. POWER SYSTEM TESTING SOLUTIONS Cable LA Meter TRF Relay Machine Battery Testing GIS Circuit Breaker Tap Changer Monitor Testing EV Partial dischage CT/PT Earth testing
- Servicesupport
In KPM Engineering Solution Pvt. Ltd our solutions are Thermal Imager camera, fever monitoring solution, Relay Test Kit, CT/PT Analyzer, Oil BDV, Transformer Testing , Circuit Breaker Testing, LA Testing, Ground Testing, Partial Discharge Testing. Visit www.kpmtek.com for details Technical support and services Localized Service Center A Key to Success for Hi-Tech Equipment Providers Relay Test Kits CT/PT Analyzers Tan Delta Kits And other advanced diagnostic instruments. With local spare parts availability, we ensure fast turnaround times and reliable repairs, resulting in minimal downtime and maximum customer satisfaction. At KPM, we believe that a localized service center is crucial to the success of any high-tech equipment provider. We take pride in operating a state-of-the-art service center with over 10 years of experience in the repair and maintenance of critical testing equipment, including: Contact Us
- SF6 Gas Testing Equipment by KPM | Gas Analysis & Detection|SF6 Gas Test Equipment
KPM SF6 gas test equipment ensures accurate measurement, reliable diagnostics, and efficient monitoring for electrical and industrial applications. SF6-GAS (GIS) PRÜFGERÄTE SF6-Gasanalysator Technische Spezifikationen -: 1. SF6-Reinheit: 0 ~ 100 % SF6 (Gewichtsverhältnis) 2. SF6-Zersetzungsprodukte: 1.SO2: 0~200ppm; 2.H2S: 0~200ppm; 3.HF: 0~10ppm; 4.CO :0 ~ 1000ppm; 3. Messgenauigkeit a) SF6-Reinheit: ±0,1 %, unabhängig vom Durchfluss; b) SF6-Zersetzungsprodukte: 0,1 ppm; 4) Reaktionszeit a) SF6-Reinheit: 30 s; b) SF6-Zersetzungsprodukte:10~15s。 Kontaktiere uns SF6 Taupunktmessgerät (KPM DPM-01) Weit verbreitet in Werkstätten, Büros, Anlagen, Computerstationen, Labors und Lagern. Das tragbare Taupunktmessgerät KPM-DPM-82H wird für Stichprobenanwendungen und Feldkalibrierungen verwendet. Es bietet eine genaue und schnelle Messung für industrielle Taupunktanwendungen wie Druckluft, Sf6-Gas, _cc781905 -5cde-3194-bb3b-136bad5cf58d_Metallbehandlung, additive Fertigung sowie Lebensmittel- und Kunststofftrocknung. Vorteile-: Genaue Messung & schnelle Messzeit. Die Digitalanzeige liefert genaues Ablesen mit minimalem Fehler Großer Messbereich & hohe Auflösung. Die letzten Werte / max. Werte / min. Werte von Sowohl Feuchtigkeit als auch Temperatur werden automatisch gespeichert und können angezeigt werden. Die Verwendung haltbarer, langlebiger Komponenten, einschließlich eines robusten, leichten ABS-Kunststoffgehäuses, gewährleistet eine wartungsfreie Leistung über viele Jahre. Das Gehäuse wurde sorgfältig geformt, um bequem in beide Hände zu passen. Kontaktiere uns SF6 Taupunktmessgerät (KPM DPM-01) Technische Spezifikationen -: KPM-DPM-01 verwendet importierte kapazitive Feuchtigkeitssensoren und Mikrocomputertechnologie. It wurde als intelligentes Feuchtigkeitsspurenmessgerät mit guter Leistung entwickelt. Seine Bedienung ist einfach und es hat die Funktion der Konvertierung zwischen Td, RH, PPM und Software-Upgrade. Der Detektor kann für Luftfeuchtigkeitstests einschließlich Luft, Stickstoff, Inertgas und jede Luft, die kein korrosives Medium enthält, verwendet werden, insbesondere für den Feuchtigkeitstest von SF6-Luft. Merkmale Nullpunkt- und Steilheitsselbstkalibrierung nach dem Start, Taupunktkalibrierung durch Einzelpunktweg für den gesamten Bereich (patentierte Technologie) Einzigartiges Design des Gaskreislaufs, gute Gasdichtheit und -durchlässigkeit, Wasserbeständigkeit. Großer TFT-Flüssigkristall zeigt den Taupunktwert und die entsprechende relative relative Luftfeuchtigkeit in % an Feuchtigkeitswert, PPM-Feuchtigkeitswert Messdatenspeicherung und -abfrage Intelligente Stromaufforderung, intelligenter Ladeschutz Die Lithiumbatterie bietet eine lange Standby-Stromversorgung Kontaktiere uns Häufig gestellte Fragen (FAQ) FAQ about SF6 GAS testing : 01 Is SF6 Gas Testing: Health, Safety, and Environmental Implications? Sulfur hexafluoride (SF₆) is widely used as an insulating and arc-quenching gas in high-voltage switchgear due to its excellent dielectric properties. However, SF₆ is a potent greenhouse gas, with a global warming potential over 23,000 times that of CO₂. Hence, rigorous testing and handling are essential for environmental compliance and personnel safety. Key SF₆ tests include moisture content, purity, and decomposition products (like SO₂ and HF), which help detect gas leakage, contamination, or insulation failure. Exposure to decomposition byproducts can pose health hazards such as respiratory irritation or chemical burns, necessitating strict handling protocols and personal protective equipment (PPE). KPM offers advanced SF₆ gas analyzers that measure purity, moisture, and decomposition gases in accordance with IEC 60376 and 60480 standards. With portable, user-friendly designs and accurate sensors, KPM’s instruments support safe operation, environmental responsibility, and preventive maintenance of gas-insulated systems. 02 What Is a Dew Point Meter and Why Is It Essential for SF6 Systems? A dew point meter is a device that measures the dew point, the temperature at which air becomes saturated and water vapour condenses into liquid water. In SF6 (sulfur hexafluoride) systems, dew point meters are crucial for monitoring moisture levels, as even small amounts of water can lead to hydrolysis, forming corrosive byproducts like hydrofluoric acid, which damage insulation and metal components. Excess moisture can also reduce the dielectric strength of SF₆, increasing the risk of flashovers and system failures. Regular dew point monitoring ensures that SF₆ gas remains dry and stable, extending the lifespan of high-voltage equipment like GIS (Gas Insulated Switchgear). KPM's Dew Point Meters provide fast, accurate, and reliable measurements, with robust sensors designed for field and laboratory use. These meters help utilities maintain safety, reliability, and regulatory compliance, making them an essential part of preventive maintenance in SF₆ systems. 03 What is PQ analyzer , how it is different than Power recorders ? A Power Quality Analyzer and a Power Recorder may appear similar at first glance, but they serve distinct purposes in electrical diagnostics and monitoring. A Power Quality Analyzer is specifically designed to detect, analyze, and troubleshoot disturbances in the power system such as voltage sags, swells, transients, harmonics, flicker, unbalance, and frequency deviations. These analyzers are equipped with high-speed sampling capabilities, waveform capture, and harmonic spectrum analysis tools, making them ideal for identifying and resolving issues that can affect the performance or lifespan of sensitive electrical equipment. They are also commonly used for compliance monitoring against standards like EN 50160 or IEEE 519. In contrast, a Power Recorder is primarily used for long-term logging of power parameters such as voltage, current, power (kW, kVA, kVAR), and energy consumption. Its focus is more on load studies, energy audits, and identifying usage patterns over time rather than real-time disturbances or quality issues. Power Recorders usually measure and log RMS values at set intervals and are not typically equipped to detect fast transients, harmonics, or waveform-level events. While some overlap exists—many modern Power Quality Analyzers also offer recording functionality—the key difference lies in the depth of analysis. A Power Quality Analyzer is a diagnostic tool used when there’s a suspected problem or for verifying power quality compliance, whereas a Power Recorder is more of a monitoring tool for tracking energy use and system loading trends over time. 04 How Harmonics Affect Transformer Performance? Effects of Harmonics on Transformer Performance Increased Heating (Core and Copper Losses): Harmonics cause additional eddy current and hysteresis losses in the transformer core and I²R losses in the windings due to the skin effect and proximity effect. This leads to excessive heating, even when the transformer is operating within its rated current. This can reduce transformer lifespan or even cause thermal failure. Reduced Efficiency: As harmonic losses increase, the overall efficiency of the transformer drops. It may appear to be operating under normal conditions in terms of RMS values, but real power losses are higher. Derating of Transformer: To compensate for the increased losses due to harmonics, transformers are often derated (i.e., used at less than their nameplate capacity) when supplying non-linear loads. IEEE Std C57.110 provides guidelines for calculating the required derating. Increased Vibration and Noise: Harmonics can cause magnetostriction effects in the transformer core, resulting in audible noise and mechanical vibration, which can be especially problematic in sensitive environments. Insulation Stress and Aging: Repeated thermal cycling due to harmonic-induced heating stresses the insulation system, accelerating insulation degradation and reducing transformer life expectancy. Neutral Overload (in 3-phase systems): In systems with significant triplen harmonics (3rd, 9th, 15th...), these components add arithmetically in the neutral conductor. This can cause the neutral to overheat, even if the phase conductors are within limits. Incorrect Protective Relay Operation: Harmonic distortion can interfere with current and voltage sensing used in protective relays, leading to nuisance tripping or failure to trip during faults. 05 What are Real-World Applications of PQ Recorders? Real-World Applications of Power Quality (PQ) Recorders 1. Load Profiling and Energy Audits PQ recorders are commonly used to monitor energy consumption patterns over time. This helps identify peak demand periods, base loads, and inefficiencies, supporting energy optimization and cost savings. 2. Electrical System Commissioning During commissioning of new installations—such as switchboards, transformers, or generators—PQ recorders verify voltage levels, current balance, and overall system performance to ensure proper operation. 3. Capacity Planning and Expansion Before adding new electrical loads, PQ recorders assess whether existing infrastructure can support the additional demand. This prevents overloading and supports informed upgrade decisions. 4. Renewable Energy Integration In solar and wind power systems, PQ recorders monitor output stability, voltage, and frequency to ensure grid compliance and smooth integration with the main supply. 5. Troubleshooting Intermittent Issues When power issues such as flickering, nuisance tripping, or undervoltage occur, PQ recorders help log and analyze events that may not be immediately visible during spot checks. 6. Utility Billing Verification PQ recorders provide accurate data for verifying utility charges, particularly demand-based billing and power factor penalties, helping avoid disputes or overcharges. 7. Temporary Power Monitoring For construction sites, events, or mobile power setups, PQ recorders ensure temporary supplies are stable, safe, and suitable for operational requirements. 8. Preventive Maintenance and Trend Analysis Long-term monitoring enables early detection of issues like increasing unbalance or loading trends, allowing for proactive maintenance before failures occur. 06 What are the Benefits of 24/7 Power Quality Monitoring? Benefits of 24/7 Power Quality Monitoring : 1. Continuous Visibility Real-time tracking of voltage, current, harmonics, and disturbances ensures you always have a clear picture of system health — without waiting for issues to escalate. 2. Early Fault Detection Continuous monitoring helps detect developing issues like transformer overload, harmonic distortion, or voltage imbalance before they cause damage or downtime. 3. Minimizes Unplanned Downtime By identifying power disturbances early, 24/7 PQ monitoring reduces the risk of equipment failure, production loss, or service interruption. 4. Improves Equipment Lifespan Stable power quality reduces stress on motors, drives, UPS systems, and sensitive electronics — extending their service life and reducing maintenance costs. 5. Supports Root Cause Analysis Historical event logs and waveform captures make it easier to trace the cause of faults, helping engineers respond faster and more accurately. 6. Compliance & Reporting Automated recording helps meet regulatory standards (e.g., EN 50160, IEEE 519) and supports internal audits or external quality reports. 7. Energy Efficiency Optimization By continuously monitoring power factor, load balance, and harmonic content, users can implement corrective actions to reduce losses and improve system efficiency. 8. Informs Investment Decisions Reliable long-term data helps justify infrastructure upgrades, sizing of backup systems, or addition of filters and stabilizers.
- Non PD Transformer | KPM India |Non PD Transformer
KPM India |We are electrical test equipment manufacturers, We deal in CT PT Analyzer, Relay Test Kit , Tan delta , Transformer Test Kits , LA Testers etc.|Non PD Transformer |https://kpmtek.wixsite.com/website/de/nonpd-transformer Nicht-PD-Transformator
- Demo Registration | KPM India |Demo Registration
Register today for demonstrations of KPM Electrical Testing Equipment. Service-Anfrageformular
- Measuring Impedance | KPM India |Measuring Impedance
KPM India |We are electrical test equipment manufacturers, We deal in CT PT Analyzer, Relay Test Kit , Tan delta , Transformer Test Kits , LA Testers etc.|Measuring Impedance |https://kpmtek.wixsite.com/website/de/measuring-impedance Impedanz messen
- Testing Services | KPM India |Testing Services
All type of electrical testing and commissioning services Prüfungsdienste Prüfung und Inbetriebnahme Prüfung & Inbetriebnahme aller LV / HV / UHV Schalttafeln Schaltanlagen Mehrere Innen- und Außenstationen Gasisolierte Station [GIS] im Spannungsbereich von 400 V - 765 kV MS/NS-Generatoren Leistungstransformatoren Motoren Kondensatorbänke Reaktoren Kabel Isolatoren Blitzableiter CTs, PTs, CVTs, Leistungsschalter NG, NGT, Steuer- und Relaistafeln für Generator, FBus-Koppler, Bustransfer & Leitungssteuerung etc. Fragen Sie uns an Überwachung Kapazität & Tan Delta Sweep-Frequenzganganalyse [SFRA] Teilentladung Elektromagnetische Kernfehlererkennung [ELCID] Keilablenkung RSO-Test Surge-Vergleich DC-Hi-Pot-Test, Isolationswiderstand, Polarisationsindex. Fragen Sie uns an
- About Us | KPM Engineering Solutions Pvt. Ltd.|About Us
KPM ENGINEERING SOLUTIONS is electrical test equipment provider with strong support. Our solutions are Relay Test Kit, CT/PT Analyzer, Oil BDV, Tan delta , Circuit Breaker Analyzer, LA Testing,Partial Discharge Test Kit, Thermal Imager Camera, PIK, SIK, AC/DC HIPOT. Visit us @ www.kpmtek.com ÜBER KPM Bei KPM sind wir in den Bereichen Fertigung, Mehrwerthandel und Beratungsdienste tätig. Wir arbeiten mit weltweit führenden Forschungs- und Entwicklungs- und Produktionshäusern auf der ganzen Welt zusammen, um unseren geschätzten Kunden die besten und zuverlässigsten Lösungen vor die Haustür zu bringen. Seit 1992 ist KPM Engineering Solutions ein a führendes Unternehmen in der Elektroberatung und , das sowohl an Führung als auch an Entwicklung beteiligt ist. Wir sind stolz darauf, mit innovativen Ideen, bahnbrechender Technologie und Transparenz den Weg in eine effizientere Zukunft zu weisen. Wir haben an Dutzenden von Projekten mit dem Ziel gearbeitet, innovative technische Lösungen bereitzustellen. Wir sind eine Gruppe von Technokraten mit umfassender Verkaufs- und Anwendungserfahrung sowohl in der Hochspannungs- als auch in der Niederspannungs-Elektro-T & M-Industrie. Als genetisches Beratungsunternehmen für Elektrotechnik bieten wir unseren geschätzten Kunden Design- und Fehlerbehebungsdienste an für die letzten 1,5 Jahrzehnte. Unsere Beratung hat ein breites Kundenspektrum bedient, darunter Industrie, Krankenhäuser, Wohnanlagen, Bildungseinrichtungen, Dammprojekte usw. Bei KPM sind wir bestrebt, unseren Kunden präzise Ausrüstung für die richtige T & M-Anwendung bereitzustellen und dann als erster Ansprechpartner zu fungieren für jede Unterstützung im Zusammenhang mit dem Produkt . Bei Bedarf bietet unsere T&M-Abteilung und unsere Beratungsabteilung Mehrwertdienste wie Ergebnisinterpretation und Ursachenanalyse für DUT-Ausfälle (Device Under Test) an. In Kontakt kommen Our Team. Our team is a fantastic mix of experienced and mid-level professionals who work together like a well-oiled machine. They bring a blend of wisdom and fresh ideas to the table, making them unstoppable as they tackle any challenge that comes their way. S.C.Sharma - Chairperson M.Tech. Elec. HBTI Kanpur , 1985 B.Tech. Elec. MNREC, Allahabad, 1974 S.C Sharma is an experienced electrical engineer with technical consultancy background of 40+ years. His guidance is followed by KPM at policy & administrative level Pankaj Modi - Country Sales Head BE Electrical, Dr. A.P.J. Abdul Kalam Technical University, Lucknow, 2004 Pankaj is a seasoned sales professional with almost 20 years of experience in the testing & measuring equipment , automation, and Industry 4.0, IOT solutions industry. He is managing sales of KPM products at all India level. He is supported by the team of techno-sales engineers Kunal Sharma - Sr Tech. Consultant M.Sc. Electrical, Warsaw University of Technology - Poland , 2024 B.E Electrical, MDU India, 2006 Kunal is a seasoned techno sales professional with 15+ years of experience in sales, application and technical support to power utility customers all across the globe. He was recently granted his M.Sc. with final research thesis on "partial discharge measurement techniques" . Kunal is responsible for customer's technical satisfaction and is supported by the team of techno-sales engineers He is also responsible for KPM's technology tieups all across the globe. KPM Promotes Lifelong Learning: Sr. Consultant Achieves Master's in Electrical Engineering We are delighted to announce that our Sr. Consultant Mr. Kunal Sharma has completed his Master's in Electrical Engineering, with a distinguished project on "Methods for Measurement and Detection of Partial Discharge." from Warsaw University Of Technology , Poland. This significant achievement highlights his dedication and expertise in the field. Anchor 1 UNSERE FACHKOMPETENZ IST IHR VORTEIL
- Monitoring Solutions by KPM | Electrical System Diagnostics|Monitoring Tester
Advanced monitoring solutions by KPM for real-time system monitoring, diagnostics, and performance analysis in industrial applications. ONLINE-TE- UND ERDUNGSÜBERWACHUNG Penta PD - Teilentladungsdetektor Mehr wissen Penta PD Teilentladungsdetektor Teilentladungsdetektor Penta-PD ist ein idealer Partner für zustandsbasierte Wartungsprogramme. Teilentladungsdetektor Penta-PD enthält alle 5 Arten von Online-PD-Sensortechnologie. Informationen von mehreren Sensoren verleihen dem Teilentladungsdetektor Penta-PD die Vielseitigkeit, verschiedene Arten von TE in einer Vielzahl von Umspannwerksgeräten zu erkennen. Erkennungsbandbreite 1.TEV - Transiente Erdspannung, Bereich 3 ~ 100 MHz 2.UHF – Ultrahochfrequenz 300MHz~2000 MHz 3.UA – Ultraschall 40 ~ 200 KHz Messbereich 1.UA: -90~80dB 2. TEV: -80 ~ 10 dBm 3. UHF: -80 ~ 10 dBm. Sensor: a) Ultraschallsensor: 20~200 (kHz); b) EV-Sensor (Transient Earth Voltage): 5 ~ 100 MHz; c) UHF-Sensor: 300 ~ 2000 (MHz), mit gerichteter Empfangscharakteristik. Penta PD - Teilentladungsdetektor Mehr wissen Penta PD Teilentladungsdetektor Teilentladungsdetektor Penta-PD ist ein idealer Partner für zustandsbasierte Wartungsprogramme. Teilentladungsdetektor Penta-PD enthält alle 5 Arten von Online-PD-Sensortechnologie. Informationen von mehreren Sensoren verleihen dem Teilentladungsdetektor Penta-PD die Vielseitigkeit, verschiedene Arten von TE in einer Vielzahl von Umspannwerksgeräten zu erkennen. Erkennungsbandbreite 1.TEV - Transiente Erdspannung, Bereich 3 ~ 100 MHz 2.UHF – Ultrahochfrequenz 300MHz~2000 MHz 3.UA – Ultraschall 40 ~ 200 KHz Messbereich 1.UA: -90~80dB 2. TEV: -80 ~ 10 dBm 3. UHF: -80 ~ 10 dBm. Sensor: a) Ultraschallsensor: 20~200 (kHz); b) EV-Sensor (Transient Earth Voltage): 5 ~ 100 MHz; c) UHF-Sensor: 300 ~ 2000 (MHz), mit gerichteter Empfangscharakteristik. PQ-Analysator Light Mehr wissen Modell KPM PQ Light 1) Produktkomponententyp Mehrphasiger Hand-Leistungsmesser 2) Phasenbezeichnung 3PH4W (ohne In) 3PH3W 1PH2W (LN); 1PH2W(LL);1PH3W(LLN) 3. Geräteanwendung • Leistungsanalyse • Energiezähler 4. Eingangstyp • Externe Rogowski-Spule • Externer Stromwandler (nur 333 mV) 5. Anzeige 3,5-Zoll-TFT-Bildschirmanzeige 6. Abtastrate 8.000 Abtastungen pro Sekunde 7. Harmonische 52. Max 8. Mechanische Eigenschaften • Gewicht 350 g • Maße L x B x T: 21,5 x 10 x 3,5 cm PQ-Analysator + Mehr wissen Modell KPM PQ Light 1) Produktkomponententyp Mehrphasiger Hand-Leistungsmesser 2) Phasenbeschreibung 3PH4W (mit In) 3PH3W 1PH2W (LN); 1PH2W(LL);1PH3W(LLN) 3. Geräteanwendung • Leistungsanalyse • Energiezähler 4. Eingangstyp • Externe Rogowski-Spule • Externer Stromwandler (nur 333 mV) 5. Anzeige 3,5-Zoll-TFT-Bildschirmanzeige 6. Abtastrate 8.000 Abtastungen pro Sekunde 7. Harmonische 52. Max 8. PC-Konnektivität 8. Mechanische Eigenschaften • Gewicht 350 g • Maße L x B x T: 21,5 x 10 x 3,5 cm PQ-Analysator + Mehr wissen Modell KPM PQ Light 1) Produktkomponententyp Mehrphasiger Hand-Leistungsmesser 2) Phasenbeschreibung 3PH4W (mit In) 3PH3W 1PH2W (LN); 1PH2W(LL);1PH3W(LLN) 3. Geräteanwendung • Leistungsanalyse • Energiezähler 4. Eingangstyp • Externe Rogowski-Spule • Externer Stromwandler (nur 333 mV) 5. Anzeige 3,5-Zoll-TFT-Bildschirmanzeige 6. Abtastrate 8.000 Abtastungen pro Sekunde 7. Harmonische 52. Max 8. PC-Konnektivität 8. Mechanische Eigenschaften • Gewicht 350 g • Maße L x B x T: 21,5 x 10 x 3,5 cm Penta PD - Teilentladungsdetektor Mehr wissen Penta PD Teilentladungsdetektor Teilentladungsdetektor Penta-PD ist ein idealer Partner für zustandsbasierte Wartungsprogramme. Teilentladungsdetektor Penta-PD enthält alle 5 Arten von Online-PD-Sensortechnologie. Informationen von mehreren Sensoren verleihen dem Teilentladungsdetektor Penta-PD die Vielseitigkeit, verschiedene Arten von TE in einer Vielzahl von Umspannwerksgeräten zu erkennen. Erkennungsbandbreite 1.TEV - Transiente Erdspannung, Bereich 3 ~ 100 MHz 2.UHF – Ultrahochfrequenz 300MHz~2000 MHz 3.UA – Ultraschall 40 ~ 200 KHz Messbereich 1.UA: -90~80dB 2. TEV: -80 ~ 10 dBm 3. UHF: -80 ~ 10 dBm. Sensor: a) Ultraschallsensor: 20~200 (kHz); b) EV-Sensor (Transient Earth Voltage): 5 ~ 100 MHz; c) UHF-Sensor: 300 ~ 2000 (MHz), mit gerichteter Empfangscharakteristik. Penta PD - Teilentladungsdetektor Mehr wissen Penta PD Teilentladungsdetektor Teilentladungsdetektor Penta-PD ist ein idealer Partner für zustandsbasierte Wartungsprogramme. Teilentladungsdetektor Penta-PD enthält alle 5 Arten von Online-PD-Sensortechnologie. Informationen von mehreren Sensoren verleihen dem Teilentladungsdetektor Penta-PD die Vielseitigkeit, verschiedene Arten von TE in einer Vielzahl von Umspannwerksgeräten zu erkennen. Erkennungsbandbreite 1.TEV - Transiente Erdspannung, Bereich 3 ~ 100 MHz 2.UHF – Ultrahochfrequenz 300MHz~2000 MHz 3.UA – Ultraschall 40 ~ 200 KHz Messbereich 1.UA: -90~80dB 2. TEV: -80 ~ 10 dBm 3. UHF: -80 ~ 10 dBm. Sensor: a) Ultraschallsensor: 20~200 (kHz); b) EV-Sensor (Transient Earth Voltage): 5 ~ 100 MHz; c) UHF-Sensor: 300 ~ 2000 (MHz), mit gerichteter Empfangscharakteristik. PQ-Analysator + Mehr wissen Modell KPM PQ Light 1) Produktkomponententyp Mehrphasiger Hand-Leistungsmesser 2) Phasenbeschreibung 3PH4W (mit In) 3PH3W 1PH2W (LN); 1PH2W(LL);1PH3W(LLN) 3. Geräteanwendung • Leistungsanalyse • Energiezähler 4. Eingangstyp • Externe Rogowski-Spule • Externer Stromwandler (nur 333 mV) 5. Anzeige 3,5-Zoll-TFT-Bildschirmanzeige 6. Abtastrate 8.000 Abtastungen pro Sekunde 7. Harmonische 52. Max 8. PC-Konnektivität 8. Mechanische Eigenschaften • Gewicht 350 g • Maße L x B x T: 21,5 x 10 x 3,5 cm PQ-Analysator + Mehr wissen Modell KPM PQ Light 1) Produktkomponententyp Mehrphasiger Hand-Leistungsmesser 2) Phasenbeschreibung 3PH4W (mit In) 3PH3W 1PH2W (LN); 1PH2W(LL);1PH3W(LLN) 3. Geräteanwendung • Leistungsanalyse • Energiezähler 4. Eingangstyp • Externe Rogowski-Spule • Externer Stromwandler (nur 333 mV) 5. Anzeige 3,5-Zoll-TFT-Bildschirmanzeige 6. Abtastrate 8.000 Abtastungen pro Sekunde 7. Harmonische 52. Max 8. PC-Konnektivität 8. Mechanische Eigenschaften • Gewicht 350 g • Maße L x B x T: 21,5 x 10 x 3,5 cm PQ-Analysator + Mehr wissen Modell KPM PQ Light 1) Produktkomponententyp Mehrphasiger Hand-Leistungsmesser 2) Phasenbeschreibung 3PH4W (mit In) 3PH3W 1PH2W (LN); 1PH2W(LL);1PH3W(LLN) 3. Geräteanwendung • Leistungsanalyse • Energiezähler 4. Eingangstyp • Externe Rogowski-Spule • Externer Stromwandler (nur 333 mV) 5. Anzeige 3,5-Zoll-TFT-Bildschirmanzeige 6. Abtastrate 8.000 Abtastungen pro Sekunde 7. Harmonische 52. Max 8. PC-Konnektivität 8. Mechanische Eigenschaften • Gewicht 350 g • Maße L x B x T: 21,5 x 10 x 3,5 cm Häufig gestellte Fragen (FAQ) FAQ about Monitoring testing : 01 What is the use of online partial discharge (PD) monitoring of panels using TEV and contact ultrasonic methods? Online partial discharge monitoring of medium-voltage and high-voltage panels using TEV (Transient Earth Voltage) and contact ultrasonic methods is used to detect and localize internal insulation defects and surface discharges without shutting down the equipment. Here's how each method contributes: 1. TEV (Transient Earth Voltage) Method Use: Detects internal PD activity, especially within air-insulated switchgear (AIS) and cable terminations inside metal-clad panels. How it works? When PD occurs inside enclosed metal-clad gear, it emits fast-rising electromagnetic pulses that induce transient voltages on the metal surfaces. TEV sensors pick up these signals from outside the panel. Benefit: Non-invasive, detects internal voids, tracking, and corona effects. 2. Contact Ultrasonic Method Use: Detects surface discharges, such as corona or tracking, which emit high-frequency acoustic signals. How it works? A piezoelectric sensor placed on the panel surface detects ultrasonic noise generated by PD activity, even through the enclosure. Benefit: Helps locate poor insulation, loose connections, or contamination issues causing discharge on the surface. Combined Use – Why It Matters? Using both TEV and ultrasonic methods together enhances diagnostic accuracy: TEV gives insight into internal discharge severity and location. Ultrasonic confirms surface or near-surface PD sources and allows cross-verification. This dual-method approach is vital for: Preventive maintenance, Avoiding insulation failures, Improving switchgear reliability, and Extending equipment life without needing shutdowns.






