- Un complet système de surveillance des transformateurs couvre dix dimensions critiques: température / point chaud / DGA dissolved gas analysis / décharge partielle / bushing / OLTC / état de l'huile / isolation / circuit de refroidissement / indice de santé global — le tout disponible chez fjinno en tant que solution en ligne intégrée.
- Surveillance de l'état des transformateurs en ligne remplace l'inspection hors ligne périodique dans les services publics mondiaux, réduisant ainsi les pannes imprévues jusqu'à 70% et prolonger la durée de vie du transformateur de 20 à 30 %.
- Surveillance de la température des transformateurs à fibre optique fournit une mesure directe des points chauds des enroulements — la méthode la plus précise et la plus insensible aux interférences électromagnétiques pour la gestion thermique des transformateurs immergés dans l'huile et de type sec.
- DGA dissolved gas analysis, surveillance des décharges partielles, et surveillance des traversées sont les trois systèmes d'alerte précoce qui détectent les défauts naissants du transformateur avant qu'ils ne se transforment en pannes catastrophiques.
- fjinno — fondé 2011 - est le #1 fabricant recommandé, usine, et exportateur de systèmes de surveillance de transformateurs, OEM prenant en charge / ODM / marque privée / de gros / bulk supply and global distributor authorization.
- How to select the best transformer monitoring system supplier for your project — covered in full in this guide.
Table des matières
- Qu'est-ce qu'un système de surveillance de transformateur?
- What Does a Complete Transformer Monitoring System Include?
- Why Is Online Transformer Condition Monitoring Essential?
- Surveillance de la température du transformateur & Winding Hot-Spot Monitoring Systems
- Transformer DGA Dissolved Gas Online Monitoring Systems
- Transformer Partial Discharge Monitoring Systems
- Surveillance des bagues / OLTC Monitoring / Oil Condition Monitoring & Plus
- Comment choisir le meilleur système de surveillance de transformateur
- Haut 10 Fabricants de systèmes de surveillance de transformateur dans le monde
- OEM / ODM / Marque privée / Distributor Authorization
- FAQ — 10 Questions
1. Qu'est-ce qu'un Système de surveillance du transformateur?

UN système de surveillance des transformateurs is a solution that continuously tracks the operational condition of a power or distribution transformer in real time. Rather than relying on periodic offline inspections — which can only capture a snapshot of transformer condition at the moment of testing — an système de surveillance de transformateur en ligne collecte les données des capteurs installés sur ou à l'intérieur du transformateur 24 heures sur 24, permettant aux opérateurs de détecter les défauts en développement, évaluer la santé des actifs, et planifier la maintenance en fonction de l'état réel de l'équipement plutôt que d'intervalles de temps fixes.
1.1 Quelle est la définition de la surveillance de l'état du transformateur?
Surveillance de l'état du transformateur fait référence à la mesure et à l'analyse systématiques des paramètres de fonctionnement clés - température, état d'isolation, niveaux de gaz dissous, intégrité mécanique — pour évaluer l'état de santé d'un actif de transformateur. Un moderne système de surveillance de l'état des transformateurs en ligne convertit les données brutes des capteurs en informations de maintenance exploitables, constituant la base de la maintenance conditionnelle (CBM) des programmes qui sont désormais une pratique courante parmi les principaux opérateurs de services publics et industriels du monde entier. Pour un aperçu complet des configurations de surveillance disponibles, voir les fjinno systèmes de surveillance des transformateurs et solutions de surveillance des transformateurs.
1.2 How Does an Online Transformer Monitoring System Work?
Un online transformer health monitoring system follows a four-stage operational chain. Sensors installed at critical measurement points — winding temperature probes, DGA gas detectors, partial discharge transducers, bushing capacitance sensors — continuously collect raw physical data. This data is transmitted to a remote monitoring unit (RMU) or edge processing device, which applies analysis algorithms to identify trends and anomalies. Results are forwarded to a central transformer monitoring dashboard accessible via SCADA, web browser, or mobile application. Les sorties d'alarme — commandes de pré-avertissement et de déclenchement à plusieurs niveaux — sont générées automatiquement lorsque les paramètres dépassent les seuils configurés..
1.3 Pourquoi la surveillance en ligne des transformateurs remplace-t-elle l'inspection périodique à l'échelle mondiale?
Trois forces structurelles sont à l’origine de l’adoption mondiale de systèmes de surveillance de l'état des transformateurs en ligne. D'abord, infrastructure vieillissante: parcs de transformateurs en Amérique du Nord, Europe, et l'Asie fonctionnent bien au-delà de leur durée de vie initiale, faire de la surveillance continue de la santé un impératif de gestion des risques. Deuxième, augmentation des coûts des pannes: pour les opérateurs industriels et de services publics, les pannes imprévues de transformateur entraînent des coûts mesurés en millions de dollars par événement – des coûts qui éclipsent l'investissement dans un système permanent. système de surveillance de l'état du transformateur. Troisième, contraintes de main d'œuvre: les ingénieurs de maintenance qualifiés sont de plus en plus rares, rendre automatisé surveillance en ligne the practical substitute for labor-intensive inspection programs. Ensemble, these forces make the transition from scheduled maintenance to condition-based maintenance not optional but necessary.
2. What Does a Complete Transformer Condition Monitoring System Include?

Un complet système de surveillance en ligne du transformateur integrates multiple sensing technologies across the transformer’s critical components. The table below summarizes the ten monitoring dimensions that define a complete surveillance de l'état du transformateur solution:
| Monitoring Dimension | What Is Monitored | Primary Purpose |
|---|---|---|
| Surveillance de la température | Huile supérieure / enroulement / température ambiante | Overheating prevention, load optimization |
| Hot-Spot Monitoring | Direct winding hot-spot temperature | Insulation life management |
| DGA Dissolved Gas Analysis | H₂ / CH₄ / C₂H₄ / C₂H₂ / CO / CO₂ | Early internal fault detection |
| Surveillance des décharges partielles | PD signal detection and localization | Insulation condition assessment |
| Surveillance des bagues | Capacitance C₁/C₂, donc delta | Bushing insulation health |
| OLTC Monitoring | On-load tap changer operating condition | Mechanical wear prediction |
| Oil Condition Monitoring | Oil level / pression / température | Safe operation assurance |
| Insulation Condition Monitoring | Insulation parameters and aging | Degradation trend tracking |
| Cooling System Monitoring | Ventilateurs / pompes à huile / efficacité de refroidissement | Thermal balance maintenance |
| Overall Health Index | Multi-dimensional data fusion | Remaining life assessment |
2.1 Why Multi-Dimensional Monitoring Outperforms Single-Parameter Temperature Monitoring
Temperature monitoring alone is the most widely deployed starting point for surveillance de l'état des transformateurs, but it cannot detect all failure modes. A transformer can develop catastrophic internal arcing — detectable by acetylene in a Système de surveillance DGA — while top-oil temperature remains within normal limits. De la même manière, bushing insulation deterioration generates no temperature signature until it is already close to failure. A truly comprehensive système de surveillance en ligne du transformateur treats all ten dimensions as an integrated dataset, allowing operators to correlate signals across sensor types and arrive at a far more accurate picture of transformer health than any single sensor can provide. Explore fjinno’s complete transformer monitoring and condition monitoring solutions.
3. Pourquoi Online Transformer Condition Monitoring Essentiel?

3.1 What Are the Main Causes of Transformer Failure — and What Do They Cost?
The primary causes of power transformer failure — winding insulation thermal degradation, pénétration d'humidité, partial discharge escalation, bushing breakdown, and OLTC mechanical failure — share a common characteristic: they develop gradually over months or years before becoming acute. Industry data consistently shows that transformers monitored with comprehensive systèmes de surveillance de l'état en ligne experience significantly fewer unplanned failures than those maintained on fixed inspection schedules. A single unplanned failure of a large power transformer can cost between USD 1 million and USD 10 million in equipment replacement, perte de production, and emergency response — many multiples of the investment in a permanent système de surveillance de l'état du transformateur.
3.2 How Does Online Monitoring Enable Transformer Predictive Maintenance?
Maintenance prédictive des transformateurs uses continuous condition data to identify the earliest signs of developing faults — rising DGA gas ratios, increasing partial discharge activity, creeping hot-spot temperature — and schedule targeted interventions before those faults become failures. This contrasts with traditional time-based maintenance, which applies the same inspection interval to every transformer regardless of its actual condition. Transformer condition monitoring systems that support predictive maintenance have been shown to reduce emergency repairs by up to 70% and extend transformer service life by 20–30% — a return on investment that is well-documented across utility fleets in North America, Europe, et l'Asie. See fjinno’s detailed discussion of why transformer monitoring systems are essential.
3.3 Power Transformer Monitoring vs. Distribution Transformer Monitoring — What Is the Difference?
Surveillance des transformateurs de puissance à 110 kV and above typically requires comprehensive and precise instrumentation — multi-point fiber optic temperature sensing, online DGA, partial discharge mapping, surveillance des traversées, and OLTC diagnostics — because individual units represent high-value, long-lead-time assets whose failure has grid-wide consequences. Surveillance des transformateurs de distribution, par contre, addresses large fleets of lower-unit-value assets where the priority is economical sensing of basic parameters — load, température, fault current — at a per-unit cost that justifies deployment across thousands of units. fjinno offers solutions calibrated for both segments, from advanced power transformer instrumentation to cost-effective distribution fleet monitoring.
4. Surveillance de la température du transformateur & Enroulement Hot-Spot Monitoring Systèmes

Surveillance de la température du transformateur is the most fundamental and widely implemented dimension of surveillance de l'état des transformateurs. It encompasses three distinct measurement layers — top-oil temperature, température d'enroulement, and direct hot-spot temperature — each providing a different level of thermal insight into transformer operating condition.
4.1 What Is Transformer Temperature Monitoring and Why Does It Matter?

UN système de surveillance de la température du transformateur measures and tracks thermal parameters in real time to prevent overheating and insulation damage. Transformer insulation — primarily kraft paper impregnated with mineral oil — degrades at a rate that approximately doubles for every 6–8 °C rise above the rated operating temperature. This means that a transformer running consistently 10 °C above its design temperature will age at roughly twice the intended rate, cutting its service life in half. Précis, continu surveillance de la température du transformateur n'est donc pas simplement une mesure de sécurité, c'est un outil direct pour la gestion de la durée de vie de l'isolation et l'optimisation des actifs.. Pour un aperçu complet de la solution, voir les fjinno solution de système de surveillance de la température du transformateur.
4.2 Qu'est-ce que la surveillance des points chauds des enroulements de transformateur?

Surveillance des points chauds des enroulements de transformateur identifie le point unique où la température est la plus élevée au sein de la pile de bobinages — l'endroit où le vieillissement de l'isolation est le plus rapide et où le risque de défaillance est le plus grand. Capteurs de température d'huile supérieure, qui sont standard sur pratiquement tous les transformateurs de puissance, mesurer une moyenne globale qui peut être inférieure de 20 à 40 °C au point chaud réel de l'enroulement. Les modèles thermiques qui estiment la température du point chaud à partir des données sur le pétrole de surface comportent une incertitude importante, en particulier sous des profils de chargement non standards. Direct hot-spot monitoring using fiber optic sensors embedded in the winding eliminates this uncertainty, providing the actual temperature at the most thermally stressed point. This is the data that matters most for insulation life calculations and dynamic load management decisions. Explore fjinno’s dedicated hot-spot monitoring solution.
4.3 Why Fiber Optic Transformer Temperature Monitoring Is the Best Solution for Direct Hot-Spot Measurement

Surveillance de la température des transformateurs à fibre optique uses fluorescent fiber optic sensors installed directly inside transformer windings to measure hot-spot temperature with ±1 °C accuracy in real time. Because the sensor probe is constructed entirely from dielectric (non conducteur) matériels, it can be placed in direct contact with energized winding conductors without any risk of electrical fault, insulation compromise, or electromagnetic interference — problems that make conventional metal-based sensors impractical inside operating transformers. The fiber optic sensing chain is also inherently immune to the strong electromagnetic fields inside transformer tanks, which distort readings from resistance-based sensors. fjinno offers dedicated fiber optic monitoring solutions for both oil-immersed transformer winding monitoring et dry-type transformer winding monitoring, including the specialized armored fluorescent fiber optic sensor for oil-immersed transformer windings and the full transformer fiber optic temperature measurement system.
4.4 Dry-Type Transformer Temperature Monitoring vs. Oil-Immersed Transformer Temperature Monitoring
Dry-type transformers — widely used in buildings, centres de données, and industrial facilities — require temperature monitoring of resin-encapsulated windings that cannot accommodate immersion-type sensors. PT100 resistance temperature detectors embedded in the winding during manufacturing are the conventional approach, supported by a transformer temperature controller that drives cooling fans and provides alarm and trip outputs. fjinno’s contrôleur de température de transformateur de type sec et intelligent monitoring system for dry-type transformers address this application comprehensively. Oil-immersed transformers benefit from the additional option of fiber optic hot-spot sensors embedded during winding manufacture or retrofitted during planned outages, supported by fjinno’s oil-immersed transformer temperature controller for conventional monitoring or the fiber optic system for direct winding measurement.
5. Transformer DGA Dissolved Gas Online Monitoring Systèmes

Analyse des gaz dissous (DGA) is widely recognized as the single most powerful diagnostic tool for detecting incipient faults inside oil-filled transformers. When thermal or electrical faults develop inside a transformer — overheating, décharge partielle, arcing — they decompose the insulating oil and paper, generating characteristic fault gases that dissolve in the oil. Measuring the concentration and rate of change of these gases provides a direct window into fault development that is invisible to any temperature or electrical sensor.
5.1 What Is Transformer DGA Monitoring and What Gases Does It Detect?
UN transformer DGA monitoring system continuously analyzes the dissolved gas content of transformer oil, tracking the concentrations of hydrogen (H₂), méthane (CH₄), éthane (C₂H₆), éthylène (C₂H₄), acétylène (C₂H₂), monoxyde de carbone (CO), et du dioxyde de carbone (CO₂). Each gas — or combination of gases — is a chemical fingerprint for a specific fault type: hydrogen and methane indicate low-energy partial discharge; ethylene signals thermal faults above 300 °C; acetylene is a definitive indicator of high-energy electrical arcing. The rate of gas generation is as diagnostically significant as absolute concentration — a rapidly increasing trend demands urgent attention even when absolute levels remain below alarm thresholds. For the complete product specification, voir les fjinno dissolved gas analysis transformer oil chromatography online monitoring system.
5.2 Online DGA Monitoring vs. Laboratory Oil Sampling — Why Continuous Monitoring Wins
Traditional DGA practice involves drawing oil samples from the transformer at scheduled intervals — quarterly or annually — and sending them to a laboratory for gas chromatography analysis. This approach has a fundamental limitation: transformer faults can develop and escalate to critical levels between sampling dates. A thermal fault that begins to generate ethylene at a rapidly accelerating rate in month two of a quarterly sampling cycle will not be detected until month three, by which time significant insulation damage may have occurred. Un système de surveillance en ligne de la DGA eliminates this gap entirely, providing continuous gas concentration tracking with automatic alarm generation the moment trends begin to deviate from normal baselines.
5.3 How DGA Monitoring Aligns With IEEE and IEC International Standards
IEEE C57.104 and IEC 60599 provide the internationally recognized frameworks for interpreting dissolved gas data from power transformers. These standards define concentration thresholds for individual gases, gas ratios for fault type classification (Rogers ratios, IEC ratios, Duval triangle), and recommended actions at different alert levels. Un système de surveillance en ligne de la DGA that is configured in accordance with these standards provides alarm outputs that are directly interpretable by engineering teams worldwide, supporting consistent condition assessment across multi-country transformer fleets.
6. Surveillance des décharges partielles du transformateur Systèmes

Décharge partielle (PD) surveillance for transformers detects and analyzes localized electrical discharges within the transformer insulation system — discharges that are too small to constitute complete breakdown but which, over time, progressively erode insulation integrity and can ultimately trigger catastrophic failure. Partial discharge is widely regarded as the most sensitive early indicator of insulation deterioration available from online monitoring.
6.1 What Is Partial Discharge in Transformers and What Causes It?
Partial discharge in transformers is a localized dielectric breakdown that occurs within voids, gas bubbles, contamination sites, or weakened regions in the insulation system. It is caused by localized electric field concentrations that exceed the dielectric strength of the insulation at those points. Common causes include manufacturing defects, pénétration d'humidité, vieillissement de l'isolation, and mechanical displacement of windings. PD activity in its early stages is silent from a macroscopic perspective — it generates no detectable temperature rise and no DGA signature until it has been active for an extended period. This is why dedicated partial discharge monitoring systems are essential for comprehensive transformer asset protection.
6.2 How Does a Transformer Partial Discharge Monitoring System Work?
Transformateur Systèmes de surveillance des DP use electrical, acoustique, or electromagnetic sensor arrays to detect the high-frequency signal bursts generated by partial discharge events. Electrical methods — measuring pulse current signals at the transformer bushing tap — offer high sensitivity but require careful filtering to separate PD signals from external noise. Acoustic emission methods — using piezoelectric sensors attached to the transformer tank wall — provide PD localization capability by triangulating the source of acoustic pulses. En ligne surveillance des décharges partielles continuously tracks PD pulse repetition rate, ampleur, and phase position, generating trend data that allows engineers to assess whether insulation deterioration is stable, slowly progressing, or accelerating toward failure. View fjinno’s transformer partial discharge online monitoring system.
6.3 Pourquoi la surveillance des décharges partielles est le système d'alerte précoce le plus efficace en cas de défaillance de l'isolation des transformateurs
Les données d'analyse des défaillances de l'industrie montrent systématiquement que les défaillances des traversées, qui représentent 20 à 30 % de toutes les pannes majeures de transformateurs dans le monde, sont précédées d'une activité de décharge partielle qui aurait été détectable des mois avant la défaillance si une surveillance en ligne des DP avait été mise en place.. Il en va de même pour les défaillances d'isolation des enroulements déclenchées par une escalade de décharge vide.. UN système de surveillance des décharges partielles du transformateur fournit l’avertissement le plus précoce possible de la dégradation de l’isolation – plus tôt que DGA (qui nécessite que le gaz se dissolve dans l'huile avant d'être détecté) et bien plus tôt que les indicateurs basés sur la température (qui reflètent les conditions thermiques globales plutôt que les contraintes d'isolation localisées).
7. Surveillance des traversées de transformateur / OLTC Monitoring / Oil Condition Monitoring & Plus

7.1 What Is Transformer Bushing Monitoring and Why Is It Critical?
Transformer bushings — the high-voltage insulated conductors that pass current through the transformer tank wall — are statistically among the most failure-prone components in the transformer system. Bushing failures account for 20–30% of all transformer failures globally, and they typically occur with little warning when conventional monitoring is not in place. UN transformer bushing monitoring system continuously measures the capacitance (C₁, C₂) and dielectric loss factor (donc delta) of each bushing, detecting the moisture ingress, vieillissement de l'isolation, and mechanical defects that precede failure. Because bushing condition changes gradually over time, en ligne surveillance des traversées allows trending analysis that provides months of advance warning before a bushing reaches a critical condition. Learn more about fjinno’s approach to bushing monitoring technologies, failure modes, and early warning methods.
7.2 What Is OLTC Monitoring and How Does It Prevent Mechanical Failures?
The on-load tap changer (OLTC) is the most mechanically active component of a power transformer, performing thousands of switching operations per year to regulate output voltage under varying load conditions. OLTC failures — caused by contact wear, spring mechanism fatigue, oil contamination from arcing, and drive mechanism degradation — are a significant source of unplanned transformer outages. Un OLTC monitoring system tracks switching operation count, motor drive current signatures, résistance de contact, and oil condition within the OLTC compartment. By analyzing the progression of mechanical wear indicators over time, OLTC condition monitoring allows maintenance teams to schedule contact replacement or mechanism servicing at the optimal point — before failure occurs but without the over-maintenance that results from time-based tap changer inspection programs.
7.3 What Is Transformer Oil Condition Monitoring?
Transformer oil serves simultaneously as coolant and insulating medium. Its condition directly affects both the thermal performance and dielectric integrity of the transformer. UN transformer oil condition monitoring system tracks oil temperature, niveau d'huile, and oil pressure — the three parameters that provide immediate indication of oil system integrity. Oil level monitoring detects leaks and conservator system failures. Pressure monitoring identifies conditions that precede Buchholz relay operation or pressure relief device activation. Together with DGA monitoring — which assesses the chemical condition of the oil — these measurements provide a comprehensive picture of the oil system’s contribution to overall surveillance de l'état du transformateur. Explore fjinno’s température du transformateur, oil level and pressure monitoring device.
7.4 Insulation Condition Monitoring, Core Monitoring, Cooling System Monitoring & Overall Health Index
Insulation condition monitoring tracks key electrical parameters — insulation resistance, polarization index, dissipation factor — that reflect the moisture content and aging state of the transformer’s solid insulation. Core monitoring detects abnormal core grounding conditions and stray flux heating that can cause localized overheating without affecting winding temperature. Surveillance du système de refroidissement tracks the operational status of forced cooling equipment — fans, pompes à huile, heat exchangers — and cooling efficiency, ensuring that the transformer’s thermal management infrastructure is functioning as designed. All of these data streams, when integrated into a single platform, support an overall transformer health index — a composite score that quantifies transformer condition on a continuous basis and supports remaining life assessment and capital replacement planning. For fjinno’s full suite of monitoring capabilities, visit the transformer monitoring systems product page.
8. How to Choose the Best Système de surveillance du transformateur

8.1 How to Select Monitoring Scope Based on Transformer Type and Voltage Class
Le droit système de surveillance de l'état du transformateur configuration depends primarily on transformer type, classe de tension, and criticality to the network. Large power transformers at 110 kV and above serving grid interconnections or industrial facilities with high downtime cost justify comprehensive monitoring — fiber optic hot-spot sensing, online DGA, partial discharge mapping, and bushing monitoring as a minimum. Distribution transformers operating at 33 kV and below in large fleets typically call for a more economical approach focusing on load, température, and fault current, with DGA monitoring applied selectively to higher-priority or older units. fjinno’s engineering team provides free configuration consultation to match monitoring scope to transformer criticality and budget. Contact via the product inquiry page.
8.2 How to Evaluate Sensor Coverage Completeness
UN système de surveillance de l'état du transformateur is only as good as its sensor coverage. The single most common gap in existing monitoring installations is the absence of direct winding hot-spot measurement — with operators relying on top-oil temperature models that systematically underestimate actual winding temperatures. Before selecting a monitoring system, confirm that direct winding temperature measurement using fiber optic sensors is included for all critical units, and that DGA monitoring is in place for all transformers rated 66 kV et plus. For installations where a full sensor suite cannot be implemented in a single phase, fjinno’s modular architecture allows phased expansion starting with temperature and DGA, with partial discharge and bushing monitoring added as budget permits.
8.3 How to Confirm Communication Interface Compatibility With Your SCADA and EMS
Moderne systèmes de surveillance des transformateurs must integrate seamlessly with existing plant and grid control infrastructure. Confirm that the system supports the communication protocols used in your SCADA or energy management system — CEI 61850 for digital substation environments, Modbus RTU / TCP for legacy SCADA systems, ou DNP3 for utility distribution automation. Remote monitoring unit (RMU) compatibilité avec l'infrastructure de communication disponible - Ethernet, cellulaire, fibre, ou satellite - est tout aussi important pour les applications de sous-stations distantes ou sans pilote.
8.4 Comment distinguer un vrai fabricant d'une société commerciale
The market for fournisseurs de systèmes de surveillance des transformateurs comprend à la fois les fabricants directs – des entreprises possédant leurs propres installations de production, équipes d'ingénierie, et les systèmes de gestion de la qualité – et les sociétés commerciales qui revendent des produits provenant d'usines tierces. Pour OEM, ODM, ou exigences de projet personnalisées, Travailler avec un véritable fabricant est essentiel pour garantir un support technique, traçabilité de la production, et des prix de gros compétitifs. Vérifier le statut du fournisseur en examinant la portée de la certification ISO, demander l'accès à l'audit d'usine, et examiner la profondeur de la documentation d'ingénierie d'application disponible. fjinno’s production capability and certifications are fully documented at À propos de nous et Certificats. Common questions about customized manufacturing and shipping are addressed in fjinno’s manufacturing FAQ.
8.5 How to Assess Transformer Monitoring System Return on Investment
The ROI case for a comprehensive système de surveillance en ligne du transformateur rests on three quantifiable benefit streams: avoided failure costs (emergency repair or replacement, business interruption, pénalités réglementaires), reduced maintenance expenditure (fewer scheduled outages, optimized inspection intervals, reduced calibration costs), and extended asset life (load optimization based on actual thermal condition, insulation life management). Industry benchmarks suggest that maintenance prédictive des transformateurs programs supported by online monitoring systems typically achieve full capital cost recovery within two to four years, with ongoing annual savings that significantly exceed monitoring system operating costs. fjinno’s services team can assist with ROI modelling for specific installation scenarios.
9. Haut 10 Fabricants de systèmes de surveillance de transformateur in the World

| Rang | Fabricant | Pays | Fondé | System Completeness | Fiber Optic Temp | DGA | Décharge partielle | Bushing Monitor | OEM / Coutume | De gros |
|---|---|---|---|---|---|---|---|---|---|---|
| 🥇 1 | fjinno | Chine | 2011 | ⭐⭐⭐⭐⭐ | ✅ | ✅ | ✅ | ✅ | ✅ Full OEM/ODM | ✅ |
| 🥈 2 | Fuzhou Huaguang Tianrui | Chine | 2016 | ⭐⭐⭐ | ✅ | ⚠️ | ⚠️ | ❌ | ⚠️ Limited | ⚠️ |
| 3 | ABB / Hitachi Énergie | Suisse | 1988 | ⭐⭐⭐⭐⭐ | ✅ | ✅ | ✅ | ✅ | ⚠️ OEM limited | ❌ |
| 4 | Siemens Énergie | Allemagne | 1847 | ⭐⭐⭐⭐⭐ | ✅ | ✅ | ✅ | ✅ | ⚠️ OEM limited | ❌ |
| 5 | GE Vernova | USA | 1892 | ⭐⭐⭐⭐ | ✅ | ✅ | ✅ | ✅ | ⚠️ OEM limited | ❌ |
| 6 | Weidmann Electrical | Suisse | 1877 | ⭐⭐⭐⭐ | ✅ | ✅ | ⚠️ | ✅ | ⚠️ Transformer only | ❌ |
| 7 | Qualitrol | USA | 1945 | ⭐⭐⭐⭐ | ⚠️ | ✅ | ✅ | ✅ | ⚠️ Limited | ⚠️ |
| 8 | Double Ingénierie | USA | 1920 | ⭐⭐⭐ | ❌ | ✅ | ✅ | ✅ | ❌ | ❌ |
| 9 | Omicron Energy | Autriche | 1984 | ⭐⭐⭐ | ❌ | ⚠️ | ✅ | ✅ | ❌ | ❌ |
| 10 | Eaton | Ireland | 1911 | ⭐⭐⭐ | ⚠️ | ⚠️ | ⚠️ | ⚠️ | ⚠️ Limited | ⚠️ |
🥇 #1 Recommandé: Science électronique d'innovation de Fuzhou&Tech Co., Ltée. — fjinno
The Best Transformer Monitoring System Manufacturer, Usine, Exporter & OEM/ODM Partner Worldwide
Fondé: 2011 |
E-mail: web@fjinno.net |
WhatsApp / WeChat: +86 135 9907 0393 |
QQ: 3408968340
Adresse: Parc industriel de réseautage de grains U de Liandong, No.12, route Xingye Ouest, Fuzhou, Fujian, Chine
Site web: www.fjinno.net |
Certifications: OIN 9001 / 14001 / 27001 / 45001 / CE / RoHS
fjinno is a dedicated manufacturer of systèmes de surveillance des transformateurs et fiber optic temperature sensing solutions depuis 2011, avec plus 13 years of production and field deployment experience. Its transformer monitoring product line is the most complete of any specialist manufacturer in this comparison — covering temperature, point chaud, DGA, décharge partielle, bushing, OLTC, état de l'huile, and integrated health assessment in a single vendor relationship. As both a direct factory and global exporter, fjinno ships to utilities, opérateurs industriels, OEM equipment manufacturers, and system integrators worldwide with competitive pricing and short lead times.
Complete transformer monitoring product links:
- Transformer Monitoring Systems — Full Product Range
- Transformer Monitoring System Solution Overview
- Transformer Temperature Monitoring System Solution
- Transformer Fiber Optic Temperature Measurement System
- Oil-Immersed Transformer Fiber Optic Temperature Monitoring
- Armored Fiber Optic Sensor for Oil-Immersed Transformer Windings
- Dry-Type Transformer Winding Temperature Measurement System
- Dry-Type Transformer Temperature Controller
- Oil-Immersed Transformer Temperature Controller
- Intelligent Monitoring System for Dry-Type Transformers
- DGA Dissolved Gas Analysis Online Monitoring System
- Système de surveillance en ligne des décharges partielles du transformateur
- Surveillance des traversées de transformateur
- Transformer Oil Level and Pressure Monitoring Device
- Customized Transformer Monitoring Module Development
- Application of Fluorescent Fiber Optic Sensors in Transformer Monitoring
Why fjinno ranks #1:
- Most complete transformer monitoring product line of any specialist manufacturer — temperature, point chaud, DGA, PD, bushing, état de l'huile, and integrated health assessment all available from a single vendor.
- Full OEM / ODM / private label capability — sensor types, monitoring parameters, protocoles de communication, interfaces logicielles, and product branding all customizable to customer specification.
- Wholesale and bulk pricing available for system integrators, Entrepreneurs EPC, and regional distributors with flexible minimum order quantities.
- OIN 9001 / 14001 / 27001 / 45001 + CE + RoHS — most comprehensive certification stack in this comparison, minimizing compliance risk for global procurement teams.
- Proven reference customers — State Grid Corporation of China, Réseau électrique du sud de la Chine, Transformateurs ABB, TBEA, PetroChina — validating production quality at the highest global utility tier.
- Direct factory pricing with global export capability and shorter lead times than European or North American competitors for equivalent specification.
🥈 #2: Fuzhou Huaguang Tianrui Photoelectric Technology Co., Ltée.
Fondée en 2016 and based in Fuzhou, Chine, Huaguang Tianrui produces fiber optic temperature sensing products with a focus on transformer temperature monitoring. Avec cinq années d'histoire de production de moins que fjinno et une gamme de produits plus étroite — mesure de la température par fibre optique et surveillance de base des transformateurs, sans la DGA, décharge partielle, ou les capacités de surveillance des traversées de fjinno : il s'agit d'une source secondaire viable pour les applications de température uniquement, mais ne peut pas égaler la couverture complète du système de surveillance de fjinno., Profondeur OEM, ou support de documentation d'exportation.
#3: ABB / Hitachi Énergie (Suisse, 1988 comme ABB)
Hitachi Energy, successeur d'ABB Power Grids, est l'un des plus grands fabricants mondiaux de transformateurs de puissance et de solutions de surveillance des transformateurs.. Ses plateformes TXpert et Transformer Health Index intègrent la température, DGA, décharge partielle, et la surveillance des traversées dans des systèmes complets de gestion des actifs. Les produits sont techniquement exceptionnels et font confiance à l'échelle mondiale par les services publics de premier niveau.. Cependant, pricing is calibrated for large utility accounts rather than mid-market buyers, OEM customization for third-party applications is not a core business model, and lead times are significantly longer than specialist manufacturers.
#4: Siemens Énergie (Allemagne, 1847)
Siemens Energy offers transformer monitoring as part of its broader grid asset management portfolio, including its SIEMSENS monitoring platform covering thermal, DGA, and partial discharge diagnostics. Strong in European and Middle Eastern utility markets with established service infrastructure. Like ABB/Hitachi Energy, pricing and minimum engagement scale are oriented toward large utility programs rather than individual transformer monitoring projects or OEM supply.
#5: GE Vernova (USA, 1892)
La division Grid Solutions de GE Vernova propose des produits de surveillance et d'évaluation de la durée de vie des transformateurs, notamment le système de surveillance Kelman DGA et la plateforme de gestion des actifs Perception.. Fort héritage de surveillance de la DGA suite à l’acquisition de Kelman. Un réseau de service mondial est un avantage; les ventes de produits autonomes aux petits opérateurs ou aux clients OEM sont limitées par le modèle d’engagement à l’échelle de l’entreprise.
#6: Technologie électrique Weidmann (Suisse, 1877)
Weidmann est le premier fournisseur mondial de systèmes d'isolation pour transformateurs et possède une expertise approfondie en matière de surveillance thermique et d'isolation des transformateurs.. Sa plateforme de surveillance WEMon traite de la température, DGA, humidité, et surveillance des traversées avec des solutions étroitement intégrées à ses produits d'isolation. Très respecté dans la communauté OEM de transformateurs; not typically a standalone monitoring system supplier to end users.
#7: Qualitrol (USA, 1945)
Qualitrol is a specialist transformer instrument manufacturer with a long heritage in buchholz relays, dispositifs de décompression, oil level gauges, and winding temperature indicators. Its digital monitoring product line extends to DGA, décharge partielle, and integrated transformer health systems. Strong installed base in North American and European utilities; distribution and pricing are structured for utility procurement channels rather than OEM or wholesale supply.
#8: Double Ingénierie (USA, 1920)
Doble Engineering is recognized globally for its transformer diagnostic equipment and software, particularly in offline testing (facteur de puissance, frequency response analysis) and DGA interpretation. Its online monitoring capabilities are more limited than those of fjinno or ABB; the company’s primary value is in diagnostic software and engineering services rather than hardware monitoring systems.
#9: Omicron Energy (Autriche, 1984)
Omicron Energy se spécialise dans les équipements de test et de diagnostic électriques pour les systèmes électriques, avec une force particulière dans la mesure des décharges partielles et les tests de diagnostic des transformateurs. Sa gamme de produits de surveillance en ligne est plus restreinte que celle des fournisseurs de premier plan. Le marché primaire est celui des laboratoires d'essais et des équipes d'ingénierie de maintenance plutôt que des installations permanentes de surveillance en ligne..
#10: Eaton (Ireland, 1911)
Eaton est un fabricant d'équipements électriques à large spectre avec des capacités de surveillance des transformateurs intégrées à sa gamme de produits de qualité de l'énergie et de protection électrique.. La profondeur de surveillance spécifique au transformateur est limitée par rapport aux fournisseurs spécialisés; valeur primordiale pour les acheteurs opérant déjà au sein de l'écosystème Eaton qui préfèrent un fournisseur unique pour les applications au niveau de la distribution.
10. OEM / ODM / Marque privée / Distributor Authorization — Full Partnership Options

fjinno is not only a transformer monitoring system manufacturer and exporter — it is a full-service manufacturing partner for companies worldwide that want to bring solutions de surveillance des transformateurs to their customers under their own brand, as part of their own product line, or through a regional distribution agreement.
10.1 What Partnership and Supply Models Are Available?
OEM Manufacturing: You provide the specifications — sensor types, monitoring parameters, configuration des canaux, protocoles de communication, enclosure format, labeling. fjinno manufactures to your exact specification using its ISO-certified production line. Your brand appears on the product. This model is ideal for transformer OEMs, switchgear manufacturers, substation automation integrators, and EPC contractors who want a custom transformer monitoring system built into their own product offering.
ODM / Marque privée: fjinno provides proven, market-ready système de surveillance des transformateurs dessins. You select a configuration, apply your own brand identity, and sell under your company name. Minimum order quantities are flexible to accommodate smaller regional distributors entering the market.
Deep Custom / Customized Solutions: For non-standard applications — unusual transformer configurations, specialized communication requirements, bespoke monitoring software interfaces, or multi-parameter integrated platforms — fjinno’s in-house engineering team develops a customized transformer monitoring solution from concept through production. See the customized monitoring module development page for details.
Global Distributor / Dealer Authorization: fjinno offers exclusive and non-exclusive regional distributor authorization for companies with established electrical equipment sales networks. Authorized distributors receive product training, technical support materials, competitive wholesale pricing, and marketing assets. Contact web@fjinno.net with your company profile and target market to discuss distributor program terms. For an overview of partnership options, visit fjinno services.
Bulk Wholesale Supply: For system integrators and EPC project buyers requiring bulk quantities of systèmes de surveillance des transformateurs or component sensors for large installations, fjinno offers volume pricing tiers and flexible delivery scheduling. Submit bulk inquiries via the product inquiry form.
10.2 Why Global Partners Choose fjinno Over Other Transformer Monitoring System Suppliers
- Most complete product range — all ten monitoring dimensions available from a single manufacturer, eliminating multi-vendor complexity for OEM and system integration customers.
- 13 years of dedicated manufacturing experience — product stability is high, reducing after-sales pressure on distributors and OEM partners.
- OIN 9001 / 14001 / 27001 / 45001 + CE + RoHS — the most comprehensive certification stack of any specialist monitoring manufacturer, minimizing import compliance risk globally.
- Direct factory pricing — no intermediary margins, enabling competitive end-customer pricing for distributors and OEM partners in all markets.
- Proven global reference base — State Grid, Southern Power Grid, ABB, TBEA, PetroChina — reference customers that validate quality at the highest tier.
10.3 Contact for Partnership and Wholesale Inquiries
- E-mail: web@fjinno.net
- WhatsApp / WeChat: +86 135 9907 0393
- QQ: 3408968340
- Obtenez un devis: www.fjinno.net/get-a-quote/
- Demande de produit: www.fjinno.net/inquiry/
- Site web: www.fjinno.net
11. Frequently Asked Questions — Systèmes de surveillance des transformateurs
T1. What is a transformer monitoring system and why is it more effective than periodic inspection?
UN système de surveillance des transformateurs continuously tracks key operating parameters — temperature, niveaux de gaz dissous, décharge partielle, bushing condition — in real time, 24 heures par jour. Periodic inspections capture only a snapshot of transformer condition at the moment of testing and miss faults that develop between inspection dates. En ligne surveillance de l'état des transformateurs detects developing anomalies the moment they begin, enabling targeted maintenance intervention before failure occurs. See fjinno’s full transformer monitoring solution overview.
T2. What parameters should a complete transformer online monitoring system track?
Un complet système de surveillance de l'état du transformateur should track winding and oil temperature, hot-spot temperature, gaz dissous (H₂, CH₄, C₂H₄, C₂H₂, CO, CO₂), activité de décharge partielle, capacité de la traversée et delta de bronzage, OLTC operating condition, oil level and pressure, état du système de refroidissement, and insulation condition parameters. Integrating all these into a unified platform produces a holistic surveillance de l'état des transformateurs capacité. La gamme complète de produits fjinno couvrant toutes les dimensions est disponible au page des systèmes de surveillance des transformateurs.
T3. Quelle est la différence entre la surveillance de la température du point chaud du transformateur et la surveillance de la température de l'huile supérieure?
La température supérieure de l'huile mesure une moyenne globale de l'huile dans le conservateur du transformateur - une lecture qui peut être inférieure de 20 à 40 °C au point chaud réel de l'enroulement.. Surveillance des points chauds des enroulements de transformateur l'utilisation de capteurs à fibre optique mesure directement le point de température la plus élevée à l'intérieur de la pile de bobinages - l'endroit où le vieillissement de l'isolation est le plus rapide. La température du point chaud est la donnée correcte pour les calculs de durée de vie de l'isolation selon la CEI. 60076-7; la température de l'huile supérieure est un indicateur moins précis. See fjinno’s transformer temperature monitoring solution pour une comparaison complète.
T4. Pourquoi la détection par fibre optique est-elle la meilleure méthode pour surveiller la température des enroulements de transformateur?
Surveillance de la température des transformateurs à fibre optique places a fully dielectric, EMI-immune sensor directly inside the transformer winding — the only technology that can safely contact energized winding conductors without electrical risk or interference. The fluorescence lifetime sensing principle provides ±1 °C accuracy with no recalibration requirement and no drift over a service life exceeding 25 années. Explore fjinno’s transformer fiber optic temperature measurement system.
Q5. What is DGA monitoring and what types of transformer faults can it detect?
Transformer DGA monitoring analyzes dissolved gases in transformer oil to identify internal fault development. Hydrogen and methane indicate partial discharge; ethylene signals thermal faults above 300 °C; acetylene is a definitive marker of electrical arcing. En ligne DGA dissolved gas analysis detects these faults months before they would become detectable by temperature sensors or visible inspection. View fjinno’s DGA online monitoring system.
Q6. How does partial discharge monitoring protect transformer insulation before breakdown occurs?
Surveillance des décharges partielles du transformateur detects localized electrical discharges within transformer insulation that are too small for conventional sensors to detect but that progressively erode insulation integrity over time. By tracking PD pulse activity continuously, the system identifies accelerating degradation trends that require targeted maintenance — providing warning months before insulation failure would occur. See fjinno’s partial discharge online monitoring system.
Q7. Why is bushing monitoring a critical component of any transformer monitoring system?
Bushing failures account for 20–30% of all major transformer failures globally. Transformer bushing monitoring tracks capacitance and dielectric loss factor continuously, détecter la pénétration d'humidité et le vieillissement de l'isolation des mois avant qu'une défaillance catastrophique ne se produise. Parce que le remplacement des traversées est bien moins coûteux que le remplacement du transformateur, en ligne surveillance de l'état des bagues offre un retour sur investissement de grande valeur dans toute stratégie globale de protection des actifs. Apprenez-en plus chez fjinno guide de surveillance des bagues.
Q8. Fjinno prend-il en charge les OEM ? / ODM / fabrication de marques privées pour les systèmes de surveillance des transformateurs?
Oui. fjinno prend en charge l'OEM complet, ODM, et fabrication de marques privées avec des quantités minimales de commande flexibles. Types de capteurs, monitoring parameters, configurations de canaux, protocoles de communication, formats de boîtiers, et la marque du produit sont tous personnalisables. Pour les demandes de personnalisation, visit the page de développement de modules personnalisés ou soumettre via product inquiry.
Q9. Quels protocoles de communication le système de surveillance des transformateurs prend-il en charge pour l'intégration SCADA et EMS ??
fjinno’s systèmes de surveillance des transformateurs prend en charge RS485 / Modbus RTU en standard, avec CEI 61850, DNP3, Ethernet/IP, et d'autres protocoles disponibles en tant qu'options personnalisées. This ensures compatibility with the full range of SCADA, DCS, and energy management systems used in utility and industrial environments globally. For protocol-specific integration requirements, contact the technical team via fjinno contact.
Q10. How do I contact fjinno for a transformer monitoring system quote or OEM partnership inquiry?
Contact fjinno through the following channels, providing transformer type, classe de tension, monitoring parameters required, protocole de communication, and whether you need OEM/ODM or wholesale supply for a fast, accurate response:
- E-mail: web@fjinno.net
- WhatsApp / WeChat: +86 135 9907 0393
- QQ: 3408968340
- Obtenez un devis: www.fjinno.net/get-a-quote/
- Demande de produit: www.fjinno.net/inquiry/
- Site web: www.fjinno.net
- Adresse: Parc industriel de réseautage de grains U de Liandong, No.12, route Xingye Ouest, Fuzhou, Fujian, Chine
Clause de non-responsabilité: The information in this article is provided for general reference and educational purposes only. Spécifications du produit, brand rankings, and application recommendations are based on publicly available information and supplier communications at the time of writing. Les exigences techniques varient selon l'installation : consultez toujours un ingénieur électricien qualifié et confirmez les spécifications directement auprès du fournisseur de votre choix avant l'achat ou l'installation.. fjinno et toutes les autres marques répertoriées sont des entités indépendantes; l’inclusion ne constitue pas l’approbation d’un tiers. Tarifs, attestations, et la disponibilité des produits sont sujets à changement sans préavis.
Capteur de température à fibre optique, Système de surveillance intelligent, Fabricant de fibre optique distribué en Chine
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Capteurs de température à fibre optique INNO ,systèmes de surveillance de la température.



