High Voltage Direct Current (HVDC) systems enable utilities to move more power further, efficiently integrate renewables, interconnect grids, and improve network performance. HVDC systems utilize power electronics technology to convert AC and DC voltage and are ideal for supporting existing systems or building new power highways.
GE Vernova provides solutions that offer grid operators the ability to provide reactive power support, enhance controllability, improve stability and increase power transfer capability of AC transmission systems.
Substation and Electrical Infrastructure Projects for Utility and Industrial Customers.
GE Vernova offers solutions for a variety of substation projects and applications, including Modular Substation Automation Systems, utility and industrial substation projects, as well as DC substation solutions.
Energy storage is the backbone of the modern power system, delivering reliable, high quality energy for utilities, data centers, industry, and communities. It unlocks the full potential of renewable and clean energy, ensuring critical operations stay continuously online in an always on economy while accelerating the electrification of everything.
Integrated electrical systems provide energy where the grid doesn’t reach, meeting increasing power demands while improving resilience and efficiency.
The energy landscape today is changing, this is being led by the current industry trends of Decarbonization, Digitization, Decentralization and Electrification. Discover how GE Vernova is working with utility, consumer and industrial customers to design and deploy tailored Microgrid and Distributed Energy Resource (DER) Management solutions.
GE Vernova delivers advanced power stability and flexibility solutions that help utilities and electro-intensive industries meet grid connection requirements and evolving regulatory standards. Our portfolio is designed to enhance grid performance, compliance, and resilience.
Innovations to Decarbonize the Electrical Grid. GRiDEA is our portfolio of decarbonization solutions that empower grid operators to address their net-zero objectives.
GE Vernova offers a wide range of transformer solutions for the utility, industrial, commercial, residential and energy markets. These solutions feature flexible, reliable and robust designs to support a wide range of applications. With units operating in some of the most demanding electrical environments around the world, We design and delivers transformer solutions that provide among the highest level of performance and reliability to meet rigorous operating requirements.
GE Vernova provides GIS solutions from 50 kV to 800 kV, along with secondary products to maximize switchgear and network operation. The portfolio includes a full range of SF₆ GIS as well as g³ (SF₆-free) GIS at 145 kV and 420 kV voltage levels for utilities and industries worldwide.
GE Vernova is one of the top circuit breaker suppliers in the world. Our products include a range of live tank circuit breakers (up to 800 kV), dead tank circuit breakers (up to 550 kV), as well as hybrid and compact switchgear assemblies. We also provide solutions for power generation applications with our generator circuit breakers for installations up to 1,500 MW.
GE Vernova is a global market leader for disconnectors (disconnect switches) since 1960, with 8 product facilities in 7 countries and hundreds of thousands installations in more than 130 countries around the world. The portfolio includes disconnectors for AC applications (up to 1,200 kV), for DC applications (up to 1,000 kV) and for railway applications. We also offer power connectors to connect two or more conductors for a continuous electrical path.
GE Vernova is an industry leader in the design and manufacturing of high, medium and low voltage instrument transformers. With more than 100 years of experience, We offer a broad array of standard and high accuracy models for revenue metering and system protection applications. The portfolio of instrument transformers ranges from low voltage at 600 V suitable for industrial and high accuracy revenue metering, all the way up to high voltage at 1,200 kV. The portfolio also includes line traps and digital instrument transformers.
For a century, utilities have relied on us to deliver electrical products and services to meet their quality, durability and performance needs. Our capacitor and reactor product lines are an integral part of our portfolio. GE Vernova provides power capacitors that meet ANSI, IEEE and IEC standards, and our low voltage capacitors are UL listed. Ratings range from 1 kvar to 500 MVAR, and from 240 volts to 500 KV.
GE Vernova provides a broad range of bushings and surge arresters to help protect electrical assets. The bushings portfolio includes AC and DC solutions that enable long life, high reliability and installation flexibility. GE Vernova’s Tranquell surge arresters are ideal for distribution and EHV applications up to 612kV, and are available as polymer and porcelain station and intermediate class IEEE/ANSI C62.11.
Our SF₆-free switchgear range features the same ratings and same dimensional footprint as the state-of-the-art SF₆ equipment, with a drastically reduced carbon footprint.
Drawing on more than 125 years of engineering heritage, GE Vernova offers rotating machine solutions designed for performance, reliability, and industrial scale.
Digital Native Products are not just an evolution of existing switchgear but a transformation in how GE Vernova conceives and builds primary equipment for the grid.Digital Native Products are designed with digital capabilities embedded, enabling a compact and standard design and are mechanically engineered to reach the accuracy required by advanced monitoring and control solutions. Products are ready to connect and operate quickly and effectively. Discover the various monitoring and control solutions that can be incorporate in Digital Native Products.
GE Vernova delivers advanced power electronics solutions that help electrify industries, optimize performance, and improve reliability. Our integrated portfolio supports critical applications with the technology and services needed to power a more efficient and sustainable future.
Safely and securely accelerate operations with tailored automation systems that enhance control, reduce risk and add value.
GridBeats™ is a portfolio of software-defined automation solutions for grid digitalization. The portfolio is designed to enable utilities and industrial customers to ensure a stable, efficient energy supply amidst the growing integration of renewable energy sources and aging infrastructure.
GE Vernova's comprehensive portfolio of solutions for implementing and managing a substation.
GE Vernova’s Protection, Control, and Metering solutions deliver precise, high-performance automation for today’s evolving grid. From advanced relays to multifunction meters, our portfolio helps utilities enhance reliability, streamline operations, and accelerate the energy transition. Backed by decades of expertise and global reach, we provide the products to protect assets, optimize performance, and power a more sustainable future.
GE Vernova offers a wide range of solutions to monitor and manage critical assets on the electrical grid, detect and diagnose issues and provide expert information and services to customers. Our asset monitoring and diagnostics portfolio includes solutions for single- and multi-gas transformer DGA, enhanced transformer solutions and switchgear monitoring, as well as software and services.
GE Vernova's Critical Infrastructure Communications (CIC) solutions deliver secure, resilient, and scalable networks that ensure operational continuity in even the most demanding environments. We help customers reduce downtime, enhance safety, and improve situational awareness through end-to-end communication solutions built for reliability and performance. This translates into greater efficiency, regulatory compliance, and peace of mind for mission-critical operations.
The collection of required asset condition data from the field on a large scale for GE Vernova and 3rd party electrical equipment is a key step in building a robust Asset Performance Management strategy. Grid Services specialists are constantly evaluating and implementing new innovative inspection technologies applying strict processes and methods. The digital inspections methods are designed to improve the efficiency of data collection, oil analysis and online monitoring. All new approaches to capture data are integrated into the EnergyAPM ecosystem for automatic data transfer.
GE Vernova's Asset Lifecycle Management services combine a large set of methodologies to collect condition data off and online, consulting and asset optimization services using digital technology to improve the monitoring, recording and analysis of asset operations and predict asset behavior.
GE Vernova’s innovative and high-quality services help maintain and optimize high-voltage electrical assets throughout their entire lifecycle. Leveraging the design and manufacturing knowledge of our engineers, the customized service solutions ensure substations and networks perform as planned. Experts deliver services for applications across the power system, keeping assets up-to-date, safe, reliable and efficient while improving customers’ return-on-investment.
GE Vernova provides a full range of services & support tailored to meet a broad range of power system needs across utility and industrial applications. With deep domain knowledge and industry expertise GE Vernova’s service application engineers and technical specialists can help plan, design, operate, maintain, and modernize your protection, control, monitoring and automation systems.
GE Vernova provides comprehensive services throughout the systems lifecycle. The services can be provided by our local team and with the support of our global Competence Centers when the equipment is installed, during the warranty period and beyond.
Our certified laboratories enable manufacturers and customers leverage deep domain expertise and advanced testing and analysis facilities to develop enhanced high-voltage products, certify their capabilities before market introductions and apply preventive maintenance to avoid unexpected interruptions and ensure the reliability of your operations.
Our product range covers from the smallest medium voltage electrical rotating machines to custom made large units, up to 80 MW, as well as their operating and protection controls. Our aftermarket fleet of over 70,000 rotating machine assets, spread over 150 countries worldwide, that we’ve served for a century. Our experience in all energy, industry and transportation sectors is broad and deep.
We connect the physical world with data to proactively detect and forecast the behavior of your assets by offering Digital Suite, Service 360 & Cyber security.
Our MV drives portfolio ranges from 100 kW to more than 100 MW and from 3.8 up to 13.8 kV voltages. It allows for higher operating efficiency, power availability, plant throughput, operational precision, and process yield. Our LV drives portfolio ranges from of 0.25kW to more than 6MW and from 270 up to 900VAC voltages which includes fully and doubly fed wind converters, marinized drives, metal and mining drives, Cranes, test benches, meeting the needs of critical electrification systems.
Utilities today seek to create and connect new sources of power generation to meet growing global demand, while also managing grid reliability, costs and regulatory factors.
Water is central not just to the economy, but to life. As a result, water treatment systems demand secure, dependable power to ensure process uptime. From the grid-connected substation to reliable electrical protection, control, and power quality metering, GE Vernova offers tailored solutions to keep critical plants operational and meet the unique needs of the water and wastewater industry.
As power systems become increasingly interconnected and complex, utilities need solutions that optimize energy transmission and management while improving reliability.
Data centers – and the information they store – are becoming increasingly integral to the way we live our lives every day. With rising demand also come rising costs. And more importantly, the information in these centers must remain secure while simultaneously accessible. We provide data centers with electrical infrastructure solutions from the input utility source to the IT server racks. This includes high-voltage switchgear and transformers, medium and low voltage electrical equipment, automatic transfer switches, switchboards, UPS systems, critical power PDUs, static transfer switches, and overhead busway. This chain of electrification products provides high quality and reliable products and services for the entire lifecycle of a data center.
The oil and gas industry is evolving at a rate never seen before, facing shifting pricing levels, ever-changing regulatory requirements, and increased environmental consciousness. Through reliable, safe, and innovative solutions and a holistic service offering, GE Vernova can help the energy sector thrive in this changing reality.
Modernizing and digitizing the distribution grid is imperative for utilities and customers to enhance power system stability and safety, while increasingly integrating distributed power and demand response.
The industry is changing. Simultaneously, so are your utility’s needs. Operational effectiveness, power stability, and critical asset management are key priorities – whether in pulp and paper, steel, or data centers. GE Vernova’s holistic portfolio of products and services are designed with reliability, innovation, and sustainability at the forefront, helping you face the energy transition with ease.
Mining companies require secure communications, efficient asset performance management, and dependable, innovative technology to protect their critical assets. GE Vernova offers a broad product portfolio to help you through each step of the mining process – safely and reliably.
The MDS SCADAcrypt™ adds state-of-the-art encryption to your serial data radio telemetry or wireless SCADA network. It may be used for point-to-point, or point-to-multipoint links. Provides solid security to the device and/or to the host for GE Vernova MDS wireless serial systems.
The energy landscape is transforming faster than ever — and so are its demands....
MV outdoor instrument transformers insulated with Hydrophobic Cycloaliphatic Epoxy (HCEP)...
RevenueSense™ Current Transformers offer electrical utilities both extended range and...
Disconnectors (DSC) for HVDC applications are designed to specific constraints and requirements typical for DC applications, that are quite different compared to AC applications. They are requested to withstand DC voltage open gap and to ground to ensure safety for the people in the substation and to permit proper and safe layout configuration. In some cases, like for filter applications, they are requested to break a sum of harmonic currents at a certain voltage (amply smaller than the rated voltage of the disconnector) due to the ripple created by harmonics on the reactances.
Globally the utility environment is becoming more complex and utilities are having to manage new challenges such as:
The only choice for many utilities is to restructure their grid systems to manage these challenges. Utilities are looking for cost effective solutions to transfer power and to improve the quality, stability and reliability of the grid which will anticipate their needs for the next 20 to 50 years.
High Voltage Direct Current (HVDC) solutions are ideal for supporting existing AC transmission systems or for building new power highways. HVDC is a system which interconnects two AC networks, converting AC voltage to DC voltage, and DC voltage to AC voltage utilizing power electronics technology. HVDC systems enable transfer of power, interconnection of grids, integration of renewables and maximize grid performance.
GE Vernova’s HVDC Disconnectors are developed based on the highest standards for performance, ratings, user convenience and reliability.
Every model is designed utilizing 3D design tools and analysis software to achieve the highest performance. Switches and Disconnectors are thoroughly type tested and subject to routine tests to meet or exceed the latest standards and requirements. Dependent on customer requirements, GE Vernova is able to design and supply highly customized products.
Based on years of global experience, deep domain expertise, manufacturing excellence and several deployments across multiple applications and industries, GE Vernova has dedicated projects teams working in partnership with our customers to ensure successful equipment implementations. GE Vernova provides customers with the following competitive advantages.
GE Vernova’s knee type disconnector SPO/SPOL has been designed with one rotating and two fixed insulators. Thanks to its folding arm design (knee), it requires limited overhead clearance and a very short phase-to-phase distance. The outstanding gap factor allows a relatively short air gap and a lighter arm. No electrodes are needed in the middle.
The center of gravity is quite low, with great advantages for balancing, seismic withstand and operating torque. The low operating torque permits sure operation using a motor drive mechanism as well as easy manual operation and it does not stress the rotating insulator. The design is contact rebound free resulting in very smooth movement and a relatively fast operation (about 10÷15 s for a 550 kV disconnector).
The main contact can be of the L- type, the solution patented by GE Vernova helping to ensure highest protection against air pollution and ice. The L-Contact is also maintenance free and therefore represents the best technical choice for DC applications.
The center break disconnector type S2DA is the most commonly used and economical disconnector, but requires an increased phaseto-phase distance. In the center break design the two arms rotate and the disconnector opens in the center.
The vertical break disconnector has one rotating and two fixed insulators. The double movement of the blade ensures excellent performance in terms of ice breaking and short-circuit withstand. The vertical break requires a minimal phase-to-phase distance and the main contact can be of the L-type.
The valve hall is an important component of the HVDC system. The grounding of a valve hall’s elements is ensured by highly customized earthing switches.
Two different earthing switch designs have been developed by GE Vernova:
Disconnectors (DSC) for HVDC applications are designed to specific constraints and...
GE Vernova’s Electrification business prides itself on being one of the leading manufacturers of disconnectors (Switches) in the world. We offer flexible and reliable layout configurations up to 1,200 kV designed and tested to support international standards such as IEEE, IEC and GB (China).
From scorching hot climates to extreme cold environments, and areas of intense seismic activity, our solutions are field proven with installations across the globe.
GE Vernova’s BCVB vertical break disconnector, rated from 420 to 800 kV, reduces phase spacing to a minimum. BCVB is reliable in adverse conditions (-50°C to +50°C), and operates under 0 to 20 mm of ice. The double movement ensures high short circuit rating and excellent ice breaking. BCVB is robust and easy to operate.
The CGVB-05 vertical break disconnector is designed to reduce phase spacing to a minimum, ensures high short circuit rating and has excellent ice breaking capabilities. The CGVB-05 is designed to be virtually maintenance free with factory sealed bearing housings and counter balancing springs.
The CGVB-08 vertical break disconnector is available in a wide range of ratings and is a robust and reliable performer. The double jaw contact system provides low maintenance, long life and excellent electrical and mechanical performance in the most adverse operating conditions.
GE Vernova’s S3CV vertical break disconnector is rated from 52 to 245 kV. Rigid and well supported terminal pads permit post insulators and additional space savings. The S3CV can be supplied or easily retro-fitted with 1 or 2 earthing switches, and customizable solutions are available for vertical, underhung and phase-to-phase installations.
The S3CVL, rated from 245 to 550 kV, is a modern, 3 insulator vertical break disconnector equipped with the unique L-Contact. Corrosion free materials mean virtually no maintenance is required. Specific spark-free solutions with an SF₆ breaking chamber are available for EHV applications.
The S3CVS is a heavy duty vertical break disconnector suitable for high current installations such as generator busbar disconnectors for power plants, electrical brake generators, SVC plants, as well as feeding furnaces and electrolytic plants. Rated from 24 to 72 kV, the S3CVS can be supplied completely assembled with a simple three phase base.
The S2DA is the most commonly used and economical disconnecter, but requires an increased phase-to-phase distance. In the center break design the two arms rotate and the disconnect switch opens in the center.
The VCB, rated from 72.5 to 145 kV, is a V-type center break disconnector on which both insulators rotate to open and close the switch. Structural and civil work costs are kept to a minimum thus reducing overall installation costs. The galvanized structural steel channel base provides high strength and rigid design, while flex technology provides long term operation.
The S3CD is a double side break disconnector on which the center insulator rotates to open and close the switch. It is particularly suited for applications in which low vertical clearance prohibits the use of other disconnectors. The S3CD is a rugged performer in adverse operating conditions and is always stable in the close position during short circuits.
The S3C is a low profile, reduced phase-to-phase distance double side disconnector. Good mechanical and electrical strength of the current carrying parts are ensured through the use of high strength aluminium alloys combined with silver-plated copper contacts. The S3C can be customized for vertical, underhung and phase-over-phase installations.
The SPV and SPVL are space saving vertical reach disconnectors connecting the lower busbar to the upper one via the semi-pantograph arm. Horizontal rather than vertical separation can help to reduce space up to 30%. The SPVL is equipped with the unique pollution and ice-free L-Contact.
The SX is a space saving double scissor aluminum disconnector connecting the lower busbar to the upper one via the pantograph arms. Horizontal rather than vertical separation means a space reduction of as much as 30%.
SPO and SPOL are vertical break disconnectors with a two-piece arm. In open position the blade sections fold upon themselves in a vertical plane of only 60% of the longitudinal dimension. SPOL is equipped with the unique pollution and ice-free L-Contact and bus transfer contacts.
GE Vernova’s Electrification business prides itself on being one of the leading...
MDS Accessories are hand-picked and tested to ensure optimal performance under even the most extreme conditions. We provide a complete line of reliable and cost-effective accessories that are fully tested to perform at optimal levels. We simplify wireless system design by providing a convenient single source for ordering.
MDS Accessories are hand-picked and tested to ensure optimal performance under even the...
The railway network has to be globally interconnected, and the connection between systems with different voltages and frequencies (electrical borders) can only be achieved through the disconnecting points that decouple them.
Disconnectors are an essential element of the supply systems (overhead conductors or ground level wires) that feed the trains. Their function is to disconnect the cells that make up the line in order to supply energy only when a train is running.
The S2V is a new generation load switch specifically designed for railway applications and based on a well-proven design to provide both reliability and high performance over the years.
The S2DA disconnector is one of the most commonly used types in the world thanks to its simple, efficient design. It is a rugged performer even in the most adverse operating conditions.
The S3C is a low profile, reduced phase-to-phase distance double side break switch which offers additional space savings - a key advantage when designing your substation.
The S3F disconnector is specifically designed for railway applications with a reduced phase-to-phase distance and is a rugged performer even in the most adverse operating conditions.
The S2CRE disconnector is specifically designed for railway installations with easy assembly and reliability provided by the small number of components and the simple open/close movement.
The railway network has to be globally interconnected, and the connection between systems...
Switches for HVDC applications are designed to close and open very rapidly in case of fault or for maintenance purposes. The switches may have to commutate load current while maintaining the flow of power within DC substation and its availability.
All HVDC switches are activated by the highly reliable spring-spring mechanism and benefit of a huge experience and installed base of AC circuit-breaker technology delivered worldwide in regards to design technology, to quality in terms of supplier qualification, assembly processes and ISO conformity.
GE Vernova’s HVDC Switches are developed based on the highest standards for performance, ratings, user convenience and reliability.
*according to CIGRE report 510.
Where more than one HVDC Pole share a common transmission conductor (typically the neutral) it is advantageous to be able to commutate the DC current between transmission paths without interrupting the DC power flow.
This switch is normally open but when closed it solidly connects the converter neutral to the station earth mat. Operation with this switch can normally be maintained if the converter can be operated in a bipole mode with balanced currents between the poles, that is, the DC current to earth is very small. The switch is also able to open, commutating a small DC unbalance current out of the switch and into the DC circuit.
A NBS is in series with the neutral connection of each pole. In the event of an earth fault on one pole, that pole will be blocked. However, the pole remaining in service will continue to feed DC current into the fault via the common neutral connection. The NBS is used to divert the DC current away from the blocked pole to ground.
The connection between the HVDC conductor and the neutral point includes both a high voltage disconnector and a GRTS and is used as part of the switching operation to configure the HVDC scheme as either a ground return monopole or a metallic return monopole. The disconnector is maintained open if the HV conductor is energized in order to isolate the medium voltage GRTS from the high voltage.
The GRTS is closed, following the closing of the disconnector in order to put the HV conductor in parallel with the earth path. The GRTS is also used to commutate the load current from the HV conductor transferring the path to the earth (or ground return) path. Once current flow through the HV conductor is detected as having stopped, the disconnector can be opened, allowing the HV conductor to be re-energised at high voltage.
The MRTB is used in conjunction with the GRTS to commutate the DC load current between the earth (ground return) and a parallel, otherwise unused, HV conductor (metallic return).
The MRTB closes in order to put the low impedance earth return path in parallel with the metallic return path. The MRTB must also be able to open, causing current flowing through the earth return to commutate into the much higher impedance metallic return path.
This switching device can be used either as a HVDC by-pass or a fast discharge switch.
As a by-pass switch , it is connected across each converter valve group in HVDC schemes using more than one independent converter per pole. It shall closes rapidly to by-pass a converter group that is being taken out of service and commutate the current back into a valve group that is being taken back into service.
As a fast acting discharge switch, it is connected between one pole and a resistance connected to the ground. It remains opened until a fault occurs in AC network. AC circuit-breaker clears the fault, but a trapped charge remains in the HVDC line and shall be discharged before the AC circuit-breaker re-close and re-energize the poles 300 ms later: for it, fast acting discharge switch shall perform a fast CO within these 300 ms to discharge and re-isolate the pole from the ground.
High speed switches can be used either as a line paralleling switch or either as converter paralleling switch.As a line paralleling switch, it is connected in series to one or more high voltage pole conductors allowing one or more line to be connected in parallel or to revert to a single line operation while maintaining the flow of HVDC power.
As a converter paralleling switch, it is connected in series to each converter at the high voltage DC terminal where 2 or more converters are connected in parallel onto a common pole conductor. It is designed to allow additional converter(s) to be connected in parallel or to disconnect some of them while conducting the load current.
Switches for HVDC applications are designed to close and open very rapidly in case of...
GE Vernova provides a broad array of distribution transformers to support a variety of applications. Our product lines include pole- and pad-mounted, single- and three-phase solutions, as well as primary and secondary substation transformers, cast coil transformers network transformers and voltage regulators.
Our broad array of distribution transformers are highly reliable, state-of-the-art distribution solutions with features that allow safe operation and easy maintenance. Explore more about our diverse offerings with the interactive apps below.
GE Vernova provides a complete line of distribution transformers ranging from single-phase pole-type distribution transformers to three-phase pad-mount transformers. Our manufacturing and design systems utilize state-of-the-art technology supported by our ISO-9001 certified processes and quality assurance programs.
GE Vernova designs and manufactures a complete line of single-phase pole-type distribution transformers for installation on utility overhead systems. These highly reliable and cost-effective transformers are available in a wide variety of ratings and accessory combinations to match your system requirements.
GE Vernova manufactures a complete line of single-phase pad-mounted distribution transformers designed to provide the features, performance and aesthetics needed for modern underground residential applications.
GE Vernova offers a complete line of liquid-filled three-phase pad-mounted distribution transformers that meet applicable IEEE standards. These transformers are specifically designed for commercial and residential applications, such as hotels, hospitals, universities, and others. Our transformers are designed for outdoor installation with cabinets, use aluminum or copper windings, and are optimized to maximize efficiency and footprint.
GE Vernova's distribution transformers are designed for the diverse mining, oil and gas and distribution markets of North America and international applications. Our distribution substation transformers are suited for real-world applications because we rely on extensive customer input and feedback to determine the ideal product testing and quality parameters. GE Vernova has extensive experience designing transformers for heavy duty mining applications such as crushing, grinding, floatation & refining/palletization. We deliver advanced performance under the most demanding operating conditions for offshore operations, exploration and production, as well as onshore operations, refining, petrochemical and storage.
GE Vernova’s cast coil transformer is a low-noise, low-loss, cast resin dry-type transformer. The high-voltage winding with copper conductors and the low-voltage winding with either copper conductors or copper sheet are wound and reinforced by glass-fiber and then cast with resin under vacuum.
GE Vernova's Multitap transformers provide flexible voltages and currents to Electric Submersible Pumps (ESP) used in in artificial lift extraction applications. These transformers winding conductors and insulation are made with high quality and reliable materials. This offering operates in highly corrosive and saline environments and responds to a growing industrial trend to deliver customized power to energy-intensive industries such as Oil & Gas.
GE Vernova's Safe-NET network transformers are the safest transformers available in the industry for secondary network applications. Safe-NET network transformers are available for subway and vault applications. The Safe-NET transformer is designed to supply power to the network bus and is capable of handling significant short-term overload conditions in this application. It also has one of the smallest foot prints and delivers more KVA per square inch compared to competing products. GE Vernova's exclusive transformer tank design features patented tank technology that minimizes the danger from a transformer rupture event, mitigating its impact to adjacent assets and public safety.
For more information, visit our network transformer product page here.
GE Vernova’s family of voltage regulators are cost effective, robust solutions to regulate voltage without comprising quality and reliability, providing a total cost of ownership that is nearly 20% better than competing products. The VR-1 regulator is designed to provide utilities with a means to protect themselves and their customer against the detrimental effects of voltage variation. Optimum regulation is achieved by controlling the voltage as close to a predetermined level as practical and is “Designed with the Utility in Mind”. GE Vernova’s voltage regulators comply with IEEE® C57.15-2009 and NEMA® 4, and are independently certified by KEMA® that the VR-1 meets the stringent Short-Circuit requirements in the IEEE standard. They can operate up to 2 million mechanical operations, providing years of reliable service without costly maintenance. Additionally, GE Vernova is one of the first to incorporate measured reverse power flow capability, which is critical on today’s distribution circuits where distributed generation is present.
For more information, visit our voltage regulator product page here.
GE Vernova provides a broad array of distribution transformers to support a variety of...
Delivering comprehensive engineering and services to suit customers’ specific requirements.
GE Vernova’s substation automation systems offer a seamless and scalable solution for automating and providing visibility to power system networks.
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Turning data into usable information for operational decisions and fleet management.
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Making Your Critical Grid Infrastructure More Reliable And Secure.