• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Single Phase Automatic Voltage Regulator – 7.62 kV 13.8 kV 14.4 kV 19.92 kV 34.5 kV IEC 60076 compliant for Power Industry

  • Single Phase Automatic Voltage Regulator – 7.62 kV 13.8 kV 14.4 kV 19.92 kV 34.5 kV IEC 60076 compliant for Power Industry

Key attributes

Brand ROCKWILL
Model NO. Single Phase Automatic Voltage Regulator – 7.62 kV 13.8 kV 14.4 kV 19.92 kV 34.5 kV IEC 60076 compliant for Power Industry
Rated voltage 34.5kV
Rated normal current 100A
Rated frequency 50/60Hz
Series RVR-1

Product descriptions from the supplier

Description

Description

The RVR-1 single phase automatic voltage regulators are tap changing autotransformers. They regulate distribution line voltages from 10% raise (boost) to 10% lower (buck) in thirty-two steps of approximately 5/8% each. Voltage ratings are available from 2400 volts (60kV BIL) to 34,500 volts (200kV BIL) for 50Hz and 60Hz systems. Internal potential winding taps and an external ratio correction transformer are provided on all ratings so that each regulator may be applied to more than one system voltage. Smaller KVA sizes are supplied with support lugs for pole mounting and with substation or platform tie down provisions. Larger sizes are provided with substation bases with pad-mounting provisions.

Main Features

  • Regulator Controller

  • Tap changer with motor and power supply

  • Position indicator with ADD-AMP adjustment

  • Nameplates

  • Lifting lugs

  • Oil drain valve and sampling device

  • Oil sight gauge

  • High-creep bushings with NEMA connectors

  • Pole-type mounting brackets

  • Substation base (substation units)

  • External series arrester

  • Automatic pressure relief device

  • Control cabinet with removable front panel

Product Standards

  • IEEE Std C57.15TM Part 21: Standard requirements, terminology, and test code for step voltage regulators

  • IEC 60076-21 2018 version Part 21

  • IEEE C57.12.00-2015TM General Requirements for Liquid-Immersed Distribution,Power, and Regulating Transformers

  • IEEE C57.12.90-2015 IEEE Standard Test Code for Liquid-Immersed Distribution,Power, and Regulating Transformer

  • Operating taps comply to IEEE requirements

Load Current and Capacity Ratings, 50Hz

Voltage

(kV)

Current

(A)

Capacity

(kVA)

BIL (kV)

Power Frequency Withstand Voltage (kV)

Insulation Class

6/6.35

50

30/32

75/95

28

A

100

60/64

150

90/95

200

120/127

300

180/191

400

240/254

500

300/318

600

360/381

11

50

55

100

110

150

165

200

220

300

330

400

440

500

550

600

660

15

50

75

125/150

50

100

150

150

225

200

300

300

450

400

600

500

750

22

50

110

100

220

150

330

200

440

300

660

33

50

165

170/200

70

100

330

150

495

200

660

250

825

300

990

Load Current and Capacity Ratings, 60Hz

Voltage

(kV)

Current

(A)

Capacity

(kVA)

BIL (kV)

Power Frequency Withstand Voltage (kV)

Insulation Class

7.62

50

38

60/75

20

A

100

76

150

114

219

167

328

250

438

333

546

416

13.8

50

69

95/125

38

100

138

150

207

200

276

300

414

400

552

14.4

50

72

100

144

200

288

300

432

400

576

19.92

50

100

170/200

70

100

200

167

333

200

400

335

667

34.5

50

165

100

330

150

495

200

660

 Advantages of the product

  • High precision: Within the set voltage regulator range, it automatically adjusts the voltage in 32 loaded steps.

  • Long service life: The unique voltage-tapping switch design prevents arcing during voltage adjustment, ensuring a mechanical operational lifespan of 1 million cycles.

  • Low maintenance: Fully sealed design with high protection rating, excellent weather resistance, allowing for long-term maintenance-free operation, with adesign life of 20 years.

  • Low loss: The single-phase design can minimize iron losses and reduce no-load losses, with total losses being less than 0.1%.

  • Strong overload capability: Designed with a rated capacity for a 55°C temperature rise, it can handle an overload of 12% at a 65°C temperature rise

 

 

Reference Photo

FAQ
Q: Does the automatic step voltage regulator compliant with IEC 60076 standards support OEM customization services?
A:

Yes, we offer flexible OEM customization. We can tailor key parameters such as voltage (6 kV~34.5 kV), capacity, and control functions according to customers' specific power system requirements, while ensuring full compliance with IEC 60076 standards.

Q: How does the automatic step voltage regulator compliant with IEC 60076 standards ensure the stability and safety of voltage regulation during actual operation?
A:

1.Stability: Strictly designed in compliance with IEC 60076 standards, equipped with an intelligent closed-loop control and precise step voltage regulation mechanism. It real-time monitors voltage fluctuations and performs automatic fine-tuning. Core components are verified through type tests to ensure a voltage error of ≤±1%.

2.Safety: Built-in overvoltage/overcurrent/overtemperature protection, insulation protection, and arc-extinguishing design for tap changers. The entire process complies with IEC 60076 safety specifications, and it supports automatic shutdown in case of faults to eliminate operational risks.

Know your supplier
Online store
On-time delivery rate
Response time
100.0%
≤4h
Company overview
Workplace: 108000m²m² Total staff: 700+ Highest Annual Export(usD): 150000000
Workplace: 108000m²m²
Total staff: 700+
Highest Annual Export(usD): 150000000
Services
Business Type: Design/Manufacture/Sales
Main Categories: High Voltage Electrical Apparatus/Electric transformer
Whole life care manager
Whole-life care management services for equipment procurement, use, maintenance, and after-sales, ensuring safe operation of electrical equipment, continuous control, and worry-free electricity consumption.
The equipment supplier has passed platform qualification certification and technical evaluation, ensuring compliance, professionalism, and reliability from the source.

Related Products

Related Knowledges

  • Impact of DC Bias in Transformers at Renewable Energy Stations Near UHVDC Grounding Electrodes
    Impact of DC Bias in Transformers at Renewable Energy Stations Near UHVDC Grounding ElectrodesWhen the grounding electrode of an Ultra-High-Voltage Direct Current (UHVDC) transmission system is located close to a renewable energy power station, the return current flowing through the earth can cause a rise in ground potential around the electrode area. This ground potential rise leads to a shift in the neutral-point potential of nearby power transformers, inducing DC bias (or DC offset) in their
    01/15/2026
  • HECI GCB for Generators – Fast SF6 Circuit Breaker
    1.Definition and Function1.1 Role of the Generator Circuit BreakerThe Generator Circuit Breaker (GCB) is a controllable disconnect point located between the generator and the step-up transformer, serving as an interface between the generator and the power grid. Its primary functions include isolating generator-side faults and enabling operational control during generator synchronization and grid connection. The operating principle of a GCB is not significantly different from that of a standard c
    01/06/2026
  • Distribution Equipment Transformer Testing, Inspection, and Maintenance
    1.Transformer Maintenance and Inspection Open the low-voltage (LV) circuit breaker of the transformer under maintenance, remove the control power fuse, and hang a “Do Not Close” warning sign on the switch handle. Open the high-voltage (HV) circuit breaker of the transformer under maintenance, close the grounding switch, fully discharge the transformer, lock the HV switchgear, and hang a “Do Not Close” warning sign on the switch handle. For dry-type transformer maintenance: first clean the porcel
    12/25/2025
  • How to Test Insulation Resistance of Distribution Transformers
    In practical work, insulation resistance of distribution transformers is generally measured twice: the insulation resistance between thehigh-voltage (HV) windingand thelow-voltage (LV) winding plus the transformer tank, and the insulation resistance between theLV windingand theHV winding plus the transformer tank.If both measurements yield acceptable values, it indicates that the insulation among the HV winding, LV winding, and transformer tank is qualified. If either measurement fails, pairwise
    12/25/2025
  • Design Principles for Pole-Mounted Distribution Transformers
    Design Principles for Pole-Mounted Distribution Transformers(1) Location and Layout PrinciplesPole-mounted transformer platforms should be located near the load center or close to critical loads, following the principle of “small capacity, multiple locations” to facilitate equipment replacement and maintenance. For residential power supply, three-phase transformers may be installed nearby based on current demand and future growth projections.(2) Capacity Selection for Three-Phase Pole-Mounted Tr
    12/25/2025
  • Transformer Noise Control Solutions for Different Installations
    1.Noise Mitigation for Ground-Level Independent Transformer RoomsMitigation Strategy:First, conduct a power-off inspection and maintenance of the transformer, including replacing aged insulating oil, checking and tightening all fasteners, and cleaning dust from the unit.Second, reinforce the transformer foundation or install vibration isolation devices—such as rubber pads or spring isolators—selected based on the severity of vibration.Finally, strengthen sound insulation at weak points of the ro
    12/25/2025

Related Solutions

  • Intelligent Operation Solution for 12kV Vacuum Circuit Breakers: Integrating Real-time Monitoring & Lifetime Optimization
    Ⅰ. Equipment Operation & MaintenanceIntelligent Monitoring System Integration​Multi-parameter Real-time Monitoring: Embedded sensors (temperature, displacement, Hall effect current sensors) track contact temperature rise, mechanical characteristics (opening/closing speed, overtravel), coil current, and partial discharge signals. Data undergoes preprocessing via edge computing prior to cloud upload.​Lifetime Prediction Model: Dynamically evaluates remaining lifespan using electrical wear data
    06/10/2025
  • SF6 Circuit Breaker Solutions for Outdoor Installation (Anti-Pollution & Seismic Resistance)
    I.Core Challenges in Outdoor Installation​In high-voltage transmission and distribution systems, SF6 circuit breakers are exposed to complex outdoor environments for extended periods, facing the following critical issues:​Pollution & Insulation Degradation​Dust, salt fog, and industrial pollutants in outdoor environments easily adhere to equipment surfaces. In coastal or industrial areas, pollution levels may reach ​Class IV, resulting in insufficient creepage distance and triggering ​flasho
    05/12/2025
  • 12kV Indoor Vacuum Circuit Breaker Southeast Asia Solution: Anti-Corrosion Compact Design
    12kV Indoor Vacuum Circuit Breaker Southeast Asia Solution: Anti-Corrosion Compact DesignⅠ. Executive Summary​Southeast Asia faces rapidly growing electricity demand alongside environmental challenges including high temperatures, humidity, salt spray corrosion, and grid instability. This solution recommends ​Solid Insulated Pole-Mounted Vacuum Circuit Breakers (VCB)​​ featuring ​high reliability, ​compact design, and ​smart monitoring. Tailored for tropical climates and industrial scenarios, it
    06/10/2025
Related Free tools
Haven't found the right supplier yet? Let matching verified suppliers find you. Get Quotation Now
Haven't found the right supplier yet? Let matching verified suppliers find you.
Get Quotation Now
Send inquiry
Download
Get the IEE Business Application
Use the IEE-Business app to find equipment, obtain solutions, connect with experts, and participate in industry collaboration anytime, anywhere—fully supporting the development of your power projects and business.