Design · Working documentation · 3-D models · 0.4–220 kV

Working documentation, 3-D models and drawings of electrical equipment

  • Manufacturing documentation for switchgear, RMU, package substation and outdoor gear makers: DWG drawings, 3D models
  • Outsourced design office: equipment design to your specification
  • Tender documentation: data sheets, technical specifications, material take-offs
  • Manufacturing support at the factory
  • Design consulting and approvals

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... since August 1998

Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering Proekt-Energo — electrical equipment design and engineering

Proekt-Energo

Area of activity

  • Design of LV, MV and HV substation electrical equipment for voltages of 0.4–220 kV
  • Development of manufacturing documentation matched to the plant’s production capabilities
  • Preparation of preliminary technical documentation for equipment supply tenders
  • Consultations on design approvals
  • Support of equipment manufacture at the plant
Supporting equipment manufacture at the plant
Supporting equipment manufacture at the plant

Proekt-Energo

Specialization

  • Metal-clad MV switchgear for indoor and outdoor installation, 6, 10, 20, 35 kV
  • Metal-enclosed switchgear cubicles (KSO), 6 and 10 kV
  • Package transformer substations, 10–220 kV
  • Disconnectors 0.4–220 kV
  • Operating mechanisms for disconnectors
  • Replacement of withdrawable parts and breakers in existing switchgear (retrofit)
  • Low-voltage switchgear 0.4 kV
  • DC switchgear RU-600
MV switchgear panels
MV switchgear
Working documentation · drawings · 3-D models
Working documentation · drawings · 3-D models

How we work

From enquiry to finished product

  1. 01

    Enquiry and specification

    You send the request and the equipment specification.

  2. 02

    Quote and material take-off

    We prepare a commercial offer and a preliminary material take-off list.

  3. 03

    Manufacturing documentation and 3D models

    We develop the manufacturing documentation and 3D models of the products.

  4. 04

    Design approval

    We consult and approve the design solutions with you.

  5. 05

    Production support

    We support the manufacture of the equipment at the plant.

Proekt-Energo

Design documentation for switchgear, RMU cubicles, package substations and retrofit, 0.4–220 kV

Drawings, 3D models, technical specifications and production support

Discuss your project
since 1998designing electrical equipment
0.4–220 kVvoltage classes of working documentation
KRU · KSO · KTPKRUN, disconnectors, retrofit
6 languagesdocumentation RU EN DE ES PL UK

Proekt-Energo

For manufacturers and buyers of electrical equipment

We develop manufacturing documentation, DWG drawings and 3D models for manufacturers of MV switchgear, metal-enclosed cubicles, package substations, outdoor switchgear and retrofit 0.4–220 kV. We prepare technical documentation for tenders, support equipment manufacture at the plant, and hand over a complete set of operating and design documentation to equipment buyers.

Frequently asked questions about design documentation

How much does documentation for a switchgear line cost?

The cost depends on the scope and composition of the package. We quote the exact price after reviewing your specification or questionnaire — usually within one working day.

What is the lead time for a documentation package?

A typical package for one product takes from 10 working days. Large series and complete documentation sets are scheduled individually.

In which formats is the documentation delivered?

Drawings — DWG (AutoCAD) and PDF; 3D models — STEP/IGES. We select formats to match the customer’s production.

Do you prepare tender documentation?

Yes: data sheets, technical specifications, preliminary material take-off lists and explanatory notes for tender participation.

Do you work with factories as an outsourced design office?

Yes — as the factory’s permanent design office or per project. We work under contract with an NDA and hand over the source model and drawing files.

Do you support manufacturing against your own documentation?

Yes: design supervision, answers to production queries, and change notices until the finished product.

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Substation and Electrical Equipment Design in Compliance with IEC, IEEE, ANSI Standards

Purpose and application

We offer professional engineering services for the development of design documentation for substation electrical equipment rated 0.4–220 kV, focusing on primary single-line diagrams, layout solutions, and technical specifications.

Overview

Projects are carried out in strict compliance with IEC, IEEE, and ANSI international standards and are adapted to the technical requirements, climatic conditions, and regulatory framework of the target country. The goal is to ensure operational reliability and safety, meet modern energy efficiency requirements, and reduce total cost of ownership.

Services Offered

Design of electrical equipment for substations (0.4–220 kV)

  • Primary single-line diagram configuration selection - defining topologies (single bus, double bus, with automatic transfer/reserve, ring or radial solutions) depending on the required reliability level and consumer category.
  • Equipment layout - placement of transformers, switchgear, circuit breakers, disconnectors, and busducts, ensuring operational convenience, fault selectivity, safety requirements, and optimization of conductor routes.
  • Grounding and lightning protection - calculation and design of solutions to ensure electrical safety, reduce overvoltages, and comply with permissible potential limits.
  • Digital integration - incorporating intelligent switching devices, digital instrument transformers, monitoring systems, and remote diagnostics.

Modernization and Retrofit Design

  • Replacement of obsolete equipment - preparation of documentation for upgrading to modern, more reliable, and energy-efficient solutions with minimal intervention in existing infrastructure.
  • Adaptation to current standards - revising layouts and designs to meet IEC/IEEE/ANSI and local regulations.
  • Layout optimization - increasing switchgear load capacity, reducing footprint, and improving safety and maintenance conditions for operating personnel.
  • Reduction of operational costs - implementing solutions to minimize losses, reduce scheduled maintenance frequency, and extend equipment lifespan.
  • Integration of new systems into existing schemes - matching parameters and interfaces while preserving selectivity and operational stability.

Equipment in Design

  • Switchgear (MV/LV) - KYN-28, KSO-366, and other types for indoor and outdoor installations.
  • Power transformers - oil-filled and dry-type, with various cooling systems.
  • Circuit breakers - vacuum and SF₆, designed for specified breaking capacity and operating conditions.
  • Disconnectors, earthing switches, isolators - ensuring safe maintenance conditions.
  • Busducts and conductors - cross-section selection, thermal withstand capability, and arrangement.
  • Auxiliary primary equipment - instrument transformers, bushings, surge arresters.

Equipment nomenclature and specifications are defined according to project requirements and selected manufacturers.

Work Stages

  1. Initial data analysis - technical specifications, operating parameters, utility/operator requirements, climatic and site constraints.
  2. Design documentation development - primary single-line diagrams, layout drawings, electrical parameter calculations, and equipment specifications.
  3. Documentation delivery - full set of materials in the agreed format (DWG/PDF, etc.), with adaptation for local compliance review and approvals if required.

Advantages

  • Compliance of design solutions with IEC, IEEE, ANSI international standards.
  • Flexible adaptation to regulatory frameworks and climatic conditions of different countries.
  • High level of detail in primary diagrams and layouts, ready for implementation without modifications.
  • Optimization of reliability, safety, and operational efficiency.
  • Capability to integrate modern digital technologies and intelligent devices.

FAQ - Frequently Asked Questions

Which standards are used in design?

Documentation is prepared in accordance with IEC, IEEE, ANSI. National regulations of the target country can also be taken into account.

How is remote cooperation organized?

Communication is via email, video conferencing, and secure file sharing. Materials are delivered in agreed digital formats (DWG, PDF, etc.).

Can the project be tailored to a specific manufacturer?

Yes, specifications and solutions can be adapted to specific product lines and technical parameters.

What voltage classes are covered?

Design covers equipment rated 0.4–220 kV, including various configurations of switchgear and transformer bays.

Do you carry out modernization projects?

Yes, documentation is developed for retrofits - equipment replacement, layout optimization, and compliance upgrades.

What does the delivered documentation include?

The basic package includes primary single-line diagrams, 3D models, assembly and part drawings, and specifications. Format and content are agreed in advance.

Is it possible to implement projects for facilities in other countries?

Yes, designs can be adapted to local regulations and site conditions, enabling full international project delivery.

How are timeframes estimated?

Timeframes depend on project scope and complexity; preliminary estimates are given after receiving the technical specifications and initial data.

© Proekt-Energo. Engineering design of substations and high-voltage equipment (0.4–220 kV). Compliance with IEC · IEEE · ANSI.

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Purpose and application

1. General provisions

This Privacy Policy describes how we collect, use, and protect personal data of users of proekt-energo.com. Personal information is processed only for the purposes described below.

2. Data we collect

  • Name, phone number, email address - if provided via forms or correspondence.
  • Company information - when requesting project services (if provided).
  • Technical visit data (IP, browser type, access time, viewed pages) - for site operation and statistics.

3. Purposes of data use

  • Responding to inquiries and communication.
  • Preparing proposals and cost estimates.
  • Improving website functionality.
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4. Data sharing

We do not sell or share personal data without consent, except when necessary for website operation (hosting, email services) or required by law.

5. Data retention

Data is stored as long as necessary for the stated purposes or as required by law. Project-related correspondence may be stored longer to confirm agreements and technical specifications.

6. User rights

  • Obtain a copy of your data.
  • Request correction or deletion.
  • Restrict or object to processing.
  • Withdraw consent.

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Organizational and technical measures are applied to protect data from unauthorized access, modification, or destruction.

9. Contact

For personal data inquiries: inbox@proekt-energo.com

Substation and Electrical Equipment Design in Compliance with IEC, IEEE, ANSI Standards

Purpose and application

We offer professional engineering services for the development of design documentation for substation electrical equipment rated 0.4–220 kV, focusing on primary single-line diagrams, layout solutions, and technical specifications.

Overview

Projects are carried out in strict compliance with IEC, IEEE, and ANSI international standards and are adapted to the technical requirements, climatic conditions, and regulatory framework of the target country. The goal is to ensure operational reliability and safety, meet modern energy efficiency requirements, and reduce total cost of ownership.

Services Offered

Design of electrical equipment for substations (0.4–220 kV)

  • Primary single-line diagram configuration selection - defining topologies (single bus, double bus, with automatic transfer/reserve, ring or radial solutions) depending on the required reliability level and consumer category.
  • Equipment layout - placement of transformers, switchgear, circuit breakers, disconnectors, and busducts, ensuring operational convenience, fault selectivity, safety requirements, and optimization of conductor routes.
  • Grounding and lightning protection - calculation and design of solutions to ensure electrical safety, reduce overvoltages, and comply with permissible potential limits.
  • Digital integration - incorporating intelligent switching devices, digital instrument transformers, monitoring systems, and remote diagnostics.

Modernization and Retrofit Design

  • Replacement of obsolete equipment - preparation of documentation for upgrading to modern, more reliable, and energy-efficient solutions with minimal intervention in existing infrastructure.
  • Adaptation to current standards - revising layouts and designs to meet IEC/IEEE/ANSI and local regulations.
  • Layout optimization - increasing switchgear load capacity, reducing footprint, and improving safety and maintenance conditions for operating personnel.
  • Reduction of operational costs - implementing solutions to minimize losses, reduce scheduled maintenance frequency, and extend equipment lifespan.
  • Integration of new systems into existing schemes - matching parameters and interfaces while preserving selectivity and operational stability.

Equipment in Design

  • Switchgear (MV/LV) - KYN-28, KSO-366, and other types for indoor and outdoor installations.
  • Power transformers - oil-filled and dry-type, with various cooling systems.
  • Circuit breakers - vacuum and SF₆, designed for specified breaking capacity and operating conditions.
  • Disconnectors, earthing switches, isolators - ensuring safe maintenance conditions.
  • Busducts and conductors - cross-section selection, thermal withstand capability, and arrangement.
  • Auxiliary primary equipment - instrument transformers, bushings, surge arresters.

Equipment nomenclature and specifications are defined according to project requirements and selected manufacturers.

Work Stages

  1. Initial data analysis - technical specifications, operating parameters, utility/operator requirements, climatic and site constraints.
  2. Design documentation development - primary single-line diagrams, layout drawings, electrical parameter calculations, and equipment specifications.
  3. Documentation delivery - full set of materials in the agreed format (DWG/PDF, etc.), with adaptation for local compliance review and approvals if required.

Advantages

  • Compliance of design solutions with IEC, IEEE, ANSI international standards.
  • Flexible adaptation to regulatory frameworks and climatic conditions of different countries.
  • High level of detail in primary diagrams and layouts, ready for implementation without modifications.
  • Optimization of reliability, safety, and operational efficiency.
  • Capability to integrate modern digital technologies and intelligent devices.

FAQ - Frequently Asked Questions

Which standards are used in design?

Documentation is prepared in accordance with IEC, IEEE, ANSI. National regulations of the target country can also be taken into account.

How is remote cooperation organized?

Communication is via email, video conferencing, and secure file sharing. Materials are delivered in agreed digital formats (DWG, PDF, etc.).

Can the project be tailored to a specific manufacturer?

Yes, specifications and solutions can be adapted to specific product lines and technical parameters.

What voltage classes are covered?

Design covers equipment rated 0.4–220 kV, including various configurations of switchgear and transformer bays.

Do you carry out modernization projects?

Yes, documentation is developed for retrofits - equipment replacement, layout optimization, and compliance upgrades.

What does the delivered documentation include?

The basic package includes primary single-line diagrams, 3D models, assembly and part drawings, and specifications. Format and content are agreed in advance.

Is it possible to implement projects for facilities in other countries?

Yes, designs can be adapted to local regulations and site conditions, enabling full international project delivery.

How are timeframes estimated?

Timeframes depend on project scope and complexity; preliminary estimates are given after receiving the technical specifications and initial data.

© Proekt-Energo. Engineering design of substations and high-voltage equipment (0.4–220 kV). Compliance with IEC · IEEE · ANSI.

Proekt-Energo

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