Get in touch with Talite Transformer Co., Ltd Company
Dry-Type Transformer
Dry Type Transformer Manufacturer for Project-Specific Power Distribution
A useful dry-type transformer quotation starts with the electrical duty, site environment, construction, cooling, enclosure and evidence requirements already defined. Talite Transformer routes each industrial power-distribution enquiry to the relevant product family instead of treating every dry transformer as a generic configuration.
Start with the electrical system
Send rated kVA, primary and secondary voltage, frequency, phase, vector group, target impedance and the load profile. Harmonics, motor starting, cyclic duty and future expansion can change thermal and protection decisions even when the nameplate kVA is unchanged.
Define the room and operating boundary
State indoor or outdoor placement, altitude, ambient range, dust, moisture, condensation, corrosion, ventilation, sound limits and available clearances. These inputs determine whether the proposal needs a cast-resin or open-wound path, an enclosure, fan assistance or further engineering review.
Send the single-line diagram, load schedule and project specification when available. Mark unknown fields for review instead of filling them with generic values.
Send Your Transformer Requirements
Talite Dry-Type Transformer Product Range
Talite Transformer Co., Ltd. has worked in power equipment for more than three decades and integrates research and development, production and sales. We supply cast resin dry-type transformer and open-wound dry-type transformer families, with a separate medium-voltage dry-type transformer route for projects that require more detailed insulation coordination and system review.
Product-family labels do not replace a project standard or construction definition. When IEEE C57.12.01 applies, the proposal should identify whether the transformer is ventilated, non-ventilated or sealed and then state the model-specific cooling and enclosure boundary.[2]
Medium-Voltage Dry Type Transformer
Use this path when the primary system, basic insulation level, taps, terminals, enclosure, cooling and applicable standard must be coordinated as a medium-voltage package. We review the project voltage class and site conditions before the final ratings are fixed.
Review Medium-Voltage Options
Cast Resin Dry Type Transformer
Epoxy cast-resin windings help address moisture, contamination and fire-sensitive indoor installation requirements without using insulating oil. We match the resin system, thermal class, cooling and enclosure to the project rather than using the cast-resin label as a complete specification.
Compare Cast-Resin Configurations
1000 kVA 11 kV Cast Resin Transformer
This product route covers a supplied 1000 kVA, 11 kV three-phase cast-resin model. We keep the 1000 kVA and 11 kV values attached to that model; a different load, voltage, impedance, enclosure or environmental duty receives a separate configuration review.
Review the 1000 kVA / 11 kV Model
Open-Wound Dry Type Transformer
Open-wound construction keeps the winding structure ventilated and accessible to air, making room ventilation and contamination control central to the design. We offer a 3750 kVA open-wound model path for heavy-duty applications, subject to complete electrical and site inputs.
Review the Open-Wound ProductApplications that need project screening
Cast Resin and Open-Wound Construction
Cast resin and open-wound constructions are not interchangeable. ‘Best’ is not the criterion; it’s a trade-off between winding protection, ventilation, heat removal, physical access, contamination risk, fire strategy, construction footprint and formal documentation required for project approvals.
IEEE C57.12.01 distinguishes ventilated, non-ventilated and sealed dry-type transformer categories; the project still has to define which construction and cooling boundary applies to the proposed model.[2]
| Decision field | Cast resin path | Open-wound path | Project input required |
|---|---|---|---|
| Winding exposure | Windings are encapsulated in resin | Ventilated winding structure remains open to cooling air | Dust, moisture, condensation and contamination profile |
| Heat rejection | Coordinate resin thermal system, ducts and optional fan cooling | Coordinate natural or forced airflow through the winding structure | Ambient range, room temperature rise and airflow path |
| Enclosure | Selected around access, environment and cooling | Especially important where an open structure needs environmental separation | Indoor/outdoor location, IP requirement and clearances |
| Inspection access | External condition, connections, sensors and cooling components remain service points | Open structure makes contamination and cleaning access more prominent | Maintenance plan, shutdown access and cleaning method |
| Common route | Occupied, moisture-sensitive or contamination-managed indoor projects | Controlled indoor rooms where ventilation and cleanliness are designed around the unit | Fire strategy, room design and local acceptance rules |
| Evidence | A construction name does not establish voltage class, efficiency, sound, partial discharge, enclosure rating or market certification. | Data sheet, drawings, test schedule and model-level evidence | |
A construction name alone is not a substitute for a project specification. Dry type can be the wrong answer when outdoor duty, large capacities, severe ventilation challenges or local fire regulations favor another transformer technology; that boundary is determined in relation to the specific site, its operating conditions and approval context.
Dry Type Transformer Selection Boundary Matrix
Use five gates before selecting a product card: electrical duty, installation environment, thermal path, evidence requirement and quotation scope. If any gate is undefined, the correct next step is to define it in the request for quotation, not to infer it from a brochure image or family name.
Electrical duty
kVA, voltages, frequency, phase, vector group, impedance, taps and load profile.
Environment
altitude, ambient, dust, moisture, corrosion, outdoor exposure and room access.
Thermal path
natural or forced air, heat rejection, clearance and fan duty.
Evidence
design standard, regulatory scope, product acceptance, tests and approval documents.
Quotation scope
accessories, quantity, destination, inspection, packaging and written commercial terms.
“A transformer proposal becomes comparable only when the electrical duty, installation boundary, evidence scope and commercial scope describe the same equipment.”
Materials, Insulation, and Thermal Design
Electrical Ratings and Service Conditions
Use this table as a qualification screen, not as a universal catalog range. Model-specific values remain tied to the named cast-resin or open-wound product path, and every proposal still needs the project load, fault study, protection, insulation coordination and installation conditions.
| Specification | Talite product data | Scope |
|---|---|---|
| Cast-resin model | 1000 kVA | Named three-phase cast-resin model |
| Cast-resin model voltage | 11 kV | Named 1000 kVA model |
| Open-wound model | 3750 kVA | Named open-wound model |
| SC(B) series high-voltage options | 6, 6.3, 10, 10.5 and 11 kV | SC(B) series table |
| SC(B) series low-voltage option | 0.4 kV | SC(B) series table |
| Tap range shown | ±5% or ±2 × 2.5% | SC(B) series table; final tap arrangement per project |
| Vector groups shown | Yyn0 and Dyn11 | SC(B) series options |
| Normal service altitude | Up to 1,000 m | Stated normal service condition |
| Maximum ambient temperature | +40°C | Stated normal service condition |
| Maximum daily average | +30°C | Stated normal service condition |
| Maximum annual average | +20°C | Stated normal service condition |
| Minimum ambient temperature | -25°C | Stated normal service condition |
| Insulation class temperature | 155°C | F-class material statement |
| Cast-resin partial discharge | <10 pC | Relevant series; confirm model and test protocol |
| Documented design basis | IEC 60076-11 and GB/T 10228 | Design reference, not product certification |
Configuration, Price Drivers, and Quotation Scope
A dry type transformer price follows the complete design and supply scope, not kVA alone. A dry type transformer specification should align winding material, voltage class, insulation construction, losses, temperature rise, impedance, enclosure, accessories, test plan, quantity, packaging and destination before quotations are compared.
Cost drivers that belong on the comparison sheet
Compare written scope before comparing price
Two quotations with the same kVA can still describe different transformers. Align conductor material, losses, temperature rise, impedance, enclosure, accessories, test schedule, documents, packaging and destination before treating the totals as comparable.
Quotation package to request
- Rated data and loss schedule for the proposed model.
- Outline drawing, terminal arrangement, electrical connections, mass and lifting information.
- Construction, conductor material, insulation class, cooling and enclosure description.
- Routine, type and special tests, including dielectric withstand or short-circuit withstand evidence when specified.
- Temperature monitoring, fan control, circuit breakers or protective interfaces, and accessory list.
- Commercial terms, production schedule, packaging and destination stated in writing.
Talite confirms the final commercial and delivery terms in the written quotation for the defined configuration. That written quotation is the controlling record for project price and schedule.
Standards, Testing, and Evidence Boundaries
Standards must be attached to the claim they actually support. We use IEC 60076-11 and GB/T 10228 as documented design references in the relevant product material, while a project-specific quotation must identify the applicable edition, required tests and evidence for the exact model.
IEC 60076-11 Scope
IEC 60076-11:2018 covers dry-type power transformers and autotransformers up to and including 72.5 kV, with stated exclusions. Project specifications should state the design standard, required tests and any separate market-approval or certification requirement as distinct acceptance fields.[1]
IEEE C57.12.01 Scope
IEEE C57.12.01-2020 is an active standard for ventilated, non-ventilated and sealed dry-type distribution and power transformers or autotransformers at 601 V or higher on the highest-voltage winding. Use it when the project specification requires the IEEE framework, then define the exact clauses and tests.[2]
U.S. Department of Energy Scope
U.S. energy-conservation rules cover defined distribution-transformer categories and exclude listed equipment types. The amended standards have a compliance date of April 23, 2029, but coverage and model-level certification must be established before making a U.S. compliance statement.[3][4]
Workplace Product Acceptance
For U.S. workplaces, a Nationally Recognized Testing Laboratory requirement is tied to the product, authorized mark, test standard and installation context. Specify the exact product-acceptance evidence required by the authority or project separately from an IEC or IEEE design reference.[5]
Test Schedule Fields












Product Gallery and Application Fit
Product evidence is strongest when the image, rating and product path describe the same item. The views below use customer-provided transformer files for this category and keep each visible rating attached to its named product path.
Cast-resin three-phase transformer product view associated with the 1000 kVA / 11 kV product material.
Front view showing three encapsulated phase windings and the lower cooling arrangement.
Open-wound transformer product view associated with the 3750 kVA product material.
Application screening by operating condition
How Critical Facilities Change the Specification
Coordinate redundancy philosophy, harmonic loads, mechanical rooms, heat rejection, sound, fire strategy, monitoring and access. The dry-type label addresses the insulation medium, but it does not close the thermal or system-reliability design.
Industrial manufacturing
Provide motor starting, cyclic duty, converter or rectifier harmonics, fault level and contamination data. Heavy-duty service can change impedance, winding mechanical design, cooling and maintenance access.
Hospitals, rail and occupied facilities
Define local acceptance, fire compartment, sound, ventilation, shutdown access and product approval requirements early. The authority having jurisdiction and project specification control the evidence package.
Renewable energy and infrastructure
Coordinate grid voltage, frequency, earthing, harmonic spectrum, ambient extremes, altitude and enclosure. Outdoor placement requires a complete environmental and cooling design, not only an outdoor label.
Selection Boundaries for Dry Type Transformers
Dry type is not an automatic answer for every project. Dry type transformer maintenance requirements and lifecycle objectives depend on the electrical duty, heat-rejection path, environment, available space, fire and spill strategy, access and market rules.
A Limitation Should Create a Decision Path
If ventilation, enclosure, system duty or evidence cannot be closed, compare an alternative construction or transformer technology before release. That comparison is more valuable than forcing every project into a dry transformer because the category appears safer or simpler on paper.
If the site boundary points to another equipment family, review a pad-mounted transformer configuration path for outdoor distribution layouts or a single-phase liquid-filled configuration when the phase arrangement and drawing-confirmed installation fit call for that route.
Dry-Type Transformer Engineering Tools
Three-Phase Transformer Current Calculator
Enter apparent power and line-to-line voltage to estimate rated three-phase line current. Use the result as an RFQ input, not as a protection, cable, or transformer-sizing decision.
Dry Type Transformer RFQ Builder
A comparable quotation starts with a comparable scope. Fill the fields you know; the builder leaves missing items marked for engineering review instead of guessing.
Dry Type Transformer Selection Boundary Check
Select the conditions that apply. The tool produces engineering questions and a product-page route; it does not make a final transformer selection.
FAQ: Dry Type Transformer Selection and Specifications
How do I choose between cast resin and open-wound construction?
Start with moisture, dust, contamination, room ventilation, fire strategy, access and maintenance conditions. Cast resin adds winding encapsulation; open-wound construction makes clean cooling air and enclosure design especially important, while the final choice still depends on voltage, kVA and the complete site boundary.
Can a dry type transformer be installed outdoors?
Outdoor use is an enclosure and thermal-design question, not a family-name shortcut. State the ambient range, altitude, solar exposure, rain, condensation, contaminants, corrosion, ingress requirement and heat-rejection path so the construction and enclosure can be reviewed together.
What ventilation information is required for a transformer room?
Provide room dimensions, inlet and outlet locations, airflow, maximum room temperature, adjacent heat sources and whether fan-assisted transformer cooling is planned. Room ventilation must remove transformer heat without recirculating hot discharge air or blocking required clearances.
What is the difference between dry type and oil-filled transformer selection?
For buyers comparing a dry type transformer vs oil filled transformer, the starting points are the insulation and cooling medium, spill strategy and installation location. Liquid-filled designs can offer different power-density and heat-transfer characteristics, so capacity, containment, maintenance, environment and local rules should be compared rather than reduced to one universal preference.
Which ratings should be included in a dry transformer RFQ?
Include kVA, primary and secondary voltage, frequency, phase, taps, vector group, impedance, cooling, insulation class, loss or efficiency requirements, ambient, altitude, enclosure and the load profile. For a balanced three-phase estimate, the line current can be checked with I = kVA × 1,000 ÷ (√3 × V).
Does Talite have a 1000 kVA 11 kV cast resin transformer?
Yes. The specified product path is a 1000 kVA, 11 kV three-phase cast-resin model; confirm secondary voltage, vector group, impedance, taps, cooling, enclosure, losses, accessories and tests in the project quotation.
What service conditions are listed for the SC(B) cast-resin material?
Stated normal conditions include altitude up to 1,000 m, maximum ambient +40°C, maximum daily average +30°C, maximum annual average +20°C and minimum ambient -25°C. A site outside those conditions needs project-specific thermal and dielectric review.
What does the <10 pC partial discharge value cover?
This <10 pC statement belongs to the relevant supplied cast-resin series material. It should be repeated in the quotation and test schedule for the exact model, together with the applicable test method and acceptance criterion.
Does IEC 60076-11 mean the transformer is certified for a U.S. project?
No. IEC 60076-11 is a dry-type transformer standard with a stated scope up to and including 72.5 kV, while U.S. energy coverage, model certification and workplace product acceptance are separate questions that must be resolved for the exact equipment and installation.
What should I send to receive a comparable quotation?
Send the single-line diagram, load schedule, electrical ratings, ambient and altitude, installation and enclosure requirements, cooling, accessories, test and document list, quantity and destination. Use the RFQ builder above to leave unknown items visible for engineering review instead of hiding them behind generic assumptions.

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