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Marine & Offshore Applications
Reliable transformer solutions for onboard power distribution,
marine equipment, and harsh operating environments.
Power Challenges and Transformer Solutions for Marine & Offshore Systems
Marine and offshore power systems must operate reliably under extreme environmental conditions. Continuous vibration, high humidity, confined installation spaces, and harsh marine exposure place strict demands on transformer safety, durability, and mechanical integrity.
Dry-type transformers are well suited to marine and offshore power distribution applications due to their fire-safe design, compact structure, and reliable performance in enclosed and high-humidity environments.
Marine & Offshore Applications
Reliable transformer solutions for onboard power distribution, marine equipment, and harsh operating environments.
17+
17 Years of ExpertiseSub-text: Founded in 2009, a National-level “Little Giant” enterprise leading in special power systems.
Power Challenges and Transformer Solutions for Marine & Offshore Systems
Marine and offshore power systems must operate reliably under extreme environmental conditions. Continuous vibration, high humidity, confined installation spaces, and harsh marine exposure place strict demands on transformer safety, durability, and mechanical integrity.
Dry-type transformers are well suited to marine and offshore power distribution applications due to their fire-safe design, compact structure, and reliable performance in enclosed and high-humidity environments.
Custom Dry-type Transformers for Marine& Off shore Applications
Custom Dry-type Transformers for Marine& Off shore Applications
Our Approach
We design dry-type transformer solutions specifically for marine and offshore power distribution systems, with a focus on durability, safety, and stable operation under demanding conditions.
Our focus is on:
• High mechanical strength for continuous vibration environments
• Fire-safe design for enclosed shipboard and offshore platform installations
• Moisture-resistant insulation systems for high-humidity conditions
• Compact construction for space-constrained applications
Delivering reliable transformer performance across demanding marine and offshore power systems.
What We Deliver
• Refinery power distribution systems
• LNG plant electrical systems
• Gas compression and pipeline stations
• Petrochemical process facilities
Our Approach
We design dry-type transformer solutions specifically for marine and offshore power distribution systems, with a focus on durability, safety, and stable operation under demanding conditions.
Our focus is on:
• High mechanical strength for continuous vibration environments
• Fire-safe design for enclosed shipboard and offshore platform installations
• Moisture-resistant insulation systems for high-humidity conditions
• Compact construction for space-constrained applications
Delivering reliable transformer performance across demanding marine and offshore power systems.
Global Project Footprint

Application Site: A steel plant overseas
Transformer capacity:17000kVA/6kV
Case Summary:
Water-cooled transformers are used to determine motor specifications, increase production capacity, and reduce costs; their application is among the most complex.

Application Site: SDIC Xuancheng Power Generation Co., Ltd.
Transformer capacity: 2000kVA/6kV
Case Summary:
Used in the induced draft fans of the 3*135MW units at Sihanoukville Thermal Power Plant in Cambodia by Sihongjun Power, to improve the power plant’s power generation process.

Application Site: HVAC systems at Shanghai Pudong
Transformer capacity: 2000kVA/6kV
Case Summary:
Used in airport cooling and heating systems to achieve intelligent and energy-saving electricity consumption.

Application Site: A forward-looking experimental wind field in Zhangbei, Hebei
Transformer capacity: 11000KVA/37.625KV
Case Summary:
Two 11MVA grid simulators successfully completed parallel adaptability and complex “double-chain” fault ride-through tests on a 10MW doubly-fed wind turbine, achieving a technical breakthrough.
Global Project Footprint