OEM/ODM Wind Turbines Factory & Exporter

Custom Energy Conversion Systems, Grid-Tie Inverters, and Smart Microgrid Solutions Powered by Industrial Expertise Since 2004

Premium Renewable Energy Integration Products

Explore our industrial-grade power converters, grid interfaces, and hybrid energy controllers engineered for operational resilience.

700kVA Marine Shore Power System

700kVA 3 Phase Marine Shore Power System 380V 24-400Hz Forced Convection Cooling 100A Output Current Efficiency 0.96 Power

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300kW Bidirectional PCS Inverter

300kW Bidirectional PCS Inverter for Battery Energy Storage System with Isolation Transformer

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Deming 500KW Hydro Turbine AVR

Deming 500KW Three Phase Single PhaseStabilize AC Hydro Turbine Use Automatic Voltage Regulator Touch Screen Interface

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200kw Off Grid Solar Inverter

Off Grid Solar Inverter 200kW 3 Phase for Industrial Factory Farm Solar Energy System

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Home Use 2kw Wind Turbine Kit

Home Use 2kw Wind Turbine Generator Kit 220v Wind Power System for Personal Use

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Windmill Inverter Hybrid Controller 20kw

Windmill Inverter Hybrid Controller 20kw Inverter Charge Controllers for Wind Generator

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Deming 200kW Renewable Power Regulator

Deming 200kW Renewable Power Frequency Voltage Regulator

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Deming DMGC-200 100KW 200KW Inverter

Deming DMGC-200 High Efficiency 99% 100KW 200KW Three Phase Grid Connected Generator Power Converter Inverter 50/60Hz

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OEM/ODM Manufacturing Strategy for High-Performance Wind & Renewable Systems

As global energy systems transition to decentralized, zero-carbon infrastructures, the integration of volatile wind power into the utility grid requires intelligent, heavy-duty electronics. Developing wind generation assets involves not only the mechanical design of wind turbines but also the electrical orchestration of voltage, frequency, and load storage variables.

About Jinan Deming Power Equipment Co., Ltd.
Jinan Deming Power Equipment Co., Ltd. is a nationally recognized high-tech enterprise established in 2004, specializing in the research, development, production, and service of renewable energy power equipment and advanced power testing solutions. The company holds ISO9001:2015 certification and has been recognized as a high-tech enterprise by the Chinese government multiple times (2015, 2018).

With over two decades of technical evolution, Jinan Deming Power Equipment has positioned itself at the cutting edge of industrial-grade power frequency management, bidirectional power conversion, and smart grid support systems. In modern grid frameworks, wind turbines operate under severe dynamic loads; thus, static converters must execute sub-millisecond reactions to voltage dips, line sags, and phase deviations. Our engineering team approaches power design through the lens of robust thermodynamic performance and micro-controller intelligence.

Advanced Customization & System Architecture

Wind conditions differ globally, ranging from low-velocity inland breeze zones to extreme offshore coastal zones. Therefore, off-the-shelf conversion systems often fall short. Our OEM/ODM programs deliver customized parameters for turbine pitch-control assistance, direct-drive synchronous generator match-ups, and specialized doubly-fed induction generators (DFIG).

We optimize thermal management profiles (forced convection, liquid-cooled solutions, or natural cooling) to allow systems to thrive in harsh environments—from Siberian sub-zero operations to Middle Eastern desert thermal loading.

Uncompromising Quality Assurance Standards

Reliability is the foundation of our engineering philosophy. By maintaining control over every step of the PCB fabrication, trace layout, copper bar machining, and multi-stage testing processes, we ensure that every system leaving our factory is optimized for prolonged operational lifespans. We incorporate galvanic isolation, active anti-islanding mechanisms, high-speed DSP processing, and comprehensive remote monitoring portals to give project developers absolute confidence in their balance-of-plant assets.

2004
Established Year
16
R&D Engineers (PhD/Master)
>20%
Sales Revenue Invested in R&D
120+
Export Destination Countries
17
R&D Projects Completed (3 Yrs)

Supply Chain Strength: The Chinese Wind Power Advantage

Leveraging deep component integration, rare-earth material proximity, and world-class electronics fabrication pipelines.

Integrated Industrial Clusters

Located within China's premier advanced energy engineering corridor, we draw upon adjacent component manufacturers, including high-precision IGBT suppliers, heat sink extruders, and transformer winding facilities. This cluster network reduces shipping times and logistics costs while accelerating prototype turnarounds.

Research-Driven Technology Conversion

With at least 20% of our annual revenue dedicated to research pipelines, we bridge the gap between academic theory and real-world grid performance. Our team has commercialized 16 major technological achievements over the last three years, targeting grid stabilization, low-voltage ride-through (LVRT), and high-frequency active power dampening.

Global Grid Compliance & Export Logistics

Having deployed critical systems across more than 120 nations—including Germany, the United States, Japan, the United Kingdom, Brazil, and Australia—we understand international grid requirements. Our designs are engineered to conform to strict electromagnetic compatibility, frequency variations, and safety certificates required by utilities worldwide.

State-of-the-Art Production & Testing Facilities

Witness the rigorous manufacturing stages, advanced diagnostic tools, and quality validation systems behind every Deming solution.

Tailored Solutions for Modern Utility Scenarios

Applying high-efficiency inverters, custom DCDC converters, and marine system configurations to solve global decarbonization challenges.

1. Port Electrification & Marine Shore Power Integration

Modern ports face heavy pressure to cut maritime emissions by mandating shore-to-ship power (cold ironing). Since international vessels run on varied systems (e.g., 60Hz in North America vs. 50Hz in Europe and Asia), port authorities require solid-state conversion architectures. Our 700kVA Marine Shore Power Systems deliver seamless voltage transformations (e.g., 380V) and frequency flexibility (24-400Hz) with 96% energy efficiency. Equipped with forced convection cooling, these systems withstand corrosive, high-humidity marine air.

2. Grid-Scale Battery Energy Storage (BESS)

Wind generation is inherently variable. Utilizing a bidirectional PCS inverter is critical to store excess generation and discharge it during peak demand. Deming’s 300kW Bidirectional PCS Inverters feature isolation transformers to buffer grid anomalies. Combined with our stackable 30kW to 100kW DC/DC Converters, system developers can connect battery racks to a centralized DC bus, maximizing system up-time and streamlining thermal management.

3. Industrial-Grade Off-Grid Systems for Distant Operations

Remote mine operations, agricultural sites, and isolated factories often operate outside utility reach. In these settings, combining solar, wind, and diesel generation into a microgrid is the most viable path to reliability. Using our 200kW Off-Grid Inverters alongside MPPT wind-solar hybrid controllers (3kW to 20kW), remote facilities can establish self-healing networks. This setup minimizes dependence on imported diesel fuel and lowers operational expenditure.

4. Green Hydrogen Co-Generation

Storing excess wind power as pressurized green hydrogen is a key trend in energy storage. Electrolyzers require precise, low-voltage, high-current DC inputs. Our Deming DMDCDC-100KW Triple Output DC/DC Converters are engineered specifically for fuel cells and hydrogen generators. They provide up to 1000A output and high isolation barriers, ensuring safe, stable power transfer without risking grid contamination.

Engineering FAQ & Procurement Insights

Technical answers to help consulting engineers, EPC contractors, and procurement managers select the right systems.

What parameters are critical when specifying a Wind/Solar Hybrid Controller?
When specifying a wind/solar hybrid controller, engineers must evaluate the generator's open-circuit voltage (Voc), maximum power point tracking (MPPT) voltage window, dump load resistor sizing, and dynamic braking characteristics. Wind turbines produce fluctuating AC voltages that require rectification and buck/boost control. An optimal system includes custom-matched dump load resistors to protect the turbine from overspeed conditions during utility outages or periods of high wind velocity.
How does the 700kVA Marine Shore Power System handle the marine environment?
Our Marine Shore Power Systems feature marine-grade anti-corrosive coatings, tropicalized internal components, and IP-rated enclosures. Enclosures are built with forced-convection thermal dissipation systems that keep interior moisture to a minimum. The internal isolation transformers isolate shipboard electrical disturbances from the shore utility, preventing harmonic feed-back and protecting delicate navigation electronics.
Why is bidirectional DC-DC conversion critical for Battery Energy Storage (BESS)?
Bidirectional DC-DC converters allow power to flow both ways between different DC voltage rails (e.g., matching a fluctuating battery pack to a stable DC bus). This capability is crucial for managing charging and discharging cycles without needing redundant unidirectional systems. Our converters feature high switching frequencies and soft-switching topologies (like phase-shifted full-bridge or LLC) to keep conversion efficiencies above 98%.
What are the lead times and customization pathways for OEM/ODM orders?
For standard configurations (such as standard controllers and converters up to 50kW), lead times typically run 3 to 4 weeks. For custom OEM/ODM systems (e.g., high-power cabinets ranging from 150kW to 500kW), we follow a structured 5-phase engineering flow: 1) Technical requirements validation and CAD design; 2) Simulation and PCB layout optimization; 3) Prototype build and bench verification; 4) Dynamic climate-chamber testing; 5) Production and final quality sign-off. This workflow generally spans 8 to 12 weeks.
How does Deming ensure grid compliance in countries like Germany and the USA?
We design all our grid-tied inverters and converters with international grid standards in mind (such as IEEE 1547, UL 1741, and VDE-AR-N 4105). Our control algorithms feature Low Voltage Ride Through (LVRT) to ride out brief grid faults, along with frequency-droop controls and reactive power support (Q-mode) to help maintain utility grid stability.

Advanced Storage & Hybrid System Converters

Complete your energy infrastructure with high-voltage DC-DC units, charge controllers, and smart regulators.

Bidirectional DC DC Converter 50kW

50kW Bidirectional DC DC Converter Transformer Isolation for Battery Energy Storage System BESS 200V-1000V 110A-160A Current

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Deming 20kW Generator Frequency Controller

Deming 20kW 220V Generator Frequency Controller with Touch Display

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Modular DC DC Converter 100KW 50KW 30KW

100KW 50KW 30KW Flexible Modular DC DC Converter Stackable Design for Battery to DC Bus Parallel Systems

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Deming DMDCDC-100KW Hydrogen Converter

Deming DMDCDC-100KW Triple Output DC/DC Converter for Hydrogen Fuel Cell Systems 1000A Transformer-less Isolation 100V-1500V

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MPPT Solar Charge Controller

MPPT PWM Solar Charge Controller 680V LCD Display ROHS Certified

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Deming 500kW Frequency Voltage Controller

Deming 500kW Intelligent Frequency Voltage Controller LCD Display

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Bidirectional DC DC Converter for Hybrid Systems

High Efficiency Bidirectional DC DC Converter for Solar Wind Hybrid System Step up Step Down

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MPPT Wind Solar Hybrid Controller

Manufacturers Promote High Quality MPPT Wind Solar Hybrid Controller 3KW 5KW 10KW

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