Explore our top hybrid power converters, multi-phase systems, and high-frequency off-grid energy storage technologies engineered for global markets.
As distribution grids adapt to growing renewable integration, grid-interactive inverters have transitioned from basic DC-to-AC conversion units into multi-directional dynamic power management processors. These units stabilize frequency, shift peak loads, and provide ancillary grid services in real time.
By integrating advanced digital Signal Processing (DSP) units with high-frequency Silicon Carbide (SiC) or Gallium Nitride (GaN) semiconductors, contemporary topologies operate with elevated power density. They maintain conversion efficiencies above 98.5% even during complex bi-directional shifting between utility networks, battery banks, and direct photovoltaic arrays.
Solid-State Frequency Matching: Dynamic phase syncing in micro-milliseconds reduces grid disruption while shifting off-grid to grid-connected configurations.
AI-Enabled Energy Forecasting: Machine learning algorithms predict localized generation and consumption patterns, adjusting battery margins automatically.
Virtual Power Plants (VPP): Integration protocols support aggregated grid control, turning distributed assets into active revenue generators via utility networks.
From single-phase residential storage to massive commercial and industrial microgrids, our OEM/ODM platforms adapt to any global deployment scenario.
Configurable high-capacity energy cabinets designed to support peak shaving, load shifting, and seamless backup power transition. Ideal for commercial parks, factory operations, and microgrid deployments requiring reliable grid-interactive support.
Compact, stackable battery storage solutions combined with single-phase or split-phase interactive inverters. Supports Wi-Fi remote management, plug-and-play setup, and automatic load balancing for modern clean-energy homes.
Integrated variable frequency drives (VFD) optimized for off-grid and hybrid agricultural irrigation. Fully dustproof, waterproof, and equipped with maximum power point tracking (MPPT) logic for high durability.
Leading Residential, Commercial, and Industrial Clean Energy Storage and Inverter Systems.
Shenzhen Yde Power Co., Ltd. is a professional manufacturer specializing in residential, commercial, and industrial energy storage systems (ESS). Headquartered in Shenzhen, China, the company integrates research and development, production, sales, and service to deliver comprehensive clean energy solutions to global markets.
In addition to its headquarters in Shenzhen, Yde Power operates a modern ISO9001-certified manufacturing facility in Jiangxi Province, equipped with advanced automated production lines and stringent quality control systems. The company also maintains a dedicated R&D center in Shenzhen, focusing on continuous innovation in battery management systems (BMS), system integration, and intelligent energy optimization technologies.
Shenzhen Yde Power Co., Ltd. is committed to the development of efficient, safe, and environmentally friendly energy storage solutions. Its product portfolio includes residential battery storage systems, commercial and industrial energy storage cabinets, and scalable utility-grade ESS solutions designed to support grid stability, renewable energy integration, and peak shaving applications.
With the expansion of its Jiangxi manufacturing base, the company has significantly enhanced its production capacity, supply chain efficiency, and product diversity. This enables Yde Power to respond quickly to global customer demands while maintaining high standards of reliability and performance.
Driven by innovation and sustainability, Shenzhen Yde Power Co., Ltd. continuously invests in new technologies, intelligent manufacturing processes, and international quality certifications. The company aims to become a trusted global partner in the energy storage industry, contributing to a cleaner and more sustainable energy future.
From SMT component assembly to terminal testing, our fully automated production lines ensure structural durability and electrical safety.
Operating hybrid or grid-tied solar assets requires strict adherence to international electrical norms. Our OEM manufacturing options come with built-in certifications to fast-track regional project approvals.
We ensure conformance across UL 1741, IEEE 1547 (US/Canada), CE EN 50549 (EU), G98/G99 (UK), CEI 0-21 (Italy), and AS4777 (Australia) standards.
We provide localized engineering consultation, hardware commissioning services, and rapid warranty operations. This guarantees high-availability performance across solar-plus-storage platforms.
Providing full ODM/OEM flexibility from engineering development to final container shipping, ensuring project speed-to-market.
Select low-voltage, high-voltage, three-phase, or split-phase layouts. Brand the outer casing, user interface, and monitoring software to fit your commercial portfolio.
We work with reliable semiconductor suppliers (e.g., TI, Infineon) and tier-1 battery cell manufacturers to assure stable pricing and components supply.
Every customized grid-interactive inverter undergoes high-temperature aging chamber runs, stress simulations, and automated PCB diagnostics before shipping.
Essential information regarding customization limits, international electrical compliance, and product performance specs.
For simple branding modifications, prototype delivery takes 4 to 6 weeks. For custom PCB layouts, modified structural enclosures, or specialized grid-interactive interface firmware, development cycles range from 3 to 6 months. This timeline includes prototype production, test validations, and preliminary compliance testing.
We pre-configure our hybrid and grid-interactive models with regional grid profile presets. We work closely with major European and American laboratories (like TÜV Rheinland, SGS, Intertek) to run certification processes directly on our factory lines. This guarantees compliance with safety and operational rules (such as UL1741, IEEE 1547, and EN50549).
Yes. We specialize in custom BMS design and system integration at our Shenzhen R&D facility. We build firmware protocols matching specific Lithium Iron Phosphate (LiFePO4) or high-voltage chemistry structures. This ensures safe operations and longer cell lifespans in demanding residential and industrial environments.
Each inverter undergoes a thorough testing sequence: Solder Paste Inspection (SPI), Automated Optical Inspection (AOI) on SMT components, dual-channel ICT circuit tests, high-voltage insulation tests, operational testing, and full-load high-temperature burn-in tests. This meticulous process ensures long-term reliability and minimizes failure rates in the field.
Discover our options for single-phase residential storage, large multi-phase converters, and high-efficiency water pumping systems.