OEM/ODM Hybrid Inverter Manufacturer & Factory

Providing Next-Gen Engineered Power Conversion Solutions and Custom Renewable Infrastructure Globally

Premium Inverter & Power Supply Hardware

Explore our engineering line of industrial-grade DC/AC power systems, controllers, and transformers

MYAMi Variable Desktop DC Regulated Power Supply
MYAMi 24V 30V30A 200V 2A 3A 5A Variable Desktop DC Regulated Power Supply Adjustable 30V10A 20A Bench DC Power Source Laboratory
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MYAMi Linear Dc Regulated Lab Bench Power Supply
MYAMi 30v 60v 5a 1a 3a Linear Dc Regulated Lab Bench Power Supply Single Output 300w High Reliability for Testing Repairing
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MYAMI Programmable AC Power Supplies
MYAMI High Stability 350VA 500VA 1000VA Adjustable Frequency Bench Programmable AC Power Supplies for Motor Speed Regulation
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MYAMi PV Regulator MPPT Solar Charge Controller
MYAMi PV Regulator 60A 100A 60amp 100amp 12V/24V/36V/48V Solar Controller Solar Panel 150V Input MPPT Solar Charge Controller
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3 Phase Isolation Transformer
Step up Step Down 3 Phase 3KVA 5KVA 10KVA 15KVA 20KVA 30KVA 100KVA Isolation Transformer 380V to 110V 220V Voltage Transformer
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MYAMi Programmable Bench Adjustable DC Power Supply
MYAMi 100V 5A 10A 20A 30A 60A BENCH ADJUSTABLE DC POWER SUPPLY, LAB, REPAIR, SCHOOL, DESIGN, ELECTROPLATE, CHARGE, Programmable
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MYAMI Laboratory Switch Regulated Sources
MYAMI MY-L15001P 150V 1A Laboratory Switch Regulated Sources Programmable Variable Adjustable DC Power Supply
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MYAMI CNC Controller Stepper Motor Driver
MYAMI CNC Controller Stepper Motor Driver DC Power Supply 4-Channel Programmable Bench Adjustable 60V 5A with USB RS485 RS232
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1. Technical Prowess & Corporate Profile

Headquartered in Shenzhen, China, Shenzhen Myami Power Technology Co., Ltd. (MYAMI) is a technology-driven manufacturer and solution provider specializing in high-precision, industrial-grade power supplies and electrical test equipment. Designed for engineering rigor, MYAMI bridges the gap between complex electronic research, high-voltage component testing, and scalable industrial automation.

As global grids move from linear generation to dynamic, decentralized models, the role of hybrid inverters has evolved from simple power conversion devices to central grid-interactive brain units. At MYAMI, we leverage our decades of collective hardware engineering and precision software architecture to develop advanced hybrid photovoltaic and energy storage inverters that serve the demands of commercial, industrial, and residential sectors.

E-E-A-T Principle Statement: Every power electronics system designed at our Shenzhen assembly facility undergoes extensive thermal verification, simulated load transients, and isolated breakdown safety evaluations, conforming to the absolute peak of modern power engineering practices.

ISO9001
Certified Manufacturing System
100%
Automatic Burn-In & Aging Tested
RS485/CAN
Standard Industrial Protocols
CE/RoHS
Global Safety Compliance

2. The Competitive Advantage of Our Shenzhen OEM/ODM Factory

Shenzhen represents the global epicentre of advanced power electronics manufacturing. Operating from this ecosystem allows MYAMI to integrate deep component-level sourcing, rapid hardware-in-the-loop (HIL) testing, and highly agile prototype cycles. The key architectural advantages of sourcing hybrid inverters and precision testing components directly from our factory include:

  • Integrated Supply Chain Cluster: We source semiconductors, IGBT modules, magnetic cores, and high-frequency transformers directly from tier-one localized suppliers, reducing procurement lead times by up to 60%.
  • Optimized Cost-to-Performance Ratio: By utilizing automated high-volume production lines alongside rigorous engineering inspection, we offer global partners state-of-the-art power products without premium cost inflations.
  • Custom Firmware Engineering (ODM Services): Unlike off-the-shelf distributors, MYAMI maintains dedicated firmware and software engineering teams capable of modifying battery charge-discharge profiles, grid-interactive protection parameters, and screen UI designs to meet localized country regulations.
  • Advanced Test Laboratory Infrastructure: Our manufacturing plant is equipped with LCR meters, digital power meters, high-voltage programmable AC/DC power sources, and multi-channel data acquisition tools to test real-world scenarios before mass shipping.

Inside MYAMI: Core Manufacturing & QC Infrastructure

Direct photographic verification of our automated assembly, calibration benches, quality control processes, and engineering design divisions

Every stage, from PCB check, debug, assembly validation using LCR meters and Hi-pot testers, to the final packaging, is monitored to guarantee flawless hardware reliability.

MYAMI's Four Core Operational Pillars

Our comprehensive electrical design portfolio spans across R&D, manufacturing testing, and complete grid integration equipment

Programmable DC Power Supplies

Featuring multi-digit LED displays, ultra-low ripple, and rapid transient response, engineered for precision electronic R&D, semiconductor evaluation, and PCB debugging.

High-Power & High-Voltage Testing Sources

Delivering high-current, high-voltage DC/AC regulated power supplies (ranging up to hundreds of volts and amperes) built for industrial motor drives, electroplating rectifiers, and heavy-duty component burn-in testing.

EV & Renewable Energy Testing

Providing specialized DC power units, battery simulators, and variable AC power sources engineered for Electric Vehicle (EV) On-Board Chargers (OBC), BMS evaluation, and solar inverter testing.

Benchtop Test Instruments

Supplying complementary test bench solutions, including digital oscilloscopes, multimeters, and specialized AC voltage regulators for global laboratories and technical institutes.

Integrating these four foundational technologies, MYAMI design engineers develop hybrid inverters that manage power conversion with advanced safety protocols (OVP, OCP, OTP, and short-circuit safeguards). Integrated with standard industrial control protocols (RS485, RS232, and CAN communication), our equipment seamlessly connects to automated production lines and central PC control systems.

3. Macro-Level Industrial Solutions and Localized Scenarios

Hybrid inverters act as the operational bridge between local energy storage systems (BESS), solar PV arrays, and utility distribution grids. Depending on localized utility rules and solar irradiance levels, MYAMI offers customizable architecture topologies:

C&I Microgrid Integration

For commercial sites experiencing peak demand tariffs, our custom hybrid systems support programmable Peak Shaving and Load Shifting. The system charges localized high-voltage lithium battery storage banks during low-rate windows and discharges them during peak demand times, saving thousands in monthly operation fees.

Telecom Base Station Backups

Off-grid base stations operate in remote regions under high temperatures. We integrate dynamic MPPT charging algorithms and isolated transformer designs that isolate the load from lighting transients and voltage sags, maintaining 99.999% uptime for localized infrastructure.

Zero-Export Utility Operations

In grid regions that restrict grid feed-in, our customized firmware operates with dynamic CT feedback loop times under 10ms. This prevents reverse current flow into grid transformers, ensuring full local regulatory compliance without sacrificing PV self-consumption efficiency.

4. Technological Drivers & Trends Shaping Hybrid Inverters

The power technology sector is evolving rapidly. Manufacturers must anticipate changes to ensure their products remain viable. MYAMI’s engineering roadmap is built around several key developments:

  • High Voltage (HV) Architecture Shift: Modern energy storage architectures are shifting from traditional low-voltage (48V) systems to high-voltage (100V-800V) systems. This shift reduces system-level I²R transmission losses, improves conversion efficiency, and simplifies thermal management.
  • Wide-Bandgap Semiconductor Integration: Using Silicon Carbide (SiC) and Gallium Nitride (GaN) switching components allows hybrid inverters to run at higher switching frequencies. This reduces the footprint of magnetic passive filters, saving system weight and lowering shipping costs.
  • V2G (Vehicle-to-Grid) Smart Interfaces: Hybrid inverters are evolving to support bi-directional EV charging integration. Through CAN bus messaging, the inverter can treat EVs as additional storage nodes during peak shaving operations.
  • AFCI Arc Fault Mitigation: Utilizing digital signal processors (DSPs) to run machine learning-based fast Fourier transforms (FFT) enables our hardware to identify electrical arc signals and trip internal circuit isolators within 200ms, preventing electrical fires.

5. Procurement Guide for Commercial & Industrial Buyers

Selecting a manufacturer for hybrid inverters requires a detailed evaluation of their engineering standards. When reviewing design parameters, buyers should verify the following capabilities:

Critical Check: Verify the quality control instruments used by your OEM partner. Ensure they utilize programmable AC sources and transient load banks capable of simulating grid sags, phase distortions, and step loads up to 150% peak capacity without component failures.

At MYAMI, we maintain full transparency. Every shipment of hybrid inverters is accompanied by certified testing documents detailing the dynamic MPPT efficiency curve, insulation impedance ratings, harmonic distortion (THD) under variable loads, and high-temperature burn-in performance charts.

Expert Q&A: Hybrid Inverter Technologies & ODM Sourcing

Answers to technical questions from utility integration teams, procurement directors, and system design engineers

Q1: What are the main design differences between Low-Voltage (48V) and High-Voltage (HV) hybrid inverters?
Low-voltage inverters require high current levels to deliver equivalent power, necessitating thicker copper cables, larger magnetic components, and higher thermal dissipation designs. High-voltage hybrid inverters (typically 150V to 600V battery inputs) run at lower current densities for the same output wattage. This improves round-trip efficiency by 2-3%, reduces heat generation, and simplifies multi-unit paralleling setups.
Q2: How does MYAMI guarantee compliance with localized grid codes (e.g., UL 1741, EN 50549)?
We use high-precision programmable AC grid simulators to test every inverter model against target country frequency trip curves, low-voltage ride-through (LVRT) levels, and anti-islanding parameters. Our localized firmware configurations can be selected via the LCD panel or RS485 communication protocols prior to deployment.
Q3: Can your engineering team customize battery charge/discharge communication profiles for custom LFP packs?
Yes. Our software team supports ODM modifications for BMS communication interfaces. We can program custom CAN, RS485, or Modbus registers to match the protocol signatures of specific battery cells, temperature sensors, and internal monitoring systems, ensuring safe charging cycles.
Q4: What dynamic protections are integrated into the inverter circuitry?
Our inverters are built with multi-layer protective architectures. Hardware-level comparators provide nanosecond response times to shut off IGBT gates during short-circuit or high-current events. In addition, software protections manage over-voltage (OVP), under-voltage (UVP), over-temperature (OTP), and grid phase loss.
Q5: How does your factory handle production aging (burn-in testing)?
Every inverter is subjected to a minimum 12-hour high-temperature, full-load burn-in cycle in our specialized aging chambers. Throughout this period, the system's power conversion metrics, thermal profiles, and communication stability are monitored and recorded to prevent early component failures.
Q6: What is the typical ODM customization process timeline?
The process begins with our design team defining the hardware parameters, chassis size, and safety certification requirements. Initial CAD and schematic designs are completed within 2 weeks. A prototype is built and tested within 4 weeks. Following verification, production tooling and safety compliance runs take approximately 6 to 8 weeks.

Partner with Shenzhen MYAMI Power Technology

Today, MYAMI serves research institutions, automotive OEMs, aerospace contractors, and electronics manufacturers across North America, Europe, East Asia, and the Middle East. Whether you require a single benchtop lab power supply or a custom high-power aging system, MYAMI is your ultimate partner for precision power and uncompromised testing reliability. Contact our Shenzhen headquarters to discuss your technical specifications and production requirements.

Industrial Voltage Converters & Test Solutions

Browse our specialized hardware for voltage transformation, diagnostic testing, and system regulation

Dry Type Volt Converter Transformer
ST-2000VA 220V to 110V 110V to 220V 500VA 1KVA 2KVA 3KVA 4KVA 5KVA 6KVA 7KVA 8KVA 9KVA 10KVA Dry Type Volt Converter Transformer
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Arbitrary Waveform Signal Generator
LW-1641 2MHz Function Signal Generator 5MHz 10MHz 15MHz Frequency Meter Arbitrary Waveform Signal Generator
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WIFI Wireless Temperature Data Logger
High Resolution 10-Channel WIFI Wireless Temperature Data Logger Multi Contact Measurement Customizable ODM Plastic Material
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MYAMi Adjustable Stabilized DC Power Supply
MYAMi MY-K3060E 24V 30V 20A 30A 50A 60A 1800W Adjustable Stabilized DC Power Supply Variable for Electronic Testing/Laboratory
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MYAMi Pure Sine Wave Power Inverter
MYAMi Inverters Converters 3000w 5000w 2500w Pure Sine Wave Power Inverter 12V 24V 48V Dc to Ac Inverter 110V 220V Home Car Use
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MYAMI Dual Trace Teaching Oscilloscope
MYAMI Dual Trace Teaching Oscilloscope 20MHz 2 Channels Teaching Instrument, Physics Electromagnetic Electronic Instrument
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High Voltage High Power Lab DC Power Supply
MYAMi 5Kv 4Kv 1500W 800V 600V 500V 300V 250V High Voltage High Power Lab DC Power Supply Adjustable 0-60A High Precision for ATE
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MYAMi Home Hybrid Solar Inverter
MYAMi 6300W 6.3KW 6KW Home Hybrid Solar Inverter Save Electricity Built-in 120A MPPT Controller with RS485 48VDC to 110V/120VAC
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