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.
With a comprehensive understanding of the evolving global energy grid landscape, we utilize our foundational expertise in high-power conversion, variable load simulation, and signal integrity analysis to develop cutting-edge battery management systems (BMS) testing and commercial-grade utility power testing solutions. Our engineering approach guarantees that partners receive systems engineered to withstand continuous cycles and operate safely under variable environmental conditions.
Every MYAMI system is engineered with strict multi-layer protection protocols (OVP, OCP, OTP, and short-circuit safeguards) and complies with international safety and quality standards, including CE, RoHS, and ISO9001. Integrated with standard industrial control protocols (RS485, RS232, and CAN communication), our equipment seamlessly connects to automated production lines and central PC control systems.
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.
Raw Material
PCB Checking
Assembling
Debug
Aging
Calibration
QC checking
Packing
Soldering Station
Electronic Screwdriver
PCB Check
Debug
QC check
Multimeter
Hi-pot Tester
Oscilloscope
LCR Meter
Digital power meter
Design
Multimeter
Hi-pot Tester
Oscilloscope
LCR Meter
Digital power meter
| Region / Country | Critical Compliance Standard | Design Requirement Met By MYAMI |
|---|---|---|
| United States & North America | UL 9540, UL 9540A, UL 1973, IEEE 1547 | Thermal runaway propagation prevention, rapid shutdown system control integration, and grid islanding protective disconnects. |
| European Union | CE-LVD, CE-EMC, EN 62477-1, EN 62619 | Electromagnetic emission shielding, comprehensive galvanic isolation, low-voltage directive compliance, and cell chemistry hazard analysis. |
| United Kingdom | G99 Grid Interconnection Standard | Active grid frequency tracking, automatic reactive power compensation, and high-precision transient voltage ride-through controls. |
| Global Shipments | UN 38.3, MSDS Documentation | Robust structural crash-resistant cell frame containers, high pressure relief valves, and air shipping certification validation. |
High peak-demand surcharges penalize manufacturing facilities. Our systems charge during periods of low grid demand and discharge at peak load hours, flattening the facility consumption profile and yielding direct operational cost savings.
Integrating high-frequency hybrid solar inverters and MPPT charge controllers with large battery banks allows remote communities and mining operations to establish localized power grids. This eliminates diesel fuel transport dependencies.
Level 3 DC chargers strain local distribution transformers. By implementing an adjacent energy storage system, the station can deliver high-power vehicle charging without demanding grid modifications.
Ensuring constant power feeds to mission-critical infrastructure requires highly responsive batteries and active BMS management. Our power controllers switch to battery backup in under 10ms upon detecting grid distortion.