In the current paradigm of Industry 4.0, Industrial Internet of Things (IIoT) devices, automation nodes, and smart manufacturing systems require highly stable, programmable, and monitored electrical power architectures. Unregulated spikes, thermal variance, or inadequate load profiling can compromise entire edge computing systems, PLC frameworks, and telemetry sensor networks. Understanding these design challenges forms the cornerstone of our manufacturing philosophy.
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.
Our commitment to excellence combines physical hardware robustness with remote control capabilities (RS485, RS232, and CAN interfaces) to empower automation engineers to implement telemetry, control diagnostics, and precision testing protocols remotely, minimizing downtime and optimizing yield rates across complex multi-site operations.
Featuring multi-digit LED displays, ultra-low ripple, and rapid transient response. Engineered for precision electronic R&D, semiconductor evaluation, and PCB debugging.
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.
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.
Supplying complementary test bench solutions, including digital oscilloscopes, multimeters, and specialized AC voltage regulators for global laboratories and technical institutes.
The electronics manufacturing ecosystem in Shenzhen, China, offers unmatched speed-to-market advantages for IIoT system integrators. By operating at the core of the global industrial power supply supply chain, MYAMI guarantees rapid prototype generation, component traceability, and immediate scalability.
Our direct access to specialized power semiconductor manufacturers, raw copper transformers, and silicon carbide (SiC) switches allows us to offer competitively priced high-voltage cabinets, hybrid solar inverters, and benchtop equipment without compromising safety or component quality.
Through close partnerships with domestic component distributors and microchip vendors, our engineering teams drastically minimize custom design cycles. What typically takes months for overseas design houses is finalized, prototyped, and compliance-tested in our facility in weeks.
Every unit goes through a comprehensive 10-step production path and 8-step precision hardware validation test matrix before leaving our facility.
























Deploying heavy electronic components globally presents strict regulatory challenges. To meet these demands, MYAMI ensures all power systems undergo exhaustive safety validations. Every system features multi-layer protective protocols, including Over-Voltage Protection (OVP), Over-Current Protection (OCP), Over-Temperature Protection (OTP), and Short-Circuit Safeguards.
Our solutions comply with major international quality and safety directives, including CE, RoHS, and ISO9001. This ensures simple regulatory clearance and seamless integration into factory grids in Europe, the Americas, and the Asia-Pacific region.
Our units undergo isolation resistance checks, voltage withstand (Hi-pot) testing, and leakage current evaluations to ensure safety across industrial networks.
Built-in RS485, RS232, and CAN Communication Interfaces. All programmable DC/AC sources support standard Modbus-RTU, making them ready for factory SCADA integration.
Our programmable AC frequency stabilizers adapt easily to different local power systems, supporting 110V/220V at 50Hz, 60Hz, or 400Hz configurations.
Industrial environments face severe voltage anomalies. To protect expensive hardware (such as server racks, motors, or EV batteries), MYAMI designs fast-acting hardware-level shutdown loops that trigger within microseconds when safety limits are exceeded.
Off-the-shelf test equipment rarely matches the needs of specialized automotive, solar energy, or aerospace projects. Enterprise procurement managers frequently face challenges finding units that deliver exact voltage profiles, meet space constraints, or feature custom communication libraries.
Our engineering services address these demands by offering comprehensive customization options, including firmware modifications, modular enclosure scaling, and tailored communication protocol implementations.
Silicon Carbide (SiC) Revolution: Modern power architectures are moving to wide-bandgap semiconductors to increase efficiency and reduce system footprint.
Unified Smart Grid Telemetry: Systems must transmit parameters back to central data centers in real time, making integrated communication interfaces essential.
Deploying hybrid solar controllers and high-efficiency MPPT charge systems in remote telecom base stations. Standard communication buses send real-time system status back to central networks via cellular gateways.
Programmable wide-range DC power supplies simulate dynamic battery behaviors, helping automotive development labs test onboard chargers (OBC) and battery management systems (BMS) with high repeatability.
High-power cabinets supply regulated voltages to burn-in lines, simulating real-world operating environments while tracking current fluctuations over RS485 connections.
Our programmable DC units come standard with RS232 and RS485 communication interfaces, and support Modbus-RTU command protocols. CAN-bus interfaces can be integrated for automotive testing applications upon request.
We use a strict 10-step quality system. This includes component inspection, automated PCB checking, thermal burn-in under full load, safety isolation tests using Hi-pot equipment, and final calibration before packaging.
Yes. Our programmable variable-frequency AC sources can regulate output voltages from 0 to 300V and adjust frequencies between 45Hz and 400Hz. This enables engineering teams to simulate grid characteristics for any region globally.
Most of our standard models carry CE and RoHS certifications. We also work within an ISO9001-certified framework. If your project requires specific UL, FCC, or TÜV marks, we can arrange testing through certified laboratories during the ODM design phase.
Standard prototype samples are processed within 2 to 3 weeks. Full custom systems (such as high-power cabinets ranging from 20kW to 100kW+) typically require 4 to 6 weeks for manufacturing, calibration, and safety validation.
Protections can be configured manually via the front control panel or set remotely using serial command protocols. When triggered, the unit shuts off the output relay within milliseconds to protect connected loads.