Engineered for immediate deployment across Romanian laboratories, assembly plants, and custom electronic manufacturing facilities.
The manufacturing and technology landscape in Romania is undergoing a rapid transition toward complex high-voltage testing, electric mobility (EV), and grid-scale solar generation. With major production facilities in Pitești, Craiova, and Timișoara, the automotive sector demands testing devices that meet international standards (including VDA 320 and LV 124 profiles).
Concurrently, Romania's ambitious national energy policies are accelerating wind energy integration along the Black Sea coastline and extensive utility-scale photovoltaic infrastructure in the southern plains. To safely evaluate these high-energy systems, local manufacturers and academic laboratories require Wide Range DC Power Supplies. These systems must adapt dynamically to variable power conditions, matching the requirements of grid-interconnection simulators and high-power battery storage configurations.
How a single wide-range power supply replaces multiple standard rectangular units, reducing hardware footprint and cost.
Standard DC power sources operate on a rectangular boundary curve, offering maximum current only at maximum output voltage. If an application requires high current at a lower voltage, a user is forced to purchase a source with an unnecessarily high power rating.
MYAMI Wide Range Autoranging DC Power Supplies utilize an envelope profile where the maximum output current changes inversely with the voltage. This allows full-power operation across a broad range of voltages, providing flexibility to test various devices without switching hardware.
Testing microcontrollers, automotive sensors, or high-speed telecommunications modules requires clean, low-ripple power. Voltage fluctuations can trigger false failures or damage delicate semiconductor components.
Our laboratory DC sources maintain an output ripple of < 0.5% RMS and transient response recovery times under 100 microseconds. This ensures clean power delivery even when testing inductive or highly dynamic motor drive loads.
Manual testing slows production lines and increases the risk of human error. Our units are equipped with standard interfaces (RS232, RS485, USB, CAN, and Ethernet) supporting standard SCPI command structures.
This enables integration with LabVIEW, MATLAB, or custom Python testing scripts, allowing automated execution of complex voltage drop simulation profiles for quality assurance and compliance testing.
How our advanced manufacturing, quality control procedures, and high-precision assembly lines support industrial facilities in Romania.
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.
Every component undergoes a 10-stage manufacturing and calibration pipeline in our Shenzhen facility prior to export to Romania.










Testing instruments and design processes utilized to confirm reliability metrics before dispatch.










Targeted solutions designed to support Romania's electrical, automotive, and technological manufacturing hubs.
Romanian automotive suppliers evaluate Engine Control Units (ECUs), sensor arrays, and auxiliary motors. During startup, components experience voltage variations described by standard curves such as ISO 16750-2.
Our wide-range programmable DC sources simulate voltage drops, cranking profiles, and overvoltage events. Real-time control interfaces (USB/CAN/Ethernet) enable testing of critical safety and powertrain systems under simulated load conditions.
The rapid expansion of Romania's photovoltaic facilities requires inverters and batteries that align with European grid conditions.
Our units support BMS (Battery Management System) simulation and PV array emulation. Dynamic programmable adjustments allow engineers to simulate solar radiation variations and test inverter Maximum Power Point Tracking (MPPT) performance under variable conditions.
Cluj-Napoca and Brașov serve as hubs for precision instrumentation and custom printed circuit board (PCB) assembly.
Equipped with four-digit LED displays, active overvoltage (OVP), overcurrent (OCP), and short-circuit protection, our benchtop adjustable DC sources provide clean, stable power. This supports engineering laboratories and testing facilities during board-level diagnostic procedures.
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.
We offer direct air cargo shipping options to Bucharest Henri Coandă Airport (OTP) and ocean shipping routes to the Port of Constanța. All shipments include traceable calibration documentation, simplifying integration with your local quality assurance frameworks.
Request Compliance DocumentsStandard and programmable configurations designed for R&D labs, production lines, and solar charging installations.
Detailed answers regarding technical capabilities, ordering processes, and shipping to Romania.