Engineered for high accuracy and rapid response times, these primary laboratory instruments are highly compatible with Norwegian educational, automotive, and grid research ecosystems.
Norway is widely recognized as a global pioneer in the green transition. From aiming to run entirely on zero-emission maritime passenger transport to supporting the world's highest penetration rate of battery electric vehicles (BEVs), the country demands advanced electrical architectures. In the subsea, aquaculture, offshore wind (such as the Hywind Tampen initiative), and hydrogen-based manufacturing hubs, programmable and wide-range DC power supplies represent critical infrastructure.
Developing subsea grids, battery pack arrays, and testing onshore shore-to-ship charging connections require DC power sources capable of simulating realistic electrical environments under extremely cold temperatures and high-safety thresholds. Traditional fixed-range power systems often result in redundant laboratory investments, as testers need different machines for different voltage-current thresholds. MYAMI’s Wide-Range DC Power Supply technology addresses this challenge by delivering full power rating across a highly flexible operating window.
Traditional rectangular power supplies limit the maximum output current at voltages below the system maximum. In contrast, an autoranging or wide-range DC power supply dynamically increases output current as voltage drops, maintaining maximum rated wattage output across a vast envelope. This single-supply capability covers applications that previously required multiple traditional power supplies, delivering high spatial efficiency and massive cost savings to testing laboratories in Oslo, Bergen, and Trondheim.
| Feature Parameter | Traditional DC Power Supplies | MYAMI Wide Range DC Power Supplies | Benefit for Norway Customers |
|---|---|---|---|
| Output Curve | Rectangular (Fixed Vmax/Imax) | Hyperbolic / Autoranging Curve | Replaces up to 3 standard units; space-saving. |
| System Integration | Analog-only, limited interface | RS485, CAN, CANopen, RS232, Analog | Seamless PLC & LabVIEW SCPI script mapping. |
| Dynamic Simulation | Static output values | High speed step response, battery profiling | Ideal for simulating subsea battery banks & solar PV array curves. |
| Safety Standard | Basic fuse protection | OVP, OCP, OTP, Short Circuit, Reverse Polarity | Ensures safe operation in unmanned off-shore labs. |
Our programmable wide range platforms integrate high-frequency switching technology with advanced Silicon Carbide (SiC) semiconductor architectures. This reduces heat dissipation while boosting energy density to over 92% efficiency. For the Norwegian industrial market, this translation of technical superiority means lower energy footprints during extended thermal validation cycles, matching the country's stringent eco-design and carbon-reduction legislation.
Rooted in engineering rigor, MYAMI bridges the gap between complex power electronics R&D and high-voltage, high-reliability industrial automation systems.
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, PV inverters, and electrical test equipment. Every MYAMI system undergoes rigorous quality audits conforming to CE, RoHS, and ISO9001 standards. Integrated with standard industrial control interfaces (RS485, RS232, and CAN communication), our equipment seamlessly connects to automated production lines and centralized SCADA control systems globally.
Whether you require a single benchtop lab power supply or a custom multi-cabinet high-power aging system, MYAMI is your ultimate partner for precision power, environmental compatibility, and uncompromised testing reliability.
To maintain our E-E-A-T credentials, our state-of-the-art facility undergoes consistent, strict process audits. Here is how we build reliability into every shipment bound for Norway:
Raw Material
PCB Checking
Assembling
Debug
Aging
Calibration
QC checking
Packing
Soldering Station
Electronic Screwdriver
Understanding Norway’s local micro-grid parameters, subsea regulations, and zero-emission policies is critical to building reliable industrial power loops.
With Norway representing the most advanced EV buyer demographic globally, local research centers require ultra-reliable power sources to simulate high-voltage battery arrays. Our programmable units mimic actual battery charging profiles (CCCV modes), ensuring rapid integration validation for public charging piles and battery management systems (BMS).
Electric ships, hybrid fishing boats, and shore-power connection trials depend heavily on high-voltage DC testbeds. Our wide range power platforms deliver standard communication links (like CAN/Modbus), enabling smooth interface compatibility with maritime power system topologies under strict DNV-GL compliance frameworks.
Power transmission to subsea infrastructure over thousands of meters of umbilical cable requires extremely stable, high-voltage DC systems. Low ripple output is critical to avoid signal interference with delicate fiber-optic sensor communications deployed deep in the North Sea.
Our heavy-duty solar inverters, battery testers, and programmable benchtop supplies are built to handle high power demands while integrating smart control protocols.
For high-altitude installations and demanding Norwegian climates, electrical stability is paramount. We subject every single power unit and oscilloscope to a series of strict safety clearances at our production lines prior to exporting. Our facility features modern testing equipment, including Hi-Pot testing machines, high-precision digital power meters, and LCR meters to guarantee exact calibration curves.
Manufacturing Assembly & QC Integration
PCB Check Stations
Debugging Equipment Calibration
QC Check Controls
High Accuracy Multimeters
Hi-pot Safety Testing
Oscilloscope Signal Monitoring
Precision LCR Meter Checks
Digital Power Meters
Our engineers also focus heavily on environmental parameters. Norway’s marine research vessels operate under constant vibrations and changing ambient humidity. By implementing rigorous potting methods on critical inductors and high-efficiency heat exchangers in our wide-range DC systems, MYAMI prevents micro-cracks and potential component failure under these stressful physical states. Below is our engineering and development validation flow:
Design Phase
Multimeter Verification
Hi-pot Verification
Oscilloscope Tune-up
LCR Tuning
Digital Power Meter Efficiency Optimization
Complete your testing environment with our comprehensive array of dual-channel arbitrary waveform signal generators and large-scale adjustable AC power setups.
As micro-grid complexity intensifies and fast DC chargers approach levels beyond 350kW, the requirements for variable power sources shift towards high density and bidirectional conversion. A bidirectional DC source acts both as a power supply (source) and as a regenerative electronic load (sink). This allows energy from testing batteries or motor deceleration to be fed back into the local power grid, saving up to 90% of electricity overheads.
MYAMI is actively advancing our engineering roadmap to integrate SiC-based modular designs, allowing up to 150kW of power inside standard 3U chassis units. Parallel configuration mechanisms will enable scaling systems up to 2 Megawatts (MW). For Norwegian industrial clients, this technology represents a future-proof investment, enabling easy scaling to meet future test parameters for heavy maritime vessels or electric aviation projects.
Get instant answers regarding integration, compliance, and ordering parameters for the Norwegian market.
Contact our senior power engineering consultants today. Get a customized quote, detailed product schematics, and custom integration suggestions designed specifically for the Norwegian commercial grid and marine requirements.
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