Lithium Ion Battery Voltage Current Capacity Tester
High-accuracy cell capacity grading and dynamic voltage-current verification instrument designed for battery module manufacturing and secondary storage validation.
Send an InquiryEngineered with high-dynamic bandwidth, current-fed topology, and precision SCPI/LabVIEW control interfaces for testing PV inverters, microgrids, and battery management systems (BMS).
High-accuracy cell capacity grading and dynamic voltage-current verification instrument designed for battery module manufacturing and secondary storage validation.
Send an Inquiry
Constant power dynamic emulation platform with ultra-low output ripple, perfect for low-power inverter input verification and DC-DC converter characterization.
Send an Inquiry
Precision multi-channel micro-current simulator engineered for ultra-low power IoT sensors, energy harvesting circuits, and coin cell profile replication.
Send an Inquiry
Compact 6-channel programmable DC simulator for BMS board functional testing, cell voltage balancing verification, and fault condition injection.
Send an Inquiry
Megawatt-scale dual-quadrant DC power supply. Integrates Photovoltaic Array Profile Emulation (PPPE) for utility-scale solar and central inverter compliance.
Send an Inquiry
Fast transient response bipolar DC power supply operating as a source and sink, optimized for automated benchtop electronics and precision R&D labs.
Send an Inquiry
Laboratory-grade CR2032/2016 battery emulator providing stable low-noise impedance curves for advanced materials research and electrochemical impedance spectroscopy (EIS).
Send an Inquiry
High-density cell simulator with independent isolation channels. Designed for active/passive balancing algorithms, State-of-Charge (SOC) estimation, and HIL testing.
Send an InquiryHow Chinese high-precision digital power processing hardware and advanced SAS algorithms deliver uncompromised testing fidelity for European grid-tied inverters under EN 50530 standards.
Photovoltaic inverters must continuously extract maximum power under rapid solar irradiance variations. Our Photovoltaic Power Profile Emulation (PPPE) software engine models non-linear solar panel output characteristics based on standard mathematical parameters: Open-Circuit Voltage ($V_{oc}$), Short-Circuit Current ($I_{sc}$), Maximum Power Voltage ($V_{mp}$), and Maximum Power Current ($I_{mp}$).
By continuously updating the internal digital feedback loop at up to 100 Hz, our systems replicate dynamic cloud-passing shadows, fast ambient temperature swings, and partial shading knee curves, enabling Benelux research labs to measure European Efficiency ($\eta_{EU}$) and dynamic Maximum Power Point Tracking (MPPT) performance with 0.05% repeatable accuracy.
The PPPE suite integrates native mathematical algorithms compliant with EN 50530—the benchmark European standard for measuring the efficiency of PV inverters. Test engineers can instantly generate standard crystalline silicon (c-Si) or thin-film panel curves without complex manual calculations.
Furthermore, our software supports multi-channel parallel array simulation, allowing high-power central inverters (up to 3 MW / 10 MW) with multiple MPPT inputs to be evaluated under asymmetrical string shading, degraded panel characteristics, and severe environmental stress conditions.
Unlike conventional voltage-fed power supplies that rely on massive electrolytic capacitor banks across the DC output terminals, our solar array emulators utilize a high-dynamic Current-Fed Power Processing Topology. An inductor serves as the primary energy storage element on the DC link. This design guarantees natural short-circuit immunity, ultra-fast current transient response, minimal stored energy at the DUT output interface, and total protection against reverse-voltage damage during high-frequency inverter switching tests.
Accelerating green transition projects from Flanders to Wallonia through grid-code validation, offshore hybrid energy testing, and commercial microgrid battery integration.
Belgian Distribution System Operators (DSOs) such as Fluvius, ORES, and RESA mandate strict compliance with Synergrid C10/11 regulations for decentralized production assets. Our solar emulation software and high-dynamic DC sources simulate grid voltage sags, over-frequency active power curtailment ($P(f)$), and reactive power control ($Q(U)$) curves to ensure seamless inverter grid certification prior to commercial deployment in Belgium.
With the phase-out of net metering in Flanders and the implementation of peak capacity tariffs (Capaciteitstarief), Belgian commercial enterprises are aggressively installing hybrid PV + Battery systems. Our dual-channel power simulators emulate solar panel output alongside high-voltage battery pack responses on a single benchtop setup, accelerating hybrid inverter R&D and field installation checks.
Belgium’s North Sea renewable energy projects involve floating solar arrays coupled with offshore wind farms. Ocean-surface light reflections and rapid fog movements create extreme dynamic irradiance profiles. Our PPPE software lets engineers import high-resolution cloud cover datasets (CSV/JSON) recorded in real-time at sea, replicating harsh marine operational environments inside the safety of the laboratory.
Key structural developments reshaping power electronics testing across the Benelux region.
As fossil fuel generation declines across Europe, Belgian grid operators require solar inverters to act as Grid-Forming (GFM) voltage sources with Virtual Synchronous Generator (VSG) inertia capabilities. Test setups must evaluate how inverters behave when the DC bus is fed by volatile solar arrays during major AC grid disturbances. Our high-dynamic solar simulators maintain sub-millisecond voltage control under step loads, supporting next-generation GFM algorithm verification.
The Flemish government has introduced mandatory solar installation roadmaps for large energy consumers, while commercial fleets in Brussels and Antwerp rapidly transition to EVs. This surge requires DC fast-charging stations directly coupled to solar canopy microgrids. Testing these complex DC bus topologies requires ultra-fast, multi-kilowatt power sources that can switch between battery emulation and solar emulation seamlessly.
Compare our main industrial DC supply series engineered for solar array simulation, battery emulation, and electronic load sink operations.
| Series Platform | Power Output | Form Factor | Cooling Topology | Primary Emulation Application |
|---|---|---|---|---|
| SLx Series | 1.5 kW – 10 kW | 1U Rack-Mount | High-Velocity Air | Benchtop PV Inverter Testing, Double-Pulse SiC/GaN Bus |
| SL Series | 1.5 kW – 10 kW | 1U Rack-Mount | Forced Air | Space-Constrained Production ATE Automated Test Racks |
| XR Series | 2 kW – 10 kW | 2U Rack-Mount | Air Cooled | High-Voltage Solar Array Emulation (up to 1500V DC) |
| TS Series | 5 kW – 100 kW | 3U – 16U Rack | Forced Air | C&I Inverter Testing, EV Traction Battery Pack Simulation |
| MT Series | 150 kW – 3 MW | Modular Cabinet | Air Cooled | Utility-Scale Solar Central Inverter & Microgrid Validation |
| ML Series | 500 kW – 10 MW | Heavy Industrial Cabinet | Closed-Loop Water | Continuous Megawatt Duty, Hazardous Lab Environment Heat Rejection |
| ALx Series (Loads) | 1.25 kW – 20 kW+ | Rack-Mount | Linear MOSFET Air | Low-Noise DC Load Sinking, Fuel Cell & PV String Load Characterization |
*Note: All units support high-frequency Master/Slave paralleling to scale current and power ratings without degrading digital control resolution.
From state-of-the-art vertical integration to comprehensive remote control software suites, we build longevity into every power component.
We maintain total quality control over every manufacturing stage: from precision sheet metal fabrication and magnetic component winding to surface-mount SMT PCB assembly and final full-power burn-in testing.
Units come standard with Ethernet/LXI, USB, RS-232, and isolated analog/digital I/O ports. Software support includes standard SCPI command strings, native LabVIEW drivers, IVI templates, and Python libraries.
By standardizing sub-assemblies and keeping modular chassis in stock, made-to-order high-power systems are built and certified in 4 to 6 weeks, backed by direct shipping to Brussels, Antwerp, and Ghent.
For particle physics, high-precision research magnetics, and metrology labs, our optional DBx stability module reduces current drift to sub-PPM levels under extreme temperature variations.
Addressing import logistics, CE compliance, software interface protocols, and after-sales support for Benelux clients.
Whether you require an EN 50530 compliant solar emulation software suite, high-voltage battery simulators, or custom cabinet systems for Synergrid C10/11 grid validation, our factory engineering team is ready to evaluate your test specifications.