GROADA-DC110V-30KW-R Lastbank Hersteller
The GROADA DC110V-30KW-R Load Bank is a high-performance testing solution designed to simulate real-...
| Modell | GROADA-DC48V-R | GROADA-DC60V-R | GROADA-DC110V-R | GROADA-DC220V-R | GROADA-DC500V-R | GROADA-DC750V-R | GROADA-DC1000V-R |
| Nennstrom | 0 bis 5000A | ||||||
| Eingangsspannung | 0 ~ 1500V | ||||||
| Minimale Belastung | 0,1 A | ||||||
| Andere Mindestbelastung kann entsprechend Anforderungen angepasst werden | |||||||
| Gesamtgenauigkeit | 3% (andere Genauigkeitsanforderungen können entsprechend Anforderungen angepasst werden) | ||||||
| Steuermodus | Lokaler manueller / Remote-Hostcomputer (lokaler manueller Steuermodus: Schalter / Taste / Touchscreen dreiwegig optional, andere Methoden können nach Bedarf angepasst werden) | ||||||
| Fernschnittstelle | RS232/RS485/USB/RJ45/CAN/GPIB (andere Schnittstellenmodi können entsprechend Anforderungen angepasst werden) | ||||||
| Schutzfunktion | Notstandsschutz, Übertemperaturschutz, Lüfterlast-Verriegelungsschutz, Erdungsschutz (wählen Sie Überspannungsschutz, Überstromschutz, Kurzschlussschutz, Lüfterüberlast, unzureichendes Luftvolumen) | ||||||
| Arbeitsstromversorgung | GROADA / AC380V | ||||||
| Genauigkeit der Anzeige | 0,5 Ebene (andere explizite Präzision kann entsprechend Anforderungen angepasst werden) | ||||||
| Anzeigeparameter | Spannung, Strom, Leistung usw. | ||||||
| Kalte sichere Weise | Seitenlufteinlass und oberer Luftauslass (andere Luftauslassmethoden können entsprechend Anforderungen angepasst werden) | ||||||
| Schutzstufe | IP20 (andere Schutzebene können entsprechend Anforderungen angepasst werden) | ||||||
| Erscheinungsfarbe | RAL7035 (andere Farben können entsprechend Anforderungen angepasst werden) | ||||||
| Arbeitstemperatur | -10 ℃ ~ 55 ℃ | ||||||
| Relative Luftfeuchtigkeit | ≤95% RH | ||||||
| Höhe | ≤ 2500 m | ||||||
DieGROADA 900V 930kW DC Resistive Load Bank is an advanced high-power testing solution designed for large-scale DC systems, including battery energy storage systems (BESS), DC microgrids, EV fast-charging networks, and industrial power verification. Built with industrial-grade resistive elements and precision control technology, this load bank provides stable, repeatable, and safe performance for critical DC testing applications.
With its 900V DC input range and 930kW load capacity, the unit enables engineers to simulate real-world operating conditions, perform performance validation, and ensure long-term reliability of power conversion and storage systems.
Rated up to 900V DC, supporting testing for high-voltage battery packs, DC converters, and ESS modules.
930kW continuous load capacity ensures comprehensive system verification even under maximum stress.
Multiple resistive load steps allow fine-grained control over load application.
Provides stable and repeatable load increments for both manual and automated testing scenarios.
Optionalremote control interface (RS-485/Ethernet) enables integration with SCADA or test benches for fully automated testing cycles.
Built-in protection systems include over-temperature, over-current, short-circuitundairflow failure detection.
Automatic shutdown mechanisms prevent damage to both the load bank and the equipment under test.
Emergency stop switch and interlock circuits meet international testing safety standards.
Heavy-duty steel frame with powder-coated surface for corrosion and heat resistance.
Optimized cooling channels with forced-air ventilation maintain temperature stability even under full load.
Designed for harsh industrial environments such as energy storage plants, test laboratories, and power substations.
Optional communication ports for remote operation and data logging.
Custom load ratings, control methods, and enclosure materials available upon request.
Tailored engineering support for specific application or voltage range (e.g., 600V, 800V, or 1000V DC).
Ideal for validating large-scale battery energy storage systems. The load bank simulates discharge cycles, efficiency evaluation, and safety analysis under controlled conditions, helping identify degradation patterns and optimize system design.
Supports performance verification for high-voltage DC charging systems by simulating heavy load conditions. Ensures reliability, safety, and power stability in EV charging networks.
Used to test DC/DC converters, rectifiers, and inverters by applying controlled load profiles. Enables manufacturers to verify system response, voltage regulation, and thermal behavior.
Supports load testing for DC backup power and rectifier systems, ensuring the stability and endurance of telecom infrastructure and critical facilities.
Provides engineers and R&D teams with a versatile platform for system-level validation, endurance testing, and factory acceptance testing (FAT) in controlled environments.
High Accuracy: Resistor elements are engineered with low temperature coefficients, ensuring stability over long test durations.
Efficient Cooling: Forced-air cooling with intelligent airflow monitoring extends the service life of resistors.
Durability: Industrial-grade materials and thermal insulation guarantee consistent performance under continuous use.
Scalability: Modular load segments enable stepwise expansion or parallel operation with other GROADA load banks.
User-Friendly Operation: Digital control interface, fault alarms, and data recording options simplify operation and monitoring.
With years of expertise in designing high-precision load testing equipment, GROADA is trusted by global clients across energy storage, EV charging, and industrial power sectors. Our engineering team ensures each product meets rigorous quality standards through continuous testing and calibration.
All GROADA load banks are manufactured under ISO 9001 quality control systems. Every unit is factory-tested for electrical, mechanical, and thermal reliability before shipment. CE-compliant design ensures global market readiness.
Our in-house R&D and engineering team can customize every aspect of the load bank — from voltage/current ratings to communication interfaces — ensuring an exact fit for your project needs.
We provide comprehensive after-sales support, including installation assistance, calibration, maintenance, and technical consultation. Every unit comes with a standard 2-year warranty and lifetime technical support.
| Parameter | Spezifikation |
|---|---|
| Nennspannung | 900V DC |
| Nennleistung | 930kW |
| Lasttyp | Widerstandsfähig |
| Load Control | Step Load / Remote Control (optional) |
| Kühlmethode | Zwangsluftkühlung |
| Protection | Over-temperature, Over-current, Short-circuit, Airflow Loss |
| Operating Environment | Indoor / Outdoor (custom enclosure available) |
| Enclosure | Powder-coated Steel, Corrosion-resistant |
| Communication Interface | RS-485 / Ethernet (optional) |
| Warranty | 2 Years |
The demand for DC load banks has surged alongside the rapid growth of renewable energy, electric vehicles, and energy storage systems. As the global BESS market exceeds 150 GWh annually, precise DC testing becomes critical for ensuring battery performance, safety, and compliance.
According to leading power testing standards (IEC 61010, UL 508A), modern load banks must integrate modular resistor design, temperature monitoringundautomated safety protection — all of which are core to GROADA’s engineering philosophy.
By combining advanced control systems with robust mechanical design, the GROADA 900V 930kW load bank enables energy engineers and system integrators to perform validation with confidence, reliability, and repeatability.
DieGROADA 900V 930kW DC Resistive Load Bank is more than just a testing tool — it is a vital instrument for power system validation, performance optimization, and safety assurance.
Whether you are commissioning a utility-scale energy storage project, testing high-voltage converters, or performing R&D validation, GROADA delivers the precision, durability, and engineering excellence your application demands.
GROADA — Your trusted partner in DC load testing and energy performance validation.