GROADA-AC600V-25KW-RCD inverter load bank
The GROADA AC600V-25kW RCD Load Bank is a professional testing device designed to simulate real-worl...
| Model | AC220V-6KW-R | AC380V-30KW-R | AC380V-60KW-R | AC380V-100KW-R | AC380V-200KW-R | AC380V-400KW-R | AC380V-500KW-R | AC380V-1000KW-R |
| Rated power | 0-6KW | 0-30KW | 0-60KW | 0-100KW | 0-200KW | 0-400KW | 0-500KW | 0-1000KW |
| Size (width * depth * height mm) | 480*600*277 | 500*750*1000 | 600*850*1000 | 600*850*1400 | 700*1000*1650 | 1100*1400*1700 | 1100*1400*1800 | 1500*1800*2000 |
| Weight | 25KG | 80KG | 130KG | 180KG | 250KG | 550KG | 650KG | 1100KG |
| Input current | 0-30A | 0-45A | 0-90A | 0-150A | 0-300A | 0-600A | 0-750A | 0-1500A |
| Minimum loading | 100W | 100W | 500W | 1KW | 1KW | 5KW | 10KW | 50KW |
| Other minimum loading power can be customized according to requirements | ||||||||
| Input voltage | AC220/230V | AC380/400V | ||||||
| Other input voltage can be customized according to requirements | ||||||||
| Power | PF=1.0 | |||||||
| Overall accuracy | 3% (other accuracy requirements can be customized according to requirements) | |||||||
| Control mode | Local manual/remote host computer (local manual control mode: circuit breaker/button/touch screen three-way optional, other methods can be customized as required) | |||||||
| Remote Interface | RS232/RS485/USB/RJ45/CAN/GPIB (other interface modes can be customized according to requirements) | |||||||
| Protection function | Emergency stop protection, over-temperature protection, fan load interlock protection, grounding protection (select over-voltage protection, over-current protection, short-circuit protection, fan overload, insufficient air volume) | |||||||
| Working power supply | AC220V | AC220V/380V | AC380V | |||||
| Display accuracy | 0.5 level (other explicit precision can be customized according to requirements | |||||||
| Display parameters | Voltage, current, power, frequency, power factor, etc. (other explicit methods can be customized according to requirements) | |||||||
| Cold sure way | Forward and out | Side air inlet and upper air outlet (other air outlet methods can be customized according to requirements) | ||||||
| Protection level | IP20 (other protection level can be customized according to requirements) | |||||||
| Appearance color | RAL7035 (other colors can be customized according to requirements) | |||||||
| Working temperature | -10 ℃ ~ 55 ℃ | |||||||
| Relative humidity | ≤95%RH | |||||||
| Altitude | ≤ 2500 m | |||||||
The GROADA AC415V-100KW-R Resistive Load Bank is meticulously engineered to provide accurate, reliable, and high-capacity testing for modern electrical power systems. Designed for industrial applications, this load bank delivers up to 100 kW at 415V, making it ideal for validating generators, UPS systems, and critical power infrastructure. Its advanced resistive load technology simulates real-world operational conditions, ensuring precise performance verification and maintenance.
High-Power Capability: Handles loads up to 100 kW, suitable for large generators and high-demand power systems.
Precision Resistive Load: Simulates real operational conditions with accurate resistive loading for precise testing outcomes.
Rugged Construction: Built to endure harsh industrial environments, ensuring long-term reliability and consistent performance.
User-Friendly Controls: Intuitive interface with clear indicators simplifies operation, load adjustment, and monitoring.
Advanced Safety: Integrated over-current and over-temperature protection safeguards both operators and equipment.
Compact & Modular Design: Facilitates easy transport, installation, and scalability for growing operational requirements.
Generator Testing: Confirms generator output, stability, and endurance under maximum load.
UPS & Backup Systems: Ensures uninterruptible power supplies function reliably during critical outages.
Data Centers: Supports rigorous testing of backup power systems to maintain continuous operation.
Industrial Plants: Validates performance of high-capacity electrical equipment in manufacturing environments.
Emergency & Defense Systems: Guarantees reliability for mission-critical and emergency power infrastructures.
The global load bank market has seen rapid growth, driven by industrialization, infrastructure expansion, and increasing reliance on backup power systems. Market projections indicate growth from USD 524 million in 2024 to over USD 700 million by 2032, with a CAGR of 6–7%. The rising deployment of renewable energy and the expansion of data centers worldwide have created a strong demand for precision load testing solutions.
Industries are increasingly prioritizing system reliability and preventative maintenance. Load banks like the GROADA AC415V-100KW-R are essential for ensuring uptime, optimizing energy efficiency, and meeting stringent regulatory standards.
Accuracy & Reliability: High-precision resistive loads deliver dependable testing results every time.
Robust Industrial Performance: Supports heavy-duty, high-capacity applications in demanding environments.
Safety-First Design: Comprehensive protective features for operators and equipment.
Long-Term Value: Durable construction minimizes maintenance costs and maximizes operational lifespan.
Global Expertise: Trusted by industries worldwide for quality, consistency, and innovation in load testing.
Supports three-phase AC power systems for versatile applications.
Provides scalable load increments for flexible testing scenarios.
Ensures stable thermal performance, reducing the risk of overheating during prolonged operations.
Designed for easy integration with modern power management and monitoring systems.
The GROADA AC415V-100KW-R Resistive Load Bank represents the pinnacle of industrial-grade load testing technology. Combining precision, durability, and safety, it ensures that your critical power systems operate at peak efficiency under all conditions. Investing in this load bank empowers organizations to proactively maintain, test, and validate their electrical infrastructure—minimizing downtime, reducing risks, and safeguarding operational continuity.
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