RPS-7000

Regenerative AC/DC Source & Load

22.5kVA • 48A • 200–480V in 3U

The RPS-7000 is a high-performance four-quadrant regenerative AC/DC power system designed for EV, AI infrastructure, energy storage, and power electronics testing. Delivering up to 22.5kVA and 48A in just 3U, it provides full-power operation across 200–480Vac input without derating or external transformers.

RPS-7000: One Platform. Unlimited Power Testing Possibilities.

Regenerative AC/DC power source, electronic load, and grid simulator

From 9 kVA to 225 kVA, engineered for scalable power testing without compromise.

The RPS-7000 Series combines a regenerative AC/DC power source, electronic load, and grid simulator into a single high-performance platform. Delivering up to 22.5 kVA in an ultra-compact 3U chassis and scalable to 225 kVA through parallel operation, it provides exceptional power density for applications ranging from component validation to high-power system testing while maximizing flexibility for future expansion.

Built on next-generation SiC MOS technology, the RPS-7000 delivers true constant-power performance with up to 48 A of output current and full power operation across the 200–480 Vac input range. Supporting output voltages up to 400 V L-N and 690 V L-L, it provides reliable testing for EV, renewable energy, energy storage, AI data centers, and advanced power electronics worldwide.

RPS 7000 Power Testing

Main specifications and applications

KEY FEATURES     
  • Output Power: 9 kVA – 22.5 kVA
  • Scalable Power Capacity up to 225 kVA
  • Full-Power AC/DC Operation
  • Zero Derating from 200–480V
  • Output Voltage: 0 – 350 V; 0 – 400 V (Optional)
  • Frequency: DC, 30– 100 Hz; 30 – 1000 Hz (Optional)
  • Maximum current increased by 35%
  • Key component cooling efficiency + 20%
  • Parallel connection for high power capacity
  • Output Modes: Single-phase, three-phase, or split-phase (up to 200% of rated voltage)
  • Three Operating Modes: Constant Voltage, Constant Current, and Constant Power
  • LIST, STEP, PULSE, and TRANSIENT modes
  • Arbitrary Waveform Editing & Power Line Disturbance (PLD) Simulation
  • Harmonic disturbance/waveform superposition
  • Harmonic Analysis: Voltage and current measurements up to the 50th harmonic
  • Compliant with Grid Connection Standards such as LVRT, Phase Shift, Frequency Variation, Harmonic Injection
  • Standards Compliance: IEC 61000 -3-2/-3-3/-3-11/-3-12/-4-11/-4-13/-4-14/-4-28/-4-34 testing
  • Interfaces Supported: USB, LAN, GPIB, CAN, and Std I/O
Applications   
  • AI server, Data center, and HDVC applications
  • EV chargers, BOBC, V2G, V2H, V2X, EV charging cables and components
  • Solar PV inverters, grid-connected inverters, and wind power systems
  • Industrial and residential Energy Storage Systems (ESS), Power Conversion Systems (PCS)
  • Uninterruptible Power Supplies (UPS) and Power Distribution Units (PDUs)
  • Regulatory Testing: IEEE 1547, UL 1741, IEC 62116, etc.
  • Micro-grid Testing, PHIL (Power Hardware-in-the-Loop), and Anti-Islanding Protection.
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Built for Real-World Power Validation

TRUE High Current Capability
Delivers up to 48A output current for low-voltage and high-current testing applications.

0% Low-Voltage Derating
Full output capability even under 200–220V facility conditions.

High Power Density
More power within a smaller footprint for modern laboratories and automated systems.

High-Quality Manufacturing
Manufactured in Lanner’s facilities under TL 9000, ISO 27001, and IATF 16949 certified systems for mission-critical reliability.

AIoT Predictive Maintenance
Real-time monitoring and intelligent diagnostics minimize downtime and improve operational reliability.

Advanced Rectifier Design. Full-Rated Performance.

Our optimized power conversion architecture enables 100% output capability on 200–220Vac grids, eliminating the limitations commonly found in conventional systems.

Rated power does not always equal usable power.

While many competitive systems experience significant power derating at low voltages due to current limitations, the RPS-7000 maintains high usable power with up to 48 A output current and continuous constant-power operation—delivering the performance engineers actually need in real-world testing environments.

More Power. Less Space.

The RPS-7000 delivers 50% more power and current than conventional solutions while occupying only one-third of the rack space.

Built on Certified Manufacturing Standards

Every RPS-7000 is developed and manufactured under internationally recognized quality and cybersecurity management systems. From secure product development and precision manufacturing to long-term reliability control, every stage is designed to deliver dependable performance for demanding power testing applications.

IEC 62443-4-1 • ISO 27001

Certified secure development and information security for connected testing systems.

TL 9000

Telecom-grade quality management for consistent manufacturing and long-term reliability.

IATF 16949

Automotive-level manufacturing standards ensure precision, consistency, and dependable performance.

IEC 62443-4-1 • ISO 27001

Certified secure development and information security for connected testing systems.

TL 9000

Telecom-grade quality management for consistent manufacturing and long-term reliability.

IATF 16949

Automotive-level manufacturing standards ensure precision, consistency, and dependable performance.

Everything You Need for Power Validation

Beyond Standard Waveforms

The RPS-7000 provides comprehensive waveform generation capabilities for simulating both standard power signals and complex grid conditions. Supporting standard output waveforms, built-in distortion libraries, and fully programmable user-defined waveforms, the platform enables engineers to accurately reproduce real-world operating conditions for product development, compliance verification, and reliability testing.

From renewable energy systems and EV chargers to energy storage, UPS, AI data center power infrastructure, and industrial power electronics, the RPS-7000 delivers the flexibility required to validate equipment under both normal and abnormal power conditions.

Supported Waveforms
  • Sine Wave – Standard utility power simulation
  • Square Wave – Fast switching and control system testing
  • Triangle Wave – Dynamic response and analog circuit evaluation
  • Clipped Sine Wave – Simulation of distorted utility waveforms
  • Built-in Distortion Waveforms (DST) – More than 30 preconfigured distortion profiles for rapid power quality testing
  • User-defined Waveforms – Create custom waveforms for application-specific validation

Comprehensive Simulation Capabilities

Supports up to 50th-order harmonic synthesis and various waveform editing modes to accurately simulate power line disturbances (PLD) and arbitrary waveforms. Additionally, it ensures comprehensive regulatory compliance with built-in test modes for international standards such as IEC 61000 and LVRT.

Voltage Dip (Step mode)

Surge (Pulse Mode)

Harmonic Distortion (Synthesis Mode)

Grid Disturbance & Transient Simulation

The RPS-7000 provides comprehensive dynamic test modes for simulating real-world grid disturbances and transient events, enabling engineers to evaluate the performance, stability, and protection mechanisms of power electronic equipment under abnormal power conditions.

LIST Mode
Create multi-step programmable test sequences with configurable voltage, frequency, waveform, dwell time, and cycle count for long-duration testing, automated validation, and compliance verification.

PULSE Mode
Simulate short-duration voltage variations with adjustable amplitude, duty cycle, and pulse width to verify transient immunity and protection performance.

TRANSIENT  Mode
Accurately reproduce voltage sag, surge, and other transient grid events with programmable phase angle, duration, amplitude, and positive or negative half-cycle characteristics.

Output Modes Overview

Choose the right output configuration to meet your test requirements

Single-Phase Mode

Three-Phase Mode

Split-Phase Mode

Instant Access to Critical Electrical Measurements

The RPS-7000 provides two measurement display modes designed for different testing scenarios, allowing engineers to quickly switch between essential operating data and comprehensive electrical analysis without interrupting system operation.

 

Simple Mode presents three key electrical parameters in a large, easy-to-read layout, enabling operators to monitor critical measurements at a glance. It is ideal for equipment setup, production testing, routine operation, and long-distance monitoring.

Detail Mode displays up to 15 electrical parameters on a single screen, including voltage, current, power, frequency, power factor, crest factor, and additional AC/DC measurements. Engineers can simultaneously monitor comprehensive electrical characteristics for product validation, power quality analysis, and troubleshooting.

Detailed Mode

Gain Deeper Insight into Power Quality

Beyond real-time electrical measurements, the RPS-7000 provides built-in analysis tools that help engineers evaluate power quality and output characteristics without additional test instruments. Integrated Harmonic Analysis and Real-Time Waveform Monitor enable fast verification of DUT performance, simplify troubleshooting, and accelerate product validation.

Harmonic Analysis

Measure voltage and current total harmonic distortion (THD) in real time, with detailed analysis from the fundamental through the 50th harmonic. Harmonic amplitude, percentage, and phase information are displayed alongside key electrical parameters, including voltage, current, frequency, active power, power factor, and crest factor.

Both Table and Bar Chart views are available, allowing engineers to quickly evaluate harmonic distribution, distortion levels, and overall power quality.

Real-Time Waveform Monitor

Monitor three-phase voltage and current waveforms simultaneously through an integrated oscilloscope-style interface. Individual phase channels, voltage and current scales, and the time base can all be adjusted for detailed waveform observation.

The intuitive graphical interface makes it easy to identify transient events, waveform anomalies, and output behavior, improving debugging efficiency and accelerating system validation.

Flexible Load Simulation for Real-World Power Validation

The RPS-7000 integrates regenerative AC and DC electronic load functions, providing comprehensive load simulation for power conversion systems, renewable energy equipment, energy storage systems, EV chargers, and power electronics. Multiple operating modes enable engineers to accurately reproduce real-world electrical characteristics for product validation, reliability testing, and performance evaluation.

AC Electronic Load

Support a wide range of programmable load modes to simulate both ideal and real-world AC load characteristics.

  • CC Mode – Constant Current
  • CR Mode – Constant Resistance
  • CP / CS Mode – Constant Power and Constant Apparent Power
  • CZ Mode – Programmable impedance with configurable R, L, and C parameters for realistic load simulation

In addition, lead and lag power factor settings, crest factor adjustment, and programmable impedance enable accurate simulation of inductive, capacitive, and non-linear loads encountered in practical applications.

DC Electronic Load

Integrated DC load functions support the most commonly used operating modes for power supply and battery testing.

  • CC Mode – Constant Current
  • CV Mode – Constant Voltage
  • CP Mode – Constant Power
  • CR Mode – Constant Resistance
  • CCD / CRD Dynamic Modes – Dynamic current and resistance loading for transient response evaluation

These programmable load modes provide flexible testing for DC power supplies, battery systems, DC converters, and other power electronic devices.

Programmable Impedance Simulation (CZ Mode)

Simulate realistic AC load characteristics by configuring resistance (R), inductance (L), and capacitance (C) to reproduce the electrical behavior of real-world equipment. CZ Mode enables accurate impedance-based testing for motors, transformers, power converters, EV chargers, UPS systems, and other AC-powered devices, providing a more realistic validation environment than conventional constant-current or constant-power load modes.

factor adjustment, and programmable impedance enable accurate simulation of inductive, capacitive, and non-linear loads encountered in practical applications.

PowerVUE Remote Control Software

Complete Test Control from Your PC

PowerVUE is a Windows-based software platform that integrates remote control, real-time monitoring, waveform programming, and automated test management into a single intuitive interface. Built-in compliance test functions for IEC 61000-4-11, IEC 61000-4-13, IEC 61000-4-14, and IEC 61000-4-28 simplify power quality and grid disturbance testing, helping engineers accelerate development, validation, and compliance verification.

CategoryItems / ParametersDescription
Measurement & DisplaySimple, Detail, Harmonic, WaveReal-time measurements, harmonic analysis, and waveform monitoring.
Quick SetupBasic Output ParametersQuickly configure AC/DC output voltage and frequency.
Output ConfigurationOutput Phase, Slew Rate, Coupling, Output ImpedanceFlexible output configuration for advanced testing.
Advanced WaveformLIST ModeProgrammable output sequence generation.
 STEP ModeAutomatic voltage and frequency step changes.
 PULSE ModeHigh-speed pulse generation with adjustable duty cycle.
 SYNTHESIS / INTERHARMONICHarmonic synthesis and interharmonic injection.
 TRANSIENT ModeSimulates voltage dips, surges, and transient events.
Compliance TestingIEC 61000-4-11Voltage dips and interruptions.
 IEC 61000-4-13Harmonic and interharmonic immunity testing.
 IEC 61000-4-14Voltage fluctuation and frequency variation testing.
 IEC 61000-4-28AC/DC voltage and frequency variation testing.

NEXT-GENERATION POWER PLATFORM

Engineered for the Next Power Era

AIOT Intelligent Predictive Maintenance

PowerSense™ is INFINIPOWER’s AIoT monitoring platform for the RPS Series, providing real-time monitoring, intelligent diagnostics, predictive maintenance, and energy management in a single integrated platform. Engineers can monitor system status, output voltage, current, power, regenerated energy, efficiency, and equipment health through an intuitive dashboard.

By combining continuous monitoring with historical trend analysis, PowerSense™ helps identify potential issues before they become critical, reducing unplanned downtime and improving testing efficiency. Built-in features such as real-time alarms, event logging, energy statistics, data export, and remote monitoring support a more reliable and intelligent power testing environment.

Empowering AI Data Centers: Power Shelf Test Architecture

Next-Generation Power Shelf Validation with RPS-7000

Test Application Coverage

48A Advantage: More Power, Fewer Units

Advanced Power Simulation & Measurement

Selection Guide

Configuration Matrix

Ordering Information

Intelligent Controller & Software Specifications
  • Control Interface (PowerVue): Intuitive PC-based GUI for remote control, waveform monitoring, and complex sequence editing (LIST/PULSE/STEP).

  • AIoT Predictive Maintenance (PowerSense AI): Real-time health monitoring and behavioral deviation analysis to ensure 95%+ equipment availability.

  • PPS (Predictive Preventive Service): Automated risk identification and maintenance alerts for critical components like fans and modules.

  • ESG Monitoring: Integrated dashboard for real-time CO₂ reduction tracking and energy efficiency visualization.

Power Source & Performance Specifications
  • Output Frequency: DC, 30 to 1000 Hz (Optional wideband support).

  • Power Capacity: High-density architecture delivering 22.5 kVA per 3U unit.

  • Energy Regeneration: Features a full four-quadrant regenerative AC/DC source, feeding up to 90% of energy back to the grid to reduce TCO.

  • Output Current: Reaching up to 48A (3Φ) / 144A (1Φ) in a single 3U chassis.

  • Parallel Capability: Supports up to three units in parallel for a total system capacity of 225 kVA.

  • Load Compatibility: Designed for complex loads, including RCD, Inductive, and Capacitive loads.

Mechanical & Operational Specifications
  • Form Factor: Compact 3U rackmount chassis for all power levels (9kVA to 22.5kVA).

  • Cableless Architecture: Innovative integrated internal busbar design (cableless) to minimize EMI, reduce heat fatigue, and boost cooling efficiency by 20%.

  • Acoustic Noise: Intelligent temperature-controlled fan logic maintaining noise levels < 80 dB even at full load operation.

  • Eco-Friendly Standby: Smart Sleep Mode technology reducing standby power consumption by 67% (approx. 1.18 kVA) during inactivity.

Together, we make a difference.

In the testing of new energy equipment, stability and reliability are crucial. InfiniPower relies on the design verification of the world's leading brands and the quality assurance of world-class smart manufacturing plants to provide you with test power solutions that can stand the test of time. Join us to help you meet stringent product performance and compliance requirements with the highest quality power support, and drive a sustainable production future!

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