FaithTech entwickelt und fertigt programmierbare Gleichstrom-Stromversorgungen und elektronische Lasten für Anwendungen in den Bereichen Energie, Industrie, Automobil, Elektronik und Luft- und Raumfahrt.
Send voltage, current, power, and application requirements. An engineer can recommend the right configuration.
300kW/unitParallel expansion up to 3MW
0-1000VDCFor 800V and high-voltage platforms
96A/μs & 150A/μsSlew-rate options available
200% EDPPSeconds-level overload stress
Dynamic Load Response
30/96/150A/μsSlew Rate Options
Send your voltage, current, and power requirements.
DC load bank for high-power testing
AIDC HVDC PSU validation
Built for high-power PSU, battery, PCS, and ATE validation
EDPP Overload Stress200% seconds-level overload capability for severe PSU validation
Fast di/dt ResponseSlew rates up to 96A/μs & 150A/μs available for load-step testing
High Power Density300kW per unit, parallel expansion up to 3MW
AIDC HVDC ExperienceConfigured for HVDC PSU, rack power shelf, BBU, and cabinet-level testing
Built for high-power labs that need a configurable regenerative load system, not a generic resistor bank
ISO 9001
CE / RoHS
On-site calibration
Custom integration
If you searched for a DC load bank, this is the regenerative option.
FTR7000 is for teams that need programmable high-power loading with energy feedback, fast transient response, and scalable cabinet-level integration.
DC load bank for high-power testingReplace heat-wasting resistor banks in long tests.
AIDC HVDC PSU validationStress-test high-voltage computing power supplies with repeatable load profiles.
Regenerative electronic loadReturn usable energy while testing PSU, PCS, or battery systems.
600kW+ and MW-class projectsScale from a 720kW reference load bank to megawatt-level systems.
Built for AIDC HVDC Power Supply Stress Testing
AI data center power supplies must survive EDPP overload, fast current di/dt events, rack-level load steps, and long-duration burn-in. FTR7000 helps reproduce those severe conditions in a controlled regenerative load system.
Slew Rate Options:30A/μs shown, with 96A/μs and 150A/μs configurations available
EDPP Overload:200% seconds-level overload capability for severe PSU stress testing
AIDC Reference:720kW load-bank configuration with 10 FT68272H-1200-1440 units
Proven Scale:Multiple 600kW+ deployments and MW-class project evaluations
Helps prevent voltage drop, shutdown, or restart failures
Why regenerative load instead of traditional load banks?
Up to 80% energy regeneration efficiency. Return energy to the grid instead of turning expensive power into heat.
Traditional Load
100kW
Input Power
to heat
100kW
Heat
Heat
High cooling cost Waste energy High operating cost
FTR7000
100kW
Input Power
returned
80kW
Returned to Grid
Grid
Lower electricity cost Reduced HVAC load Ideal for burn-in testing
FTR7000 returns energy to the grid instead of wasting it as heat.
$Reduce electricity cost by up to 80%
ACLower cooling system demand
ROILower total cost of ownership
Key Specifications for Buyer Review
Use these starting points to request a matched voltage, current, and power configuration.
300kW/unitRated power per unit
0-1000VDCHigh-voltage DC platform coverage
96A/μs & 150A/μsHigh-speed slew-rate options available
200% EDPPHigh-intensity overload validation
720kW ref.Multi-unit AIDC reference configuration
3MWParallel system expansion
Master-Slave Control:Scale multiple units for cabinet or line-level testing
Programmable Profiles:Build repeatable transient, burn-in, and overload tests
Application Match:PSU, battery, PCS, fuel cell, motor, semiconductor, and ATE
Master
Slave
Slave
Scale from one cabinet to megawatt-level testing.
AIDC Power Chain Applications
Use FTR7000 where the AI power chain exposes a high-power DC output or needs a repeatable rack-level load. HVDC PSU, BBU, busbar, and cabinet-level tests can be configured from 600kW+ systems to MW-class platforms.
AI PSU Module EDPP overload and dynamic load testing
HVDC System 800V and +/-400V rack power cabinets
BBU Backup Power Li-ion and supercap discharge tests
Rack DC Busbar High-current cabinet bus validation
SST Transformer 800V DC output load validation
Power Generation Gas turbine and SOFC DC loading
SSCE Breaker Microsecond current-step response
VRM Power Stage Upstream PSU transient validation
GPU Compute Load Emulated through PSU and HVDC tests
Engineering Support & On-site Calibration
Share your voltage, current, EDPP overload, di/dt, duty-cycle, and total power requirements. FaithTech helps specify module count, integration, commissioning, and calibration.
Buyer Q&A
Quick answers for engineers comparing load-bank, regenerative-load, and high-power DC testing options.
If you searched for a DC load bank, this is the regenerative option.
FTR7000 is for teams that need programmable high-power loading with energy feedback, fast transient response, and scalable cabinet-level integration.
Built for AIDC HVDC Power Supply Stress Testing
AI data center power supplies must survive EDPP overload, fast current di/dt events, rack-level load steps, and long-duration burn-in. FTR7000 helps reproduce those severe conditions in a controlled regenerative load system.
Why regenerative load instead of traditional load banks?
Up to 80% energy regeneration efficiency. Return energy to the grid instead of turning expensive power into heat.
Key Specifications for Buyer Review
Use these starting points to request a matched voltage, current, and power configuration.
AIDC Power Chain Applications
Use FTR7000 where the AI power chain exposes a high-power DC output or needs a repeatable rack-level load. HVDC PSU, BBU, busbar, and cabinet-level tests can be configured from 600kW+ systems to MW-class platforms.
Engineering Support & On-site Calibration
Share your voltage, current, EDPP overload, di/dt, duty-cycle, and total power requirements. FaithTech helps specify module count, integration, commissioning, and calibration.
Send your voltage, current, and power requirements.
Send voltage, current, power, and application requirements. An engineer can recommend the right configuration.