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ITECH IT6000B Series - Regenerative Power System

Description

IT6000B is a family of bi-directional, regenerative power system with excellent performance, extensively used in aspects of high power battery, automotive electronics, green energy, high speed testing etc.
IT6000B integrates bidirectional power supply and regenerative electronic load into one 3U unit. Only a button is needed to switch between the bidirectional power supply and the regenerative electronic load. It can be used not only as a stand-alone powerful bidirectional power supply, as a source to provide power; but also as an independent regenerative electronic load, to absorb the consumed energy and feedback cleanly to the grid. IT6000B offers standard two-quadrants functionality.
IT6000B provides 6 voltage ranges, up to 2250V, supports master-slave parallel with current distribution up to 1152kW. Built-in waveform generator supports generating arbitrary waveforms, and imports LIST files for waveforms via USB interface.

Technical data

  • Bi-directional device - power supply and electronic load in one
  • One button switch between source and sink on panel
  • Stand-alone power up to 144kW, expandable in parallel up to 1.152MW
  • Voltage output ratings: 0-2250V
  • Current output ratings: 0-2040A
  • High power density design provides 18kW in 3U space
  • Bi-directional energy transmission, seamless switching across two quadrants
  • Support CC/CV loop speed and priority setting
  • Partial pre-compliant with LV123, LV148, DIN40839, ISO-16750-2, SAEJ1113-11,LV124 and ISO21848 automotive testing standards
  • High efficient energy recovery
  • Support solar panel I-V curves simulation
  • Built-in waveform generator, support generating arbitrary waveforms
  • Adjustable output impedance
  • Complete protection, support OVP, ±OCP, ±OPP, OTP, voltage transient drop protection and anti-islanding protection
  • Built-in USB/CAN/LAN/digital IO interface, Optional GPIB/Analog&RS232
  • Support data saving and the shortest interval of sampling is 10μs
  • Battery simulation function
  • Strong dynamic driving profile simulation function, up to 10,000,000 points

 

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ModelVoltageCurrentPowerRemarks
IT6005B-80-15080V150A5kWbase model
IT6010B-80-30080V300A10kWbase model
IT6015B-80-45080V450A15kWbase model
IT6030B-80-90080V900A30kWsystem formed by parallel configuration of base models
IT6045B-80-135080V1350A45kWsystem formed by parallel configuration of base models
IT6060B-80-180080V1800A60kWsystem formed by parallel configuration of base models
IT6075B-80-204080V2040A75kWsystem formed by parallel configuration of base models
IT6090B-80-204080V2040A90kWsystem formed by parallel configuration of base models
IT6105B-80-204080V2040A105kWsystem formed by parallel configuration of base models
IT6120B-80-204080V2040A120kWsystem formed by parallel configuration of base models
IT6006B-300-75300V75A6kWbase model
IT6012B-300-150300V150A12kWbase model
IT6018B-300-225300V225A18kWbase model
IT6036B-300-450300V450A36kWsystem formed by parallel configuration of base models
IT6054B-300-675300V675A54kWsystem formed by parallel configuration of base models
IT6072B-300-900300V900A72kWsystem formed by parallel configuration of base models
IT6090B-300-1125300V1125A90kWsystem formed by parallel configuration of base models
IT6108B-300-1350300V1350A108kWsystem formed by parallel configuration of base models
IT6126B-300-1575300V1575A126kWsystem formed by parallel configuration of base models
IT6144B-300-1800300V1800A144kWsystem formed by parallel configuration of base models
IT6006B-500-40500V40A6kWbase model
IT6012B-500-80500V80A12kWbase model
IT6018B-500-120500V120A18kWbase model
IT6036B-500-240500V240A36kWsystem formed by parallel configuration of base models
IT6054B-500-360500V360A54kWsystem formed by parallel configuration of base models
IT6072B-500-480500V480A72kWsystem formed by parallel configuration of base models
IT6090B-500-600500V600A90kWsystem formed by parallel configuration of base models
IT6108B-500-720500V720A108kWsystem formed by parallel configuration of base models
IT6126B-500-840500V840A126kWsystem formed by parallel configuration of base models
IT6144B-500-960500V960A144kWsystem formed by parallel configuration of base models
IT6006B-800-25800V25A6kWbase model
IT6012B-800-50800V50A12kWbase model
IT6018B-800-75800V75A18kWbase model
IT6036B-800-150800V150A36kWsystem formed by parallel configuration of base models
IT6054B-800-225800V225A54kWsystem formed by parallel configuration of base models
IT6072B-800-300800V300A72kWsystem formed by parallel configuration of base models
IT6090B-800-375800V375A90kWsystem formed by parallel configuration of base models
IT6108B-800-450800V450A108kWsystem formed by parallel configuration of base models
IT6126B-800-525800V525A126kWsystem formed by parallel configuration of base models
IT6144B-800-600800V600A144kWsystem formed by parallel configuration of base models
IT6018B-1500-401500V40A18kWbase model
IT6036B-1500-801500V80A36kWsystem formed by parallel configuration of base models
IT6054B-1500-1201500V120A54kWsystem formed by parallel configuration of base models
IT6072B-1500-1601500V160A72kWsystem formed by parallel configuration of base models
IT6090B-1500-2001500V200A90kWsystem formed by parallel configuration of base models
IT6108B-1500-2401500V240A108kWsystem formed by parallel configuration of base models
IT6126B-1500-2801500V280A126kWsystem formed by parallel configuration of base models
IT6144B-1500-3201500V320A144kWsystem formed by parallel configuration of base models
IT6018B-2250-252250V25A18kWbase model
IT6036B-2250-502250V50A36kWsystem formed by parallel configuration of base models
IT6054B-2250-752250V75A54kWsystem formed by parallel configuration of base models
IT6072B-2250-1002250V100A72kWsystem formed by parallel configuration of base models
IT6090B-2250-1252250V125A90kWsystem formed by parallel configuration of base models
IT6108B-2250-1502250V150A108kWsystem formed by parallel configuration of base models
IT6126B-2250-1752250V175A126kWsystem formed by parallel configuration of base models
IT6144B-2250-2002250V200A144kWsystem formed by parallel configuration of base models
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