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Neware CE-6006-Pro-6V1200A Battery Pack Testing System, ENCE6006P6V1200A

Neware CE-6006-Pro-6V1200A Battery Pack Testing System, ENCE6006P6V1200A

In Stock SKU: ENCE6006P6V1200A
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The Neware CE-6012n-20V60A-H is a specialized, high-power battery module testing system. It bridges the gap between cell-level testing and full electric vehicle (EV) pack validation, making it an essential tool for your work in scaling pouch cell designs into functional battery modules. The CE-6000n series is a "Regenerative" industrial system, designed for high-efficiency, continuous operation in a pilot or production environment.

Part Number
  • ENCE6006P6V1200A
Power
  • AC380V±10%, three phase, 50/60Hz, 61.7 kW
Channel Numbers
  • 6 channels (A maximum of 2 channels can be connected in parallel)

Voltage Features


  • Charge Voltage: 0-6 V
  • Discharge Voltage: 1.5 V ~ 6 V
  • Minimal discharge voltage: 1.5 V
  • Accuracy: ± 0.02% of F.S.
  • Resolution: 24 bit
Current Features
  • Output Range:

           Range 1: 0.15A - 75A

           Range 2: 75A - 150 A

           Range 3: 150 A - 300 A

           Range 4: 300 A - 1200 A 

  • Accuracy: ± 0.02% of F.S.
  • CV Cut-Off Current: 0.05%
  • Resolution: 24 bit
Output Power
  • 7.2 kW/Channel
  • Whole machine output power: 43.2 kW
Time
  • Current Response Time: ≤1 ms
  • Current Conversion Time:  ≤2 ms
  • Min. Step Time: 10 ms
Main Test Functions
  • Constant current charging/discharging (CCC/CCD)
  • Constant voltage charging/discharging (CVC/CVD)
  • Constant power charging/discharging (CPC/CPD)
  • Constant current constant voltage charging/discharging (CCCVC/CCCVD)
  • DCIR
  • Pulse Simulation Test
  • GITT
Data Record/Report
  • Recording Conditions: (a) minimum time interval: 10 ms; (b) minimum voltage interval: 0.24 V; (c) Minimum current interval: 0.6 A.
  • Export File Types: Excel, TXT
Dimension
  • L730 mm * W900 * H1950 mm
Weight
  • ~378 kg

 

References:

J. Li, et al., Accurate battery pack modeling for automotive applications, J. Power Source, 2013, 237, 215-228

S. Mutagekar, et al., Understanding the Li-ion battery pack degradation in the field using field-test and lab-test data, Journal of Energy Storage, 2022, 53, 105216.

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