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Neware WHW-200L-0C-200V-5V100mA-160CH Coin Cell All-in-One Battery Testing System, ENWHW200L0C5V100mA160CH

Neware WHW-200L-0C-200V-5V100mA-160CH Coin Cell All-in-One Battery Testing System, ENWHW200L0C5V100mA160CH

In Stock SKU: ENWHW200L0C5V100mA160CH
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WHW-200L-0C-220V-5V100mA-160CH is equipped with advanced processors and powerful computing capabilities, enabling efficient processing of large-scale data and complex computing tasks. It delivers exceptional performance, catering to various high-performance computing needs, including scientific research, data analysis, artificial intelligence, and deep learning applications.

Introducing the new dual-function integrated constant temperature test chamber, featuring a consistent large capacity of 200L, unchanged number of channels, occupying a footprint of approximately 5.92ft² (0.55㎡). This upgrade not only saves experimental space but also enhances the aesthetic with a modern and simplistic design. Connect the back of the charging and discharging equipment to the inside of the temperature box. Four channels are connected using a single channel wire, with each unit only requiring 2 wires to reduce the number of channel wires and effectively reduce temperature fluctuations.

Part Number
  • ENWHW200L0C5V100mA160CH
Power
  • AC220V±10%, single phase, 50/60Hz, 3000W
Channel Numbers
  • 160 channels in total

         

Voltage/Current

  • Voltage: 5V
  • Current:100 mA
Temperature Range
  • 0℃ ~ 60℃
Heating Time
  • 25℃ ~ 60℃≤30min (No Loading)
Cooling Time
  • 25 ℃ ~ 0 ℃≤50min (No Loading)
Temperature Fluctuation
  • ≤1℃ (no loading, temperature stability)
Temperature Derivation
  • ±2℃ (no loading, temperature stability)
Nominal Chamber Volume
  • 200 L (Inner Size: W500mm×D500mm×H800mm)
Dimension
  • W600mm × D920mm × H1800mm
Weight
  • ~200 kg

 

References:

A. Dubois, et al., Coin Cell Battery Chamber Design for Low-temperature Operando Experiments, JOVE, DOI: 10.3791/68972

B. Kwon, et al., In Situ Gas Analysis and Fire Characterization of Lithium-Ion Cells During Thermal Runaway Using an Environmental Chamber, JOVE, DOI: 10.3791/65051.

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