Neware WHW-25L+15C-5V100mA-32CH Mini All-in-One Battery Testing System with 32 Channels, ENWHW25L15C5V100mA32CH

SKU: ENWHW25L15C5V100mA32CH

Neware WHW-25L+15C-5V100mA-32CH Mini All-in-One Battery Testing System with 32 Channels, ENWHW25L15C5V100mA32CH — Neware 32-channel all-in-one battery testing system with a compact 25 L chamber, 15–60°C operating range, and 5 V / 100 mA model configuration.

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Neware WHW-25L+15C-5V100mA-32CH Mini All-in-One Battery Testing System with 32 Channels, ENWHW25L15C5V100mA32CH

Product Type: All-in-One Battery Testing Chamber
Brand: Neware
Part Number: ENWHW25L15C5V100mA32CH

Product Introduction

The Neware WHW-25L+15C-5V100mA-32CH integrates a compact 25 L temperature chamber with 32 battery-test channels. It provides a space-efficient platform for running larger batches of small cells under the same controlled thermal conditions.

Key Features

32 integrated channels — supports parallel temperature-controlled cell testing
5 V / 100 mA model configuration — configured for low-current cell research
15°C to 60°C temperature range — supports controlled aging and cycling studies
25 L chamber volume — compact laboratory footprint
Integrated chamber and cycler — minimizes external cable runs and setup complexity

Specification

ParameterSpecification
Part Number
  • ENWHW25L15C5V100mA32CH
Power
  • AC110V or AC220V±10%, single phase, 50/60Hz, 1500W
Channel Numbers
  • 32 channels

Voltage/Current

  • Voltage: 5V
  • Current: 100 mA
Temperature Range
  • 32°F ~ 140°F (15℃ ~ 60℃)
Heating Time
  • 77°F ~ 140°F ≤50min (25℃ ~ 60℃≤50min)
Cooling Time
  • 77°F ~ 59°F ≤60min (25℃ ~ 15℃≤60min)
Temperature Fluctuation
  • ≤±0.9°F (≤±0.5℃)
Temperature Deviation
  • ±3.6°F (±2℃)
Nominal Chamber Volume
  • 25 L
Dimension
  • W440mm × D550mm × H390mm

Applications

High-throughput coin-cell and small pouch-cell cycling, thermal performance comparison, aging studies, and laboratory quality control.

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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