The M-ISS-B16 solid-state button type battery device is a specialized testing device for solid-state batteries. The fixture consists of an upper pressure rod, a lower pressure rod, a cavity, and a seal. The fixture can be used with our MSK-YLJ-MA5T electric press for solid-state powder pressing, or with our S-MS-P500 solid-state battery pressure te1
AOT-TBJ-180C is a small roll-to-roll coater for laboratory research, because it can coat continuously, it is suitable for pilot scale battery research work in colleges, universities and factories.
Potentiostat/Galvanostat/FRA/ZRA Maximum Current: ±2A Current range: ±2nA ~2A, 10 ranges Applied Potential: ±10V(can be customized to ±12V) Compliance voltage: ±21V Built-in EIS/FRA, EIS range: 10μHz~1MHz Potential/current accuracy: 0.1% of the range Potential resolution: 10μV; current resolution 1pA IR compensation; Current can be ±20A/40A/101
The PE separator for lithium batteries is made of polypropylene material and features a micro-porous structure. It can isolate the positive and negative electrodes to prevent short.
Lithium battery PE separator is made of polypropylene as the base material and forms a uniform microporous structure through processes such as biaxial stretching.
Lithium battery PE separator (polypropylene separator) is a porous film prepared from polypropylene as raw material through melt extrusion, biaxial stretching and chemical/physical pore-forming processes.
The PE separator is one of the key inner components of lithium batteries and is crucial to the battery's performance and safety. It is located between the positive and negative electrodes of the battery.
The PE separator for lithium batteries is a microporous film made of polyethylene (PE) as the base material and is one of the key components of lithium batteries.
The functional film mainly made of polyethylene (PE) plays a key role in physically isolating the positive and negative electrodes to prevent short circuits.