Stack Design Technology

Stack Design Technology

Stack Design Technology

The performance of a PEM water electrolysis stack is determined not only by structural design but also by assembly technique — cell stacking, clamping pressure and component alignment. CS Hydrogen delivers stable operating performance on the basis of its stack design and assembly technology.

Stack Assembly and Clamping Technology

CS Hydrogen systematically manages assembly conditions so that MEA (CCM) performance is reliably reproduced at stack level.

To realize superior MEA (CCM) performance consistently, stack assembly must precisely control clamping pressure, component alignment, fluid flow and electrical contact.

Stack clamping equipment
Cell Stacking Cell Stacking and Alignment

Cells and key components are stacked and aligned with precision to form a stable stack structure.

Compression Control Compression Control

Uniform clamping pressure secures cell-to-cell contact characteristics and assembly repeatability.

Sealing Structure Sealing Integrity

Stack structures are designed to minimize leakage, with assembly methods optimized to maintain sealing integrity.

Stack Configuration Stack Configuration

We review cell count and stack configuration against your requirements and propose the optimal design.