| Cell | A single finished cell, such as a cylindrical, prismatic, or pouch cell. | A conductive nail is driven through the cell under a defined laboratory protocol. Nail dimensions, penetration location, speed, state of charge, and test environment should be specified because they affect the outcome. | Cell voltage, temperature, visible smoke or venting, fire, rupture, and the timing and severity of any reaction. | Shows how a particular cell design responds to a deliberate internal short-circuit-like abuse event. Useful for screening cell designs and comparing results under the same procedure. | A nail does not reproduce every real-world internal short circuit. Results can vary with penetration location, cell construction, and test method; one cell result does not establish pack-level safety. |
| Module | A group of electrically connected cells, often including interconnects, a frame, and some thermal-management components. | A nail is applied to a selected cell in the module, or to another defined location, while the remaining cells and module structure stay in place. The test plan should state the target cell and electrical configuration. | Target-cell response, temperatures across neighboring cells, voltage and current behavior, propagation to adjacent cells, and the performance of barriers or cooling features. | Helps assess whether an event in one cell can spread within a module and how module layout or protective features influence propagation. | Results depend on module design, cell spacing, state of charge, and test setup. A module test does not automatically predict the behavior of a complete battery pack. |
| Pack | A complete battery pack or a clearly defined representative pack assembly, including its enclosure and relevant electrical and thermal components. | A specified cell is penetrated within the assembled system, where feasible, or a defined pack-level abuse method is used. Instrumentation and safety controls account for the pack’s energy, electrical connections, and enclosure. | Cell and pack temperatures, pack voltage and current, propagation, vent-gas or smoke release, enclosure response, and operation of monitoring or protective systems. | Can reveal system-level consequences, including how the enclosure, spacing, cooling, electrical architecture, and protective measures influence an abuse event. | More complex and costly than cell testing. Access, instrumentation, and repeatability can be challenging, and results apply to the tested configuration rather than every pack variant or installation. |
| Cross-scale comparison | Results from cell, module, and pack tests performed using documented procedures. | Compare outcomes only when key conditions—such as state of charge, target location, penetration method, and observation criteria—are stated and sufficiently comparable. | Whether a hazardous response occurs, its severity and timing, and whether it remains localized or propagates to other cells or system components. | Combining scales supports a broader safety assessment: cell tests characterize individual-cell response, module tests examine propagation, and pack tests evaluate system-level effects. | There is no single result that, by itself, proves a battery system is safe. Nail penetration is a specific abuse test and should be interpreted alongside other applicable tests and risk controls. |