| 1 | Cleanroom classification | Identify the required ISO Class, such as ISO Class 5, 6, 7, or 8, based on the maximum permitted airborne particle concentration. | Use a flush, low-particle-shedding door with smooth, cleanable surfaces, sealed joints, and minimal exposed hardware. | Door construction and leakage can affect room cleanliness and particle-control performance. | ISO 14644-1 classification; ISO 14644-3 testing methods. |
| 2 | Room pressure cascade | Define the pressure relationship between adjacent rooms. A commonly specified design range is approximately 5–15 Pa between pressure zones, subject to the facility design. | Select a door with continuous perimeter seals, reliable latching, and a frame designed to maintain the specified pressure differential. | Insufficient sealing may cause uncontrolled airflow, while excessive resistance can make the door difficult to operate. | Differential-pressure measurement and smoke visualization under operating conditions. |
| 3 | Air leakage control | Set a project-specific leakage target. Door assemblies may be evaluated by air-permeability testing at a defined pressure, rather than by appearance alone. | Use compression gaskets or equivalent sealing systems on the head, jambs, and threshold where appropriate. | Lower leakage supports pressure stability and reduces the risk of contamination transfer. | Air-permeability testing to the project specification or applicable door-test standard. |
| 4 | Material compatibility | List cleaning agents, disinfectants, solvents, temperature limits, humidity levels, and any exposure to corrosive chemicals. | Specify non-porous, corrosion-resistant door skins and frames with finishes compatible with the facility’s validated cleaning process. | Incompatible materials can discolor, corrode, crack, or create areas that retain contamination. | Review chemical-resistance data and conduct a documented cleanability assessment. |
| 5 | Surface cleanability | Prioritize smooth, sealed, non-shedding surfaces with limited ledges, recesses, exposed fasteners, and difficult-to-clean joints. | Use flush vision panels where required, sealed glazing, radiused or hygienic edges, and fully sealed penetrations. | A cleanable design reduces residue accumulation and simplifies routine sanitation. | Visual inspection, cleaning trials, and review against the facility’s sanitation procedure. |
| 6 | Door size and traffic flow | Determine clear opening width and height from carts, equipment, personnel flow, and emergency egress requirements. Common personnel openings are approximately 900–1,200 mm wide, but the project governs. | Provide adequate clearance without creating unnecessary room leakage or obstructing adjacent equipment. | Correct sizing prevents collisions, workflow delays, and repeated damage to the door assembly. | Layout review, equipment clearance check, and accessibility assessment. |
| 7 | Door swing and zoning | Define the opening direction according to pressure relationships, personnel flow, material flow, and egress rules. | The door should support the intended pressure cascade and avoid opening into corridors, equipment zones, or evacuation paths. | Incorrect swing direction can disrupt airflow and create safety or operational conflicts. | Architectural coordination, pressure-flow review, and local building-code check. |
| 8 | Interlocking and access control | For airlocks and material or personnel pass-throughs, define whether both doors must be prevented from opening simultaneously. | Provide compatible locks, indicators, sensors, emergency release functions, and a clearly documented control sequence. | Interlocking helps protect pressure differentials and supports controlled movement between zones. | Functional challenge test, alarm test, power-loss test, and documented commissioning. |
| 9 | Fire, smoke, and egress requirements | Identify required fire-rating, smoke-control, panic-hardware, accessibility, and emergency-exit provisions for the building and room location. | The cleanroom door must not compromise required life-safety functions or the approved means of egress. | Cleanroom performance cannot replace mandatory fire and occupant-safety requirements. | Authority-having-jurisdiction review and applicable local fire and building standards. |
| 10 | Durability and maintenance | Estimate operating frequency, impact exposure, trolley traffic, washdown conditions, and expected service life. | Choose reinforced construction, replaceable seals, adjustable hinges, robust closers, and accessible maintenance components. | Reliable hardware helps preserve alignment, closing force, sealing, and cleanroom performance over time. | Cycle testing, installation inspection, preventive-maintenance records, and periodic seal checks. |