| 1 | Match the IP rating to the exposure | IEC 60529 IP65, IP66, or IP67 | Choose IP65 for dust-tight protection and water jets, IP66 when more powerful water jets are expected, and IP67 when temporary immersion is possible. | Obtain the complete IP code, test report or certificate, test orientation, and confirmation that the rating applies to the assembled switch and not only to an enclosure component. |
| 2 | Understand the IEC 60529 protection levels | First digit: 6; second digit: 5, 6, or 7 | The first digit 6 indicates dust-tight protection. The second digit identifies resistance to water jets or temporary immersion, not permanent underwater operation. | Check that the supplier states the exact tested level and does not describe IP65, IP66, and IP67 as interchangeable protection classes. |
| 3 | Confirm the water exposure conditions | IP65: water jets; IP66: powerful water jets; IP67: temporary immersion | IP67 testing commonly represents temporary immersion up to 1 m for 30 minutes under IEC 60529 conditions. It does not automatically prove resistance to high-pressure jets or repeated submersion. | Compare the product rating with actual cleaning pressure, spray direction, immersion depth, immersion duration, and frequency of exposure. |
| 4 | Select the correct electrical rating | Voltage, current, load type, and circuit category | Verify AC and DC ratings separately. Motor, lamp, solenoid, and capacitive loads can impose higher inrush or arcing stress than resistive loads. | Request rated voltage, continuous current, inrush or load rating, contact arrangement such as SPST or SPDT, dielectric strength, and electrical endurance data. |
| 5 | Check mechanical fit and actuation | Mounting pattern, actuator style, operating force, travel, and overtravel | The switch should reach reliable operating travel without side-loading, bottoming out, or exceeding the permitted overtravel. Sealing can be compromised if the actuator is misaligned. | Confirm body dimensions, mounting-hole spacing, terminal layout, actuator height, operating force, operating position, release position, total travel, and allowable overtravel. |
| 6 | Evaluate the environment beyond water and dust | Temperature, chemicals, vibration, shock, salt spray, and UV exposure | IEC 60529 IP testing does not by itself establish resistance to chemicals, corrosion, vibration, shock, ultraviolet radiation, or temperature cycling. | Request operating and storage temperature ranges, sealing-material information, corrosion-test results where applicable, vibration and shock ratings, and chemical-compatibility guidance. |
| 7 | Validate sealing after installation | Cable entry, terminal sealing, panel interface, and maintenance practice | A sealed switch can lose system-level protection through unsealed wires, incorrect fasteners, damaged gaskets, excessive panel cutout clearance, or improper assembly. | Review installation instructions, gasket requirements, connector or wire-sealing method, tightening torque, approved cable diameter, and an assembled-product validation plan. |