$ 33.12
Reliable SICK iE15-A1 angled actuator with rubber-mounted design for stable, long-lasting performance in safety door systems. Ideal for industrial machine protection.
The SICK iE15-A1 actuator is a rugged, angled actuator engineered for use with electromechanical safety switches that monitor protective doors and movable guards. Its rubber-mounted actuation design allows smoother engagement, especially on doors with broader curvature, helping maintain stable switching performance over time. The compact form supports reliable detection even in tight or vibration-prone environments, making it suitable for industrial machines where dependable safety operation is required. Each unit is supplied with dedicated safety screws for secure installation, ensuring long-term operational stability. Overall, it provides a practical solution for maintaining consistent door-switch alignment and enhancing machine safety.
The iE15-A1 is built to withstand mechanical stress commonly found in production environments, offering a resilient structure that supports long-term accuracy. Its rubber-damped actuation reduces wear on both the switch and the actuator, which helps prevent misalignment caused by repeated opening and closing of machine guards. The angled layout improves usability during setup while providing predictable actuation movement. This design is particularly valuable for machinery with curved or large-radius doors, ensuring the safety switch triggers reliably. By minimizing maintenance needs and reducing the risk of false safety trips, the iE15-A1 supports smoother operation across automated, packaging, and general manufacturing systems.
The SICK iE15-A1 stands out because it’s engineered to keep safety doors operating smoothly, even in demanding environments. Its angled layout and rubber-mounted actuation create a reliable, low-wear motion that maintains switch accuracy over long periods. It’s a smart choice when you want an actuator that installs easily, withstands daily mechanical stress, and keeps your safety system consistently responsive.
The iE15-A1 eliminates the common issues of misalignment, vibration interference, and unreliable actuation that cause safety switches to trigger incorrectly. It ensures stable engagement on curved or frequently used doors, preventing false machine stops and reducing maintenance time. By delivering consistent, secure actuation, it helps maintain safe machine operation without interrupting workflow.
| Feature | Details | Benefit |
|---|---|---|
| Accessory Type | Actuator for electromechanical safety switches | Ensures dependable engagement with compatible SICK safety switches |
| Design | Angled structure | Easier alignment in tight spaces and improves installation flexibility |
| Actuation Method | Rubber-mounted actuation | Reduces mechanical wear, smooth operation, and stable switch triggering |
| Minimum Door Radius | ≥ 300 mm | Ideal for curved, large-radius, or frequently used machine doors |
| Items Supplied | Includes two safety screws | Secure mounting and consistent long-term performance |
| Construction Style | Compact metal frame with roller mechanism | Supports durability and consistent actuation under continuous use |
| Vibration Tolerance | Rubber-damped mechanism | Maintains switch alignment even in high-vibration environments |
| Application Area | Machine guarding, hinged doors, protective covers | Reliable actuation in automated and industrial safety systems |
| Environmental Compliance | RoHS-compliant | Meets environmental requirements for modern machinery |
| Classification Codes | ECLASS & ETIM listed | Compatible with engineering standards and catalog systems |
Download SICK iE15-A1 (5319976) Datasheet
| Commercial Data | Details |
|---|---|
| Weight | 28 g |
| Country of Origin | Romania |
Packaging equipment often runs at high speed, causing constant vibration that can gradually shift mechanical parts out of position. The iE15-A1’s rubber-mounted actuation helps absorb this movement, allowing the safety switch to function consistently even when the machine is cycling rapidly. Its angled structure fits well on compact doors that operators open repeatedly for replenishing materials or changing formats. The actuator’s stability prevents unnecessary safety interruptions, ensuring that the machine stops only when the guard is genuinely open. This improves the continuity of production while maintaining strict safety control in environments where uptime is critical.
Robot enclosures with curved doors or rounded guards can be difficult to equip with standard actuators due to changes in closing angles. The iE15-A1 is well-suited for such installations because it can operate reliably on doors with larger radii. As the door swings along its curve, the rubber-damped mechanism supports smooth motion without placing stress on the switch. This is especially useful during frequent maintenance, where technicians often open the enclosure to adjust tools or sensors. The actuator helps preserve alignment throughout repeated cycles, offering stable interlocking performance essential for high-precision robotic operations.
CNC machines, milling centers, and processing units have sturdy access doors that can shift slightly over time due to repeated use or temperature variations. These small movements can cause ordinary actuators to lose alignment and trigger false safety stops. The iE15-A1’s angled geometry and flexible actuation help maintain a consistent switching path even when the door does not close with perfect repeatability. This reduces the likelihood of unplanned machine halts and supports safer operator access. Its durability also makes it a strong choice for machines that run long cycles and require dependable interlocking throughout the day.
Food and beverage plants require equipment that withstands cleaning routines, moisture, and constant opening of protective covers. The iE15-A1’s robust construction handles repetitive motion while its rubber-mounted mechanism reduces wear caused by frequent door operation. This helps maintain accurate switch activation in mixers, fillers, and conveyors that must stop immediately when a guard is opened. By resisting misalignment and reducing mechanical stress, it supports stable safety performance during both production and sanitation activities. The result is fewer false alarms, less downtime, and a more dependable safety system in environments where equipment is routinely exposed to demanding conditions.
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