Explore performance details, construction highlights, applications, and technical information in one clear overview.
The APEM Panel Switches 3547-033N002 is a double pole lever switch designed for industrial applications. Featuring bright nickel finish, flattened levers, and 24 mm length, it offers robust performance with a maximum initial contact resistance of 10 mΩ at 1 A 2 VDC. This switch meets CECC 96000 standards and provides reliable operation across temperatures from -40 °C to +85 °C.
The APEM Panel Switches 3547-033N002 is a high-reliability double pole lever switch engineered for demanding industrial environments. With a bright nickel finish and flattened levers, this switch delivers precise control and durability in applications requiring robust electrical performance. Its sealed construction withstands 0.1 bar pressure, ensuring reliable operation in harsh conditions while maintaining compliance with European safety standards (CECC 96000). The switch supports three terminal types and offers mechanical life of 40,000 cycles, making it ideal for critical control systems where longevity and safety are paramount.
The APEM Panel Switches 3547-033N002 delivers precise electrical performance with a maximum initial contact resistance of 10 mΩ at 1 A 2 VDC. It features robust dielectric strength (2,500 Vrms 50 Hz min. between terminals and 3,000 Vrms 50 Hz min. between terminals and frame) and high insulation resistance (1,000 MΩ), ensuring reliable operation in high-voltage environments. The switch supports electrical functions including MOM OFF MOM, suitable for critical control applications.
Engineered for extreme conditions, this switch operates within a temperature range of -40 °C to +85 °C and withstands 56 days of moisture exposure. Its sealed construction maintains integrity under 0.1 bar pressure, providing protection against environmental factors without compromising electrical performance.
With a mechanical life of 40,000 cycles, the APEM Panel Switches 3547-033N002 ensures long-term reliability in high-traffic applications. The switch requires a maximum torque of 2 Nm (1.47 ft.lb) to secure the nut, balancing ease of installation with robust mechanical stability.
Approved to European standards CECC 96000, the switch meets stringent safety and performance requirements. It is designed for industrial use with three terminal types and multiple lever styles, ensuring flexibility in integration while maintaining compliance with international safety regulations.
| Feature | Specification |
|---|---|
| Configuration | double pole configuration |
| Feature | Specification |
|---|---|
| finish | Bright Nickel,Lever locking styles:No Locking,Levers:Flattened Length: 24 mm(0.944in),Locking Lever Special |
| Initial contact resistance | 10 mΩ max. at 1 A 2 VDC |
| Dielectric strength | 2,500 Vrms 50 Hz min. between terminals3,000 Vrms 50 Hz min. between terminals and frame |
| Torque | 2 Nm (1.47 Ft.lb) max. applied to nut Completely sealed switches withstanding 0.1 bar pressure Approved to European standards CECC 96000 Three types of terminals Many lever styles available Approved to European standards |
| Operating temperature | -40 °c to +85 °C |
| Electrical Functions | MOM OFF MOM |
The APEMPanel Switches 3547-033N002 is presented using the documented product characteristics available for this model.
| Feature | Specification |
|---|---|
| Configuration | double pole configuration |
| Feature | Specification |
|---|---|
| finish | Bright Nickel,Lever locking styles:No Locking,Levers:Flattened Length: 24 mm(0.944in),Locking Lever Special |
| Initial contact resistance | 10 mΩ max. at 1 A 2 VDC |
| Dielectric strength | 2,500 Vrms 50 Hz min. between terminals3,000 Vrms 50 Hz min. between terminals and frame |
| Torque | 2 Nm (1.47 Ft.lb) max. applied to nut Completely sealed switches withstanding 0.1 bar pressure Approved to European standards CECC 96000 Three types of terminals Many lever styles available Approved to European standards |
| Operating temperature | -40 °c to +85 °C |
| Electrical Functions | MOM OFF MOM |