Inductive load
When a Reed switch is used to guide an inductive load such as engines and solenoid valves, the energy stored in the load may cause an inverse voltage when the Reed contact breaks. The voltage depends on the inductance value. The following circuits provide a protection in the cases hereunder mentioned.

-
General
-
1. Plastic materials
- 1.1 Mechanical strength
- 1.2 Thermal resistance
- 1.3 Strength and surface hardness
- 1.4 Resistance to chemical agents
- 1.5 Resistance to atmospheric agents and uv rays
- 1.6 Flame resistance
- 1.7 Electrical properties
- 1.8 Surface finish and cleanability
- 1.9 Compliance with international standards
- 1.10 Competence of elesa technical department
- 2. Metal materials
- 3. Other materials
- 4. Machining tolerances
- 5. Fixed handles
- 6. Assembly measures
- 7. Special executions
- 8. Colours
- 9. Test values
-
10. Technical tables
- 10.1 Conversion table
- 10.2 DIN 79 square holes
- 10.3 Keyways
- 10.4 Transversal holes
- 10.5 Threads
- 10.6 Ip – protection classification for cases
- 10.7 MVK – fixing the threads by self-gluing
- 10.8 PFB fixing threads by means of locking action
- 10.9 Stainless steels
- 10.10 Carbon steels, zinc alloys, alluminium and brass
- 10.11 Duroplasts: resistance to chemical agents
- 10.12 Tecnopolymers and rubbers: resistance to chemical agents
-
1. Plastic materials
- Adjustable levers
- Handle with pneumatic drive
- Graduations
- Rotary controls
- Ball transfer units
- Modular roller tracks
- Level bubbles
- Spur gears
- Rubber buffers
- High performance vibration dampers
- Elastomer springs
- Magnets
- Levelling feet
- Hygienic design
- Hinges
- Pneumatic fastening clamps
- Electrical level indicators
- DIN 3015 tube clamps
- Castors and wheels
- Vacuum components