
Dielectric Electrical Safety Boots
A2ZESB36 Dielectric Electrical Safety Boots are designed for professional electrical safety applications where insulation, water resistance, slip resistance and durable foot protection are required. Manufactured from natural rubber, these boots provide dependable protection support for electricians, utility workers, industrial maintenance teams, energy contractors and field service personnel working in environments with electrical risk.
The boot structure is suitable for wet, humid and demanding working conditions. Its water-resistant rubber body helps maintain protection performance in challenging environments, while the SRC slip-resistant outsole supports safer movement on wet and slippery surfaces. The shock-absorbing sole structure helps reduce impact on the foot during daily use, and the ergonomic design provides practical comfort for long working hours.
A2ZESB36 is developed for use as part of a complete personal protective equipment system. In electrical risk environments, dielectric boots should always be selected according to the working voltage, site risk assessment, applicable safety regulations and the instructions of the responsible safety specialist or electrical engineer. For high-risk electrical operations, boots must be used together with other required PPE such as insulating gloves, face protection, protective clothing and other approved equipment.
The product is suitable for B2B supply to safety equipment distributors, industrial procurement departments, electrical contractors, energy companies, utility service providers and project-based buyers looking for reliable Turkish-origin protective footwear for professional electrical applications.
Recommended Application Areas
| Application Area | Typical Use |
|---|---|
| Electrical Maintenance Works | Maintenance, inspection and repair operations in electrical environments |
| Power Distribution Facilities | Utility service areas, power distribution lines and related field operations |
| Transformer Stations | Maintenance and service works around transformer rooms and substations |
| Industrial Electrical Rooms | Use in factories, production plants and industrial facilities with electrical risk |
| Energy Infrastructure Projects | Electrical installation, infrastructure and field service operations |
| Utility Companies | Daily field work for electricity, maintenance and technical service teams |
| Electrical Contractors | Project-based electrical installation and site maintenance works |
| Wet and Humid Work Areas | Operations where workers may face both moisture and electrical risk |
| Power Plant Maintenance | Electrical maintenance tasks in energy production and auxiliary service areas |
| Cable and Panel Service Areas | Electrical panel, cable route, service room and installation support operations |
Key Features
| Feature | Description |
|---|---|
| Dielectric Protection Support | Designed for use in electrical risk environments as electrically insulating protective footwear |
| Natural Rubber Construction | Manufactured from natural rubber for flexibility, durability and water resistance |
| Water-Resistant Body | Helps maintain protection performance in wet and humid working environments |
| SRC Slip-Resistant Sole | Supports safer movement on wet, slippery and industrial floor surfaces |
| Shock-Absorbing Sole | Helps reduce impact on the foot sole during walking and daily field use |
| Antibacterial Inner Lining | Sweat-resistant lining helps prevent easy wear, fungus and bacteria formation |
| Heat Insulation | Sole structure supports protection against heat transfer from the ground |
| Cold Insulation | Suitable for use in different seasonal conditions with cold insulation support |
| Hot Contact Resistance | Special sole design provides resistance against contact with hot surfaces |
| Ergonomic Design | Practical and comfortable structure for professional use during long working hours |
| Easy Cleaning | Can be cleaned with water; extra chemicals or paint should not be used |
| Professional PPE Use | Suitable for industrial, electrical, utility and infrastructure safety programs |
Electrical Class Reference
| Electrical Class | AC Test Voltage Reference |
|---|---|
| Class 0 | 10 kV AC |
| Class 1 | 20 kV AC |
| Class 2 | 30 kV AC |
| Class 3 | 40 kV AC |
| Class 4 | 50 kV AC |
Selection Note: The correct electrical class must be selected according to the actual working voltage, risk level, local safety regulations and project requirements. Product suitability should be confirmed by the responsible safety professional before use.
Standards and Marking Information
| Marking / Symbol | Meaning |
|---|---|
| Double Triangle Symbol | Symbol used for electrically insulating personal protective equipment |
| SRC | Highest level slip resistance for wet and humid surfaces |
| HI | Heat insulation of the sole |
| CI | Cold insulation of the sole |
| HRO | Resistance to hot contact |
| E | Heel energy absorption / shock-absorbing sole |
| WR | Water resistance |
Inspection, Cleaning and Storage Instructions
Before each use, the markings on the boots should be checked to confirm that the product is suitable for the intended personal protective equipment application. Boots with visible cracks, punctures, tears, chemical damage or mechanical deformation should not be used. If there is any doubt after visual inspection, the boots should be sent to an authorized testing body for routine electrical testing.
The inside and outside of the footwear should be dry before use. Although the lining has sweat-absorbing properties, fully wet footwear may reduce the protective performance. For this reason, the boots should be dried in open air before use if moisture is present.
After use, boots that have contacted oil, petroleum derivatives or similar contaminants should be cleaned with water and dried away from direct sunlight. Extra chemicals, paint or aggressive cleaning materials should not be used.
For storage, the boots should be kept away from direct sunlight, heat sources, moisture, ozone sources and artificial light. They should not be folded, compressed or stored under pressure. Recommended storage temperature is between +5°C and +35°C. Aging may negatively affect electrical resistance, therefore boots should be inspected and tested during both storage and use periods.



