HSRL Self-Regulating Heating Cables (Low Temperature)
Energy Efficient
Optimized for efficiency gains across your processes.
Quick Install
Designed for faster installation to reduce your labor time.
Self-Regulating
Over temperature conditions are minimized.
About HSRL Self-Regulating Heating Cable
Chromalox HSRL self-regulating heating cable provides safe, reliable heat tracing for freeze protection of pipes, valves, tanks and similar applications. Constructed of industrial grade 16 AWG buss wire with a tinned copper braid and fluoropolymer overjacket, HSRL ensures operating integrity in Div. 1 hazardous environments. HSRL heating cable has a maximum maintenance temperature rating of 150°F (65°C) and a maximum exposure temperature of 185°F (85°C)
Note: Due to the nature of Division 1 hazardous location applications consultation with a factory representative is required.
WARNING — A ground fault protection device is required by NEC to minimize the danger of fire if the heating cable is damaged or improperly installed. A minimum trip level of 30 mA is recommended to minimize nuisance tripping.
HSRL Self-Regulating Heating Cable (Low Temperature)
- Process Temperature Maintenance to 150°F (65°C)
- Maximum Continuous Exposure Temperature, Power Off, 185°F (85°C)
- 120 and 208-277 Volts Available
- For Use on Metal and Plastic Pipes
- Energy efficient, self-regulating HSRL heat trace uses less energy when less heat is required
- Easy to install, HSRL can be cut to any length (up to max circuit length) in the field
- HSRL features lower installed cost than steam tracing, less maintenance expense and less down time
- HSRL can be overlapped without burnout, which simplifies heat tracing of in-line process equipment such as valves, elbows and pumps
- Chromalox HL Connection Kits reduce installation time
Request a Quote: Self-Regulating Heating Cable
Chromalox heat trace solutions offer a safe, reliable and efficient way for freeze protection and process maintenance of pipes, valves, and tanks in the most extreme conditions.