English
English
Español
Português
русский
français
日本語
Deutsch
Tiếng Việt
Italiano
Nederlands
ไทย
Polski
한국어
Svenska
magyar
Malay
বাংলা
Dansk
Suomi
हिन्दी
Pilipino
Türk
Gaeilge
عربى
Indonesia
norsk
اردو
čeština
Ελληνικά
Українська
Javanese
فارسی
தமிழ்
తెలుగు
नेपाली
Burmese
български
ລາວ
Latine
Қазақ
Euskal
Azərbaycan
slovenský
Македонски
Lietuvos
Eesti Keel
Română
Slovenski
मराठी
Српски
Esperanto
Afrikaans
Català
עִברִית
Cymraeg
Galego
Latvietis
icelandic
יידיש
Беларус
Hrvatski
Kreyòl ayisyen
Shqiptar
Malti
lugha ya Kiswahili
አማርኛ
Bosanski
Frysk
ជនជាតិខ្មែរ
ქართული
ગુજરાતી
Hausa
Кыргыз тили
ಕನ್ನಡ
Corsa
Kurdî
മലയാളം
Maori
Монгол хэл
Hmong
IsiXhosa
Zulu
Punjabi
پښتو
Chichewa
Samoa
Sesotho
සිංහල
Gàidhlig
Cebuano
Somali
Точик
O'zbek
Hawaiian
سنڌي
Shinra
հայերեն
Igbo
Sundanese
Lëtzebuergesch
Malagasy
Yoruba
Javanese
Banbala
Pokjoper
Divih
Philippine
Gwadani
Elokano
As global petrochemical, chemical processing and municipal infrastructure sectors keep advancing large‑scale fluid transmission projects, pipeline freeze‑up and medium‑viscosity loss remain persistent operational risks for long‑distance pipe networks. Conventional thermal preservation solutions often fail to adapt to complex working environments including low‑temperature open‑air zones, corrosive chemical workshops and high‑risk fire‑protection pipe networks.
EPI has built a full‑range industrial heat‑tracing product matrix covering multiple technical routes to satisfy differentiated site requirements. Its self‑regulating heating‑cable series includes DBR‑15 and DBR‑25 220V variants built with adaptive conductive‑polymer cores. These products automatically adjust heat output following ambient‑temperature shifts, lowering overall energy consumption and removing overheating risks, making them well‑suited for routine pipeline anti‑freeze tasks.
Parallel‑structure and serial‑structure constant‑power heating cables, as well as silicone‑coated constant‑wattage heating tapes, output stable uniform heat for refinery compressor equipment and pipelines transporting high‑viscosity media. The 60W/M explosion‑proof anti‑corrosion heating cable resists strong acid and alkali erosion for chemically aggressive operating spaces. MI mineral‑insulated heating cables sustain continuous ultra‑high‑temperature operation for high‑risk hazardous‑zone industrial facilities. Beyond process‑industry deployment, the product portfolio also supports civil snow‑melting and de‑icing use‑cases, covering garage ground heating and outdoor‑driveway anti‑freeze scenarios for global engineering contractors。


