TPCEB-200 Low-Energy Self-Shielded Electron Beam System from China Suppliers and Factory for Curing and Sterilization
Key Technical Specifications of TPCEB-200 Electron Beam System
The TPCEB-200 electron beam system offers flexible configuration to meet different processing requirements:
Electron Beam Energy
80–120 keV / 120–200 keV
Beam Current Range
0–75 mA, 100 mA, 200 mA, 500 mA, up to 1000 mA
Surface Dose Non-Uniformity
≤ 3%, ensuring consistent irradiation quality
Dose-Throughput Combinations
- 0–3000 kGy·m/min
- 0–6000 kGy·m/min
- 0–12000 kGy·m/min
With its self-shielded design, the system provides enhanced radiation safety while reducing installation complexity, making it suitable for on-site integration without large-scale shielding infrastructure.

Industrial Interfaces & Production Line Integration
The TPCEB-200 low-energy electron beam system supports multiple industrial communication and control interfaces, including industrial Ethernet, fieldbus systems, 4–20 mA, and 0–5 V signals. These interfaces enable seamless synchronization with automated production lines, ensuring stable beam output and consistent irradiation dosage during continuous operation.
Frequently Asked Questions (FAQ)
What is the electron beam energy range of the TPCEB-200 system?
The system offers flexible energy configurations, operating at ranges of 80–120 keV and 120–200 keV to meet various processing requirements.
What beam current options are available?
The TPCEB-200 supports a wide beam current range, including 0–75 mA, 100 mA, 200 mA, 500 mA, and can scale up to 1000 mA.
How does the system maintain irradiation quality?
It ensures consistent irradiation quality by maintaining a surface dose non-uniformity of ≤ 3%.
Does the installation require large-scale shielding infrastructure?
No, the system features a self-shielded design that enhances radiation safety and significantly reduces installation complexity, allowing for direct on-site integration.
How does the system integrate with automated production lines?
It integrates seamlessly using multiple industrial communication and control interfaces, such as industrial Ethernet, fieldbus systems, 4–20 mA, and 0–5 V signals, ensuring stable beam output during continuous operation.

