Induction-type Betatron
PTMegaB
Cyclotron
Portable design
High-energy radiation
Independent research and development
RAYSOV’s core‑developed inductive Betatron seamlessly combines high‑energy penetration with exceptional portability. With an ultra‑high 7.5 MeV energy output, it can penetrate up to 250 mm of equivalent steel thickness, and when paired with a high‑energy flat‑panel detector, enables real‑time digital imaging inspection of large components on site, delivering a precise and efficient solution for industrial nondestructive testing. Its innovative modular, lightweight design frees the system from the constraints of traditional gantry‑mounted inspection equipment, significantly enhancing mobility while maintaining superior inspection performance and substantially reducing installation and maintenance costs. Today, this equipment is widely deployed across numerous sectors, including aerospace, power and energy, rail transit, and green‑channel security screening.
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- Product Description
- Technical Specifications
- Case study
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- Commodity name: Induction-type Betatron
- Commodity ID: PTMegaB
- 设备类型: Linear accelerator
- 标签蓝: Cyclotron
- 标签绿: Portable design
- 标签橙: High-energy radiation
- 标签红: Independent research and development
- 特点: Large-Scale Equipment | Electron Cyclotron Resonance Accelerator | High-Energy Radiation
RAYSOV’s core‑developed inductive Betatron seamlessly combines high‑energy penetration with exceptional portability. With an ultra‑high 7.5 MeV energy output, it can penetrate up to 250 mm of equivalent steel thickness, and when paired with a high‑energy flat‑panel detector, enables real‑time digital imaging inspection of large components on site, delivering a precise and efficient solution for industrial nondestructive testing. Its innovative modular, lightweight design frees the system from the constraints of traditional gantry‑mounted inspection equipment, significantly enhancing mobility while maintaining superior inspection performance and substantially reducing installation and maintenance costs. Today, this equipment is widely deployed across numerous sectors, including aerospace, power and energy, rail transit, and green‑channel security screening.

Core Advantages
Cost revolution, exceptional value for money
- The procurement cost is only 50–65% of that of a comparable linear accelerator.
- Post‑maintenance costs are only 10–20% of the original.
- The investment in protective room construction has been cut in half, and no overhead crane or yoke‑type auxiliary equipment is required.
- The thickness of the shielding wall is roughly equivalent to that of a linear accelerator (about 1.5 m), but the height and floor area of the shielded room can be significantly reduced.
Efficient and flexible, breaking free from traditional constraints.
- Innovative modular and lightweight design
- The radiator weighs only 115 kg, freeing it from vehicle‑mounted constraints.
- Air cooling replaces water cooling, reducing potential failure points and minimizing environmental impact.
- Conveniently positioned, suitable for both laboratory and on-site testing.
Lifelong reliability, stable operation
- Crafted over many years by a world-class R&D team with meticulous dedication.
- Verified by a vast array of applications, the product delivers stable and reliable performance.
- Electron beam energy: 2.0–7.5 MeV, adjustable in steps of 0.5 MeV.
- Service life of no less than 6 years (after replacement of short-life components)
Intelligent control, wide-range dual energy
- One-click switching between local debugging and remote signal linkage (supports CIS systems/RADON control)
- Wide energy adjustment range (2–7.5 MeV), with dual-energy mode.
- It can efficiently acquire response data of the tested workpiece at different energy levels.

System Architecture
Radiation source — comprising an electromagnet, an acceleration chamber, and a high-voltage injection unit
Power Distribution Box — Power Conversion and Controller
Interface Box — Connects the Computer to the CIS System
Inverter — Pulse Conversion
Matching cables: Power supply box–interface box / Power supply box–inverter / Radiator–power supply box / Radiator–inverter / Main power supply–power supply box
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Electron beam energy 2.0–7.5 MeV (step size 0.5 MeV) Dose rate 7.5 MeV: ≥7.5 R/min (66 × 10⁻³ Gy/min) / 5 MeV: ≥2.25 R/min (19.5 × 10⁻³ Gy/min) – at a distance of 1 m from the target along the radiation axis. Focus size ≤0.3*3mm Irradiation field of view Vertical: ±26° / Horizontal: ≤±12° Dose stability At the half-height position, the pulse period shall not exceed 5 μs; after a 10-minute warm-up, the variation in the dose rate per second shall be no greater than 10%. Working hours 50% duty cycle, with continuous operating time not exceeding 30 minutes. Radiator Dimensions/Weight h315mm/Φ380mm/115kg Pulse Converter Dimensions/Weight 435x275x220mm/14kg Power Supply Dimensions/Weight 590x320x480mm/48kg Normal working environment 0°C~35°C/Relative humidity ≤85% Extreme tolerance -40°C~50°C
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RAYSOV Instrument Co., Ltd.
Address: No. 57, Longteng Avenue, Zhen’an District, Dandong City, Liaoning Province, China
Email:info@raysov.com
Phone:86-415-6277666
Fax: 0415-6277566
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