特性
- 中子通量范围的堆芯测量
- 紧密不锈钢结构
- Customization according to the user’s needs
Photonis fission chambers for in-core use can be made to operate at temperatures up to 600°C depending on the reactor types and the detection requirements.","Description","They are critical components for reactor neutron flux monitoring, and can be used to detect thermal neutrons in high flux, to monitor the reactor fuel burn-up, to control start-up, intermediate and power ranges.","Gas filled neutron detectors are designed to operate in three modes. Pulse mode analyzes and counts individual detector pulses. Fluctuation, or Campbell mode, is used to analyze the fluctuation of the direct current from the detector. Current mode is used to measure the mean of the direct current from the detector.","Fission chambers are filled with the appropriate gas for both high-temperature or fast response and are extremely radiation resistant. Depending on the type of fission chamber required, a BNC or HN connector can be mounted on the integrated mineral insulated cable designed specifically for the detector. Fission chambers for in-core use are designed to be movable inside the reactor core during operation. In research environments, our 1.5 mm external diameter subminiature chambers allow measurements close to the physical phenomenon.
技术参数
规格项 | 参数值 |
---|---|
工作温度 | 662 F (350 C) |
输出选项 | Analog Voltage |
产品类别 | Radiation Detectors |
检测到的电离辐射类型 | Gamma Ray; Neutron |
辐射探测器类型 | Ionization Chamber |
探测器输出 | Count Rate; Dose Rate |
探测器形式 | Fixed Installation |