射线仪表源盒
Technical Data
CompareContinuous / Liquids
| Measuring Principle | Radiometric |
| Characteristic / Application | Source container with flexible extension element to position the source inside the process vessel (diptube) Approximately 87kg Adapter flange: 10kg |
| Specialities | With flexible extension element |
| Ambient temperature | -52 °C...+200 °C (-61 °F...+392 °F) |
| Process temperature | max. 400°C (752°F) |
| Process pressure / max. overpressure limit | Any (diptube) |
| Main wetted parts | Non-contact |
| Process connection | Non-contact |
Continuous / Solids
| Measuring Principle | Radiometric |
| Characteristic / Application | Source container with flexible extension element to position the source inside the process vessel (diptube) Approximately 87kg Adapter flange: 10kg |
| Specialities | Control area calculation with Applicator |
| Ambient temperature | -52 °C...+200 °C (-61 °F...+392 °F) |
| Process temperature | max. 400°C (752°F) |
| Process pressure / max. overpressure limit | Any (diptube) |
| Main wetted parts | Non-contact |
| Process connection | Non-contact |
Density
| Measuring Principle | Radiometric Density |
| Characteristic / Application | Source container with flexible extension element to position the source inside the process vessel (diptube) Approximately 87 kg Adapter flange: 10 kg |
| Ambient temperature | -52 °C...+200 °C (-61 °F...+392 °F) |
| Process temperature | max. 400°C (752°F) (diptube) |
| Process pressure | Any |
| Wetted parts | Non-contact |
| Hygienic | Non-contact |
| Specialities | Control area calculation with Applicator |
Point Level / Liquids
| Measuring Principle | Radiometric Limit |
| Characteristic / Application | Source container with flexible extension element to position the source inside the process vessel (diptube) Approximately 87kg Adapter flange: 10kg |
| Specialities | Control area calculation with Applicator |
| Ambient temperature | -52 °C...+200 °C (-61 °F...+392 °F) |
| Process temperature | max. 400°C (752°F) (diptube) |
| Process pressure / max. overpressure limit | Any (diptube) |
| Main wetted parts | Non- contact |
| Process connection | Non- contact |
Point Level / Solids
| Measuring Principle | Radiometric Limit |
| Characteristic / Application | Source container with flexible extension element to position the source inside the process vessel (diptube) Approximately 87kg Adapter flange: 10kg |
| Specialities | Control area calculation with Applicator |
| Ambient temperature | -52 °C...+200 °C (-61 °F...+392 °F) |
| Process temperature | max. 400°C (752°F) (diptube) |
| Process pressure / max. overpressure limit | Any (diptube) |
| Main wetted parts | Non- contact |
| Process connection | Non- contact |
| Process connection hygienic | Non- contact |
The FQG63 source container holds a radioactive source and is used for radiometric level, density and interface measurement. When the source container is closed, radiation is shielded in all directions, ensuring maximum personal safety and reliable measurement. When the source container is open and placed inside the process vessel, radiation is emitted in all directions.
Advantages
Nearly spherical design; the lightweight source container provides optimum shielding
Meets the highest safety class (DIN 25426/ISO 2919, typical classification C66646)
Flexible installation length, up to 30 m (98 ft)
Manual operation
Switch position secured by padlock or safety bolt
Easy identification of switch status
Integrated source container for simple installation, with adapter and centering flange for existing vessel flanges
Application
The FQG63 source container is used to house the radioactive source during radiometric limit detection and level, density and interface measurement. In the closed position the source is held in the container and the radiation path is closed. In the open position the source with its movable extension rod is placed in the protective pipe of the process vessel.
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Technical documentation
Technical data
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Source:Endress+Hauserwebsite public information
Case Studies
市政污水处理污水处理厂 · 放射性应用案例
项目背景
市政污水处理客户在污水处理厂环节,长期面临「出水水质监测精度不足、仪表易受污染导致数据漂移,影响达标排放」的困扰,对放射性的稳定性与测量精度提出了更高要求。
解决方案
阿仪科技技术团队结合现场工况,为客户选配了适配的放射性,并完成选型、安装、调试与整定的一站式交付。
实施效果
- 测量精度与响应速度显著提升,数据稳定可靠;
- 仪表适应市政污水处理复杂工况,维护量大幅降低;
- 助力客户实现连续在线监测与降本增效,获得客户高度认可。
食品饮料食品生产线 · 放射性应用案例
项目背景
食品饮料客户在食品生产线环节,长期面临「卫生级测量要求高,在线仪表需耐 CIP/SIP 清洗且精度稳定」的困扰,对放射性的稳定性与测量精度提出了更高要求。
解决方案
阿仪科技技术团队结合现场工况,为客户选配了适配的放射性,并完成选型、安装、调试与整定的一站式交付。
实施效果
- 测量精度与响应速度显著提升,数据稳定可靠;
- 仪表适应食品饮料复杂工况,维护量大幅降低;
- 助力客户实现连续在线监测与降本增效,获得客户高度认可。
化工制药反应釜与储罐 · 放射性应用案例
项目背景
化工制药客户在反应釜与储罐环节,长期面临「介质腐蚀性强、工况复杂,仪表需耐腐蚀且防爆」的困扰,对放射性的稳定性与测量精度提出了更高要求。
解决方案
阿仪科技技术团队结合现场工况,为客户选配了适配的放射性,并完成选型、安装、调试与整定的一站式交付。
实施效果
- 测量精度与响应速度显著提升,数据稳定可靠;
- 仪表适应化工制药复杂工况,维护量大幅降低;
- 助力客户实现连续在线监测与降本增效,获得客户高度认可。
电力能源电厂锅炉与汽机 · 放射性应用案例
项目背景
电力能源客户在电厂锅炉与汽机环节,长期面临「高温高压工况下测量不稳定,维护停机成本高」的困扰,对放射性的稳定性与测量精度提出了更高要求。
解决方案
阿仪科技技术团队结合现场工况,为客户选配了适配的放射性,并完成选型、安装、调试与整定的一站式交付。
实施效果
- 测量精度与响应速度显著提升,数据稳定可靠;
- 仪表适应电力能源复杂工况,维护量大幅降低;
- 助力客户实现连续在线监测与降本增效,获得客户高度认可。







