RADGATE PORTAL SYSTEMS

The device is equipped with measurement channels for gamma and neutron radiation, supports data transfer via RS-485 and Ethernet. It has the ability to operate autonomously from batteries, light and sound signaling, as well as a video surveillance system.

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Overview of portal radiation monitoring systems

Portal radiation monitoring systems are critically important components in ensuring safety at industrial facilities, airports, customs posts and other areas where there is a risk of radiation sources. These systems provide interaction with the environment and control over the radiation background, which allows for timely detection of dangerous situations.

Key features of portal radiation monitoring systems

  • Measuring channels: Portal radiation monitoring systems are equipped with gamma and neutron measurement channels, providing a wide range of radiation threat detection.
  • Data transfer: The systems have the ability to transmit data via RS-485 and Ethernet, which ensures integration with other monitoring and control systems.
  • Autonomous work: Built-in batteries allow portal radiation monitoring systems work in offline mode, which is important in cases of lack of power supply.
  • Alarms: Light and sound alarms provide prompt notification of exceeding radiation levels, which helps to take timely safety measures.
  • Video surveillance: An additional video surveillance system allows you to record the situation around portal systems, which increases the efficiency of control and the ability to respond to emergencies.

Advantages of using portal radiation monitoring systems

Installation portal radiation monitoring systems brings numerous benefits both for individual enterprises and for the general level of public safety:

1. Risk reduction

Identifying potential radiation sources and controlling them helps prevent accidents that could threaten human health and the environment.

2. Improving control efficiency

Thanks to the capabilities of automated data collection and transmission of information about radiation levels, the solution becomes dynamic and real in cases of threat.

3. Ease of integration

Portal radiation monitoring systems easily integrated with existing security systems, providing a comprehensive approach to risk management at all levels.

4. Rapid response

Thanks to the alarm and video surveillance system, it is possible to quickly respond to any anomalies, which minimizes potential consequences.

Use of portal radiation monitoring systems

Main industries in which they are actively used portal radiation monitoring systems, include:

  • Industry: Factories and enterprises that work with radioactive materials must ensure control of radiation emissions.
  • Customs: Customs offices use these systems to detect prohibited nuclear materials in cargo.
  • Airports: Airports set portal radiation monitoring systems to ensure passenger safety and inspect flying objects.
  • Research institutions: Laboratories working in the field of nuclear physics and radiation medical diagnostics require constant monitoring of the radiation background.

Technical specifications

It is important to note the technical characteristics that make portal radiation monitoring systems competitive:

  • Measurement of gamma and neutron radiation.
  • Modern data transmission technologies (RS-485, Ethernet).
  • Autonomous power supply system.
  • Built-in alarm mechanisms (light and sound).
  • Possibility of integration with video surveillance systems.

Conclusion

In the modern world, the issue of radiation safety and control is becoming increasingly relevant. Portal radiation monitoring systems provide reliability, responsiveness, and comprehensiveness, making them invaluable in many areas. Thanks to their innovative capabilities and flexibility, these systems are gaining popularity and becoming the standard for ensuring security in various industries.

Additional information about stationary radiation monitoring devices can be found on our page stationary radiation monitoring devices.

Characteristics
Type

Stationary

Type of detector(s)

Gamma, neutron scintillators (optional)

Dimensions, mm

Pedestrian/car/railway
1840x600x300/3150x600x300/2685x1200x300

Weight, kg

Pedestrian/car/railway
500/800/1300

Control zone (H x W), m

Pedestrian/car/railway
2x2/5.2x4.5/4.5x6.2

Detection thresholds of gamma radiation, kBq

Pedestrian/car/railway
ยนยณยณBa: 50/340/1000
ยนยณโทCs: 60/300/900
โถโฐCo: 30/150/450

Sensitivity of detectors, (imp/s) kBk

Pedestrian/car/railway
ยฒโดยนAm: 4/4/7
ยนยณโทCs: 50/50/110
โถโฐะกo: 95/95/220
ยฒโตยฒCf: 0.016/0.016/0.016

Device type

Device capabilities

Types of radiation

Gamma

,

Neutron

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certificates
  • ISO 9001:2018
  • ISO 14001:2015
  • ISO/IEC 27001:2023
  • ISO 45001:2019
  • Declaration of compliance with Technical Regulation No. 1067 dated 16.12.2015