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Energy Compensated High Dose Tube

Energy Compensated High Dose Tube

The Energy Compensated High Dose Gamma Geiger-Muller Tube from Exosens is a halogen-quenched radiation counter designed for accurate gamma detection in high radiation environments. With reduced sensitivity to prevent overload and energy compensation for precise dose measurement, it delivers reliable performance across demanding nuclear and industrial applications.

Key Features 

  • Energy compensated for accurate ambient and effective dose measurement
  • Flat energy response from 50 keV to 1.25 MeV
  • Reduced gas volume to prevent overload in high gamma flux
  • Halogen-quenched design for stable and long-term operation
  • Wide dose rate range up to 10,000 mGy/h
  • Fast response with low dead time (13 to 55 µs)
  • Suitable for high radiation monitoring systems
  • Ideal for nuclear plants, research reactors, and defense applications
SKU: Energy_Compensated_High_Dose_Tube Category:

Description

High Dose Gamma Detection with Energy Compensation

The Energy Compensated High Dose Gamma Geiger-Muller Tube by Exosens is engineered to deliver precise and stable gamma radiation measurements in high-dose environments. By combining reduced gas volume with optimized mixtures, the tube prevents saturation and overload under intense radiation flux. Its integrated energy compensation ensures a flat response across a wide energy spectrum from 50 keV to 1.25 MeV, making it ideal for accurate ambient and effective dose monitoring.

Stable Performance in Extreme Conditions

Designed for reliability, this Geiger-Muller tube features a halogen-quenched construction that enhances operational stability and longevity. With fast response times and low dead time ranging from 13 µs to 55 µs, it enables real-time monitoring even in rapidly changing radiation conditions. The controlled plateau slope ensures consistent readings across a wide dose range, from as low as 3 × 10−3 mGy/h up to 10,000 mGy/h depending on the model.

Flexible Configurations for Multiple Applications

Available in several configurations such as ZP1301, ZP1304, ZP1313, ZP1314, ZP1321, and ZP1324, these tubes provide flexibility to match different operational requirements. They are widely used in nuclear power plants, nuclear fuel cycle facilities, research reactors, and advanced SMR systems. In addition, they support defense and surveillance operations, including portable soldier equipment, unmanned platforms, and border monitoring systems.

Precision and Reliability for Critical Monitoring

The combination of energy compensation and high-dose capability makes this tube an essential solution for environments where both accuracy and durability are critical. It ensures dependable radiation monitoring without signal distortion, even under extreme exposure conditions. For professionals in nuclear, industrial, and defense sectors, this tube provides confidence in measurement accuracy and long-term performance.

Technical Specifications

Type Band Sensitivity Length (mm) Threshold (V) Plateau Slope (%/V) Counting Rate at 10−2 Gy/h (counts/s) Dead Time (µs) Background Shielded (count/min) Dose Rate Range (mGy/h)
ZP1301 E γ 7 500 0.3 340 13 1 0.1 – 10,000
ZP1304 A γ 7 500 0.3 340 13 1 0.1 – 10,000
ZP1313 E γ 16 500 0.15 1600 15 2 0.01 – 3,000
ZP1314 A γ 16 500 0.15 1600 15 2 0.01 – 3,000
ZP1321 E γ 28 500 0.08 9 55 12 0.003 – 102
ZP1324 A γ 27 500 0.08 9 55 12 0.003 – 102

 

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