Impac IN 5/5 and IN 5/5 plus Series Pyrometer

Compact, Infrared Pyrometers for Temperature Measurement of Glass and Quartz Surfaces, 100 to 2500°C

Impac IN 5/5 and IN 5/5 plus Series Pyrometers are specially designed pyrometers for non-contact temperature measurements of glass and quartz surfaces.

  • Temperature Ranges:
    • Between 100 and 2500°C
  • Analog Output:
    • IN 5/5: 4 to 20 mA (linear), several temperature ranges available
    • IN 5/5 plus: 0 or 4 to 20 mA (linear), adjustable
  • Small spot sizes (IN 5/5 = minimum 2.5 mm and IN 5/5 plus = minimum 1.1 mm)

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Temperature Ranges

Impac IN 5/5
100 to 600°C (MB 6)
200 to 800°C (MB 8)
100 to 1300°C (MB 13)
400 to 2500°C (MB 25)
Additional MB on request
(Spectral Range 5.14 µm)

Impac IN 5/5 Plus
100 to 1300°C (MB 13)
400 to 2500°C (MB 25)
(Spectral Range 5.14 µm)

 Impac IN 5/5-H Plus and  IN 5/5-L Plus
200 to 1300°C (MB 13)
400 to 2500°C (MB 25)
(Spectral Range 5.14 µm)

Typical Applications

  • Float glass
  • Hollow glass
  • Glass drop
  • Glass hardening
  • Glass bending
  • Bulb production
  • Heat treatment

Interface & Communication

Analog Output
Impac IN 5/5: 4 to 20 mA, (linear)
Impac IN 5/5 Plus: 0 to 20 mA or 4 to 20 mA (linear), adjustable

Digital Interface
Impac IN 5/5 plus: RS232 or RS485 (addressable, half duplex), baud rate 1.2 to 19.2 kBd, resolution 0.1°C

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What our customers say…

When rebuilding one of our clamshell furnaces we opted for four Impac ISR 6 pyrometers for precise temperature measurement. I am very impressed with the quality of every component from the cooling jackets to the sensors themselves, which seem exceptionally well made. I would not hesitate to contact LIMAB in the future for any other applications that I may need help/equipment for.

John Parkin – Senior Site Electrical and Control Engineer

When we needed to measure the temperature of an ion source within a high vacuum, we chose to use an Impac pyrometer from LIMAB. The advice given by the Technical Sales Manager meant that the equipment was easily integrated into our system and immediately provided us with very impressive results.
David Cox – University of Surrey