2 introduction, 1 appropriate use, 2 scope of delivery – LumaSense Technologies ISR 6 Advanced User Manual

Page 9: 3 technical data

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ISR 6 Advanced Manual

Introduction · 9

2 Introduction

2.1 Appropriate use

The IMPAC ISR 6 pyrometer is a stationary, digital pyrometer for non-contact temperature
measurement metals, ceramics, graphite, etc. in ranges between 600 and 3000 °C.
The pyrometer measures in 2-color mode (ratio principle) in which two adjacent wavelengths
are used to calculate the temperature. This technique offers the following advantages when
compared with standard one-color pyrometers:

·

The temperature measurement is independent of the emissivity of the object in wide

ranges.

·

The measuring object can be smaller than the spot size.

·

Measurements are unaffected by dust and other “grey” contaminants in the field of
view or by dirty viewing windows.

The pyrometer can also be switched to 1-color mode and used like a conventional pyrometer.

2.2 Scope of delivery

Pyrometer, PC adjustment, and evaluation software InfraWin, works certificate, and operating

instructions.

Note: A connection cable is not included with the instrument and has to be ordered
separately (see Chapter

8

, Reference numbers).

2.3 Technical Data

Measurement
Temperature Ranges:

600 to 1400 °C (MB14)

700 to 1800 °C (MB18)
800 to 2500 °C (MB25)
1000 to 3000 °C (MB30)

Sub Range:

Any range adjustable within the temperature range, minimum span
50 °C

Spectral Ranges:

Channel 1: 0.9 µm, channel 2: 1.05 µm

Resolution:

0.1 °C or 0.2°F at interface; < 0.0015% of selected sub range at analog
output, min. 0.1°C, 16 bit; 1°C or 1°F on display

Emissivity

e

:

0.050 to 1.000 in steps of 1/1000 (1-color mode)

Transmittance

t

:

0.050 to 1.000 in steps of 1/1000 (1-color mode)

Emissivity Slope K

:

0.800 to 1.200 in steps of 1/1000 (2-color mode)

Measurement Uncertainty:
(K = 1, t

90

= 1 s, T

amb

.

= 25°C)

< 1500 °C: 0.3%

of reading in °C + 2 °C

> 1500 °C: 0.6% of reading in °C

Repeatability:
(K = 1, t

90

= 1 s, T

amb

.

= 25°C)

0.15% of reading in °C + 1 °C

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