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CTlaser MT

High-Performance Two-piece Industrial Infrared Pyrometer for Non-Contact Temperature Measurement Through Flames

CTlaser MT
CTlaser MT
CTlaser MT
CTlaser MT

The Optris CTlaser MT series changes non-contact temperature measurement in tough thermal environments. Designed to see through flames, this strong pyrometer is perfect for processes like flame hardening, combustion monitoring, and furnace work where flames block direct views of the target material.

Working over a precisely calibrated 3.9 µm spectral range, the CTlaser MT filters out unwanted radiation from flames. This allows it to deliver accurate and reliable temperature readings of the underlying substrate. It covers a wide range from 200 °C to 1650 °C (392 °F to 3002 °F) across different models, making it versatile for various high-temperature tasks. With a high optical resolution of 45:1 and a minimal spot size starting from just 1.6 mm, it achieves precise targeting even on small components or from far away.

Practical design features ensure easy use in industrial settings. The clear double-laser aiming system allows for precise visual targeting, ensuring the measurement spot is correctly positioned on the object of interest, not the flame. This greatly improves measurement reliability and repeatability. For smooth integration with modern control systems, the pyrometer supports various analog and digital outputs, including standard protocols like EtherNet/IP, Profinet, Modbus RTU, and Modbus TCP.

Setting it up is simple and does not require a license, thanks to Optris software tools: the compactConnect PC software or the handy IR mobile App for Android devices. The modular design comes with a variety of lenses and accessories, allowing you to customize the distance-to-spot ratio for your specific setup.

Like all Optris instruments, the CTlaser MT series is developed and calibrated in Germany, and it goes through strict end-of-line testing. This focus on quality guarantees a sturdy, reliable, and precise pyrometer that performs well in the demanding conditions of flame-based industrial applications.

CTlaser MT — Important Features:

  • Temperature range: 200 °C to 1650 °C (392 °F to 3002 °F)
  • Distance-to-spot size ratio: 45:1
  • Response time: 10 ms
  • Spectral range: 3.9 µm
  • Operating temperature: -20 °C to 85 °C (-4 °F to 185 °F)
  • For temperature measurement through flames

From $1,120.00

excl. sales taxes, custom tariffs and shipping

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Product Description

The CTlaser MT is engineered to facilitate non-contact temperature measurement through flames, covering an extensive temperature range from 200 °C to 1650 °C. The infrared sensors versatile applications include monitoring workpieces inside fire-heated ovens, measuring within chemical reactors, and observing brick temperatures in combustion chambers. These pyrometers offer a spot size starting from 1.6 mm, ensuring precision in temperature readings. With a distance to spot size ratio of 45:1 and a two-piece sensor design, these infrared thermometers guarantee configurability and ease of use, enhancing its suitability for various industrial settings.

One notable aspect of the CTlaser MT is the infrared sensors spectral range of 3.9 μm, accommodating temperature ranges of 200 °C … 1450 °C for the standard MT model and 400 °C … 1650 °C for the MTH model. This broad temperature measurement range allows for accurate and precise temperature measurement through flames and combustion gases, making these pyrometers an indispensable instrument in heat treating applications where long wavelength infrared and visual cameras is impractical. The online pyrometer offers a system accuracy of ±1% and repeatability of ±0.5% or +0.5 °C.

A distinguishing feature of the CTlaser MT series is its incorporation of double laser aiming marks, which ensure precise aiming and minimize alignment issues. This innovative system utilizes two laser beams to trace the infrared optical path accurately, indicating the spot’s position and size depending on the distance. This feature enhances the reliability and accuracy of temperature measurements, even in challenging environments such as flame-heated furnaces.

The two-piece design of the CTlaser MT includes a separate electronics box, enabling advanced signal processing capabilities. Offering a wide range of analog and digital outputs, including 0/4 – 20 mA, 0 – 5 V, 0 – 10 V, USB, RS485, RS232 interface, relay outputs (2 x optically isolated), Profibus DP, Modbus RTU, Modbus TCP, Profinet, and EtherNet/IP, it ensures seamless integration into various industrial processes and control systems.

Operational in ambient temperatures up to 85 °C without requiring additional cooling, the CTlaser MT includes an automatic laser shut-off feature at 50 °C, ensuring little power usage. Additionally, the pyrometer can be enhanced with Optris accessories such as air purging, cooling jackets, and mounting flanges, further expanding the infrared sensors applicability in diverse manufacturing and annealing process applications.

Manufactured and calibrated in Germany, the CTlaser MT pyrometers undergo meticulous calibration processes to meet stringent government standards such as PTB or NIST, ensuring accuracy and reliability. Customization options such as different cable sizes are available to accommodate specific customer requirements, enhancing flexibility and usability.

Optris provides comprehensive support for the CTlaser MT series, including consultation on industrial applications and after-sales support, ensuring optimal performance and user satisfaction. With its precision, versatility, and reliability, the CTlaser MT proves to be a valuable instrument for temperature measurement in various glass processing applications and beyond.

Specification
MODEL CTlaser MT CTlaser MTH
DETECTOR
Detector Thermopile
Measurement Principle Single color
Spectral Range 3.9 μm
Response Time 10 ms
Exposure Time 10 ms
Sampling Frequency 100 Hz
Exchangable Sensing Head No
OPTICAL
Distance to Spot ratio (D:S) 45:1
Spot size (SF optics) 26.7 mm at 1200 mm
Other optics (FF/CF optics / add. CF lens) CF1: 1.6 at 70 mm
CF2: 3.4 at 150 mm
CF3: 4.4 at 200 mm
CF4: 10 at 450 mm
Focus fixed
SIGHTING
Laser Sighting Double point laser with 635 nm at max 1mW
Video Sighting none
MEASUREMENT
Object Measurement Range 200 … 1450 °C 400 … 1650 °C
Accuracy ±1 %
Repeatability ±0.5 % of reading +0.5 °C **2)
Temperature Coefficient ± 0.05 K/K or ± 0.05 % / K **3)
Thermal Sensitivity (NETD) 100 mK
Warm-up time 10 min
Emissivity /Transmissivity/ Reflectivity 0.100 – 1.100
Slope N/A
INTERFACES
Interface USB / RS232 / RS485 / Profibus DP / Ethernet / Relay
Supported Protocols USB 2.0, Optional: EtherNet/IP / Ethernet TCP / Modbus TCP / Modbus RTU / Profinet / Profibus
Compatible Software Compact Connect, IRmobile
ANALOG INPUT/OUTPUT
Direct output/input 4-20 mA/ Programmable open collector output at RxD pin [0-30 V/ 500 mA] (K/J)
Output impedances max. 500 Ω (with 8-36 V DC) for mA output
min. 100 kΩ load impedance for mV output
thermocouple 20 Ω
Cable length 3 m (standard), 8 m, 15 m
SIGNAL PROCESSING
Configuration Compact Connect or IRmobile
Operation Autonomous Standalone
Capabilities Average, Peak hold, Valley hold, Advanced peak hold with threshold and
hysteresis, Triggered signal output, Triggered peak hold function (adjustable via software)
GENERAL
Size Sensing head: Ø50 x 100 mm, M48x1.5
Electronics: 122 mm x 70 mm x 27 mm
Housing Material Stainless Steel
Weight 600 g (sensing head) / 420 g (electronics)
Country of Origin Germany
ENVIRONMENTAL & CERTIFICATIONS
Operating Temperature Range Sensing head: –20 °C … 85 °C **4)
Electronics: –20 … 85 °C
Storage Temperature Range –40 … 85 °C
Relative humidity 10 – 95 %, non condensing
Protection Class IP 65, NEMA 4
EMC 2014/30/EU
Shock IEC 60068-2-27 (25 G and 50 G)
Vibration IEC 60068-2-6 (sinus shaped)
IEC 60068-2-64 (broadband noise)
Standards CE, UKCA, RoHS
POWER
Power Supply 8 – 36 V DC / 5 V USB / max. 1.2 W
Power Consumption <250mW with laser
Current Draw max 160 mA
Part number OPTCTLMT OPTCTLMTH
Additional Remarks 1) 90% energy
2) at ambient temperature 23 ± 5°C, object temperature > 0°C ;
3) for ambient temperatures <18°C and >28°C; whichever is greater
4) 50 °C with laser ON
Areas of Application
Software

The Optris CompactConnect software improves the functionalities of Optris fixed infrared pyrometers, offering various monitoring, analysis, and control features beyond basic temperature measurement. It includes features like visualizing temperature trends with temperature-time diagrams and documentation. The software enables data logging, automatic process controls, parameterization of the pyrometer via configuration settings, and setting up programmable outputs and inputs. Additionally, it provides advanced signal-processing functionalities. Compact Connect The Optris IR mobile allows users to set up and commission an Optris infrared pyrometer or infrared camera with an Android smartphone or tablet. This tool becomes handy for commissioning and aligning the infrared cameras field of view or adjusting the configuration. The app analyzes the connected infrared cameras live infrared image stream with auto hot and cold spot detection. For pyrometers, a temperature-time diagram or the video signal is displayed. This app works on most Android devices running 5.0+ with a USB port supporting USB-OTG (On The Go). Google Play

Downloads
FAQs

What distance-to-spot size ratio is correct for the application?

The measuring object’s size and the infrared thermometers optical resolution determine the maximum distance between the sensing head and the measuring object. To prevent measuring errors, the object should completely fill out the field of view of the optics. Consequently, the spot should always be at least the same size as the object or should be smaller than that.

Can I change the sensor cable?

The sensing head cable can also be exchanged if necessary. To avoid influences on the accuracy use an exchange cable with the same wire profiles and specification like the original one

Can I pare the sensor head with another electronics box?

Yes, after exchanging a head the calibration code of the new head must be entered into the electronics. The calibration code is fixed on a label on the head. Do not remove this label or note the code. The code is needed if the electronic must be exchanged.

How far can I position the CTlaser MT from the target?

The measuring object’s size and the infrared thermometers optical resolution determine the maximum distance between the sensing head and the measuring object. The object should fill out the optics’ field of view to prevent measuring deviations. Consequently, the spot should always be at least the same size as the object or smaller. The spot size refers to 90% of the radiation energy.

How can I improve the noise amplitude of the sensor?

In the CT models, the head cable must not be moved during the measurement. Use shielded cables only. The sensor shield has to be grounded. Avoid ground loops and related signal interferences in industrial environments. It might be necessary to interrupt the ground connections inside the electronics box. To do this, switch the jumper inside the electronics box to another position. Review the manual.

How do I aim with a CTlaser MT?

The infrared sensor has an integrated double laser aiming, which helps align the sensor. The measuring spot is located within the two laser points. At the focus point of the appropriate optics, both lasers cross and merge as one dot, marking the minimum spot. The two laser points are for orientation only.

Is the laser dangerous?

The pyrometers laser is a class 2 laser with less than 1mW in the wavelength range of 500 nm to 650nm, according to EN 60825 1:2014. Do not point the laser directly at the eyes of persons or animals! Do not stare into the laser beam. Avoid indirect exposure via reflective surfaces.

The laser switched off?

At ambient temperatures >50 °C the laser will be switched off automatically. The laser should only be used for sighting and positioning of the sensor. A permanent use of the laser can reduce the lifetime of the laser diodes and might heat up the sensor.

Can I trigger the laser externally?

Yes, but the supply line for the sighting laser must be led via a switch or pushbutton, which has to be installed max 2m away from installation site of the sensor for safety purposes. The laser can be activated/ deactivated via this, by the user on site to be installed switch, or via the software.

What is required to install the CTlaser infrared sensor in the CoolingJacket Advanced?

The connector version is needed to install the CTlaser sensor in the CoolingJacket Advanced.

Can you connect two pyrometers to the same computer?

Yes , this is possible. For using the software CompactPlusConnect or CompactConnect (depends on which type of pyrometers you are using) you have to create different instances of the software. You can connect two pyrometers via the USB ports. It is also possible to connect the two pyrometers with a RS485 interface. You can connect the first pyrometer via the provided RS485-USB adapter to the PC.

I am interested in integrating the CTlaser Infrared Thermometer into a science/industrial prototype, which will be controlled via code written in Python. Does the OTC SDK include libraries for thermometers or just cameras?

The OTC SDK does include only libraries for cameras.

Scope of Supply
  • CTlaser MT with 3m cable
  • 1x mounting nut
  • 1x mounting bracket
  • CTlaser Manual
Accessories

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