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M554 Spyrometer Kiln
The IST-Quadtek® Spyrometer3, with its patented combination of a color video camera and a scanning pyrometer, gives the operator the ability to see process conditions while measuring the temperature of virtually any area in the field of view. The M554 imaging pyrometer takes the video image and the temperature information, multiplexes it and sends it, via coaxial cable, to the image processor in the control room and displays it on a VGA monitor. On-screen temperature measurement data is also accessible through 4-20mA outputs which can easily be interfaced to your control system.
  • FEATURES
  • SPECIFICATIONS
  • APPLICATIONS
  • Brochure/Documents
  • M554 Imaging Pyrometer Camera is used for industrial processes where video and temperature information are both essential.
  • It measures higher temperatures from 848-1816°C (1558-3300°F).
  • Ability to see process conditions while measuring the temperature of virtually any area in the field of view.
  • On-screen temperature measurement data is also accessible through 4-20mA outputs which can easily be interfaced to your control system.
  • Useful in Rotary Kilns, Fossil Utility Boilers, Steel Reheat Furnaces.
Pyrometer Sensor Temperature Ranges TR2: 1558-3301F (848-1816C)
TR1: 1225-2291F (663-1255C)
Temperature Accuracy 1.0% Full Scale.
Measurement Technique Dual wavelength ratio pyrometry
Spectral Regions Narrow bands centered at 0.8 and 1.6 microns
Spot Size Approximately 1/24 of horizontal image width .
Spatial Scan Resolution 47 horizontal x 35 vertical width of the image
Scan Rate Scan speed varies with size and number of TMZ’s or via operator adjustment
Lens Construction Air or water-cooled 304 stainless steel outer shroud; sapphire window for max. environmental protection
Type Straight view lens: /L30M
Length (L) 703mm (27.7")
Type 45offset lens: /OAL30W
Length (L) 694mm (27.3")
Field of View Wide: 75H x 58V Medium: 50H x 38V Narrow: 35H x 26V
Diameter /L: 1.5" (38mm); /OAL: 2.0” (51mm)
Cooling Requirements Instrument quality air*, 25-40 SCFM (12-19dm3/sec) @ 5-15 psig (34-103 k Pa),required for straight lens)
Thermocouple TJ: Type J thermocouple option & TK: Type K thermocouple option
Power 115-230 VAC, 50/60 Hz
Camera Camera Detector Solid state color image sensor
System Resolution 300 lines minimum throughout the image
Video 1.0V p-p, 75ohm, CCTV signal /VTN: NTSC or /VTP: PAL video timing selected at time of order
Control Iris adjustment on rear of camera; remote iris adjustment from the processor
Application Filter Filters are provided to match your process and maximize performance. Contact your Sales Representative
Enclosure Construction /CEI: Corrosion-resistant, insulated, air cooled, NEMA 4; /CEW: Corrosion resistant, water-cooled, NEMA 4
Cooling Type Vortex cabinet cooler, 25 SCFM @ 100 psi (13 dm3/sec @ 690 k Pa); instrument-quality air required or water cooled option available
Ambient Environment Max. 140F (60C) with negligible radiant heat load. Water cooled option available to handle high radiant heat environment
Mechanical Video Output Jack Female PL-259 “UHF” type
Power Input Jack Removable waterproof mini plug (JOY type TP, female 3-conductor; mating power cord provided)
Enclosure Cooling Input 1/4" brass quick-disconnect nipple; mating coupler (Snaptite BVHC4-4F) provided
Lens Cooling Input 1/2" brass quick-disconnect nipple; mating coupler (Snaptite BVHC8-8F) provided
Weight 30 pounds (14kg) for standard air-cooled configuration (lens and camera)
  • Rotary Kilns: Monitor cement and lime kiln product and temperatures. See potential kiln upsets early. Interface temperatures to your DCS.
  • Glass: View for flame impingement and product flow. Accurately measure refractory temperatures.
  • Fossil Utility Boilers: Observe flame shape and temperature of each burner. Assign a temperature cursor to each flame to aid in controlling NOx levels.
  • Steel Reheat Furnaces: See areas of non-uniform heating and adjust product speed or combustion accordingly. Position temperature cursors to accommodate size and shape of the load.
 
 

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