M315X ADVANCEDENERGY | Alldatasheet

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©2019 Advanced Energy Industries, Inc. The Mikron® M315X series blackbody calibration sources are resistively heated by precision heating elements to provide uniform temperature distributions. The two-piece system is comprised of controller module and a separate enclosure for the emitter source. Emitter source temperature control is carried out by a precision digital PID controller. Designed to satisfy the exacting parameters of infrared focal plane array detectors, thermal imaging, and FLIR systems testing in projection scene and field application, the M315X series blackbody calibration sources combine high emissivity and unchallenged stability and uniformity. PRODUCT HIGHLIGHTS  High emissivity and uniformity  Excellent general purpose calibration  Large aperture sizes  High accuracy, high resolution  Manufactured and tested to meet rigid quality control standards  RS232 (standard) or RS485 (option) serial communication output TYPICAL APPLICATIONS  Infrared thermal imaging systems  Spectrophotometers  Aerial mapping  Surveillance equipment MIKRON M315X (X4, X6) Two-piece medium temperature blackbody calibration source with a large surface area. Ambient +5 to 400°C (+9 to 752°F). Temperature Range Ambient +5 to 400°C (+9 to 752°F) Measurement Uncertainty @ T = 400°C @ 8 to 14 µm Emissivity @ 8 to 14 µm: 1.00 Heated Emitter Shape Flate plate Aperture Diameter M315X4: 101 mm x 101 mm (4"x 4") M315X6: 152 mm x 152 mm (6"x 6") Average Warm-Up Time ~30 min from ambient (to 300°C) AT A GLANCE

2 advancedenergy.com MIKRON M315X Measurement Specifications Temperature Range Ambient +5 to 400°C (+9 to 752°F) Temperature Uncertainty ±1°C @ T < 100°C to ±1.3°C @ T = 400°C @ 8 to 14 µm Display Accuracy vs. NIST Calibration See supplied NIST calibration report Temperature Resolution 0.01°C Stability ±0.1°C per 8-hour period if in still air environment Source Non-Uniformity M315X4 ±0.4°C (in 3.5" x 3.5" region) @ 100°C ±0.6°C (in 3.5" x 3.5" region) @ 200°C ±1.5°C (in 3.5" x 3.5" region) @ 400°C M315X6 ±0.4°C (in 5" x 5" region) @ 100°C ±0.6°C (in 5" x 5" region) @ 200°C ±1.5°C (in 5" x 5" region) @ 400°C Heated Cavity Shape Flat plate Exit Port Diameter M315X4: 101 mm x 101 mm (4"x 4") M315X6: 152 mm x 152 mm (6"x 6") Emissivity ε Effective @ 8 to 14 µm: 1.00 (Spectral Emissivity graph is provided in the instruction manual) Standard Calibration Method Radiometric Temperature Sensor Precision platinum RTD 1/3 DIN Warm-up Time ~30 minutes from ambient to 300°C Slew Rate Typical M315X4 ~15° per min T < 300°C ~5° per min T > 300°C M315X6 ~10° per min T < 350°C ~5° per min T > 350°C Slew Rate to 0.1°C Stability M315X4: ~12 to 30 min between setpoints (longest near end of temperature range) M315X6: ~30 to 40 min between setpoints (longest near end of temperature range) OVERVIEW TECHNICAL DATA Blackbody calibration sources are infrared radiators used for calibrating and verifying the output signals of infrared thermometers (pyrometers), thermal imaging systems, heat flux measurement systems, or spectrographic analysis systems. Advanced Energy supplies a unique selection of very precise calibration sources that are traceable to national standards. Quotations for custom designs and variations are available upon request. Mikron calibration sources have long been the gold standard to calibrate the instruments that keep your operations up and running. These blackbodies are superior because of the emissivity values, homogeneous emission areas, and a wide range of different sized apertures to adapt to the desired target area. In addition, fast heat-up times and high temperature stability are guaranteed. The quality of our calibration sources is guaranteed by tests, burn-in times, and radiometric calibrations. On most models, a certificate is provided to document the traceability to the international temperature scale ITS90 and NIST. 1 Accuracy calibration performed radiometrically, the uncertainty of emissivity and transfer standard are already included. 2 Provided stable AC mains voltage and minimum air flow across the exit port or emitter plate.

advancedenergy.com 3 MIKRON M315X Communication and Electrical Specifications Remote Set Point Via RS232 (standard) or RS485 (optional) Method of Control Digital PID controller Power Requirements M315X4: 115 VAC @ 50 & 60 Hz, 500 VA M315X6: 115 VAC @ 50 & 60 Hz, 2000 VA Environmental Specifications Operating Ambient Temp 10 to 40°C (50 to 104°F) Cooling Fan cooled, air inlet on rear panel Operating Humidity <90% non-condensing Dimensions (H x W x D) M315X4 269 mm x 285 mm x 267 mm (10.6" x 11.22" x 10.5") Controller 195 mm x 432 mm x 576 mm (7.67" x 17" x 22.66") Weight M315X4 ~7.3 kg (16 lbs) M315X6 ~10.4 kg (23 lbs) Controller ~9 kg (20 lbs) CE Certified Yes TECHNICAL DATA (CONTINUED) REFERENCE NUMBERS ACCESSORIES PN Description 19140-485 Optional: Serial Communication Output RS485 (built-in ex works) for M300, M305, M315X, M335, M345X, M360, M360A, M390 PN Description 19180-4 M315X4, Ambient +5 to 400°C, 101 mm x 101 mm, RS232, 115 VAC @ 50 and 60 Hz 19100-3 M315X6, Ambient +5 to 400°C, 152 mm x 152 mm, RS232, 115 VAC @ 50 and 60 Hz

ENG-M315X-235- 02 10.19 DS TITLE For international contact information, visit advancedenergy .com. sales.support@aei.com +1 970 221 0108 ABOUT ADVANCED ENERGY Advanced Energy (AE) has devoted more than three decades to perfecting power for its global customers. AE designs and manufactures highly engineered, precision power conversion, measurement and control solutions for mission-critical applications and processes. AE’s power solutions enable customer innovation in complex semiconductor and industrial thin film plasma manufacturing processes, demanding high and low voltage applications, and temperature-critical thermal processes. With deep applications know-how and responsive service and support across the globe, AE builds collaborative partnerships to meet rapid technological developments, propel growth for its customers and power the future of technology. Specifications are subject to change without notice. Not responsible for errors or omissions. ©2019 Advanced Energy Industries, Inc. All rights reserved. Advanced Energy®, Mikron®, and AE® are U.S. trademarks of Advanced Energy Industries, Inc.