Advanced Energy - Model E2T Pulsar 4 - Infrared Thermometry for Sulfur Reactors and High Temperature Furnaces
From Temperature Measurement - Pyrometers - Petrochemical Sensors
Advanced Energy's E2T Pulsar 4 instruments provide infrared thermometry for sulfur reactors and other high-temperature furnaces in temperatures between 350 to 2000°C. Single channel standard model programmable for gas or refractory measurement. Two channel advanced model with simultaneous measurement of refractory and gas temperatures. Explosion-Proof Certification II 2G Ex db IIB +H2 T4, IECEx, ATEX, FM (US and CDN) plus additional regional certifications. Smart FMA™ Flame Measurement Algorithm (Pulsar 4 Advanced Only). RS485 Interface, HART protocol (Pulsar 4 Advanced Only).
Overview
The E2T Pulsar 4 is a single channel model for gas or refractory measurement and the E2T Pulsar 4 Advanced is designed to measure two wavelengths for continuous and instantaneous measurement of Refractory temperature and gas temperature simultaneously.
The innovative Advanced Energy Smart FMA Flame Measurement Algorithm allows for accurate real-time flame transparency compensation and correction. Applying the flame transparency calculation with FMA removes the flame transparency errors due to the gas (flame) temperature.
Benefits
- Prevent damage to the furnace refractory with high temperature alarms
- Install a single system with two independent infrared filtered detectors for gas (flame) and refractory measurements
- Quickly react to control the furnace process temperatures with instant readings
- Gain higher operational safety with accurate refractory measurement and high temperature alarms
- Use Smart FMA to remove flame transparency errors that typical pyrometers experience (Advanced version only
Features
- Explosion-proof certification II 2G EX d IIB +H2 T4, IECEx, ATEX, FM (US and CDN) plus additional regional certifications
- Integrated power supply, capable of operating with 24VDC/120/230VAC
- Flexible power options (24 VDC/120/230 VAC)
- RS485 interface and HART protocol (Advanced version only)
Technical Specifications
Temperature Range
- Pulsar 4 / Pulsar 4 Advanced: 350 to 2000°C (662 to 3632°F)
Measurement
Measurement
- Emissivity Adjustment: 0.100 to 1.000 digital on both channels when in standard mode
- Transmittance Adjustment: 0.100 to 1.000 digital on both channels when in standard mode
- Alpha Adjustment: Pulsar 4 Advanced: 0.050 to 1.000 al_P when in FMA mode on GT channel (when in FMA mode)
- Measurement Uncertainty: ±0.3% of reading or 3°C + 1 digit, whatever is greater
- £ = U9o = 1s,Tamb. = 25°C
- Repeatability: 0.1% of full scale span
- £ = 1,t90 = 1s,Tamb. =25°C
- Response Time tgo: Pulsar 4: Programmable from 0.05 to 120 seconds
- Pulsar 4 Advanced: Programmable from 0.05 to 120 seconds When FMA mode is on: 0.5 to 120 seconds
- Focusing Range: 500 mm to infinity
- Distance Ratio (Target Size): 160:1 standard resolution, (distance/target size)
Communication
Communication
- Analog Output: See data sheet
- Digital Interface: RS485 addressable (half-duplex)
- Baud rate: 1.2 to 115.2 kBd
- HART Rev. 7 interface (Pulsar 4 Advanced only)
- Relay Alarm: 30 VDC / 1A max; Resistive
- Configuration of alarm: no alarm; alarm, if temperature > setpoint; alarm, if temperature < setpoint
Environmental Specifications:
Environmental Specifications:
- Protection Class: CE 2809, EX II 2G, Ex db IIB +H2 T4 Gb FM14ATEX0004X lECEx FME 14.0001X Class I, Div. 1, Groups B, C & D, T4 Ta = -40to60°CIP66 NEMA 'Type 4XB classification
- Ambient Temperature: -40to60°C(-40to140°F)
- Torque Spec, Lid Bolts: 5.5 nm
- Air: View port purge: 1.4 bar min, 1.7 m3/h (at standard conditions) Combustion purge: 1.4 bar min, 17 m3/h (at standard conditions)
Electrical
Electrical
- Power Supply: 24 V (18 to 30 VDC), 0.2 A maximum; 3.5 A with heater
- 115 VAC ±10%, 47 to 63 Hz; 230 VAC ±10%, 47 to 63 Hz
- Power Consumption: Maximum 90 W (with heater)
- Load: Pulsar 4: 0 to 600 0 (mA output)
- Pulsar 4 Advanced: 0 to 600 O (mA output); 230 to 600 O (mA output with HART)
Typical Applications
Typical Applications
- Sulfur recovery unit (SRU) monitoring
- Thermal oxidizer monitoring
- Petrochemical emissions monitoring
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