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The ABB UR600IR/BGT, also cataloged as the UR600IR/BGT Infrared Flame Scanner, operates as a dedicated hardware component for localized combustion verification and flame status monitoring within burner control and safety instrumented network platforms.
| Parameter | Specification |
|---|---|
| Model | UR600IR/BGT |
| Brand | ABB |
| Series / Product Family | UR600 Series |
| Origin | Germany |
| Product Type | Infrared Flame Scanners |
| Sensor Subsystem Core | PbS (Lead Sulfide) photoconductive cell |
| Optical Spectral Sensitivity Range | 600 to 3000 nm (Infrared spectrum) |
| Process Variable Evaluation Criteria | Amplitude and dynamic flicker frequency analysis |
| Functional Safety Integrity | Onboard dynamic continuous self-checking circuitry |
| Optical Extension Capabilities | Supports flexible optical fiber extensions |
| High-Temperature Zone Fiber Rating | Up to 350 deg C (662 deg F) |
| Hazardous Area Protection Class | ATEX certified, rated EEx-d IIC T6 for explosive gas zones |
| Optoelectronic Lens Cooling Requirements | 115 l/min of clean purge air (for direct view installations) |
| Maximum Surrounding Ambient (T6 Zone) | 60 deg C |
| Standard Enclosure Operating Temperature | -10 to 85 deg C |
| Mechanical Dimensions (L x W x H) | 94 mm x 94 mm x 172 mm |
| Weight | 1.00 kg (2.20 lbs) |
The flame scanner executes real-time spectral processing directly within its hazardous-area explosion-proof housing, converting the infrared flicker signatures of oil, Orimulsion, or pulverized coal burners into binary safety loops. This optical scanning process updates internal output relays without adding processing latency to the overarching Burner Management System (BMS). The scanner's integrated electronic module maintains full firmware flash compatibility with ABB industrial boiler control platforms, transferring status metrics and discrimination levels across distributed I/O density scaling setups. By evaluating high-frequency radiation variations rather than simple steady-state light levels, the scanner filters out background heat and adjacent burner radiation to prevent false trip signals over modern deterministic industrial networks.
Q: How does the continuous self-checking function operate on the UR600IR/BGT scanner?
A: The hardware incorporates an automated internal optical shutter mechanism that periodically blocks the PbS sensor's field of view. This design prompts the inner micro-sequencer to verify that both the sensor cell and processing electronics correctly identify a dark, no-flame condition, verifying full component functionality without disrupting active process safety loops.
Q: Can this specific scanner handle targeted discrimination in multi-burner front-wall fired boilers?
A: Yes. By adjusting the specific flicker frequency tuning parameters and tuning amplitude thresholds via the host software interface, the hardware distinguishes the root flame zone of a single burner from the background radiation of surrounding burner zones.

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