
Application Scenarios
In a typical power plant or refinery scenario, the FIREYE 95UVS2-1 is mounted on the burner front or furnace wall, peering through a sight tube into the combustion chamber. During burner startup, it confirms pilot ignition; during main flame operation, it continuously monitors the UV “flicker” pattern characteristic of fossil fuel combustion. If the flame is lost—for instance, due to fuel interruption—the scanner’s internal relay de-energizes within seconds, triggering a safety shutdown of the fuel valves, preventing potentially catastrophic fuel accumulation.
A major challenge that the FIREYE 95UVS2-1 addresses is the “false flame” or “nuisance trip” phenomenon. Older UV detectors can be fooled by background radiation from hot brickwork, glowing refractory, or stray UV from welding arcs, causing unplanned shutdowns that cost operators thousands of dollars per hour. The FIREYE 95UVS2-1, with its Model Insight algorithm, learns the flame’s specific UV signature during a 30-second learning period after ignition, then rejects any UV signals that don’t match this stored pattern. This intelligent discrimination dramatically reduces false trips and enhances operational confidence, as documented in applications from chemical plants to glass furnaces where background radiation is intense.
Parameters
| Main Parameters | Value/Description |
|---|---|
| Product Model | 95UVS2-1 (Enhanced Model Insight Scanner) |
| Manufacturer | Fireye (USA / Honeywell PMT) |
| Product Category | Integrated UV Flame Scanner / Detector |
| Detection Technology | Solid-State Ultraviolet (UV) Sensor, 295–320 nm (Solar Blind) |
| Flame Relay Output | SPST (Normally Open), Flame ON/OFF Thresholds |
| Fault Relay Output | SPST (Normally Closed), De-energized on Fault or Power Loss |
| Analog Output | 4-20mA, Proportional to Flame Signal Strength |
| Power Supply | 24 VDC (+10%/-15%), 0.35A / 8.5VA |
| Electrical Connection | 12-Pin Quick-Disconnect (Standard) or Integral Cable (“CG” Models) |
| Display & Keypad | 8-Character Alphanumeric LED Display, 4-Button Keypad |
| Viewing Angle | 90° Cone |
| Maximum Detection Range | 15 Meters |
| Response Time | Flame Establishment < 2s; Flame Failure Response (FFRT) < 2s |
| Operating Temperature | -40°C to +65°C (Scanner Body) |
| Protection Rating | NEMA 4X / IP66 |
| Hazardous Area Certification | ATEX EExd IIC T6 (CEX Variants), FM, UL, CSA |
| Cooling Air Requirement | 4 SCFM (Standard), up to 15 SCFM (Extreme Conditions) |
| Weight | Approximately 1 kg |
Technical Principles and Innovative Values
The FIREYE 95UVS2-1 distinguishes itself through its intelligent flame signature recognition, integrated diagnostic architecture, and “smart” auto-calibration features.
- Innovation Point 1: Model Insight Algorithm for True Flame Discrimination
Unlike conventional UV scanners that merely detect raw UV intensity, the FIREYE 95UVS2-1 employs a proprietary Model Insight algorithm that analyzes the flame’s modulation amplitude and flicker frequency characteristics. During a brief learning phase, the scanner memorizes the stable combustion pattern—effectively creating a “model” of the true flame. Thereafter, it discriminates against background UV radiation from hot refractory, carbon particles, welding arcs, or sunlight that would trigger false alarms in older detectors. This capability is particularly valuable in multi-burner configurations, glass furnaces with intense background radiation, and applications with fluctuating fuel quality. - Innovation Point 2: S2 AutoTune and Automatic Threshold Calibration
The “S2” designation signifies an enhanced model offering AutoTune functionality. During setup, the FIREYE 95UVS2-1 automatically selects the optimal modulation frequency and sensor gain for the specific combustion environment, and stores the ideal ON/OFF threshold values. Unlike manual S1 models that require engineer intervention to tune, the S2 version performs self-calibration, saving commissioning time and ensuring optimal performance even when fuel types change. Four separate program files can be stored, allowing one-touch switching between different fuel or operating scenarios. - Innovation Point 3: Comprehensive Electronic Self-Diagnostics and All-in-One Integration
The FIREYE 95UVS2-1 eliminates the mechanical shutter found in older scanners by using internal electronic diagnostics that continuously monitor the UV tube, circuitry, and power supply. If a fault is detected—such as sensor degradation, contamination, or loss of cooling—the scanner displays a specific error code (e.g., “Too HOT!”) and de-energizes the fault relay, providing proactive alerting for predictive maintenance. The all-in-one integration of sensor, amplifier, and relays into a single sealed housing reduces wiring complexity, minimizes potential failure points, and simplifies field replacement.







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