What to do if my Det-Tronics X Series Security Sensors display Internal Processing Fault?
- SSamantha LewisSep 16, 2025
Return to the factory.
What to do if my Det-Tronics X Series Security Sensors display Internal Processing Fault?
Return to the factory.
How to resolve IR oi Calibration Failed on Det-Tronics X Series?
Clean detector windows and oi reflector plate. Re-initiate IR Optical Integrity calibration. Return to the factory if the detector does not complete a calibration.
How to resolve UV oi Calibration Failed on Det-Tronics X Series Security Sensors?
Clean detector windows and oi reflector plate. Re-initiate UV Optical Integrity calibration. Return to the factory if the detector does not complete a calibration.
What to do if my Det-Tronics X Series show Input Voltage Out of Range?
If the line voltage reported is out of range, check the power supply wiring for proper voltage.
What to do if my Det-Tronics Security Sensors have CPU Fault?
Return to the factory.
What to do if my Det-Tronics X Series Security Sensors have UV Tube Fault?
Return to the factory.
How to resolve UV Manual oi Fault on Det-Tronics Security Sensors?
Clean detector windows and oi reflector plate. Re-initiate manual Optical Integrity (oi) test. Calibrate oi if the detector does not return to normal status.
What to do if my Det-Tronics X Series display Temperature Out of Range?
Relocate detector or provide a shield from the heat source.
What to do if my Det-Tronics X Series Security Sensors display oi Calibration Fault?
Clean detector windows and oi reflector plate. Re-initiate Optical Integrity calibration. Return to the factory if the detector will not complete a calibration.
How to resolve UV oi Fault on Det-Tronics X Series?
Clean the detector windows and oi reflector plate. Perform a UV Optical Integrity Calibration if necessary.
Provides a general description of the Det-Tronics Enhanced Flame Inspector Software.
Lists the key capabilities and functionalities of the software.
Specifies the necessary computer hardware for running the Enhanced Flame Inspector software.
Details the hardwired and alternate methods for installing the software and connecting to detectors.
Details how to install the Enhanced Flame Inspector software onto a computer.
Guides the user through the initial startup process and establishing communication with the detector.
Details software configuration options for various X-Series flame detector models.
Explains how to view and interpret detector status indicators and information.
Explains how to determine and change detector configuration and programming settings.
Guides on how to check the current operational status of the detector.
Details manual oi test procedures initiated by magnet, switch, or software.
Illustrates the control screen layouts for different X-Series detector models, showing test and calibration options.
Provides step-by-step instructions for performing optical integrity (oi) calibration on detectors.
Details the procedure for testing and calibrating the detector's 4-20 mA output signal.
Explains how to access, view, and manage detector event logs and their data.
Covers sorting event logs and saving them for external analysis.
Refers to detailed descriptions of event log entries found in subsequent sections of the manual.
Provides event log descriptions and troubleshooting advice for X3301 and X3302 detectors.
Provides event log descriptions and troubleshooting advice for X2200, X5200, and X9800 detectors.
Information on obtaining replacement parts for the detectors and software.
Details on how to order the software, kits, and related accessories.
| Detection Principle | Infrared (IR) |
|---|---|
| Housing Material | Stainless Steel |
| Power Supply | 24 VDC |
| Outputs | 4-20 mA, HART |
| Enclosure Rating | IP66/67 |
| Approvals | ATEX, IECEx, FM, CSA, SIL 2 (depending on model) |
| Certifications | CSA (depending on model) |