In automated industrial systems, accurate real-time data from the physical environment is essential for reliable machine operation. If position, temperature, pressure, or motion data is incorrect or delayed, machines can misoperate, reduce product quality, or halt production entirely. Control systems require stable and repeatable signals to maintain process consistency. Industrial automation sensors solve this problem by converting physical conditions into electrical signals that control systems can process reliably.
| Image | Part Number / Manufacturer | Description / Specs | MOQ | Datasheet | RFQ | |
|---|---|---|---|---|---|---|
| M-TRS5-M10B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT -10DEG C SPST-NC AXL | 1 | ||||
| M-TRS5-130B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 130DEG C SPST-NC AXL | 1 | ||||
| M-TRS5-120B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 120DEG C SPST-NC AXL | 1 | ||||
| M-TRS5-90B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 90DEG C SPST-NC AXIAL | 1 | ||||
| M-TRS5-80B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 80DEG C SPST-NC AXIAL | 1 | ||||
| M-TRS5-70B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 70DEG C SPST-NC AXIAL | 1 | ||||
| M-TRS5-40B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 40DEG C SPST-NC AXIAL | 1 | ||||
| M-TRS5-30B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 30DEG C SPST-NC AXIAL | 1 | ||||
| M-TRS5-10B Manufacturer: KEMET Category: Thermostats Mechanical | THERMOSTAT 10DEG C SPST-NC AXIAL | 1 | ||||
| T22A13005DFFBG0E Manufacturer: Cantherm Category: Thermostats Mechanical | THERMOSTAT 130DEG C SPST-NC WIRE | 1 | ||||
| T22A15005DFFBG0E Manufacturer: Cantherm Category: Thermostats Mechanical | THERMOSTAT 150DEG C SPST-NC WIRE | 1 | ||||
| 3610080010001 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | THERMOSTAT SPST-NO | 1 | ||||
| 3500 00580026 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | MILITARY THERMOSTAT | 1 | ||||
| 3500 00580005 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | MILITARY THERMOSTAT | 1 | ||||
| 3500 00150099 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | MILITARY THERMOSTAT | 1 | ||||
| 315600200040 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | LOW HERMETIC THERMOSTAT | 1 | ||||
| 315600200037 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | LOW HERMETIC THERMOSTAT | 1 | ||||
| 3150 00500049 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | HERMETIC THERMOSTAT | 1 | ||||
| 3150 00260055 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | HERMETIC THERMOSTAT | 1 | ||||
| 3150 00100022 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Thermostats Mechanical | HERMETIC THERMOSTAT | 1 |
Industrial automation sensors are typically selected during early machine or process design because control calibration, safety logic, and signal conditioning circuits depend on specific sensor characteristics. When a sensor reaches end-of-life, replacement can be difficult if measurement curves, response timing, or output interfaces change.
This is common in industrial plants where equipment operates continuously for many years. Maintenance teams often require the same sensor model to avoid recalibration, software changes, or safety revalidation.
Delays in sourcing compatible industrial sensors can lead to production downtime and increased maintenance costs.
Maketronics assists global engineering and procurement teams with reliable sourcing of both active and obsolete Industrial Automation Sensors.
Industrial automation sensors detect physical conditions such as position, temperature, pressure, and motion, converting them into electrical signals for control and monitoring systems.
They provide real-time data that enables accurate machine control, improves product quality, enhances safety, and supports predictive maintenance.
Common types include proximity sensors, temperature sensors, pressure sensors, flow sensors, vibration sensors, and level detection sensors.
Measurement accuracy, response time, output interface compatibility, environmental rating, and calibration requirements should be verified to ensure proper system performance.