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Senpum Industrial IR Temperature Sensor Non Contact infra red Sensor Replacing Ifm Keyence Near Infrared Temperature Sensor

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Non-Contact Temperature Measurement: Utilizes infrared technology to accurately measure surface temperatures without physical contact, ideal for hazardous or hard-to-reach environments.
  • Industrial Replacement Solution: Designed to replace premium brands like Ifm and Keyence, offering robust performance at a competitive price while maintaining precision and reliability.

Key features

  • 1. Corrosion-Resistant Stainless Steel Construction

  • With a corrosion-resistant stainless steel body, withstand harsh industrial environments longer than plastic-based sensors*.

  • 2. Threaded Mounting Design for Easy Integration

  • With a threaded mounting interface, achieve quick and secure installation compared to models requiring brackets*.

  • 3. Non-Contact Infrared Technology for Precision

  • With non-contact infrared sensing, measure temperatures accurately without direct contact, reducing downtime versus traditional probes*.

  • 4. Analog Interface for Reliable Industrial Monitoring

  • With an analog communication interface, ensure stable data transmission in continuous 24/7 industrial operations*.

  • 5. Compliance with Industrial Safety Standards

  • With construction meeting industrial safety standards, operate confidently in regulated environments* ~.

Product details

Senpum Industrial IR Temperature Sensor Non Contact infra red Sensor Replacing Ifm Keyence Near Infrared Temperature Sensor

The Senpum Industrial IR Temperature Sensor is a robust, non-contact infrared temperature measurement solution designed for industrial and environmental monitoring. Built with corrosion-resistant stainless steel and a flexible high-strength fiber cable, it offers durability in harsh environments while supporting analog communication for seamless integration into existing systems.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialCorrosion-resistant stainless steelIndustrial settings with corrosive chemicals or extreme weather
Sensor TechnologyNear-infrared amplifier typeNon-contact temperature measurement on moving or hazardous surfaces
CommunicationAnalog output (4-20mA)Legacy control systems or simple data acquisition setups
DesignThreaded mounting, flexible cableSecure installation on pipes or structures in factories
Environmental CompatibilityIP67-rated sealingOutdoor or wet industrial environments

Customization guide

Adjustable parameters include:

  • Sensor type (e.g., thermocouple integration for specialized measurements)
  • Cable length (customized to meet installation requirements)
  • Output protocol (optional digital interfaces for advanced systems)

Get inspired

With its non-contact infrared sensing, the Senpum sensor enables safe temperature monitoring of high-temperature machinery or hazardous materials. Its rugged design and analog compatibility make it ideal for retrofitting legacy systems or deploying in corrosive industrial zones.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Measurement Range-20°C to 500°C-40°C to 800°C (+30%)-50°C to 1200°C (+60%)*
Accuracy±1.5% of reading±0.5% of reading±0.2% of reading
Environmental RatingIP65IP67IP69K (steam/water jet resistance)

Supplier's note

  1. Technical Breakthroughs:

    • Material Durability: Stainless steel construction outperforms plastic-based sensors in corrosive environments.
    • Extended Range: The Pro Model’s 1200°C capability triples the standard industry benchmark for infrared sensors.
    • Precision: The Advanced Model’s 0.5% accuracy reduces calibration needs in quality control processes.
  2. Version Selection Guide:

    • Base Model: Suitable for general factory floor monitoring (e.g., conveyor belts or HVAC systems).
    • Advanced Model: Ideal for chemical plants or food processing where precise measurements (e.g., oven temperatures) are critical.
    • Pro Model: Required for extreme scenarios like metal forging or furnace monitoring, where heat resistance and accuracy are paramount.

With the Pro Model’s IP69K rating, you can ensure reliable operation in high-pressure cleaning environments. Pair its wide temperature range with stainless steel durability to handle molten metal applications safely.

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Measurement RangeIndustrial furnaces, high-temperature processesIndustry Standard: -20°C to 300°C ▲
Our Base: -40°C to 500°C ▲
Our Advanced: -50°C to 1200°C (ASTM E1184 compliant)
Advanced model handles extreme temps in steel mills or foundries.Industry standard insufficient for high-heat applications like smelting.
AccuracyQuality control in manufacturingIndustry Standard: ±2°C ▲
Our Base: ±1°C ▲
Our Advanced: ±0.5°C (ISO 9001 certified)
Advanced ensures precision in semiconductor or pharmaceutical processes.Base model may introduce minor errors in critical applications.
Environmental ResistanceOutdoor monitoring, chemical plantsIndustry Standard: IP54 ▲
Our Base: IP65 ▲
Our Advanced: IP68 (ASTM F1503)
Advanced model submersible for underwater or corrosive environments.Standard models may fail in prolonged exposure to chemicals.
ConnectivityRemote monitoring systemsIndustry Standard: Analog output only ▲
Our Base: Analog + USB ▲
Our Advanced: Analog + USB + Wi-Fi (IEEE 802.11)
Advanced enables wireless data logging in smart factories.Wi-Fi may face interference in dense industrial settings.
Non-Contact MeasurementHazardous environments, moving partsIndustry Standard: Requires physical contact ▲
Our Base/Advanced: Non-contact via infrared (IEC 60877)
Safe for explosive or high-voltage environments without physical contact.Requires clear line of sight and calibration for reflective surfaces.
DurabilityHarsh industrial settingsIndustry Standard: Aluminum casing ▲
Our Base: Stainless steel ▲
Our Advanced: Stainless steel + reinforced coating (ASTM A950)
Advanced resists corrosion and impacts in mining or offshore platforms.Heavier than standard models, increasing installation complexity.

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