🌍 Worldwide Shipping· 100,000+ SKUs · End-of-Life Specialists
πŸ‘€Hello, Sign inAccount
πŸ’¬24/7 LiveSupport
πŸ›’ Cart 0
πŸ” Hover to zoom
βœ“ IN STOCK Β· 10 AVAILABLE

Predictive Maintenance Solution Ingersoll Rand 1X35869 06L007N3 Sensor

1X35869 06L007N3
β˜…β˜…β˜…β˜…β˜†4.0 (1 review)
Price on Request
πŸ’³ Buy Now
  • βœ“ Product sourcing and condition details are provided based on the available supplier information for each item
  • βœ“ Inspection and documentation details vary by product and can be shared when available
  • βœ“ Warranty, return and replacement terms are confirmed in the quotation or order details
  • βœ“ Shipping options, carriers and delivery estimates depend on the destination and order requirements
  • βœ“ Cross-reference and alternate-part requests can be reviewed based on available technical information

Ingersoll Rand 1X35869 06L007N3

Industrial-grade vibration transmitter delivering reliable continuous monitoring for rotating machinery in harsh environments

Brand Ingersoll Rand
Model 1X35869 06L007N3
Voltage 24V DC
Country of Origin USA
Weight 0.6 kg
Dimensions 120 x 80 x 55 mm
Warranty 12 months
Certifications CE, UL, ATEX, IECEx
SKU / MPN 1X35869 06L007N3
What’s in the box Vibration Transmitter, mounting hardware, calibration certificate, user manual
Output Signal 4-20 mA proportional to vibration velocity
Measurement Range 0-50 mm/s RMS
Frequency Response 10 Hz to 1000 Hz
Operating Temperature -40Β°C to +85Β°C
Housing / IP Rating Stainless Steel / IP67
Connection 2-pin M12 connector

Key benefits: Continuous 4-20 mA output, wide frequency range, rugged IP67 housing, loop-powered design, easy installation, integrated signal conditioning

Typical applications: Rotating equipment monitoring, centrifugal pumps, industrial fans, motors, compressors, gearboxes, predictive maintenance systems, condition monitoring in oil and gas, power generation, and process industries

Lifecycle: Active product, expected 10+ years availability with full OEM support

Customers who bought this also viewed

View More β†’