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Lambda Sensor Educational Trainer MSLAMB01

Lambda Sensor Educational Trainer MSLAMB01

AutoEDU
Product number: MSLAMB01
ASE category: A1
  • Real working zirconia-type lambda sensor.
  • Manual rich/lean mixture simulation with gas heating.
  • Vertical stainless steel heating chamber with flame observation window.
  • LED voltage indicator bar from 0.0 V to 1.1 V.
  • Signal and heater terminals for external measurement.
  • Educational fuel/air mixture chart with λ and A/F correlation.
  • Quick setup with no software or calibration required.
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Description

Compact and mobile trainer designed to demonstrate the operating principles of zirconia-type lambda (oxygen) sensors used in automotive exhaust systems. The trainer includes a functional sensor exposed to simulated exhaust heat and variable air-fuel ratios. Real-time output voltage changes are displayed via LED bar and external multimeter connection points. Manual controls allow mixture simulation from rich to lean conditions. Integrated educational diagrams support visual understanding of closed-loop fuel control systems.

Specifications

  • Sensor type: Zirconia narrow-band lambda sensor.
  • Output voltage range: 0.1 V (lean) to 1.1 V (rich).
  • Heater resistance testable via external terminals.
  • Visual display: LED voltage bar.
  • Power supply: 220V (110V US).
  • Dimensions: 525 x 374 x 420 mm (20.66 x 14.72 x 16.53 inch)
  • Weight: approx. 9.95 kg (22lbs)
  • Product number: MSLAMB01

Value for Students

  • Measure sensor voltage output response to changes in simulated exhaust temperature.
  • Understand narrow-band zirconia lambda sensor operation: 0.1–1.1 V output range based on O₂ concentration.
  • Manually simulate rich (low O₂) and lean (high O₂) fuel mixtures and observe voltage reaction.
  • Use multimeter to measure real sensor signals and heater circuit resistance (Ω).
  • Learn real-world application of closed-loop feedback in engine control units (ECUs).
  • Analyze sensor switching behavior and stoichiometric point at λ = 1 (14.7:1 air/fuel ratio).
  • Develop skills in diagnostic interpretation of O₂ sensor output.

Value for Instructors

  • Allows hands-on demonstration of oxygen sensor principles without live vehicle.
  • Simplifies explanation of air/fuel mixture effects on sensor signal.
  • Offers direct voltage and resistance measurement points for test practice.
  • Includes clear fuel-air ratio diagrams for instructional use.
  • Compact and lightweight unit easily transported between classrooms.
  • Enhances lessons on emissions control and electronic engine management systems.

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