Kones New Elevator Boosts Efficiency in Hightraffic Transit Hubs
August 15, 2026

Imagine bustling airports where travelers drag heavy luggage while rushing to their next gate, or packed stadiums where tens of thousands of spectators simultaneously flood toward train stations after major events. How can transportation hubs maintain efficient and safe operations during peak passenger flows? One crucial answer lies in reliable, high-capacity moving walkways.
The KONE TransitMaster™ 165/185 series horizontal autowalk represents a specialized solution designed for such high-intensity, high-traffic environments. More than just basic "escalators," these systems serve as critical infrastructure components that enhance passenger flow efficiency while improving user experience. This analysis examines the series' technical specifications, advantages, and operational value from a data-driven perspective.
The TransitMaster™ 165/185 series targets infrastructure applications including:
Airports: Must withstand extreme passenger volumes with exceptional durability
Train stations: Require extended continuous operation, often 24/7
Sports venues: Face concentrated egress periods demanding maximum safety
Transportation hubs: Must adapt to diverse environmental conditions
These environments present unique challenges:
Peak loads far exceed commercial building capacities
Nonstop operation demands exceptional reliability
High-density passenger flows require robust safety systems
Variable conditions from indoor to semi-outdoor installations
Key operational parameters demonstrate the series' capabilities:
Speed options: 0.75, 0.65, 0.5 m/s (adjustable to 0.4 m/s with frequency converters)
Incline capacity: 0-6° slope adaptation
Step widths: 800, 1000, or 1100 mm configurations
Vertical lift: Supports heights up to 100 meters
Advanced engineering features include:
Heavy-duty construction using reinforced materials
Modular design simplifying maintenance
Smart control systems enabling speed optimization
Safety engineering incorporates multiple safeguards:
Comb plate impact detection triggering immediate shutdown
Emergency stop buttons at regular intervals
Anti-pinch handrail protection
Continuous monitoring for operational anomalies
Environmental considerations include:
ECO mode reducing speed during low-traffic periods
LED lighting consuming 80% less energy than fluorescents
Variable frequency drives optimizing power consumption
Lubrication-free step chains minimizing maintenance
Performance monitoring enables:
Passenger flow analysis for speed optimization
Predictive maintenance through operational diagnostics
Energy consumption tracking for efficiency improvements
User behavior studies to enhance design
For example, airport implementations can adjust speeds based on flight schedules, while stadium installations might activate high-capacity modes post-event.
A major international airport deployment demonstrated:
30% improvement in inter-terminal passenger flow
15% reduction in energy consumption through smart scheduling
Enhanced satisfaction scores from reduced congestion
The TransitMaster™ 165/185 series represents more than transportation equipment—it's an intelligent mobility solution combining robust engineering with data-informed operation. As urban centers grow and transit demands increase, such systems will become increasingly vital for efficient, safe, and sustainable passenger movement.
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