Our Advantages

Professional, Intelligent, Diverse — Three Core Advantages Powering Exceptional Customer Operations

Engineering IFM Management Model

Facility Management Method Based on Engineering Theory — A Five-Step Integrated Tool for Projects That Balances Efficiency and Reliability While Continuously Reducing Total Cost of Ownership (TCO)

FLCS Five-Step Integrated Facility Management Method
Current State Analysis – Customer Pain Points and Needs
Customized Service Solutions - IFM Integrated Service Model
Execution Phase – Deliver High-Quality Service Results on Schedule
Operations Phase – Full Lifecycle Management and Comprehensive Cost Control
Improvement Phase – Digital Empowerment for Innovative Emission Reduction and Efficiency Gains

Fangling Intelligent O&M Platform

Digital empowerment — Smart AI Friend Platform

Digital Empowerment - Overview of the Fangling Smart Platform
  • Enable real-time visibility of factory status, transparent energy consumption, systematic workforce scheduling, intelligent facility operations, and digitalized workflows.
  • Overcome cognitive challenges with digital twins, 3D panoramic visualization, and full-resource visualization.
  • AR+AI Inspection System
  • Private LLM + Knowledge Management
  • Intelligent Maintenance (PdM Predictive Maintenance, Full Lifecycle Management)
  • Energy Efficiency Management: Optimize System Performance
  • Carbon Emissions Tracking and ESG Environmental, Social, and Governance
Fangling Smart Platform - Modular Function Management

The Integrated Intelligent Operations Platform (Artificial Intelligence IFM platform, iPaaS) is a fully digital solution covering all functional modules of a factory—from administrative management to system optimization. It spans core, foundational, extended, and expert modules to enable intelligent management and operations (AIOps).

Core IFM Functional Modules
Core IFM Functionality: Soft
Core IFM Feature Module: Hard
Basic Module
Extension Modules
Digital Empowerment: Private LLMs and Knowledge Management

Value-added Services

Leveraging a mature IFM framework to deliver professional, digital, and sustainable value-added services.

Full Lifecycle Management

Optimize facility management from planning to decommissioning

TCO Value Management

Optimize total cost of ownership to maximize return on investment

Energy Efficiency & Innovation

Energy Management Solutions and Innovative Technology Applications

Carbon Footprint & ESG

Carbon Emissions Accounting and ESG Compliance Support Services

1. Professional Management

Leverage our mature IFM framework to optimize staffing and maintenance strategies, reducing labor and operational costs. Proactively adopt digital and AI-powered tools to boost efficiency, enhance equipment reliability, and eliminate unplanned downtime. Adopt a total cost of ownership approach with full lifecycle management to maximize facility utilization and extend asset life. Deliver value-added services including flood control standby, special equipment certification, and on-site support.

2. Project Management

Fangchen Shinlin has more than200+Professional50+Managing projects across semiconductor, electronics, automotive, chemical, precision equipment manufacturing, healthcare, education, and R&D centers. Leveraging the Fangling Smart O&M Platform, FLCS has developed a professional digital project management module covering feasibility studies, initiation, solution design, execution, acceptance, delivery, ongoing operations, and full lifecycle management—with extensive experience and proven execution capability.

3. Spare Parts Management

Leverage strategic supplier partnerships and our own warehousing and logistics infrastructure to deliver spare parts management services that enhance equipment reliability and minimize unplanned downtime. Offer smart consignment solutions for consumables and security supplies, including line-side automated consignment models with vending and settlement facilities to reduce client inventory levels and improve item retrieval efficiency.

4. Carbon footprint tracking and emission accounting

  • Assist clients in comprehensively identifying carbon emission sources across their industrial sites and establishing a carbon ledger.
  • Conduct annual carbon inventory and verification in accordance with national standards, and prepare reports based on client requirements.
  • Develop carbon reduction plans and assist clients in organizing and submitting ESG documentation.

5. ESG and Sustainability

Anchor on dual carbon goals and commit to sustainable operations; empower with expertise to make sustainability actionable and effective; one-stop ESG solutions to guide your enterprise's green journey.

Smart Warehousing & Automated Robots
Intelligent Consumables Management System

Innovative Technology

AI + Robotics + Digital Twin — Redefining Smart Cleaning and Facility Management

Pain points in the cleaning industry

Labor-intensive cleaning scenarios – Cleaning staff operating floor scrubbers

In labor-intensive operations, fixed costs from personnel account for nearly 60%.

1. Staffing side: Difficulty in recruitment
  • • Difficulty hiring: The pool of eligible cleaning staff is shrinking as the demographic dividend fades.
  • • Difficulty retaining staff: High turnover due to personal factors among cleaning personnel
2. Cost Side: Overall costs are relatively high
  • • Labor Costs: The number of eligible cleaning staff is declining annually, while wages, social security contributions, risk management expenses, and recruitment costs continue to rise.
  • • Management Costs: Older individuals have limited flexibility, resulting in higher management costs.
  • • Risk Cost: Age-related risks are difficult to control.
3. Business Side: On-site operations fail to meet requirements.
  • • Untimely cleaning needs: real-time, continuous, efficient, and frequent cleaning
  • • Quality Requirements Not Met: Ensure stable, consistent delivery quality with full-scenario coverage.
  • • Mismatched Appearance Requirements: Ensure personnel appearance aligns with the environment or maintains a premium look.
  • • Difficulty adapting to special scenarios: Operations in high-intensity complex collaborative environments or extreme conditions such as radiation, pollution, high heat, and high risk.
  • • Secure compliance without compromise: Follow regulations, minimize errors, ensure safe operations
4. Data Side: No data retention throughout the year prevents on-site optimization.
  • • Unaware: Non-digital individuals cannot perceive their work status or outcomes.
  • • Unquantifiable: Work data cannot be quantified, resulting in low efficiency.
  • • Data Black Box: Daily work lacks data support

Automatic Cleaning Robot Solutions

AI-powered Visual Trash Detection

Equipped with an AI camera that accurately identifies various types of waste in real time. Continuously optimized through deep learning and database updates to become smarter with every use.

Active Dust Reduction

Equipped with high-flow negative pressure exhaust and an efficient filter, all particles are captured in the dustbin during cleaning to effectively prevent secondary pollution.

Omni-directional Perception

No road betting, no collisions. Powered by 3D depth perception and multi-sensor fusion, it effortlessly navigates complex environments and quickly adapts to highly dynamic scenarios.

Auto-Sweeping Robot: Structural Diagram Featuring RGBD Camera, LiDAR, and Side Brushes

Smart Cleaning Visualization

Visual data, smarter decisions

  • Waste Recognition Heatmap:Highlights key waste generation zones to help users deploy cleaning tasks precisely.
  • Cleaning Performance Heatmap:Flag stubborn stains that persist after multiple cleanings for manual inspection and re-cleaning.
  • Run Data Dashboard:Display terminal customer usage across multiple dimensions, including task execution rate, completion rate, and maintenance frequency, with real-time alerts for anomalous machines.

Device Overview

AI-powered real-time cleaning performance monitoring

Rear-view AI vision system for real-time cleaning verification. The CC1 Pro features the world's first rear-facing AI camera, enabling instant recognition of floor cleanliness. During operation, the system continuously monitors surface conditions to accurately assess cleaning results. If residues are detected after a pass, the robot automatically marks problem areas on its map and immediately performs targeted re-cleaning to ensure complete coverage.

After task completion, the system will generate a cleaning effectiveness heatmap based on recognition results. This visualization clearly displays coverage and quality across all areas, enabling data-driven operations management and continuous optimization.

Automated Robot Cleaning Management Solution

IoT Human-Machine Collaborative Management System

Real-time data integration for embodied device maintenance plans and schedules.

Digital Management Platform

Fangling Smart Platform: Seamlessly integrates with on-site embodied AI devices to deliver real-time, efficient field data.

Lowest TCO

Lower equipment procurement costs are just the beginning; lower total cost of ownership delivers superior value.

Strictly controlled total unit cost

Lower procurement costs

5-year lifespan design

Extended warranty costs less

Ultimate Unmanned

Lower cost of use

95% diagnostic coverage

Lower maintenance costs

Digital simulation and digital

01

Digital Simulation

Build a virtual laboratory that uncovers physical laws, simulating the operational logic and potential outcomes of complex systems in digital space.

Structural Engineering Simulation – Thermal Stress Analysis Heatmap for Bridge ConstructionMeteorological Simulation - Atmospheric Dynamics Prediction Model
Structural Engineering: Protection Under Extreme Conditions

Simulate structural responses of bridges and buildings under extreme loads such as earthquakes and high winds using simulation technology. Identify potential risks, optimize design parameters, and ensure the long-term safety and stability of major infrastructure. Applied in civil engineering structures, power systems, and thermal calculations.

Energy & Power: Simulation-Driven Decision Making

Leveraging atmospheric dynamics and real-time factory load fluctuations, the model accurately forecasts load profiles and simulates power system performance under varying conditions. This enables optimization of grid control strategies to ensure stable factory power supply and provides a scientific foundation for efficient energy utilization.

02

Digital Twin

Build an intelligent mirror that unifies the physical and virtual, enabling real-time mapping, data interoperability, and synchronized evolution.

Virtual Factory - Digital Twin System for Industrial Robotic ArmsPower Grid Inspection – UAV Online Monitoring Digital Twin System
Virtual Factory Drives Peak Efficiency

Build a "virtual factory" to install equipment and conduct process integration testing, identifying and resolving issues early. This boosts equipment delivery efficiency by 50%, significantly improves Overall Equipment Effectiveness (OEE) by 35%, and minimizes physical trial-and-error costs.

Grid Inspection Revolution

Build an integrated "air-ground-space" digital twin inspection system using drones and online monitoring technologies to eliminate high-risk, high-altitude manual operations and ensure the safe and stable operation of the power grid.

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Yu ICP Prepared 2026002293 No. -2