A Smart Farm Operating in the City
ENFRESH Co., Ltd.
ENFRESH Co., Ltd. designs, builds, and operates modular smart farms in underutilized urban spaces.
We focus not on conceptual proposals, but on validating urban smart agriculture through real-world deployment, continuous operation, and accumulated operational data.


We Prove It Through Operation, Not Design
ENFRESH builds and runs smart farms in actual urban environments,
accumulating field data through ongoing operation.
Our goal is not to demonstrate agricultural technology,
but to keep it operating reliably and sustainably in real conditions.
Demonstration-Based Smart Farm Solutions
ENFRESH’s smart farms are based
on structures and operational models
validated in real operating environments,
not laboratories.
We design practical, deployable solutions
that can be applied to public and urban spaces.

Data-Driven Agriculture
Based on environmental data, crop growth information, and operational records,
we continuously adjust cultivation conditions
to maintain stable and consistent production.
Data is not collected for display.
It is used as a tool for operation and decision-making.
AI-Driven Operations and Automation
ENFRESH integrates AI technologies to collect and monitor operational data,
and to continuously evolve proprietary, crop-specific growing recipes
based on real performance data.
Through agentic AI systems,
we aim to automate operational
decision-making and farm management,
creating smart farms that do not
simply react to data,
but actively operate, optimize,
and sustain themselves.
ENFRESH's Solutions

Container-Based Modular Smart Farm
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Container-based smart farms designed for immediate deployment in urban, public, and underutilized spaces
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Cultivation, environmental control, facilities, and operational processes integrated into a single modular system
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Scalable structure supporting both single installations and multi-module expansion
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Built as operational production infrastructure, not for exhibition or demonstration purposes

Urban Smart Farm Deployment
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Smart farm solutions optimized for non-agricultural environments such as subway stations, public buildings, and indoor urban spaces
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Turn-key delivery covering design, installation, operation, and maintenance
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Models developed to balance public value with long-term operational feasibility
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Focused on continuously operating smart farms, not short-term showcases

AIoT-Based Farm Monitoring & Operation
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Real-time collection and monitoring of environmental, cultivation, and facility data
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Centralized control system enabling integrated management of multiple modular units
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Data utilized as a tool for operational decision-making, not simple visualization
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Data architecture designed to support future AI-driven automation and optimization

ENFRESH's History
Scroll to learn about our company’s journey

Smart Farm & Modular Technology Capabilities
Modular & Container-Based Infrastructure Capabilities
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Design, manufacturing, and construction capabilities for container-based and prefabricated modular facilities
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Proven experience supplying modular facilities for public and institutional projects, ensuring transportability, rapid installation, and scalability
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Ability to design multi-unit, clustered modular layouts rather than single standalone structures
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Turn-key modular systems enabling immediate operation after on-site installation
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Application of industrial-grade structural standards, focusing on hygiene, durability, and long-term maintenance
Smart Farm Structure & Cultivation Systems
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Design of multi-layer cultivation systems optimized for container interiors
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LED-based artificial lighting systems tailored to crop growth stages
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Space-efficient vertical and rack-based cultivation layouts
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Fully enclosed cultivation structures suitable for urban and indoor environments
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Smart farm systems designed for continuous operation, not for laboratory testing or exhibition purposes
Environmental Control & Operational Technologies
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Integrated control systems for temperature, humidity, CO₂, and environmental variables
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Operation-oriented environmental control logic allowing real-time adjustments
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Stability-focused operational strategies combining crop conditions and environmental data
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Maintenance and management processes designed for long-term, continuous operation
Data-Driven Operations & Monitoring (AIoT)
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Sensor-based collection of environmental and operational data
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Centralized monitoring structures integrating cultivation, environment, and facility status
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Industrial-style monitoring interfaces aligned with manufacturing and production facilities
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Data utilized as an operational decision-making tool, not merely for visualization
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Data architecture designed to support future AI-driven operational automation
Crop-Specific Operational Recipes & Optimization
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Accumulation of operational data reflecting crop-specific growth responses and conditions
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Continuous refinement of crop-specific operational recipes through repeated operation and validation
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Cultivation methods developed for long-term stability, not one-time experimental results
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Transformation of cultivation know-how into structured operational assets for future AI utilization
Urban & Public Space Smart Farm Projects
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Demonstration and deployment of smart farms in urban underutilized spaces and public facilities
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Structural validation of smart farm installations in non-agricultural environments such as subway stations and public buildings
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Development of smart farm models balancing public value and operational feasibility
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Implementation of operation-first urban smart farm models, validated through real-world use
Future Expansion & Platform Development
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Strategic development of container-based modular smart farm platforms
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Expansion from single projects to replicable, multi-site deployment models
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Integration of agentic AI technologies for automated operation and decision-making
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Long-term vision to expand beyond smart farms into urban modular production systems