
Empowering Elevators through On-Site Energy Storage
Seamlessly combining energy efficiency and emergency backup, turning regenerative power into sustainable value

Why Integrated Energy Storage Systems for Elevators?

Eliminate Energy Waste
Capture “regenerative energy” (lost as heat) and convert it into reusable power.

Enhanced Safety & Security
Built with non-lithium battery technology with zero combustion and explosion risks, the system provides stable backup power to ensure smooth elevator rescue to the nearest floor during outages.

Maximize Sustainability
Improve building energy efficiency, and turn power savings into measurable carbon reduction, setting a benchmark for green architecture.
Safe and Efficient Power Conversion with Energy Savings of up to 40%
During light-load ascents and heavy-load descents, elevators generate regenerative energy, which conventional systems dissipate as waste heat. Powered by patented circuitry and ultra-safe battery technologies, our elevator energy storage system efficiently captures and reuses this power.

Time
Heavily Loaded(12F→1F)
Heavily Loaded(1F→12F)
Power Consumption
Moter Mode
Power Generation
(Regenerative)
Generator Mode
Power
Regenerative Power and Energy Consumption During Elevator Operation


Advanced Energy Management Through Storage and Safety Solutions
Going beyond basic data monitoring, our storage-driven architecture enables elevators to self-generate and dispatch power, backed by a robust circuit built to withstand high-current surges.
This patented technology forms a strong technical barrier while empowering smart buildings to deepen carbon reduction and achieve green building benchmarks.
High-Efficiency Conversion
800V bidirectional DC/DC system delivering over 90% kinetic-to-electrical energy conversion efficiency.
Low-Barrier Retrofitting
Driven by 10x voltage conversion technology, enables seamlessly adaptation to both brand new and existing elevator models for a hassle-free and cost-effective upgrade.
Intelligent Monitoring
Wide-range voltage management (60V–144V) ensures stable non-lithium battery operation under varying load conditions.
Streamlined Thermal Management
Exceptional low-temperature-rise battery characteristics eliminate the need for complex and high-maintenance cooling equipment.
Advanced Circuit Design
Bipolar circuit integration allows seamless system operation on a single unified PCB.
Feature | Regenerative Power Device | Supercapacitor Module | APh Elevator Regenerative Power System |
|---|---|---|---|
Energy Efficiency | High | Low | High |
Carbon Credit Potential | X | V | V |
Emergency Backup | X | X | V |
Energy Storage Capability | X | V | V |
Comparison of Energy-Saving Elevator Technologies

Pioneering Internationally Certified Carbon Methodology
Certified by Gold Standard in 2025, establishing the world’s first globally applicable carbon credit methodology for elevator energy storage.

Turning Carbon Reduction into Carbon Credits
Baseline Scenario (Without APh ePower)
Regenerative energy generated by elevators goes uncaptured, dissipating entirely as waste heat.
Project Scenario (With APh ePower)
Implementing our energy storage system captures and recycles this energy, creating a closed-loop energy cycle and reducing carbon emissions.

Power Consumption
Elevator
Carbon Emissions
Equipped with Energy Storage Systems
Power Consumption
Elevator
Carbon Emissions
Energy Storage Systems Recover Electricity

Comparison Chart of Elevator Carbon Credit Baseline Scenario and Project Scenario
Transforming Every Elevator Ride into Measurable Carbon Value
The APh ePower Energy Management System integrates and quantifies the carbon reduction data across multiple elevator fleets, helping enterprises streamline carbon credit projects by converting measurable energy savings into verifiable carbon assets that yield both economic and environmental value.

Elevator Energy Storage Systems

Carbon Reduction Data Monitoring

Carbon Credit Project Application
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