---
id: "esg-governance-en"
title: "ESG Governance, Renewable Energy and Equipment Energy Management | Zhongde Precision"
description: "Zhongde Precision advances manufacturing energy visibility through rooftop solar, a 645 kWh battery storage system and equipment efficiency and energy-consumption management."
source: "/en/about/esg-governance"
language: "en"
generated: true
---

# ESG Governance

Renewable Energy and Intelligent Energy Management

Zhongde Precision connects rooftop solar generation, battery energy storage and equipment energy management with the manufacturing floor. Equipment status, utilization, OEE and consumption trends provide practical data for production control and continuous energy improvement.

## Key Figures

### Rooftop Solar Power

Deployed

### Battery Storage Capacity

645 kWh

### Charge-Discharge Cycles

2 / day

### Equipment Efficiency Network

1 system

## 01. From Renewable Energy Infrastructure to Equipment-Level Energy Management

Zhongde Precision connects solar generation, energy storage dispatch and equipment energy monitoring within one manufacturing environment. We manage not only where energy comes from, but also how it enters production, how equipment consumes it and whether improvement actions deliver measurable results.

### Capabilities and Engineering Points

#### 01. Rooftop Solar Power

Solar generation facilities use available factory roof space to provide a cleaner source of electricity, while generation and grid-purchase data help track changes in the energy mix.

##### Status

In Operation

#### 02. Battery Storage and Charge-Discharge Management

The battery storage system is managed according to manufacturing demand and energy availability, supporting power balancing and production energy dispatch.

##### Key Figures

###### Storage Capacity

645 kWh

###### Charge-Discharge

2 / day

#### 03. Digital Equipment Energy Management

The equipment efficiency network collects machine condition, utilization, OEE and energy-consumption data to support shop-floor management, anomaly identification and energy improvement.

##### Monitoring Indicators

###### Status

###### Utilization

###### OEE

###### Energy Trend

### Energy Flow

#### Clean Energy Supply

#### Storage and Energy Dispatch

#### Equipment Monitoring and Improvement

## 02. Rooftop Solar Generation and Digital Operation Management

Zhongde Precision uses available factory roof space for solar generation and monitors system operation through a digital platform. Combining physical infrastructure with operating data brings renewable energy into daily manufacturing management.

### Converting Factory Roof Space into Clean-Energy Infrastructure

The rooftop solar system turns existing building space into a cleaner energy source and provides supplementary electricity for manufacturing without occupying additional production floor area.

- Operating Status: In Operation

#### Engineering Points

- Uses existing factory roof space
- Supplies cleaner electricity to manufacturing
- Operates with the factory energy system

### From Photovoltaic Operation to Generation Data Visibility

The digital platform centralizes solar-system status, operating data and trends. It gives shop-floor teams a clear information interface while preserving data for subsequent energy analysis and improvement.

### Capabilities

#### 01. Generation Status

Monitor the online condition of photovoltaic equipment and the generation system.

#### 02. Operating Trends

Use charts to understand changes in generation data over time.

#### 03. Data Records

Retain operating data for energy management and continuous improvement.

## 03. 645 kWh Battery Storage and Charge-Discharge Management

Zhongde Precision combines its battery storage equipment with a digital operating platform. Charge and discharge are managed according to manufacturing demand and energy availability, while battery SOC, PCS power, equipment condition and alarms remain visible.

### Battery Storage Equipment and On-Site Power Infrastructure

The storage equipment is deployed within the factory energy area and operates with the on-site distribution and electricity system, providing the physical basis for energy dispatch and power balancing.

- Operating Status: In Operation

#### Key Figures

##### Storage Capacity

645 kWh

##### Charge-Discharge

2 / day

### Storage Operating Status and Energy-Flow Visibility

The digital platform centralizes battery SOC, PCS power, meter power, load relationships, equipment status and alarm records, enabling continuous monitoring and traceability.

#### Monitoring Indicators

- Battery SOC
- PCS Power
- Meter Power
- Equipment Status
- Alarm Records
- Operating Logs

### Capabilities

#### 01. Charge-Discharge Dispatch

Manage charging and discharging according to production demand and energy availability.

#### 02. Operating Monitoring

Continuously review SOC, PCS power and equipment operating condition.

#### 03. Alarm and Record Management

Retain alarms and operating logs to support abnormal-condition handling.

## 04. Digital Equipment Energy Management

The equipment efficiency management system brings machine condition, utilization, OEE and energy-consumption data into one interface. Management teams can move from operating status to efficiency trends and consumption distribution, supporting anomaly identification and continuous improvement.

System data is primarily used for internal operating monitoring, anomaly identification and continuous improvement. Specific energy-saving results must be verified against equipment, product, output and the selected measurement period.

### From Shop-Floor Displays to Equipment-Level Data Dashboards

The energy-management interface is deployed on the manufacturing floor so operators can review equipment condition and energy data. It connects machine operation, production efficiency and energy consumption within one daily-management interface.

#### Key Items

- Shop-Floor Visibility
- Equipment-Level Data
- Operating Status
- Energy Management

### Data Views

#### 01. Equipment Status Overview

Centralizes online, running, standby and abnormal machine conditions for rapid shop-floor identification.

#### 02. Equipment Utilization Analysis

Reviews operating time, downtime and utilization to understand actual machine use and capacity conditions.

#### 03. OEE Time-Series Trends

Tracks changes in overall equipment effectiveness and helps identify efficiency loss and operating fluctuation.

#### 04. Energy Parameter Analysis

Reviews power, current, voltage and other energy parameters to identify abnormal changes during operation.

#### 05. Energy-Consumption Statistics

Analyzes consumption by equipment, time and energy type to support energy-structure review and improvement verification.

### 06. Data-Driven Continuous Improvement

System data supports anomaly identification, improvement actions and subsequent verification.

#### Process Steps

##### 01. Data Collection

Collect equipment condition, efficiency and consumption data

##### 02. Anomaly Identification

Identify downtime, efficiency loss and unusual consumption

##### 03. Improvement Actions

Define equipment and production-management improvements

##### 04. Result Verification

Use trend data to verify improvement results
