Product introduction
Chanhua High Voltage Distribution Panel
Moreover, its two-layer cabinet design features space-saving attributes, easy expansion, aesthetics, and enhanced safety.

Chanhua Smart Distribution Panel
Direct control and comprehensive management of the distribution panel settings via mobile phones, tablets, and computers.
Why Choose a Smart Distribution Panel?

1.Provides open-standard communication protocols for upper-level SCADA systems, allowing for expandable applications.
2.Segregates electrical parameters into basic, energy-saving, and quality-related categories for clear and easy tracking.
3.Comprehensive service with built-in production history, technical manuals, and graphical resources available on demand.
4.Offers various trend charts with customizable preferences for thorough diagnostic tracking.
Cloud Connectivity
1.Enables faster connection through meaningful domain names or IP addresses directly with the distribution panel.
2.Allows convenient management and configuration via mobile phones, tablets, or computers without the need for a server host.
3.Stores data records on SD cards for easy connection downloads or application storage.
Safety
1.Three-tier account and password login for enhanced management security.
2.Upper and lower limit alarms, logic operation alarms, and audio-visual alarm monitoring to achieve proactive safety.
3.Detection of various power parameters, temperature and humidity, and AIO monitoring points for comprehensive control of the distribution panel.
Implementation and Features of Smart Distribution Panel
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Implementation of Smart Distribution Panel Networking Architecture
Installation of relevant cloud-electricity equipment on high and low voltage distribution panels according to customer requirements. The equipment connects via the internet to individual PCs and mobile devices. -
Smart Distribution Panel Features
Detection and recording of electrical parameters, alarm and control for space temperature/humidity, door opening detection, audible and visual alarm monitoring, upper and lower limit alarms, logic operation alarms, proactive safety mechanisms, etc.

Traditional Alarm Application in Distribution Panels

Smart Distribution Panel - Active Alarm Application
Introduction to Active Alarm Applica
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Alarm Push Notification Application
Safety issues can all be included in alarm push notifications, such as: sewage system overflow, fire alarm system alerts, abnormal high temperatures in substations, and unauthorized intrusions.
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Alarm Dispatch Introduction
Regularly sending data includes electrical parameters such as maximum demand, power factor, voltage and percentage, current and percentage, as well as harmonic values and percentage for three-phase currents. -
Alarm Dispatch Interface Introduction
Utilizing a Q&A format to instantly understand the latest status of the distribution panel, replacing manual inspections of the panel.

Alarm Dispatch Architecture Explanation
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Our distribution panels are customized products. If you have any requirements, please feel free to contact us anytime.
We are committed to providing the highest quality service to meet your specific needs."
Chanhua Low Voltage Distribution Panel
Low-voltage Substation Distribution Panel
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Power Distribution Panel (MP PANEL)
The main components of the Power Distribution Panel include Air Circuit Breakers (ACB), Non-Fusible Switches (NFB), and related equipment, serving as the main power supply for the factory’s primary systems. -
Low Voltage Capacitor Panel (SC PANEL)
The main components of the Low Voltage Capacitor Panel include capacitors (SC), reactors (SR), and automatic power factor controllers. Its primary function is to improve power factor and achieve energy savings by timely switching capacitors in or out when the power factor target value is low. -
Generator System Panel (ATS PANEL)
The Generator System Panel primarily consists of Non-Fusible Switches (NFB), Air Circuit Breakers (ACB), and transfer switches. Its main function is to promptly switch to backup power sources in case of abnormal voltages, and revert to the primary power source when voltages return to normal.