Industrial-grade electrical and energy solutions engineered for marine, commercial, and industrial applications — designed to optimise performance, safety, and efficiency.
An Energy Monitoring System (EMS) is used to track, analyse, and optimise energy consumption in real time. This system is becoming increasingly important in ships, commercial and industrial setups, buildings, and homes for reducing energy costs and supporting sustainability efforts across entire facilities.
Real-Time Monitoring
Displays live data on energy usage (kWh, voltage, current, power factor, etc.). Tracks consumption by device, department, or building.
Data Logging & Historical Analysis
Stores energy usage over time. Allows trend analysis for days, weeks, months, or years. Useful for audits and compliance.
Alerts & Notifications
Customisable alerts for high consumption, peak demand, outages, or abnormal usage patterns.
Integration Capabilities
Interfaces with BMS, SCADA, PLCs, IoT devices. Compatible with renewable energy systems and smart meters.
User Access Control
Multi-user support with different permission levels (admin, viewer). Secure login and data protection features.
Energy Benchmarking
Compares performance against standards or similar facilities. Supports energy efficiency goal-setting.
In the present technological revolution, power is precious and power systems are becoming increasingly complex. To minimise transmission losses over long distances, it is vital to identify causes of power loss and improve efficiency. Heavy use of inductive loads lowers the power factor, increasing losses and reducing system efficiency.
Power factor is defined as the ratio of real power (kW) to apparent power (kVA). It measures how effectively current is converted into useful work. A power factor of 1.0 is ideal — a lower power factor (e.g., 0.5) leads to higher losses, increased energy costs, and reduced system capacity.
The APFC (Automatic Power Factor Correction) Control Panel automatically manages capacitor banks to maintain an optimum power factor, reducing energy penalties and improving overall system efficiency.
Reduces Energy Losses
Automatic correction minimises reactive power wastage.
Improves System Capacity
Higher PF means more capacity for useful loads.
Avoids PF Penalties
Prevents utility surcharges for low power factor.
Automatic Operation
Real-time correction without manual intervention.
As defined in the ETCI Rules for Electrical Installations (ET101:2000), a Distribution Board is an assembly of protective devices, including two or more fuses or circuit breakers, arranged for the distribution of electrical energy to final circuits or other distribution boards.
Our distribution panels are custom-fabricated to meet marine, industrial, and commercial specifications — designed for reliability, ease of maintenance, and compliance with international standards.
Panel Types We Fabricate
Standards Compliance
Built in conformance with IEC, BS, and ETCI standards. Suitable for marine class approval requirements.
Custom Fabrication
Tailored to client specifications — size, rating, busbar configuration, metering, and protection devices.
HV & LV Options
Available for both High Voltage (HV) and Low Voltage (LV) applications on ships and offshore platforms.
Integrated Protection
MCBs, MCCBs, ACBs, earth leakage protection, and surge protection as required.
An Automatic Transfer Switch (ATS) is a device designed to automatically switch transfer between two sources of power to improve the reliability of the electrical supply to a connected load. It ensures continuous power delivery with minimal interruption during source failure.
Amperage
Correctly rated to handle the connected load current at all times.
Mechanism Type
Open, closed, or bypass-isolation transfer mechanism options.
Transfer Type
Open, closed, or static transition — selected per application.
Withstand Rating
Short-circuit withstand and making/breaking capacity ratings.
Neutral Switching
Optional neutral switching for system safety compliance.
Controller
Microprocessor-based controller for automated, reliable operation.
Transfer Time
Adjustable transfer time delays to suit generator and load requirements.
Remote Monitoring
Optional remote status indication and SCADA integration.
Our engineering team helps you select and specify the right ATS for your application — considering amperage, mechanism type, transfer type, withstand rating, neutral switching, and controller requirements.
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