| Specification : | |
| Brand | Microtek |
| Model Code | Microtek ENERGY SAVER UPS 1825 / 1825/24V SW |
| Type | Microprocessor-Based Pure Sine Wave Inverter |
| Load Capacity Rating | 1625 VA / 1300 Watts |
| Nominal System Voltage (DC) | 24 V DC (Supports 2 Batteries) |
| Core Technology Integration | Energy Saver Core Circuit Optimization |
| Output Waveform Profile | Pure Sine Wave |
| Input Voltage Range (Inverter Mode) | 80 V to 290 V AC |
| Input Voltage Range (UPS Mode) | 180 V to 265 V AC |
| Output Voltage Parameter | 230 Voltage Nominal |
| Input / Output Frequency | 50 Hz plus or minus 0.1 Hz |
| Efficiency Rating Index | Less than 80% optimized conversion |
| Battery Compatibility Types | 24V Battery Setup (Tubular / SMF / Flat Plate) |
| Safety Protection Infrastructure | Overload, Short Circuit, Cell Overcharging, and Internal Overheating Protection |
| Chassis Dimensions (L x W x H) | 46.5 cm x 22.0 cm x 36.5 cm |
| Product Net Weight | 16.53 kg |
| Ideal Applications | High-Demand Residential Backups, Corporate Offices, Retail Outlet Utilities, and Sensitive Electronics Networks |
High-Fidelity Pure Sine Wave Technology: Engineered to deliver clean, highly stable utility-grade power that ensures buzz-free and completely damage-free operation for sensitive electronic appliances.
Proprietary Energy Saver Integration: Outfitted with specialized green technology circuits designed to significantly minimize internal power loss during conversion, lowering utility electric consumption.
Dual Inverter & UPS Tracking Modes: Configured with an interactive input window supporting a broad 80V to 290V threshold for unstable rural main lines, or a narrow 180V to 265V lock to shield personal computers.
Efficient 24V Dual Battery Architecture: Programmed to pair fluidly with a two-battery setup of 12V Tall Tubular, Flat Plate, or Sealed Maintenance Free (SMF) cells, yielding extended backup support.
Multi-Layer Intelligent Safeguard Matrix: Fortified with integrated electronic circuit sensors that actively shut down operational lines during extreme overload conditions, short circuits, overcharging, and high heat spikes.