Product Features
The TN series is a high-performance true sine wave DC-AC inverter that integrates a seamless UPS mode, offering dual-function reliability for critical power systems.
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Built-in UPS Function: Automatically transfers to battery power in approximately 10ms during grid failures, ensuring zero downtime for critical loads.
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True Sine Wave Output: Low harmonic distortion (THD < 3%) makes it safe for sensitive electronic loads.
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Configurable Output: Front-panel DIP switches allow users to adjust AC output voltage and frequency.
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Energy Saving Mode: Features an intelligent energy-saving function to conserve battery power when the output load is minimal.
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Advanced Protection: Fully protected against short circuit, overload, over-temperature, and low/high DC input voltage.
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Robust Construction: Industrial-grade design suitable for diverse environments.
Technical Specifications
| Parameter |
Specification Detail |
| Waveform |
True Sine Wave (THD < 3%) |
| UPS Transfer Time |
10ms (AC By-pass) |
| DC Input Range |
12V, 24V, or 48V (Nominal) |
| Efficiency |
Up to 89% ~ 91% |
| Operating Temp. |
-25°C to +70°C |
| Communications |
RS-232 Port for status monitoring |
Series Power Range
| Model |
Continuous Power |
Peak Power (10s) |
| TN-1500 |
1500W |
2250W |
| TN-3000 |
3000W |
4500W |
Applications: Backup power for home automation, telecommunications equipment, medical monitoring systems, and renewable energy off-grid setups.
UPS Operation Mode Explained
The NTU series delivers an efficient power transition architecture:
| Operation State |
Power Flow |
| Grid Normal |
AC input powers the load via the internal transfer relay, while the internal charger keeps the battery bank maintained. |
| Grid Loss |
System detects loss and switches to Inverter mode within 10ms, drawing DC power from batteries to produce clean AC. |
Selection Tip: Choose your model based on the battery bank voltage (12V/24V/48V) and peak surge requirements of your connected loads. Always ensure the battery bank capacity (Ah) matches the discharge current capability of the chosen NTU model.