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HPC-1363A New and original inverter HPC-1363A New and original inverter

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HPC-1363A New and original inverter

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HPC-1363A New and original inverter
Price: $ 39
  • HPC-1363A

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Electrical Specifications

  • Input Voltage: It might be designed to accept a specific range of input voltages, commonly found in industrial or residential power supply systems. For example, it could handle an input voltage of 220V ± 10% or 380V ± 10%, depending on its intended application. This allows the inverter to operate within the normal voltage fluctuations of the power grid.

  • Output Voltage: The output voltage is typically adjustable to meet the specific requirements of the connected equipment. It could provide a stable output voltage of 220V or 380V, with a low total harmonic distortion (THD) to ensure high - quality power supply. Some inverters may also offer multiple output voltage options to support different types of loads.

  • Output Power: The HPC - 1363A is likely to have a specific rated output power, which could range from a few kilowatts to tens of kilowatts. For example, it might have a rated power of 5kW, 10kW, or 15kW, depending on its design and intended use. This power rating determines the maximum load that the inverter can handle continuously.

  • Efficiency: High - efficiency is an important characteristic of modern inverters. The HPC - 1363A may have an efficiency rating of around 90% - 95% or higher, depending on the load conditions. This means that it can convert the input DC power to AC power with minimal power losses, resulting in better energy utilization and reduced operating costs.

Inverter Technology

  • Topology: It may use a specific inverter topology, such as a full - bridge or half - bridge configuration. The full - bridge topology is commonly used for higher - power applications as it can provide better output waveform quality and higher power handling capabilities. The half - bridge topology, on the other hand, is simpler and more suitable for lower - power applications.

  • Control Algorithm: Advanced control algorithms are employed to ensure stable and accurate output voltage and frequency. The inverter may use a pulse - width - modulation (PWM) technique to control the switching of the power transistors and generate the desired AC output waveform. Some inverters also incorporate intelligent control features such as maximum power point tracking (MPPT) for solar - powered applications, which helps to optimize the power output from the solar panels.

Protection Features

  • Over - Voltage Protection: The inverter is likely to be equipped with over - voltage protection circuitry to prevent damage to the internal components and connected loads in case of high input or output voltages. It will detect when the voltage exceeds a certain threshold and take appropriate measures, such as shutting down the inverter or reducing the output voltage.

  • Over - Current Protection: Over - current protection is essential to safeguard the inverter and the connected equipment from excessive current draw. If the output current exceeds the rated value, the inverter will detect the fault and quickly disconnect the output or limit the current to a safe level to prevent overheating and potential damage.

  • Short - Circuit Protection: In the event of a short - circuit at the output, the inverter will immediately detect the fault and cut off the power supply to prevent damage to the inverter and other components. Short - circuit protection helps to ensure the safety of the entire electrical system.

  • Over - Temperature Protection: The inverter is designed to monitor its internal temperature and activate over - temperature protection if the temperature exceeds a certain limit. This may involve reducing the output power or shutting down the inverter to prevent damage to the power transistors and other heat - sensitive components.

Communication and Monitoring

  • Communication Interfaces: The HPC - 1363A may be equipped with communication interfaces such as RS - 485, Modbus, or Ethernet to enable remote monitoring and control. These interfaces allow the inverter to be connected to a central control system or a computer for real - time monitoring of its operating parameters, such as input and output voltages, currents, power, and temperature.

  • Monitoring and Diagnostic Functions: The inverter may have built - in monitoring and diagnostic functions that provide information about its operating status and any detected faults. It can display error codes or send alerts to indicate the nature of the problem, helping technicians to quickly identify and resolve issues. Some inverters also offer historical data logging capabilities, which can be useful for analyzing the performance and energy consumption of the inverter over time.

Mechanical and Physical Characteristics

  • Dimensions and Weight: The physical size and weight of the inverter will depend on its power rating and the components used. A typical HPC - 1363A inverter with a moderate power rating might have dimensions of approximately 500mm × 300mm × 200mm and a weight of around 10 - 20 kg. Larger - power inverters will be proportionally larger and heavier.

  • Enclosure Design: The inverter is usually housed in a sturdy enclosure to protect the internal components from dust, moisture, and physical damage. The enclosure may be made of metal or plastic, depending on the required level of protection and cost - effectiveness. Some enclosures are designed for wall - mounting, while others may be suitable for rack - mounting in a server room or industrial control cabinet.

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