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elevator V3F16ES inverter main board KONE KM713900G01 elevator pcb
Type |
Model |
Weight |
Application |
Elevator board |
KM713900G01 |
0.448KG |
Elevator parts |

M713900G01 is the V3F16ES inverter A1 board of Kone Elevator and is a key electronic accessories in Kone Elevator control system. It is mainly used in elevator systems driven by Kone V3F16ES frequency converter, and is suitable for a variety of elevator types, including passenger elevators, freight elevators, etc.
Power management and conversion: Responsible for converting and distributing the input power supply, providing a stable DC power supply to each part of the inverter, ensuring that the inverter can work normally. At the same time, it has overvoltage and undervoltage protection functions. When the input power supply voltage exceeds the normal range, it will automatically cut off the power supply or take corresponding protection measures to prevent the inverter from being damaged due to power supply problems.
Signal processing and control: receive signals such as speed commands, running direction commands from the elevator control system, process and amplify these signals, and then output them to the power module of the inverter to control the running speed and direction of the motor, and achieve a smooth start of the elevator. , accelerate, decelerate and stop. In addition, the motor's operating status signal can be collected and feedback, such as the motor's current, voltage, speed, etc., so that the elevator control system can monitor the motor's operation in real time and perform fault diagnosis and protection.
Drive control function: generates the PWM (pulse width modulation) signal required to drive the motor, and converts the DC power supply into an AC power supply with variable frequency and voltage by controlling the on and off of the switching elements in the power module to drive the elevator motor to run. It can automatically adjust the output frequency and voltage according to the load conditions and operating requirements of the elevator, realize the energy-saving operation and efficient control of the motor, and improve the operating efficiency and comfort of the elevator.
Fault diagnosis and protection: Built-in multiple fault diagnosis functions to monitor the operating status of the inverter and the working conditions of each component in real time. When faults such as overcurrent, overheating, overloading, short circuit are detected, the output is immediately stopped, and the protection mechanism is triggered to prevent the fault from further expanding, and the maintenance personnel are notified to perform maintenance through the display of the fault code and the output of the alarm signal.
Signal processing and control: receive signals such as speed commands, running direction commands from the elevator control system, process and amplify these signals, and then output them to the power module of the inverter to control the running speed and direction of the motor, and achieve a smooth start of the elevator. , accelerate, decelerate and stop. In addition, the motor's operating status signal can be collected and feedback, such as the motor's current, voltage, speed, etc., so that the elevator control system can monitor the motor's operation in real time and perform fault diagnosis and protection.
Drive control function: generates the PWM (pulse width modulation) signal required to drive the motor, and converts the DC power supply into an AC power supply with variable frequency and voltage by controlling the on and off of the switching elements in the power module to drive the elevator motor to run. It can automatically adjust the output frequency and voltage according to the load conditions and operating requirements of the elevator, realize the energy-saving operation and efficient control of the motor, and improve the operating efficiency and comfort of the elevator.
Fault diagnosis and protection: Built-in multiple fault diagnosis functions to monitor the operating status of the inverter and the working conditions of each component in real time. When faults such as overcurrent, overheating, overloading, short circuit are detected, the output is immediately stopped, and the protection mechanism is triggered to prevent the fault from further expanding, and the maintenance personnel are notified to perform maintenance through the display of the fault code and the output of the alarm signal.







