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The main difference between cryogenic servo motors and normal motors is the temperature range in which they are designed and used. Ordinary Motors: Ordinary motors are motors that typically operate at room temperatures and are designed and manufactured with the temperature conditions of general industrial and household applications in mind.
The temperature range of these motors is typically 0??c (Celsius) to 40??c.
In this range, the performance and reliability of ordinary motors can be well guaranteed. Low-temperature motors: Low-temperature servo motors are specially designed and manufactured for use in low-temperature environments.
These motors are capable of operating in more extreme low temperature conditions and have higher cold resistance. Their temperature range is usually -40??c or lower, e.g. -60??
c。Low-temperature motors play an important role in applications such as extremely cold regions, high altitudes, refrigeration industry and scientific experiments...
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Servo control - Servo control refers to the effective control of the position, speed and acceleration of the movement of an object.
Motor - Electric motor refers to an electromagnetic device that converts or transmits electrical energy according to the law of electromagnetic induction. The main role of the generator is to convert mechanical energy into electrical energy.
Servo motor - refers to the motor that controls the operation of mechanical components in the servo system, which can convert the voltage signal into torque and speed to drive the control object. The servo motor is very accurate in controlling the speed and position accuracy, and responds quickly to the signal.
Compared with asynchronous motors, servo motors have three significant characteristics:
1. The starting torque is large.
2. Wide range of operation.
3. No rotation phenomenon.
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Servo control is a complete system of servo drive, encoder and servo motor. Because the feedback of the position encoder can be closed-loop control, not only the speed loop but also the position loop can be taken to do accurate position positioning.
Ordinary motor control, such as the use of frequency converters, can only walk the speed ring, can not be position control.
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The servo is computer-controlled, and the ordinary motor is not controlled.
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Servo motor refers to the engine that controls the operation of mechanical components in the servo system, and is a kind of auxiliary motor indirect transmission device.
The servo motor can control the speed, the position accuracy is very accurate, and the voltage signal can be converted into torque and speed to drive the control object. The rotor speed of the servo motor is controlled by the input signal, and can respond quickly, in the automatic control system, used as an actuator, and has the characteristics of small electromechanical time constant and high linearity, which can convert the received electrical signal into angular displacement or angular velocity output on the motor shaft.
It is divided into two categories: DC and AC servo motors, and its main feature is that when the signal voltage is zero, there is no rotation phenomenon, and the speed decreases uniformly with the increase of torque.
Scope of use. DC servo motors can be used in spark machines, manipulators, precision machines, etc. It can be equipped with a standard encoder and a speed tester with high analysis of 2500P R at the same time, and can be equipped with a gearbox to bring reliable accuracy and high torque to the mechanical equipment. The speed regulation is good, and the output power per unit weight and volume is the highest, which is greater than that of AC motors and far more than stepper motors.
The moment fluctuations of the multi-level structure are small.
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A micro motor used as an actuator in an automatic control device. Also known as actuator motor. Its function is to convert the electrical signal into the angular displacement or angular velocity of the rotating shaft.
Servo: The word derives from the Greek word for "slave". People want to use the "servo mechanism" as a handy taming tool, obeying the requirements of the control signal and acting.
Until the signal arrives, the rotor stands still; As soon as the signal arrives, the rotor rotates; When the signal disappears, the rotor stops on its own. Due to its "servo" performance, it got its name. The servo motor can convert the input voltage signal into the angular displacement or angular velocity output on the motor shaft, and is often used as an actuator in the control system, so the servo motor is also called the actuator motor.
Changing the magnitude and direction of the input voltage can change the speed and steering of the shaft.
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It is a synchronous motor, which can respond quickly, with high efficiency, high precision, power saving and high torque.
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Inovance servo alarm fault**Daquan:
1. If the parameters of H02 and above groups are abnormal, reset the driver model and motor model, and the system parameters will be restored to initialization (H02-31=1).
2. Programmable logic configuration failure, software version mismatch or hardware failure to communicate.
3. Programmable logic interrupt failure, and at the same time, the town is rotten over H0B-45 to view and analyze.
4. The internal program is abnormal, and the system parameters are restored and initialized (h02-31=1), and the power is re-on, and the maintenance is not possible.
5. Parameter storage failure.
6. Internal failure.
7. Product matching failure, product identification code is not entered, server and motor do not match.
8. Invalid servo ON instruction.
9. The data in the motor ROM is incorrect, or the parameters are not saved, the parameters are not saved, or the parameters are inconsistent with the agreed values.
10. Overcurrent 1, software overcurrent.
11. Overcurrent 2, hardware overcurrent.
12. During the sampling operation of the FPGA system*, the fault cause is queried through the internal fault code H0B-45.
13. The output is short-circuited to ground.
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Summary. Hello, it is a pleasure to serve you. There may be several reasons why the Inovance servo motor is not enabled when it is powered on:
1.If the servo motor parameters are not set or set incorrectly, it will not be enabled. You need to check whether the parameters of the servo motor are set correctly.
2.Power supply problemsIf the power supply voltage of the servo motor is unstable or the quality is not good, the servo motor will not be enabled. You need to check whether the power supply voltage of the servo motor is stable and whether the power supply is in normal working condition.
3.Wiring Problems: If there is a problem with the wiring of the servo motor, it may also fail to be enabled. You need to check whether the wiring of the servo motor is correctly connected, and whether there are problems such as looseness and poor contact.
4.Fault ProblemIf the servo motor fails, such as the motor itself is damaged, the driver is faulty, etc., it will also cause it to fail to be enabled. At this time, it is necessary to check whether the servo motor is faulty, such as replacing the faulty part or seeking repair help.
The above are several reasons that may cause the Inovance servo motor to fail to be powered on, and you can troubleshoot and solve them according to the actual situation.
Hello, it is a pleasure to serve you. There may be several reasons why the Inovance servo motor is not enabled when it is powered on:1
If the servo motor parameters are not set or set incorrectly, if the servo motor parameters are not set or set incorrectly, it will not be enabled. You need to check whether the parameters of the servo motor are set correctly. 2.
Power supply problemsIf the power supply voltage of the servo motor is unstable or the quality is not good, the servo motor will not be enabled. You need to check whether the power supply voltage of the servo motor is stable and whether the power supply is in normal working condition. 3.
Wiring ProblemsIf there is a problem with the wiring of the servo motor, it may also be unable to be enabled. You need to check whether the wiring of the servo motor is correctly connected, and whether there are problems such as looseness and poor contact. 4.
Fault ProblemIf the servo motor fails, such as the motor itself is damaged, the driver fails, etc., it will also cause it to fail to be enabled. At this time, it is necessary to check whether the servo motor is faulty, such as replacing the faulty part or seeking repair help. The above are several reasons that may cause the Inovance servo motor to fail to be powered on, and you can troubleshoot and solve them according to the actual situation.
88" is a common alarm for Inovance servo motors**, indicating that the motor's enable signal is disabled. In this case, the motor cannot be controlled in motion. How to relieve boredom:
Check that the motor's enable signal is properly connected. Confirm that the enabled signal cable is connected correctly and check whether the signal cable is open or short-circuited. Check the enabled status of the servo drive.
If the enabled state of the servo drive is disabled, the motor will not work. The enabling status of the drive can be checked and set by manually operating the servo drive or through the host computer software. Check the parameter settings of the servo motor controller.
Confirm that the parameters of the electro-hydraulic hood alarm are set correctly, especially whether the parameters of the enable signal are set correctly.
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Hello, there may be the following reasons why the Inovance servo motor is not enabled when it is powered on:1The servo drive is not set correctly, resulting in the servo motor not being enabled.
You can check that the driver's parameter settings are correct and that the settings for the enable signal are enabled. 2.There is a problem with the connection between the servo motor and the drive, resulting in abnormal signal transmission.
You can check that the connection lines and wiring are correct to ensure that the signal is transmitted properly. 3.The servo motor itself is faulty or damaged and does not work properly.
You can try to replace the servo motor with a new one for testing to determine if the motor is faulty and cannot be enabled. It is recommended that after checking the above aspects, if there is still a problem, it is recommended to contact Inovance's official customer service or professional and technical personnel for repair and troubleshooting.
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First, the product categories are different.
1. Inovance servo: AC servo motor and drive.
2. Delta servo: AC servo motor and driver, linear servo motor and driver.
Second, the advantages are different.
1. Inovance servo: It provides the functions of rigid table setting, inertia identification, mechanical characteristics analysis and vibration suppression, making the servo drive simple and easy to use.
2. Delta servo: Based on mastering the core electronic technology, it is developed according to the customer needs of different application machinery.
Third, the technical characteristics are different.
1. Inovance servo: the power range of the product is 100W-75KW, supports Modbus, CanLink and CANopen communication protocols, and the corresponding communication interface can be used with the host computer to realize the networking operation of multiple servo drives.
2. Delta servo: The control loop adopts high-speed digital signal processor (DSP), which can meet the motion control requirements of high-speed displacement and precise positioning with the design of automatic gain adjustment, command smoothing function, and software analysis and monitoring.
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Inovance has good service, positioning industry-specific servo, and industry optimization. Delta general servo has advantages, Inovance's elevator, electro-hydraulic servo, and Internet of Things are better than Delta, and Inovance is slightly better on the whole.
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The performance of Inovance servo is relatively poor, it is recommended to choose National Taiwan University, or others.
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One is garbage, and the other is garbage within garbage.
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Delta's is average, and Inovance will forget it.
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Summary. What is the name of the manufacturer of Inovance servo motor.
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