SIEMENS Frequency Converter
Origin: German
Brand: SIEMENS
Siemens inverter 6SE7041-1UL84-1BH0 is produced, developed and sold by Siemens AG of Germany. It is mainly used to control and adjust the speed of three-phase AC asynchronous motors. This inverter occupies an important position in the inverter market with its high-performance vector control technology, low-speed high-torque output, good dynamic characteristics, strong overload capacity, innovative BiCo (internal functional interconnection) function and unparalleled flexibility.
SIEMENS Frequency Converter
Origin: German
Brand: SIEMENS
Siemens inverter 6SE7041-1UL84-1BH0 is produced, developed and sold by Siemens AG of Germany. It is mainly used to control and adjust the speed of three-phase AC asynchronous motors. This inverter occupies an important position in the inverter market with its high-performance vector control technology, low-speed high-torque output, good dynamic characteristics, strong overload capacity, innovative BiCo (internal functional interconnection) function and unparalleled flexibility.
Product Introduction
6SE7041-1UL84-1BH0 default address 2. On the central rack of S7-300F, error-proof and non-error-proof (standard) digital E/A modules can be mixed. For this purpose, as in ET200M, an isolation module (MLFB: 6ES7195-7KF00-0XA0) is required to isolate error-proof modules and standard modules in the central and expansion racks. DI/DO expansion module: When the number of DI/DO control points of the CPU unit is insufficient, it can be used for expansion; 1. Open to all types of field devices Open to a wide range of field devices through PROFIBUS and TIA.
Siemens inverters are produced, developed and sold by Siemens of Germany, and are mainly used to control and adjust the speed of three-phase AC asynchronous motors. It has rich functions and stability. High-performance vector control technology, low-speed high-torque output, good dynamic characteristics, strong overload capacity, innovative BiCo (internal functional interconnection) function and unparalleled flexibility occupy an important position in the inverter market.
G120 inverter is an integrated inverter, which combines the rectifier and inverter units together, so you don't have to select them separately. However, the functions of G120 are very limited. It can only have vector axes to achieve vector control. And the rectifier part is non-feedback type.
G120 debugging instructions: namespace prefix = "o" ns = "urn:schemas-microsoft-com:office:office" />
1. Motor parameter setting.
Enter the P ARAMS access interface and select the FILTER/EXPERT option. Press the OK key and select the code.
P0003 user access level is set to 3 by default.
P 0010 Quick debugging selection is set to 1
Exit and enter SETUP to set motor parameters (PARAMS is all parameter settings, SETUP is quick debugging. Motor parameters can also be set in PARAMA)
At the beginning of quick debugging, there will be parameter initialization. You need to select YES. No need to select NO
P0015 Macro file drive device selection parameter is set to 7 (network control)
P0304 Motor voltage 380~400 Motor nameplate
P0305 Motor current Motor nameplate
P0307 Motor power Motor nameplate
P0310 Motor frequency Motor nameplate
P0311 Motor speed Motor nameplate
P0314 Motor rating Motor nameplate
6SL3210-1KE23-2AF1
6SL3210-1KE23-2UC1
6SL3210-1KE23-2AC1
6SL3210-1KE23-8UB1
6SL3210-1KE23-8AB1
6SL3210-1KE23-8UP1
6SL3210-1KE23-8AP1
6SL3210-1KE23-8UF1
6SL3210-1KE23-8AF1
6SL3210-1KE23 -8UC1
6SL3210-1KE23-8AC1
6SL3203-0CE13-2AA0
6SL3203-0CE21-0AA0
6SL3203-0CE21-8AA0
6SL3203-0CE23-8AA0
6SL3201-0BE14-3AA0
6SL3201-0BE21-0AA0
6SE7041-1UL84-1BH0The sampling and head ends of the potentiometer are connected to M+, the end ends are connected to M-, and S- and M- are connected together. Almost all S5/S7 analog input devices still work in a complex way, that is, all channels are plugged into only one AD converter in turn. This principle also applies to the constant current required to read the impedance. Therefore, the current flowing through the resistor to be read is only used for short-term readings. For a SM331-7KF02-0AB0 with a selected interface suppression "50Hz" and 8 parameterized channels, this means that the current will flow approximately every 180ms, and the impedance can be read for 20ms each time. When the two contacts of the actuator are connected with separate wires with S+ and S-, the analog output adjusts the output voltage so that the voltage actually present on the actuator is the desired voltage. The logical base address of the defective module and 4 bytes of diagnostic data are contained in the local variables of OB82 itself.
SINAMICS G120 is a modular inverter launched by Siemens that can be composed of several unit modules. The most important units are: CU (Control Unit), PM (Power Module).
G120 is a series of Siemens inverters.
PM240 refers to a category of power modules equipped with G120. Depending on the power, there are many specific models of PM240 modules to choose from. For example, 3*AC 380V, 0.75KW The model of P240 power selection is: 6SL3224-0BE13-7UA0
G120 has some major improvements compared to MM4 series: 1. The control unit (CU) and power module (PM) are separated. This means that the same control unit can adapt to power modules of different capacities. Therefore, you can put it in the office to do some debugging (setting BiCo), and it does not necessarily have to be debugged on site. 2. The CU unit can be powered by 24V alone, including the BOP plugged in. 3. The redesigned heat dissipation duct of the power module (PM) avoids the easy accumulation of dust on the MM4 series component board. Of course, it brings about improved reliability and actually reduces the installation environment. 4. Unlike the MM4 series, which uses modular Instead of "superposition" of blocks, CU, IO and communication functions are integrated together. This further improves reliability and reduces failure rate. Of course, it also brings that at the beginning of design, you need to think about the communication solution. Use or not use the network? What form of network to use must be determined. Because it is integrated with CU. 5. Different safety levels S1-S3 are added in accordance with its CU, and external relays or contactors are required. 6. Others only provide more IO ports than MM4. 7. G120 can only be debugged with Starter and does not support DriverMonitor. If you want to use Ethernet, you must order a control unit that supports Profinet.
P1080 *Minimum speed
P1082 *Speed
P1120 Rising time: about 15 seconds for pumps and about 50 seconds for fans
P1121 Falling time: about 15 seconds for pumps and about 50 seconds for fans
P1900 Motor data detection and rotating motor detection: set to 2 or 0 to cancel the function
If it is a quick setting, P 3900 must be set to 1 to end the quick setting. Note: If P0010=1, you must enter the quick setting and complete the quick setting process and press YES. End the quick setting.
6SL3244-0BB12-1PA1 6SL3244-0BB12-1FA0 6SL3244-0BB13-1BA1 6SL3244-0BB13-1PA1 6SL3244-0BB13-1FA0 6SL3246-0BA22-1BA0 6SL3246-0BA22-1PA0 6SL3246-0BA22-1FA0 6SL3246-0BA22-1CA0 6SL3210-1PE11-8UL0
6SL3210-1PE12-3UL0
6SL3210-1PE13-2UL0
6SL3210-1PE14-3UL0
6SL3210-1PE16-1UL0
6SL3210-1PE18-0UL0
6SL3210-1PE11-8AL0
6SL3210-1PE12-3AL0
6SL3210-1PE14-3AL0
6SL3210-1PE13-2AL0
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Parameter 6SE7041-1UL84-1BH0
6SE7041-1UL84-1BH0 The technical functions "MYDATA".PV0_SEL and "MYDATA".PV1_SEL determine the process data input to the PID controller. According to the -100~* method, the data sent to the monitoring system is between -100.00 and 100.00. Data exceeding these values indicates abnormality. The S7-200 series currently has two communication expansion modules: PROFIBUS-DP expansion slave module EM277 and AS-i interface expansion module CP243-2. (2) Distributed I/O based on PROFIBUS The configuration of distributed and local I/O based on PROFIBUS adopts a unified method. Therefore, users do not need to distinguish the I/O type when programming, and can use distributed I/O as easily as local I/O.
6SL3210-1KE21-3UP1 6SL3210-1KE21-3AP1 6SL3210-1KE21-3UF1 6SL3210-1KE21-3AF1 6SL3210-1KE21-3UC1 6SL3210-1KE21-3AC1 6SL3210-1KE21-7UB1 6SL3210-1KE21-7AB1 6SL3210-1KE21-7UP1 6SL3210-1KE21-7AP1 6SL3210-1KE21-7UF1 6SL3210-1KE21-7 AF1
6SL3210-1KE21-7UC1
6SL3210-1KE21-7AC1
6SL3210-1KE22-6UB1
6SL3210-1KE22-6AB1
6SL3210-1KE22-6UP1
6SL3210-1KE22-6AP1
6SL3210-1KE22-6UF1
Siemens inverters were first used in the steel industry. However, at that time, motor speed regulation was still dominated by DC speed regulation, and the application of inverters was still an emerging market. However, with the continuous development of electronic components and the continuous maturity of control theory, variable frequency speed regulation has gradually replaced DC speed regulation and become the mainstream of drive products. Siemens inverters have achieved large-scale development in this huge market due to their powerful effects. Siemens's first development in the inverter market should be said to be the best combination of Siemens and technology. The early Siemens inverters we can encounter in the market mainly include the current source SIMOVERT A and the voltage source SIMOVERT P. These inverters also entered the market together mainly due to the introduction of equipment. There are still a small number of them in use. Later, the main ones sold in large quantities in the market are MICRO MASTER and MIDI MASTER, as well as the most popular series of Siemens inverters, SIMOVERT MASTERDRIVE, which is what we often call the 6SE70 series. It not only provides AC inverters for general occasions, but also provides DC bus solutions for multi-motor drives required in special industries such as papermaking and chemical fiber. Of course, Siemens also launched the ECO inverter, which I personally think is technically unsuccessful but quite popular in the market. The technical failure is mainly due to its too high failure rate, and its popularity in the market is mainly because it has surpassed Fuji inverters to become the market leader. Now Siemens' main models on the market are MM420, MM440.6SE70 series.
Parameter setting:
The inverter has many setting parameters, and each parameter has a certain selection range. It is often encountered that the inverter cannot work normally due to improper individual parameter settings.
Control mode: speed control, torque control, PID control or other methods. After adopting the control method, static or dynamic identification is generally required according to the control accuracy.
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