Communications Programs (SYSMAC C200HX/HG/HE PCs)

Chapter 7

 

 

 

DRemote I/O Allocation Areas

I/O classification

Word

15 to 8

7 to 0

 

 

 

 

Output

n

Register number (leftmost

Function code (10: Write, 03:

(PC to 3G3FV

 

byte)

Read)

Inverter)

 

 

 

n+1

Register data (leftmost byte)

Register number (rightmost

 

 

 

byte)

 

n+2

Not used.

Register data (rightmost byte)

 

 

 

 

Input

m

Register number (leftmost

Function code (10: Write, 03:

(3G3FV Inverter

 

byte)

Read)

to PC)

 

 

 

m+1

Register data (leftmost byte)

Register number (rightmost

 

 

 

byte)

 

m+2

Not used.

Register data (rightmost byte)

HTiming Chart

00000 (Read Parameter Input Bit)

03000 (Data Read Flag)

03005 (Data Read Completed Flag)

Word n to n+2 (Send Data)

 

 

 

 

Send Data (Read)

 

 

Word m to m+2 (Receive Data)

 

 

 

 

 

 

 

Receive Data (Read)

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

1.

2.

HOperation

1.Set the register number of the parameter to be read in DM 0000. When the Read Parameter Input Bit is turned ON, the Data Read Flag will be turned ON and parameter reading processing will be executed.

2.If the data is normally read, the read parameter register number and data will be returned by the Inverter. When the register number that was sent agrees with the received register number, the pa- rameter data will be stored in DM 0001, the Data Read Completed Flag will be turned ON and the Data Read Flag will be turned OFF.

Note If the send data is faulty, word m bit 7 will be turned ON, which will turn ON the Faulty Data Flag and the program will be stopped until the Faulty Data Reset Input Bit (00002) is turned ON.

7-20

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Image 139
Omron 3G3FV-PDRT1-SIN user manual Remote I/O Allocation Areas, Classification Word 15 to

3G3FV-PDRT1-SIN specifications

The Omron 3G3FV-PDRT1-SIN is a highly sophisticated variable frequency drive (VFD) designed to enhance energy efficiency and drive performance in various industrial applications. This particular model is part of the Omron 3G3FV series, which is well-regarded for its reliability, versatility, and ease of use.

One of the main features of the 3G3FV-PDRT1-SIN is its ability to control asynchronous motors efficiently. The drive supports a wide range of motor types, making it suitable for diverse applications across different sectors, including manufacturing, HVAC systems, and material handling. The unit is designed to provide precise control over the speed and torque of motors, which is crucial for optimizing machine performance and energy consumption.

The 3G3FV-PDRT1-SIN incorporates advanced technologies such as vector control and high-performance algorithms. These technologies allow for superior motor control, enabling the drive to maintain accurate speed and torque under varying loads. This functionality is essential for applications that require consistent performance, particularly in processes that demand high precision and responsiveness.

Additionally, the drive features an easy-to-use graphical display, which simplifies the programming and monitoring of drive settings. Users can quickly configure the operating parameters and monitor performance metrics, enhancing operational efficiency. The intuitive interface also allows for quick troubleshooting, reducing downtime and maintenance costs.

The Omron 3G3FV-PDRT1-SIN is built with robustness and durability in mind. It conforms to several international standards, ensuring reliable operation in industrial settings. The drive is designed to withstand harsh environments, including fluctuations in temperature and humidity. This resilience helps to extend the lifespan of both the drive and the connected motor.

Furthermore, the 3G3FV series includes built-in communication capabilities that facilitate integration with other automation equipment. This connectivity supports various industrial protocols, enabling seamless data exchange and real-time monitoring of system performance.

In conclusion, the Omron 3G3FV-PDRT1-SIN is an advanced variable frequency drive that combines energy efficiency, precision control, and robust design. It is an ideal solution for optimizing motor-driven systems across a range of industrial applications, with features that enhance user experience and overall operational effectiveness.