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RS-232 provides a list of circuits and says if you use a circuit; this is what it must do and it must be on this pin of the connector. In RS485 communication, pins 2 and 3 are used for transmitting and receiving data, while pin 1 is used as a protective ground. Half-Duplex RS-232 is usually limited by an additional communications device between the two farthest ends that are communicating. Many people recommend writing prototype software as if it will be connected to a half-duplex RS-485 network. One common example that many people probably know that is a computer connected to a printer, the RS232 is widely used for printers in working places. Common baud rates include 300, 1200, 2400, 4800, 9600, 14400, 19200, 38400, 57600, and 115200 bits per second. RS232 has a separate communication line for transmitting and receiving which-with a well written protocol-allows higher effective data rates at the same bit rate than the other interfaces. RS485 is used as the electrical layer for many well known interface standards, including Profibus and Modbus. What is the importance of a "fail-safe" state in RS485 communication? This is, because on the other interfaces the communication channel is shared by multiple receivers and-in the case of RS485-by multiple senders.


The request and acknowledge data needed in most protocols does not consume bandwidth on the primary data channel of RS232. Limited Data Transfer Speed: RS485, while reliable, may have limited data transfer speed compared to some other communication protocols. Transaction history from POS will be recorded without any protocols. In three-phase systems without distributed neutral in which the loads are balanced and symmetrical, an insertion can be made, i.e. two current transformers instead of three can be used; the instrument will calculate by difference the third phase which is not measured directly, considering it as identical to the other two. There are different families of products on the market: instruments which measure a single electrical parameter (voltage, current, frequency, and phase angle cosϕ), generally used in single-phase systems, as instrumentation on the machine, and instruments allowing all the electrical parameters to be measured and displayed, both for the single-phase system and for the three-phase system.


In a single phase system, analog and digital instruments are selected to measure voltage, current, frequency, and power factor. N nodes are connected in a multipoint RS485 network. All other nodes receive these data. When it was able to receive more data, the receiver would use the handshaking lines to signal the transmitter that it was OK to send more data. Another problem with this scheme is that the transmitter needs to stay enabled during the transmission of all of the data. It is made up of hardware products (sensors, data loggers, and gateways, for example), software services (SenseCAP portal, mobile App, open dashboard), and an API for system and data management. And that with an interface which does not require intelligent network hardware: the implementation on the software side is not much more difficult than with RS232. Interesting is, that RS232 is the only interface capable of full duplex communication. It is also able to provide realtime Full HD(1080p or 720p) live and playback image. Some measuring instruments have bar indicators that show the current level as a percentage of the set full scale. If you ever wanted to connect to device in the same building (e.g. to machinery on production hal) and to you have to go to it to connect your computer.


PLC systems are used to monitor and control operations, while HMI network systems allow interaction with machinery and control them. In this situation, bandwidth can be used for almost 100%. There are other implementations of RS485 networks where every node can start a data session on its own. Some RS-485 implementations (in particular, some Ethernet configurations) (also some Macintosh GPIO socket) use 4 wires (2 pairs) for point-to-point communication. This is comparable with the way ethernet networks function. And now the most important question, how does RS485 function in practice? Network topology is probably the reason why RS485 is now the favorite of the four mentioned interfaces in data acquisition and control applications. In the picture above, the general network topology of RS485 is shown. The first time is in the total load limit stating that the total load limit of the network including fail-safe provisions, should be no less than 54Ω. This implies that the fail-safe provisions are resistance external to the receiver. If not only the electrical parameters are to be monitored, but also the energy consumption, measuring instruments which also have active and reactive energy metering should be selected.



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