OSI Layers and Their Functions
The OSI (Open Systems Interconnection) Reference Model divides the communication system into seven abstract layers, each with a specific function. The seven layers of the OSI model are:
Physical Layer: The Physical Layer is responsible for the transmission of raw bits over a communication channel. It defines the physical characteristics of the transmission medium, such as the type of cable, the voltage levels, and the physical connectors used to transmit data.
Data Link Layer: The Data Link Layer is responsible for the reliable transfer of data across a physical link. It defines the protocol for framing data, error detection and correction, and flow control.
Network Layer: The Network Layer is responsible for the logical addressing and routing of data between networks. It defines the protocol for delivering data across multiple networks, such as the Internet Protocol (IP) in the TCP/IP protocol suite.
Transport Layer: The Transport Layer provides end-to-end communication between applications. It is responsible for segmenting and reassembling data, providing error detection and recovery, and flow control. Examples of transport layer protocols include Transmission Control Protocol (TCP) and User Datagram Protocol (UDP).
Session Layer: The Session Layer is responsible for establishing, maintaining, and terminating communication sessions between applications. It provides services such as authentication, encryption, and connection management.
Presentation Layer: The Presentation Layer is responsible for the presentation and translation of data between different formats used by different applications. It provides services such as data compression, encryption, and decryption.
Application Layer: The Application Layer provides network services to end-users and applications. It defines protocols for specific applications, such as file transfer (FTP), email (SMTP), and web browsing (HTTP).
Each layer of the OSI model performs a specific function and communicates with adjacent layers using defined protocols and interfaces. The layering concept provides a modular and scalable approach to designing communication systems and enables interoperability between different devices and technologies.
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