Understanding RISC-V Processor Architecture
An introduction to the RISC-V processor architecture, its key elements, functions, and relevant links for further learning, including DSP applications.
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An introduction to the RISC-V processor architecture, its key elements, functions, and relevant links for further learning, including DSP applications.
Explore various satellite orbit types including Molnya, Tundra, and Low Earth Orbits (LEO) and how they're used to launch satellites.
Explore satellite parking lots: designated orbital positions for satellites after their mission. Learn about placement, monitoring, and decommissioning procedures.
Explore the SigFox protocol stack architecture, including RF, PHY, MAC, and Application layers, and their roles in efficient IoT communication within the SigFox network.
Explore SONET and SDH, physical layer standards for optical fiber communication. Learn about HDLC framing, key terminologies, rates, and the SONET STS-1 SDH frame structure.
Explore the 3G UMTS protocol stack, covering layers like Physical, Data Link (MAC, RLC, PDCP), and Network (RRC, NAS). Learn about functions, components, and how they ensure reliable communication.
Explore the layered architecture of the Bluetooth protocol stack, its core components, and key features in mobile computing and wireless communication.
Explore the GPS frame structure, including subframes, data rates, and the role of telemetry and handover words in satellite communication.
Explore the vital parts of a satellite, including the transponder, antenna subsystems, solar cells, batteries, and their functions in maintaining orbit.
A comprehensive overview of the Lonworks protocol stack, covering the physical, link, network, transport, session, presentation, and application layers.
Explore the PDH frame structure for 2Mbps, 8Mbps, 34Mbps, and 140Mbps, covering frame alignment signals (FAS) and key parameters like frame length and rate.
Explore the WAP protocol, its stack, programming model, infrastructure, and applications for mobile devices. Learn how WAP enables internet and web access on wireless phones and tablets.
Explore UMTS channels: logical, transport, and physical. Learn their roles in data transfer, how they are categorized, and their importance in optimizing network performance.
Explore UMTS frame structure, time slots, and their functions in 3G networks. Learn about frame organization, synchronization channels, and their impact on network performance.
Explore UMTS frequency bands and the meaning of UARFCN. Learn how UARFCN values relate to uplink and downlink frequencies for efficient 3G network planning.
Explore the complexities of underwater wireless communication, including acoustic methods, network topologies, protocol stacks, and emerging technologies.
Learn about the spectral mask requirements for 802.11ac WLAN transmitters, including key parameters and channel sizes.
Explore WLAN (WiFi) technology, its 802.11 standards, architecture, protocols, QoS, security, and comparison with other wireless technologies.
Explore the Z-Wave MAC layer functions, frame types, and key fields such as HomeID, NodeID, and Frame Control, essential for reliable Z-Wave network communication.
Explore the structure of Zigbee MAC layer frames, including beacon, data, acknowledgment, and MAC command frame formats. Learn about the frame control field and command identifiers.
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