GSM BTS Transceiver Power Class Explained
Understand the GSM BTS Transceiver Power Class, covering maximum output power for different GSM bands including GSM-400, GSM-900, DCS-1800, and PCS-1900.
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Understand the GSM BTS Transceiver Power Class, covering maximum output power for different GSM bands including GSM-400, GSM-900, DCS-1800, and PCS-1900.
Explanation of GSM combined channel configuration for Time Slot 0 (TS0) in the 51-frame multiframe, mapping FCCH, SCH, BCCH, CCCH, SDCCH, and SACCH channels.
GSM Common Control Channels (CCCHs) facilitate communication between the network and mobile subscribers, conveying information and providing network access.
Learn about the GSM Fast Associated Control Channel (FACCH), used for rapid information exchange between a mobile station and base transceiver station.
The GSM Frequency Correction Channel (FCCH) is a downlink channel used for synchronization between the BTS and MS by transmitting a continuous wave signal.
Explore the causes and triggers of GSM handover, a crucial process for maintaining uninterrupted mobile connections. Learn about signal strength, quality, distance, speed, traffic load, and maintenance triggers.
Overview of GSM Mobile Station (MS) power classes, ranging from Class 1 to Class 5, defining the maximum power output of a mobile device.
Explanation of GSM noncombined channel configuration for time slots TS0 and TS1. Channels covered: FCCH, SCH, BCCH, CCCH, and SDCCH in both downlink and uplink.
Explore the differences between GSM OSS (Operation and Support System) and BSS (Base Station Subsystem) in GSM network architecture, their components, and functions.
Learn about the GSM PCH (Paging Channel), used for paging mobile devices in idle mode to alert them about incoming calls.
Learn about the GSM Random Access Channel (RACH), used by mobile devices to access the GSM network, particularly during call setup. Understand collision avoidance and the RACH frame structure.
Explore GSM's SACCH, used for power control, timing advance, and neighbor cell measurements during active calls.
Learn about the GSM Standalone Dedicated Control Channel (SDCCH), a signaling channel between a GSM mobile device and a GSM BTS, operating independently of the traffic channel.
Learn about the GSM Synchronization Channel (SCH), its role in time synchronization, and the information it carries, including the frame number and BSIC.
Explore GSM System Information (SI) messages (SI1-SI9, SI13), their purpose, and how they aid in troubleshooting GSM UE issues. Understand BCCH and SACCH message types.
Understand key GSM terms like BS_AG_BLKS_RES, PLMN, Location Area (LA), Routing Area (RA), and Cell Global Identity (CGI). Learn how these elements define network hierarchy and mobile station location management.
Explore crucial GSM timers like T100, T200, T301, T3126, T3146, T3182, T3190, T3192, T3124, T3230, and T3330. Understand their functions in managing radio links, call setup, and packet data transfer in GSM networks.
Overview of GSM timers used on the mobile side, including their functions and values, such as T3110, T3112, and T3114.
Overview of GSM timers used on the network side (BTS), including their functions and values for network operations.
Explore GSM traffic channels, focusing on Full Rate Speech (TCH/FS) and Half Rate Speech (TCH/HS) channels, their data rates, and processing steps.
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