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STA8100GA 데이터시트(PDF) 13 Page - STMicroelectronics |
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STA8100GA 데이터시트(HTML) 13 Page - STMicroelectronics |
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13 / 42 page ![]() DS13006 Rev 4 13/42 STA8100GA General description 33 3.2 RF front end (G5RF) The integrated RF front-end is able to support different bands (L1, L2, L5, and E6) thanks to a programmable and flexible RF-IF chain driven by a fractional PLL. The RF_IF chain is followed by a 3-bit ADC able to convert the IF signal to Sign (SIGN) and Magnitude (MAG1, MAG0) bit. The MAG bit is internally integrated in order to control the variable gain amplifiers. The embedded fractional PLL allows supporting a wide range of reference clocks (10 to 55 MHz). 3.3 Multi-band multi-constellation base band (G5BB) processor STA8100GA integrates G5BB proprietary IP, which is the STMicroelectronics latest generation high-sensitivity baseband processor fully compliant with all different constellations and bands: GPS, Galileo, Glonass, BeiDou, NAVIC (former IRNSS) and QZSS systems. 3.4 MCU sub system The Cortex® M7 core masters the system resources (memories, registers, and external memory controllers) through the AXI, AHB and APB interconnections present in the SOC. 3.4.1 Caches The size of the instruction and data cache used for ARM® sub-system in STA8100GA is 16 KB each. 3.4.2 TCM ARM® Cortex® M7 has a TCM Control Unit (TCU) with TCM interfaces and an AHB slave (AHBS) interface for system access to TCMs. These TCM memories are integrated outside the ARM® sub-system. STA8100GA has a 64 KB ITCM memory and 384 KB of DTCM memory. In the DTCM memory 160 KB is dedicated for ARM® usage and the remaining 224 KB DTCM is shared between the ARM® sub-system and the G5BB module. ARM® provides access to the TCM memories through an AHB slave interface. This AHBS interface is connected to the AMBA infrastructure in STA8100GA so that DMA present on the bus can access the TCM memories MCU. 3.4.3 Nested Vector Interrupt Controller (NVIC) This Nested Vectored Interrupt Controller (NVIC) allows the operative system interrupt handler to quickly dispatch interrupt service routines in response to peripheral interrupts. It provides a software interface to the interrupt system. ARM® Cortex® M7 has an NVIC module for handling the interrupts. The NVIC supports 128 interrupts with 16 levels of priority, which can be changed dynamically. The software can control each request line to generate software interrupts. |
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