Download CHAPTER 1 - HARMAN Luxury Audio Group
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Lexicon Buttons and Associated Modes START UP MODES Right Mode Zone 2 DVD2 Zone 3 DVD 2 Mode Description - - - Normal Boot Process executes uninterrupted * * - AMON Allows the loading of new code without re-flashing storage RAM - * * Diagnostics Places unit into diag mode, allowing individual testing of functionality Behind the display window are three LEDs that are driven directly from the processor. These LEDs are driven via the PE[10:12] port (108, 110, 111). When these port pins are high, the associated LED lights. The following table illustrates their functionality. DISPLAY LED INDICATORS PORT BIT SIGNAL NAME FUNCTION PE10 FP_IR_ACK Yellow LED indicating infra-red remote access PE11 SYSLED Blue LED indicating unit is on and functional PE12 OVLED Red LED indicating clipping on an audio input Miscellaneous Peripheral Control Signals: CPU_WRD_CLK_MON, FLBY/ Timer Channel 0 is used as an interval counter that monitors the period of FSCLK from both the Main Zone and Zone 2. The FPGA Multiplexes each clock signal into the TIOC0A port (85) as signal CPU_WRD_CLK_MON. With each rising edge of FSCLK, the event timer is restarted and the period is verified by count value. FLBY/ is output from the storage FLASHRAM (U26) to indicate that the device is busy either during an erase or re-programming operation. The processor device monitors this signal via the PE14 port (1). When the signal is low, the FLASHRAM is not ready for read accesses. When high, the device may be accessed as normal. DRAM (U42) The DRAM used in this product is a standard 70nS 1Mx16 Fast Page Mode device (U42). The processor executes all software instructions from this device, except for the earliest phases of boot up. After DRAM testing has passed, all of the system code that resides in the FLASHRAM is migrated to the DRAM for execution. The data bus from the CPU is one word wide, as mandated by the fact that all instructions are word length. As all accesses are word wide, the address bus to the DRAM is oriented on word boundaries, hence the 10-bit address beginning at CPUADDR1 instead of CPUADDR0. Boot Mode Jumper Selection The RV-8 supports multiple booting options to aid in software development. In the final product, only one of these modes is available, booting from FLASH, as described on page 6-15. For development, booting may be accomplished from either the EEPROM or the ROMulator by proper jumper selection, as 6-13