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SCF5250 数据表(PDF) 7 Page - Freescale Semiconductor, Inc |
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SCF5250 数据表(HTML) 7 Page - Freescale Semiconductor, Inc |
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7 / 56 page ![]() SCF5250 Data Sheet: Technical Data, Rev. 1.3 Freescale Semiconductor 7 1.2.22 JTAG To help with system diagnostics and manufacturing testing, the SCF5250 includes dedicated user-accessible test logic that complies with the IEEE 1149.1A standard for boundary scan testability, often referred to as Joint Test Action Group, or JTAG. For more information, refer to the IEEE 1149.1A standard. Freescale provides BSDL files for JTAG testing. 1.2.23 System Debug Interface The ColdFire processor core debug interface supports real-time instruction trace and debug, plus background-debug mode. A background-debug mode (BDM) interface provides system debug. In real-time instruction trace, four status lines provide information on processor activity in real time (PST pins). A four-bit wide debug data bus (DDATA) displays operand data and change-of-flow addresses, which helps track the machine’s dynamic execution path. 1.2.24 Crystal and On-Chip PLL Typically, an external 16.92 MHz or 33.86 MHz clock input is used for CD R/W applications, while an 11.2896 MHz clock is more practical for Portable CD player applications. However, the on-chip programmable PLL, which generates the processor clock, allows the use of almost any low frequency external clock (5-35 MHz). Two clock outputs (MCLK1 and MCLK2) are provided for use as Audio Master Clock. The output frequencies of both outputs are programmable to Fxtal, Fxtal/2, Fxtal/3, and Fxtal/4. The Fxtal/3 option is only available when the 33.86 MHz crystal is connected. The SCF5250 supports VCO operation of the oscillator by means of a 16-bit pulse density modulation output. Using this mode, it is possible to lock the oscillator to the frequency of an incoming IEC958 or IIS signal. The maximum trim depends on the type and design of the oscillator. Typically a trim of +/- 100 ppm can be achieved with a crystal oscillator and over +/- 1000 ppm with an LC oscillator. 1.2.25 Boot ROM The boot ROM on the SCF5250 serves to boot the CPU in designs which do not have external Flash memory or ROM. Typically this occurs in systems which have a separate MCU to control the system, and/or the SCF5250 is used as a stand-alone decoder. The SCF5250 can be booted in one of three modes: • External ROM • Internal ROM Master mode – boots from I2C, SPI, or IDE • Internal ROM Slave mode – boots from I2C or UART 1.2.26 Voltage Regulator The SCF5250 contains an on-chip linear regulator that generates 1.2V from a 3.3V input. The regulator is self-contained and drives the 1.2V core voltage out on one pin that can be used to power the core supply |
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