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TMS320VC33 数据表(PDF) 15 Page - Texas Instruments |
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TMS320VC33 数据表(HTML) 15 Page - Texas Instruments |
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15 / 57 page ![]() TMS320VC33 DIGITAL SIGNAL PROCESSOR SPRS087E − FEBRUARY 1999 − REVISED JANUARY 2004 15 POST OFFICE BOX 1443 • HOUSTON, TEXAS 77251−1443 power sequencing considerations Though an internal ESD and CMOS latchup protection diode exists between CVDD and DVDD, it should not be considered a current-carrying device on power up. An external Schottky diode should be used to prevent CVDD from exceeding DVDD by more than 0.7 V. The effect of this diode during power up is that if CVDD is powered up first, DVDD follows by one diode drop even when the DVDD supply is not active. Typical systems using LDOs of the same family type for both DVDD and CVDD will track each other during power up. In most cases, this is acceptable; but if a high-impedance pin state is required on power up, the SHZ pin can be used to asynchronously disable all outputs. RESET should not be used in this case since some signals require an active clock for RESET to have an effect and the clock may not yet be active. The internal core logic becomes functional at approximately 0.8 V while the external pin IO becomes active at about 1.5 V. EDGEMODE When EDGEMODE = 1, a sampled digital delay line is decoded to generate a pulse on the falling edge of the interrupt pin. To ensure interrupt recognition, input signal logic-high and logic-low states must be held longer than the synchronizer delay of one CPU clock cycle. Holding these inputs to no less than two cycles in both the logic-low and logic-high states is sufficient. When EDGEMODE = 0, a logic-low interrupt pin continually sets the corresponding interrupt flag. The CPU or DMA can clear this flag within two cycles of it being set. This is the maximum interrupt width that can be applied if only one interrupt is to be recognized. The CPU can manually clear IF bits within an interrupt service routine (ISR), effectively lengthening the maximum ISR width. After reset, EDGEMODE is temporarily disabled, allowing logic-low INT pins to be detected for bootload operation. DQ Q D DQ Q D Q D H1 H3 INT 1 S R Q IF Bit CPU_RESET CPU_SET Delay RESET EDGEMODE 0 Figure 7. EDGEMODE and Interrupt Flag CIrcuit reset operation When RESET is applied, the CPU attempts to safely exit any pending read or write operations that may be in progress. This can take as much as 10 CPU cycles, after which, the address, data, and control pins will be in an inactive or high-impedance state. When both RESET and SHZ are applied, the device immediately enters the reset state with the pins held in high-impedance mode. SHZ should then be disabled at least 10 CPU cycles before RESET is set high. SHZ can be used during power-up sequencing to prevent undefined address, data, and control pins, avoiding system conflicts. |
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