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DSM2180F3 датащи(PDF) 41 Page - STMicroelectronics |
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DSM2180F3 датащи(HTML) 41 Page - STMicroelectronics |
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41 / 63 page ![]() 41/63 DSM2180F3 Figure 24. Reset (RESET) Timing Power On Reset, Warm Reset, Power-down Power On Reset. Upon Power-up, the device re- quires a Reset (RESET) pulse of duration tNLNH-PO after VCC is steady. During this time period, the de- vice loads internal configurations, clears some of the registers and sets the Flash memory into Op- erating mode. After the rising edge of Reset (RE- SET ), the device remains in the Reset mode for an additional period, tOPR, before the first memory ac- cess is allowed. The Flash memory is reset to the Read Array mode upon Power-up. Sector Select FS0-FS7 must all be Low, Write Strobe (WR, CNTL0) High, during Power On Reset for maximum security of the data contents and to remove the possibility of a byte being written on the first edge of Write Strobe (WR, CNTL0). Any Flash memory Write cy- cle initiation is prevented automatically when VCC is below VLKO. Table 19. Status During Power-On Reset, Warm Reset and Power-down Mode Warm Reset. Once the device is up and running, the device can be reset with a pulse of a much shorter duration, tNLNH. The same tOPR period is needed before the device is operational after warm reset. Figure 24 shows the timing of the Power-up and warm reset. I/O Pin, Register and PLD Status at Reset. Ta- ble 19 shows the I/O pin, register and PLD status during Power On Reset, warm reset and Power- down mode. PLD outputs are always valid during warm reset, and they are valid in Power On Reset once the internal device Configuration bits are loaded. This loading of the device is completed typically long before the VCC ramps up to operat- ing level. Once the PLD is active, the state of the outputs are determined by the PSDsoft Express equations. Programming In-Circuit using JTAG ISP In-System Programming (ISP) can be performed through the JTAG signals on Port C. This serial in- terface allows programming of the entire DSM de- vice or subsections (i.e. only Flash memory but not the PLDs) without and participation of the DSP. A blank DSM device soldered to a circuit board can be completely programmed in 10 to 20 seconds. The basic JTAG signals; TMS, TCK, TDI, and TDO form the IEEE-1149.1 interface. The DSM device does not implement the IEEE-1149.1 Boundary Scan functions. The DSM uses the JTAG interface for ISP only. However, the DSM device can reside in a standard JTAG chain with other JTAG devices as it will remain in BYPASS mode while other devices perform Boundary Scan. tNLNH-PO tOPR AI02866b RESET tNLNH tNLNH-A tOPR VCC V CC(min) Power-On Reset Warm Reset Port Configuration Power-On Reset Warm Reset Power-down Mode MCU I/O Input mode Input mode Unchanged PLD Output Valid after internal PSD configuration bits are loaded Valid Depends on inputs to PLD (addresses are blocked in PD mode) Register Power-On Reset Warm Reset Power-down Mode PMMR0 and PMMR2 Cleared to 0 Unchanged Unchanged OMC Flip-flop status Cleared to 0 by internal Power-On Reset Depends on .re and .pr equations Depends on .re and .pr equations All other registers Cleared to 0 Cleared to 0 Unchanged |
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