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PC7410 Datasheet(PDF) 22 Page - ATMEL Corporation |
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PC7410 Datasheet(HTML) 22 Page - ATMEL Corporation |
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22 / 54 page ![]() 22 PC7410 2141D–HIREL–02/04 7. All other output signals are composed of the following - A[0:31], AP[0:3], TT[0:4], TBST, TSIZ[0:2], GBL, WT, CI, DH[0:31], DL[0:31], DP[0:7], BR, CKSTP_OUT, DRDY, HIT, QREQ, RSRV. 8. Output valid time is measured from 2.4V to 0.8V which may be longer than the time required to discharge from Vdd to 0.8V. 9. According to the 60x bus protocol, ABB and DBB are driven only by the currently active bus master. They are asserted low then precharged high before returning to high-Z as shown in Figure 9. The nominal precharge width for ABB or DBB is 0.5 x t SYSCLK, i.e., less than the minimum tSYSCLK period, to ensure that another master asserting ABB, or DBB on the following clock will not contend with the precharge. Output valid and output hold timing is tested for the signal asserted. Output valid time is tested for precharge.The high-Z behavior is guaranteed by design. 10. According to the 60x bus protocol, ARTRY can be driven by multiple bus masters through the clock period immediately fol- lowing AACK. Bus contention is not an issue since any master asserting ARTRY will be driving it low. Any master asserting it low in the first clock following AACK will then go to high-Z for one clock before precharging it high during the second cycle after the assertion of AACK. The nominal precharge width for ARTRY is 1.0 tSYSCLK ; i.e., it should be high-Z as shown in Fig- ure 9 before the first opportunity for another master to assert ARTRY. Output valid and output hold timing are tested for the signal asserted. Output valid time is tested for precharge. The high-Z behavior is guaranteed by design. 11. Guaranteed by design and not tested. 12. Output hold time characteristics can be altered by the use of the L2_TSTCK pin during system reset, similar to L2 output hold being altered by the use of bits [14-15] in the L2CR register. Information on the operation of the L2_TSTCLK will be included in future revisions of this specification. Figure 9. Input/Output Timing Diagram tIVKH tIXKH tKHOV tKHOX tKHOE tKHOZ tKHTSV tKHTSV tKHABPZ tKHTSX tKHARV tKHARV tKHARPZ tKHARP tKHARX VM = Midpont Voltage (OVDD/2) SYSCLK All Inputs VM VM VM All Outputs (except TS, ABB, ARTRY, DBB) TS, ABB/AMON[0], DBB/DMON[0] All Outputs (except TS, ABB, ARTRY, DBB) ARTRY, SHD0, SHD1 |
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