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EDBA164B4PR-1DATF-R 数据表(PDF) 129 Page - Micron Technology |
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EDBA164B4PR-1DATF-R 数据表(HTML) 129 Page - Micron Technology |
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129 / 152 page ![]() Cycle Time Derating for Core Timing Parameters For a given number of clocks (tnPARAM), when tCK(avg) and tERR(tnPARAM),act exceed tERR(tnPARAM),allowed, cycle time derating may be required for core timing parame- ters. CycleTimeDerating = max tPARAM +tERR(tnPARAM),act – tERR(tnPARAM),allowed – tCK(avg) , 0 tnPARAM Cycle time derating analysis should be conducted for each core timing parameter. The amount of cycle time derating required is the maximum of the cycle time deratings de- termined for each individual core timing parameter. Clock Cycle Derating for Core Timing Parameters For each core timing parameter and a given number of clocks (tnPARAM), clock cycle derating should be specified with tJIT(per). For a given number of clocks (tnPARAM), when tCK(avg) plus (tERR(tnPARAM),act) ex- ceed the supported cumulative tERR(tnPARAM),allowed, derating is required. If the equation below results in a positive value for a core timing parameter (tCORE), the re- quired clock cycle derating will be that positive value (in clocks). ClockCycleDerating = RU tPARAM + tERR(tnPARAM),act – tERR(tnPARAM),allowed – tnPARAM tCK(avg) Cycle-time derating analysis should be conducted for each core timing parameter. Clock Jitter Effects on Command/Address Timing Parameters Command/address timing parameters (tIS, tIH, tISCKE, tIHCKE, tISb, tIHb, tISCKEb, tIHCKEb) are measured from a command/address signal (CKE, CS_n, or CA[9:0]) transi- tion edge to its respective clock signal (CK_t/CK_c) crossing. The specification values are not affected by the tJIT(per) applied, because the setup and hold times are relative to the clock signal crossing that latches the command/address. Regardless of clock jitter values, these values must be met. Clock Jitter Effects on READ Timing Parameters tRPRE When the device is operated with input clock jitter, tRPRE must be derated by the tJIT(per),act,max of the input clock that exceeds tJIT(per),allowed,max. Output derat- ings are relative to the input clock: tRPRE(min,derated) = 0.9 – tJIT(per),act,max – tJIT(per),allowed,max tCK(avg) For example, if the measured jitter into a LPDDR2-800 device has tCK(avg) = 2500ps, tJIT(per),act,min = –172ps, and tJIT(per),act,max = +193ps, then tRPRE,min,derated = 0.9 - (tJIT(per),act,max - tJIT(per),allowed,max)/tCK(avg) = 0.9 - (193 - 100)/2500 = 0.8628 tCK(avg). tLZ(DQ), tHZ(DQ), tDQSCK, tLZ(DQS), tHZ(DQS) 216-Ball and 220-Ball, Dual-Channel LPDDR2 SDRAM Clock Period Jitter 09005aef85eb530a 216b_220b_2ch_2e0e_embedded_lpddr2.pdf – Rev. F 08 /16 EN 129 Micron Technology, Inc. reserves the right to change products or specifications without notice. © 2014 Micron Technology, Inc. All rights reserved. |
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