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PCK2011 数据表(PDF) 4 Page - NXP Semiconductors |
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PCK2011 数据表(HTML) 4 Page - NXP Semiconductors |
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4 / 11 page ![]() Philips Semiconductors Preliminary specification PCK2011 Direct Rambus ™ Clock Generator 1999 Jan 19 4 This configuration achieves frequency-lock between the controller and Rambus Channel clocks (PCLK and SYNCLK). These clock signals are matched and phase-aligned at the RMC/RAC boundary in order to allow data transfers to occur across this boundary without additional latency. The main clock source drives the system clock (PCLK) to the ASIC, and also drives the reference clock (REFCLK) to the DRCG. REFCLK may or may not be the same frequency as PCLK. A PLL inside the DRCG multiplies REFCLK to generate the desired frequency for BUSCLK. BUSCLK is driven on the Rambus Channel through a terminated transmission line. At the mid-point of the Channel, the RAC senses BUSCLK using its own DLL for clock alignment, followed by a fixed divide-by- 4 circuit that generates SYNCLK. Pclk is the clock used in the Rambus memory controller (RMC) in the ASIC. SYNCLK is the clock used at the ASIC interface of the RAC. The DRCG together with the Gear Ratio Logic enables the controller to exchange data directly from the PCLK domain to the SYNCLK domain without incurring additional latency for synchronization. In general, PCLK and SYNCLK can run at different frequencies, so the Gear Ratio Logic must select the appropriate M and N dividers such that the frequencies of PCLK/M and SYNCLK/N are equal. In one example, PCLK=133MHz and SYNCLK=100MHz, and M=4 while N=3, giving PCLK/M = SYNCLK/N = 33MHz. Figure 4 shows an example of the clock waveforms generated with the Gear Ratio Logic. PCK2010 Direct Rambus Clock Generator (DRCG) Gear Ratio- Logic /4 DLL MN BUSCLK REFCLK RMC PCLK SYNCLK RAC RDRAMs CONTROLLER SW00290 Figure 1. System Clock Architecture The ASIC drives the output clocks, Pclk and SynClk/N from the Gear Ratio Logic to the DRCG Phase Detector inputs. The routing of the Pclk/M and SynClk/N signal traces must be matched in impedance and propagation delay on the ASIC as well as on the board. These signals are not part of the Rambus Channel and their routing must be matched by board designers. After comparing the phases of Pclk/M and SynClk/N, the DRCG Phase Detector drives a phase aligner that adjusts the phase of DRCG output clock, Busclk. Since the other elements in the distributed loop have a fixed delay, adjusting Busclk adjusts the phase of SynClk and thus the phase of SynClk/N. In this manner, the distributed loop adjusts the phase of SynClk/N to match that of Pclk/M, eliminating the phase error at the input of the DRCG. When the clocks are aligned, data can be exchanged directly from the Pclk domain to the SynClk domain. The Gear Ratio Logic supports four clock ratios (2.0, 1.5, 1.33, and 1.0), where the ratio is defined as the ratio of Pclk/SynClk. Since Busclk = 4*SynClk, this ratio also is equal to 4*Pclk/Busclk. Other ratios could be used, depending on particular system implementations. |
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