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MSC8152SVT1000B 数据表(PDF) 28 Page - Freescale Semiconductor, Inc |
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MSC8152SVT1000B 数据表(HTML) 28 Page - Freescale Semiconductor, Inc |
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28 / 68 page ![]() MSC8152 Dual-Core Digital Signal Processor Data Sheet, Rev. 1 Electrical Characteristics Freescale Semiconductor 28 2.5.1.4 DDR Reference Current Draw Table 9 lists the current draw characteristics for MVREF. Note: Values when used at recommended operating conditions (see Table 3). 2.5.2 High-Speed Serial Interface (HSSI) DC Electrical Characteristics The MSC8152 features an HSSI that includes two 4-channel SerDes ports used for high-speed serial interface applications (PCI Express, Serial RapidIO interfaces, and SGMII). This section and its subsections describe the common portion of the SerDes DC, including the DC requirements for the SerDes reference clocks and the SerDes data lane transmitter (Tx) and receiver (Rx) reference circuits. The data lane circuit specifications are specific for each supported interface, and they have individual subsections by protocol. The selection of individual data channel functionality is done via the Reset Configuration Word High Register (RCWHR) SerDes Protocol selection fields (S1P and S2P). Specific AC electrical characteristics are defined in Section 2.6.2, “HSSI AC Timing Specifications.” 2.5.2.1 Signal Term Definitions The SerDes interface uses differential signaling to transfer data across the serial link. This section defines terms used in the description and specification of differential signals. Figure 4 shows how the signals are defined. For illustration purposes only, one SerDes lane is used in the description. Figure 4 shows the waveform for either a transmitter output (SR[1–2]_TX and SR[1–2]_TX) or a receiver input (SR[1–2]_RX and SR[1–2]_RX). Each signal swings between A volts and B volts where A>B. Table 9. Current Draw Characteristics for MVREF Parameter / Condition Symbol Min Max Unit Current draw for MVREFn • DDR2 SDRAM • DDR3 SDRAM IMVREFn — 300 250 μA μA Figure 4. Differential Voltage Definitions for Transmitter or Receiver Differential Swing, VID or VOD = A – B A Volts B Volts Differential Peak Voltage, VDIFFp = |A – B| Differential Peak-Peak Voltage, VDIFFpp = 2 × VDIFFp (not shown) SR[1–2]_TX or SR[1–2]_RX SR[1–2]_TX or SR[1–2]_RX Vcm = (A + B)/2 |
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