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AM263P4 数据表(PDF) 122 Page - Texas Instruments |
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AM263P4 数据表(HTML) 122 Page - Texas Instruments |
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122 / 168 page ![]() 6.11.5.12 Octal Serial Peripheral Interface (OSPI) OSPI0 offers two data capture modes, PHY mode and Tap mode. PHY mode uses an internal reference clock to transmit and receive data via a DLL based PHY, where each reference clock cycle produces a single cycle of OSPI0_CLK for Single Data Rate (SDR) transfers or a half cycle of OSPI0_CLK for Double Data Rate (DDR) transfers. PHY mode supports four clocking topologies for the receive data capture clock. Internal PHY Loopback - uses the internal reference clock as the PHY receive data capture clock. Internal Pad Loopback - uses OSPI0_LBCLKO looped back into the PHY from the OSPI0_LBCLKO pin as the PHY receive data capture clock. External Board Loopback - uses OSPI0_LBCLKO looped back into the PHY from the OSPI0_DQS pin as the PHY receive data capture clock. DQS - uses the DQS output from the attached device as the PHY receive data capture clock. SDR transfers are not supported when using the Internal Pad Loopback and DQS clocking topologies. DDR transfers are not supported when using the Internal PHY Loopback or Internal Pad Loopback clocking topologies. Tap mode uses an internal reference clock with selectable taps to adjusted data transmit and receive capture delays relative to OSPI0_CLK, which is a divide by 4 of the internal reference clock for SDR transfers or a divide by 8 of the internal reference clock for DDR transfers. Tap mode only supports one clocking topology for the receive data capture clock. No Loopback - uses the internal reference clock as the Tap receive data capture clock. This clocking topology supports a maximum internal reference clock rate of 200MHz, which produces an OSPI0_CLK rate up to 50MHz for SDR mode or 25MHz for DDR mode. For more details about features and additional description information on the device Octal Serial Peripheral Interface, see the corresponding subsections within Signal Descriptions and Detailed Description sections. OSPI PHY Mode defines timing requirements and switching characteristics associated with PHY mode and OSPI Tap Mode defines timing requirements and switching characteristics associated with Tap mode. OSPI Timing Conditions presents timing conditions for OSPI0. For more information, see Octal Serial Peripheral Interface (OSPI) section in the device TRM. 6.11.5.12.1 OSPI Timing Conditions PARAMETER MODE MIN MAX UNIT INPUT CONDITIONS SRI Input slew rate 2 6 V/ns OUTPUT CONDITIONS CL Output load capacitance 3 15 pF PCB CONNECTIVITY REQUIREMENTS td(Trace Delay) Propagation delay of OSPI0_CLK trace No Loopback Internal PHY Loopback Internal Pad Loopback 450 ps Propagation delay of OSPI0_DQS trace DQS L(1) - 30 L(1) + 30 ps Propagation delay of OSPI0_LBCLKO trace External Board Loopback 2L(1) - 30 2L(1) + 30 ps td(Trace Mismatch Delay) Propagation delay mismatch of OSPI0_D[7:0] and OSPI0_CSn[1:0] relative to OSPI0_CLK All modes 60 ps (1) L = Propagation delay of OSPI0_CLK trace 6.11.5.12.2 OSPI PHY Mode 6.11.5.12.2.1 OSPI0 With PHY Data Training Read and write data valid windows will shift due to variation in process, voltage, temperature, and operating frequency. A data training method may be implemented to dynamically configure optimal read and write timing. AM263P4, AM263P2, AM263P4-Q1, AM263P2-Q1 SPRSP81D – OCTOBER 2023 – REVISED MAY 2025 www.ti.com 122 Submit Document Feedback Copyright © 2025 Texas Instruments Incorporated Product Folder Links: AM263P4 AM263P2 AM263P4-Q1 AM263P2-Q1 |
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