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AM652X Datasheet(PDF) 221 Page - Texas Instruments |
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AM652X Datasheet(HTML) 221 Page - Texas Instruments |
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221 / 299 page ![]() CLOCKOUT DATAOUT PRSO1 PRSO2H PRSO3 SPRSP08_TIMING_PRU_06 PRSO2L DATAIN PRSI1 PRSI2 SPRSP08_TIMING_PRU_05 221 AM6548, AM6528, AM6546 AM6526, AM6527 www.ti.com SPRSP08E – NOVEMBER 2017 – REVISED OCTOBER 2018 Submit Documentation Feedback Product Folder Links: AM6548 AM6528 AM6546 AM6526 AM6527 Specifications Copyright © 2017–2018, Texas Instruments Incorporated Table 5-96. PRU_ICSSG PRU Timing Requirements - Shift In Mode NO. PARAMETER DESCRIPTION MODE MIN MAX UNIT PRSI1 tw(PRU_DATAINL) Pulse Duration, PRU_DATAIN Low 2+2*P (1) ns PRSI2 tw(PRU_DATAINH) Pulse Duration, PRU_DATAIN High 2+2*P (1) ns (1) P = Internal shift in clock period, defined by PRU0_GPI_DIV0 and PRU0_GPI_DIV1 bit fields in the GPCFGn register. Figure 5-105. PRU_ICSSG PRU Shift In Timing Table 5-97. PRU_ICSSG PRU Switching Characteristics - Shift Out Mode NO. PARAMETER DESCRIPTION MODE MIN MAX UNIT PRSO1 tc(PRU_CLKOUT) Cycle time, PRU_CLKOUT 10 ns PRSO2 tw(PRU_CLKOUTL) Pulse Duration, PRU_CLKOUT Low -0.3 + 0.475*P*Z (1)(2) ns PRSO3 tw(PRU_CLKOUTH) Pulse Duration, PRU_CLKOUT High -0.3 + 0.475*P*Y (1)(3) ns PRSO4 td(PRU_CLKOUT- PRU_DATAOUT) Delay time, PRU_CLKOUT to PRU_DATAOUT Valid 0 3 ns (1) P = Software programmable shift out clock period, defined by PRU0_GPO_DIV0 and PRU0_GPO_DIV1 bit fields in the GPCFGn register. (2) The Z parameter is defined as follows: If PRU0_GPI_DIV0 and PRU0_GPI_DIV1 are INTEGERS -or- if PRU0_GPI_DIV0 is a NON- INTEGER and PRU0_GPI_DIV1 is an EVEN INTEGER then, Z equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1). If PRU0_GPI_DIV0 is a NON-INTEGER and PRU0_GPI_DIV1 is an ODD INTEGER then, Z equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 + 0.5). If PRU0_GPI_DIV0 is an INTEGER and PRU0_GPI_DIV1 is a NON-INTEGER then, Z equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 + 0.5 * PRU0_GPI_DIV0). If PRU0_GPI_DIV0 and PRU0_GPI_DIV1 are NON-INTEGERS then, Z equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 + 0.25 * PRU0_GPI_DIV0). (3) The Y parameter is defined as follows: If PRU0_GPI_DIV0 and PRU0_GPI_DIV1 are INTEGERS -or- if PRU0_GPI_DIV0 is a NON- INTEGER and PRU0_GPI_DIV1 is an EVEN INTEGER then, Y equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1). If PRU0_GPI_DIV0 is a NON-INTEGER and PRU0_GPI_DIV1 is an ODD INTEGER then, Y equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 - 0.5). If PRU0_GPI_DIV0 is an INTEGER and PRU0_GPI_DIV1 is a NON-INTEGER then, Y equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 - 0.5 * PRU0_GPI_DIV0). If PRU0_GPI_DIV0 and PRU0_GPI_DIV1 are NON-INTEGERS then, Y1 equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 - 0.25 * PRU0_GPI_DIV0) and Y2 equals (PRU0_GPI_DIV0 * PRU0_GPI_DIV1 + 0.25 * PRU0_GPI_DIV0), where Y1 is the first high pulse and Y2 is the second high pulse. Figure 5-106. PRU_ICSSG PRU Shift Out Timing 5.11.5.21.1.4 PRU_ICSSG PRU Sigma Delta and Peripheral Interface Modes Electrical Data and Timing |
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