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MCIMX6DP6AYM2AB Datenblatt(PDF) 39 Page - NXP Semiconductors |
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MCIMX6DP6AYM2AB Datenblatt(HTML) 39 Page - NXP Semiconductors |
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39 / 160 page ![]() Electrical Characteristics i.MX 6DualPlus/6QuadPlus Applications Processors Industrial Products, Rev. 3, 11/2018 NXP Semiconductors 39 4.6.3 DDR I/O DC Parameters The DDR I/O pads support LPDDR2 and DDR3/DDR3L operational modes. To date LPDDR2 has not been fully validated or supported in the BSP. For further details contact your local NXP representative. Table 21. GPIO I/O DC Parameters Parameter Symbol Test Conditions Min Max Unit High-level output voltage1 1 Overshoot and undershoot conditions (transitions above OVDD and below GND) on switching pads must be held below 0.6 V, and the duration of the overshoot/undershoot must not exceed 10% of the system clock cycle. Overshoot/ undershoot must be controlled through printed circuit board layout, transmission line impedance matching, signal line termination, or other methods. Non-compliance to this specification may affect device reliability or cause permanent damage to the device. Voh Ioh = -0.1 mA (DSE2 = 001, 010) Ioh = -1 mA (DSE = 011, 100, 101, 110, 111) 2 DSE is the Drive Strength Field setting in the associated IOMUX control register. OVDD – 0.15 — V Low-level output voltage1 Vol Iol = 0.1 mA (DSE2 = 001, 010) Iol = 1mA (DSE = 011, 100, 101, 110, 111) —0.15 V High-Level DC input voltage1, 3 3 To maintain a valid level, the transition edge of the input must sustain a constant slew rate (monotonic) from the current DC level through to the target DC level, Vil or Vih. Monotonic input transition time is from 0.1 ns to 1 s. Vih — 0.7 × OVDD OVDD V Low-Level DC input voltage1, 3 Vil — 0 0.3 × OVDD V Input Hysteresis Vhys OVDD = 1.8 V OVDD = 3.3 V 0.25 — V Schmitt trigger VT+3, 4 4 Hysteresis of 250 mV is guaranteed over all operating conditions when hysteresis is enabled. VT+ — 0.5 × OVDD — V Schmitt trigger VT–3, 4 VT– — — 0.5 × OVDD V Input current (no pull-up/down) Iin Vin = OVDD or 0 -1 1 μA Input current (22 k Ω pull-up) Iin Vin = 0 V Vin = OVDD —212 1 μA Input current (47 k Ω pull-up) Iin Vin = 0 V Vin = OVDD —100 1 μA Input current (100 k Ω pull-up) Iin Vin = 0 V Vin= OVDD —48 1 μA Input current (100 k Ω pull-down) Iin Vin = 0 V Vin = OVDD —1 48 μA Keeper circuit resistance Rkeep Vin = 0.3 x OVDD Vin = 0.7 x OVDD 105 175 k Ω |
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