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ST6G3238ETBR Datasheet(PDF) 10 Page - STMicroelectronics |
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ST6G3238ETBR Datasheet(HTML) 10 Page - STMicroelectronics |
10 / 17 page DC and AC Parameters ST6G3238E 10/17 Table 8. AC Electrical Characteristics (f = 1MHz, 50% duty cycle, CL = 30pF, RL = 500Ω) Note: VIA = Input I/Os including CLK.h, CMD.h, DAT0.h, DAT1.h, DAT2.h, DAT3.h VIB = Input I/Os including CMD, DAT0, DAT1, DAT2, DAT3 Symbol Parameter Test Condition TA = -40 to 85 °C Unit VCCA = 1.8 ± 0.15V VCCA=1.8 ± 0.15V VCCA=2.5 ± 0.2V VCCB=2.5 ± 0.2V VCCB=2.7 ± 0.3V VCCB=2.7 ± 0.3V Min. Max. Min. Max. Min. Max. tPLH tPHL Propagation Delay Time An to Bn 1.0 7.2 1.0 6.6 1.0 6.1 ns tPLH tPHL Propagation Delay Time Bn to An 1.0 8.1 1.0 7.5 1.0 5.0 tOSLH tOSHL Output To Output Skew Time (1)(2) 1. Skew is defined as the absolute value of the difference between the actual propagation delay for any two outputs of the same device switching in the same direction, either HIGH or LOW ( tOSLH = | tPLHm = tPLHn |, tOSHL = | tPHLm – tPHLn | ) 2. Parameter guaranteed by design. 0.5 0.5 0.5 ns tCDLH tCDHL Clock And Data Skew Time 0.5 0.5 0.5 ns fmax Clock From A to B 52 52 52 MHz From B to A 52 52 52 Data From A to B 52 52 52 Mbps From B to A 52 52 52 Table 9. Output Slew Rate (f = 1MHz, 50% duty cycle, CL=30pF, RL=500 Ω) Symbol Parameter From To Test Condition TA = -40 to 85 °C Unit VCCA = 1.8V ± 0.15V VCCB = 3V ± 0.3V Min. Max. tr Rise Time 20% 80% 3 ns tf Fall Time 80% 20% 3 ns Table 10. Capacitance Characteristics Symbol Parameter Test Condition Value Unit VCCB (V) VCCA (V) TA = 25 °C -40 to 85 °C Min. Typ. Max. Min. Max. CINB Input Capacitance open open 9 pF CI/OA Input/Output Capacitance for A-SIDE 3.3 2.5 17 pF CI/OB Input/Output Capacitance for B-SIDE 3.3 2.5 33 pF CPD (1) 1. CPD is defined as the value of the IC's internal equivalent capacitance which is calculated from the operating current consumption without load. (Refer to Test Circuit). Average current can be obtained by the following equation. ICC(opr) - CPD x VCC x fIN + ICC/16 (per circuit) Power Dissipation Capacitance 3.3 2.5 f = 10MHz 29 pF 3.3 1.8 29 |
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