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74ABT16500CMTD Datasheet(PDF) 6 Page - Fairchild Semiconductor |
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74ABT16500CMTD Datasheet(HTML) 6 Page - Fairchild Semiconductor |
6 / 9 page www.fairchildsemi.com 6 Skew Note 14: This specification is guaranteed but not tested. The limits apply to propagation delays for all paths described switching in phase (i.e., all LOW-to-HIGH, HIGH-to-LOW, etc.) Note 15: These specifications guaranteed but not tested. The limits represent propagation delays with 250 pF load capacitors in place of the 50 pF load capacitors in the standard AC load. Note 16: Skew is defined as the absolute value of the difference between the actual propagation delays for any two separate outputs of the same device. The specification applies to any outputs switching HIGH-to-LOW (tOSHL), LOW-to-HIGH (tOSLH), or any combination switching LOW-to-HIGH and/or HIGH- to-LOW (tOST). The specification is guaranteed but not tested. Note 17: This describes the difference between the delay of the LOW-to-HIGH and the HIGH-to-LOW transition on the same pin. It is measured across all the outputs (drivers) on the same chip, the worst (largest delta) number is the guaranteed specification. This specification is guaranteed but not tested. Note 18: Propagation delay variation for a given set of conditions (i.e., temperature and VCC) from device to device. This specification is guaranteed but not tested. Capacitance Note 19: CI/O is measured at frequency f = 1 MHz per MIL-STD-883, Method 3012. Symbol Parameter TA = −40°C to +85°CTA = −40°C to +85°C Units VCC = 4.5V–5.5V VCC = 4.5V–5.5V CL = 50 pF CL = 250 pF 18 Outputs Switching 18 Outputs Switching (Note 14) (Note 15) Max Max tOSHL Pin to Pin Skew 2.0 2.8 ns (Note 16) HL Transitions tOSLH Pin to Pin Skew 2.0 2.5 ns (Note 16) LH Transitions tPS Duty Cycle 2.0 2.8 ns (Note 17) LH–HL Skew tOST Pin to Pin Skew 2.5 3.0 ns (Note 16) LH/HL Transitions tPV Device to Device Skew 3.0 3.5 ns (Note 18) LH/HL Transitions Symbol Parameter Typ Units Conditions TA = 25°C CIN Input Capacitance 5.0 pF VCC = 0.0V CI/O (Note 19) Output Capacitance 11.0 pF VCC = 5.0V |
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