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PCK9448 датащи(PDF) 13 Page - NXP Semiconductors |
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PCK9448 датащи(HTML) 13 Page - NXP Semiconductors |
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13 / 20 page ![]() 9397 750 12534 © Koninklijke Philips Electronics N.V. 2005. All rights reserved. Product data sheet Rev. 01 — 29 November 2005 13 of 20 Philips Semiconductors PCK9448 3.3 V/2.5 V LVCMOS 1 : 12 clock fan-out buffer (2) In Equation 2, P stands for the number of outputs with a parallel or Thevenin termination; VOL, IOL, VOH and IOH are a function of the output termination technique; δo is the clock signal duty cycle. If transmission lines are used, ΣCL is zero in Equation 2 and can be eliminated. In general, the use of controlled transmission line techniques eliminates the impact of the lumped capacitive loads at the end lines and greatly reduces the power dissipation of the device. Equation 3 describes the die junction temperature Tj as a function of the power consumption. (3) Where Rth(j-a) is the thermal impedance of the package (junction-to-ambient) and Tamb is the ambient temperature. According to Table 10, the junction temperature can be used to estimate the long-term device reliability. Further, combining Equation 1 and Equation 2 results in a maximum operating frequency for the PCK9448 in a series terminated transmission line system, Equation 4. (4) Tj(max) should be selected according to the MTBF system requirements and Table 10. Rth(j-a) can be derived from Table 11. The Rth(j-a) represent data based on 1S2P boards; using 2S2P boards will result in a lower thermal impedance than indicated below. If the calculated maximum frequency is below 350 MHz, it becomes the upper clock speed limit for the given application conditions. The following four derating charts describe the safe frequency operation range for the PCK9448. The charts were calculated for a maximum tolerable die junction temperature of 110 °C (120 °C), corresponding to an estimated MTBF of 9.1 years (4 years), a supply voltage of 3.3 V and series terminated transmission line or capacitive loading. Depending on a given set of these operating conditions and the available device convection, a decision on the maximum operating frequency can be made. Table 11: Thermal package impedance of the LQFP32 Convection (LFPM) Rth(j-a) (°C/W) (1P2S board) Rth(j-a) (°C/W) (2P2S board) still air 88 61 100 76 56 200 71 54 300 68 53 400 66 52 500 60 49 P tot V CC I qmax () V CC f clk × + NC PD C L M ∑ + × × × δ o I OH V CC V OH – () 1DC Q – () I OL V OL × × + × × [] P ∑ + = T j T amb P tot R th j-a () × + = f clk max () 1 C PD N × V CC 2 × ----------------------------------------- T jmax () T amb – R th j-a () ------------------------------------ I qmax () V CC × () – × = |
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